Cedic Co., Ltd.

République de Corée

Retour au propriétaire

1-6 de 6 pour Cedic Co., Ltd. Trier par
Recheche Texte
Affiner par
Classe IPC
G06F 17/50 - Conception assistée par ordinateur 3
B60H 1/00 - Dispositifs de chauffage, de refroidissement ou de ventilation 1
F21V 15/00 - Protection des dispositifs d'éclairage contre les détériorations 1
F21V 29/00 - Protection des dispositifs d'éclairage contre les détériorations thermiquesDispositions de refroidissement ou de chauffage spécialement adaptées aux dispositifs ou systèmes d'éclairage 1
F21V 29/02 - Refroidissement en forçant l'air sur ou autour de la source lumineuse (dispositions de réfrigération structurellement associées avec des lampes électriques H01J 61/52, H01K 1/58) 1
Voir plus
Résultats pour  brevets

1.

AUTOMATIC HEATING AND COOLING CONTROL METHOD FOR AIR CONDITIONER IN VEHICLE

      
Numéro d'application KR2018014412
Numéro de publication 2020/101092
Statut Délivré - en vigueur
Date de dépôt 2018-11-22
Date de publication 2020-05-22
Propriétaire CEDIC CO., LTD. (République de Corée)
Inventeur(s)
  • Cho, Jang-Hyung
  • Jeon, Wan-Ho
  • Yoo, Byeong-Kang
  • Sim, Joo-Ho

Abrégé

The present invention relates to an automatic heating and cooling control method for an air condition controller in a vehicle. The purpose of the present invention is to provide smoother operation and more comfortable environments than in conventional methods and to reduce the frequency of console manipulations by using an operation mode according to words describing sensations rather than temperature and automatically controlling heating and cooling of air inside a compartment according to the operation mode, instead of manually adjusting the inside temperature of the compartment every time. To this end, the automatic heating and cooling control method for an air conditioner in a vehicle, according to the present invention, comprises the steps of: selecting, by a user, a desired air operation mode of an air conditioner; measuring, by the air conditioner, inside temperature and outside air temperature according to the selected air operation mode to determine a cooling, heating, or fan operation, and starting an initial operation therefor; setting an inside temperature according to the outside air temperature when a mode for the initial operation terminates; adjusting the set inside temperature according to a compensation value obtained from the current inside temperature; and operating the air conditioner set at a final target temperature obtained by adding the adjusted temperature to a compensation temperature determined according to the operation modes.

Classes IPC  ?

  • B60H 1/00 - Dispositifs de chauffage, de refroidissement ou de ventilation

2.

AUTOMATIC VIRTUAL WIND TUNNEL SYSTEM AND AUTOMATIC VIRTUAL WIND TUNNEL ANALYSIS METHOD

      
Numéro d'application KR2018002422
Numéro de publication 2019/168215
Statut Délivré - en vigueur
Date de dépôt 2018-02-28
Date de publication 2019-09-06
Propriétaire CEDIC CO., LTD. (République de Corée)
Inventeur(s)
  • Cho, Jang-Hyung
  • Jeon, Wan-Ho
  • Kim, Jung-Ill

Abrégé

The present invention relates to virtual wind tunnel analysis that enables a user to determine whether a designed model is suitable and, more particularly, to a virtual wind tunnel system and a heat flow analysis method which requires no special experienced analyst for thermal flow analysis and enables an untrained user to directly analyze a heat flow. The method comprises: a step of creating a model file by a CAD program; a pre-processing step of generating, by a user, a volume mesh and a surface mesh by calling the model file via a GUI in an integration environment of a computer; a solving step of processing the generated information so as to calculate an analysis result value; and a post-processing step of visualizing the result value, wherein the pre-processing step is a step of reading the model file, generating a domain suitable for a model size, inspecting and cleaning an intersection, and then specifying a mesh input value (a boundary condition) so as to automatically generate the surface mesh and the volume mesh, and the post-processing step is achieved in the integrated environment of the computer. A method and system for automatic virtual wind tunnel analysis, configured according to the present invention, does not require learning and understanding of complicated and specialized menus provided by a CAE program, and enables generation of a mesh and configuration of a boundary condition (an analysis condition) to be automatically performed only by specifying a pre-defined attribute value by a designer during a work procedure of modeling a 3-dimemsional stereoscopic shape, without relying on the designer's expertise.

Classes IPC  ?

  • G06F 17/50 - Conception assistée par ordinateur

3.

