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    • 71. 发明授权
    • Audio I/O headset plug and plug detection circuitry
    • 音频I / O耳机插头和插头检测电路
    • US07912501B2
    • 2011-03-22
    • US11650132
    • 2007-01-05
    • Timothy JohnsonAchim Pantfoerder
    • Timothy JohnsonAchim Pantfoerder
    • H04M1/00
    • H04R3/00H01R13/703H01R24/58H01R29/00H01R2201/16H04M1/6058H04M1/72527H04R1/1041H04R29/00
    • A single prong, multiple signal conducting plug and plug detection circuitry is provided. The plug may be electrically coupled to a stereo headset including a microphone. The plug may include four signal conducting regions arranged in a predetermined order along the length of the prong. Detection circuitry may be operative to determine whether a microphone type of plug (e.g., a four region plug including a microphone region and two audio regions, or a three region plug including microphone region and only one audio region) or a non-microphone type of plug (e.g., stereo plug) is inserted into the jack of an electronic device (e.g., mobile phone). Detection circuitry may also detect user activated functions performed in response to user activation of one or more switches included with the headset. For example, the headset may include a single switch for performing a function with respect to a microphone (e.g., end-call function).
    • 提供单个插脚,多信号导通插头和插头检测电路。 插头可以电耦合到包括麦克风的立体声耳机。 插头可以包括沿着插脚的长度以预定顺序布置的四个信号导通区域。 检测电路可以用于确定麦克风类型的插头(例如,包括麦克风区域和两个音频区域的四区域插头,或包括麦克风区域和仅一个音频区域的三区域插头)或非麦克风类型的 插头(例如,立体声插头)插入到电子设备(例如,移动电话)的插孔中。 检测电路还可以检测响应于耳机中包括的一个或多个开关的用户激活而执行的用户激活的功能。 例如,耳机可以包括用于执行关于麦克风的功能的单个开关(例如,终端呼叫功能)。
    • 74. 发明授权
    • Systems and methods for selectively changing current limit of a battery controller
    • 用于选择性地改变电池控制器的电流限制的系统和方法
    • US07728558B2
    • 2010-06-01
    • US11650131
    • 2007-01-05
    • John TamTimothy Johnson
    • John TamTimothy Johnson
    • H02J7/00
    • G06F1/263G06F1/28Y10T307/696
    • Systems and methods for selectively changing the current threshold of current limiting circuitry are provided. The current limit threshold of current limiting circuitry may be selectively changed based on a detected power source using a resistive network. The current limiting threshold may be selected by changing a resistance value of a resistive network electrically coupled to an input on the current limiting circuitry (e.g., battery controller) for programming the current limiting threshold. The resistance value received by the currently limiting circuitry at this input may set the current threshold and thus the maximum magnitude of current that may be provided to charge a battery or other energy storage device located in the electronic device (e.g., a mobile phone).
    • 提供了用于选择性地改变限流电路的电流阈值的系统和方法。 可以基于使用电阻网络的检测到的电源来选择性地改变限流电路的电流限制阈值。 可以通过改变与电流限制电路(例如,电池控制器)上的输入电耦合的电阻网络的电阻值来选择限流阈值,以编程限流阈值。 当前限制电路在该输入端接收的电阻值可以设置电流阈值,从而设置可以提供给电池或位于电子设备(例如,移动电话)中的其他能量存储装置的电池的最大电流幅度。
    • 75. 发明申请
    • ENHANCED INTRALUMINAL FLOW MEASUREMENT SYSTEM USING PULSED SIGNALS
    • 使用脉冲信号增强的内部流量测量系统
    • US20090264765A1
    • 2009-10-22
    • US12105012
    • 2008-04-17
    • George W. KeilmanLeigh BartlettTimothy Johnson
    • George W. KeilmanLeigh BartlettTimothy Johnson
    • A61B8/06
    • A61B5/026A61B5/0031A61B5/0265A61B5/6846A61B8/06A61B8/12
    • An enhanced intraluminal flow measurement system and method is conducive for a low-power ultrasonic system that can use continuous-wave (CW) Doppler sensing and wireless RF telemetry. Applications include measurement of blood flow in situ in living organisms. Implementations include an extraluminal component located outside of a body, such as a human or animal body, containing a lumen. The extraluminal component can be wirelessly coupled via an RF magnetic field or other RF field to an implantable intraluminal component. The intraluminal component (i.e. implant) is implanted inside of the lumen of the body such as a heart or elsewhere in a vasculature (such as in a dialysis shunt). The intraluminal component can telemeter, via RF electromagnetic signals, flow data directly out of the body housing the intraluminal component to be received by the extraluminal component.
