Shure Acquisition Holdings, Inc.

États‑Unis d’Amérique

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Type PI
        Brevet 438
        Marque 75
Juridiction
        États-Unis 330
        International 135
        Europe 34
        Canada 14
Date
Nouveautés (dernières 4 semaines) 5
2025 avril (MACJ) 4
2025 mars 8
2025 février 3
2025 janvier 13
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Classe IPC
H04R 3/00 - Circuits pour transducteurs 95
H04R 1/40 - Dispositions pour obtenir la fréquence désirée ou les caractéristiques directionnelles pour obtenir la caractéristique directionnelle désirée uniquement en combinant plusieurs transducteurs identiques 69
H04R 1/08 - EmbouchuresLeurs fixations 39
H04R 1/04 - Association constructive d'un microphone avec son circuit électrique 33
G06F 3/16 - Entrée acoustiqueSortie acoustique 27
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Classe NICE
09 - Appareils et instruments scientifiques et électriques 75
16 - Papier, carton et produits en ces matières 7
37 - Services de construction; extraction minière; installation et réparation 6
01 - Produits chimiques destinés à l'industrie, aux sciences ainsi qu'à l'agriculture 1
06 - Métaux communs et minerais; objets en métal 1
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Statut
En Instance 86
Enregistré / En vigueur 427
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1.

SCALABLE MULTIUSER AUDIO SYSTEM AND METHOD

      
Numéro d'application 18949033
Statut En instance
Date de dépôt 2024-11-15
Date de la première publication 2025-04-17
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Mamola, Robert
  • Zancho, Bryan W.
  • Chang, Jiang
  • Xu, Honghui
  • Goodson, Michael Joseph

Abrégé

Described are systems, methods, apparatuses, and computer program products for wireless in-ear-monitoring (IEM) of audio. A system includes transmitter(s) configured to map orthogonal sub-carriers of a digital signal to narrowband receivers to form receiver-allocated audio channels, modulate the digital signal, and transmit the signal as an ultra-high frequency (UHF) analog carrier wave comprising the orthogonal sub-carriers to the nearby receiver. A narrowband receiver is configured to demodulate and sample the sub-carriers allocated to the receiver. Sub-carriers can be positioned orthogonal to one another in adjacent sub-bands of the frequency domain and beacon symbols and pilot signals can be iteratively provided in the same portion of the frequency domain for each channel. The receiver can use non-data-aided and data-aided approaches for synchronization of the time domain and frequency domain waveforms of the received signal to the transmitted signal prior to sampling the allocated sub-carriers.

Classes IPC  ?

  • H04B 5/72 - Systèmes de transmission en champ proche, p. ex. systèmes à transmission capacitive ou inductive spécialement adaptés à des fins spécifiques pour la communication locale à l'intérieur d’un dispositif
  • H04R 1/10 - ÉcouteursLeurs fixations

2.

Microphone

      
Numéro d'application 29894118
Numéro de brevet D1070825
Statut Délivré - en vigueur
Date de dépôt 2023-06-06
Date de la première publication 2025-04-15
Date d'octroi 2025-04-15
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Ruggles, Jase A.
  • Nagel, Michael Shane
  • Miller, John Matthew

3.

AUDIO ACCESS POINT TRANSCEIVER SUPPORTING ADVANCED WIRELESS PAIRING INTERFACES, CLOCK SYNCHRONIZATION, AND DOCKING DETECTION

      
Numéro d'application 18909388
Statut En instance
Date de dépôt 2024-10-08
Date de la première publication 2025-04-10
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Daube, Doug
  • Johnson, Eric
  • Pessin, James

Abrégé

An example audio access point transceiver configured to send and receive encrypted wireless audio signals to and from audio capture devices and distribute audio signal data to an audio processing network is provided. The example audio access point transceiver includes a wireless control communication interface, a wireless audio communication interface, and a wired audio communication interface. The wireless control communication interface may be configured to perform a first pairing validation operation that includes determining a wireless audio communication profile, enabling the transmission and receipt of encrypted wireless audio control signals. The wireless audio communication interface may be configured to perform a second pairing validation operation including a channel assignment operation enabling the transmission and receipt of encrypted wireless audio signals to and from audio capture devices. The wired audio communication interface may enable the distribution of audio signal data to the audio processing network.

Classes IPC  ?

  • H04W 12/50 - Appariement sécurisé de dispositifs
  • G06F 1/12 - Synchronisation des différents signaux d'horloge
  • G06F 1/16 - Détails ou dispositions de structure
  • H04W 12/03 - Protection de la confidentialité, p. ex. par chiffrement

4.

IDENTIFICATION AND CONTINUOUS TRACKING OF AN ACOUSTIC SOURCE

      
Numéro d'application 18899632
Statut En instance
Date de dépôt 2024-09-27
Date de la première publication 2025-04-03
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Joshi, Bijal
  • Platz, Ken
  • Lamy, Guillaume

Abrégé

Embodiments disclosed herein are configured to provide automatic identification and continuous tracking of an acoustic source generating audio signals in an acoustic environment. Embodiments can receive audio signals captured by steerable microphone arrays situated within the acoustic environment and identify, based on the audio signals and an acoustic source identification model, the acoustic source associated with the audio signals. Embodiments can generate, based on the audio signals, a localization object associated with the acoustic source and direct, based on the localization object, microphone lobes associated with the steerable microphone arrays toward the acoustic source. Embodiments can also generate, based on receiving subsequent audio signals, an updated localization object associated with the acoustic source and direct, based on the updated localization object, the microphone lobes of the steerable microphone arrays toward the acoustic source.

Classes IPC  ?

  • H04R 1/40 - Dispositions pour obtenir la fréquence désirée ou les caractéristiques directionnelles pour obtenir la caractéristique directionnelle désirée uniquement en combinant plusieurs transducteurs identiques
  • G10L 17/20 - Transformations de motifs ou opérations ayant pout but d’augmenter la robustesse du système, p. ex. contre le bruit du canal ou les différentes conditions de fonctionnement
  • H04R 1/08 - EmbouchuresLeurs fixations

5.

Dynamic Microphone Configuration

      
Numéro d'application 18830984
Statut En instance
Date de dépôt 2024-09-11
Date de la première publication 2025-03-27
Propriétaire Shure Acquisition Holding, Inc. (USA)
Inventeur(s) Joshi, Bijal R.

Abrégé

Aspects of the disclosure relate to signal processing of audio received via multiple microphones. Audio received via multiple microphones may be spectrally processed to reduce interference and/or noise. For example, audio received via a first microphone may be processed with a transfer function which depends on a frequency response of the first microphone and a second microphone. The processed audio may be combined with audio received via the second microphone. The first microphone may be an omnidirectional microphone and the second microphone may be a directional microphone.

Classes IPC  ?

6.

Microphone

      
Numéro d'application 29876995
Numéro de brevet D1067217
Statut Délivré - en vigueur
Date de dépôt 2023-05-31
Date de la première publication 2025-03-18
Date d'octroi 2025-03-18
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Ruggles, Jase A.
  • Miller, John Matthew
  • Born, John

7.

Microphone

      
Numéro d'application 29876996
Numéro de brevet D1067218
Statut Délivré - en vigueur
Date de dépôt 2023-05-31
Date de la première publication 2025-03-18
Date d'octroi 2025-03-18
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Ruggles, Jase A.
  • Miller, John Matthew
  • Born, John

8.

FPGA-Based Adjustable Clock for Audio Devices

      
Numéro d'application 18243920
Statut En instance
Date de dépôt 2023-09-08
Date de la première publication 2025-03-13
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Warkentin, Eugen
  • Mansouri, Mack

Abrégé

An adjustable clock that may be implemented on a field-programmable gate array (FPGA). The adjustable clock may be highly accurate and stable, and may be adjustable in response to software commands. The adjustable clock may be configured to generate a clock signal that is synchronized in frequency and/or phase with a clock that is external to the FPGA, such as a Precision Time Protocol (PTP) clock. The FPGA may implement the adjustable clock with a number of elements as programmable logic, including a numerically-controlled frequency divider, a multi-tap delay line, logic configured to dynamically select, for each clock pulse, a delay of the multi-tap delay line, and a feedback loop to control the numerically-controlled frequency divider.

Classes IPC  ?

  • H03K 19/17736 - Détails structurels des ressources de routage
  • G06F 1/06 - Générateurs d'horloge produisant plusieurs signaux d'horloge

9.

Microphone

      
Numéro d'application 29852821
Numéro de brevet D1066307
Statut Délivré - en vigueur
Date de dépôt 2022-09-09
Date de la première publication 2025-03-11
Date d'octroi 2025-03-11
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Miller, John Matthew
  • Diamond, Michael Alan

10.

Microphone

      
Numéro d'application 29856793
Numéro de brevet D1066308
Statut Délivré - en vigueur
Date de dépôt 2022-10-17
Date de la première publication 2025-03-11
Date d'octroi 2025-03-11
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Miller, John Matthew
  • Diamond, Michael Alan

11.

FRONT-END AUDIO PROCESSING FOR AUTOMATIC SPEECH RECOGNITION

      
Numéro d'application 18817608
Statut En instance
Date de dépôt 2024-08-28
Date de la première publication 2025-03-06
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Tian, Wenshun
  • Lester, Michael
  • Shumard, Brent
  • Gao, Bibo

Abrégé

Techniques are disclosed herein for providing front-end audio processing for automatic speech recognition. Examples may include receiving audio data from one or more microphone array devices located within an audio environment, extracting an audio feature set from the audio data, inputting the audio feature set to an audio source separation model to generate an audio speech signal configured for automatic speech recognition (ASR), inputting the audio speech signal to an ASR model configured to generate textual data, and outputting the textual data to a post-processing system.

Classes IPC  ?

  • G10L 15/183 - Classement ou recherche de la parole utilisant une modélisation du langage naturel selon les contextes, p. ex. modèles de langage
  • G06V 20/40 - ScènesÉléments spécifiques à la scène dans le contenu vidéo
  • G10L 15/02 - Extraction de caractéristiques pour la reconnaissance de la paroleSélection d'unités de reconnaissance
  • G10L 21/028 - Séparation du signal de voix utilisant les propriétés des sources sonores
  • G10L 25/57 - Techniques d'analyse de la parole ou de la voix qui ne se limitent pas à un seul des groupes spécialement adaptées pour un usage particulier pour comparaison ou différentiation pour le traitement des signaux vidéo
  • H04R 3/00 - Circuits pour transducteurs

12.

FRONT-END AUDIO PROCESSING FOR AUTOMATIC SPEECH RECOGNITION

      
Numéro d'application US2024044248
Numéro de publication 2025/049620
Statut Délivré - en vigueur
Date de dépôt 2024-08-28
Date de publication 2025-03-06
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Tian, Wenshun
  • Lester, Michael
  • Shumard, Brent
  • Gao, Bibo

Abrégé

Techniques are disclosed herein for providing front-end audio processing for automatic speech recognition. Examples may include receiving audio data from one or more microphone array devices located within an audio environment, extracting an audio feature set from the audio data, inputting the audio feature set to an audio source separation model to generate an audio speech signal configured for automatic speech recognition (ASR), inputting the audio speech signal to an ASR model configured to generate textual data, and outputting the textual data to a post-processing system.

Classes IPC  ?

13.

NEURAL ACOUSTIC MODELING FOR AN AUDIO ENVIRONMENT

      
Numéro d'application 18806864
Statut En instance
Date de dépôt 2024-08-16
Date de la première publication 2025-02-20
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Becke, Paul
  • Law, Daniel
  • Seitz, Nathan

Abrégé

Techniques are disclosed herein for providing neural acoustic modeling for an audio environment. Examples may include receiving audio data and image data associated with an audio environment, generating an image set comprising a plurality of images each associated with audio samples representing acoustic properties of the audio environment, and generating an audio rendering model for the audio environment based at least in part on the image set and the audio samples. The audio rendering model may include a neural rendering volumetric representation of the audio environment augmented with audio encodings.

Classes IPC  ?

  • G10L 25/30 - Techniques d'analyse de la parole ou de la voix qui ne se limitent pas à un seul des groupes caractérisées par la technique d’analyse utilisant des réseaux neuronaux
  • G06T 15/00 - Rendu d'images tridimensionnelles [3D]

14.

PARYLENE ELECTRET CONDENSER MICROPHONE BACKPLATE

      
Numéro d'application 18830127
Statut En instance
Date de dépôt 2024-09-10
Date de la première publication 2025-02-20
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Grigg, Benjamin Jay
  • Noetti, Donald D.

Abrégé

A backplate assembly for a condenser microphone is disclosed. The backplate may be coated with a parylene configured to help reduce the flatness deviation of the backplate across the diameter of the backplate. A plurality of openings may extend from the top portion of the backplate to the bottom portion of the backplate.

Classes IPC  ?

  • H04R 19/01 - Transducteurs électrostatiques caractérisés par l'utilisation d'électrets
  • B05D 1/00 - Procédés pour appliquer des liquides ou d'autres matériaux fluides aux surfaces
  • H04R 1/04 - Association constructive d'un microphone avec son circuit électrique
  • H04R 7/04 - Membranes planes
  • H04R 19/04 - Microphones
  • H04R 31/00 - Appareils ou procédés spécialement adaptés à la fabrication des transducteurs ou de leurs diaphragmes

15.

NEURAL ACOUSTIC MODELING FOR AN AUDIO ENVIRONMENT

      
Numéro d'application US2024042654
Numéro de publication 2025/038923
Statut Délivré - en vigueur
Date de dépôt 2024-08-16
Date de publication 2025-02-20
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Becke, Paul
  • Law, Daniel
  • Seitz, Nathan

Abrégé

Techniques are disclosed herein for providing neural acoustic modeling for an audio environment. Examples may include receiving audio data and image data associated with an audio environment, generating an image set comprising a plurality of images each associated with audio samples representing acoustic properties of the audio environment, and generating an audio rendering model for the audio environment based at least in part on the image set and the audio samples. The audio rendering model may include a neural rendering volumetric representation of the audio environment augmented with audio encodings.

