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    • 2. 发明申请
    • Portable electronic device and method to protect same
    • 便携式电子设备及其保护方法
    • US20070120528A1
    • 2007-05-31
    • US11289104
    • 2005-11-29
    • John BurganAndrew BurtonRonald CoapstickJon MillerJoseph PatinoRussell Simpson
    • John BurganAndrew BurtonRonald CoapstickJon MillerJoseph PatinoRussell Simpson
    • H02J7/00
    • H02J7/0029
    • A portable electronic device and a method to protect the portable electronic device from a battery bounce are provided. The portable electronic device (100) can comprise a free-fall condition sensor (105) enabled to detect a pre-battery bounce condition in the portable electronic device and a processor (110) coupled to the free-fall condition sensor (105). The processor (110), in response to a detection of the pre-battery bounce condition by the free-fall condition sensor (105), can be programmed to place the portable electronic device (100) in a pre-battery bounce setting. The method can include detecting a pre-battery bounce condition in the portable electronic device (405) and in response to the detection of the pre-battery bounce condition (405), placing the portable electronic device in a pre-battery bounce setting (410).
    • 提供了便携式电子设备和保护便携式电子设备免受电池反弹的方法。 便携式电子设备(100)可以包括能够检测便携式电子设备中的电池前反弹状态的自由落体状态传感器(105)和耦合到自由落体状态传感器(105)的处理器(110)。 处理器(110)响应于由自由落体状态传感器(105)检测到电池前反弹状态,可被编程为将便携式电子设备(100)放置在电池前反弹设置中。 该方法可以包括检测便携式电子设备(405)中的电池电池前反弹状态,并且响应于电池电池反弹条件(405)的检测,将便携式电子设备放置在电池前反弹设置(410 )。
    • 4. 发明申请
    • Battery circuit with non-volitable memory and thermistor on a single line
    • 电池电路与非易失性存储器和热敏电阻在一条线上
    • US20050184704A1
    • 2005-08-25
    • US10783922
    • 2004-02-20
    • Joseph PatinoCraig BishopAndrew BurtonRussell Simpson
    • Joseph PatinoCraig BishopAndrew BurtonRussell Simpson
    • H02J7/00
    • H02J7/0004H02J7/0052H02J2007/006H02J2007/0098
    • A system (200) includes a battery charger (278) and a battery (202). The battery (202) includes a thermistor (230), a voltage identifying element (240), a switch (244), a memory device (232), and a battery data contact (228), connected to a data port of the memory device (232) and the voltage identifying element (240). The voltage identifying element (240) determines a voltage that controls the switch (244). When the switch (244) is enabled, the thermistor (230), connected to a battery clock contact (224), is active and a microprocessor (102) on the battery charger (278) reads the value of the thermistor (230) via an analog-to-digital converter. When the switch (244) is disabled, the thermistor (230) is switched out and the battery clock contact (224) is used to clock the memory device (232). The battery charger (278) has a data contact (226) for receiving the battery data contact (228) and a clock contact (222) for receiving the battery clock contact (224). The battery charger (278) further includes at least two switches (204, 206), and the microprocessor (102) is programmed to selectively operate the switches (204, 206).
    • 系统(200)包括电池充电器(278)和电池(202)。 电池(202)包括连接到存储器的数据端口的热敏电阻(230),电压识别元件(240),开关(244),存储器件(232)和电池数据触点(228) 装置(232)和电压识别元件(240)。 电压识别元件(240)确定控制开关(244)的电压。 当开关(244)被使能时,连接到电池时钟触点(224)的热敏电阻(230)被激活,并且电池充电器(278)上的微处理器(102)经由 一个模拟 - 数字转换器。 当开关(244)被禁用时,热敏电阻(230)被切断,电池时钟触点(224)用于对存储器件(232)进行定时。 电池充电器(278)具有用于接收电池数据触点(228)的数据触点(226)和用于接收电池时钟触点(224)的时钟触点(222)。 电池充电器(278)还包括至少两个开关(204,206),并且微处理器(102)被编程为选择性地操作开关(204,206)。
    • 7. 发明申请
    • System and method for operating a multiple charger
    • 用于操作多个充电器的系统和方法
    • US20060145661A1
    • 2006-07-06
    • US11026886
    • 2004-12-30
    • Joseph PatinoRussell Simpson
    • Joseph PatinoRussell Simpson
    • H02J7/00
    • H02J7/0013
    • The invention concerns a method (300) and system (100) for operating a multiple charger. The method can include—in a multiple charger (110) having at least a first switch (134) and a second switch (122) for respectively controlling the flow of current to a first battery (116) and a second battery (118)—charging (312) the first battery by maintaining the first switch in a saturated state and charging (314) the second battery by maintaining the second switch in a saturated state. The first switch and the second switch can be simultaneously maintained (314) in the saturated state at least until the first battery reaches a predetermined charging threshold (412, 414).
