Mettler Toledo International Trading (Shanghai) Co Ltd

Chine

Retour au propriétaire

1-100 de 105 pour Mettler Toledo International Trading (Shanghai) Co Ltd Trier par
Recheche Texte
Affiner par
Juridiction
        États-Unis 56
        International 47
        Canada 2
Date
Nouveautés (dernières 4 semaines) 2
2025 février (MACJ) 1
2025 janvier 2
2024 décembre 1
2024 octobre 4
Voir plus
Classe IPC
G01G 23/01 - Test ou calibrage des appareils de pesée 30
G01G 23/00 - Dispositifs accessoires pour appareils de pesée 12
G01G 3/14 - Appareils de pesée caractérisés par l'utilisation d'organes déformables par élasticité, p. ex. balances à ressort dans lesquels l'élément de pesée est constitué par un corps solide soumis à une pression ou une traction pendant la pesée utilisant la mesure des variations de la résistance électrique 8
G01G 19/414 - Appareils ou méthodes de pesée adaptés à des fins particulières non prévues dans les groupes avec dispositions pour indiquer, enregistrer ou calculer un prix ou d'autres quantités dépendant du poids utilisant des moyens de calcul électromécaniques ou électroniques utilisant uniquement des moyens de calcul électroniques 6
G01G 21/28 - BâtisCages 6
Voir plus
Statut
En Instance 21
Enregistré / En vigueur 84
Résultats pour  brevets
  1     2        Prochaine page

1.

TILT COMPENSATION APPARATUS AND TILT COMPENSATION METHOD THEREFOR

      
Numéro d'application 18716405
Statut En instance
Date de dépôt 2022-12-08
Date de la première publication 2025-02-06
Propriétaire
  • Mettler-Toledo (Changzhou) Precision Instruments Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Measurement Technology Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Wu, Jianwei
  • Lin, Hongzhi
  • Fang, Chao
  • Wang, Jifeng

Abrégé

The present disclosures relate generally to a tilt compensation apparatus and a tilt compensation method therefor. The tilt compensation method includes: S1: performing tilt angle calibration and horizontal rotation angle calibration on a weighing system; S2: selecting to set different specified tilt angles and different specified horizontal rotation angles, and measuring weights, tilt angles, and horizontal rotation angles under different loads; S3: calculating a weight compensation value based on the set specified tilt angles and the set specified horizontal rotation angles as well as the weights, tilt angles, and horizontal rotation angles obtained through measurement; and S4: calculating an actual weighing weight based on an actual measured weight of the weighing system and the weight compensation value. These disclosures provide more, accurate tilt compensation for weighing systems having a column-type load cell.

Classes IPC  ?

  • G01G 23/01 - Test ou calibrage des appareils de pesée
  • G01G 3/14 - Appareils de pesée caractérisés par l'utilisation d'organes déformables par élasticité, p. ex. balances à ressort dans lesquels l'élément de pesée est constitué par un corps solide soumis à une pression ou une traction pendant la pesée utilisant la mesure des variations de la résistance électrique
  • G01G 19/02 - Appareils ou méthodes de pesée adaptés à des fins particulières non prévues dans les groupes pour peser des objets à roues ou roulants, p. ex. des véhicules

2.

U-SHAPED PLATE FOR WEIGHING MODULE AND WEIGHING MODULE COMPRISING SAME

      
Numéro d'application 18687924
Statut En instance
Date de dépôt 2022-09-01
Date de la première publication 2025-01-23
Propriétaire
  • Mettler-Toledo (Changzhou) Precision Instruments Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Measurement Technology Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Wu, Youyi
  • Li, Chunhui
  • Chao, Zhihe
  • Cai, Jinjie
  • Ding, Chenggang
  • Wang, Shenhui

Abrégé

A U-shaped plate for a weighing module and a weighing module having the same are disclosed. The U-shaped plate includes an upper end surface connecting a first and second side surface, each including a bottom end and an upper portion together forming four corners of the U-shaped plate and providing an inverted U-shaped structure formed by bending a flat and straight metal sheet. A lower width of the U-shaped plate is greater than an upper width thereof. The U-shaped plate includes an opening for mounting a sensor which extends from the bottom end of the first side surface to the upper portion of the second side surface via the upper end surface. Each of the four corners provide a recessed structure. When used with a weighing module, the U-shaped plate matches the sensor. An integrated molding design overcomes defects and, realizes safety and practicability.

Classes IPC  ?

3.

SYSTEM AND METHOD FOR CONTROLLING A VERIFICATION PROCESS OF A MEASURING DEVICE BASED ON LOW-CODE TECHNOLOGY

      
Numéro d'application CN2024105492
Numéro de publication 2025/016361
Statut Délivré - en vigueur
Date de dépôt 2024-07-15
Date de publication 2025-01-23
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s) Shan, Shu

Abrégé

The present invention provides a system (100) and a method for controlling a verification process of a measuring device (10) based on low-code technology. The system (100) includes a remote verification system cloud service (40), a verification process creation tool (30), an access point (20) for a verification competent authority to the verification process creation tool (30), and an access point for verification personnel to the remote verification system cloud service (40), wherein access to the remote verification system cloud service (40) is given by at least one of the measuring device (10) and a verification personnel terminal device (50). The remote verification system cloud service (40) is connectable to the verification process providing tool (30). The method comprises at least one of a step of providing said system (100) and a step of using said system (100). In embodiments, the method comprises a step S1 of creating a verification flowchart (80, A1, B1, A2, B2) and a step S2 of implementing at least one verification task represented by the verification flowchart. The present invention employs a graphical and visual verification process creation tool to address the challenges posed by the wide variety of types of measuring devices and the complexity and variability of verification processes. Additionally, the present invention significantly simplifies the operations of verification personnel, reduces the requirements for skills and experience of the verification personnel, and improves the objectivity and fairness of verification results.

Classes IPC  ?

  • G06F 21/44 - Authentification de programme ou de dispositif
  • G06F 11/22 - Détection ou localisation du matériel d'ordinateur défectueux en effectuant des tests pendant les opérations d'attente ou pendant les temps morts, p. ex. essais de mise en route
  • G06F 11/30 - Surveillance du fonctionnement
  • G06F 21/57 - Certification ou préservation de plates-formes informatiques fiables, p. ex. démarrages ou arrêts sécurisés, suivis de version, contrôles de logiciel système, mises à jour sécurisées ou évaluation de vulnérabilité
  • G06F 21/73 - Protection de composants spécifiques internes ou périphériques, où la protection d'un composant mène à la protection de tout le calculateur pour assurer la sécurité du calcul ou du traitement de l’information par création ou détermination de l’identification de la machine, p. ex. numéros de série
  • H04L 67/12 - Protocoles spécialement adaptés aux environnements propriétaires ou de mise en réseau pour un usage spécial, p. ex. les réseaux médicaux, les réseaux de capteurs, les réseaux dans les véhicules ou les réseaux de mesure à distance

4.

Weighing apparatus

      
Numéro d'application 29884207
Numéro de brevet D1053034
Statut Délivré - en vigueur
Date de dépôt 2023-02-08
Date de la première publication 2024-12-03
Date d'octroi 2024-12-03
Propriétaire
  • Mettler-Toledo (Changzhou) Measurement Technology Co., Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Precision Instruments Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Wu, Youyi
  • Li, Chunhui
  • Chao, Zhihe
  • Cai, Jinjie
  • Guo, Zheng

5.

VOLUME MEASUREMENT METHOD AND AN APPARATUS BASED ON A DEPTH CAMERA, AND A COMPUTER-READABLE MEDIUM

      
Numéro d'application 18287828
Statut En instance
Date de dépôt 2022-04-24
Date de la première publication 2024-10-31
Propriétaire
  • Mettler-Toledo (Changzhou) Measurement Technology Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Precision Instruments Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Cao, Conghan
  • Yin, Jiang
  • Zhang, Song
  • Fang, Chao
  • Song, Hongqing
  • Dai, Zhenyu
  • Qian, Fenping
  • Cheng, Huanbing
  • Wang, Shenhui

Abrégé

A volume measurement method and apparatus using a depth camera, and a computer-readable medium, are provided. A first depth image of a reference countertop is acquired which includes coordinate and depth data of pixels, the reference countertop adapted for placement of a measured object. The coordinate and depth data are substituted into countertop empirical equations to obtain simulated images. Each of the countertop empirical equations represent a height variation pattern of the reference countertop. A correlation between each of the simulated images and the first depth image is calculated. A simulated image with the highest correlation is used as a target image of the reference countertop. A countertop height of the reference countertop is obtained based on the target image, a height of the measured object is calculated using the countertop height, and a volume of the measured object is calculated using the height. These disclosures improve accuracy of object volume measurement.

Classes IPC  ?

  • G06T 7/62 - Analyse des attributs géométriques de la superficie, du périmètre, du diamètre ou du volume
  • G01F 17/00 - Procédés ou appareils pour la détermination de la capacité des récipients ou des cavités, ou du volume des corps solides

6.

Printer housing

      
Numéro d'application 29834277
Numéro de brevet D1048172
Statut Délivré - en vigueur
Date de dépôt 2022-04-11
Date de la première publication 2024-10-22
Date d'octroi 2024-10-22
Propriétaire
  • Mettler-Toledo (Changzhou) Measurement Technology Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Precision Instruments Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Zhang, Yinxiu
  • Hao, Pengbo

7.

HINGED FOLDABLE UPRIGHT ROD AND COMMERCIAL WEIGHING INSTRUMENT COMPRISING SAME

      
Numéro d'application CN2024086371
Numéro de publication 2024/208356
Statut Délivré - en vigueur
Date de dépôt 2024-04-07
Date de publication 2024-10-10
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Wan, Kuaidi
  • Chen, Jian

Abrégé

The present invention provides a hinged foldable rod and a commercial weighing instrument comprising same. The hinged foldable rod comprises a first rod (10), a upright rod (20), an cover (30) and a hinge assembly (40). A first end portion (31) of the cover is connected to a first end portion (11) of the first rod. The cover may be sleeved on the hinge assembly. A first end portion (42, 43) of the hinge assembly is connected to the first end portion of the first rod, and a second end portion (45, 46) of the hinge assembly is connected to a first end portion (21) of the second rod. For example when the hinged foldable rod needs to be stored, the first rod can be rotated with respect to the second rod by means of the hinge assembly, wherein the hinge assembly is configured to exert a torque on the first rod, this torque being caused by friction.

Classes IPC  ?

  • G01G 23/18 - Dispositifs indicateurs, p. ex. pour indication à distanceDispositifs enregistreursÉchelles, p. ex. graduées
  • F16M 11/10 - Moyens pour la fixation des appareilsMoyens permettant le réglage des appareils par rapport au banc permettant la rotation autour d'un axe horizontal
  • G01G 19/414 - Appareils ou méthodes de pesée adaptés à des fins particulières non prévues dans les groupes avec dispositions pour indiquer, enregistrer ou calculer un prix ou d'autres quantités dépendant du poids utilisant des moyens de calcul électromécaniques ou électroniques utilisant uniquement des moyens de calcul électroniques

8.

METROLOGICAL INSTRUMENT DIGITAL VERIFICATION METHOD AND SYSTEM

      
Numéro d'application CN2024084909
Numéro de publication 2024/199470
Statut Délivré - en vigueur
Date de dépôt 2024-03-29
Date de publication 2024-10-03
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Zhu, Jian
  • Yu, Jingquan
  • Shan, Shu
  • Ma, Yan
  • Wang, Lujing

Abrégé

A metrological instrument digital verification method, i.e., a computer-implemented verification method for a metrological instrument 110, and a related system are provided. In the method, verification personnel 131 provide, through the metrological instrument 110 and/or a detection client 130, identity information to a metrological management organization 120. After a verification request is accepted, the metrological instrument 110 and/or the detection client 130 are/is used to display a verification step to the verification personnel 131, and record/records a real-time image when the verification personnel perform a test. Verification information is transmitted to the metrological management organization. The management platform obtains the verification information, and generates a digital verification certificate 40 if the verification information meets a verification requirement. The digital verification certificate includes built-in component information of the metrological instrument 110. According to the foregoing method and system, compliance and accuracy of a metrological verification process can be improved. The digital verification certificate is bound to a built-in component, in particular a built-in core component, of the metrological instrument, so that a certification range of the digital verification certificate is enlarged.

Classes IPC  ?

  • G06F 21/44 - Authentification de programme ou de dispositif
  • G06F 21/57 - Certification ou préservation de plates-formes informatiques fiables, p. ex. démarrages ou arrêts sécurisés, suivis de version, contrôles de logiciel système, mises à jour sécurisées ou évaluation de vulnérabilité
  • G06F 21/73 - Protection de composants spécifiques internes ou périphériques, où la protection d'un composant mène à la protection de tout le calculateur pour assurer la sécurité du calcul ou du traitement de l’information par création ou détermination de l’identification de la machine, p. ex. numéros de série
  • H04L 9/40 - Protocoles réseaux de sécurité

9.

Pipette controller

      
Numéro d'application 29900726
Numéro de brevet D1045125
Statut Délivré - en vigueur
Date de dépôt 2023-08-24
Date de la première publication 2024-10-01
Date d'octroi 2024-10-01
Propriétaire
  • Mettler-Toledo (Changzhou) Measurement Technology Co., Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Precision Instrument Co., Ltd. (Chine)
  • Mettler Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Zhao, Bo
  • Zhou, Bo
  • Xu, Shuyi

10.

Weighing device

      
Numéro d'application 29846811
Numéro de brevet D1043390
Statut Délivré - en vigueur
Date de dépôt 2022-07-19
Date de la première publication 2024-09-24
Date d'octroi 2024-09-24
Propriétaire
  • Mettler-Toledo (Changzhou) Precision Instrument Co., Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Measurement Technology Co., Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Wu, You Yi
  • Li, Chin Hui
  • Muranyi, Ferenc
  • Leahy, Tom

11.

FILTERING METHOD AND FILTERING CONTROL APPARATUS FOR LOAD CELL

      
Numéro d'application 18571375
Statut En instance
Date de dépôt 2022-06-29
Date de la première publication 2024-08-22
Propriétaire
  • Mettler-Toledo (Changzhou) Measurement Technology Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Precision Instruments Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Wang, Shenhui
  • Wei, Along
  • Sun, Qin
  • Wan, Qi
  • Zhang, Song

Abrégé

These disclosures provide a filtering method and control apparatus for a load cell. The method includes: filtering, by using a plurality of filtering units, first weighing data obtained by the load cell to obtain a plurality of pieces of second weighing data, where the filtering units have different settling times. Obtaining a fluctuation index of each piece of second weighing data, and establishing a correspondence between a fluctuation index and a settling time of each filtering unit. Determining a target filtering unit based on the correspondence according to a weighing requirement, where a fluctuation index of the target filtering unit matches a target precision in the weighing requirement, and a settling time of the target filtering unit matches a target speed in the weighing requirement. The method and apparatus disclosed improves speed and user experience in a weighing process.

Classes IPC  ?

  • G01G 23/10 - Moyens pour amortir les oscillations, p. ex. de fléaux de pesée par des moyens électriques ou magnétiques

12.

INTEGRATED HIGH-PRECISION WEIGHING MODULE

      
Numéro d'application 18567557
Statut En instance
Date de dépôt 2022-07-29
Date de la première publication 2024-08-08
Propriétaire
  • Mettler-Toledo (Changzhou) Precision Instruments Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Measurement Technology Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Huang, Dandan
  • Li, Chunhui
  • Ding, Hu
  • Xu, Lei
  • Xu, Yujun
  • Yuan, Xudong
  • Liu, Yanbo
  • Fan, Yifan
  • Ding, Chenggang

Abrégé

An integrated high-precision weighing module is provided which includes a scale pan, a lever, an internal calibration system, a bottom plate assembly, and a sensor main body. The scale pan is mounted on the lever, and the lever is connected to the sensor main body. The internal calibration system, the sensor main body and the lever are arranged transversely, and the internal calibration system and the sensor main body are respectively attached to the bottom plate assembly.

Classes IPC  ?

  • G01G 23/01 - Test ou calibrage des appareils de pesée
  • G01G 7/02 - Appareils de pesée dans lesquels l'équilibrage est assuré par une action magnétique, électromagnétique ou électrostatique, ou par des moyens non prévus dans les groupes par action électromagnétique

13.

METHOD FOR DETECTING AND REMOVING PERSONNEL INTERFERENCE WHILE MEASURING VOLUME OF AN OBJECT

      
Numéro d'application 18561898
Statut En instance
Date de dépôt 2022-05-09
Date de la première publication 2024-07-11
Propriétaire
  • Mettler-Toledo (Changzhou) Measurement Technology Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Precision Instruments Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Cao, Conghan
  • Fang, Chao
  • Cui, Jindong
  • Wang, Shenhui
  • Zhang, Song
  • Song, Hongqing

Abrégé

These disclosures relate to a method for detecting and removing personnel interference while measuring volume of an object. An image of an object is obtained, a background information of the image is removed, and the image is converted into a binary image. An outline of the object is detected from the binary image. A determination is made whether the outline extends towards a boundary of the field of view. If the outline of the object does not extend to the boundary of the field of view, the volume of the object is measured. Otherwise, an extending part is removed from the outline using a morphological method, if removable. If the extending part is removed, the volume of the object is measured based on an outline of the object obtained after the extended part is removed, and a class 1 warning is issued. Otherwise, a class 2 warning is issued and the measurement is ended. This approach improves efficiency of the object volume measurement.

Classes IPC  ?

