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    • 1. 发明授权
    • Wearable electromyography-based human-computer interface
    • 可穿戴肌电图人机界面
    • US09037530B2
    • 2015-05-19
    • US13433845
    • 2012-03-29
    • Desney TanT. Scott SaponasDan MorrisJim Turner
    • Desney TanT. Scott SaponasDan MorrisJim Turner
    • G06F15/00G06F15/18G06F3/01A61B5/0488A61B5/00G06N5/00G06N99/00
    • G06F3/017A61B5/0488A61B5/6824A61B5/6828G06F3/015G06N5/00G06N99/005
    • A “Wearable Electromyography-Based Controller” includes a plurality of Electromyography (EMG) sensors and provides a wired or wireless human-computer interface (HCI) for interacting with computing systems and attached devices via electrical signals generated by specific movement of the user's muscles. Following initial automated self-calibration and positional localization processes, measurement and interpretation of muscle generated electrical signals is accomplished by sampling signals from the EMG sensors of the Wearable Electromyography-Based Controller. In operation, the Wearable Electromyography-Based Controller is donned by the user and placed into a coarsely approximate position on the surface of the user's skin. Automated cues or instructions are then provided to the user for fine-tuning placement of the Wearable Electromyography-Based Controller. Examples of Wearable Electromyography-Based Controllers include articles of manufacture, such as an armband, wristwatch, or article of clothing having a plurality of integrated EMG-based sensor nodes and associated electronics.
    • “可佩戴的基于肌电图的控制器”包括多个电子照相术(EMG)传感器,并提供有线或无线人机界面(HCI),用于通过由用户的肌肉的特定运动产生的电信号与计算系统和附属设备进行交互。 在初始自动自校准和位置定位过程之后,肌肉产生的电信号的测量和解释是通过从可穿戴电子照相系统的控制器的EMG传感器采集信号来实现的。 在操作中,可佩戴的基于肌电图的控制器由使用者穿戴并且放置在使用者皮肤表面上的粗略近似位置。 然后将自动提示或指令提供给用户,以微调可穿戴电子照相系统的控制器的布置。 基于可穿戴电子照相的控制器的示例包括具有多个集成的基于EMG的传感器节点和相关联的电子设备的制品,例如臂带,手表或服装。
    • 2. 发明申请
    • WEARABLE ELECTROMYOGRAPHY-BASED CONTROLLERS FOR HUMAN-COMPUTER INTERFACE
    • 用于人机界面的基于电磁学的电磁控制器
    • US20090326406A1
    • 2009-12-31
    • US12404223
    • 2009-03-13
    • Desney TanT. Scott SaponasDan MorrisJim Turner
    • Desney TanT. Scott SaponasDan MorrisJim Turner
    • A61B5/0488H03K17/94
    • G06F3/015A61B5/0488G06F1/163G06F3/017
    • A “Wearable Electromyography-Based Controller” includes a plurality of Electromyography (EMG) sensors and provides a wired or wireless human-computer interface (HCl) for interacting with computing systems and attached devices via electrical signals generated by specific movement of the user's muscles. Following initial automated self-calibration and positional localization processes, measurement and interpretation of muscle generated electrical signals is accomplished by sampling signals from the EMG sensors of the Wearable Electromyography-Based Controller. In operation, the Wearable Electromyography-Based Controller is donned by the user and placed into a coarsely approximate position on the surface of the user's skin. Automated cues or instructions are then provided to the user for fine-tuning placement of the Wearable Electromyography-Based Controller. Examples of Wearable Electromyography-Based Controllers include articles of manufacture, such as an armband, wristwatch, or article of clothing having a plurality of integrated EMG-based sensor nodes and associated electronics.