Classes IPC  ?

  • G10L 13/00 - Synthèse de la paroleSystèmes de synthèse de la parole à partir de texte
  • G06T 15/20 - Calcul de perspectives
  • G10K 15/00 - Acoustique non prévue ailleurs
  • G10K 15/08 - Dispositions pour produire une réverbération sonore ou un écho
  • G10L 25/48 - Techniques d'analyse de la parole ou de la voix qui ne se limitent pas à un seul des groupes spécialement adaptées pour un usage particulier
  • H04S 7/00 - Dispositions pour l'indicationDispositions pour la commande, p. ex. pour la commande de l'équilibrage
  • G06N 3/04 - Architecture, p. ex. topologie d'interconnexion

16.

CONFERENCING SESSION FACILITATION SYSTEMS AND METHODS USING VIRTUAL ASSISTANT SYSTEMS AND ARTIFICIAL INTELLIGENCE ALGORITHMS

      
Numéro d'application 18677500
Statut En instance
Date de dépôt 2024-05-29
Date de la première publication 2025-01-30
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Law, Daniel Aaron
  • Reid, Chad Wolf
  • Foy, Kevin Othel

Abrégé

Conferencing system and methods for facilitating conferencing sessions in an environment using virtual assistant systems and artificial intelligence algorithms are disclosed. Virtual assistant systems may be integrated into devices of the conferencing system in order to enable higher quality experiences with the virtual assistant by providing improved audio and visual feedback. The conferencing system can provide improved control, configuration, and interaction with the devices of the conferencing system through use of artificial intelligence algorithm that processes voice commands and characteristics of the environment and conferencing sessions, which can result in better system performance and increased user satisfaction.

Classes IPC  ?

  • H04L 12/18 - Dispositions pour la fourniture de services particuliers aux abonnés pour la diffusion ou les conférences
  • G10L 15/22 - Procédures utilisées pendant le processus de reconnaissance de la parole, p. ex. dialogue homme-machine

17.

Determination and Compensation of Radio Frequency Signal Attenuation

      
Numéro d'application 18910304
Statut En instance
Date de dépôt 2024-10-09
Date de la première publication 2025-01-23
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Kenkel, Mark Allen
  • Anderson, Scott R.
  • Grad, Steven M.
  • Halverson, Jon Caleb

Abrégé

A wireless microphone system may be configured to compensate for a radio frequency (RF) loss incurred in a wired communication path. The system may comprise a receiver configured to receive an downlink RF signal from a wireless microphone, and a transmission line accessory configured to receive an uplink test signal. The RF test signal may be generated from an RF source and may be measured by the transmission line accessory to determine configuration information for an adjustable RF gain circuit.

Classes IPC  ?

  • H04B 3/06 - Réglage de la transmissionÉgalisation par le signal transmis
  • H04B 1/18 - Circuits d'entrée, p. ex. pour le couplage à une antenne ou à une ligne de transmission
  • H04B 3/46 - SurveillanceTests
  • H04B 17/00 - SurveillanceTests
  • H04R 29/00 - Dispositifs de contrôleDispositifs de tests

18.

AGGREGATE NOISE TREATMENT SYSTEMS AND METHODS

      
Numéro d'application 18774320
Statut En instance
Date de dépôt 2024-07-16
Date de la première publication 2025-01-23
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Joshi, Bijal
  • Kirsch, Matthew Robert
  • Moles, Steven Christopher

Abrégé

Systems and methods are disclosed for providing a more consistent background noise for mixed audio transmitted from a local environment to a remote location. The systems and methods may generate and add aggregate comfort noise to a mixed audio signal, and the aggregate comfort noise may be based on noise spectral estimates from each audio device in an environment. Metrics related to speech and noise levels may be shared between the audio devices in an environment to modify the noise reduction processing of audio signals on each audio device.

Classes IPC  ?

  • G10K 11/16 - Procédés ou dispositifs de protection contre le bruit ou les autres ondes acoustiques ou pour amortir ceux-ci, en général

19.

AUTOMATED THRESHOLD ADJUSTMENT OF NON-LINEAR PROCESSOR FOR ACOUSTIC ECHO CANCELLATION

      
Numéro d'application 18774427
Statut En instance
Date de dépôt 2024-07-16
Date de la première publication 2025-01-23
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Akhtar, Airas
  • Sconza, Justin Joseph

Abrégé

Acoustic echo cancellation systems and methods are provided that can automatically adjust a threshold of a non-linear processor based on the state of a conferencing session, such as a far end single talk condition or a doubletalk condition. The state of the conferencing session may be detected based on various combinations of metrics that are measured from a microphone signal and a remote audio signal. The systems and methods can improve the removal of residual echo and therefore enhance the overall performance of the acoustic echo cancellation system.

Classes IPC  ?

  • G10K 11/175 - Procédés ou dispositifs de protection contre le bruit ou les autres ondes acoustiques ou pour amortir ceux-ci, en général utilisant des effets d'interférenceMasquage du son

20.

SYSTEMS AND METHODS FOR TALKER TRACKING AND CAMERA POSITIONING IN THE PRESENCE OF ACOUSTIC REFLECTIONS

      
Numéro d'application 18774697
Statut En instance
Date de dépôt 2024-07-16
Date de la première publication 2025-01-23
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Kane, Zachary
  • Rieger, Christopher George

Abrégé

Systems and methods configured to generate talker coordinates for directing a camera towards an active talker in the presence of acoustic reflections are disclosed. One method comprises receiving sound location information for a detected audio source from a microphone; determining, based on the sound location information, a first set of coordinates representing an estimated talker location; determining, based on the sound location information and a height of the environment, a second set of coordinates representing a corrected talker location; calculating a weighted height coordinate based on a first height coordinate of the first set of coordinates, a second height coordinate of the second set of coordinates, and stored height coordinates from previously detected audio sources; and transmitting, to a camera, a third set of coordinates comprising the weighted height coordinate and representing a final talker location, to cause the camera to point its image capturing component towards the received location.

Classes IPC  ?

  • H04N 23/695 - Commande de la direction de la caméra pour modifier le champ de vision, p. ex. par un panoramique, une inclinaison ou en fonction du suivi des objets
  • H04N 23/66 - Commande à distance de caméras ou de parties de caméra, p. ex. par des dispositifs de commande à distance

21.

AUTOMATED THRESHOLD ADJUSTMENT OF NON-LINEAR PROCESSOR FOR ACOUSTIC ECHO CANCELLATION

      
Numéro d'application US2024038208
Numéro de publication 2025/019494
Statut Délivré - en vigueur
Date de dépôt 2024-07-16
Date de publication 2025-01-23
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Akhtar, Airas
  • Sconza, Justin, Joseph

Abrégé

Acoustic echo cancellation systems and methods are provided that can automatically adjust a threshold of a non-linear processor based on the state of a conferencing session, such as a far end single talk condition or a doubletalk condition. The state of the conferencing session may be detected based on various combinations of metrics that are measured from a microphone signal and a remote audio signal. The systems and methods can improve the removal of residual echo and therefore enhance the overall performance of the acoustic echo cancellation system.

Classes IPC  ?

  • H04M 9/08 - Systèmes téléphoniques à haut-parleur à double sens comportant des moyens pour conditionner le signal, p. ex. pour supprimer les échos dans l'une ou les deux directions du trafic

22.

VIDEO FENCING SYSTEM AND METHOD

      
Numéro d'application US2024036908
Numéro de publication 2025/014810
Statut Délivré - en vigueur
Date de dépôt 2024-07-05
Date de publication 2025-01-16
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s) Joshi, Bijal

Abrégé

Systems and methods are provided for receiving, from at least one microphone (102), boundary information defining one or more boundaries (118) for an audio pick-up region (108); receiving, from the at least one microphone, sound location information indicating a detected sound position of an audio source (106) located within the audio pick-up region; identifying, based on the sound location information and the boundary information, a first boundary of the one or more boundaries as being located near the detected sound position; calculating a first distance between the detected sound position and the first boundary; determining, based on the first distance, a depth of field parameter for at least one camera (104); and providing the depth of field parameter and the sound location information to the at least one camera.

Classes IPC  ?

23.

Low-Latency Wireless Audio System

      
Numéro d'application 18763533
Statut En instance
Date de dépôt 2024-07-03
Date de la première publication 2025-01-16
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s) Doss, William Kevin

Abrégé

Aspects of the disclosure relate to use of aggregated signal transmission. An aggregated signal may comprise multiple packets, reception of which may be acknowledged via a block acknowledgment. A packet may be repeated in successive aggregated signal transmissions, with a maximum quantity of repetitions being based on a packet class associated with a packet. Repetition of a packet may be based on receiving a negative acknowledgment indicating failed packet reception and/or decoding. A frequency hopping protocol may be used for the successive aggregated signal transmissions.

Classes IPC  ?

  • H04L 1/1867 - Dispositions spécialement adaptées au point d’émission
  • H04L 1/08 - Dispositions pour détecter ou empêcher les erreurs dans l'information reçue par émission répétée, p. ex. système Verdan
  • H04L 1/1607 - Détails du signal de contrôle

24.

VIRTUAL UNIVERSAL SERIAL BUS INTERFACE

      
Numéro d'application 18899701
Statut En instance
Date de dépôt 2024-09-27
Date de la première publication 2025-01-16
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Portwood, Jonathan
  • Pei, Jingan
  • Wu, Kehang
  • Abraham, Mathew T.

Abrégé

A virtual USB interface can enable a software module, e.g., conferencing software, to interface with a software audio endpoint as if the software audio endpoint were a physical USB endpoint. Signals conforming to the USB standard can be transceived and adapted to and from non-USB signals using the virtual USB interface. Both the signals conforming to the USB standard and the non-USB signals may include a media channel and/or a control channel.

Classes IPC  ?

  • G06F 3/16 - Entrée acoustiqueSortie acoustique
  • G06F 13/42 - Protocole de transfert pour bus, p. ex. liaisonSynchronisation
  • G10L 21/0208 - Filtration du bruit
  • G10L 21/0232 - Traitement dans le domaine fréquentiel
  • H04L 67/00 - Dispositions ou protocoles de réseau pour la prise en charge de services ou d'applications réseau

25.

AUDIO ENHANCEMENT AND OPTIMIZATION OF AN IMMERSIVE AUDIO EXPERIENCE

      
Numéro d'application US2024036813
Numéro de publication 2025/014782
Statut Délivré - en vigueur
Date de dépôt 2024-07-03
Date de publication 2025-01-16
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Yost, Christian
  • Lester, Michael
  • Prosinski, Michael
  • Sconza, Justin

Abrégé

Techniques are disclosed herein for providing audio enhancement and optimization of an immersive audio experience. Examples may include generating an audio feature set for a transduced audio stream captured in an environment, inputting the audio feature set to a neural network model configured to generate an audio isolation mask associated with the transduced audio stream, and generating isolated audio for the transduced audio stream based at least in part on the audio isolation mask.

Classes IPC  ?

  • H04R 3/00 - Circuits pour transducteurs
  • G06N 3/08 - Méthodes d'apprentissage
  • G10L 21/0272 - Séparation du signal de voix
  • H04R 27/00 - Systèmes d'annonce en public
  • G10L 21/0232 - Traitement dans le domaine fréquentiel
  • H04H 60/04 - Équipement de studioInterconnexion des studios
  • H04R 1/40 - Dispositions pour obtenir la fréquence désirée ou les caractéristiques directionnelles pour obtenir la caractéristique directionnelle désirée uniquement en combinant plusieurs transducteurs identiques
  • G10L 21/0216 - Filtration du bruit caractérisée par le procédé d’estimation du bruit

26.

CONFERENCING SYSTEMS AND METHODS FOR ADJUSTING CAMERA TRACKING BASED ON MICROPHONE COVERAGE

      
Numéro d'application 18763953
Statut En instance
Date de dépôt 2024-07-03
Date de la première publication 2025-01-09
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Joshi, Bijal
  • Daube, Douglas

Abrégé

Conferencing systems and methods configured to more accurately and optimally position cameras towards a talker are disclosed. The positioning of cameras may be based on the coverage area of microphone arrays in an environment and through the use of error regions surrounding camera presets.

Classes IPC  ?

  • H04N 23/60 - Commande des caméras ou des modules de caméras
  • H04L 12/18 - Dispositions pour la fourniture de services particuliers aux abonnés pour la diffusion ou les conférences
  • H04N 23/62 - Commande des paramètres via des interfaces utilisateur
  • H04N 23/69 - Commande de moyens permettant de modifier l'angle du champ de vision, p. ex. des objectifs de zoom optique ou un zoom électronique
  • H04N 23/90 - Agencement de caméras ou de modules de caméras, p. ex. de plusieurs caméras dans des studios de télévision ou des stades de sport
  • H04R 1/40 - Dispositions pour obtenir la fréquence désirée ou les caractéristiques directionnelles pour obtenir la caractéristique directionnelle désirée uniquement en combinant plusieurs transducteurs identiques
  • H04R 3/00 - Circuits pour transducteurs

27.

AUDIO ENHANCEMENT AND OPTIMIZATION OF AN IMMERSIVE AUDIO EXPERIENCE

      
Numéro d'application 18763719
Statut En instance
Date de dépôt 2024-07-03
Date de la première publication 2025-01-09
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Yost, Christian
  • Lester, Michael
  • Prosinski, Michael
  • Sconza, Justin

Abrégé

Techniques are disclosed herein for providing audio enhancement and optimization of an immersive audio experience. Examples may include generating an audio feature set for a transduced audio stream captured in an environment, inputting the audio feature set to a neural network model configured to generate an audio isolation mask associated with the transduced audio stream, and generating isolated audio for the transduced audio stream based at least in part on the audio isolation mask.

Classes IPC  ?

