采用带有太阳能电池的0.3V 2MW粗粒度可重构加速器CMA-SOTB进行图像处理

Yu Fujita, K. Masuyama, H. Amano
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引用次数: 1

摘要

超薄硅片阵列(CMA-SOTB)是一种极低功耗的粗粒度可重构加速器。它是通过使用日本国家项目,低功耗电子协会和项目(LEAP)开发的SOTB技术实现的。充分利用这种器件和低能耗架构技术,CMA-SOTB在小于0.3V电源电压下工作在25MHz以上时钟。通过单独控制PE阵列和微控制器的体偏置电压,可以实现各种优化。使用CMA-SOTB的演示首先表明,一个简单的图像处理应用程序可以在0.25V-0.4V太阳能电池上工作。然后演示了通过改变本体偏压来控制泄漏功率的方法。在待机模式下,通过使用强反向偏压,功耗小于20μW。
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Image processing by A 0.3V 2MW coarse-grained reconfigurable accelerator CMA-SOTB with a solar battery
Cool mega array with silicon on thin box (CMA-SOTB) is an extremely low power coarse grained reconfigurable accelerator. It was implemented by using the SOTB technology developed by a Japanese national project, low-power electronics association & project (LEAP). Making the best use of such a device and low energy architectural techniques, CMA-SOTB works more than 25MHz clock with less than 0.3V supply voltage. Various kind of optimization can be done by controlling the body bias voltage for PE array and micro-controller independently. The demonstration using CMA-SOTB first shows that a simple image processing application can work with a 0.25V-0.4V solar battery. Then the leakage power control by changing the body bias is demonstrated. In the stand-by mode, less than 20μW power is consumed by using strong reverse bias.
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