  • G06T 7/194 - DécoupageDétection de bords impliquant une segmentation premier plan-arrière-plan
  • G01B 11/02 - Dispositions pour la mesure caractérisées par l'utilisation de techniques optiques pour mesurer la longueur, la largeur ou l'épaisseur
  • G06T 7/12 - Découpage basé sur les bords
  • G06T 7/62 - Analyse des attributs géométriques de la superficie, du périmètre, du diamètre ou du volume

14.

Weighing device

      
Numéro d'application 29846775
Numéro de brevet D1030529
Statut Délivré - en vigueur
Date de dépôt 2022-07-19
Date de la première publication 2024-06-11
Date d'octroi 2024-06-11
Propriétaire
  • Mettler-Toledo (Changzhou) Precision Instrument Co., Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Measurement Technology Co., Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Wu, You Yi
  • Li, Chin Hui
  • Muranyi, Ferenc
  • Leahy, Tom

15.

Weighing device

      
Numéro d'application 29846815
Numéro de brevet D1030530
Statut Délivré - en vigueur
Date de dépôt 2022-07-19
Date de la première publication 2024-06-11
Date d'octroi 2024-06-11
Propriétaire
  • Mettler-Toledo (Changzhou) Precision Instrument Co., Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Measurement Technology Co., Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Wu, You Yi
  • Li, Chin Hui
  • Muranyi, Ferenc
  • Leahy, Tom

16.

MECHANICAL APPARATUS LEVELLING MECHANISM AND LEVELLING METHOD THEREFOR

      
Numéro d'application 17913900
Statut En instance
Date de dépôt 2021-03-24
Date de la première publication 2024-04-04
Propriétaire
  • Mettler-Toledo (Changzhou) Measurement Technology Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Precision Instruments Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Zheng, Shaowen
  • Chen, Dengyou
  • Hui, Huaqiang
  • Wu, Gang
  • Zhao, Qingsong
  • Qian, Long
  • Hao, Pengbo

Abrégé

A mechanical apparatus levelling mechanism has a base (10), an adjusting screw rod (20), an adjusting plate (30) and a support plate (40). The adjusting screw rod penetrates into the adjusting plate in an axial direction and is connected to the base. The adjusting plate is located on the base; the support plate is mounted at a top end of the adjusting screw rod and is located above the adjusting plate; and the adjusting plate rotates to drive the adjusting screw rod to rotate, such that the support plate is adjusted vertically. This simplifies the operation procedure, improving the assembly accuracy and improving the working efficiency. The method is simple to operate. These adjusting mechanisms are convenient to move and simple to adjust, are time-saving and labour-saving, and have adjustment dimensions that can be quantified. Moreover, the installation is simple, and the adjusting mechanisms themselves can be reused.

Classes IPC  ?

  • F16M 7/00 - Détails de fixation ou de réglage des bâtis, châssis ou pièces de supports des moteurs sur leurs fondations ou leur baseFixation des parties fixes des moteurs, p. ex. des blocs cylindres
  • F16M 5/00 - Bâtis pour machines, c.-à-d. moyens de tenir les moteurs ou machines sur leurs fondations
  • G01G 21/28 - BâtisCages

17.

DIGITAL LOAD CELL WITH REDUNDANCY DESIGN

      
Numéro d'application 18283522
Statut En instance
Date de dépôt 2022-04-15
Date de la première publication 2024-03-28
Propriétaire
  • Mettler-Toledo (Changzhou) Precision Instruments Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Measurement Technology Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Zhang, Ying
  • Lin, Hongzhi
  • Wu, Jianwei
  • Xu, Miao

Abrégé

The present invention provides a digital load cell with redundancy design, the digital load cell including: at least one force measuring element that measures a load force applied to the digital load cell, where each force measuring element converts the load force into one analog signal; and one or more analog-to-digital conversion modules, where each force measuring element is connected to at least one analog-to-digital conversion module, and the analog-to-digital conversion module converts the analog signal into a digital signal. According to the digital load cell of the present invention, redundancy design is provided at least for both the force measuring element and the analog-to-digital conversion module, which can effectively ensure the proper operation of the digital load cell.

Classes IPC  ?

  • G01G 23/01 - Test ou calibrage des appareils de pesée
  • G01G 23/18 - Dispositifs indicateurs, p. ex. pour indication à distanceDispositifs enregistreursÉchelles, p. ex. graduées

18.

DIGITAL LOAD CELL AND WEIGHING SYSTEM

      
Numéro d'application 18280341
Statut En instance
Date de dépôt 2022-04-15
Date de la première publication 2024-03-07
Propriétaire
  • Mettler-Toledo (Changzhou) Precision Instruments Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Measurement Technology Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Zhang, Ying
  • Lin, Hongzhi
  • Wu, Jianwei
  • Xu, Miao

Abrégé

A digital load cell includes: a strain bridge including a Wheatstone bridge formed by connecting four resistive strain gauges and a temperature sensing resistance element connected in series to the Wheatstone bridge. An analog-to-digital conversion circuit excites the strain bridge, and includes a plurality of input channels and an output terminal. The input channels receive feedback signals from the strain bridge, and the output terminal outputs the feedback signals after analog-to-digital conversion. A signal processor includes a load force calculation unit and a state information matrix calculation unit. The load force calculation unit calculates a differential voltage and a compensation function based on the feedback signals obtained from the output terminal, and calculates a load force value based on the differential voltage and the compensation function. The digital load cell and related weighing system; can provide comprehensive and effective real-time health state monitoring for the digital load cell.

Classes IPC  ?

  • G01G 3/14 - Appareils de pesée caractérisés par l'utilisation d'organes déformables par élasticité, p. ex. balances à ressort dans lesquels l'élément de pesée est constitué par un corps solide soumis à une pression ou une traction pendant la pesée utilisant la mesure des variations de la résistance électrique
  • G01G 3/147 - Circuits spécialement adaptés à cet effet impliquant un comptage numérique

19.

WEIGHT STABILITY CONTROL METHOD FOR DEADWEIGHT FORCE STANDARD MACHINE

      
Numéro d'application 18278511
Statut En instance
Date de dépôt 2022-03-07
Date de la première publication 2024-02-15
Propriétaire
  • Mettler-Toledo (Changzhou) Measurement Technology Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Precision Instruments Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Xu, Hanqing
  • Zhang, Leiyue

Abrégé

These disclosures provide a weight stability control method for a deadweight force standard machine. For each weight in a sequence until all weights are loaded: weight platform is relatively rapidly moved downwards from an initial position, lifting a first-stage weight by a weight disk, and starting to load the first-stage weight starts; the first-stage weight is displaced relatively slowly when the first-stage weight communicates with a second-stage weight via corresponding lifting components for the first time; after the first-stage weight is completely separated from the second-stage weight, relatively rapidly displacing the weight platform downwards again until a gap between the first-stage weight and the second-stage weight reaches half of a pre-set gap value. The method provides control over the stability of the weights, effectively solving the weight shaking problem and improving testing efficiency.

Classes IPC  ?

  • G01G 23/01 - Test ou calibrage des appareils de pesée

20.

HANGING SCALE SENSOR APPARATUS AND A HANGING SCALE

      
Numéro d'application 18252721
Statut En instance
Date de dépôt 2021-11-15
Date de la première publication 2024-01-18
Propriétaire
  • Mettler-Toledo (Changzhou) Measurement Technology Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Precision Instruments Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Cao, Naiqing
  • Kempf, Edgar
  • Kontschak, Dieter

Abrégé

A hanging scale sensor apparatus and hanging scale are disclosed. The hanging scale sensor apparatus includes an adapter beam connected to one end of a bottom face of a weighing sensor with a support base is connected to the other end of the bottom face of the weighing sensor. The adapter beam and a support base are positioned directly below the weighing sensor; and a scale pan suspension structure is connected to the adapter beam for positioning the hanging scale sensor apparatus.

Classes IPC  ?

  • G01G 19/14 - Appareils ou méthodes de pesée adaptés à des fins particulières non prévues dans les groupes pour peser des charges suspendues
  • G01G 21/22 - Plateaux de pesée ou autres récipients de peséePlates-formes de pesée
  • G01G 23/00 - Dispositifs accessoires pour appareils de pesée

21.

LOAD CELL WITH ROBERVAL STRUCTURE HAVING ANTI-OFFSET FUNCTION, AND WEIGHING DEVICE

      
Numéro d'application 18034975
Statut En instance
Date de dépôt 2021-12-21
Date de la première publication 2024-01-04
Propriétaire
  • Mettler-Toledo (Changzhou) Precision Instruments Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Measurement Technology Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Lin, Hongzhi
  • Xu, Lei
  • Yang, Li

Abrégé

A load cell with a Roberval structure having an anti-offset function, and a weighing device are disclosed. The load cell includes strain detection elements mounted on an elastic element which includes a loading portion for receiving a load from a connector, a fixing portion for fixing the elastic element, a strain generation portion for converting the load into deformation, and a parallel guide beam for transferring the load and keeping the loading portion translational when loaded. The strain generation portion includes at least one hollow cavity body. The loading portion and the fixing portion are respectively located on left and right sides of the strain generation portion. The parallel guide beam is located at upper and lower portions of the strain generation portion A center of rotation and a geometric center of the strain generation portion coincide when the load cell with the Roberval structure is loaded.

Classes IPC  ?

  • G01L 1/22 - Mesure des forces ou des contraintes, en général en mesurant les variations de la résistance ohmique des matériaux solides ou des fluides conducteurs de l'électricitéMesure des forces ou des contraintes, en général en faisant usage des cellules électrocinétiques, c.-à-d. des cellules contenant un liquide, dans lesquelles un potentiel électrique est produit ou modifié par l'application d'une contrainte en utilisant des jauges de contrainte à résistance
  • G01G 3/14 - Appareils de pesée caractérisés par l'utilisation d'organes déformables par élasticité, p. ex. balances à ressort dans lesquels l'élément de pesée est constitué par un corps solide soumis à une pression ou une traction pendant la pesée utilisant la mesure des variations de la résistance électrique
  • G01G 21/24 - Guides ou articulations pour assurer un déplacement parallèle des plateaux de pesée

22.

Method for real-time processing of a detection signal and a detector

      
Numéro d'application 17455813
Numéro de brevet 11967982
Statut Délivré - en vigueur
Date de dépôt 2021-11-19
Date de la première publication 2023-12-07
Date d'octroi 2024-04-23
Propriétaire
  • Mettler-Toledo (Changzhou) Measurement Technology Co., Ltd (Chine)
  • Mettler-Toledo (Changzhou) Precision Instruments Co., Ltd (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd (Chine)
Inventeur(s)
  • Wang, Shenhui
  • Wang, Jingke
  • Liu, Zhengquan
  • Sun, Qin

Abrégé

A method for real-time processing of a detection signal, wherein signal processing is respectively performed when a detection signal is converted from a high level to a low level or vice versa. A moment at which a level of the detection signal is converted is recorded as a start point. A status of the detection signal is then detected in real time at a current moment. A current time width is compared to a maximum interval width of pre-set interference signals, and signal levels are determined and recorded from the start point to the current moment. Using characteristics of different interference signals, anti-interference processing is performed by using a targeted edge positioning and width recognition method, so that the delay impact of filtering on signals is avoided, improving both the recognition precision of weighing data of a checkweigher and the overall performance of the checkweigher.

Classes IPC  ?

  • H04B 1/10 - Dispositifs associés au récepteur pour limiter ou supprimer le bruit et les interférences

23.

Pipette controller

      
Numéro d'application 29790347
Numéro de brevet D1000633
Statut Délivré - en vigueur
Date de dépôt 2021-11-22
Date de la première publication 2023-10-03
Date d'octroi 2023-10-03
Propriétaire
  • Mettler-Toledo (Changzhou) Measurement Technology Co., Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Precision Instrument Co., Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Zhao, Bo
  • Zhou, Bo
  • Xu, Shuyi

24.

AUTOMATIC PISTON-GRIPPING APPARATUS AND PIPETTE COMPRISING THE SAME

      
Numéro d'application CN2023083795
Numéro de publication 2023/179776
Statut Délivré - en vigueur
Date de dépôt 2023-03-24
Date de publication 2023-09-28
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Li, Weiguo
  • Zhang, Dawei
  • Xu, Jianfei

Abrégé

The present invention provides an automatic piston-gripping apparatus (100) and a pipette comprising the same. The automatic piston-gripping apparatus comprises a gripping mechanism (10), a holding shank (20), a first spring (30), and optionally a piston (40). The gripping mechanism (10) is arranged in the holding shank, (20) and the first spring (30) sleeves over the gripping mechanism (10) and is located between the gripping mechanism (10) and the holding shank (20). The piston-gripping apparatus (100) is configured for inserting a piston (40) from an end portion of the holding shank (20) that faces a collet (11) of the gripping mechanism (10) A locking ring (12) is arranged at a head of the collet (11). The end portion of the holding shank (20) is provided with a first limiting portion (21) for positioning the locking ring (12). The piston-gripping apparatus is configured for the collet (11) to extend out of the locking ring (12) when the locking ring (12) moves and/or moved to the first limiting portion (21) and to automatically grip the piston (40). The automatic piston-gripping apparatus (100) can quickly and adaptively grip the piston (40), and can produce a sound in the process of gripping the piston, this sound indicating a soon successful gripping, thereby avoiding a faulty operation by a user r.

Classes IPC  ?

25.

METHOD FOR DETERMINING RELIABILITY OF A WEIGHING RESULT, COMPUTER-READABLE MEDIUM, AND SYSTEM

      
Numéro d'application CN2023077676
Numéro de publication 2023/160584
Statut Délivré - en vigueur
Date de dépôt 2023-02-22
Date de publication 2023-08-31
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Yang, Yong
  • Huang, Kejing
  • Qian, Shenjian
  • Zhuang, Xiaoming
  • Wang, Xuyang
  • Shen, Bo

Abrégé

The present invention relates to a method for determining the reliability of a weighing result, a computer-readable medium, and a related system. The method for determining the reliability of a weighing result includes: a step S1 of providing data comprising event data 3 and weighing data 4; a step S2 of training an Al classification algorithm using the data; and a step S3 of making inference about a weighing result 1. The method, the computer-readable medium, and the system 100 proposed by the present invention are able to determine whether a weighing system 101, 101', 101" operates normally and whether data displayed are reliable.

Classes IPC  ?

  • G01G 23/06 - Moyens pour amortir les oscillations, p. ex. de fléaux de pesée

26.

METHOD AND SYSTEM FOR ECCENTRIC LOAD ERROR CORRECTION

      
Numéro d'application 18016004
Statut En instance
Date de dépôt 2021-07-08
Date de la première publication 2023-08-24
Propriétaire
  • Mettler-Toledo (Changzhou) Measurement Technology Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Precision Instruments Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Wang, Shenhui
  • Zha, Yujuan
  • Zhang, Song
  • Ji, Genjun
  • Fu, Qiang
  • Han, Jinkang
  • Li, Jinli

Abrégé

Methods and systems for eccentric load error correction are disclosed. A plurality of weighing data sets for a weight having a mass value are obtained, where the weight is loaded at different positions on a weighing platform of a weighing device. Differences between each of the weighing data sets and the average value of the plurality of weighing data sets or the mass value of the weight are calculated. Sensor correction coefficients are calculated and updated when the maximum absolute value of the differences exceeds a pre-set threshold. The weighing data sets are updated. The above steps are repeated until the absolute values of all the differences are less than the pre-set threshold.

Classes IPC  ?

  • G01G 23/01 - Test ou calibrage des appareils de pesée
  • G01G 23/00 - Dispositifs accessoires pour appareils de pesée

27.

METHOD FOR CONFIGURING A CALIBRATION MECHANISM AND FORCE SENSOR THEREOF

      
Numéro d'application 18010030
Statut En instance
Date de dépôt 2021-06-23
Date de la première publication 2023-07-20
Propriétaire
  • Mettler-Toledo (Changzhou) Precision Instruments Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Measurement Technology Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd (Chine)
Inventeur(s)
  • Xu, Lei
  • Emery, Jean Christophe
  • Yang, Li

Abrégé

A method for configuring a calibration mechanism in a force sensor (100) has the steps of: coupling an end of the calibration lever (1071) to a loading end (102) of the force sensor; adjusting, in a no-load condition, the center of gravity (G0) of the unloaded calibration lever (1071), so that the center of gravity (G0) lies on a horizontal line (H) through the center of a calibration lever fulcrum (1031) at a fixed end (103) thereof; and adjusting, in a full-load condition, the center of gravity (G1) of the calibration lever (1071) loaded with the calibration weight (106), so that the center of gravity (G1) lies on the horizontal line (H) through the center of the calibration lever fulcrum. The calibration error caused by inclination in the force sensor is reduced by practice of this method.

Classes IPC  ?

  • G01G 23/01 - Test ou calibrage des appareils de pesée

28.