  • G10L 21/0232 - Traitement dans le domaine fréquentiel
  • G10L 21/0216 - Filtration du bruit caractérisée par le procédé d’estimation du bruit
  • G10L 25/30 - Techniques d'analyse de la parole ou de la voix qui ne se limitent pas à un seul des groupes caractérisées par la technique d’analyse utilisant des réseaux neuronaux
  • G10L 25/57 - Techniques d'analyse de la parole ou de la voix qui ne se limitent pas à un seul des groupes spécialement adaptées pour un usage particulier pour comparaison ou différentiation pour le traitement des signaux vidéo

28.

VIDEO FENCING SYSTEM AND METHOD

      
Numéro d'application 18764834
Statut En instance
Date de dépôt 2024-07-05
Date de la première publication 2025-01-09
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s) Joshi, Bijal

Abrégé

Systems and methods are provided for receiving, from at least one microphone, boundary information defining one or more boundaries for an audio pick-up region; receiving, from the at least one microphone, sound location information indicating a detected sound position of an audio source located within the audio pick-up region; identifying, based on the sound location information and the boundary information, a first boundary of the one or more boundaries as being located near the detected sound position; calculating a first distance between the detected sound position and the first boundary; determining, based on the first distance, a depth of field parameter for at least one camera; and providing the depth of field parameter and the sound location information to the at least one camera.

Classes IPC  ?

  • H04N 23/69 - Commande de moyens permettant de modifier l'angle du champ de vision, p. ex. des objectifs de zoom optique ou un zoom électronique

29.

SYSTEMS AND METHODS FOR INTEGRATED CONFERENCING PLATFORM

      
Numéro d'application 18612388
Statut En instance
Date de dépôt 2024-03-21
Date de la première publication 2024-12-26
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Moravy, Leif Josef
  • Abraham, Mathew T.
  • Gunia, Paul
  • Gibbs, John Casey
  • Farran, Lucas Brant

Abrégé

A software-based conferencing platform is provided. The platform comprises a plurality of audio sources providing input audio signals, the audio sources including a virtual audio device driver configured to receive far-end input audio signals from a conferencing software module, and a network audio library configured to receive near-end input audio signals from one or more near-end audio devices. The platform further comprises a digital signal processing component configured to receive the input audio signals from the audio sources and generate audio output signals based the received signals, the digital signal processing component comprising an acoustic echo cancellation module configured to apply acoustic echo cancellation techniques to one or more of the near-end input audio signals.

Classes IPC  ?

  • G10L 21/0232 - Traitement dans le domaine fréquentiel
  • G06F 3/16 - Entrée acoustiqueSortie acoustique
  • G06F 21/60 - Protection de données
  • G10L 21/0208 - Filtration du bruit
  • H04L 7/00 - Dispositions pour synchroniser le récepteur avec l'émetteur
  • H04L 43/08 - Surveillance ou test en fonction de métriques spécifiques, p. ex. la qualité du service [QoS], la consommation d’énergie ou les paramètres environnementaux
  • H04R 1/40 - Dispositions pour obtenir la fréquence désirée ou les caractéristiques directionnelles pour obtenir la caractéristique directionnelle désirée uniquement en combinant plusieurs transducteurs identiques
  • H04R 3/00 - Circuits pour transducteurs
  • H04R 3/12 - Circuits pour transducteurs pour distribuer des signaux à plusieurs haut-parleurs

30.

DISTRIBUTED LOCAL GROUP CONFIGURATION DATA STORAGE FOR IMPROVED GROUP EXTENSIBILITY

      
Numéro d'application 18743937
Statut En instance
Date de dépôt 2024-06-14
Date de la première publication 2024-12-19
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Trager, Ilya
  • Fox, Brendan

Abrégé

Various embodiments of the present disclosure provide methods, apparatus, systems, devices, and/or the like for improved group extensibility through distributed local group configuration data storage. An example method includes receiving, from one or more devices located within a network proximity, shared group configuration data, and, responsive to determining that a device conflict exists associated with the shared group configuration data, selecting as current shared group configuration data received shared group configuration data associated with a most recent update timestamp; and transmitting the current shared group configuration data to each device located within the network proximity.

Classes IPC  ?

  • H04L 41/0873 - Vérification des conflits de configuration entre les éléments du réseau
  • H04L 41/0803 - Réglages de configuration
  • H04L 41/22 - Dispositions pour la maintenance, l’administration ou la gestion des réseaux de commutation de données, p. ex. des réseaux de commutation de paquets comprenant des interfaces utilisateur graphiques spécialement adaptées [GUI]

31.

AMPLIFIER MICROPHONE

      
Numéro d'application 18739782
Statut En instance
Date de dépôt 2024-06-11
Date de la première publication 2024-12-19
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Born, John
  • Grigg, Benjamin Jay
  • Yang, Jill

Abrégé

A microphone may comprise a housing and a rotatable positioning member. The rotatable positioning member may be configured to aid in the specific placement of the microphone capsule relative to the surface of an audio output device. The rotatable positioning member may offset a force caused by a tension in a cable connected to the housing based on the rotatable positioning member being rotated from a first position to a second position.

Classes IPC  ?

  • H04R 1/02 - BoîtiersMeublesMontages à l'intérieur de ceux-ci

32.

VIDEOCONFERENCING DEVICE PROVIDING VIEWING ANGLE DIVERSITY

      
Numéro d'application US2024032268
Numéro de publication 2024/254004
Statut Délivré - en vigueur
Date de dépôt 2024-06-03
Date de publication 2024-12-12
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Kadiwala, Sanjay, Navinchandra
  • Guerra, Luis, Angel
  • Shumard, Brent, Robert
  • Barnett, Zachery, L.

Abrégé

A videoconferencing device (1300) may include an elongated housing (1302) having two ends, a microphone array (104), one or more loudspeakers (110), and a plurality of cameras (1330, 1332), where at least one of the cameras is disposed at one end of the housing at least another of the cameras is disposed at an opposite end of the housing. The videoconferencing device may also include a microphone array disposed within an acoustical cavity (106), where the cameras and loudspeakers are disposed outside of the acoustical cavity. The videoconferencing devices may provide viewing angle diversity of the cameras to better capture images and/or video of participants in a videoconference, and also provide more optimal audio capture of the participants.

Classes IPC  ?

33.

VIDEOCONFERENCING DEVICE PROVIDING VIEWING ANGLE DIVERSITY

      
Numéro d'application 18732090
Statut En instance
Date de dépôt 2024-06-03
Date de la première publication 2024-12-05
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Kadiwala, Sanjay Navinchandra
  • Guerra, Luis Angel
  • Shumard, Brent Robert
  • Barnett, Zachery L.

Abrégé

A videoconferencing device may include an elongated housing having two ends, a microphone array, one or more loudspeakers, and a plurality of cameras, where at least one of the cameras is disposed at one end of the housing at least another of the cameras is disposed at an opposite end of the housing. The videoconferencing device may also include a microphone array disposed within an acoustical cavity, where the cameras and loudspeakers are disposed outside of the acoustical cavity. The videoconferencing devices may provide viewing angle diversity of the cameras to better capture images and/or video of participants in a videoconference, and also provide more optimal audio capture of the participants.

Classes IPC  ?

34.

MULTI-LOBE DIGITAL MICROPHONE ENABLED AUDIO CAPTURE AND SPATIALIZATION FOR GENERATING AN IMMERSIVE ARENA BASED AUDIO EXPERIENCE

      
Numéro d'application 18800993
Statut En instance
Date de dépôt 2024-08-12
Date de la première publication 2024-12-05
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Born, John
  • Law, Daniel
  • Lester, Michael
  • Grundtvig, David
  • Shumard, Brent Robert
  • Oakley, William
  • Wiggins, Chad
  • Massaro, Paul

Abrégé

An example immersive audio signal processing system and a computer-implemented method for generating a target arena environment audio stream are provided. The example immersive audio signal processing system includes a plurality of multi-lobe digital sound wave capture devices positioned within the arena environment. The plurality of multi-lobe digital sound wave capture devices is configured to direct first beamformed lobes to a playing region of the arena environment, second beamformed lobes to a spectator region of the arena environment, and third beamformed lobes to a noise source region of the arena environment. A digital signal processor is configured to isolate noise audio components originating from at least the spectator region or the noise source region from the audio signal stream and generate a target arena environment audio stream.

Classes IPC  ?

  • H04S 7/00 - Dispositions pour l'indicationDispositions pour la commande, p. ex. pour la commande de l'équilibrage
  • G06F 3/16 - Entrée acoustiqueSortie acoustique
  • G06T 7/20 - Analyse du mouvement
  • G06T 7/70 - Détermination de la position ou de l'orientation des objets ou des caméras
  • G10L 25/57 - Techniques d'analyse de la parole ou de la voix qui ne se limitent pas à un seul des groupes spécialement adaptées pour un usage particulier pour comparaison ou différentiation pour le traitement des signaux vidéo
  • H04R 3/00 - Circuits pour transducteurs
  • H04R 5/027 - Dispositions spatiales ou structurelles des microphones, p. ex. dispositifs simulant la tête humaine

35.

ARRAY MICROPHONE APERTURE PREDISTORTION FOR IMPROVED DIRECTIVITY

      
Numéro d'application US2024030562
Numéro de publication 2024/249211
Statut Délivré - en vigueur
Date de dépôt 2024-05-22
Date de publication 2024-12-05
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s) Shumard, Brent Robert

Abrégé

Array microphone systems and methods for enabling predistortion of the aperture of an array microphone at various steering vectors are provided. The predistortion of the aperture can regularize the apparent aperture of the array microphone to be closer to that of the base aperture of the array microphone, while minimizing the number of microphone elements used. Improved directivity and more optimal pickup and capture of sound in the environment may result through the use of these systems and methods, which can help to avoid undesired noise and/or to more efficiently cover audio sources.

Classes IPC  ?

  • H04R 3/00 - Circuits pour transducteurs
  • H04R 1/40 - Dispositions pour obtenir la fréquence désirée ou les caractéristiques directionnelles pour obtenir la caractéristique directionnelle désirée uniquement en combinant plusieurs transducteurs identiques
  • H04R 3/04 - Circuits pour transducteurs pour corriger la fréquence de réponse

36.

ARRAY MICROPHONE APERTURE PREDISTORTION FOR IMPROVED DIRECTIVITY

      
Numéro d'application 18671392
Statut En instance
Date de dépôt 2024-05-22
Date de la première publication 2024-11-28
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s) Shumard, Brent Robert

Abrégé

Array microphone systems and methods for enabling predistortion of the aperture of an array microphone at various steering vectors are provided. The predistortion of the aperture can regularize the apparent aperture of the array microphone to be closer to that of the base aperture of the array microphone, while minimizing the number of microphone elements used. Improved directivity and more optimal pickup and capture of sound in the environment may result through the use of these systems and methods, which can help to avoid undesired noise and/or to more efficiently cover audio sources.

Classes IPC  ?

  • H04R 3/00 - Circuits pour transducteurs
  • H04R 1/40 - Dispositions pour obtenir la fréquence désirée ou les caractéristiques directionnelles pour obtenir la caractéristique directionnelle désirée uniquement en combinant plusieurs transducteurs identiques
  • H04R 3/04 - Circuits pour transducteurs pour corriger la fréquence de réponse

37.

MULTI-DIMENSIONAL ARRAY MICROPHONE

      
Numéro d'application US2024026771
Numéro de publication 2024/238131
Statut Délivré - en vigueur
Date de dépôt 2024-04-29
Date de publication 2024-11-21
Propriétaire SHURE ACQUISTITION HOLDINGS, INC. (USA)
Inventeur(s) Shumard, Brent, Robert

Abrégé

Embodiments include an array microphone, comprising: a plurality of microphone boards arranged in a linear pattern along a first axis and comprising a plurality of microphone elements configured to cover a plurality of frequency bands, each microphone board comprising: a first linear array comprising a first microphone element of the plurality of microphone elements and one or more second microphone elements of the plurality of microphone elements, the first microphone element located on the first axis and the one or more second microphone elements located on a second axis orthogonal to the first axis, and a second linear array comprising the first microphone element and one or more third microphone elements of the plurality of microphone elements, the one or more third microphone elements located on a third axis orthogonal to the first axis and to the second axis.

Classes IPC  ?

  • H04R 1/40 - Dispositions pour obtenir la fréquence désirée ou les caractéristiques directionnelles pour obtenir la caractéristique directionnelle désirée uniquement en combinant plusieurs transducteurs identiques

38.

BEAMFORMING FOR A MICROPHONE ARRAY BASED ON A STEERED RESPONSE POWER TRANSFORMATION OF AUDIO DATA

      
Numéro d'application 18660424
Statut En instance
Date de dépôt 2024-05-10
Date de la première publication 2024-11-14
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Tian, Wenshun
  • Lester, Michael

Abrégé

Techniques are disclosed herein for providing beamforming for at least one microphone array based at least in part on a steered response power (SRP) transformation of audio data. Examples may include receiving audio data from multiple audio capture devices comprising at least one microphone array located within an audio environment. Examples may also include generating an SRP transformation of the audio data. The SRP transformation may comprise a set of SRP weights for a spatial coordinate grid representing the audio environment. Examples may also include performing, based at least in part on a signal-to-noise ratio (SNR) estimate associated with the SRP transformation, one or more of beamforming steering or beamforming selection with respect to the at least one linear array microphone.

Classes IPC  ?

  • H04R 1/40 - Dispositions pour obtenir la fréquence désirée ou les caractéristiques directionnelles pour obtenir la caractéristique directionnelle désirée uniquement en combinant plusieurs transducteurs identiques
  • G10L 21/0216 - Filtration du bruit caractérisée par le procédé d’estimation du bruit
  • H04R 3/00 - Circuits pour transducteurs
  • H04S 7/00 - Dispositions pour l'indicationDispositions pour la commande, p. ex. pour la commande de l'équilibrage

39.