METHOD AND SYSTEM FOR AUTOMATIC FLOW FIELD ANALYSIS USING WEB-BASED VIRTUAL WIND TUNNEL

      
Numéro d'application KR2017004475
Numéro de publication 2018/199356
Statut Délivré - en vigueur
Date de dépôt 2017-04-27
Date de publication 2018-11-01
Propriétaire SEDIC. CO., LTD (République de Corée)
Inventeur(s)
  • Cho, Janghyung
  • Jeon, Wanho
  • Kim, Jeongil
  • Lim, Taegyun

Abrégé

The present invention relates to a method and a system for automatic flow field analysis using a web-based virtual wind tunnel and is characterized by a method for automatic flow field analysis using a web-based virtual wind tunnel and a system for performing the same, the method comprising: a step (S10) of allowing a user PC to generate a standardized 3D model; a step (S20) of allowing the user PC to be accessed to a website so as to upload the generated 3D model file; a user environment configuration step (S30) of allowing the user PC to transmit physical property information of the 3D model for which flow analysis is to be performed in the virtual wind tunnel; a step (S40) of allowing a server to generate an optimal virtual wind tunnel environment through the website on the basis of the 3D model and the physical property information thereof; a step (50) of allowing the server to automatically perform flow analysis; and an automatic flow analysis result deriving step (S60) of allowing the server to transmit the derived flow analysis information through the website.

Classes IPC  ?

4.

METHOD AND APPARATUS FOR FAN SIMULATION THROUGH FLOW ANALYSIS

      
Numéro d'application KR2016004442
Numéro de publication 2017/188474
Statut Délivré - en vigueur
Date de dépôt 2016-04-28
Date de publication 2017-11-02
Propriétaire CEDIC CO., LTD. (République de Corée)
Inventeur(s)
  • Cho, Jang-Hyung
  • Jeon, Wan-Ho
  • Park, Jun-Churl

Abrégé

According to an embodiment of the present invention, a method for fan simulation through flow analysis comprises the steps of: inputting point data and tester dimensions by a user; performing a calculation for the point data to generate the shape of a fan, and generating a tester from the tester dimensions; generating a grid on the fan; inputting a boundary condition for the fan so as to analyze flow produced by the fan; and calculating a noise index from the analysis, wherein the noise index is proportional to a pressure deviation according to a position of the fan when the flow produced by the fan is in a steady state.

Classes IPC  ?

  • G06F 17/50 - Conception assistée par ordinateur
  • G10K 11/16 - Procédés ou dispositifs de protection contre le bruit ou les autres ondes acoustiques ou pour amortir ceux-ci, en général
  • G01H 17/00 - Mesure des vibrations mécaniques ou des ondes ultrasonores, sonores ou infrasonores non prévue dans les autres groupes de la présente sous-classe

5.

LED MODULE WITH COOLING PASSAGE

      
Numéro d'application KR2010008842
Numéro de publication 2011/078505
Statut Délivré - en vigueur
Date de dépôt 2010-12-10
Date de publication 2011-06-30
Propriétaire CEDIC CO., LTD. (République de Corée)
Inventeur(s) Cho, Jang-Hyung

Abrégé

According to the present invention, an LED module with a cooling passage, comprises: a light source unit having a plurality of LED's which provide light through an appropriate power supply; and one or more cooling units which form said cooling passage, which combine the heat generated from the LEDs with ambient (外氣) heat and discharges the combined heat in an opposite direction.

Classes IPC  ?

  • F21V 29/02 - Refroidissement en forçant l'air sur ou autour de la source lumineuse (dispositions de réfrigération structurellement associées avec des lampes électriques H01J 61/52, H01K 1/58)
  • F21V 7/20 - spécialement adaptée pour faciliter le refroidissement, p.ex. avec des ailettes
  • F21V 15/00 - Protection des dispositifs d'éclairage contre les détériorations

6.

BENT-TYPE HEAT DISSIPATER

      
Numéro d'application KR2010008878
Numéro de publication 2011/078507
Statut Délivré - en vigueur
Date de dépôt 2010-12-13
Date de publication 2011-06-30
Propriétaire CEDIC CO., LTD. (République de Corée)
Inventeur(s) Cho, Jang-Hyung

Abrégé

The present invention relates to a bent-type heat dissipater, comprising: at least one or a plurality of heat sinks which are adapted with cooling apertures; at least one or a plurality of cooling pins which are bent in structure, and which are integrated to said heat sinks; and a central heat passage for combining heat moving in one direction with ambient air, and discharging the heat in the opposite direction.

Classes IPC  ?

  • F21V 29/00 - Protection des dispositifs d'éclairage contre les détériorations thermiquesDispositions de refroidissement ou de chauffage spécialement adaptées aux dispositifs ou systèmes d'éclairage