HYDRAULIC SYSTEM MICRO-ADJUSTMENT DEVICE, AND TANK CALIBRATION SYSTEM COMPRISING THE SAME

      
Numéro d'application CN2022142425
Numéro de publication 2023/125555
Statut Délivré - en vigueur
Date de dépôt 2022-12-27
Date de publication 2023-07-06
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Wang, Bingzheng
  • Li, Chunhui
  • Ding, Chenggang

Abrégé

The present invention provides a hydraulic system micro-adjustment device and a tank calibration system comprising same. The hydraulic system micro-adjustment device comprises a base, a piston, a valve body, a valve core and a handle, characterized in that the valve body is internally provided with an inner cavity for receiving the valve core from an upper portion of the valve body, wherein the valve core is in threaded connection with the inner cavity; the piston is inserted into the inner cavity from a lower portion of the valve body, the piston abuts against the valve core, the lower portion of the valve body is mounted in the base and is in communication with oil passages in the base, and the handle is connected to a top of the valve core; and the valve core is movable along the inner cavity upon rotation of the handle thereby pushing the piston to move along the inner cavity, so as to change the volume of a cavity formed by the base, the valve body, and the piston. According to the present invention, the adjustment of pressure in a local range can be achieved, thereby reducing the number of times of pressurization to improve the calibration efficiency. The target pressure value can be reached quickly and stably, thereby reducing uncertainty and improving the calibration accuracy.

Classes IPC  ?

29.

TILT COMPENSATION APPARATUS AND TILT COMPENSATION METHOD THEREFOR

      
Numéro de document 03240475
Statut En instance
Date de dépôt 2022-12-08
Date de disponibilité au public 2023-06-15
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Wu, Jianwei
  • Lin, Hongzhi
  • Fang, Chao
  • Wang, Jifeng

Abrégé

The present invention relates to a tilt compensation apparatus and a tilt compensation method for a weighing system comprising a column-type load cell. The tilt compensation method includes: S1: performing tilt angle calibration and horizontal rotation angle calibration on the weighing system; S2: aligning the column-type load cell to a specified tilt angle and a specified horizontal rotation angle, and measuring a weight, a tilt angle, and a horizontal rotation angle under load; S3: calculating a weight compensation value based on the specified tilt angle and the specified horizontal rotation angle as well as the measured weight, tilt angle, and horizontal rotation angle; and S4: calculating an actual weighing weight based on an actual measured weight of the weighing system and the weight compensation value. According to the tilt compensation apparatus and the tilt compensation method therefor proposed in the present invention, accurate tilt compensation can be provided for the weighing system having a column-type load cell.

Classes IPC  ?

  • G01G 3/14 - Appareils de pesée caractérisés par l'utilisation d'organes déformables par élasticité, p. ex. balances à ressort dans lesquels l'élément de pesée est constitué par un corps solide soumis à une pression ou une traction pendant la pesée utilisant la mesure des variations de la résistance électrique
  • G01G 23/01 - Test ou calibrage des appareils de pesée

30.

TILT COMPENSATION APPARATUS AND TILT COMPENSATION METHOD THEREFOR

      
Numéro d'application CN2022137455
Numéro de publication 2023/104135
Statut Délivré - en vigueur
Date de dépôt 2022-12-08
Date de publication 2023-06-15
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Wu, Jianwei
  • Lin, Hongzhi
  • Fang, Chao
  • Wang, Jifeng

Abrégé

The present invention relates to a tilt compensation apparatus and a tilt compensation method for a weighing system comprising a column-type load cell. The tilt compensation method includes: S1: performing tilt angle calibration and horizontal rotation angle calibration on the weighing system; S2: aligning the column-type load cell to a specified tilt angle and a specified horizontal rotation angle, and measuring a weight, a tilt angle, and a horizontal rotation angle under load; S3: calculating a weight compensation value based on the specified tilt angle and the specified horizontal rotation angle as well as the measured weight, tilt angle, and horizontal rotation angle; and S4: calculating an actual weighing weight based on an actual measured weight of the weighing system and the weight compensation value. According to the tilt compensation apparatus and the tilt compensation method therefor proposed in the present invention, accurate tilt compensation can be provided for the weighing system having a column-type load cell.

Classes IPC  ?

  • G01G 3/14 - Appareils de pesée caractérisés par l'utilisation d'organes déformables par élasticité, p. ex. balances à ressort dans lesquels l'élément de pesée est constitué par un corps solide soumis à une pression ou une traction pendant la pesée utilisant la mesure des variations de la résistance électrique
  • G01G 23/01 - Test ou calibrage des appareils de pesée

31.

METHOD FOR CONTROLLING DISCHARGE FLOW RATE IN A LOSS-IN-WEIGHT SCALE

      
Numéro d'application 17912119
Statut En instance
Date de dépôt 2021-03-23
Date de la première publication 2023-05-04
Propriétaire
  • Mettler-Toledo (Changzhou) Measurement Technology Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Precision Instruments Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Wang, Shenhui
  • Wang, Jingke
  • Wan, Qi
  • Wang, Xiaosong
  • Liu, Zhengquan
  • Yang, Gang
  • Zhang, Song

Abrégé

A discharge flow rate of a loss-in-weight scale is controlled by continuously changing control outputs to save the time necessary for data stabilization. A curve relating the discharge flow rate and the control output is obtained by using the functional relationship between the control output and time and the functional relationship between the material weight and time. The discharge flow rate can be precisely controlled by directly selecting or inputting a value of the control output, to achieve the objectives of direct controlling and of avoiding the time for data stabilization.

Classes IPC  ?

  • G01G 11/08 - Appareils pour peser au passage un produit dont l'écoulement est continuAppareils de pesée pour bande transporteuse ayant des moyens pour contrôler le taux de remplissage ou de vidange
  • G05D 7/06 - Commande de débits caractérisée par l'utilisation de moyens électriques
  • G05B 19/042 - Commande à programme autre que la commande numérique, c.-à-d. dans des automatismes à séquence ou dans des automates à logique utilisant des processeurs numériques

32.

Weighing scale with pendant weigh platform

      
Numéro d'application 29788428
Numéro de brevet D0984916
Statut Délivré - en vigueur
Date de dépôt 2021-05-25
Date de la première publication 2023-05-02
Date d'octroi 2023-05-02
Propriétaire
  • Mettler-Toledo (Changzhou) Measurement Technology Co., Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Precision Instrument Co., Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Cao, Naiging
  • Zhu, Feibai
  • Zhou, Kai
  • Kempf, Edgar
  • Kontschak, Dieter
  • Medugorac, Kostas

33.

U-SHAPED PLATE FOR WEIGHING MODULE AND WEIGHING MODULE COMPRISING SAME

      
Numéro d'application CN2022116556
Numéro de publication 2023/030455
Statut Délivré - en vigueur
Date de dépôt 2022-09-01
Date de publication 2023-03-09
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Wu, Youyi
  • Li, Chunhui
  • Chao, Zhihe
  • Cai, Jinjie
  • Ding, Chenggang
  • Wang, Shenhui

Abrégé

The present invention provides a U-shaped plate for a weighing module and a weighing module comprising same. The U-shaped plate comprising a first side surface and a second side surface and an upper end surface connecting the first side surface and the second side surface the first and the second side each comprising a bottom end and an upper portion together forming four corners of the U-shaped plate wherein said U-shaped plate is of an inverted U-shaped structure formed by bending a flat and straight metal sheet. A lower width of the U-shaped plate is greater than an upper width thereof. The U-shaped plate is further characterized by an opening for mounting the sensor. The opening extends from the bottom end of the first side surface to the upper portion of the second side surface via an upper end surface. Each of the four corners of the U-shaped plate is configured as a recessed structure According to the present invention, the U-shaped plate having a novel structure, a nice appearance and a reliable performance, when used with a weighing module, perfectly matches the sensor. The design of integrated molding overcomes the defects, realizes safety and practicability, improves competitiveness and provides solution that meets various requirements.

Classes IPC  ?

34.

Detection system using x-rays

      
Numéro d'application 29778374
Numéro de brevet D0980096
Statut Délivré - en vigueur
Date de dépôt 2021-04-13
Date de la première publication 2023-03-07
Date d'octroi 2023-03-07
Propriétaire
  • Mettler-Toledo (Changzhou) Measurement Technology Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Precision Instruments Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Jiang, Peng
  • Hu, Wanchuan
  • Sun, Xu
  • Li, Dongsong
  • Zhao, Liang
  • Gong, Jian
  • Zhu, Guangteng

35.

INTEGRATED HIGH-PRECISION WEIGHING MODULE

      
Numéro d'application CN2022108816
Numéro de publication 2023/006053
Statut Délivré - en vigueur
Date de dépôt 2022-07-29
Date de publication 2023-02-02
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Huang, Dandan
  • Li, Chunhui
  • Ding, Hu
  • Xu, Lei
  • Xu, Yujun
  • Yuan, Xudong
  • Liu, Yanbo
  • Fan, Yifan
  • Ding, Chenggang

Abrégé

The present invention provides an integrated high-precision weighing module, comprising a scale pan (10), a lever (20), an internal calibration system (30), a bottom plate assembly (40),and a sensor main body (50). The scale pan (10) is mounted on the lever (20), and the lever (20) is connected to the sensor main body (50); wherein the internal calibration system (30), the sensor main body (50), and the lever (20) are arranged transversely, and the internal calibration system (30) and the sensor main body (50) are respectively attached to the bottom plate assembly (40). The weighing module of the present invention has less number of parts, smaller in size, and is easy to manufacture, and the internal calibration system and a weighing unit can be implemented with one lever. The weighing module has a great cost advantage over existing products and has additional features such as the internal calibration system, being highly dustproof and waterproof, easy to clean, and the weighing module can ensure long-term reliability of a product and is easy for customers to operate.

Classes IPC  ?

  • G01G 23/01 - Test ou calibrage des appareils de pesée

36.

Key determination method for metal key

      
Numéro d'application 17789855
Numéro de brevet 11762480
Statut Délivré - en vigueur
Date de dépôt 2020-12-29
Date de la première publication 2023-02-02
Date d'octroi 2023-09-19
Propriétaire
  • Mettler-Toledo (Changzhou) Measurement Technology Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Precision Instruments Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Wang, Jingke
  • Wang, Shujun
  • Qian, Shenjian
  • Yang, Yong

Abrégé

A key determination method for a metal key. The method comprises a step of determining whether values output by an electrical parameter converter on a metal key satisfy multiple levels of thresholds, and, a step of setting a press flag of the metal key according to multiple levels of thresholds; and after the metal key is released, determining whether a release flag is valid according to a press model, and if so, clearing the press flag that was previously set. Different press models and different thresholds are selected and configured by means of software, so that personalized choices are provided for respective metal keys, which effectively facilitates different operators in configuring a metal keyboard according to usage habits, thereby improving the operating efficiency. In addition, the setting of different thresholds effectively protects the operational details mean for the exclusive use of operators, thereby achieving the required confidentiality.

Classes IPC  ?

  • G06F 3/03 - Dispositions pour convertir sous forme codée la position ou le déplacement d'un élément
  • G06F 3/02 - Dispositions d'entrée utilisant des interrupteurs actionnés manuellement, p. ex. des claviers ou des cadrans

37.

AN APPARATUS AND A METHOD FOR COMPENSATING TILT OF A WEIGHING SYSTEM

      
Numéro d'application CN2022099604
Numéro de publication 2023/000887
Statut Délivré - en vigueur
Date de dépôt 2022-06-17
Date de publication 2023-01-26
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Wang, Shenhui
  • Liu, Sheng
  • Ge, Yongkan
  • Fang, Yujun
  • Wang, Shuqiang
  • Guo, Wenwei
  • Pan, Jingjing

Abrégé

The present invention relates to an apparatus and a method for compensating tilt. The method for compensating tilt comprises the steps of, S1: generating a tilt compensation model f (θ) for a weighing system on basis of a gravity decomposition model, which is a trigonometric function; S2: obtaining a plurality of calibration data sets based on a calibration performed on the weighing system in a level state and in a tilted state; S3: calculating correlation between the plurality of calibration data sets and the tilt compensation model f (θ); and S4: substituting a measured tilt angle θ into the tilt compensation model f (θ), to calculate a compensated weighing weight based on an uncompensated measurement weight output of the weighing system. The apparatus and the method for compensating tilt proposed in the present invention can provide accurate tilt compensation for a weighing system.

Classes IPC  ?

  • G01G 23/00 - Dispositifs accessoires pour appareils de pesée
  • G01G 23/01 - Test ou calibrage des appareils de pesée

38.

FILTERING METHOD AND FILTERING CONTROL APPARATUS FOR LOAD CELL

      
Numéro d'application CN2022102240
Numéro de publication 2023/274285
Statut Délivré - en vigueur
Date de dépôt 2022-06-29
Date de publication 2023-01-05
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Wang, Shenhui
  • Wei, Along
  • Sun, Qin
  • Wan, Qi
  • Zhang, Song

Abrégé

The present invention provides a filtering method and a filtering control apparatus for a load cell. The filtering method includes: filtering, by using a plurality of filtering units, first weighing data obtained by the load cell, to obtain a plurality of pieces of second weighing data, where the plurality of filtering units have different settling times; obtaining a fluctuation index of each piece of second weighing data, and establishing a correspondence between a fluctuation index and a settling time of each filtering unit; and determining a target filtering unit based on the correspondence according to a weighing requirement, where a fluctuation index of the target filtering unit matches a target precision in the weighing requirement, and a settling time of the target filtering unit matches a target speed in the weighing requirement. The filtering method and the filtering control apparatus of the present invention can achieve fast and good user experience in a weighing process.

Classes IPC  ?

  • G01G 23/10 - Moyens pour amortir les oscillations, p. ex. de fléaux de pesée par des moyens électriques ou magnétiques

39.

DYNAMIC MODULAR CHECKWEIGHER

      
Numéro d'application CN2022098926
Numéro de publication 2022/262771
Statut Délivré - en vigueur
Date de dépôt 2022-06-15
Date de publication 2022-12-22
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Jiang, Wenjun
  • Wang, Shenhui
  • Qiu, Dongjie
  • Cai, Ming

Abrégé

The present invention provides a dynamic modular checkweigher, comprising: a weighing and conveying matrix unit having a weighing and conveying surface composed of a plurality of weighing and conveying sub-units; a weighed object identification unit for identifying a weighed object and a coverage thereof by means of images or weights of the weighing and conveying sub-units; a weighed object conveying movement control unit for controlling arrangements of a plurality of weighed objects on the weighing and conveying matrix unit; a weighed object movement tracking unit for identifying a movement trajectory of a weighed object and creating a time sequence-based data set of movement state, movement position, and weighing signal from data of the weighing and conveying sub-units covered by the weighed object; and a weighed object weighing module unit for acquiring a weighed object data set created on the basis of the weighed object movement tracking unit. The various parts mentioned above are connected to a host system to form a star topology. According to the present invention, package separation functions such as unpacking, arranging, and pulling of a package separation system can be achieved, and mutual interferences in weighing objects by the checkweighercan be reduced.

Classes IPC  ?

  • G01G 19/03 - Appareils ou méthodes de pesée adaptés à des fins particulières non prévues dans les groupes pour peser des objets à roues ou roulants, p. ex. des véhicules pour peser pendant le mouvement

40.

METHOD FOR DETECTING AND REMOVING PERSONNEL INTERFERENCE WHILE MEASURING VOLUME OF AN OBJECT

      
Numéro d'application CN2022091686
Numéro de publication 2022/242490
Statut Délivré - en vigueur
Date de dépôt 2022-05-09
Date de publication 2022-11-24
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Cao, Conghan
  • Fang, Chao
  • Cui, Jindong
  • Wang, Shenhui
  • Zhang, Song
  • Song, Hongqing

Abrégé

The present invention relates to a method for detecting and removing personnel interference while measuring volume of an object. The method includes the following steps of S1: obtaining an image of an object, removing a background information of the image, and converting the image into a binary image; S2: detecting an outline of the object from the binary image, and determining whether the outline of the object extends towards a boundary of the field of view; and if the outline of the object does not extend to the boundary of the field of view, performing S3;S3: measuring the volume of the object; else performing step S4; S4: removing an extending part from the outline of the object, using a morphological method; and if the extending part is removable, then performing S5; S5: measuring the volume of the object based on an outline of the object obtained after the extended part is removed, and issuing a class 1 warning; else performing step S6; S6: issuing a class 2 warning, and performing S7; S7: ending the measurement. The method of detecting and removing the personnel interference while measuring the volume of an object as disclosed in the present invention can effectively improve efficiency of the object volume measurement.

Classes IPC  ?

  • G06T 7/13 - Détection de bords
  • G06T 7/62 - Analyse des attributs géométriques de la superficie, du périmètre, du diamètre ou du volume
  • G06T 7/194 - DécoupageDétection de bords impliquant une segmentation premier plan-arrière-plan

41.

VOLUME MEASUREMENT METHOD AND AN APPARATUS BASED ON A DEPTH CAMERA, AND A COMPUTER-READABLE MEDIUM

      
Numéro d'application CN2022088772
Numéro de publication 2022/228343
Statut Délivré - en vigueur
Date de dépôt 2022-04-24
Date de publication 2022-11-03
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Cao, Conghan
  • Yin, Jiang
  • Zhang, Song
  • Fang, Chao
  • Song, Hongqing
  • Dai, Zhenyu
  • Qian, Fenping
  • Cheng, Huanbing
  • Wang, Shenhui

Abrégé

The present invention relates to a volume measurement method and apparatus based on a depth camera, and a computer-readable medium. The method includes: acquiring a first depth image of a reference countertop, where the first depth image includes coordinate data and depth data of a plurality of pixels, and the reference countertop is adapted to the placement of a measured object; substituting the coordinate data and the depth data into at least two countertop empirical equations, to obtain at least two simulated images, wherein each of the countertop empirical equations is used to represent a height variation pattern of the reference countertop; calculating a correlation between each of the simulated images and the first depth image; using a simulated image with the highest correlation as a target image of the reference countertop; and obtaining a countertop height of the reference countertop based on the target image, wherein the countertop height is used to calculate a height of the measured object, and the height is used to calculate a volume of the measured object. The present invention improves the accuracy of object volume measurement.