MULTI-DIMENSIONAL ARRAY MICROPHONE

      
Numéro d'application 18648033
Statut En instance
Date de dépôt 2024-04-26
Date de la première publication 2024-11-14
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s) Shumard, Brent Robert

Abrégé

Embodiments include an array microphone, comprising: a plurality of microphone boards arranged in a linear pattern along a first axis and comprising a plurality of microphone elements configured to cover a plurality of frequency bands, each microphone board comprising: a first linear array comprising a first microphone element of the plurality of microphone elements and one or more second microphone elements of the plurality of microphone elements, the first microphone element located on the first axis and the one or more second microphone elements located on a second axis orthogonal to the first axis, and a second linear array comprising the first microphone element and one or more third microphone elements of the plurality of microphone elements, the one or more third microphone elements located on a third axis orthogonal to the first axis and to the second axis.

Classes IPC  ?

  • H04R 1/26 - Dispositions dans l'espace de transducteurs séparés sensibles à plusieurs bandes de fréquences
  • H04R 1/40 - Dispositions pour obtenir la fréquence désirée ou les caractéristiques directionnelles pour obtenir la caractéristique directionnelle désirée uniquement en combinant plusieurs transducteurs identiques

40.

DETECTION AND ATTENUATION OF VOCAL ARTIFACTS IN AUDIO

      
Numéro d'application 18654624
Statut En instance
Date de dépôt 2024-05-03
Date de la première publication 2024-11-14
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Hopman, Stefan
  • Penniman, Ross
  • Sconza, Justin

Abrégé

Automatic detection and attenuation of vocal artifacts in an audio are described herein. First and second amplitude measurements may be generated for respective first and second frequency bands of an audio signal. A vocal artifact indication may be generated based on a ratio of the first and second amplitude measurements. The vocal artifact indication may be used to attenuate at least one of the first frequency band or the second frequency band. An attenuated signal may be provided in which one or more vocal artifacts have been attenuated.

Classes IPC  ?

  • G10L 21/0232 - Traitement dans le domaine fréquentiel
  • G10L 21/0264 - Filtration du bruit caractérisée par le type de mesure du paramètre, p. ex. techniques de corrélation, techniques de passage par zéro ou techniques prédictives

41.

DIRECTIONALLY DEPENDENT ACOUSTIC STRUCTURE FOR AUDIO PROCESSING RELATED TO AT LEAST ONE MICROPHONE SENSOR

      
Numéro d'application 18660433
Statut En instance
Date de dépôt 2024-05-10
Date de la première publication 2024-11-14
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Law, Daniel
  • Lester, Michael

Abrégé

Techniques for providing a directionally dependent acoustic structure for audio processing related to at least one microphone sensor are discussed herein. Examples may include transforming an augmented audio signal defined by a directionally dependent acoustic structure positioned proximate to at least one microphone sensor into at least one audio data object set, inputting the at least one audio data object set to a model configured to generate at least one spatialization data structure indicative of spatialization information for at least one audio source located within the audio environment, and generating audio processing data based at least in part on the at least one spatialization data structure.

Classes IPC  ?

  • H04S 7/00 - Dispositions pour l'indicationDispositions pour la commande, p. ex. pour la commande de l'équilibrage
  • H04R 5/027 - Dispositions spatiales ou structurelles des microphones, p. ex. dispositifs simulant la tête humaine

42.

ADAPTIVE SPEECH REGENERATION

      
Numéro d'application 18654898
Statut En instance
Date de dépôt 2024-05-03
Date de la première publication 2024-11-07
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Law, Daniel
  • Gao, Bibo
  • Swiderski, Mark

Abrégé

Embodiments provide for employing an audio transformation model to resynthesize speech signals associated with a speaking entity. Examples can receive audio signals comprising speech signals that are captured by an audio capture device. Examples can divide the audio signals into audio segments and input the audio segments into an audio transformation model to generate a voice vector representation and a speech vector representation. The voice vector representation comprises characteristics related to a speaking voice associated with the speaking entity and the speech vector representation comprises one or more words spoken by the speaking entity. The one or more words comprised in the speech vector representation are associated with respective contextual attributes associated with the one or more words. The audio transformation model can utilize the voice vector representation and the speech vector representation to regenerate the speech signals associated with the speaking entity.

Classes IPC  ?

  • G10L 13/02 - Procédés d'élaboration de parole synthétiqueSynthétiseurs de parole
  • G10L 15/04 - SegmentationDétection des limites de mots
  • G10L 15/26 - Systèmes de synthèse de texte à partir de la parole
  • G10L 25/30 - Techniques d'analyse de la parole ou de la voix qui ne se limitent pas à un seul des groupes caractérisées par la technique d’analyse utilisant des réseaux neuronaux

43.

AMBISONIC MICROPHONE

      
Numéro d'application US2024026424
Numéro de publication 2024/226908
Statut Délivré - en vigueur
Date de dépôt 2024-04-26
Date de publication 2024-10-31
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Koschak, Matthew
  • Taylor Iii, William Wallace
  • Bradel, Joseph Michael
  • Shumard, Brent Robert

Abrégé

Methods and apparatuses for capturing and encoding ambisonic audio are described herein. An example ambisonic microphone may comprise a first microphone capsule oriented substantially toward a first vertex of a notional tetrahedron, a second microphone capsule oriented substantially toward a second vertex of the notional tetrahedron, a third microphone capsule oriented substantially toward a third vertex of the notional tetrahedron, and a fourth microphone capsule oriented substantially toward a fourth vertex of the notional tetrahedron.

Classes IPC  ?

  • H04R 3/00 - Circuits pour transducteurs
  • H04S 3/00 - Systèmes utilisant plus de deux canaux, p. ex. systèmes quadriphoniques

44.

AMBISONIC MICROPHONE

      
Numéro d'application 18644251
Statut En instance
Date de dépôt 2024-04-24
Date de la première publication 2024-10-31
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Koschak, Matthew
  • Taylor, Iii, William Wallace
  • Bradel, Joseph Michael
  • Shumard, Brent Robert

Abrégé

Methods and apparatuses for capturing and encoding ambisonic audio are described herein. An example ambisonic microphone may comprise a first microphone capsule oriented substantially toward a first vertex of a notional tetrahedron, a second microphone capsule oriented substantially toward a second vertex of the notional tetrahedron, a third microphone capsule oriented substantially toward a third vertex of the notional tetrahedron, and a fourth microphone capsule oriented substantially toward a fourth vertex of the notional tetrahedron.

Classes IPC  ?

  • H04R 1/40 - Dispositions pour obtenir la fréquence désirée ou les caractéristiques directionnelles pour obtenir la caractéristique directionnelle désirée uniquement en combinant plusieurs transducteurs identiques
  • H04R 1/08 - EmbouchuresLeurs fixations
  • H04R 3/00 - Circuits pour transducteurs

45.

Soft Decision Audio Decoding System

      
Numéro d'application 18656115
Statut En instance
Date de dépôt 2024-05-06
Date de la première publication 2024-10-24
Propriétaire Shure Acquistition Holdings, Inc. (USA)
Inventeur(s) Mamola, Robert

Abrégé

A soft decision audio decoding system for preserving audio continuity in a digital wireless audio receiver is provided that deduces the likelihood of errors in a received digital signal, based on generated hard bits and soft bits. The soft bits may be utilized by a soft audio decoder to determine whether the digital signal should be decoded or muted. The soft bits may be generated based on the detected point and a detected noise power, or by using a soft-output Viterbi algorithm. The value of the soft bits may indicate confidence in the strength of the hard bit generation. The soft decision audio decoding system may infer errors and decode perceptually acceptable audio without requiring error detection, as in conventional systems, as well as have low latency and improved granularity.

Classes IPC  ?

  • G06F 3/16 - Entrée acoustiqueSortie acoustique
  • G10L 19/00 - Techniques d'analyse ou de synthèse de la parole ou des signaux audio pour la réduction de la redondance, p. ex. dans les vocodeursCodage ou décodage de la parole ou des signaux audio utilisant les modèles source-filtre ou l’analyse psychoacoustique
  • G10L 19/005 - Correction d’erreurs induites par le canal de transmission, lorsqu’elles sont liées à l’algorithme de codage
  • H03M 13/41 - Estimation de séquence, c.-à-d. utilisant des méthodes statistiques pour la reconstitution des codes originaux utilisant l'algorithme de Viterbi ou des processeurs de Viterbi

46.

PERSONAL STAGE MONITORING SYSTEM WITH PERSONAL MIXING

      
Numéro d'application 18631230
Statut En instance
Date de dépôt 2024-04-10
Date de la première publication 2024-10-17
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s) Jozwiak, Bryan Lee

Abrégé

Aspects of the disclosure relate to personal stage monitoring (PSM) systems and methods. A PSM system may include a transmitter and a receiver, where the transmitter may transmit audio data to the receiver to provide performers with monitoring feedback. The PSM transmitter may include audio processing and/or personal mixing devices that provide a customized mix of audio signals that may be transmitted to the receiver. The integration of the audio processing and/or mixing devices with the PSM transmitter advantageously reduces the complexity of the overall audio system and improves audio quality and performance by reducing noise and latency of the audio system.

Classes IPC  ?

  • H03G 1/02 - Commande à distance de l'amplification, de la tonalité ou de la largeur de bande
  • G10H 1/00 - Éléments d'instruments de musique électrophoniques
  • H03G 9/00 - Combinaisons de plusieurs types de commande, p. ex. commande de gain et commande de tonalité

47.

WIRELESS AUDIO SYSTEM

      
Numéro d'application 18613981
Statut En instance
Date de dépôt 2024-03-22
Date de la première publication 2024-09-26
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Born, John
  • Wiggins, Michael Chad
  • Oakley, William John
  • Grinnip, Roger
  • Lester, Michael
  • Massaro, Paul

Abrégé

Aspects of the disclosure relate to an audio system architecture designed for sound reinforcement. The audio system may comprise one or more input device(s), one or more output device(s), one or more wireless hubs, and one or more user computing devices. Connections between the input device(s), output device(s), and the one or more wireless hubs may be wireless and automated and/or managed via the one or more user computing devices. The user computing devices or the wireless hub may adjust a configuration of each of the devices in the audio system. One or more of the devices in the audio system may be capable of a network connection which may enable recording, live-streaming to remote audiences, system management and operation, cloud-based storage and/or processing, and more.

Classes IPC  ?

  • H04R 3/12 - Circuits pour transducteurs pour distribuer des signaux à plusieurs haut-parleurs

48.

PROXIMITY MICROPHONE

      
Numéro d'application 18679042
Statut En instance
Date de dépôt 2024-05-30
Date de la première publication 2024-09-26
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Shumard, Brent Robert
  • Gilbert, Mark
  • Wigley, Emily Ann
  • Grinnip, Iii, Roger Stephen

Abrégé

Embodiments include a microphone array comprising a first plurality of directional microphone elements arranged in a first cluster formed by directing a front face of the microphone elements towards a center of the first cluster, and a second plurality of directional microphone elements arranged in a second cluster formed by directing a front face of the elements away from a center of the second cluster, wherein the first cluster is disposed vertically above the second cluster. Also provided is a microphone comprising a first microphone array comprising a plurality of directional microphone elements arranged in close proximity to each other and configured to capture near-field sounds within a first range of frequencies, and a second microphone array disposed concentrically around the first microphone array, the second array comprising a plurality of omnidirectional microphone elements configured to capture near-field sounds within a second range of frequencies higher than the first range.

Classes IPC  ?

  • H04R 1/32 - Dispositions pour obtenir la fréquence désirée ou les caractéristiques directionnelles pour obtenir la caractéristique directionnelle désirée uniquement
  • G06F 3/16 - Entrée acoustiqueSortie acoustique
  • G10L 15/22 - Procédures utilisées pendant le processus de reconnaissance de la parole, p. ex. dialogue homme-machine
  • G10L 15/28 - Détails de structure des systèmes de reconnaissance de la parole
  • G10L 25/51 - Techniques d'analyse de la parole ou de la voix qui ne se limitent pas à un seul des groupes spécialement adaptées pour un usage particulier pour comparaison ou différentiation
  • H04R 1/40 - Dispositions pour obtenir la fréquence désirée ou les caractéristiques directionnelles pour obtenir la caractéristique directionnelle désirée uniquement en combinant plusieurs transducteurs identiques
  • H04R 3/00 - Circuits pour transducteurs

49.

WIRELESS AUDIO SYSTEM

      
Numéro d'application US2024021162
Numéro de publication 2024/197257
Statut Délivré - en vigueur
Date de dépôt 2024-03-22
Date de publication 2024-09-26
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Born, John
  • Oakley, William John
  • Wiggins, Michael Chad
  • Grinnip, Roger
  • Lester, Michael
  • Massaro, Paul

Abrégé

Aspects of the disclosure relate to an audio system architecture designed for sound reinforcement. The audio system may comprise one or more input device(s), one or more output device(s), one or more wireless hubs, and one or more user computing devices. Connections between the input device(s), output device(s), and the one or more wireless hubs may be wireless and automated and/or managed via the one or more user computing devices. The user computing devices or the wireless hub may adjust a configuration of each of the devices in the audio system. One or more of the devices in the audio system may be capable of a network connection which may enable recording, live-streaming to remote audiences, system management and operation, cloud-based storage and/or processing, and more.

Classes IPC  ?

  • H04R 3/00 - Circuits pour transducteurs
  • H04S 7/00 - Dispositions pour l'indicationDispositions pour la commande, p. ex. pour la commande de l'équilibrage

50.

SYSTEM AND METHOD FOR AUTOMATICALLY TUNING DIGITAL SIGNAL PROCESSING CONFIGURATIONS FOR AN AUDIO SYSTEM

      
Numéro d'application 18628402
Statut En instance
Date de dépôt 2024-04-05
Date de la première publication 2024-09-19
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Moles, Steven Christopher
  • Joshi, Bijal

Abrégé

Embodiments include a processing device communicatively coupled to a plurality of audio devices comprising at least one microphone and at least one speaker, and to a digital signal processing (DSP) component having a plurality of audio input channels for receiving audio signals captured by the at least one microphone, the processing device being configured to identify one or more of the audio devices based on a unique identifier associated with each of the one or more audio devices; obtain device information from each identified audio device; and adjust one or more settings of the DSP component based on the device information. A computer-implemented method of automatically configuring an audio conferencing system, comprising a digital signal processing (DSP) component and a plurality of audio devices including at least one speaker and at least one microphone, is also provided.