    • 本发明涉及用于操作多个充电器的方法(300)和系统(100)。 该方法可以包括在具有至少第一开关(134)和第二开关(122)的多个充电器(110)中,用于分别控制流向第一电池(116)和第二电池(118)的电流 - 通过将第一开关保持在饱和状态来对第一电池进行充电(312),并且通过将第二开关维持在饱和状态来对第二电池充电(314)。 第一开关和第二开关可以在饱和状态下同时保持(314),至少直到第一电池达到预定的充电阈值(412,414)。
    • 8. 发明申请
    • Speaker voice coil antenna
    • 扬声器音圈天线
    • US20070060221A1
    • 2007-03-15
    • US11224251
    • 2005-09-12
    • John BurganJoseph PatinoRussell SimpsonJason Young
    • John BurganJoseph PatinoRussell SimpsonJason Young
    • H04B1/06H04M1/00
    • H01Q1/243H04M1/03
    • A wireless communication device (50) can include a radio frequency transceiver (52), an audio drive circuit (58) coupled to the transceiver, a speaker (10) having a voice coil (16) coupled to the audio drive circuit, and an antenna feed or radiating circuit (20) such as an RFID or NFID circuit coupled to the voice coil for at least radiating or receiving an electromagnetic signal via the voice coil. Such radiating circuits can be coupled to the voice coil using a band pass circuit designed to substantially prevent a radiating signal from the radiating circuit from interfering with audio drive circuit driving the speaker. The wireless communication device can further include an antenna (54) coupled to the radio frequency transceiver. Note, this arrangement can be designed to avoid problems involving electrostatic discharge sensitivity, electromagnetic interference coupling between the antenna and the voice coil, total radiated power, and specific absorption rate.
    • 无线通信设备(50)可以包括射频收发器(52),耦合到收发器的音频驱动电路(58),具有耦合到音频驱动电路的音圈(16)的扬声器(10) 天线馈送或辐射电路(20),例如耦合到音圈的RFID或NFID电路,用于经由音圈至少辐射或接收电磁信号。 这种辐射电路可以使用设计成基本上防止辐射电路的辐射信号干扰驱动扬声器的音频驱动电路的带通电路耦合到音圈。 无线通信设备还可以包括耦合到射频收发器的天线(54)。 注意,这种布置可以被设计为避免涉及静电放电灵敏度,天线和音圈之间的电磁干扰耦合,总辐射功率和比吸收率的问题。
    • 9. 发明申请
    • Keypad array having reduced number of input/outputs and method for generating same
    • 具有减少输入/输出数量的键盘阵列及其产生方法
    • US20050062618A1
    • 2005-03-24
    • US10667269
    • 2003-09-19
    • Joseph PatinoRussell Simpson
    • Joseph PatinoRussell Simpson
    • H03M11/20H03M11/00H03K17/94
    • H03M11/20
    • The invention concerns a method (200) of generating an array (100, 300, 400) having a reduced number of input/outputs (114, 314, 414). The method includes the steps of, for each array row input/output, grouping (212) at least one set of rows (124, 324, 424) in which the set of rows is coupled to the array row input/output and, for each combination of the array row input/outputs, selectively coupling (216) non-set rows (326, 426) to the array row input/outputs that comprise the combination. At least a portion of a number of rows (110, 310, 410) for the array is equal to the number of rows in each set of rows multiplied by the number of array row input/outputs plus the number of non-set rows coupled to the array row input/output combinations.
    • 本发明涉及一种产生具有减少数量的输入/输出(114,314,414)的阵列(100,300,400)的方法(200)。 该方法包括以下步骤:对于每个阵列行输入/输出,分组(212)至少一组行(124,324,424),其中该组行耦合到阵列行输入/输出,并且为了 阵列行输入/输出的每个组合,选择性地将(216)非设置行(326,426)耦合到构成组合的阵列行输入/输出。 用于阵列的多个行(110,310,410)的至少一部分等于每组行中的行数乘以阵列行输入/输出的数量加上耦合的非集合行数 到数组行输入/输出组合。
    • 10. 发明申请
    • Anti-detonation device and method
    • 防爆装置及方法
    • US20070199067A1
    • 2007-08-23
    • US11301615
    • 2005-12-13
    • Joseph PatinoJohn BurganRussell Simpson
    • Joseph PatinoJohn BurganRussell Simpson
    • G06F12/14
    • H04M1/72522
    • A wireless device (100) includes an electrical circuit arrangement (200) for deterring access to an electrical signal having a predictable electrical pattern. The circuit arrangement (200) includes a processor (206) for processing instructions and a controller (210) communicatively coupled to the processor (206) and able to send at least one signal along each of a plurality of signal lines from within the circuit (200). The processor (206) causes the controller (210) to sporadically introduce a signal onto each of the plurality of signal lines, where the signal is unrelated to any communication function of the wireless device and is present solely for the purpose of making the signal line unpredictable.
    • 无线设备(100)包括用于阻止对具有可预测的电气图案的电信号的访问的电路装置(200)。 电路装置(200)包括用于处理指令的处理器(206)和通信地耦合到处理器(206)并且能够沿着电路内的多条信号线中的每一条发送至少一个信号的控制器(210) 200)。 处理器(206)使得控制器(210)将信号偶尔地引入到多个信号线中的每一个信号线上,其中信号与无线设备的任何通信功能无关,并且仅仅出于使信号线 不可预料的。