首页> 外文会议>Quality Electronic Design (ISQED), 2010 >Optimizing power and throughput for m-out-of-n encoded asynchronous circuits
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Optimizing power and throughput for m-out-of-n encoded asynchronous circuits

机译:为n出n编码的异步电路优化功率和吞吐量

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The m-out-of-n encoded asynchronous circuits are able to implement the truly delay-insensitive circuit operations, but they suffer from higher power dissipation due to the large amount of logic cells. Besides, the throughput of the circuits is also worse than the synchronous counterparts since the four-cycle handshake protocol requires inserting a ¿NULL¿ token between two adjacent valid data transmissions. In this paper, we first propose a power gating technique to reduce the leakage power consumption in the idle phase, then figure out a replication method to improve the throughput at the cost of area increase. The evaluation results show that about 85% of leakage power reduction can be obtained when the power gating scheme is employed, and 62% of throughput improvement can be acquired nearly without additional power penalty when both proposals are integrated.
机译:n个编码中的m个编码异步电路能够实现真正对延迟不敏感的电路操作,但是由于逻辑单元数量众多,它们遭受了更高的功耗。此外,由于四周期握手协议要求在两个相邻的有效数据传输之间插入一个ÃÂ,,NULLƒ,,,令牌,因此电路的吞吐量也比同步对象差。在本文中,我们首先提出一种功率门控技术,以减少空闲阶段的泄漏功耗,然后提出一种复制方法,以增加面积为代价来提高吞吐量。评估结果表明,当采用功率门控方案时,可以获得约85%的泄漏功率降低;当将这两种方案整合在一起时,几乎可以实现62%的吞吐量提高而没有额外的功率损失。

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