Classes IPC  ?

  • H04R 3/12 - Circuits pour transducteurs pour distribuer des signaux à plusieurs haut-parleurs
  • H04R 3/00 - Circuits pour transducteurs
  • H04R 5/02 - Dispositions spatiales ou structurelles de haut-parleurs
  • H04R 5/027 - Dispositions spatiales ou structurelles des microphones, p. ex. dispositifs simulant la tête humaine
  • H04R 29/00 - Dispositifs de contrôleDispositifs de tests
  • H04S 3/00 - Systèmes utilisant plus de deux canaux, p. ex. systèmes quadriphoniques

51.

AUDIO FENCING SYSTEM AND METHOD

      
Numéro d'application US2024018277
Numéro de publication 2024/186708
Statut Délivré - en vigueur
Date de dépôt 2024-03-03
Date de publication 2024-09-12
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Joshi, Bijal
  • Sconza, Justin Joseph
  • Lamy, Guillaume
  • Gibbs, John Casey
  • Kane, Zachary

Abrégé

Systems and methods are provided herein for deploying, using at least one microphone, a first microphone lobe towards a first location, the first microphone lobe configured to capture one or more first audio signals from a first audio source located within a first audio pick-up region; deploying, using the at least one microphone, a second microphone lobe towards a second location, the second microphone lobe configured to capture one or more second audio signals from a second audio source located outside the first audio pick-up region; and removing, using at least one processor, off-axis noise from the one or more first audio signals by applying, to the one or more first audio signals, a mask determined based on the one or more second audio signals.

Classes IPC  ?

  • G10L 21/0208 - Filtration du bruit
  • H04R 3/00 - Circuits pour transducteurs
  • G10L 21/0216 - Filtration du bruit caractérisée par le procédé d’estimation du bruit

52.

INTERMEDIATE FREQUENCY DIGITAL-TO-ANALOG CONVERSION (IFDAC) SYSTEM

      
Numéro d'application US2024017822
Numéro de publication 2024/186562
Statut Délivré - en vigueur
Date de dépôt 2024-02-29
Date de publication 2024-09-12
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s) Goodson, Michael J.

Abrégé

The present disclosure describes a digital-to-analog converter (DAC) comprising a programmable integrated circuit, a resampler, and a clock. The programmable integrated circuit may be configured to perform delta-sigma modulation to convert a digital signal to a coarse representation of an analog signal. The coarse representation of the analog signal may be sent to a first-stage of the resampler. After processing the signal, the first-stage of the resampler may pass a continuous signal to the second-stage of the resampler. The second-stage of the resampler produce a clean sampling instant for the signal that represents the point in time where the signal transitions from discrete time to continuous time. The analog signal may then be outputted to one or more receivers.

Classes IPC  ?

  • H03M 3/00 - Conversion de valeurs analogiques en, ou à partir d'une modulation différentielle

53.

Intermediate Frequency Digital-to-Analog Conversion (IFDAC) System

      
Numéro d'application 18591217
Statut En instance
Date de dépôt 2024-02-29
Date de la première publication 2024-09-05
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s) Goodson, Michael J.

Abrégé

The present disclosure describes a digital-to-analog converter (DAC) comprising a programmable integrated circuit, a resampler, and a clock. The programmable integrated circuit may be configured to perform delta-sigma modulation to convert a digital signal to a coarse representation of an analog signal. The coarse representation of the analog signal may be sent to a first-stage of the resampler. After processing the signal, the first-stage of the resampler may pass a continuous signal to the second-stage of the resampler. The second-stage of the resampler produce a clean sampling instant for the signal that represents the point in time where the signal transitions from discrete time to continuous time. The analog signal may then be outputted to one or more receivers.

Classes IPC  ?

  • H03M 3/00 - Conversion de valeurs analogiques en, ou à partir d'une modulation différentielle

54.

AUDIO FENCING SYSTEM AND METHOD

      
Numéro d'application 18593944
Statut En instance
Date de dépôt 2024-03-03
Date de la première publication 2024-09-05
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Joshi, Bijal
  • Sconza, Justin Joseph
  • Lamy, Guillaume
  • Gibbs, John Casey
  • Kane, Zachary

Abrégé

Systems and methods are provided herein for deploying, using at least one microphone, a first microphone lobe towards a first location, the first microphone lobe configured to capture one or more first audio signals from a first audio source located within a first audio pick-up region; deploying, using the at least one microphone, a second microphone lobe towards a second location, the second microphone lobe configured to capture one or more second audio signals from a second audio source located outside the first audio pick-up region; and removing, using at least one processor, off-axis noise from the one or more first audio signals by applying, to the one or more first audio signals, a mask determined based on the one or more second audio signals.

Classes IPC  ?

  • G10K 11/175 - Procédés ou dispositifs de protection contre le bruit ou les autres ondes acoustiques ou pour amortir ceux-ci, en général utilisant des effets d'interférenceMasquage du son
  • H04R 3/00 - Circuits pour transducteurs

55.

PREDICTED AUDIO IMMERSION RELATED TO AUDIO CAPTURE DEVICES WITHIN AN AUDIO ENVIRONMENT

      
Numéro d'application 18583230
Statut En instance
Date de dépôt 2024-02-21
Date de la première publication 2024-08-29
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Lester, Michael
  • Lorente, Iris

Abrégé

Techniques for predicted audio immersion related to audio capture devices within an audio environment are discussed herein. Examples may include receiving audio stream inputs associated with audio capture devices positioned within one or more audio capture areas of an audio environment, where the audio environment comprises the one or more audio capture areas and one or more non-audio capture areas. Additionally, the audio stream inputs are transformed into respective audio feature sets. The respective audio feature sets are then input to a hybrid neural network model configured to generate respective augmented signal path data vectors for the respective audio stream inputs. Respective neural network paths of the hybrid neural network model may process one or more of the respective audio feature sets based on respective digital signal processing augmentation networks integrated within the hybrid neural network model.

Classes IPC  ?

  • G06F 3/16 - Entrée acoustiqueSortie acoustique
  • H04R 5/027 - Dispositions spatiales ou structurelles des microphones, p. ex. dispositifs simulant la tête humaine
  • H04S 7/00 - Dispositions pour l'indicationDispositions pour la commande, p. ex. pour la commande de l'équilibrage

56.

Microphone

      
Numéro d'application 29889400
Numéro de brevet D1038088
Statut Délivré - en vigueur
Date de dépôt 2023-04-12
Date de la première publication 2024-08-06
Date d'octroi 2024-08-06
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Miller, John Matthew
  • Ruggles, Jase

57.

PARTIALLY ADAPTIVE AUDIO BEAMFORMING SYSTEMS AND METHODS

      
Numéro d'application US2024012839
Numéro de publication 2024/158954
Statut Délivré - en vigueur
Date de dépôt 2024-01-24
Date de publication 2024-08-02
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Cohen, Israel
  • Berdugo, Baruch

Abrégé

Partially adaptive audio beamforming systems and methods are provided that enable improved acoustic echo cancellation of sound played on a loudspeaker that is in close proximity to a microphone array in an audio device. A stored beamformer parameter, such as an inverse covariance matrix, can be utilized by a frequency domain beamformer to generate a beamformed signal. The overall performance and resource usage by the audio device can be optimized.

Classes IPC  ?

  • H04R 3/00 - Circuits pour transducteurs
  • H04R 3/02 - Circuits pour transducteurs pour empêcher la réaction acoustique
  • H04R 29/00 - Dispositifs de contrôleDispositifs de tests

58.

PARTIALLY ADAPTIVE AUDIO BEAMFORMING SYSTEMS AND METHODS

      
Numéro d'application 18421920
Statut En instance
Date de dépôt 2024-01-24
Date de la première publication 2024-07-25
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Cohen, Israel
  • Berdugo, Baruch

Abrégé

Partially adaptive audio beamforming systems and methods are provided that enable improved acoustic echo cancellation of sound played on a loudspeaker that is in close proximity to a microphone array in an audio device. A stored beamformer parameter, such as an inverse covariance matrix, can be utilized by a frequency domain beamformer to generate a beamformed signal. The overall performance and resource usage by the audio device can be optimized.

Classes IPC  ?

  • G10L 21/0232 - Traitement dans le domaine fréquentiel
  • G10L 21/0208 - Filtration du bruit
  • G10L 21/0216 - Filtration du bruit caractérisée par le procédé d’estimation du bruit
  • G10L 25/84 - Détection de la présence ou de l’absence de signaux de voix pour différencier la parole du bruit

59.

Auto focus, auto focus within regions, and auto placement of beamformed microphone lobes with inhibition functionality

      
Numéro d'application 18450190
Numéro de brevet 12284479
Statut Délivré - en vigueur
Date de dépôt 2023-08-15
Date de la première publication 2024-07-18
Date d'octroi 2025-04-22
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Veselinovic, Dusan
  • Abraham, Mathew T.
  • Lester, Michael Ryan
  • Vaidya, Avinash K.

Abrégé

Array microphone systems and methods that can automatically focus and/or place beamformed lobes in response to detected sound activity are provided. The automatic focus and/or placement of the beamformed lobes can be inhibited based on a remote far end audio signal. The quality of the coverage of audio sources in an environment may be improved by ensuring that beamformed lobes are optimally picking up the audio sources even if they have moved and changed locations.

Classes IPC  ?

  • H04R 1/32 - Dispositions pour obtenir la fréquence désirée ou les caractéristiques directionnelles pour obtenir la caractéristique directionnelle désirée uniquement
  • H04R 3/00 - Circuits pour transducteurs

60.

SYSTEM AND METHOD FOR OPTIMIZED AUDIO MIXING

      
Numéro d'application US2023086087
Numéro de publication 2024/147968
Statut Délivré - en vigueur
Date de dépôt 2023-12-27
Date de publication 2024-07-11
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Sconza, Justin Joseph
  • Lamy, Guillaume
  • Joshi, Bijal

Abrégé

Systems and methods are described herein for receiving, at a plurality of audio channels, respective audio signals captured by one or more microphones; based on a speech quality determination for each signal, identifying, in real time, a first subset of the audio channels as capturing speech audio, and a second subset of the audio channels as capturing noise audio, wherein the first subset comprises one or more audio channels and the second subset comprises one or more other audio channels; generating, using a first mixer, a mixed audio output that includes the signals received at the one or more audio channels; generating, using a second mixer, a noise mix that includes the signals received at the one or more other audio channels; and removing off-axis noise from the mixed audio output by applying, to that output, a mask determined based on the noise mix.

Classes IPC  ?

61.

SYSTEM AND METHOD FOR OPTIMIZED AUDIO MIXING

      
Numéro d'application 18397693
Statut En instance
Date de dépôt 2023-12-27
Date de la première publication 2024-07-04
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Sconza, Justin Joseph
  • Lamy, Guillaume
  • Joshi, Bijal

Abrégé

Systems and methods are described herein for receiving, at a plurality of audio channels, respective audio signals captured by one or more microphones; based on a speech quality determination for each signal, identifying, in real time, a first subset of the audio channels as capturing speech audio, and a second subset of the audio channels as capturing noise audio, wherein the first subset comprises one or more audio channels and the second subset comprises one or more other audio channels; generating, using a first mixer, a mixed audio output that includes the signals received at the one or more audio channels; generating, using a second mixer, a noise mix that includes the signals received at the one or more other audio channels; and removing off-axis noise from the mixed audio output by applying, to that output, a mask determined based on the noise mix.

Classes IPC  ?

  • G10L 25/60 - Techniques d'analyse de la parole ou de la voix qui ne se limitent pas à un seul des groupes spécialement adaptées pour un usage particulier pour comparaison ou différentiation pour mesurer la qualité des signaux de voix
  • G10L 21/0208 - Filtration du bruit
  • G10L 25/84 - Détection de la présence ou de l’absence de signaux de voix pour différencier la parole du bruit

62.

Compact detune-resilient wireless device with touch-sensitive interface

      
Numéro d'application 18086267
Numéro de brevet 12142821
Statut Délivré - en vigueur
Date de dépôt 2022-12-21
Date de la première publication 2024-06-27
Date d'octroi 2024-11-12
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Zachara, Christopher
  • Le, Michael

Abrégé

Systems, apparatuses, and methods are described for increasing a performance of a small wireless device comprising one or more conductive elements electrically coupled with an antenna. A user interface element of the wireless device may be configured to operate as a radiative component of an antenna structure. A power source element may be electrically isolated from a ground, resulting in decreased coupling with the antenna. Moreover, an antenna bandwidth may be increased, via modification of one or more antenna characteristics and/or the addition of one or more novel antenna components, in order to increase the detune-resiliency of the antenna. In addition, the radio frequency performance and reliability of the wireless device may be improved by maintaining fixed positioning between various components of the wireless device. Thus, the antenna and the one or more conductive elements may be configured to increase the device performance.

Classes IPC  ?

  • H01Q 1/48 - Moyens de mise à la terreÉcrans de terreContrepoids
  • H01P 1/24 - Charges branchées à l'extrémité de lignes de transmission
  • H01Q 1/22 - SupportsMoyens de montage par association structurale avec d'autres équipements ou objets
  • H01Q 1/27 - Adaptation pour l'utilisation dans ou sur les corps mobiles
  • H01Q 9/04 - Antennes résonnantes

63.

AUTO FOCUS, AUTO FOCUS WITHIN REGIONS, AND AUTO PLACEMENT OF BEAMFORMED MICROPHONE LOBES WITH INHIBITION AND VOICE ACTIVITY DETECTION FUNCTIONALITY

      
Numéro d'application 18356647
Statut En instance
Date de dépôt 2023-07-21
Date de la première publication 2024-06-13
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Veselinovic, Dusan
  • Abraham, Mathew T.
  • Lester, Michael Ryan
  • Ansai, Michelle Michiko
  • Sconza, Justin Joseph
  • Vaidya, Avinash K.