Classes IPC  ?

  • G01B 11/00 - Dispositions pour la mesure caractérisées par l'utilisation de techniques optiques
  • G01B 11/24 - Dispositions pour la mesure caractérisées par l'utilisation de techniques optiques pour mesurer des contours ou des courbes
  • G01B 21/04 - Dispositions pour la mesure ou leurs détails, où la technique de mesure n'est pas couverte par les autres groupes de la présente sous-classe, est non spécifiée ou est non significative pour mesurer la longueur, la largeur ou l'épaisseur en mesurant les coordonnées de points

42.

LIQUID CRYSTAL DISPLAY SCREEN WITH IMPROVED RESISTANCE TO ELECTROMAGNETIC INTERFERENCE

      
Numéro d'application CN2022086474
Numéro de publication 2022/222803
Statut Délivré - en vigueur
Date de dépôt 2022-04-13
Date de publication 2022-10-27
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Xie, Jianzhong
  • Wang, Luo
  • Che, Yong

Abrégé

The present invention provides a display device, and an electronic weighing instrument or a cash register comprising the same. The display device comprises a commercial high-definition liquid crystal display screen (10) having a viewing side and a mounting side, and further comprises a sheet metal support frame (10-2) on the mounting side; a metal-stud support plate (20) provided on the mounting side of the liquid crystal display screen (10); and at least one ground isolator (40) having a first terminal and a second terminal; wherein the ground isolator (40) is mounted between the sheet metal support frame (10-2) and the metal-stud support plate (20), and the first terminal (40B-3) of the ground isolator (40) is connected to the sheet metal support frame (10-2), and the second terminal (40B-4) of the ground isolator (40) is connected to the metal-stud support plate (20). According to the present invention, inserting a plurality of ground isolators (40) between the sheet metal support frame (10-2) and the metal-stud support plate (20) can eliminate a high-frequency eddy current induced on the sheet metal support frame, and alleviate spatial coupling interference of electrostatic discharge (ESD).

Classes IPC  ?

  • G02F 1/1333 - Dispositions relatives à la structure
  • G02F 1/1362 - Cellules à adressage par une matrice active

43.

METHOD FOR ASSOCIATING A COMMODITY AND A PICTURE THEREOF

      
Numéro d'application CN2022086249
Numéro de publication 2022/218286
Statut Délivré - en vigueur
Date de dépôt 2022-04-12
Date de publication 2022-10-20
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s) Sun, Mingxin

Abrégé

The present invention relates to a method for associating a commodity and a picture thereof. The method of associating includes: step S1 of creating a commodity list; step S2 of selecting commodities in the commodity list one by one, and obtaining corresponding pictures based on the commodities selected; step S3 of generating a mapping association between the commodity list and the corresponding pictures which is achieved by changing a name of the corresponding picture to a number of the commodity selected or by changing an attribute of the corresponding picture to a number of the commodity selected; and step S4 of delivering the pictures and the mapping association to a retail device, so that the retail device displays the pictures corresponding to the commodity list, according to the mapping association generated. The method of associating a commodity and a picture thereof proposed in the present invention can avoid the work of renaming the pictures, and can effectively improve the efficiency of associating a commodity with a picture thereof.

Classes IPC  ?

  • G06Q 30/06 - Transactions d’achat, de vente ou de crédit-bail
  • G07F 9/02 - Dispositifs pour donner l'alarme ou une indication, p. ex. quand l'appareil est videAménagements publicitaires des appareils déclenchés par des pièces de monnaie

44.

AN ACTIVATION METHOD FOR AN ELECTRONIC DEVICE

      
Numéro d'application CN2022086252
Numéro de publication 2022/218287
Statut Délivré - en vigueur
Date de dépôt 2022-04-12
Date de publication 2022-10-20
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Sun, Mingxin
  • Zhu, Feibai

Abrégé

The present invention relates to a method of activating an electronic device. The activation method includes: step S1: converting, by the electronic device, its identification number into a first identifiable code, and displaying the first identifiable code; step S2: scanning the first identifiable code to obtain an identification code of the electronic device; step S3: sending the identification code to an authentication system, for generating an activation code; step S4: obtaining the activation code, converting the activation code into a second identifiable code, and displaying the second identifiable code; and step S5: scanning the second identifiable code using electronic device to obtain the activation code. According to the method proposed in the present invention, an activation code of the electronic device does not need to be manually entered, thereby shortening an activation period of the electronic device.

Classes IPC  ?

  • G07B 15/06 - Dispositions pour la tarification routière modulable ou la taxation de congestion de véhicules ou d’utilisateurs de véhicules, p. ex. systèmes de péage automatiques
  • A61B 90/98 - Moyens d’identification pour les patients ou les instruments, p. ex. étiquettes utilisant des moyens électromagnétiques, p. ex. transpondeurs
  • G06F 21/34 - Authentification de l’utilisateur impliquant l’utilisation de dispositifs externes supplémentaires, p. ex. clés électroniques ou cartes à puce intelligentes
  • G06Q 20/32 - Architectures, schémas ou protocoles de paiement caractérisés par l'emploi de dispositifs spécifiques utilisant des dispositifs sans fil
  • G06Q 20/34 - Architectures, schémas ou protocoles de paiement caractérisés par l'emploi de dispositifs spécifiques utilisant des cartes, p. ex. cartes à puces ou cartes magnétiques
  • H04L 9/40 - Protocoles réseaux de sécurité
  • H04W 4/50 - Fourniture de services ou reconfiguration de services
  • H04W 4/80 - Services utilisant la communication de courte portée, p. ex. la communication en champ proche, l'identification par radiofréquence ou la communication à faible consommation d’énergie
  • H04W 8/20 - Transfert de données utilisateur ou abonné
  • H04W 12/30 - Sécurité des dispositifs mobilesSécurité des applications mobiles

45.

A MODULAR CAMERA AND A SCALE BODY COMPRISING THE SAME

      
Numéro d'application CN2022086369
Numéro de publication 2022/218307
Statut Délivré - en vigueur
Date de dépôt 2022-04-12
Date de publication 2022-10-20
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Chen, Jian
  • Li, Yujie

Abrégé

The present invention provides a modular camera and a scale body comprising same. The modular camera comprises a camera module and a plurality of accessories, wherein the camera module comprises a camera, a camera housing and an anti-fouling lens; a camera fixing screw bore and an extended screw bore are formed in the camera housing; and the camera is fixed to the camera fixing screw bore and the extended screw bore and is interconnected with the plurality of accessories to form a consolidated structure. In the present invention, a basic module of the camera and plurality of accessories are combined to be conveniently mounted on different scale bodies, and other auxiliary accessories can be assembled by using adapters, thereby achieving cooperative use of various structures, and remarkably reducing research and development and production costs.

Classes IPC  ?

  • F16M 13/04 - Autres supports ou appuis pour positionner les appareils ou les objetsMoyens pour maintenir en position les appareils ou objets tenus à la main pour être portés par une personne ou pour maintenir fixe par rapport à une personne, p. ex. par des chaînes

46.

DIGITAL LOAD CELL WITH REDUNDANCY DESIGN

      
Numéro d'application CN2022087205
Numéro de publication 2022/199712
Statut Délivré - en vigueur
Date de dépôt 2022-04-15
Date de publication 2022-09-29
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Zhang, Ying
  • Lin, Hongzhi
  • Wu, Jianwei
  • Xu, Miao

Abrégé

The present invention provides a digital load cell with redundancy design, the digital load cell including: at least one force measuring element that measures a load force applied to the digital load cell, where each force measuring element converts the load force into one analog signal; and one or more analog-to-digital conversion modules, where each force measuring element is connected to at least one analog-to-digital conversion module, and the analog-to-digital conversion module converts the analog signal into a digital signal. According to the digital load cell of the present invention, redundancy design is provided at least for both the force measuring element and the analog-to-digital conversion module, which can effectively ensure the proper operation of the digital load cell.

Classes IPC  ?

  • G01G 23/01 - Test ou calibrage des appareils de pesée

47.

DIGITAL LOAD CELL AND WEIGHING SYSTEM

      
Numéro d'application CN2022087207
Numéro de publication 2022/199713
Statut Délivré - en vigueur
Date de dépôt 2022-04-15
Date de publication 2022-09-29
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Zhang, Ying
  • Lin, Hongzhi
  • Wu, Jianwei
  • Xu, Miao

Abrégé

The present invention relates to a digital load cell and a weighing system. The digital load cell includes: a strain bridge including a Wheatstone bridge formed by connecting four resistive strain gauges and a temperature sensing resistance element connected in series to the Wheatstone bridge; an analog-to-digital conversion circuit that excites the strain bridge, where the analog-to-digital conversion circuit includes a plurality of input channels and an output terminal, the input channels are configured to receive feedback signals from the strain bridge, and the output terminal is configured to output the feedback signals after analog-to-digital conversion; and a signal processor including a load force calculation unit and a state information matrix calculation unit, where the load force calculation unit calculates a differential voltage and a compensation function based on the feedback signals obtained from the output terminal of the analog-to-digital conversion circuit, and calculates a load force value based on the differential voltage and the compensation function. The present invention proposes the digital load cell and the weighing system, which can provide comprehensive and effective real-time health state monitoring for the digital load cell.

Classes IPC  ?

  • G01G 3/14 - Appareils de pesée caractérisés par l'utilisation d'organes déformables par élasticité, p. ex. balances à ressort dans lesquels l'élément de pesée est constitué par un corps solide soumis à une pression ou une traction pendant la pesée utilisant la mesure des variations de la résistance électrique

48.

WEIGHT STABILITY CONTROL METHOD FOR DEADWEIGHT FORCE STANDARD MACHINE

      
Numéro d'application CN2022079514
Numéro de publication 2022/188738
Statut Délivré - en vigueur
Date de dépôt 2022-03-07
Date de publication 2022-09-15
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Xu, Hanqing
  • Zhang, Leiyue

Abrégé

The present invention provides a weight stability control method for a deadweight force standard machine, which method comprises the steps: S1, rapidly moving a weight platform downwards from an initial position, lifting a first-stage weight by a weight disk, and starting to load the first-stage weight starts; S2, starting to slowly displace the first-stage weight when the first-stage weight communicates with a second-stage weight via corresponding lifting components for the first time; S3, after the first-stage weight is completely separated from the second-stage weight, rapidly displacing the weight platform downwards again until a gap between the first-stage weight and the second-stage weight reaches half of a pre-set gap value; and S4, repeating steps S1-S3 in the loading process of the first-stage weight for the second-stage weight to the nth-stage weight in sequence until all the weights are loaded. The present invention can achieve control over the stability of the weights, effectively solve the weight shaking problem and improve the testing efficiency.

Classes IPC  ?

  • G01G 23/01 - Test ou calibrage des appareils de pesée

49.

Hysteresis compensation method for a weighing device

      
Numéro d'application 17631000
Numéro de brevet 12055431
Statut Délivré - en vigueur
Date de dépôt 2020-07-29
Date de la première publication 2022-08-25
Date d'octroi 2024-08-06
Propriétaire
  • Mettler-Toledo (Changzhou) Measurement Technology Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Precision Instruments Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Zhang, Song
  • Wang, Shenhui
  • Qian, Shenjian
  • Sun, Qin

Abrégé

A hysteresis compensation method, in which a hysteresis error is calculated for an obtained weighing value by means of an ideal hysteresis error model, and an ideal compensation value is further calculated by means of an ideal hysteresis compensation model, wherein by using a proportional relationship between a system hysteresis error model established in hysteresis calibration and the ideal hysteresis error model, the ideal compensation value is corrected to a final compensation value. The method establishes a mapping relationship between the system's own hysteresis compensation and the ideal state hysteresis compensation, and realizes the transformation of a complicated hysteresis error compensation situation into an ideal hysteresis error compensation situation. The method not only has a good compensation effect for the hysteresis error compensation under ideal situations, but also can obtain an excellent hysteresis compensation effect under complicated hysteresis situations.

Classes IPC  ?

  • G01G 23/01 - Test ou calibrage des appareils de pesée
  • G01G 23/37 - Dispositifs indicateurs, p. ex. pour indication à distanceDispositifs enregistreursÉchelles, p. ex. graduées indiquant le poids par des moyens électriques, p. ex. par utilisation de cellules photo-électriques impliquant un comptage numérique

50.

METHOD OF WEIGHING USING OBJECT RECOGNITION AND DEVICE THEREFOR

      
Numéro d'application 17631196
Statut En instance
Date de dépôt 2020-07-29
Date de la première publication 2022-08-18
Propriétaire
  • Mettler-Toledo (Changzhou) Measurement Technology Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Precision Instruments Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Zhang, Song
  • Liu, Kan
  • Wang, Shenhui
  • Wang, Zhiqiang
  • Yin, Kai

Abrégé

A method of weighing using a scale (10) comprises the steps of: recognizing at least one of a plurality of objects placed within an object recognition area (A) of a platform (20) of the scale (10), and weighing the plurality of objects placed on the platform (20) of the scale (10) to determine a total weight of the plurality of objects. A weighing device (10) comprises the platform (20) configured as a plane, and utilizes the aforementioned weighing method. The method of weighing is advantageous in that it reduces the difficulty of object recognition using an algorithm by increasing the degree to which the object on the weighing platform fits the algorithm, reduces the complexity of the operation flow and the time required, and effectively increases the precision and accuracy of object recognition.

Classes IPC  ?

  • G01G 19/414 - Appareils ou méthodes de pesée adaptés à des fins particulières non prévues dans les groupes avec dispositions pour indiquer, enregistrer ou calculer un prix ou d'autres quantités dépendant du poids utilisant des moyens de calcul électromécaniques ou électroniques utilisant uniquement des moyens de calcul électroniques
  • G01G 21/22 - Plateaux de pesée ou autres récipients de peséePlates-formes de pesée
  • G06V 20/50 - Contexte ou environnement de l’image
  • G06V 10/70 - Dispositions pour la reconnaissance ou la compréhension d’images ou de vidéos utilisant la reconnaissance de formes ou l’apprentissage automatique

51.

WEIGHING SYSTEM AND WEIGHING METHOD WITH OBJECT RECOGNITION

      
Numéro d'application 17631088
Statut En instance
Date de dépôt 2020-07-29
Date de la première publication 2022-08-11
Propriétaire
  • Mettler-Toledo (Changzhou) Measurement Technology Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Precision Instruments Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Zhang, Song
  • Wang, Shenhui
  • Qian, Shenjian
  • Cui, Jindong
  • Yang, Gang

Abrégé

A weighing method comprises the steps of: recognizing one or more objects to be detected on a first scale platform top (A) or within an object recognition area of the first scale platform top (A), and weighing the objects to be detected that are placed on a second scale platform top (B). A weighing system comprises at least two scales having scale platform tops utilizing the weighing method outlined above. The weighing method reduces the difficulty of algorithm recognition by increasing the degree to which the object on the weighting platform fits the algorithm, reduces the complexity of operation flow and the time required, and effectively increases the precision and accuracy of object recognition.

Classes IPC  ?

  • G01G 19/414 - Appareils ou méthodes de pesée adaptés à des fins particulières non prévues dans les groupes avec dispositions pour indiquer, enregistrer ou calculer un prix ou d'autres quantités dépendant du poids utilisant des moyens de calcul électromécaniques ou électroniques utilisant uniquement des moyens de calcul électroniques
  • G01G 19/415 - Appareils ou méthodes de pesée adaptés à des fins particulières non prévues dans les groupes avec dispositions pour indiquer, enregistrer ou calculer un prix ou d'autres quantités dépendant du poids utilisant des moyens de calcul électromécaniques ou électroniques utilisant uniquement des moyens de calcul électroniques combinés à des moyens d'enregistrement

52.

Dynamic weighing device

      
Numéro d'application 16949318
Numéro de brevet 11445341
Statut Délivré - en vigueur
Date de dépôt 2020-10-26
Date de la première publication 2022-07-07
Date d'octroi 2022-09-13
Propriétaire
  • Mettler-Toledo (Changzhou) Precision Instruments Co., Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Measurement Technology Co., Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Tan, Dake
  • Cai, Lifeng

Abrégé

A dynamic weighing device has a plurality of weighing sensors that constitute a weighing sensor network via Ethernet. One of the weighing sensors is selected as a primary node, which performs time synchronization with the other nodes via a time synchronization protocol. Alternatively, the other nodes synchronize a time offset relative to the time of the primary node. Each weighing sensor continuously packetizes and sends a plurality of consecutive pieces of weighing information to a terminal apparatus. The terminal apparatus calculates a weighed weight result of the dynamic weighing device at the same moment, based on time information in the weighing information obtained through depacketization, In such a weighing sensor network, by means of the time synchronization, weighing data at each moment is accurate when the weighing data is processed on a terminal such as a meter, thereby improving the reliability of sampling.

Classes IPC  ?

  • H04W 4/38 - Services spécialement adaptés à des environnements, à des situations ou à des fins spécifiques pour la collecte d’informations de capteurs
  • H04J 3/06 - Dispositions de synchronisation
  • H04L 1/00 - Dispositions pour détecter ou empêcher les erreurs dans l'information reçue
  • H04W 84/20 - Dispositions meneuses-suiveuses
  • H04W 84/22 - Réseaux auto-organisés, p. ex. réseaux ad hoc ou réseaux de détection avec accès aux réseaux câblés

53.