    • “可佩戴的基于肌电图的控制器”包括多个电子照相术(EMG)传感器,并提供有线或无线人机界面(HCl),用于通过由用户的肌肉的特定运动产生的电信号与计算系统和附属设备进行交互。 在初始自动自校准和位置定位过程之后,肌肉产生的电信号的测量和解释是通过从可穿戴电子照相系统的控制器的EMG传感器采集信号来实现的。 在操作中,可佩戴的基于肌电图的控制器由使用者穿戴并且放置在使用者皮肤表面上的粗略近似位置。 然后将自动提示或指令提供给用户,以微调可穿戴电子照相系统的控制器的布置。 基于可穿戴电子照相的控制器的示例包括具有多个集成的基于EMG的传感器节点和相关联的电子设备的制品,例如臂带,手表或服装。
    • 3. 发明授权
    • Magnetic inductive charging with low far fields
    • 低磁场感应充电
    • US08686684B2
    • 2014-04-01
    • US12413217
    • 2009-03-27
    • Jim TurnerScott SaponasDesney TanDan Morris
    • Jim TurnerScott SaponasDesney TanDan Morris
    • H02J7/00
    • H02J50/12H02J7/025H02J50/40
    • A charging station wirelessly transmits power to mobile electronic devices (MEDs) each having a planar-shaped receiver coil (RC) and a capacitor connected in parallel across the RC. The station includes a planar charging surface, a number of series-interconnected bank A source coils (SCs), a number of series-interconnected bank B SCs, and electronics for energizing the SCs. Each SC generates a flux field perpendicular to the charging surface. The bank A and bank B SCs are interleaved and alternately energized in a repeating duty cycle. The coils in each bank are also alternately wound in a different direction so that the fields cancel each other out in a far-field environment. Whenever an MED is placed in close proximity to the charging surface, the fields wirelessly induce power in the RC. The MEDs can have any two-dimensional orientation with respect to the charging surface.
    • 充电站向具有平面状接收线圈(RC)的移动电子设备(MED)和跨RC并联连接的电容器无线地发送电力。 该站包括平面充电表面,多个串联互连的库A源线圈(SC),多个串联互连的库B SC和用于激励SC的电子器件。 每个SC产生垂直于充电表面的磁通场。 存储体A和存储体B SC交替地并以重复占空比交替地通电。 每个组中的线圈也以不同的方向交替地缠绕,使得场在远场环境中相互抵消。 无论何时MED被放置在靠近充电表面的地方,场都无线地在RC中引起电力。 MED可以相对于充电表面具有任何二维取向。
    • 4. 发明申请
    • MAGNETIC INDUCTIVE CHARGING WITH LOW FAR FIELDS
    • 低电场磁感应充电
    • US20100244767A1
    • 2010-09-30
    • US12413217
    • 2009-03-27
    • Jim TurnerScott SaponasDesney TanDan Morris
    • Jim TurnerScott SaponasDesney TanDan Morris
    • H02J7/00
    • H02J50/12H02J7/025H02J50/40
    • A charging station wirelessly transmits power to mobile electronic devices (MEDs) each having a planar-shaped receiver coil (RC) and a capacitor connected in parallel across the RC. The station includes a planar charging surface, a number of series-interconnected bank A source coils (SCs), a number of series-interconnected bank B SCs, and electronics for energizing the SCs. Each SC generates a flux field perpendicular to the charging surface. The bank A and bank B SCs are interleaved and alternately energized in a repeating duty cycle. The coils in each bank are also alternately wound in a different direction so that the fields cancel each other out in a far-field environment. Whenever an MED is placed in close proximity to the charging surface, the fields wirelessly induce power in the RC. The MEDs can have any two-dimensional orientation with respect to the charging surface.
