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    • 1. 发明授权
    • Precision temperature sensor
    • 精密温度传感器
    • US07914205B2
    • 2011-03-29
    • US12351673
    • 2009-01-09
    • Giovanni Galli
    • Giovanni Galli
    • G01K7/01G01K7/14
    • G01K7/015
    • A temperature sensor circuit in accordance with an embodiment of the present invention includes a temperature sensing element operable to provide a temperature voltage that is linearly related to the absolute temperature of the circuit. The temperature sensing element includes a first bi-polar junction transistor and a second bipolar junction transistor connected between a supply voltage and a common ground, wherein the base of first bipolar junction transistor is connected to the base of the second bipolar junction transistor, a first resistor connected between an emitter of the first bipolar junction transistor and the common ground and a second resistor connected between the common ground and a first node, wherein the temperature voltage is provided to the first node across the second resistor. The temperature sensor circuit also includes a current supply element operable to supply a common current to a collector of the first bipolar junction transistor, the second bipolar junction transistor and to the second resistor, respectively, an early voltage element operable to compensate for variations in voltage, a base current element operable to provide a steady base current to the bases of the first and second bipolar junction transistors, a channel modulation element operable to compensate for channel modulation and a leakage element operable to compensate for epi-substrate leakage between the circuit and a substrate on which it is formed.
    • 根据本发明的实施例的温度传感器电路包括温度感测元件,其可操作以提供与电路的绝对温度线性相关的温度电压。 温度感测元件包括连接在电源电压和公共地之间的第一双极结晶体管和第二双极结晶体管,其中第一双极结晶体管的基极连接到第二双极结晶体管的基极,第一 连接在第一双极结型晶体管的发射极和公共地之间的电阻器和连接在公共地与第一节点之间的第二电阻器,其中温度电压通过第二电阻器提供给第一节点。 温度传感器电路还包括电流源元件,其可操作以分别向第一双极结型晶体管,第二双极结型晶体管和第二电阻器的集电极提供公共电流,该电压元件可用于补偿电压变化 基极电流元件,其可操作以向所述第一和第二双极结晶体管的基极提供稳定的基极电流;沟道调制元件,其可操作以补偿沟道调制;以及泄漏元件,其可操作以补偿所述电路和 其上形成有基底。
    • 4. 发明授权
    • Safety interlock and protection circuit for permanent magnet motor drive
    • 永磁电机驱动安全联锁和保护电路
    • US07227331B2
    • 2007-06-05
    • US11352719
    • 2006-02-13
    • Giovanni GalliToshio Takahashi
    • Giovanni GalliToshio Takahashi
    • H02P3/00
    • D06F37/42H02P25/024H02P29/0241
    • A circuit for protecting against controller failure wherein the controller provides control signals for controlling a DC to AC inverter fed by a DC bus and driving a permanent magnet motor, the circuit comprising a first circuit for monitoring the DC bus voltage and, in the event the DC bus voltage exceeds a first threshold due to a counter EMF generated by the motor, for producing a signal to the controller to provide a switch state to the inverter whereby the counter EMF is dissipated substantially in a motor circuit resistance of the permanent magnet motor as a result of a short circuit condition provided by the switch state of the inverter, thereby preventing the DC bus voltage of the inverter from exceeding the first threshold and causing the permanent magnet motor speed to be reduced.
    • 一种用于防止控制器故障的电路,其中所述控制器提供用于控制由DC总线馈送的DC到AC逆变器并驱动永磁电动机的控制信号,所述电路包括用于监视DC总线电压的第一电路, 直流母线电压由于电动机产生的反电动势而超过第一阈值,用于向控制器产生信号以向变频器提供开关状态,从而使逆电动势基本上以永磁电动机的电动机回路电阻耗散 是由逆变器的开关状态提供的短路状态的结果,从而防止逆变器的直流母线电压超过第一阈值,并且使永磁电动机的速度降低。
    • 9. 发明授权
    • Accurate active termination device
    • 准确的有源终端设备
    • US06297664B1
    • 2001-10-02
    • US09430357
    • 1999-10-28
    • Giovanni Galli
    • Giovanni Galli
    • H03K1716
    • G06F13/4086
    • An active precision termination of the type incorporated in a voltage regulator for feeding the lines of an external bus is presented. Each termination includes a matching impedance connected in series to a switch formed by a MOS transistor, including a cell formed by a plurality of circuit branches provided in parallel and coupled to a unique output terminal. Each branch includes an input coupled to the series of the impedance and of the switch and receiving a control voltage signal. The body terminal of each MOS transistor receives a corresponding control signal via an inverter, whereas the control terminal of each MOS transistor receives a corresponding control voltage signal.
    • 提出了并入用于馈送外部总线的线路的电压调节器中的类型的主动精密终端。 每个终端包括与由MOS晶体管形成的开关串联连接的匹配阻抗,该MOS晶体管包括由并联设置并耦合到唯一输出端子的多个电路支路形成的单元。 每个分支包括耦合到一系列阻抗和开关的输入端并接收控制电压信号。 每个MOS晶体管的主体端子经由反相器接收相应的控制信号,而每个MOS晶体管的控制端子接收相应的控制电压信号。
    • 10. 发明授权
    • Protection circuit for power transistor
    • 功率晶体管保护电路
    • US06259297B1
    • 2001-07-10
    • US09304709
    • 1999-05-04
    • Giovanni Galli
    • Giovanni Galli
    • H03K508
    • H03F1/52H03K17/0826
    • A protection circuit is disclosed for a bipolar power transistor for preventing the operating point thereof from leaving a useful operating area. The protection circuit includes a sense resistor connected between an input supply voltage and a collector of the bipolar power transistor; a first branch circuit, including a first diode connected to the collector of the bipolar power transistor and a first current source connected between a common output node and the first diode; a second branch circuit, including a second diode and a second current source connected between the second diode and the common output node; and a third branch circuit. A short-circuit current level of the bipolar power transistor at relatively low voltage levels of the input supply voltage is based upon current levels for the first current source and the second current source and a resistance value of the sense resistor connected to the bipolar power transistor. The protection circuit further includes a fourth circuit branch including a current mirror connected to the common output node and a third current source connected between the input supply voltage and the current mirror. A short-circuit current level of the bipolar power transistor at relatively high voltage levels of the input supply voltage is substantially equal to the current level of the third current source.
    • 公开了一种用于防止其工作点离开有用操作区域的双极功率晶体管的保护电路。 保护电路包括连接在双极性功率晶体管的输入电源电压和集电极之间的感测电阻器; 第一分支电路,包括连接到双极功率晶体管的集电极的第一二极管和连接在公共输出节点和第一二极管之间的第一电流源; 第二分支电路,包括连接在第二二极管和公共输出节点之间的第二二极管和第二电流源; 和第三分支电路。 在输入电源电压的相对低的电压电平下,双极性功率晶体管的短路电流水平基于第一电流源和第二电流源的电流水平,以及连接到双极功率晶体管的检测电阻器的电阻值 。 保护电路还包括第四电路分支,其包括连接到公共输出节点的电流镜和连接在输入电源电压和电流镜之间的第三电流源。 在输入电源电压的较高电压电平下,双极性功率晶体管的短路电流电平基本上等于第三电流源的电流电平。