Abstract:
An apparatus for generating an output voltage signal based on an input voltage signal. The apparatus includes a first field effect transistor (FET) including a first gate configured to receive a first gate voltage based on the input voltage signal; a second (FET) including a second gate configured to receive a second gate voltage based on the input voltage signal, wherein the first and second FETs are coupled in series between a first voltage rail and a second voltage rail, and wherein the output voltage signal is produced at an output node between the first and second FETs; and a gate overdrive circuit configured to temporarily reduce the first gate voltage during a portion of a transition of the output voltage signal from a logic low level to a logic high level.
Abstract:
In a particular embodiment, a method includes modifying an output impedance associated with the input receiver. In response to modifying the output impedance, the method restricts an output voltage at an output node of the input receiver. Particular embodiments of an input receiver circuit are also disclosed.
Abstract:
An input receiver for stepping down a high-voltage domain input signal into a low-voltage-domain stepped-down signal includes a waveform chopper. The waveform chopper chops the high-voltage domain input signal into a first chopped signal and a second chopped signal. A high-voltage-domain receiver combines the first chopped signal and the second chopped signal into a high-voltage-domain combined signal. A step-down device converts the high-voltage-domain combined signal into a stepped-down low-voltage-domain signal.
Abstract:
An input/output (I/O) driver is disclosed that employs a compensation circuit to limit the voltages across devices of the driver from exceeding a defined threshold to allow lower voltage devices to implement the operation of the driver. In particular, the driver employs a pull-up circuit including first and second switching devices coupled between a first voltage rail and an output of the driver. The driver employs a pull-down circuit including third and fourth switching devices coupled between the output and a second voltage rail. The I/O driver employs a compensation circuit configured to apply a compensation voltage to the node between the first and second switching devices and to the node between the third and fourth switching devices at the appropriate times to maintain the respective voltages across the second and third switching devices at or below a defined threshold, such as a reliability limit, during the operation of the driver.
Abstract translation:公开了一种输入/输出(I / O)驱动器,其采用补偿电路来限制驱动器的器件之间的电压超过限定的阈值,以允许较低电压的器件实现驱动器的操作。 特别地,驱动器采用包括耦合在第一电压轨和驱动器的输出之间的第一和第二开关器件的上拉电路。 驱动器采用包括耦合在输出端和第二电压轨道之间的第三和第四开关器件的下拉电路。 I / O驱动器采用补偿电路,其被配置为在适当的时间向第一和第二开关器件之间的节点和第三和第四开关器件之间的节点施加补偿电压,以保持跨越第二和第三开关器件的相应电压 在驾驶员的操作期间,切换设备处于或低于定义的阈值,例如可靠性限制。