会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明授权
    • Portable electronic device and method to protect same
    • 便携式电子设备及其保护方法
    • US07626355B2
    • 2009-12-01
    • US11289104
    • 2005-11-29
    • John M. BurganAndrew F. BurtonRonald S. CoapstickJon S. MillerJoseph PatinoRussell L. Simpson
    • John M. BurganAndrew F. BurtonRonald S. CoapstickJon S. MillerJoseph PatinoRussell L. Simpson
    • H02J7/00G11B21/02
    • 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 )。
    • 7. 发明授权
    • 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
    • US07167107B2
    • 2007-01-23
    • US10667269
    • 2003-09-19
    • Joseph PatinoRussell L. Simpson
    • Joseph PatinoRussell L. Simpson
    • H03M11/00H03K17/94G08C19/00
    • 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。
    • 8. 发明授权
    • Charging system and method
    • 充电系统及方法
    • US07626365B2
    • 2009-12-01
    • US10722804
    • 2003-11-26
    • Joseph PatinoMarco PulidoRussell L. Simpson
    • Joseph PatinoMarco PulidoRussell L. Simpson
    • H02J7/00H02J7/14H02J1/10H04M1/00
    • H02J7/042H02J7/025H02J50/10Y10T307/391Y10T307/505Y10T307/702
    • The invention concerns a method (200) and system (100) for charging a battery (110). The method includes the steps of receiving (212) an input power supply signal (300), monitoring (216) the input power supply signal to determine when the input power supply signal reaches first and second predetermined thresholds (314, 316) and in response to the monitoring step, selectively controlling (217) a charging switch (122) that controls the flow of the input power supply signal to the battery. The controlling step can include activating (220) the charging switch when the input power supply signal reaches the first predetermined threshold and deactivating (226) the switch when the input power supply signal reaches the second predetermined threshold.
    • 本发明涉及一种用于对电池(110)充电的方法(200)和系统(100)。 该方法包括以下步骤:接收(212)输入电源信号(300),监测(216)输入电源信号,以确定输入电源信号何时达到第一和第二预定阈值(314,316)并且作为响应 到所述监视步骤,选择性地控制(217)控制所述输入电源信号流向所述电池的充电开关(122)。 控制步骤可以包括当输入电源信号达到第一预定阈值时激活(220)充电开关,并且当输入电源信号达到第二预定阈值时停用(226)开关。
    • 9. 发明授权
    • Light detection power system and method for same
    • 光检测电源系统及方法相同
    • US07486044B2
    • 2009-02-03
    • US10999653
    • 2004-11-30
    • Joseph PatinoRussell L. Simpson
    • Joseph PatinoRussell L. Simpson
    • H02J7/00
    • H02J7/35H04M1/22H04M2250/12H04W52/027H04W52/0296Y02D70/00Y10S323/906
    • The invention concerns a light detection power system (105). The system can include a solar cell charging circuit (120) having at least one solar cell (116) in which the solar cell charging circuit can provide power to a power source (114), a lighting circuit (122) that receives power from the power source and a controller (118) coupled to the solar cell charging circuit and the lighting circuit. The controller can enable the lighting circuit when a power level that the controller detects from the solar cell charging circuit fails to reach a first predetermined threshold. The solar cell charging circuit can include a switch (130) that is controlled by the controller. The controller can further enable the switch when the power level that the controller detects from the solar cell charging circuit reaches a second predetermined threshold.
    • 本发明涉及光检测电力系统(105)。 该系统可以包括具有至少一个太阳能电池(116)的太阳能电池充电电路(120),太阳能电池充电电路可以在该太阳能电池充电电路向电源(114)提供电力;照明电路(122),其从 电源和耦合到太阳能电池充电电路和照明电路的控制器(118)。 当控制器从太阳能电池充电电路检测到的功率电平不能达到第一预定阈值时,控制器可以启动点亮电路。 太阳能电池充电电路可以包括由控制器控制的开关(130)。 当控制器从太阳能电池充电电路检测到的功率电平达到第二预定阈值时,控制器可以进一步启用开关。
    • 10. 发明授权
    • Light detection power system and method for same
    • 光检测电源系统及方法相同
    • US07800046B2
    • 2010-09-21
    • US12361130
    • 2009-01-28
    • Joseph PatinoRussell L. Simpson
    • Joseph PatinoRussell L. Simpson
    • G01J1/04G05F1/00
    • H02J7/35H04M1/22H04M2250/12H04W52/027H04W52/0296Y02D70/00Y10S323/906
    • The invention concerns a light detection power system (105). The system can include a solar cell charging circuit (120) having at least one solar cell (116) in which the solar cell charging circuit can provide power to a power source (114), a lighting circuit (122) that receives power from the power source and a controller (118) coupled to the solar cell charging circuit and the lighting circuit. The controller can enable the lighting circuit when a power level that the controller detects from the solar cell charging circuit fails to reach a first predetermined threshold. The solar cell charging circuit can include a switch (130) that is controlled by the controller. The controller can further enable the switch when the power level that the controller detects from the solar cell charging circuit reaches a second predetermined threshold.
    • 本发明涉及光检测电力系统(105)。 该系统可以包括具有至少一个太阳能电池(116)的太阳能电池充电电路(120),太阳能电池充电电路可以在该太阳能电池充电电路向电源(114)提供电力;照明电路(122),其从 电源和耦合到太阳能电池充电电路和照明电路的控制器(118)。 当控制器从太阳能电池充电电路检测到的功率电平不能达到第一预定阈值时,控制器可以启动点亮电路。 太阳能电池充电电路可以包括由控制器控制的开关(130)。 当控制器从太阳能电池充电电路检测到的功率电平达到第二预定阈值时,控制器可以进一步启用开关。