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A 1.5 ns OFF/ON switching-time voltage-mode lvds driver/receiver pair for asynchronous AER bit-serial chip grid links with up to 40 times event-rate dependent power savings

机译:1.5 ns OFF / ON开关时间电压模式lvds驱动器/接收器对,用于异步AER位串行芯片网格链接,可节省多达40倍的事件速率相关功耗

摘要

This paper presents a low power fast ON/OFF switchable voltage mode implementation of a driver/receiver pair intended to be used in high speed bit-serial Low Voltage Differential Signaling (LVDS) Address Event Representation (AER) chip grids, where short (like 32-bit) sparse data packages are transmitted. Voltage-Mode drivers require intrinsically half the power of their Current-Mode counterparts and do not require Common-Mode Voltage Control. However, for fast ON/OFF switching a special high-speed voltage regulator is required which needs to be kept ON during data pauses, and hence its power consumption must be minimized, resulting in tight design constraints. A proof-of-concept chip test prototype has been designed and fabricated in low-cost standard 0.35 μ m CMOS. At 500 mV voltage swing with 500 Mbps serial bit rate and 32 bit events, current consumption scales from 15.9 mA (7.7 mA for the driver and 8.2 mA for the receiver) at 10 Mevent/s rate to 406 μ A ( 343 ,μ A for the driver and 62.5 μA for the receiver) for an event rate below 10 Kevent/s, therefore achieving a rate dependent power saving of up to 40 times, while keeping switching times at 1.5 ns. Maximum achievable event rate was 13.7 Meps at 638 Mbps serial bit rate. Additionally, differential voltage swing is tunable, thus allowing further power reductions. © 2007-2012 IEEE.
机译:本文提出了一种驱动器/接收器对的低功耗快速ON / OFF可切换电压模式实现,旨在用于高速位串行低电压差分信号(LVDS)地址事件表示(AER)芯片网格中,其中短(例如传输32位稀疏数据包。电压模式驱动器本质上只需要电流模式驱动器一半的功率,并且不需要共模电压控制。但是,为了快速进行开/关切换,需要使用特殊的高速稳压器,该稳压器在数据暂停期间必须保持接通状态,因此必须将其功耗降至最低,从而导致严格的设计约束。概念验证芯片测试原型已经在低成本标准0.35μmCMOS中设计和制造。在500 mV电压摆幅和500 Mbps串行位速率和32位事件的情况下,电流消耗从10 Mevent / s速率的15.9 mA(驱动器为7.7 mA,接收器为8.2 mA)到406μA(343 ,μ)对于低于10 Kevent / s的事件速率,驱动器为A,接收器为62.5μA),因此实现了与速率有关的功耗节省多达40倍,同时将切换时间保持在1.5 ns。在638 Mbps串行位速率下,最大可达到的事件速率为13.7 Meps。此外,差分电压摆幅是可调的,因此可以进一步降低功耗。 ©2007-2012 IEEE。

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