TELESCOPING ELECTRIC PIPETTE CONTROLLER

      
Numéro d'application 17645074
Statut En instance
Date de dépôt 2021-12-20
Date de la première publication 2022-06-30
Propriétaire
  • Mettler-Toledo (Changzhou) Measurement Technology Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Precision Instruments Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Zhao, Bo
  • Zhou, Bo

Abrégé

A telescoping electric pipette controller has a handle, a head end portion, an outer shell and a manual retainer. One end of the head end portion is arranged in an end portion of the handle in a penetrating manner, the outer shell is sheathed over an outer surface of the end portion of the handle, and one end portion of the manual retainer is rotatably connected to the outer shell. By means of opening or fastening the manual retainer, one end portion of the manual retainer is released outwards or pressed inwards against the head end portion, allowing extension and retraction of the head end portion relative to the handle. The extension and retraction, as well as the locking of part of a grip structure, are controlled by means of a switch, allowing the grip to change the length within a specific range.

Classes IPC  ?

  • B01L 3/02 - BurettesPipettes
  • G01N 35/10 - Dispositifs pour transférer les échantillons vers, dans ou à partir de l'appareil d'analyse, p. ex. dispositifs d'aspiration, dispositifs d'injection

54.

HANGING SCALE SENSOR APPARATUS AND A HANGING SCALE

      
Numéro d'application CN2021130658
Numéro de publication 2022/105712
Statut Délivré - en vigueur
Date de dépôt 2021-11-15
Date de publication 2022-05-27
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Cao, Naiqing
  • Kempf, Edgar
  • Kontschak, Dieter

Abrégé

A hanging scale sensor apparatus (1) and a hanging scale (100) are provided. The hanging scale sensor apparatus (1) comprising a weighing sensor (10), an adapter beam (20), a support base (30) and a scale pan suspension structure (40).The adapter beam (20) is connected to one end of a bottom face of the weighing sensor (10). The support base (30) is connected to the other end of the bottom face of the weighing sensor (10). The adapter beam (20) and the support base (30) are positioned directly below the weighing sensor (10); and the scale pan suspension structure (40) is connected to the adapter beam (20) for positioning the hanging scale sensor apparatus (1).The hanging scale sensor apparatus (1) may be assembled separately, may be placed inside a scale body (50) according to requirements, and may further adjust the internal space of the scale body (50). The hanging scale sensor apparatus (1) has an adjustable installation position, and can realize two-way limitations, prevent overloading, and occupy small installation space. The hanging scale sensor apparatus (1) has a small overall size and thus has little influence on the structural layout of the scale body (50), and is suitable for the design of a super-thin scale body structure.

Classes IPC  ?

  • G01G 23/00 - Dispositifs accessoires pour appareils de pesée
  • G01G 19/14 - Appareils ou méthodes de pesée adaptés à des fins particulières non prévues dans les groupes pour peser des charges suspendues

55.

LOAD CELL WITH ROBERVAL STRUCTURE HAVING ANTI-OFFSET FUNCTION, AND WEIGHING DEVICE

      
Numéro d'application CN2021139956
Numéro de publication 2022/096028
Statut Délivré - en vigueur
Date de dépôt 2021-12-21
Date de publication 2022-05-12
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Lin, Hongzhi
  • Xu, Lei
  • Yang, Li

Abrégé

The present invention provides a load cell with a Roberval structure having an anti-offset function, and a weighing device. The load cell comprises: an elastic element and a plurality of strain detection elements, the strain detection elements being mounted on the elastic element; the elastic element comprises: a loading portion for receiving a load from a connector, a fixing portion for fixing the elastic element, a strain generation portion for converting the load into deformation, and a parallel guide beam for transferring the load and keeping the loading portion translational when loaded; the strain generation portion is composed of at least one hollow cavity body, the loading portion and the fixing portion are respectively located on left and right sides of the strain generation portion, and the parallel guide beam is located at upper and lower portions of the strain generation portion; and the centre of rotation and the geometric centre of the strain generation portion coincide when the load cell with the Roberval structure is loaded. The load cell and the weighing device of the present invention can effectively compensate a non-linear offset error. By adjusting the stiffness of upper and lower beams of the elastic element, the non-linear offset error is compensated from the aspect of mechanical structure design.

Classes IPC  ?

  • G01G 3/14 - Appareils de pesée caractérisés par l'utilisation d'organes déformables par élasticité, p. ex. balances à ressort dans lesquels l'élément de pesée est constitué par un corps solide soumis à une pression ou une traction pendant la pesée utilisant la mesure des variations de la résistance électrique
  • G01G 21/24 - Guides ou articulations pour assurer un déplacement parallèle des plateaux de pesée

56.

Status detection method and apparatus for load cell

      
Numéro d'application 17448759
Numéro de brevet 12007270
Statut Délivré - en vigueur
Date de dépôt 2021-09-24
Date de la première publication 2022-03-31
Date d'octroi 2024-06-11
Propriétaire
  • Mettler-Toledo (Changzhou) Precision Instruments Co., Ltd (Chine)
  • Mettler-Toledo (Changzhou) Measurement Technology Co., Ltd (Chine)
  • Mettler Toledo International Trading (Shanghai) Co., Ltd (Chine)
Inventeur(s)
  • Wu, Jianwei
  • Yang, Jianqiang
  • Bi, Liugang

Abrégé

A method and apparatus are provided for detecting the status of a load cell. When method for detecting the status of a load cell is applied to a multi-point weighing system, the method first collects characteristic sensing data of load cells. It then calculates an anomaly in the characteristic sensing data. From this, it acquires and generates an output signal corresponding to the load cell information when the anomaly exists. The method and apparatus for detecting the status of a load cell can help customers accurately locate a faulty, or potentially faulty, sensor, so as to avoid a measurement error due to sensor problems and improve user satisfaction.

Classes IPC  ?

  • G01G 23/01 - Test ou calibrage des appareils de pesée
  • G01G 23/18 - Dispositifs indicateurs, p. ex. pour indication à distanceDispositifs enregistreursÉchelles, p. ex. graduées

57.

Linear compensation apparatus and weighing system for accurate weighing and measurement of fine materials

      
Numéro d'application 17446788
Numéro de brevet 11885666
Statut Délivré - en vigueur
Date de dépôt 2021-09-02
Date de la première publication 2022-03-10
Date d'octroi 2024-01-30
Propriétaire
  • Mettler-Toledo (Changzhou) Precision Instruments Co., Ltd (Chine)
  • Mettler-Toledo (Changzhou) Measurement Technology Co., Ltd (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd (Chine)
Inventeur(s)
  • Cai, Jinjie
  • Li, Xiang
  • Chao, Zhihe
  • Ding, Chenggang
  • Zhang, Xiaomin
  • Li, Chunhui

Abrégé

Accurate weighing and measurement of fine materials is provided by a linear compensation apparatus and a weighing system. The linear compensation apparatus has a weight loading mechanism (10) with a bearing plate (11), a drive apparatus (12), and a measuring weight (13). The drive apparatus is mounted onto the bearing plate, the measuring weight is connected to the drive apparatus, and, by hoisting or lowering the measuring weight with the drive apparatus, loads from the bearing plate are adjusted. The linear compensation apparatus and the weighing system greatly reduce device costs and labor costs in a batching process, save time and effort, have no risk of cross-contamination, and achieve automated production operation.

Classes IPC  ?

  • G01G 23/01 - Test ou calibrage des appareils de pesée
  • G01G 21/23 - Supports ou suspensions de plates-formes de pesée
  • G01G 23/04 - Mécanismes de dégagementMécanismes de blocage pour appareils de pesée de précision

58.

Method for measuring energy efficiency of a quantitative weighing device

      
Numéro d'application 17445233
Numéro de brevet 12098948
Statut Délivré - en vigueur
Date de dépôt 2021-08-17
Date de la première publication 2022-02-24
Date d'octroi 2024-09-24
Propriétaire
  • Mettler-Toledo (Changzhou) Precision Instruments Co., Ltd (Chine)
  • Mettler-Toledo (Changzhou) Measurement Technology Co., Ltd (Chine)
  • Mettler Toledo International Trading (Shanghai) Co., Ltd (Chine)
Inventeur(s)
  • Wang, Shenhui
  • Wan, Qi
  • Wang, Jingke
  • Zhang, Yu
  • Zhao, Yupeng

Abrégé

A method is provided for measuring an energy efficiency of a quantitative weighing device. A data measurement part is formed by: recording a control time of fast charging, recording a control time of slow charging, recording a comparison prohibition time, and recording weighing data. A current device reliability parameter, a fast charging feed flow, and a slow charging feed flow are calculated, based on the comparison prohibition time and the control time of slow charging. The fastest feed time under a requirement of a target reliability parameter is calculated as the difference between the target reliability parameter and the calculated control reliability parameter. By using the method, application data, such as capability of a quantitative control device and energy efficiency of the quantitative weighing device, can be intuitively obtained. This facilitates commissioning, maintenance, and use of the quantitative weighing control device.

Classes IPC  ?

  • G01G 13/04 - Moyens pour charger automatiquement des plateaux de pesée ou d'autres récipients, p. ex. récipients à jeter après usage, l'opération étant commandée par le mécanisme de pesée comportant des moyens de remplissage au goutte à goutte commandés par le mécanisme de pesée, permettant de remplir complètement le récipient au poids voulu
  • B65B 57/20 - Emploi de dispositifs de comptage à la commande de l'alimentation des objets
  • G01G 13/00 - Appareils de pesée avec remplissage ou vidange automatiques pour peser des quantités données d'un produit
  • G01G 19/414 - Appareils ou méthodes de pesée adaptés à des fins particulières non prévues dans les groupes avec dispositions pour indiquer, enregistrer ou calculer un prix ou d'autres quantités dépendant du poids utilisant des moyens de calcul électromécaniques ou électroniques utilisant uniquement des moyens de calcul électroniques
  • G01G 23/01 - Test ou calibrage des appareils de pesée

59.

METHOD AND SYSTEM FOR ECCENTRIC LOAD ERROR CORRECTION

      
Numéro d'application CN2021105305
Numéro de publication 2022/012416
Statut Délivré - en vigueur
Date de dépôt 2021-07-08
Date de publication 2022-01-20
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Wang, Shenhui
  • Zha, Yujuan
  • Zhang, Song
  • Ji, Genjun
  • Fu, Qiang
  • Han, Jinkang
  • Li, Jinli

Abrégé

The present invention discloses a method and system for eccentric load error correction. The correction method comprises the steps of: obtaining a plurality of weighing data sets for a weight having a mass value, when the weight is loaded at different positions on a weighing platform of a weighing device; calculating differences between each of the weighing data sets and the average value of the plurality of weighing data sets or the mass value of the weight; calculating and updating sensor correction coefficients when the maximum absolute value of the differences exceeds a pre-set threshold; then updating the weighing data sets; and repeating the above steps until the absolute values of all the differences are less than the pre-set threshold. The correction system comprises a processing device and a communication device, wherein the processing device and the communication device perform the above correction method.

Classes IPC  ?

  • G01G 23/00 - Dispositifs accessoires pour appareils de pesée

60.

A METHOD FOR CONFIGURING A CALIBRATION MECHANISM AND FORCE SENSOR THEREOF

      
Numéro d'application CN2021101760
Numéro de publication 2022/001772
Statut Délivré - en vigueur
Date de dépôt 2021-06-23
Date de publication 2022-01-06
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Xu, Lei
  • Emery, Jean Christophe
  • Yang, Li

Abrégé

The present invention discloses force sensor (100) and a method for configuring a calibration mechanism in such a force sensor (100), the method comprising the steps of: coupling an end of the calibration lever (1071) to a loading end (103) of the force sensor (100); adjusting, in a no-load condition, the gravity centre (G0) of the unloaded calibration lever (1071), so that the gravity centre (G0) is lying on a substantially horizontal line (H) which goes through the centre of a calibration lever fulcrum (1031) at a fixed end (103) of the force sensor (100); and adjusting, in a full-load condition, the gravity centre (G1) of the calibration lever (1071) loaded with the calibration weight (106), so that the gravity centre (G1) is lying on the substantially horizontal line (H) which goes through the centre of the calibration lever fulcrum (1031). By controlling the position of the lever and the position of the fulcrum in the force sensor to be approximately on the same horizontal line, the calibration error caused by the inclination in force sensor is reduced.

Classes IPC  ?

  • G01G 23/01 - Test ou calibrage des appareils de pesée

61.

METHOD AND DEVICE FOR DIAGNOSING WEIGHING SYSTEM

      
Numéro d'application 17303579
Statut En instance
Date de dépôt 2021-06-02
Date de la première publication 2021-12-09
Propriétaire
  • Mettler-Toledo (Changzhou) Precision Instruments Ltd (Chine)
  • Mettler-Toledo (Changzhou) Measurement Technology Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) CO., Ltd. (Chine)
Inventeur(s)
  • Yang, Jianqiang
  • Cai, Lifeng
  • Wu, Jianwei

Abrégé

A method and device are provided for diagnosing a weighing system. In the method, the weighing system acquires an intrinsic parameter, a status parameter, and an operating parameter of various components of the weighing system, environmental parameters of the weighing system application, and communication data and interaction data among all the components. A first-level prompt is sent when the status of any of the components is abnormal, such that the system stops operating. A second-level prompt is sent when the status of each of the components is normal and the service life status of at least one of the components reaches a preset threshold. A third-level prompt is sent when the status of each of the components is normal and a system performance abnormality event is identified for the performance status of the system. A fourth-level prompt is sent when the status of each of the components is normal.

Classes IPC  ?

62.

Method and system for measuring interference in a checkweighing device

      
Numéro d'application 17238295
Numéro de brevet 11846539
Statut Délivré - en vigueur
Date de dépôt 2021-04-23
Date de la première publication 2021-12-02
Date d'octroi 2023-12-19
Propriétaire
  • Mettler-Toledo (Changzhou) Precision Instruments Ltd (Chine)
  • Mettler-Toledo (Changzhou) Measurement Technology Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Wang, Shenhui
  • Wu, Huifang
  • Cai, Ming
  • Han, Qi
  • Qiu, Dongjie
  • Jiang, Wenjun
  • Cui, Jindong
  • Zhu, Bin

Abrégé

A method and a system measure interfering influences on a checkweighing device. In the method, external interference data are obtained, as are interference data from the checkweighing device itself and interference data from an object being weighed, by calculating or mapping the weighing error data in the stationary state, in the operating state, and in the weighing state. The system for measuring the interference uses a meter and a processing apparatus. The meter and the processing apparatus perform an interference measurement and a compensation method. The amount of interference in the checkweighing device in each state and the amount of influence of the interference on the weighing performance is obtained, thereby facilitating the production, debugging, maintenance, and use of a checkweighing device.

Classes IPC  ?

  • G01G 11/00 - Appareils pour peser au passage un produit dont l'écoulement est continuAppareils de pesée pour bande transporteuse
  • G01G 15/00 - Dispositions pour contrôler le poids de produits déversés dans des récipients amovibles
  • G01G 19/387 - Appareils ou méthodes de pesée adaptés à des fins particulières non prévues dans les groupes pour peser par combinaison, c.-à-d. en choisissant une combinaison d'articles dont le poids total ou le nombre est le plus proche d'une valeur désirée
  • G01G 23/01 - Test ou calibrage des appareils de pesée

63.

High-precision weighing module with reduced thermal gradient

      
Numéro d'application 17302655
Numéro de brevet 11733084
Statut Délivré - en vigueur
Date de dépôt 2021-05-10
Date de la première publication 2021-11-11
Date d'octroi 2023-08-22
Propriétaire
  • Mettler-Toledo (Changzhou) Precision Instruments Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Measurement Technology Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Huang, Dandan
  • Li, Xiang
  • Zhang, Ping
  • Cai, Jinjie

Abrégé

An integrated high-precision weighing module has a shell, an electromagnetic force sensor, a printed circuit board (PCB), a weighing pan component, a support ring, and an air baffle ring. The electromagnetic force sensor and the PCB are mounted in the shell. A bearing head of the electromagnetic force sensor extends upward from an upper end portion of the shell. The support ring sheathes the bearing head. The weighing pan component is mounted on the bearing head, with the support ring located between the weighing pan component and the shell. The air baffle ring is disposed around the weighing pan component and located on the support ring. A first airflow channel is formed among the shell, the support ring, and the air baffle ring. At least part of airflow in the shell flows to the outside through the first airflow channel.

Classes IPC  ?

  • G01G 7/02 - Appareils de pesée dans lesquels l'équilibrage est assuré par une action magnétique, électromagnétique ou électrostatique, ou par des moyens non prévus dans les groupes par action électromagnétique
  • G01G 21/02 - Aménagements de paliers
  • G01G 21/22 - Plateaux de pesée ou autres récipients de peséePlates-formes de pesée
  • G01G 21/28 - BâtisCages
  • G01G 23/00 - Dispositifs accessoires pour appareils de pesée

64.

METHOD FOR CONTROLLING DISCHARGE FLOW RATE IN A LOSS-IN-WEIGHT SCALE

      
Numéro d'application CN2021082318
Numéro de publication 2021/190486
Statut Délivré - en vigueur
Date de dépôt 2021-03-23
Date de publication 2021-09-30
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Wang, Shenhui
  • Wang, Jingke
  • Wan, Qi
  • Wang, Xiaosong
  • Liu, Zhengquan
  • Yang, Gang
  • Zhang, Song

Abrégé

A method for controlling a discharge flow rate of a loss-in-weight scale is provided, wherein control outputs are continuously changed to save the time necessary for data stabilization, and a curve of relationship between the discharge flow rate and the control output is obtained by using the functional relationship between the control output and time and the functional relationship between the material weight and time. The discharge flow rate can be precisely controlled by directly selecting or inputting a value of the control output, to achieve the objectives of direct controlling and of avoiding the time for data stabilization.

