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
    • 11. 发明申请
    • ROUTING TRACE COMPENSATION
    • 路线跟踪补偿
    • WO2014042808A1
    • 2014-03-20
    • PCT/US2013/054912
    • 2013-08-14
    • SYNAPTICS INCORPORATED
    • DUNPHY, JimSCHWARTZ, AdamREYNOLDS, Joseph, Kurth
    • G06F3/041G06F3/044
    • G06F3/044G06F3/0418G06F2203/04107
    • A capacitive input device includes first and second pluralities of sensor electrodes disposed in a first region of a substrate. The first and second pluralities of sensor electrodes are substantially orthogonal to one another. The first region is configured to overlap a display screen. At least one routing trace is disposed in a second region of the substrate and is ohmically coupled to a sensor electrode of one of the first and second pluralities of sensor electrodes and also to a processing system. The second region comprises a non-display screen overlapping portion of the substrate. A compensation trace is disposed in the second region and ohmically coupled to the processing system. The compensation trace has substantially the same length as and is substantially parallel and proximate to the at least one routing trace. The compensation trace is not ohmically coupled to any sensor electrode located in the first region.
    • 电容性输入装置包括设置在基板的第一区域中的第一和第二多个传感器电极。 第一和第二多个传感器电极基本上彼此正交。 第一区域被配置为与显示屏幕重叠。 至少一个布线迹线设置在基板的第二区域中,并且被欧姆耦合到第一和第二多个传感器电极中的一个的传感器电极以及处理系统。 第二区域包括基板的非显示屏幕重叠部分。 补偿迹线设置在第二区域中并且欧姆耦合到处理系统。 所述补偿迹线具有与所述至少一个路线迹线基本上相同的长度并且基本上平行并且靠近所述至少一个路线迹线。 补偿迹线不与位于第一区域中的任何传感器电极欧姆耦合。
    • 13. 发明申请
    • VEHICLE-BASED GLOBAL NAVIGATION SATELLITE SYSTEM RECEIVER SYSTEM WITH RADIO FREQUENCY HARDWARE COMPONENT
    • 基于车辆的全球导航卫星系统接收机系统与无线电频率硬件组件
    • WO2015191862A1
    • 2015-12-17
    • PCT/US2015/035346
    • 2015-06-11
    • TRIMBLE NAVIGATION LIMITED
    • WALLACE, GregoryLOOMIS, PeterWEISENBURGER, ShawnJANKY, James M.
    • G01S19/35
    • G01S19/35G01S19/09
    • A vehicle-based radio frequency hardware component comprises first and second antennas, a digitizer, a serializer, and a serial output. The first antenna receives, over-the-air, a first analog Global Navigation Satellite System (GNSS) signal in a first frequency band. The second antenna receives, over-the-air, at least a second analog GNSS signal in a second frequency band. The first frequency band and the second frequency band are separate and distinct. The digitizer digitizes the first analog GNSS signal into a first digitalized GNSS signal and the second analog GNSS signal into a second digitized GNSS signal. The serializer serializes the digitized GNSS signals into a serialized output signal. The serial output communicatively couples the digitized GNSS signals, as the serialized output signal, directly from a location in a vehicle of the radio frequency hardware component to a separate communication device also coupled with the vehicle.
    • 基于车载射频硬件组件包括第一和第二天线,数字转换器,串行器和串行输出。 第一个天线在空中接收第一个频带中的第一个模拟全球导航卫星系统(GNSS)信号。 第二天线在第二频带中接收空中至少第二模拟GNSS信号。 第一频带和第二频带是分开且不同的。 数字转换器将第一模拟GNSS信号数字化为第一数字化GNSS信号,将第二模拟GNSS信号数字化为第二数字化GNSS信号。 串行器将数字化的GNSS信号串行化为串行输出信号。 串行输出将数字化的GNSS信号作为串行输出信号直接从射频硬件组件的车辆中的位置耦合到也与车辆耦合的分离的通信设备。
    • 15. 发明申请
    • RENDERING AND DISPLAYING A THREE-DIMENSIONAL OBJECT REPRESENTATION
    • 渲染和显示三维对象表示
    • WO2013019514A1
    • 2013-02-07
    • PCT/US2012/048168
    • 2012-07-25
    • SYNAPTICS INCORPORATEDSMALL, Jeffrey
    • SMALL, Jeffrey
    • G06F3/041H04N13/00
    • G06T15/005G06F3/041G06F3/044G06F3/045G06F3/04815G06F3/0488G06F2203/04101H04N13/398
    • A touch screen controller is configured for use in an electronic system. The electronic system comprises: the touch screen controller, a host processing system physically distinct from the touch screen controller, a display screen, and a proximity sensor element. The touch screen controller comprises proximity sensor control circuitry, a rendering module, and display refresh circuitry. The proximity sensor control circuitry is configured to operate the proximity sensor element to sense input objects in a sensing region of the electronic system. The rendering module is configured to render three-dimensional object representations for display on the display screen. The display refresh circuitry is configured to update the display screen with an image received from and processed by the host processing system and with the three-dimensional object representation rendered by the rendering module.