Abrégé

Array microphone systems and methods that can automatically focus and/or place beamformed lobes in response to detected sound activity are provided. The automatic focus and/or placement of the beamformed lobes can be inhibited based on a remote far end audio signal. The quality of the coverage of audio sources in an environment may be improved by ensuring that beamformed lobes are optimally picking up the audio sources even if they have moved and changed locations.

Classes IPC  ?

  • H04R 3/00 - Circuits pour transducteurs
  • G10L 21/0216 - Filtration du bruit caractérisée par le procédé d’estimation du bruit
  • H04R 1/40 - Dispositions pour obtenir la fréquence désirée ou les caractéristiques directionnelles pour obtenir la caractéristique directionnelle désirée uniquement en combinant plusieurs transducteurs identiques

64.

Array microphone system and method of assembling the same

      
Numéro d'application 18485675
Numéro de brevet 12262174
Statut Délivré - en vigueur
Date de dépôt 2023-10-12
Date de la première publication 2024-06-06
Date d'octroi 2025-03-25
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Abraham, Mathew T.
  • Cason, David Grant
  • Gibbs, John Casey
  • Lantz, Gregory William
  • Mcgovern, Jr., Albert Francis
  • Shumard, Brent Robert

Abrégé

Embodiments include a microphone assembly comprising an array microphone and a housing configured to support the array microphone and sized and shaped to be mountable in a drop ceiling in place of at least one of a plurality of ceiling tiles included in the drop ceiling. A front face of the housing includes a sound-permeable screen having a size and shape that is substantially similar to the at least one of the plurality of ceiling tiles. Embodiments also include an array microphone system comprising a plurality of microphones arranged, on a substrate, in a number of concentric, nested rings of varying sizes around a central point of the substrate. Each ring comprises a subset of the plurality of microphones positioned at predetermined intervals along a circumference of the ring.

Classes IPC  ?

  • H04R 1/02 - BoîtiersMeublesMontages à l'intérieur de ceux-ci
  • H04R 1/40 - Dispositions pour obtenir la fréquence désirée ou les caractéristiques directionnelles pour obtenir la caractéristique directionnelle désirée uniquement en combinant plusieurs transducteurs identiques
  • H04R 31/00 - Appareils ou procédés spécialement adaptés à la fabrication des transducteurs ou de leurs diaphragmes

65.

BAND SELECTABLE GEOMETRY FOR PRINTED CIRCUIT BOARD ANTENNAS

      
Numéro d'application US2023079315
Numéro de publication 2024/107595
Statut Délivré - en vigueur
Date de dépôt 2023-11-10
Date de publication 2024-05-23
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Kenkel, Mark A.
  • Grad, Steven M.

Abrégé

A printed circuit board (PCB) assembly supports selecting alternate printed antenna geometries of an antenna by selectively placing common PCB components (for example, zero-ohm resistors) on the PCB. The desired zero-ohm resistors may be placed using automated part placement equipment commonly used to place surface mount components. The configurable antenna comprises at least one antenna section having a plurality of antenna components. Zero-ohm resistors are selectively placed in series along the antenna section to couple the desired conductor components when manufacturing the PCB assembly. With some embodiments, a configurable antenna includes a low frequency antenna section that may be selectively coupled with a high frequency antenna section antenna through one or more zero-ohm resistors, where each antenna section has a plurality of antenna components. With this approach, a common printed circuit board may be used to support a plurality of antenna variations spanning different frequency bands.

Classes IPC  ?

  • H01Q 1/27 - Adaptation pour l'utilisation dans ou sur les corps mobiles
  • H01Q 1/38 - Forme structurale pour éléments rayonnants, p. ex. cône, spirale, parapluie formés par une couche conductrice sur un support isolant
  • H01Q 5/321 - Éléments rayonnants individuels ou couplés, chaque élément étant alimenté d’une façon non précisée utilisant des circuits ou des composants dont la réponse dépend de la fréquence, p. ex. des circuits bouchon ou des condensateurs situés dans un élément rayonnant ou entre des éléments rayonnants connectés
  • H01Q 9/42 - Antennes résonnantes avec alimentation à l'extrémité d'un élément actif allongé, p. ex. unipôle avec éléments repliés, les parties repliées étant espacées l'une de l'autre d'une petite fraction de la longueur d'onde émise

66.

FULL-BAND AUDIO SIGNAL RECONSTRUCTION ENABLED BY OUTPUT FROM A MACHINE LEARNING MODEL

      
Numéro d'application 18506510
Statut En instance
Date de dépôt 2023-11-10
Date de la première publication 2024-05-16
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Tian, Wenshun
  • Lester, Michael

Abrégé

Techniques are disclosed herein for providing full-band audio signal reconstruction enabled by output from a machine learning model trained based on an audio feature set extracted from a portion of the audio signal. Examples may include generating a model input audio feature set for a first frequency portion of an audio signal defined based on a hybrid audio processing frequency threshold. Examples may also include inputting the model input audio feature set to a machine learning model configured to generate a frequency characteristics output related to the first frequency portion of the audio signal. Examples may also include applying the frequency characteristics output to at least a second frequency portion of the audio signal to generate a reconstructed full-band audio signal.

Classes IPC  ?

  • G10L 19/06 - Détermination ou codage des caractéristiques spectrales, p. ex. des coefficients de prédiction à court terme
  • G10L 19/02 - Techniques d'analyse ou de synthèse de la parole ou des signaux audio pour la réduction de la redondance, p. ex. dans les vocodeursCodage ou décodage de la parole ou des signaux audio utilisant les modèles source-filtre ou l’analyse psychoacoustique utilisant l'analyse spectrale, p. ex. vocodeurs à transformée ou vocodeurs à sous-bandes
  • G10L 25/21 - Techniques d'analyse de la parole ou de la voix qui ne se limitent pas à un seul des groupes caractérisées par le type de paramètres extraits les paramètres extraits étant l’information sur la puissance

67.

Band Selectable Geometry for Printed Circuit Board Antennas

      
Numéro d'application 17988427
Statut En instance
Date de dépôt 2022-11-16
Date de la première publication 2024-05-16
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Kenkel, Mark A.
  • Grad, Steven M.

Abrégé

A printed circuit board (PCB) assembly supports selecting alternate printed antenna geometries of an antenna by selectively placing common PCB components (for example, zero-ohm resistors) on the PCB. The desired zero-ohm resistors may be placed using automated part placement equipment commonly used to place surface mount components. The configurable antenna comprises at least one antenna section having a plurality of antenna components. Zero-ohm resistors are selectively placed in series along the antenna section to couple the desired conductor components when manufacturing the PCB assembly. With some embodiments, a configurable antenna includes a low frequency antenna section that may be selectively coupled with a high frequency antenna section antenna through one or more zero-ohm resistors, where each antenna section has a plurality of antenna components. With this approach, a common printed circuit board may be used to support a plurality of antenna variations spanning different frequency bands.

Classes IPC  ?

  • H01Q 5/335 - Éléments rayonnants individuels ou couplés, chaque élément étant alimenté d’une façon non précisée utilisant des circuits ou des composants dont la réponse dépend de la fréquence, p. ex. des circuits bouchon ou des condensateurs au point d’alimentation, p. ex. aux fins d’adaptation d’impédance
  • H01Q 9/26 - Antennes résonnantes avec alimentation intermédiaire entre les extrémités de l'antenne, p. ex. dipôle alimenté par le centre avec élément replié ou éléments repliés, les parties repliées étant espacées l'une de l'autre d'une petite fraction de la longueur d'onde émise
  • H01Q 15/00 - Dispositifs pour la réflexion, la réfraction, la diffraction ou la polarisation des ondes rayonnées par une antenne, p. ex. dispositifs quasi optiques

68.

FULL-BAND AUDIO SIGNAL RECONSTRUCTION ENABLED BY OUTPUT FROM A MACHINE LEARNING MODEL

      
Numéro d'application US2023079349
Numéro de publication 2024/102983
Statut Délivré - en vigueur
Date de dépôt 2023-11-10
Date de publication 2024-05-16
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Lester, Michael
  • Tian, Wenshun

Abrégé

Techniques are disclosed herein for providing full-band audio signal reconstruction enabled by output from a machine learning model trained based on an audio feature set extracted from a portion of the audio signal. Examples may include generating a model input audio feature set for a first frequency portion of an audio signal defined based on a hybrid audio processing frequency threshold. Examples may also include inputting the model input audio feature set to a machine learning model configured to generate a frequency characteristics output related to the first frequency portion of the audio signal. Examples may also include applying the frequency characteristics output to at least a second frequency portion of the audio signal to generate a reconstructed full-band audio signal.

Classes IPC  ?

69.

Low Overhead Control Channel for Wireless Audio Systems

      
Numéro d'application 18541736
Statut En instance
Date de dépôt 2023-12-15
Date de la première publication 2024-04-04
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s) Rodriguez, Michael

Abrégé

A wireless audio system using low overhead in-band control and audio transmission is provided. The wireless audio system includes a first wireless audio device configured to operate separate physical layer channels for audio data and control data, and transmit the audio data and control data using a single wideband carrier. The wireless audio system also includes one or more second wireless audio devices configured to receive the audio data and control data, and execute an instruction based on the control data.

Classes IPC  ?

  • 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
  • H04L 1/00 - Dispositions pour détecter ou empêcher les erreurs dans l'information reçue
  • H04L 5/00 - Dispositions destinées à permettre l'usage multiple de la voie de transmission
  • H04W 36/00 - Dispositions pour le transfert ou la resélection
  • H04W 72/0446 - Ressources du domaine temporel, p. ex. créneaux ou trames
  • H04W 72/0453 - Ressources du domaine fréquentiel, p. ex. porteuses dans des AMDF [FDMA]
  • H04W 74/08 - Accès non planifié, p. ex. ALOHA

70.

WIDEBAND DOUBLETALK DETECTION FOR OPTIMIZATION OF ACOUSTIC ECHO CANCELLATION

      
Numéro d'application US2023075377
Numéro de publication 2024/073573
Statut Délivré - en vigueur
Date de dépôt 2023-09-28
Date de publication 2024-04-04
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Lethem, Wesley
  • Sconza, Justin, Joseph
  • Rieger, Christopher, George

Abrégé

Acoustic echo cancellation systems and methods are provided that improve the quality of the audio transmitted from by an audio device a near end to a far end when a doubletalk condition is present, including allowing certain subbands of an echo-cancelled signal to be less attenuated by overriding certain gains of subbands of the echo-cancelled audio signal in a non-linear processor, and compressing and applying makeup gain to a remote audio signal.

Classes IPC  ?

  • H04M 9/08 - Systèmes téléphoniques à haut-parleur à double sens comportant des moyens pour conditionner le signal, p. ex. pour supprimer les échos dans l'une ou les deux directions du trafic

71.

WIDEBAND DOUBLETALK DETECTION FOR OPTIMIZATION OF ACOUSTIC ECHO CANCELLATION

      
Numéro d'application 18477039
Statut En instance
Date de dépôt 2023-09-28
Date de la première publication 2024-03-28
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Lethem, Wesley
  • Sconza, Justin Joseph
  • Rieger, Christopher George

Abrégé

Acoustic echo cancellation systems and methods are provided that improve the quality of the audio transmitted from by an audio device a near end to a far end when a doubletalk condition is present, including allowing certain subbands of an echo-cancelled signal to be less attenuated by overriding certain gains of subbands of the echo-cancelled audio signal in a non-linear processor, and compressing and applying makeup gain to a remote audio signal.

Classes IPC  ?

  • H04M 9/08 - Systèmes téléphoniques à haut-parleur à double sens comportant des moyens pour conditionner le signal, p. ex. pour supprimer les échos dans l'une ou les deux directions du trafic

72.

Transmit antenna diversity wireless audio system

      
Numéro d'application 18192555
Numéro de brevet 12119905
Statut Délivré - en vigueur
Date de dépôt 2023-03-29
Date de la première publication 2024-03-28
Date d'octroi 2024-10-15
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Rodriguez, Michael
  • Mamola, Robert

Abrégé

A wireless audio system including a transmitter using multiple antenna diversity techniques for different signal types is provided. Multipath performance may be optimized, along with improved spectral efficiency of the system.

Classes IPC  ?

  • H04B 7/06 - Systèmes de diversitéSystèmes à plusieurs antennes, c.-à-d. émission ou réception utilisant plusieurs antennes utilisant plusieurs antennes indépendantes espacées à la station d'émission
  • H04L 1/06 - Dispositions pour détecter ou empêcher les erreurs dans l'information reçue par réception à diversité utilisant la diversité d'espace
  • H04L 7/00 - Dispositions pour synchroniser le récepteur avec l'émetteur
  • H04L 27/26 - Systèmes utilisant des codes à fréquences multiples
  • H04R 3/00 - Circuits pour transducteurs

73.

TRANSMIT REDUNDANCY AND AUTONOMOUS RECEIVER CHANNEL SELECTION IN A WIRELESS IN-EAR MONITOR AUDIO SYSTEM

      
Numéro d'application US2023074245
Numéro de publication 2024/059744
Statut Délivré - en vigueur
Date de dépôt 2023-09-14
Date de publication 2024-03-21
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Kundmann, Thomas J.
  • Mamola, Robert
  • Van Gheem, Steve

Abrégé

Techniques for providing transmit redundancy for a wireless audio system, such as an in-ear monitor audio system, are discussed herein. Some embodiments may include tuning to a first wireless communication channel associated with a first carrier frequency to receive a radio frequency signal. Based on a determination that a communication channel condition for the first wireless communication channel satisfies a communication channel condition threshold, various embodiments include tuning to a second wireless communication channel associated with a second carrier frequency to receive the radio frequency signal, where the second carrier frequency is different from the first carrier frequency.

Classes IPC  ?

  • H04H 20/22 - Dispositions de radiodiffusion d'informations identiques par l'intermédiaire de plusieurs systèmes de radiodiffusion

74.