Classes IPC  ?

  • G01G 13/24 - Aménagements apportés à un mécanisme de pesée pour commander le remplissage ou la vidange automatique
  • G05B 19/05 - Automates à logique programmables, p. ex. simulant les interconnexions logiques de signaux d'après des diagrammes en échelle ou des organigrammes
  • G01G 11/08 - Appareils pour peser au passage un produit dont l'écoulement est continuAppareils de pesée pour bande transporteuse ayant des moyens pour contrôler le taux de remplissage ou de vidange

65.

MECHANICAL APPARATUS LEVELLING MECHANISM AND LEVELLING METHOD THEREFOR

      
Numéro d'application CN2021082573
Numéro de publication 2021/190535
Statut Délivré - en vigueur
Date de dépôt 2021-03-24
Date de publication 2021-09-30
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Zheng, Shaowen
  • Chen, Dengyou
  • Hui, Huaqiang
  • Wu, Gang
  • Zhao, Qingsong
  • Qian, Long
  • Hao, Pengbo

Abrégé

A mechanical apparatus levelling mechanism and a levelling method therefor. The mechanical apparatus levelling mechanism comprises a base (10), an adjusting screw rod (20), an adjusting plate (30) and a support plate (40), wherein the adjusting screw rod (20) penetrates into the adjusting plate (30) in an axial direction and is connected to the base (10); the adjusting plate (30) is located on the base (10); the support plate (40) is mounted at a top end of the adjusting screw rod (20) and is located above the adjusting plate (30); and the adjusting plate (30) rotates to drive the adjusting screw rod (20) to rotate, such that the support plate (40) is adjusted vertically. The mechanism achieves the purposes of simplifying the operation procedure, improving the assembly accuracy and improving the working efficiency. The method is simple to operate. These adjusting mechanisms are convenient to move and simple to adjust, are time-saving and labour-saving, and have adjustment dimensions that can be quantified. Moreover, the installation is simple, and the adjusting mechanisms themselves can be reused.

Classes IPC  ?

  • F16M 7/00 - Détails de fixation ou de réglage des bâtis, châssis ou pièces de supports des moteurs sur leurs fondations ou leur baseFixation des parties fixes des moteurs, p. ex. des blocs cylindres

66.

Weighing method with automatic micro-calibration function

      
Numéro d'application 17249768
Numéro de brevet 11879770
Statut Délivré - en vigueur
Date de dépôt 2021-03-12
Date de la première publication 2021-09-23
Date d'octroi 2024-01-23
Propriétaire
  • Mettler-Toledo (Changzhou) Precision Instruments Ltd (Chine)
  • Mettler-Toledo (Changzhou) Measurement Technology Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd (Chine)
Inventeur(s)
  • Ji, Zhengwei
  • Li, Chunhui
  • Chao, Zhihe

Abrégé

A weighing method has an automatic micro-calibration function. In the method, an automatic adjustment is performed by a self-calibration weighing module. When the result of the adjustment does not meet a requirement, an automatic calibration is performed by the self-calibration weighing module, followed by weighing fine formulation materials. In the weighing method, the self-calibration module is used to perform the automatic calibration function to weigh the fine formulation materials. This provides a high degree of automation, and greatly reduced cost in equipment and labor for a formulating process, saving on time and labor, and with no risk of cross-contamination.

Classes IPC  ?

  • G01G 23/01 - Test ou calibrage des appareils de pesée
  • G01G 13/02 - Moyens pour charger automatiquement des plateaux de pesée ou d'autres récipients, p. ex. récipients à jeter après usage, l'opération étant commandée par le mécanisme de pesée

67.

High precision weighing system and weighing method, thermogravimetric analyser and storage medium

      
Numéro d'application 16982695
Numéro de brevet 11959934
Statut Délivré - en vigueur
Date de dépôt 2019-01-28
Date de la première publication 2021-09-23
Date d'octroi 2024-04-16
Propriétaire
  • Mettler Toledo Precision Instrument Company Limited (Chine)
  • Mettler Toledo Measurement Technology Company Limited (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Xu, Lei
  • Emery, Jean-Christophe

Abrégé

A high precision weighing system and weighing method has a weighing plate and weighing unit separation mechanism and a weight loading mechanism. The weighing plate and weighing unit separation mechanism controls separation of a weighing plate and a weighing unit, so that the weighing plate or the weighing plate and its carried material do not apply force to the weighing unit. The weight loading mechanism loads a weight onto the weighing unit or removes a weight from the weighing unit; the weighing system records a weighing value of the weighing unit during the action of the weighing plate and weighing unit separation mechanism and a sensitivity value during the action of the weight loading mechanism. The weighing system modifies the weighing value at the time of the most recent combination of the weighing plate and the weighing unit based on the recorded weighing and sensitivity values, achieving a high precision.

Classes IPC  ?

  • G01N 5/04 - Analyse des matériaux par pesage, p. ex. pesage des fines particules séparées d'un gaz ou d'un liquide en éliminant un constituant, p. ex. par évaporation, et en pesant le reste
  • G01G 23/01 - Test ou calibrage des appareils de pesée

68.

Strain gauge insulated against moisture penetration and method of manufacturing same

      
Numéro d'application 17269910
Numéro de brevet 11841282
Statut Délivré - en vigueur
Date de dépôt 2019-08-30
Date de la première publication 2021-08-26
Date d'octroi 2023-12-12
Propriétaire
  • Mettler-Toledo (Changzhou) Precision Instrument Co. Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Measurement Technology Co. Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co. Ltd. (Chine)
  • Mettler-Toledo GmbH (Suisse)
Inventeur(s)
  • Zhu, Xiangqun
  • Shi, Zhiguo
  • Xu, Lei
  • Emery, Jean-Christophe

Abrégé

A strain gauge (12, 21A, 21B, 25A, 25B, 31, 35, 41, 45) and method of manufacturing a strain gauge (12, 21A, 21B, 25A, 25B, 31, 41, 35, 45) against moisture penetration comprises or includes the step of producing a coated base or cover layer (14, 34, 44) by forming a moisture barrier coating (17) on the surface the latter.

Classes IPC  ?

  • G01L 1/00 - Mesure des forces ou des contraintes, en général
  • G01L 1/22 - Mesure des forces ou des contraintes, en général en mesurant les variations de la résistance ohmique des matériaux solides ou des fluides conducteurs de l'électricitéMesure des forces ou des contraintes, en général en faisant usage des cellules électrocinétiques, c.-à-d. des cellules contenant un liquide, dans lesquelles un potentiel électrique est produit ou modifié par l'application d'une contrainte en utilisant des jauges de contrainte à résistance
  • G01L 1/26 - Mesures auxiliaires prises, ou dispositifs utilisés en liaison avec le mesurage des forces, p. ex. pour empêcher l'influence des composantes transversales de la force, pour empêcher la surcharge

69.

Method and apparatus for managing measurement device based on blockchain

      
Numéro d'application 17174236
Numéro de brevet 12056761
Statut Délivré - en vigueur
Date de dépôt 2021-02-11
Date de la première publication 2021-08-12
Date d'octroi 2024-08-06
Propriétaire
  • Mettler-Toledo (Chagzhou) Precision Instruments Ltd. (Chine)
  • Mettler-Toledo Measurement Technology Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Yang, Jianqiang
  • Xie, Guojun

Abrégé

A method for operating a measurement device using a blockchain. A blockchain system comprises a lease platform node or lease platform node device, a lessor client, and a lessee client. Existing state information about the measurement device is stored in the blockchain. The method can include receiving a lease order for the measurement device that is sent by a lessee client, sending a lease notification based on the measurement device to the lessor client to notify the lessor to send the measurement device to the lessee, receiving, after the lessee receives the measurement device sent by the lessor, a device state detection request sent by the lessee client or the measurement device, wherein the device state detection request comprises first current state information about the measurement device, and detecting whether the first current state information matches the existing state information, and if yes, creating a lease contract for the measurement device.

Classes IPC  ?

  • G06Q 30/0645 - Transactions de locationTransactions de crédit-bail
  • G06F 9/50 - Allocation de ressources, p. ex. de l'unité centrale de traitement [UCT]
  • G06Q 20/14 - Architectures de paiement spécialement adaptées aux systèmes de facturation
  • G06Q 20/40 - Autorisation, p. ex. identification du payeur ou du bénéficiaire, vérification des références du client ou du magasinExamen et approbation des payeurs, p. ex. contrôle des lignes de crédit ou des listes négatives
  • G06Q 50/18 - Services juridiques

70.

Calibration device for weighing system

      
Numéro d'application 17265560
Numéro de brevet 11965772
Statut Délivré - en vigueur
Date de dépôt 2019-01-23
Date de la première publication 2021-08-05
Date d'octroi 2024-04-23
Propriétaire
  • Mettler Toledo Precision Instrument Company Limited (Chine)
  • Mettler Toledo Measurement Technology Company Limited (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Zhang, Haitao
  • Li, Chunhui
  • Zhang, Ping
  • Ding, Chenggang
  • Leahy, Tom

Abrégé

A calibration device is provided for a weighing system that has a tank with a plurality of support legs at a lower part thereof. The calibration device has at least one calibration module, a hydraulic system and a calibration terminal. An upper end of each calibration module is connected to an upper part of a corresponding support leg. A lower end of each calibration module is fixed to a foundation. A hose connects each calibration module to the hydraulic system for applying a force to the tank. The calibration terminal, connected to each calibration module, displays in real-time, the force applied to the tank. The calibration device can greatly improve the production efficiency, and in use, takes only two hours to complete the calibration, which is faster than the test weight and other calibration methods.

Classes IPC  ?

  • G01G 23/01 - Test ou calibrage des appareils de pesée
  • G01G 23/18 - Dispositifs indicateurs, p. ex. pour indication à distanceDispositifs enregistreursÉchelles, p. ex. graduées

71.

Method and apparatus for managing measurement device based on blockchain

      
Numéro d'application 17140887
Numéro de brevet 11748336
Statut Délivré - en vigueur
Date de dépôt 2021-01-04
Date de la première publication 2021-07-08
Date d'octroi 2023-09-05
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Emery, Jean-Christophe
  • Heidingsfelder, Michael
  • Schibli, Eugen
  • Dai, Feng
  • Chen, Qing
  • Xie, Guojun

Abrégé

A method and apparatus are disclosed for managing a measurement device based on a blockchain, which is applied to node devices in a blockchain network. The method can include obtaining device state data of the measurement device at various stages in the life cycle of the measurement device; constructing a target transaction based on the obtained device state data, and then sending the target transaction to other node devices in the blockchain network to perform consensus processing on the target transaction; and storing, when a consensus of the target transaction is reached, the target transaction into a distributed ledger of the blockchain network, wherein the target transaction stored in the distributed ledger of the blockchain network is used for life cycle management of the measurement device.

Classes IPC  ?

  • G06F 16/23 - Mise à jour
  • G06F 11/07 - Réaction à l'apparition d'un défaut, p. ex. tolérance de certains défauts

72.

KEY DETERMINATION METHOD FOR METAL KEY

      
Numéro d'application CN2020140518
Numéro de publication 2021/136220
Statut Délivré - en vigueur
Date de dépôt 2020-12-29
Date de publication 2021-07-08
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Wang, Jingke
  • Wang, Shujun
  • Qian, Shenjian
  • Yang, Yong

Abrégé

A key determination method for a metal key. The method comprises a step of determining whether values output by an electrical parameter converter on a metal key satisfy multiple levels of thresholds, and, a step of setting a press flag of the metal key according to multiple levels of thresholds; and after the metal key is released, determining whether a release flag is valid according to a press model, and if so, clearing the press flag that was previously set. Different press models and different thresholds are selected and configured by means of software, so that personalized choices are provided for respective metal keys, which effectively facilitates different operators in configuring a metal keyboard according to usage habits, thereby improving the operating efficiency. In addition, the setting of different thresholds effectively protects the operational details meant for the exclusive use of operators, thereby achieving the required confidentiality.

Classes IPC  ?

  • H03M 11/20 - Codage dynamique, c.-à-d. par balayage des touches

73.

Method for adjusting parameters of a device having a weighing sensor

      
Numéro d'application 16949316
Numéro de brevet 11573120
Statut Délivré - en vigueur
Date de dépôt 2020-10-26
Date de la première publication 2021-04-29
Date d'octroi 2023-02-07
Propriétaire
  • Mettler-Toledo (Changzhou) Precision instruments Co., Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Measurement Technology Co., Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Wu, Jianwei
  • Emery, Jean-Christophe

Abrégé

A method for adjusting parameters of a device with a weighing sensor collecting environmental parameter data of an environment where the device is currently located or environmental parameter data during execution of an application by the device. A zero compensation parameter is calculated and updated, based on the data collected. The method is applicable to a moisture analyzer and also to a vehicle scale. In the moisture analyzer, the method is triggered and executed in the analyzer, correcting the zero compensation data by using the environmental parameter data of an environment or environmental parameter data during execution of an application by the analyzer. Dynamic and real-time adjustment of a compensation parameter overcomes the problem that the scheme of pre-setting fixed parameters for zero compensation cannot deal with the complex zero drift encountered in actual environments.

Classes IPC  ?

  • G01G 23/00 - Dispositifs accessoires pour appareils de pesée
  • G01G 19/08 - Appareils ou méthodes de pesée adaptés à des fins particulières non prévues dans les groupes pour incorporation dans des véhicules
  • G01N 5/04 - Analyse des matériaux par pesage, p. ex. pesage des fines particules séparées d'un gaz ou d'un liquide en éliminant un constituant, p. ex. par évaporation, et en pesant le reste

74.

WEIGHING SENSOR ASSEMBLY AND DYNAMIC AUTOMATIC CHECKWEIGHER COMPRISING THE SAME

      
Numéro d'application EP2020077325
Numéro de publication 2021/064001
Statut Délivré - en vigueur
Date de dépôt 2020-09-30
Date de publication 2021-04-08
Propriétaire
  • METTLER-TOLEDO(CHANGZHOU) MEASUREMENT TECHNOLOGY CO.,LTD (Chine)
  • METTLER-TOLEDO(CHANGZHOU) PRECISION INSTRUMENTS CO.,LTD (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING(SHANGHAI) CO.,LTD (Chine)
  • METTLER-TOLEDO GMBH (Suisse)
Inventeur(s)
  • Zhu, Shunkang
  • Hu, Wanchuan
  • Xu, Jianfei
  • Sun, Xu
  • Zaid, Saeed

Abrégé

The present invention provides a weighing sensor assembly and a dynamic automatic checkweigher comprising same. The weighing sensor assembly comprises a sensor upper support plate, a separate housing, a weighing sensor, a sensor lower support plate and an electric motor cable, wherein an upper end of the separate housing is fixedly connected to the sensor upper support plate, a lower end of the separate housing is fixedly connected to the sensor lower support plate, and the weighing sensor is fixed in the separate housing; an upper portion of one end of the weighing sensor is connected to the sensor upper support plate, and a lower portion of the other end thereof is connected to the sensor lower support plate; and the electric motor cable penetrates into an upper portion of the separate housing and penetrates out of a lower portion thereof, the part of the electric motor cable located in the separate housing is a separate cable, and a gap exists between the separate cable and the weighing sensor and makes the two separated. According to the present invention, with the embedded housing structure design, the interference of environmental factors such as external dust and airflow on the sensor is reduced, and the level of protection of the sensor is improved.

Classes IPC  ?

  • G01G 19/393 - Appareils ou méthodes de pesée adaptés à des fins particulières non prévues dans les groupes pour peser par combinaison, c.-à-d. en choisissant une combinaison d'articles dont le poids total ou le nombre est le plus proche d'une valeur désirée utilisant plusieurs unités de pesage
  • G01G 21/28 - BâtisCages
  • G01G 21/30 - Moyens pour empêcher la contamination par la poussière

75.

Module for wireless communication device

      
Numéro d'application 29681522
Numéro de brevet D0913983
Statut Délivré - en vigueur
Date de dépôt 2019-02-26
Date de la première publication 2021-03-23
Date d'octroi 2021-03-23
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY CO., LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENT CO., LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Tong, Lijun
  • Zhang, Yinxiu
  • Guo, Wenwei

76.

Pipette

      
Numéro d'application 29667211
Numéro de brevet D0914235
Statut Délivré - en vigueur
Date de dépôt 2018-10-19
Date de la première publication 2021-03-23
Date d'octroi 2021-03-23
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY CO., LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENT CO., LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Zhao, Bo
  • He, Wenqin

77.

CHECKWEIGHER

      
Numéro d'application CN2020105374
Numéro de publication 2021/036655
Statut Délivré - en vigueur
Date de dépôt 2020-07-29
Date de publication 2021-03-04
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Wang, Shenhui
  • Zhang, Song
  • Cao, Conghan
  • Sun, Qin

Abrégé

The present invention discloses a checkweigher comprising a conveying belt (1,1a)for conveying an object. The checkweigher comprises an object shape recognition apparatus for detecting and recognizing information about the shape of a contact surface between the object conveyed on the conveying belt (1,1a) of the checkweigher and the conveying belt (1,1a) and information about the position of the object on the conveying belt (1,1a). The checkweigher further comprises a calculation unit for querying or calculating a correction parameter with the information about the shape and the information about the position of the object on the conveying belt (1,1a), and correcting the weight of the object obtained by the checkweigher with the correction parameter. By means of the present invention, weighing data is compensated and corrected by recognizing the dimension of the object on the conveying belt(1,1a) and the position thereof on the conveying belt (1,1a), to remove impact of the detected object on dynamic weighing, thereby improving the weighing precision.