    • 增强的管腔内流量测量系统和方法有利于可以使用连续波(CW)多普勒感测和无线RF遥测的低功率超声波系统。 应用包括在生物体内原位测量血流。 实施方案包括位于身体外部的外阴部件,例如包含内腔的人体或动物体。 管腔内部件可以经由RF磁场或其他RF场无线耦合到可植入的管腔内部件。 管腔内成分(即植入物)植入体内的腔内,例如心脏或其它脉管系统(如透析分流)中。 管腔内成分可以通过射频电磁信号将流量数据直接传送出外壳体内的腔内部件,以便由腔内部件接收。
    • 76. 发明申请
    • ENHANCED INTRALUMINAL FLOW MEASUREMENT METHOD USING PULSED SIGNALS
    • 使用脉冲信号的增强的内部流量测量方法
    • US20090264763A1
    • 2009-10-22
    • US12105050
    • 2008-04-17
    • George W. KeilmanLeigh BartlettTimothy Johnson
    • George W. KeilmanLeigh BartlettTimothy Johnson
    • A61B8/06
    • A61B5/026A61B5/0031A61B5/0265A61B5/6846A61B8/06A61B8/12
    • An enhanced intraluminal flow measurement system and method is conducive for a low-power ultrasonic system that can use continuous-wave (CW) Doppler sensing and wireless RF telemetry. Applications include measurement of blood flow in situ in living organisms. Implementations include an extraluminal component located outside of a body, such as a human or animal body, containing a lumen. The extraluminal component can be wirelessly coupled via an RF magnetic field or other RF field to an implantable intraluminal component. The intraluminal component (i.e. implant) is implanted inside of the lumen of the body such as a heart or elsewhere in a vasculature (such as in a dialysis shunt). The intraluminal component can telemeter, via RF electromagnetic signals, flow data directly out of the body housing the intraluminal component to be received by the extraluminal component.
    • 增强的管腔内流量测量系统和方法有利于可以使用连续波(CW)多普勒感测和无线RF遥测的低功率超声波系统。 应用包括在生物体内原位测量血流。 实施方案包括位于身体外部的外阴部件,例如包含内腔的人体或动物体。 管腔内部件可以经由RF磁场或其他RF场无线耦合到可植入的管腔内部件。 管腔内成分(即植入物)植入体内的腔内,例如心脏或其它脉管系统(如透析分流)中。 管腔内成分可以通过射频电磁信号将流量数据直接传送出外壳体内的腔内部件,以便由腔内部件接收。
    • 77. 发明申请
    • ENHANCED IMPLANTABLE ANTENNA SYSTEM AND METHOD
    • 增强的可植入天线系统和方法
    • US20090248129A1
    • 2009-10-01
    • US12060812
    • 2008-04-01
    • George W. KeilmanTimothy Johnson
    • George W. KeilmanTimothy Johnson
    • A61N1/00
    • A61N1/37229
    • As described herein vascular anchoring systems are used to position an implant in a vascular area such as a bifurcated vasculature with relatively high fluid flow, for instance, in an area of a pulmonary artery with associated left and right pulmonary arteries. Implementations include an anchoring trunk member having a first anchoring trunk section and a second anchoring trunk section. Further implementations include a first anchoring branch member extending from the anchoring trunk member. Still further implementations include a second anchoring branch member extending from the anchoring trunk member.
    • 如本文所描述的,血管锚定系统用于将植入物定位在诸如具有相对高的流体流动的分叉血管的血管区域中,例如在具有相关联的左肺动脉和右肺动脉的肺动脉的区域中。 实施方案包括具有第一锚固干线部分和第二锚固干线部分的锚固干线部件。 另外的实施方案包括从锚固树干构件延伸的第一锚定分支构件。 另外的实施方式包括从锚固树干构件延伸的第二锚定分支构件。