TRANSMIT REDUNDANCY AND AUTONOMOUS RECEIVER CHANNEL SELECTION IN A WIRELESS IN-EAR MONITOR AUDIO SYSTEM

      
Numéro d'application 18467575
Statut En instance
Date de dépôt 2023-09-14
Date de la première publication 2024-03-21
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Kundmann, Thomas J.
  • Mamola, Robert
  • Van Gheem, Steve

Abrégé

Techniques for providing transmit redundancy for a wireless audio system, such as an in-ear monitor audio system, are discussed herein. Some embodiments may include tuning to a first wireless communication channel associated with a first carrier frequency to receive a radio frequency signal. Based on a determination that a communication channel condition for the first wireless communication channel satisfies a communication channel condition threshold, various embodiments include tuning to a second wireless communication channel associated with a second carrier frequency to receive the radio frequency signal, where the second carrier frequency is different from the first carrier frequency.

Classes IPC  ?

  • H04B 1/10 - Dispositifs associés au récepteur pour limiter ou supprimer le bruit et les interférences
  • H04H 60/32 - Dispositions de contrôle des conditions des stations réceptrices, p. ex. un dysfonctionnement ou une panne de celles-ci
  • H04H 60/43 - Dispositions d'identification ou de reconnaissance de caractéristiques en liaison directe avec les informations radiodiffusées ou le créneau spatio-temporel de radiodiffusion, p. ex. pour identifier les stations de radiodiffusion ou pour identifier les utilisateurs pour identifier le temps ou l'espace de radiodiffusion pour identifier l'espace de radiodiffusion, c.-à-d. les canaux de radiodiffusion, les stations de radiodiffusion ou les zones de radiodiffusion pour identifier les canaux de radiodiffusion
  • H04R 1/10 - ÉcouteursLeurs fixations

75.

Microphone

      
Numéro d'application 29859089
Numéro de brevet D1018509
Statut Délivré - en vigueur
Date de dépôt 2022-11-07
Date de la première publication 2024-03-19
Date d'octroi 2024-03-19
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Ruggles, Jase
  • Born, John
  • Kang, Weiqiang
  • Marek, Steve
  • Miller, John Matthew

76.

SYSTEM AND METHOD FOR CAMERA MOTION STABILIZATION USING AUDIO LOCALIZATION

      
Numéro d'application 18235845
Statut En instance
Date de dépôt 2023-08-19
Date de la première publication 2024-02-22
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Veselinovic, Dusan
  • Joshi, Bijal

Abrégé

Audio-visual systems and methods are configured to determine a first talker location based on a first group of sound locations corresponding to audio detected by the microphone in association with one or more talkers; receive a new sound location for new audio detected by the microphone in association with at least one talker; determine a proximity of the new sound location to the first group of sound locations; based on the new sound location being in close proximity to one or more of the sound locations in the first group, determine a second talker location based on the new sound location and the first group of sound locations; determine a second proximity of the second talker location to the first talker location; provide the second talker location to the camera if the second proximity meets or exceeds a threshold; and otherwise, provide the first talker location the camera.

Classes IPC  ?

  • H04N 23/695 - Commande de la direction de la caméra pour modifier le champ de vision, p. ex. par un panoramique, une inclinaison ou en fonction du suivi des objets
  • H04N 23/62 - Commande des paramètres via des interfaces utilisateur
  • H04N 23/68 - Commande des caméras ou des modules de caméras pour une prise de vue stable de la scène, p. ex. en compensant les vibrations du boîtier de l'appareil photo
  • G10L 25/51 - Techniques d'analyse de la parole ou de la voix qui ne se limitent pas à un seul des groupes spécialement adaptées pour un usage particulier pour comparaison ou différentiation

77.

SYSTEM AND METHOD FOR CAMERA MOTION STABILIZATION USING AUDIO LOCALIZATION

      
Numéro d'application US2023030647
Numéro de publication 2024/039892
Statut Délivré - en vigueur
Date de dépôt 2023-08-19
Date de publication 2024-02-22
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Veselinovic, Dusan
  • Joshi, Bijal

Abrégé

Audio-visual systems and methods are configured to determine a first talker location (Pa) based on a first group of sound locations corresponding to audio detected by the microphone (104) in association with one or more talkers (102); receive a new sound location for new audio detected by the microphone in association with at least one talker; determine a proximity of the new sound location to the first group of sound locations; based on the new sound location being in close proximity to one or more of the sound locations in the first group, determine a second talker location (Pb) based on the new sound location and the first group of sound locations; determine a second proximity of the second talker location to the first talker location; provide the second talker location to the camera (106) if the second proximity meets or exceeds a threshold; and otherwise, provide the first talker location the camera.

Classes IPC  ?

78.

Communications Between Networked Audio Devices

      
Numéro d'application 18223766
Statut En instance
Date de dépôt 2023-07-19
Date de la première publication 2024-01-25
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Portwood, Jonathan
  • Wu, Kehang
  • Leib, Steve

Abrégé

An audio device may be connected to a communication network. The audio device may send or receive audio data via a network, based on a network clock that may be synchronized with other audio device connected to the network. The audio device may buffer, convert between digital audio signals and analog audio signals, encrypt, decrypt, packetize, depacketize, compress, and/or decompress audio data using a local asynchronous media clock using a relatively lower precision clocking technology such as a crystal-based oscillator.

Classes IPC  ?

  • H04J 3/06 - Dispositions de synchronisation

79.

Transducer steering and configuration systems and methods using a local positioning system

      
Numéro d'application 18323961
Numéro de brevet 12149886
Statut Délivré - en vigueur
Date de dépôt 2023-05-25
Date de la première publication 2024-01-25
Date d'octroi 2024-11-19
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Grinnip, Iii, Roger Stephen
  • Schultz, Jordan

Abrégé

Transducer steering and configuration systems and methods using a local positioning system are provided. The position and/or orientation of transducers, devices, and/or objects within a physical environment may be utilized to enable steering of lobes and nulls of the transducers, to create self-assembling arrays of the transducers, and to enable monitoring and configuration of the transducers, devices, and objects through an augmented reality interface. The transducers and devices may be more optimally configured which can result in better capture of sound, better reproduction of sound, improved system performance, and increased user satisfaction.

Classes IPC  ?

  • H04R 1/32 - Dispositions pour obtenir la fréquence désirée ou les caractéristiques directionnelles pour obtenir la caractéristique directionnelle désirée uniquement

80.

COMMUNICATIONS BETWEEN NETWORKED AUDIO DEVICES

      
Numéro d'application US2023028338
Numéro de publication 2024/020186
Statut Délivré - en vigueur
Date de dépôt 2023-07-21
Date de publication 2024-01-25
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Portwood, Jonathan
  • Wu, Kehang
  • Leib, Steve

Abrégé

An audio device may be connected to a communication network. The audio device may send or receive audio data via a network, based on a network clock that may be synchronized with other audio device connected to the network. The audio device may buffer, convert between digital audio signals and analog audio signals, encrypt, decrypt, packetize, depacketize, compress, and/or decompress audio data using a local asynchronous media clock using a relatively lower precision clocking technology such as a crystal-based oscillator.

Classes IPC  ?

  • H04J 3/06 - Dispositions de synchronisation

81.

Dual band plug-on transmitter antenna

      
Numéro d'application 17872342
Numéro de brevet 12249774
Statut Délivré - en vigueur
Date de dépôt 2022-07-25
Date de la première publication 2024-01-25
Date d'octroi 2025-03-11
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Celebi, Adem
  • Kenkel, Mark Allen
  • Wang, Tracy
  • Ma, Zhen

Abrégé

A wireless microphone system utilizes an antenna structure that supports dual frequency bands. With some embodiments, the wireless microphone system comprises a first apparatus (for example, a wireless transmitter) and an attached second apparatus (for example, an attached microphone), where the chassis of the first apparatus and the housing of the second apparatus support the antenna structure through an electrical connector (for example, through an outer shell of a Cannon (XLR) connector) between the two apparatuses. The chassis and the housing may support first and second halves of a dipole antenna, respectively. The first apparatus supports first and second electrical circuits that are operational within a first and second frequency band, respectively, and that connect to first and second input ports of a combining circuit (for example, a diplexer filter). The output port of the combining circuit connects to the housing through the electrical connector.

Classes IPC  ?

  • H01Q 1/22 - SupportsMoyens de montage par association structurale avec d'autres équipements ou objets
  • H01Q 5/48 - Combinaisons de plusieurs antennes de type dipôle
  • H04B 1/00 - Détails des systèmes de transmission, non couverts par l'un des groupes Détails des systèmes de transmission non caractérisés par le milieu utilisé pour la transmission

82.

Multi-Channel Microphone

      
Numéro d'application 18228243
Statut En instance
Date de dépôt 2023-07-31
Date de la première publication 2024-01-04
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Perkofski, Ryan Jerold
  • Sobanski, Steve
  • Banks, Thomas

Abrégé

A microphone may digitize multiple analog audio channels into multiple digital audio channels, digitally process the digital audio channels, and output the digital audio channels to another device while maintaining channel separation. The microphone may also include a touch-sensitive user interface that may have multiple live meter modes and a user-selectable color theme.

Classes IPC  ?

83.

CONFERENCING SYSTEMS AND METHODS FOR TALKER TRACKING AND CAMERA POSITIONING

      
Numéro d'application 18345640
Statut En instance
Date de dépôt 2023-06-30
Date de la première publication 2024-01-04
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Veselinovic, Dusan
  • Joshi, Bijal

Abrégé

Conferencing systems and methods configured to generate talker coordinates for directing a camera towards talker locations in an environment are disclosed, as well as talker tracking using multiple microphones and multiple cameras. One method includes determining, using a first microphone array and based on audio associated with a talker, a first talker location in a first coordinate system relative to the first microphone array; determining, using a second microphone array and based on the audio associated with the talker, a second talker location in a second coordinate system relative to the second microphone array; determining, based on the first talker location and the second talker location, an estimated talker location in a third coordinate system relative to a camera; and transmitting, to the camera, the estimated talker location in the third coordinate system to cause the camera to point the camera towards the estimated talker location.

Classes IPC  ?

  • H04N 7/15 - Systèmes pour conférences
  • H04N 7/14 - Systèmes à deux voies
  • G06T 7/20 - Analyse du mouvement
  • G06T 7/70 - Détermination de la position ou de l'orientation des objets ou des caméras
  • H04N 23/611 - Commande des caméras ou des modules de caméras en fonction des objets reconnus les objets reconnus comprenant des parties du corps humain
  • H04N 23/69 - Commande de moyens permettant de modifier l'angle du champ de vision, p. ex. des objectifs de zoom optique ou un zoom électronique
  • H04N 23/695 - Commande de la direction de la caméra pour modifier le champ de vision, p. ex. par un panoramique, une inclinaison ou en fonction du suivi des objets

84.

CONFERENCING SYSTEMS AND METHODS FOR TALKER TRACKING AND CAMERA POSITIONING

      
Numéro d'application US2023026753
Numéro de publication 2024/006534
Statut Délivré - en vigueur
Date de dépôt 2023-06-30
Date de publication 2024-01-04
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Veselinovic, Dusan
  • Joshi, Bijal

Abrégé

Conferencing systems and methods configured to generate talker coordinates for directing a camera towards talker locations in an environment are disclosed, as well as talker tracking using multiple microphones and multiple cameras. One method includes determining, using a first microphone array (104) and based on audio associated with a talker (102), a first talker location (P1) in a first coordinate system relative to the first microphone array; determining, using a second microphone array (104) and based on the audio associated with the talker (102), a second talker location (P2) in a second coordinate system relative to the second microphone array; determining, based on the first talker location and the second talker location, an estimated talker location (P3) in a third coordinate system relative to a camera (106); and transmitting, to the camera, the estimated talker location in the third coordinate system to cause the camera to point the camera towards the estimated talker location.

Classes IPC  ?

85.

MULTI-LOBE DIGITAL MICROPHONE ENABLED AUDIO CAPTURE AND SPATIALIZATION FOR GENERATING AN IMMERSIVE ARENA BASED AUDIO EXPERIENCE

      
Numéro d'application US2023069416
Numéro de publication 2024/006935
Statut Délivré - en vigueur
Date de dépôt 2023-06-29
Date de publication 2024-01-04
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Born, John
  • Law, Daniel
  • Lester, Michael
  • Grundtvig, David
  • Shumard, Brent Robert
  • Oakley, William

Abrégé

An example immersive audio signal processing system and a computer-implemented method for generating a target arena environment audio stream are provided. The example immersive audio signal processing system includes a plurality of multi-lobe digital sound wave capture devices positioned within the arena environment. The plurality of multi-lobe digital sound wave capture devices is configured to direct first beamformed lobes to a playing region of the arena environment, second beamformed lobes to a spectator region of the arena environment, and third beamformed lobes to a noise source region of the arena environment. A digital signal processor is configured to isolate noise audio components originating from at least the spectator region or the noise source region from the audio signal stream and generate a target arena environment audio stream.

Classes IPC  ?

  • H04R 3/00 - Circuits pour transducteurs
  • H04H 60/04 - Équipement de studioInterconnexion des studios
  • G10L 21/0216 - Filtration du bruit caractérisée par le procédé d’estimation du bruit
  • H04N 21/81 - Composants mono média du contenu
  • H04R 1/40 - Dispositions pour obtenir la fréquence désirée ou les caractéristiques directionnelles pour obtenir la caractéristique directionnelle désirée uniquement en combinant plusieurs transducteurs identiques
  • H04N 21/8547 - Création de contenu impliquant des marquages temporels pour synchroniser le contenu

86.