Classes IPC  ?

  • G01G 23/01 - Test ou calibrage des appareils de pesée
  • G01G 23/00 - Dispositifs accessoires pour appareils de pesée

78.

HYSTERESIS COMPENSATION METHOD FOR A WEIGHING DEVICE

      
Numéro d'application CN2020105354
Numéro de publication 2021/018160
Statut Délivré - en vigueur
Date de dépôt 2020-07-29
Date de publication 2021-02-04
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD (Chine)
Inventeur(s)
  • Zhang, Song
  • Wang, Shenhui
  • Qian, Shenjian
  • Sun, Qin

Abrégé

A hysteresis compensation method, in which a hysteresis error is calculated for an obtained weighing value by means of an ideal hysteresis error model, and an ideal compensation value is further calculated by means of an ideal hysteresis compensation model, wherein by using a proportional relationship between a system hysteresis error model established in hysteresis calibration and the ideal hysteresis error model, the ideal compensation value is corrected to a final compensation value. The method establishes a mapping relationship between the system's own hysteresis compensation and the ideal state hysteresis compensation, and realizes the transformation of a complicated hysteresis error compensation situation into an ideal hysteresis error compensation situation. The method not only has a good compensation effect for the hysteresis error compensation under ideal situations, but also can obtain an excellent hysteresis compensation effect under complicated hysteresis situations.

Classes IPC  ?

  • G01G 23/01 - Test ou calibrage des appareils de pesée

79.

OBJECT RECOGNITION APPARATUS, SYSTEM AND METHOD

      
Numéro d'application CN2020101598
Numéro de publication 2021/017796
Statut Délivré - en vigueur
Date de dépôt 2020-07-13
Date de publication 2021-02-04
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Wang, Shenhui
  • Zhang, Song
  • Cao, Conghan
  • Yu, Qingsong

Abrégé

An object recognition apparatus, system and method. The object recognition apparatus, comprising: a first image matching module, configured to perform comparison and screening on first image feature information in image feature information of each type of object and a first image feature of a target object; a counting module, configured to weigh and count the target objects one by one according to mass distribution information of each type of objects; a calculation module, configured to calculate, according to the mass distribution information of each type of objects and the corresponding weighing and counting data, a counting error allowed due to a statistical error of each type of objects; and a determination module, configured to perform screening by determining whether the weighing and counting data is within the range of the counting error allowed due to the statistical error of the corresponding type of objects.

Classes IPC  ?

  • G06K 9/00 - Méthodes ou dispositions pour la lecture ou la reconnaissance de caractères imprimés ou écrits ou pour la reconnaissance de formes, p.ex. d'empreintes digitales

80.

COUNTING CHECK DEVICE,COUNTING SYSTEM AND METHOD

      
Numéro d'application CN2020101599
Numéro de publication 2021/017797
Statut Délivré - en vigueur
Date de dépôt 2020-07-13
Date de publication 2021-02-04
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Yang, Yong
  • Wang, Shenhui
  • Zhang, Song
  • Yu, Qingsong

Abrégé

A counting check device, a counting system and a method are disclosed. The counting check device, comprising: a processing unit for performing image recognition based counting on an image of objects being counted; a calculation unit for counting by weighing based on a total weight of the objects being counted and a pre-stored mass distribution information; and a determination unit for determining, based on the pre-stored mass distribution information, whether a count obtained in the image recognition based counting is within a count error range of the count obtained in the counting by weighing; if true, the count obtained in the image recognition based counting is determined to be the count of the objects; and if false, the processing unit performing the image recognition counting again. The counting check device, and a counting system and method can ensure a count result to be accurate.

Classes IPC  ?

  • G06K 9/00 - Méthodes ou dispositions pour la lecture ou la reconnaissance de caractères imprimés ou écrits ou pour la reconnaissance de formes, p.ex. d'empreintes digitales

81.

WEIGHING SYSTEM AND WEIGHING METHOD WITH OBJECT RECOGNITION

      
Numéro d'application CN2020105366
Numéro de publication 2021/018161
Statut Délivré - en vigueur
Date de dépôt 2020-07-29
Date de publication 2021-02-04
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Zhang, Song
  • Wang, Shenhui
  • Qian, Shenjian
  • Cui, Jindong
  • Yang, Gang

Abrégé

A weighing method comprises the steps of: recognizing one or more objects to be detected on a first scale platform top (A) or within an object recognition area of the first scale platform top (A), and weighing the objects to be detected that are placed on a second scale platform top (B). A weighing system comprises at least two scales having scale platform tops utilizing the weighing method outlined above. The weighing method reduces the difficulty of algorithm recognition by increasing the degree to which the object on the weighting platform fits the algorithm, reduces the complexity of operation flow and the time required, and effectively increases the precision and accuracy of object recognition.

Classes IPC  ?

  • G01G 19/40 - Appareils ou méthodes de pesée adaptés à des fins particulières non prévues dans les groupes avec dispositions pour indiquer, enregistrer ou calculer un prix ou d'autres quantités dépendant du poids
  • G01G 19/414 - Appareils ou méthodes de pesée adaptés à des fins particulières non prévues dans les groupes avec dispositions pour indiquer, enregistrer ou calculer un prix ou d'autres quantités dépendant du poids utilisant des moyens de calcul électromécaniques ou électroniques utilisant uniquement des moyens de calcul électroniques
  • G06K 9/00 - Méthodes ou dispositions pour la lecture ou la reconnaissance de caractères imprimés ou écrits ou pour la reconnaissance de formes, p.ex. d'empreintes digitales

82.

A WEIGHING DEVICE AND A METHOD OF WEIGHING USING OBJECT RECOGNITION

      
Numéro d'application CN2020105367
Numéro de publication 2021/018162
Statut Délivré - en vigueur
Date de dépôt 2020-07-29
Date de publication 2021-02-04
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Zhang, Song
  • Liu, Kan
  • Wang, Shenhui
  • Wang, Zhiqiang
  • Yin, Kai

Abrégé

A method of weighing using a scale (10) comprises the steps of: recognizing at least one of a plurality of objects placed within an object recognition area (A) of a platform (20) of the scale (10), and weighing the plurality of objects placed on the platform (20) of the scale (10) to determine a total weight of the plurality of objects. A weighing device (10) comprises the platform (20) configured as a plane, and utilizes the aforementioned weighing method. The method of weighing is advantageous in that it reduces the difficulty of object recognition using an algorithm by increasing the degree to which the object on the weighing platform fits the algorithm, reduces the complexity of the operation flow and the time required, and effectively increases the precision and accuracy of object recognition.

Classes IPC  ?

  • G01G 19/40 - Appareils ou méthodes de pesée adaptés à des fins particulières non prévues dans les groupes avec dispositions pour indiquer, enregistrer ou calculer un prix ou d'autres quantités dépendant du poids
  • G01G 19/414 - Appareils ou méthodes de pesée adaptés à des fins particulières non prévues dans les groupes avec dispositions pour indiquer, enregistrer ou calculer un prix ou d'autres quantités dépendant du poids utilisant des moyens de calcul électromécaniques ou électroniques utilisant uniquement des moyens de calcul électroniques
  • G06K 9/00 - Méthodes ou dispositions pour la lecture ou la reconnaissance de caractères imprimés ou écrits ou pour la reconnaissance de formes, p.ex. d'empreintes digitales

83.

Weighing sensor and electronic balance having photoelectric position sensor with integrated stop structure

      
Numéro d'application 16764512
Numéro de brevet 11366006
Statut Délivré - en vigueur
Date de dépôt 2018-11-30
Date de la première publication 2020-12-10
Date d'octroi 2022-06-21
Propriétaire
  • Mettler Toledo Instrument (Shanghai) Company Limited (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Wu, Chao
  • Liu, Baohui
  • Yang, Chun

Abrégé

A weighing sensor is provided for an electronic balance. A weighing unit of the weighing sensor has a load-receiving portion, a fixing portion, and parallel guiding members that connect the load-receiving and fixing portions A lever, with a first end connected to the load-receiving portion, is located between the parallel guiding members and the fixing portion. A lower portion of a photoelectric position limiting block is connected to the fixing portion, and an upper portion thereof has a limiting structure. A tail end portion of a second end of the lever is disposed in the limiting structure, limiting its deviation. The photoelectric position limiting block has a photoelectric position sensor and a stop structure for limiting deviation of the tail end portion.

Classes IPC  ?

  • G01G 7/02 - Appareils de pesée dans lesquels l'équilibrage est assuré par une action magnétique, électromagnétique ou électrostatique, ou par des moyens non prévus dans les groupes par action électromagnétique

84.

DEVICE AND METHOD FOR IMPROVING WEIGHING RELIABILITY

      
Numéro d'application CN2020091605
Numéro de publication 2020/238757
Statut Délivré - en vigueur
Date de dépôt 2020-05-21
Date de publication 2020-12-03
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY LTD. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENTS LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Wang, Shenhui
  • Wang, Zhiqiang
  • Zhang, Song

Abrégé

A device and a method for improving weighing reliability comprises a light source (11) arranged on a side surface of a frame of weighing equipment (1) and used for projecting light beams (13) to the outside of the weighing equipment (1). The device also comprises an image capture device (12) arranged on the side surface on which the light source (11) is arranged and the image capture device (12) is used for capturing a projection image of the light beams (13) on a projection surface. The device further comprises an image processor used for validating whether the projection image is incomplete and thereby determining whether an object to be weighed overlaps the ground surface or the frame of the weighing equipment (1). The device and the method for improving weighing reliability can improve the application range of an exceeding detection and reliability in the weighing process.

Classes IPC  ?

  • G01G 21/22 - Plateaux de pesée ou autres récipients de peséePlates-formes de pesée
  • G01G 21/28 - BâtisCages
  • G01G 23/00 - Dispositifs accessoires pour appareils de pesée

85.

Weighing sensor and lever

      
Numéro d'application 16764467
Numéro de brevet 11366005
Statut Délivré - en vigueur
Date de dépôt 2018-11-30
Date de la première publication 2020-11-12
Date d'octroi 2022-06-21
Propriétaire
  • Mettler Toledo Instrument (Shanghai) Company Limited (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Wu, Chao
  • Liu, Baohui
  • Sun, Weixiang
  • Yang, Chun
  • Bian, Naifeng
  • Xu, Feng

Abrégé

A weighing sensor and a lever are disclosed. The weighing sensor has a load-receiving portion, a fixing portion, and a parallel guiding portion connected to the load-receiving portion and the fixing portion. The parallel guiding portion has upper and lower parallel guiding units, separated from each other. The ends of the parallel guiding units are connected to the load-receiving portion and the fixing portion. The fixing portion has an extension located between the parallel guiding units. The extension is at a distance from both parallel guiding units and extends to the load-receiving portion. A gap is formed between the extension and the load-receiving portion; and the distance between the extension and the upper parallel guiding unit allows a lever to pass through. The weighing sensor has a simple structure, both the processing process and the assembly process are simplified, and the processing and assembly during production are facilitated.

Classes IPC  ?

  • G01G 7/02 - Appareils de pesée dans lesquels l'équilibrage est assuré par une action magnétique, électromagnétique ou électrostatique, ou par des moyens non prévus dans les groupes par action électromagnétique
  • G01G 21/24 - Guides ou articulations pour assurer un déplacement parallèle des plateaux de pesée

86.

Weighing method and storage medium thereof

      
Numéro d'application 16640576
Numéro de brevet 11519777
Statut Délivré - en vigueur
Date de dépôt 2018-06-29
Date de la première publication 2020-06-04
Date d'octroi 2022-12-06
Propriétaire
  • Mettler Toledo Precision Instrument Company Limited (Chine)
  • Mettler Toledo Measurement Technology Company Limited (Chine)
  • Mettler—Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Wu, Jianwei
  • Lin, Hongzhi
  • Zhang, Ying
  • Xie, Guojun
  • Qian, Zheng

Abrégé

0) of the measured object are acquired. A first error (error1) caused by a weighing state according to the roll angle and the pitch angle is calculated. A second error (error2) caused by a weighing position according to the coordinates of the placement position, the roll angle (r) and the pitch angle (p) is also calculated. From these, a corrected weight (Wc) is determined.

Classes IPC  ?

  • G01G 23/01 - Test ou calibrage des appareils de pesée
  • G01G 23/00 - Dispositifs accessoires pour appareils de pesée

87.

Force sensor with strain gauge attached to flexible wall of a main beam of the force sensor

      
Numéro d'application 16463892
Numéro de brevet 11022506
Statut Délivré - en vigueur
Date de dépôt 2017-11-28
Date de la première publication 2020-05-07
Date d'octroi 2021-06-01
Propriétaire
  • Mettler-Toledo (Changzhou) Precision Instrument Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Measurement Technology Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Wang, Jianwen
  • Xu, Yujun
  • Wang, Wei

Abrégé

A force sensor has a first end portion (1), a second end portion (2), a parallel-guiding mechanism (3), a beam (4), and a strain gauge (5). The parallel-guiding mechanism (3) connects the first end portion (1) to the second end portion (2). A main beam (43) of the beam has a flexible wall (435) and a rigid wall (432). A first connecting part (41) connects the flexible wall to the first end portion, and a second connecting part (42) connects the rigid wall to the second end portion. The strain gauge (5) is fixed to the flexible wall (435). The force sensor can measure a relatively small force.

Classes IPC  ?

  • G01L 1/22 - Mesure des forces ou des contraintes, en général en mesurant les variations de la résistance ohmique des matériaux solides ou des fluides conducteurs de l'électricitéMesure des forces ou des contraintes, en général en faisant usage des cellules électrocinétiques, c.-à-d. des cellules contenant un liquide, dans lesquelles un potentiel électrique est produit ou modifié par l'application d'une contrainte en utilisant des jauges de contrainte à résistance
  • G01G 21/24 - Guides ou articulations pour assurer un déplacement parallèle des plateaux de pesée
  • G01G 3/14 - Appareils de pesée caractérisés par l'utilisation d'organes déformables par élasticité, p. ex. balances à ressort dans lesquels l'élément de pesée est constitué par un corps solide soumis à une pression ou une traction pendant la pesée utilisant la mesure des variations de la résistance électrique

88.

Collaborative weighing and measuring system and metering system

      
Numéro d'application 16500684
Numéro de brevet 11378441
Statut Délivré - en vigueur
Date de dépôt 2018-04-03
Date de la première publication 2020-04-16
Date d'octroi 2022-07-05
Propriétaire
  • Mettler-Toledo (Changzhou) Precision instruments Co., Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Measurement Technology Co., Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd (Chine)
Inventeur(s)
  • Dai, Feng
  • Yang, Jianqiang
  • Xie, Guojun
  • Yu, Jinquan
  • Mao, Wenming
  • Tan, Dake

Abrégé

The present invention discloses a weighing and measuring system, comprising a weighing sensor network constituted by networking a plurality of weighing sensors, wherein in the weighing sensor network, each of subtasks into which a weighing task is split is assigned to each of weighing sensors in the weighing sensor network; and each of the weighing sensors respectively and independently executes the assigned subtask and exchanges task data through the weighing sensor network. The weighing sensors collaboratively process a weighing task, which no longer depends on an instrument or a computer, thereby reducing the cost of the whole system, and improving the tolerance level to environment. The collaborative processing mode also avoids the bottleneck of data communication information summarization.

Classes IPC  ?

  • G01G 19/393 - Appareils ou méthodes de pesée adaptés à des fins particulières non prévues dans les groupes pour peser par combinaison, c.-à-d. en choisissant une combinaison d'articles dont le poids total ou le nombre est le plus proche d'une valeur désirée utilisant plusieurs unités de pesage
  • G01G 23/37 - Dispositifs indicateurs, p. ex. pour indication à distanceDispositifs enregistreursÉchelles, p. ex. graduées indiquant le poids par des moyens électriques, p. ex. par utilisation de cellules photo-électriques impliquant un comptage numérique

89.

CALIBRATION DEVICE FOR WEIGHING SYSTEM

      
Numéro d'application CN2019072820
Numéro de publication 2020/057034
Statut Délivré - en vigueur
Date de dépôt 2019-01-23
Date de publication 2020-03-26
Propriétaire
  • METTLER TOLEDO PRECISION INSTRUMENT COMPANY LIMITED (Chine)
  • METTLER TOLEDO MEASUREMENT TECHNOLOGY COMPANY LIMITED (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Zhang, Haitao
  • Li, Chunhui
  • Zhang, Ping
  • Ding, Chenggang
  • Leahy, Tom

Abrégé

A calibration device for a weighing system is presented. The weighing system comprises a tank (10). A plurality of support legs (11) are provided at a lower part of the tank (10). The calibration device comprises at least one calibration module (20), a hydraulic system (30) and a calibration terminal (40). An upper end of the calibration module (20) is fixedly connected to an upper part of the corresponding support leg (11). A lower end of the calibration module (20) is fixed to the foundation. The calibration module (20) is connected via a hose to the hydraulic system (30) for applying a force to the tank (10). The calibration terminal (40) is connected to the calibration module (20) for displaying the force applied to the tank (10) in real-time. The calibration device for a weighing system can greatly improve the production efficiency. It takes only two hours to complete the calibration, which is far better than the test weight and other calibration methods. The uncertainty of the calibration process can reach 0.1% or better.

