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40V High Side PSI5 Transceiver with

机译:40V高端PSI5收发器,具有

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摘要

Controlling ElectroMagnetic Interference (EMI) is critical in analog circuits. Specifically in transceivers high slew rates of voltages and currents can interfere with other nearby electronics. On one such emerging automotive standard viz. the Peripheral Sensor Interface (PSI5), the electromagnetic emission from the SYNC pulse generated by the PSI5 transceiver can interfere during communication with the sensor. Known techniques of adding external filters or using Spread Spectrum methods to reduce EMI are not applicable due to cost over head and strict timing requirements. Hence a digitally assisted pulse shaping technique to generate a SYNC pulse with different slopes along with an induced analog ramp at the start of the SYNC pulse to meet timing requirement is proposed in order to reduce the EMI. BiCMOS process is the best choice for speed, accuracy and protection at 40V. This design is implemented and successfully validated on a 40V BiCMOS process. The conducted emission limit is 65dBμV at 200KHz, fully operational for 6V to 40V battery and 100mA current limitation during short to ground conditions at the output.
机译:控制电磁干扰(EMI)在模拟电路中至关重要。特别是在收发器中,高的电压和电流摆率会干扰附近的其他电子设备。在这样一种新兴的汽车标准上。在外围传感器接口(PSI5)中,PSI5收发器产生的SYNC脉冲产生的电磁辐射会在与传感器通信期间产生干扰。由于开销成本和严格的时序要求,添加外部滤波器或使用扩频方法降低EMI的已知技术不适用。因此,为了减少EMI,提出了一种数字辅助脉冲整形技术,以产生具有不同斜率的SYNC脉冲,以及在SYNC脉冲的开始处产生感应的模拟斜坡,以满足时序要求。 BiCMOS工艺是40V时实现速度,精度和保护的最佳选择。此设计已在40V BiCMOS工艺上实现并成功验证。在200KHz时,传导发射限值为65dBμV,可在6V至40V电池条件下完全工作,并且在输出端对地短路的情况下电流限制为100mA。

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