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    • 23. 发明授权
    • Programmable level shifter for LCD systems
    • LCD系统可编程电平转换器
    • US09564105B2
    • 2017-02-07
    • US14301884
    • 2014-06-11
    • Texas Instruments Deutschland GMBH
    • Nigel Peter SmithRoland Volker Bucksch
    • G09G3/36G09G5/18
    • G09G3/3696G09G3/3677G09G5/18G09G2310/0289G09G2310/08G09G2370/08
    • A programmable level shifter for providing upshifted control signals to an active matrix display based on logic-level control signals received from a timing controller. The programmable level shifter includes a programmable state machine, level-shifting output drivers, and a programming interface. The programmable state machine is configured to receive at least one control signal from a timing controller. The state machine generates, based on said at least one control signal, a plurality of outputs for driving gate drivers of the active matrix display. The level-shifting output drivers convert the plurality of outputs generated by the programmable state machine to a higher-magnitude voltage level. The programming interface facilitates the programming of aspects of the programmable state machine.
    • 一种可编程电平转换器,用于基于从定时控制器接收的逻辑电平控制信号,向有源矩阵显示器提供升高的控制信号。 可编程电平转换器包括可编程状态机,电平转换输出驱动器和编程接口。 可编程状态机被配置为从定时控制器接收至少一个控制信号。 状态机基于所述至少一个控制信号产生用于驱动有源矩阵显示器的栅极驱动器的多个输出。 电平移位输出驱动器将由可编程状态机产生的多个输出转换为更高幅度的电压电平。 编程接口有助于编程可编程状态机的各个方面。
    • 24. 发明申请
    • TIRE MONITORING BASED ON INDUCTIVE SENSING USING EMBEDDED CIRCUMFERENTIAL TIRE INDUCTOR COIL(S)
    • 使用嵌入式圆形电感电感线圈进行感应感测的轮胎监测(S)
    • US20170028798A1
    • 2017-02-02
    • US15224658
    • 2016-07-31
    • Texas Instruments Deutschland, GMBH
    • Thomas Christian SeboeVlad Tiberiu Craciunescu
    • B60C23/06B29D30/00G01N27/02B60C23/04
    • B60C23/064B29D30/0061B29D2030/0083B60C2019/004B60C2019/007
    • A vehicle tire monitoring methodology is based on embedding into a tire at least one tire inductor coil with multiple circumferential windings. A tire condition that causes deformation of the tire, causes deformation of the tire inductor coil. A tire condition (such as pressure, speed, damage or deterioration) can be monitored by acquiring tire coil response measurements corresponding to an inductive response to the tire condition that causes deformation of the tire, and thereby deformation of the tire inductor coil, and then converting the tire coil response into data representing the tire condition. Multiple circumferential tire inductor coils can be embedded (such as into the tread and/or sidewalls), so that tire monitoring can involve acquiring respective tire coil responses corresponding to a tire condition that causes differential tire coil responses (such as steering direction), which can be converted into data representing the tire condition.
    • 一种车辆轮胎监测方法基于将具有多个圆周绕组的至少一个轮胎电感线圈嵌入到轮胎中。 导致轮胎变形的轮胎状况导致轮胎电感线圈的变形。 通过获取对应于导致轮胎变形的轮胎状况的感应响应的轮胎线圈响应测量,从而轮胎电感线圈的变形,可以监视轮胎状况(例如压力,速度,损坏或劣化),然后 将轮胎线圈响应转换成表示轮胎状况的数据。 可以将多个周向轮胎电感线圈嵌入(例如到胎面和/或侧壁中),使得轮胎监测可以包括获取对应于轮胎状况的相应的轮胎线圈响应,所述轮胎状况导致差的轮胎线圈响应(例如转向方向), 可以转换为表示轮胎状况的数据。
    • 27. 发明授权
    • Capacitive sensing apparatus and methods
    • 电容式感测装置及方法
    • US09489093B2
    • 2016-11-08
    • US14300757
    • 2014-06-10
    • Texas Instruments Deutschland GmbH
    • Kai Gossner
    • G06F3/045G06F3/044G06F3/041
    • G06F3/0418G06F3/044
    • One or more waveform generators impose an input waveform across touch sensor components. Phase shift detection logic measures a phase shift between the input waveform and an output waveform component associated with each waveform generator appearing across a touch sensor component. Amplitude ratio detection logic measures an output-to-input waveform magnitude ratio associated with each waveform generator. Translator logic converts the phase shift(s) and optionally the output-to-input waveform magnitude ratio(s) to capacitance values. Validation logic compares the resulting capacitance values to each other to determine consistency and validity during a particular waveform sampling time. The phase shift detection logic and the amplitude ratio detection logic are optionally implemented with discrete Fourier transform logic which includes narrow-band filtering to exclude electromagnetic interference frequency components from touch sensor signal measurements.
    • 一个或多个波形发生器在触摸传感器组件上施加输入波形。 相移检测逻辑测量输入波形与与触摸传感器组件之间出现的每个波形发生器相关联的输出波形分量之间的相移。 幅度比检测逻辑测量与每个波形发生器相关联的输出到输入波形幅度比。 转换器逻辑将相移和可选的输出到输入波形幅度比(s)转换为电容值。 验证逻辑将得到的电容值彼此进行比较,以确定特定波形采样时间内的一致性和有效性。 相移检测逻辑和幅度比检测逻辑可选地由离散傅里叶变换逻辑实现,其包括窄带滤波以从触摸传感器信号测量中排除电磁干扰频率分量。
    • 30. 发明授权
    • System and method for single phase transition for multiphase DCDC converters
    • 多相DCDC转换器的单相转换系统和方法
    • US09401638B2
    • 2016-07-26
    • US14517721
    • 2014-10-17
    • Texas Instruments Deutschland GmbH
    • Erich BayerJoerg KirchnerMichael Lueders
    • H02M1/00H02M3/158H02M3/156H02M1/08G06F1/26H02J1/10
    • H02M3/156G06F1/26H02J1/102H02M1/08H02M3/1584
    • A DCDC converter includes a controller, an up/down counter, a first power stage and a second power stage. The controller generates an up/down control signal. The up/down counter generates a first power stage control signal and a second power stage control signal based on the up/down control signal. The first power stage generates a first output current at a first phase and at a first voltage based on the first power stage control signal. The second power stage generates a second output current at a second phase based on the second power stage control signal. The up/down counter modifies the first power stage control signal to control the first power stage such that the first output current attenuates from a first power stage output to a secondary first power stage output. The controller can further output a control signal to modify the first voltage of the first power stage.
    • DCDC转换器包括控制器,上/下计数器,第一功率级和第二功率级。 控制器产生一个上/下控制信号。 上/下计数器基于上/下控制信号产生第一功率级控制信号和第二功率级控制信号。 第一功率级基于第一功率级控制信号在第一相和第一电压产生第一输出电流。 第二功率级基于第二功率级控制信号在第二相产生第二输出电流。 上/下计数器修改第一功率级控制信号以控制第一功率级,使得第一输出电流从第一功率级输出衰减到次级第一功率级输出。 控制器还可输出控制信号以修改第一功率级的第一电压。