Classes IPC  ?

  • G01G 23/01 - Test ou calibrage des appareils de pesée

90.

CALIBRATION DEVICE FOR WEIGHING SYSTEM

      
Numéro de document 03111031
Statut En instance
Date de dépôt 2019-01-23
Date de disponibilité au public 2020-03-26
Propriétaire
  • METTLER TOLEDO PRECISION INSTRUMENT COMPANY LIMITED (Chine)
  • METTLER TOLEDO MEASUREMENT TECHNOLOGY COMPANY LIMITED (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Zhang, Haitao
  • Li, Chunhui
  • Zhang, Ping
  • Ding, Chenggang
  • Leahy, Tom

Abrégé

A calibration device for a weighing system is presented. The weighing system comprises a tank (10). A plurality of support legs (11) are provided at a lower part of the tank (10). The calibration device comprises at least one calibration module (20), a hydraulic system (30) and a calibration terminal (40). An upper end of the calibration module (20) is fixedly connected to an upper part of the corresponding support leg (11). A lower end of the calibration module (20) is fixed to the foundation. The calibration module (20) is connected via a hose to the hydraulic system (30) for applying a force to the tank (10). The calibration terminal (40) is connected to the calibration module (20) for displaying the force applied to the tank (10) in real-time. The calibration device for a weighing system can greatly improve the production efficiency. It takes only two hours to complete the calibration, which is far better than the test weight and other calibration methods. The uncertainty of the calibration process can reach 0.1% or better.

Classes IPC  ?

  • G01G 23/01 - Test ou calibrage des appareils de pesée

91.

Dynamic power consumption management and wake-up method and application system therefor

      
Numéro d'application 16571276
Numéro de brevet 11669147
Statut Délivré - en vigueur
Date de dépôt 2019-09-16
Date de la première publication 2020-03-19
Date d'octroi 2023-06-06
Propriétaire
  • Mettler-Toledo (Changzhou) Measurement Technology Co., Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Precision Instruments Co., Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Qian, Shenjian
  • Shen, Bo
  • Liu, Jianke
  • Yang, Yong

Abrégé

A method for dynamically managing power consumption, as well as a wake-up method, is disclosed for a wireless weighing platform. The method is initialized by setting both light and deep sleep period, entering a normal operating state, and starting light sleep timing. As long as no weighing operation is detected and the light sleep period has not expired, the method seeks to detect the weighing operation. If the light sleep period expires with no weighing operation, a light sleep state is entered, by turning off a communication function and starting timing for the deep sleep period. If no weighing is when the deep sleep period has expired, the wireless weighing platform enters a deep sleep state, by turning off power supply other than that for an acceleration sensor. If the acceleration sensor detects an effective vibration while in the deep sleep state, the normal operating state is restarted.

Classes IPC  ?

  • G06F 1/32 - Moyens destinés à économiser de l'énergie
  • G06F 1/3246 - Économie d’énergie caractérisée par l'action entreprise par mise hors tension initiée par logiciel
  • G06F 1/3287 - Économie d’énergie caractérisée par l'action entreprise par la mise hors tension d’une unité fonctionnelle individuelle dans un ordinateur
  • G06F 1/3206 - Surveillance d’événements, de dispositifs ou de paramètres initiant un changement de mode d’alimentation

92.

High-capacity weighing module

      
Numéro d'application 16564191
Numéro de brevet 11029192
Statut Délivré - en vigueur
Date de dépôt 2019-09-09
Date de la première publication 2020-03-12
Date d'octroi 2021-06-08
Propriétaire
  • Mettler-Toledo (Changzhou) Precision Instruments Co., Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Measurement Technology Co., Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Shrestha, Rabin
  • Leahy, Tom
  • Zhang, Ping
  • Muranyi, Ferenc

Abrégé

A high-capacity weighing module has a top plate weldment (10), a bottom plate weldment (30) and a pressure-bearing assembly (20) that is between the top and bottom plate weldments. Motion between the respective top and bottom plate weldments is restricted. This structure aids in easy installation and replacement of a sensor, and integrates the functions of anti-overturning and 360° inspection, and bottom stop. This makes the weighing module much more convenient to install than a conventional high-capacity module, and has a better safety function. The weighing module has advantage in terms of a simplified product structure, reduced cost of manufacture and maintenance, uncomplicated installation procedure, and higher safety and protection.

Classes IPC  ?

  • G01G 3/12 - Appareils de pesée caractérisés par l'utilisation d'organes déformables par élasticité, p. ex. balances à ressort dans lesquels l'élément de pesée est constitué par un corps solide soumis à une pression ou une traction pendant la pesée
  • G01G 19/22 - Appareils ou méthodes de pesée adaptés à des fins particulières non prévues dans les groupes pour le dosage de produits par pesée avant de les mélanger
  • G01G 21/23 - Supports ou suspensions de plates-formes de pesée

93.

MOISTURE-INSULATED STRAIN GAUGE AND METHOD OF INSULATING A STRAIN GAUGE AGAINST MOISTURE PENETRATION

      
Numéro d'application EP2019073246
Numéro de publication 2020/043892
Statut Délivré - en vigueur
Date de dépôt 2019-08-30
Date de publication 2020-03-05
Propriétaire
  • METTLER-TOLEDO (CHANGZHOU) PRECISION INSTRUMENT CO. LTD.. (Chine)
  • METTLER-TOLEDO (CHANGZHOU) MEASUREMENT TECHNOLOGY CO. LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO. LTD. (Chine)
  • METTLER-TOLEDO GMBH (Suisse)
Inventeur(s)
  • Zhu, Xiangqun
  • Shi, Zhiguo
  • Xu, Lei
  • Emery, Jean-Christophe

Abrégé

A strain gauge (12, 21A, 21B, 25A, 25B, 31, 35, 41, 45) and method of manufacturing a strain gauge (12, 21A, 21B, 25A, 25B, 31, 41, 35, 45) against moisture penetration comprises or includes the step of producing a coated base or cover layer (14, 34, 44) by forming a moisture barrier coating (17) on the surface the latter.

Classes IPC  ?

  • G01L 1/22 - Mesure des forces ou des contraintes, en général en mesurant les variations de la résistance ohmique des matériaux solides ou des fluides conducteurs de l'électricitéMesure des forces ou des contraintes, en général en faisant usage des cellules électrocinétiques, c.-à-d. des cellules contenant un liquide, dans lesquelles un potentiel électrique est produit ou modifié par l'application d'une contrainte en utilisant des jauges de contrainte à résistance
  • G01L 1/26 - Mesures auxiliaires prises, ou dispositifs utilisés en liaison avec le mesurage des forces, p. ex. pour empêcher l'influence des composantes transversales de la force, pour empêcher la surcharge

94.

MOVABLE LIFTING DEVICE

      
Numéro d'application CN2019099782
Numéro de publication 2020/034891
Statut Délivré - en vigueur
Date de dépôt 2019-08-08
Date de publication 2020-02-20
Propriétaire
  • METTLER TOLEDO MEASUREMENT TECHNOLOGY COMPANY LIMITED (Chine)
  • METTLER TOLEDO (CHANGZHOU) PRECISION INSTRUMENT LTD. (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Zhang, Yinxiu
  • Hui, Huaqiang
  • Zhao, Qingsong

Abrégé

A movable lifting device, comprising a lifting fixing device (10) and a moving device (20), wherein one end of the lifting fixing device (10) is connected to the moving device (20), and the other end thereof is connected to a cargo (30) to be moved; and rotational motion is converted to linear motion through free rotation of the lifting fixing device (10) so as to drive the lifting of the cargo (30) to be moved. The movable lifting device has a simple and flexible structure, is easy to operate, and has both movable and lifting functions. The device can be operated at any time and in any place, is applicable to a wide range of occasions, and can effectively reduce labor intensity; and the device saves on manpower and material resources, has low costs, and is easy to promote.

Classes IPC  ?

  • B66D 3/00 - Appareils de levage ou de traction portatifs ou mobiles
  • G01G 21/23 - Supports ou suspensions de plates-formes de pesée
  • G01G 23/00 - Dispositifs accessoires pour appareils de pesée

95.

Weighing device with multiple weighing sensors

      
Numéro d'application 16456786
Numéro de brevet 11054299
Statut Délivré - en vigueur
Date de dépôt 2019-06-28
Date de la première publication 2020-01-02
Date d'octroi 2021-07-06
Propriétaire
  • Mettler-Toledo (Changzhou) Precision instruments Co., Ltd. (Chine)
  • Mettler-Toledo (Changzhou) Measurement Technology Co., Ltd. (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co., Ltd. (Chine)
Inventeur(s)
  • Shenhui, Wang
  • Dengyou, Chen
  • Song, Zhang
  • Qin, Sun

Abrégé

A weighing device (1) has a load-bearing portion (10) that supports an object being weighed, a plurality of transition portions (20), and a separation portion (30). The transition portions are positioned on the separation portion, and the load-bearing portion is positioned on the transition portions, with the transition portions connected to the load-bearing portion and the separation portion. A plurality of weighing sensors (40) are provided at a bottom of the separation portion. A support portion (50) is below the weighing sensors to provide support therefor. The weighing device simplifies the loading condition of weighing sensors and isolates the horizontal mechanical deformation/distortion of the weighing load-bearing mechanism. It also reduces the influence of mechanical deformation/distortion, thereby improving the weighing performance and the effectiveness of the weighing device.

Classes IPC  ?

  • G01G 21/23 - Supports ou suspensions de plates-formes de pesée

96.

Optical structure

      
Numéro d'application 16414282
Numéro de brevet 10754166
Statut Délivré - en vigueur
Date de dépôt 2019-05-16
Date de la première publication 2019-11-21
Date d'octroi 2020-08-25
Propriétaire
  • Mettler-Toledo Instruments (Shanghai) Co. Ltd (Chine)
  • Mettler-Toledo International Trading (Shanghai) Co. Ltd (Chine)
Inventeur(s)
  • Wang, Changlin
  • Zhu, Hong
  • Wang, Fengjin
  • Xu, Min
  • Wang, Cong

Abrégé

An optical structure has a cavity (1) with an opening provided at one end and a first through hole or first gap (21) provided at the end opposite the opening. The cavity is further provided internally with a beam splitter or a dichroic mirror (4). A first LED (31) emits light into the cavity through the first through hole or the first gap, which passes directly passing through the beam splitter or dichroic mirror and exits from the opening of the cavity A second LED (32) emits light into the cavity through a second through hole or second gap (22) in a side of the cavity, which is reflected by the beam splitter or dichroic mirror. It is then fused with the light emitted by the first LED. The light emitted by the respective LEDs have an identical optical path length to the beam splitter or the dichroic mirror.

Classes IPC  ?

  • G02B 27/14 - Systèmes divisant ou combinant des faisceaux fonctionnant uniquement par réflexion

97.

HIGH PRECISION WEIGHING SYSTEM AND WEIGHING METHOD, THERMOGRAVIMETRIC ANALYSER AND STORAGE MEDIUM

      
Numéro d'application CN2019073344
Numéro de publication 2019/165865
Statut Délivré - en vigueur
Date de dépôt 2019-01-28
Date de publication 2019-09-06
Propriétaire
  • METTLER TOLEDO PRECISION INSTRUMENT COMPANY LIMITED (Chine)
  • METTLER TOLEDO MEASUREMENT TECHNOLOGY COMPANY LIMITED (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Xu, Lei
  • Emery, Jean-Christophe

Abrégé

A high precision weighing system and weighing method, a thermo-gravimetric analyser and a storage medium, the weighing system comprising a weighing plate (5) and a separation mechanism (2) and a weight loading mechanism (3); wherein the separation mechanism (2) controls the separation of a weighing plate (5) and a weighing unit (l), and the weight loading mechanism (3) loads a weight onto the weighing unit (l) or removes a weight from the weighing unit (l); the weighing system records a weighing value of the weighing unit (l) during the action of the weighing plate (5) and separation mechanism (2) and a sensitivity during the action of the weight loading mechanism (3); and the weighing system modifies the weighing value at the time of the most recent combination of the weighing plate (5) and the weighing unit (l) based on the recorded weighing value and sensitivity.

Classes IPC  ?

  • G01N 5/00 - Analyse des matériaux par pesage, p. ex. pesage des fines particules séparées d'un gaz ou d'un liquide

98.

ONLINE PARAMETER ADJUSTMENT WEIGHING METHOD AND SYSTEM AND STORAGE MEDIUM

      
Numéro d'application CN2018122263
Numéro de publication 2019/134524
Statut Délivré - en vigueur
Date de dépôt 2018-12-20
Date de publication 2019-07-11
Propriétaire
  • METTLER TOLEDO PRECISION INSTRUMENT COMPANY LIMITED (Chine)
  • METTLER TOLEDO MEASUREMENT TECHNOLOGY COMPANY LIMITED (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Wu, Jianwei
  • Jean-Christophe, Emery

Abrégé

An online parameter adjustment weighing method and system and a storage medium, the online parameter adjustment weighing method is used for parameter adjustment when a weighing application is online, comprising: triggering and calling an adjustment procedure, the adjustment procedure comprises: collecting feature data of a weighing system; generating and updating parameters of the weighing system based on the feature data. The online parameter adjustment weighing system comprises a weighing application and a processor, the weighing application is in an online state, and the processor, after receiving a trigger signal, collects the feature data of the weighing system, and generates and updates parameters of the weighing system from the feature data. The method and the system can ensure the original temperature, creep and hysteresis performance of the weighing system or a weighing load cell even in a changing environment, thereby realizing high-precision measurements.

Classes IPC  ?

  • G01G 23/01 - Test ou calibrage des appareils de pesée

99.

WEIGHING SENSOR AND LEVER

      
Numéro d'application CN2018118401
Numéro de publication 2019/109859
Statut Délivré - en vigueur
Date de dépôt 2018-11-30
Date de publication 2019-06-13
Propriétaire
  • METTLER TOLEDO INSTRUMENT (SHANGHAI) COMPANY LIMITED (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Wu, Chao
  • Liu, Baohui
  • Sun, Weixiang
  • Yang, Chun
  • Bian, Naifeng
  • Xu, Feng

Abrégé

A weighing sensor (1) comprises a load-receiving portion (11), a fixing portion (12) and a parallel guiding portion (13) connected to the load-receiving portion (11) and the fixing portion (12), wherein the parallel guiding portion (13) comprises an upper parallel guiding unit (131) and a lower parallel guiding unit (132) which are separated from each other, and two ends of the upper parallel guiding unit (131) and the lower parallel guiding unit (132) are respectively connected to the load-receiving portion (11) and the fixing portion (12), an extension (122) of the fixing portion (12) is located between the upper parallel guiding unit (131) and the lower parallel guiding unit (132), is provided at a distance from both the upper parallel guiding unit (131) and the lower parallel guiding (132) and extends to the load-receiving portion (11), and a gap is formed between the extension (122) and the load-receiving portion (11), and the distance between the extension (122) and the upper parallel guiding unit (131) is able to allow a lever (2) to pass through. A lever thereof is also disclosed. The weighting sensor (1) has a simple structure, both the processing process and the assembly process are simplified, and the processing and assembly during production are facilitated.

Classes IPC  ?

  • G01G 21/24 - Guides ou articulations pour assurer un déplacement parallèle des plateaux de pesée
  • G01G 7/02 - Appareils de pesée dans lesquels l'équilibrage est assuré par une action magnétique, électromagnétique ou électrostatique, ou par des moyens non prévus dans les groupes par action électromagnétique

100.

WEIGHING SENSOR AND ELECTRONIC BALANCE

      
Numéro d'application CN2018118398
Numéro de publication 2019/109857
Statut Délivré - en vigueur
Date de dépôt 2018-11-30
Date de publication 2019-06-13
Propriétaire
  • METTLER TOLEDO INSTRUMENT (SHANGHAI) COMPANY LIMITED (Chine)
  • METTLER-TOLEDO INTERNATIONAL TRADING (SHANGHAI) CO., LTD. (Chine)
Inventeur(s)
  • Wu, Chao
  • Liu, Baohui
  • Yang, Chun

Abrégé

A weighing sensor (10) used in an electronic balance comprises a weighing unit (11), which comprising a load-receiving portion (111), a fixing portion (112) and parallel guiding members (113) for connecting the load-receiving portion (111) and the fixing portion (112) together; a lever (12), wherein one end of the lever (12) is connected to the load-receiving portion (112), and the lever (12) is disposed between the parallel guiding members (113) and the fixing portion (112); and a photoelectric position limiting block (14), wherein a lower portion of the photoelectric position limiting block (14) is connected to the fixing portion (112), an upper portion of the photoelectric position limiting block (14) is provided with a limiting structure (141), and a tail end portion of the other end of the lever (12) is disposed in the limiting structure (141) to limit a deviation of the tail end portion of the other end of the lever (12). A photoelectric position sensor and a stop structure for preventing the tail portion of the lever (12) from being deviated to a relatively deviation are both provided on the photoelectric position limiting block (14) to form an integral structure, and such a weighing sensor has the advantages of a simple structure, convenient to assemble, low cost, etc. An electronic balance comprising the weighing sensor (10) is also provided.

Classes IPC  ?

  • G01G 7/02 - Appareils de pesée dans lesquels l'équilibrage est assuré par une action magnétique, électromagnétique ou électrostatique, ou par des moyens non prévus dans les groupes par action électromagnétique
  1     2        Prochaine page