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Voltage mode driver for low power transmission of high speed serial AER links

机译:电压模式驱动器,用于高速串行AER链路的低功率传输

摘要

This paper presents a voltage-mode high speed driver to transmit serial AER data in scalable multi-chip AER systems. To take advantage of the asynchronous nature of AER (Address Event Representation) streams, this implementation allows an energy efficient burst-mode operation. This is achieved by switching on/off the driver in data pauses to reduce static power consumption. Impedance matching is calibrated continuously to track temperature variations, obtaining an optimal performance without degrading the data rate. Power management techniques for switching drivers are discussed and an internally compensated high speed regulator is presented. The system has been designed in a 0.35¿m CMOS technology to transmit data rates up to 500Mbps using Manchester enconding. Layout extracted simulation results are presented, which include all interconnect parasitics. Estimated peak rate is 15Meps for 32 bit events. Simulated power consumption of transmitter and receiver at peak rate is 33.2mW, while below 100 Keps is 1.3mW.
机译:本文提出了一种电压模式高速驱动器,用于在可扩展的多芯片AER系统中传输串行AER数据。为了利用AER(地址事件表示)流的异步特性,此实现可实现节能的突发模式操作。这可以通过在数据暂停中打开/关闭驱动器以减少静态功耗来实现。连续校准阻抗匹配以跟踪温度变化,从而在不降低数据速率的情况下获得最佳性能。讨论了用于开关驱动器的电源管理技术,并提出了内部补偿的高速调节器。该系统采用0.35?m CMOS技术进行设计,可使用曼彻斯特编码传输高达500Mbps的数据速率。给出了布局提取的仿真结果,其中包括所有互连寄生因素。对于32位事件,估计峰值速率为15Meps。发射器和接收器在峰值速率下的模拟功耗为33.2mW,而低于100 Keps的模拟功耗为1.3mW。

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