MULTI-LOBE DIGITAL MICROPHONE ENABLED AUDIO CAPTURE AND SPATIALIZATION FOR GENERATING AN IMMERSIVE ARENA BASED AUDIO EXPERIENCE

      
Numéro d'application 18344610
Statut En instance
Date de dépôt 2023-06-29
Date de la première publication 2024-01-04
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Born, John
  • Law, Daniel
  • Lester, Michael
  • Grundtvig, David
  • Shumard, Brent Robert
  • Oakley, William

Abrégé

An example immersive audio signal processing system and a computer-implemented method for generating a target arena environment audio stream are provided. The example immersive audio signal processing system includes a plurality of multi-lobe digital sound wave capture devices positioned within the arena environment. The plurality of multi-lobe digital sound wave capture devices is configured to direct first beamformed lobes to a playing region of the arena environment, second beamformed lobes to a spectator region of the arena environment, and third beamformed lobes to a noise source region of the arena environment. A digital signal processor is configured to isolate noise audio components originating from at least the spectator region or the noise source region from the audio signal stream and generate a target arena environment audio stream.

Classes IPC  ?

87.

Microphone

      
Numéro d'application 29802674
Numéro de brevet D1009840
Statut Délivré - en vigueur
Date de dépôt 2021-08-06
Date de la première publication 2024-01-02
Date d'octroi 2024-01-02
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Miller, John Matthew
  • Ruggles, Jase

88.

Secondary Antenna for Wireless Microphone

      
Numéro d'application 18367709
Statut En instance
Date de dépôt 2023-09-13
Date de la première publication 2023-12-28
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Zachara, Christopher
  • Bachman, Gregory W.

Abrégé

Embodiments include a wireless microphone comprising an elongated main body configured for handheld operation of the microphone; a display bezel area included in the main body; a first antenna positioned at a bottom end of the main body; and a second antenna integrated into the display bezel area. Embodiments also include a wireless handheld microphone comprising a main body having a conductive housing and a tubular shape configured for handheld operation of the microphone; an opening included on a side surface of the conductive housing; a non-conductive cover coupled to the conductive housing and configured to cover the opening; and an antenna positioned adjacent to the non-conductive cover.

Classes IPC  ?

  • H01Q 1/22 - SupportsMoyens de montage par association structurale avec d'autres équipements ou objets
  • H04R 1/00 - Détails des transducteurs
  • H04R 1/04 - Association constructive d'un microphone avec son circuit électrique
  • H01Q 5/50 - Dispositions d’alimentation ou d’adaptation pour un fonctionnement à large bande ou multibande
  • H01Q 1/36 - Forme structurale pour éléments rayonnants, p. ex. cône, spirale, parapluie
  • H01Q 1/50 - Association structurale d'antennes avec commutateurs de terre, dispositions de descente d'antennes ou parafoudres
  • H04B 1/3827 - Émetteurs-récepteurs portatifs

89.

ANALYSIS AND OPTIMIZATION OF AN AUDIO SIGNAL

      
Numéro d'application US2023023954
Numéro de publication 2023/235371
Statut Délivré - en vigueur
Date de dépôt 2023-05-31
Date de publication 2023-12-07
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Nagel, Michael, Shane
  • Jozwiak, Bryan, Lee
  • Mccracken, Matthew, John
  • Won, June
  • Pedersen, Soren, Christian
  • Komrska, Dean

Abrégé

Methods and apparatuses for automatic analysis and optimization of an audio signal are described herein. An example method may comprise receiving, by an audio signal optimizer, a first indication to perform an audio signal optimization, receiving an audio signal from an input device, recording a sample of the audio signal, analyzing the sample of the audio signal for at least one audio parameter, and performing, based on an analysis of the sample of the audio signal, the audio signal optimization of the audio signal, wherein the audio signal optimization comprises a configuration of a gain level of the audio signal.

Classes IPC  ?

  • H04H 60/04 - Équipement de studioInterconnexion des studios

90.

Wireless Microphone System Using Multiple Wireless Communication Protocols

      
Numéro d'application 18235106
Statut En instance
Date de dépôt 2023-08-17
Date de la première publication 2023-12-07
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Beavis, Simon John
  • Kuhn, Scott
  • Handler, Mike
  • Doss, William Kevin
  • Wong, Jack
  • Frantisak, Christopher

Abrégé

The present disclosure describes a wireless microphone system that allows one or more microphones to wirelessly communicate with one or more wireless receivers. The wireless microphone system may allow for a plurality of microphones to be used interchangeably with the one or more receivers. The communications between the one or more wireless microphones and the one or more wireless receivers may utilize more than one wireless communication protocol, such as Bluetooth Low Energy (BLE) as well as a proprietary protocol such as a non-Bluetooth 2.4 GHz wireless communication protocol, and the system may switch between the wireless communication protocols. The one or more wireless microphones may further synchronize communications with the one or more receivers.

Classes IPC  ?

91.

ANALYSIS AND OPTIMIZATION OF AN AUDIO SIGNAL

      
Numéro d'application 18325772
Statut En instance
Date de dépôt 2023-05-30
Date de la première publication 2023-12-07
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Nagel, Michael Shane
  • Jozwiak, Bryan Lee
  • Mccracken, Matthew John
  • Won, June
  • Komrska, Dean
  • Pedersen, Soren Christian

Abrégé

Methods and apparatuses for automatic analysis and optimization of an audio signal are described herein. An example method may comprise receiving, by an audio signal optimizer, a first indication to perform an audio signal optimization, receiving an audio signal from an input device, recording a sample of the audio signal, analyzing the sample of the audio signal for at least one audio parameter, and performing, based on an analysis of the sample of the audio signal, the audio signal optimization of the audio signal, wherein the audio signal optimization comprises a configuration of a gain level of the audio signal.

Classes IPC  ?

  • H04R 3/04 - Circuits pour transducteurs pour corriger la fréquence de réponse
  • G06F 3/16 - Entrée acoustiqueSortie acoustique
  • H04R 1/04 - Association constructive d'un microphone avec son circuit électrique

92.

INFERRING CHARACTERISTICS OF PHYSICAL ENCLOSURES USING A PLURALITY OF AUDIO SIGNALS

      
Numéro d'application 18324558
Statut En instance
Date de dépôt 2023-05-26
Date de la première publication 2023-11-30
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Law, Daniel
  • Ansai, Michelle
  • Veselinovic, Dusan
  • Joshi, Bijal

Abrégé

Various embodiments of the present disclosure provide methods, apparatus, systems, devices, and/or the like for inferring characteristics of a physical enclosure using a plurality of audio signals. The plurality of audio signals may be processed using a feature extraction framework to generate structured audio event data sets, which may be processed using an audio event framework to determine the characteristics of the physical enclosure.

Classes IPC  ?

  • H04S 7/00 - Dispositions pour l'indicationDispositions pour la commande, p. ex. pour la commande de l'équilibrage
  • H04R 5/027 - Dispositions spatiales ou structurelles des microphones, p. ex. dispositifs simulant la tête humaine
  • H04R 3/00 - Circuits pour transducteurs
  • H04S 3/00 - Systèmes utilisant plus de deux canaux, p. ex. systèmes quadriphoniques

93.

AUDIO SIGNAL ISOLATION RELATED TO AUDIO SOURCES WITHIN AN AUDIO ENVIRONMENT

      
Numéro d'application 18199212
Statut En instance
Date de dépôt 2023-05-18
Date de la première publication 2023-11-23
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Law, Daniel
  • Lester, Michael
  • Baker, Gavin
  • Yost, Christian
  • Lorente, Iris

Abrégé

Techniques for isolating audio signals related to audio sources within an audio environment are discussed herein. Examples may include receiving a plurality of audio data objects. Each audio data object includes digitized audio signals captured by a capture device positioned within an audio environment. Examples may also include inputting the audio data objects to a source localizer model that is configured to generate, based on the audio data objects, one or more audio source position estimate objects. Examples may also include inputting the audio data objects and each audio source position estimate object to a source generator model of one or more source generator models. The source generator model is configured to generate, based on the audio source position estimate object, a source isolated audio output component. The source isolated audio output component may include isolated audio signals associated with an audio source within the audio environment.

Classes IPC  ?

  • H04S 7/00 - Dispositions pour l'indicationDispositions pour la commande, p. ex. pour la commande de l'équilibrage
  • H04R 1/32 - Dispositions pour obtenir la fréquence désirée ou les caractéristiques directionnelles pour obtenir la caractéristique directionnelle désirée uniquement
  • H04R 5/04 - Circuits

94.

AUDIO SIGNAL ISOLATION RELATED TO AUDIO SOURCES WITHIN AN AUDIO ENVIRONMENT

      
Numéro d'application US2023067163
Numéro de publication 2023/225589
Statut Délivré - en vigueur
Date de dépôt 2023-05-18
Date de publication 2023-11-23
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Law, Daniel
  • Lester, Michael
  • Baker, Gavin
  • Yost, Christian
  • Lorente, Iris

Abrégé

Techniques for isolating audio signals related to audio sources within an audio environment are discussed herein. Examples may include receiving a plurality of audio data objects. Each audio data object includes digitized audio signals captured by a capture device positioned within an audio environment. Examples may also include inputting the audio data objects to a source localizer model that is configured to generate, based on the audio data objects, one or more audio source position estimate objects. Examples may also include inputting the audio data objects and each audio source position estimate object to a source generator model of one or more source generator models. The source generator model is configured to generate, based on the audio source position estimate object, a source isolated audio output component. The source isolated audio output component may include isolated audio signals associated with an audio source within the audio environment.

Classes IPC  ?

  • G10L 21/0272 - Séparation du signal de voix
  • H04S 7/00 - Dispositions pour l'indicationDispositions pour la commande, p. ex. pour la commande de l'équilibrage

95.

Microphone with Adjustable Signal Processing

      
Numéro d'application 18197416
Statut En instance
Date de dépôt 2023-05-15
Date de la première publication 2023-11-09
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s)
  • Balgemann, Timothy William
  • Pedersen, Soren Christian
  • Pessin, James Michael
  • Shumard, Brent Robert
  • Sutter, Lena Lins
  • Perkofski, Ryan Jerold

Abrégé

A microphone may comprise a microphone element for detecting sound, and a digital signal processor configured to process a first audio signal that is based on the sound in accordance with a selected one of a plurality of digital signal processing (DSP) modes. Each of the DSP modes may be for processing the first audio signal in a different way. For example, the DSP modes may account for distance of the person speaking (e.g., near versus far) and/or desired tone (e.g., darker, neutral, or bright tone). At least some of the modes may have, for example, an automatic level control setting to provide a more consistent volume as the user changes their distance from the microphone or changes their speaking level, and that may be associated with particular default (and/or adjustable) values of the parameters attack, hold, decay, maximum gain, and/or target gain, each depending upon which DSP is being applied.

Classes IPC  ?

  • H04R 1/32 - Dispositions pour obtenir la fréquence désirée ou les caractéristiques directionnelles pour obtenir la caractéristique directionnelle désirée uniquement

96.

NEXADYNE

      
Numéro d'application 018945732
Statut Enregistrée
Date de dépôt 2023-11-03
Date d'enregistrement 2024-03-19
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Classes de Nice  ? 09 - Appareils et instruments scientifiques et électriques

Produits et services

Microphones.

97.

REVONIC

      
Numéro d'application 018945686
Statut Enregistrée
Date de dépôt 2023-11-03
Date d'enregistrement 2024-03-20
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Classes de Nice  ? 09 - Appareils et instruments scientifiques et électriques

Produits et services

Microphones; wireless microphones; wired microphones; microphone transducers.

98.

AUDIO SOURCE FEATURE SEPARATION AND TARGET AUDIO SOURCE GENERATION

      
Numéro d'application 18309441
Statut En instance
Date de dépôt 2023-04-28
Date de la première publication 2023-11-02
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Lester, Michael
  • Law, Dan

Abrégé

Various embodiments of the present disclosure provide methods, apparatus, systems, devices, and/or the like for reducing defects of audio signal samples by using at least one of audio source feature separation machine learning models, audio generation machine learning models, and/or audio source feature classification machine learning models.

Classes IPC  ?

  • G10L 21/028 - Séparation du signal de voix utilisant les propriétés des sources sonores

99.

System and method for wireless power transfer and communication

      
Numéro d'application 18309230
Numéro de brevet 11877220
Statut Délivré - en vigueur
Date de dépôt 2023-04-28
Date de la première publication 2023-11-02
Date d'octroi 2024-01-16
Propriétaire Shure Acquisition Holdings, Inc. (USA)
Inventeur(s) Meyer, Christopher

Abrégé

A wireless power transfer system is provided, comprising a first device having a power supply and configured to wirelessly transmit electric power from the power supply, and a second device having one or more electrical components and configured to wirelessly receive the electric power and provide it to the one or more electrical components for consumption. The second device further comprises an alignment module configured to activate an indicator if a measured level of the received power is greater than a threshold level. Also provided is a wireless system comprising a first device having a power supply and a wireless transmitter configured to transmit a data signal and an electric power signal, and a second device having a wireless receiver configured to receive the electric power signal and data signal, and one or more electrical components configured to consume the received power and process the received data.

Classes IPC  ?

  • H02J 50/90 - Circuits ou systèmes pour l'alimentation ou la distribution sans fil d'énergie électrique mettant en œuvre la détection ou l'optimisation de la position, p. ex. de l'alignement
  • 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
  • G08B 5/00 - Systèmes de signalisation optique, p. ex. systèmes d'appel de personnes, indication à distance de l'occupation de sièges
  • G08B 21/18 - Alarmes de situation

100.

AUDIO SOURCE FEATURE SEPARATION AND TARGET AUDIO SOURCE GENERATION

      
Numéro d'application US2023066357
Numéro de publication 2023/212690
Statut Délivré - en vigueur
Date de dépôt 2023-04-28
Date de publication 2023-11-02
Propriétaire SHURE ACQUISITION HOLDINGS, INC. (USA)
Inventeur(s)
  • Lester, Michael
  • Law, Dan

Abrégé

Various embodiments of the present disclosure provide methods, apparatus, systems, devices, and/or the like for reducing defects of audio signal samples by using at least one of audio source feature separation machine learning models, audio generation machine learning models, and/or audio source feature classification machine learning models.

Classes IPC  ?

  • G10L 21/028 - Séparation du signal de voix utilisant les propriétés des sources sonores
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