    • 触摸屏控制器被配置用于电子系统中。 电子系统包括:触摸屏控制器,与触摸屏控制器物理上不同的主机处理系统,显示屏幕和接近传感器元件。 触摸屏控制器包括接近传感器控制电路,渲染模块和显示刷新电路。 接近传感器控制电路被配置为操作接近传感器元件以感测电子系统的感测区域中的输入物体。 渲染模块被配置为渲染用于在显示屏上显示的三维对象表示。 显示刷新电路被配置为利用从主处理系统接收并由主处理系统处理的图像和由渲染模块呈现的三维对象表示来更新显示屏幕。
    • 16. 发明申请
    • ABSOLUTE CAPACITIVE SENSING USING SENSOR ELECTRODE PRE-EMPHASIS
    • 使用传感器电极预绝缘的绝对电容感应
    • WO2015138430A1
    • 2015-09-17
    • PCT/US2015/019673
    • 2015-03-10
    • SYNAPTICS INCORPORATED
    • WEINERTH, JohnSCHWARTZ, Adam
    • G06F3/041G06F3/044
    • G06F3/044G06F3/0416
    • A processing system comprises a sensor module and a determination module. The sensor module is configured to drive a modulated signal on to a sensor electrode to achieve a target voltage on the sensor electrode during a first portion of a sensing cycle, wherein the modulated signal comprises a first voltage that is beyond a level of the target voltage and which is driven for a first period of time and a second voltage that is at the target voltage and which is driven for a second period of time that follows the first period of time. The determination module is configured to determine an absolute capacitance of the sensor electrode during the first portion of the sensing cycle after driving the second voltage.
    • 处理系统包括传感器模块和确定模块。 传感器模块被配置为在感测周期的第一部分期间将调制信号驱动到传感器电极以实现传感器电极上的目标电压,其中调制信号包括超出目标电压水平的第一电压 并且其被驱动第一时间段和第二电压,其处于目标电压并且被驱动在第一时间段之后的第二时间段。 确定模块被配置为在驱动第二电压之后确定感测周期的第一部分期间传感器电极的绝对电容。
    • 18. 发明申请
    • USING A PRINTED CIRCUIT TO OFFSET CHARGE DURING CAPACITIVE SENSING
    • 在电容感应期间使用打印电路进行偏移电荷
    • WO2015048482A1
    • 2015-04-02
    • PCT/US2014/057769
    • 2014-09-26
    • SYNAPTICS INCORPORATED
    • SCHWARTZ, Adam
    • G06F3/044
    • G06F3/044G06F3/0418G06F2203/04107
    • In a method of capacitive sensing an absolute capacitive sensing signal is driven through at least one of a plurality of routing traces of a printed circuit. Absolute capacitive sensing is performed with at least one sensor electrode of a plurality of sensor electrodes in a sensor electrode pattern. The at least one sensor electrode is coupled with the at least one of the plurality of routing traces. An offsetting signal is transmitted on a parallel conductor overlapping the at least one of the plurality of routing traces, such that charge is offset from the at least one of the plurality of routing traces during the absolute capacitive sensing.
    • 在电容感测的方法中,通过印刷电路的多个布线迹线中的至少一个驱动绝对电容感测信号。 利用传感器电极图案中的多个传感器电极的至少一个传感器电极进行绝对电容感测。 所述至少一个传感器电极与所述多个路由迹线中的至少一个耦合。 偏移信号在与多个路由迹线中的至少一个重叠的并行导体上传输,使得在绝对电容感测期间,电荷从多个路由轨迹中的至少一个偏移。
    • 20. 发明申请
    • CAPACITIVE INPUT DEVICE INTERFERENCE DETECTION AND OPERATION
    • 电容式输入装置干扰检测和操作
    • WO2012142182A2
    • 2012-10-18
    • PCT/US2012/033155
    • 2012-04-11
    • SYNAPTICS INCORPORATEDSCHWARTZ, AdamDATTALO, Tracy ScottHODGSON, Robin
    • SCHWARTZ, AdamDATTALO, Tracy ScottHODGSON, Robin
    • G06F3/044
    • H03K17/9622G06F3/0418G06F3/044H03K2217/960705
    • A processing system for a capacitive input device comprises sensor circuitry and control logic. The sensor circuitry is configured to be communicatively coupled with sensor electrodes of the capacitive input device. The control logic is configured to operate the capacitive input device in a first mode comprising interference sensing at a first level and input object sensing. The control logic is also configured to operate the capacitive input device in a second mode instead of in the first mode in response to: interference measured in the first mode meeting an interference condition; and a determination that input is in a sensing region of the capacitive input device. While operating in the second mode, interference sensing with the capacitive input device is either not performed or else is performed at a second level that is lower in fidelity than the first level.
    • 用于电容性输入装置的处理系统包括传感器电路和控制逻辑。 传感器电路被配置为与电容性输入设备的传感器电极通信地耦合。 控制逻辑被配置为以第一模式操作电容性输入设备,该第一模式包括在第一级的干扰感测和输入对象感测。 控制逻辑还被配置为响应于在第一模式中测量的干扰满足干扰条件而以第二模式而不是第一模式操作电容性输入设备; 以及确定输入在电容性输入装置的感测区域中。 当在第二模式下操作时,与电容性输入设备的干扰感测或者不被执行,否则在保真度比第一电平低的第二电平上执行。