    • 充电站向具有平面状接收线圈(RC)的移动电子设备(MED)和跨RC并联连接的电容器无线地发送电力。 该站包括平面充电表面,多个串联互连的库A源线圈(SC),多个串联互连的库B SC和用于激励SC的电子器件。 每个SC产生垂直于充电表面的磁通场。 存储体A和存储体B SC交替地并以重复占空比交替地通电。 每个组中的线圈也以不同的方向交替地缠绕,使得场在远场环境中相互抵消。 无论何时MED被放置在靠近充电表面的地方,场都无线地在RC中引起电力。 MED可以相对于充电表面具有任何二维取向。
    • 7. 发明申请
    • WEARABLE ELECTROMYOGRAPHY-BASED HUMAN-COMPUTER INTERFACE
    • 基于电子显微图像的人机界面
    • US20120188158A1
    • 2012-07-26
    • US13433845
    • 2012-03-29
    • Desney TanT. Scott SaponasDan MorrisJim Turner
    • Desney TanT. Scott SaponasDan MorrisJim Turner
    • G06F3/01
    • G06F3/017A61B5/0488A61B5/6824A61B5/6828G06F3/015G06N5/00G06N99/005
    • A “Wearable Electromyography-Based Controller” includes a plurality of Electromyography (EMG) sensors and provides a wired or wireless human-computer interface (HCl) for interacting with computing systems and attached devices via electrical signals generated by specific movement of the user's muscles. Following initial automated self-calibration and positional localization processes, measurement and interpretation of muscle generated electrical signals is accomplished by sampling signals from the EMG sensors of the Wearable Electromyography-Based Controller. In operation, the Wearable Electromyography-Based Controller is donned by the user and placed into a coarsely approximate position on the surface of the user's skin. Automated cues or instructions are then provided to the user for fine-tuning placement of the Wearable Electromyography-Based Controller. Examples of Wearable Electromyography-Based Controllers include articles of manufacture, such as an armband, wristwatch, or article of clothing having a plurality of integrated EMG-based sensor nodes and associated electronics.
    • “可佩戴的基于肌电图的控制器”包括多个电子照相术(EMG)传感器,并提供有线或无线人机界面(HCl),用于通过由用户的肌肉的特定运动产生的电信号与计算系统和附属设备进行交互。 在初始自动自校准和位置定位过程之后,肌肉产生的电信号的测量和解释是通过从可穿戴电子照相系统的控制器的EMG传感器采集信号来实现的。 在操作中,可佩戴的基于肌电图的控制器由使用者穿戴并且放置在使用者皮肤表面上的粗略近似位置。 然后将自动提示或指令提供给用户,以微调可穿戴电子照相系统的控制器的布置。 基于可穿戴电子照相的控制器的示例包括具有多个集成的基于EMG的传感器节点和相关联的电子设备的制品,例如臂带,手表或服装。
    • 8. 发明授权
    • Wearable electromyography-based controllers for human-computer interface
    • 用于人机界面的可穿戴肌电图的控制器
    • US08170656B2
    • 2012-05-01
    • US12404223
    • 2009-03-13
    • Desney TanT. Scott SaponasDan MorrisJim Turner
    • Desney TanT. Scott SaponasDan MorrisJim Turner
    • G06F3/033G09G5/08A61B5/04A61B5/103A61B5/117G01C9/00G01C17/00G01C19/00
    • G06F3/015A61B5/0488G06F1/163G06F3/017
    • A “Wearable Electromyography-Based Controller” includes a plurality of Electromyography (EMG) sensors and provides a wired or wireless human-computer interface (HCl) for interacting with computing systems and attached devices via electrical signals generated by specific movement of the user's muscles. Following initial automated self-calibration and positional localization processes, measurement and interpretation of muscle generated electrical signals is accomplished by sampling signals from the EMG sensors of the Wearable Electromyography-Based Controller. In operation, the Wearable Electromyography-Based Controller is donned by the user and placed into a coarsely approximate position on the surface of the user's skin. Automated cues or instructions are then provided to the user for fine-tuning placement of the Wearable Electromyography-Based Controller. Examples of Wearable Electromyography-Based Controllers include articles of manufacture, such as an armband, wristwatch, or article of clothing having a plurality of integrated EMG-based sensor nodes and associated electronics.
    • “可佩戴的基于肌电图的控制器”包括多个电子照相术(EMG)传感器,并提供有线或无线人机界面(HCl),用于通过由用户的肌肉的特定运动产生的电信号与计算系统和附属设备进行交互。 在初始自动自校准和位置定位过程之后,肌肉产生的电信号的测量和解释是通过从可穿戴电子照相系统的控制器的EMG传感器采集信号来实现的。 在操作中,可佩戴的基于肌电图的控制器由使用者穿戴并且放置在使用者皮肤表面上的粗略近似位置。 然后将自动提示或指令提供给用户,以微调可穿戴电子照相系统的控制器的布置。 基于可穿戴电子照相的控制器的示例包括具有多个集成的基于EMG的传感器节点和相关联的电子设备的制品,例如臂带,手表或服装。