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IEEE Std. P1687.1: Translator and Protocol

机译:IEEE标准P1687.1:转换器和协议

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The IEEE Std. P1687.1 working group is currently exploring alternatives to IEEE Std. 1149.1 test access port (TAP) as the interface between the boundary of integrated circuits (ICs) and IEEE Std. 1687 networks. In this paper, we investigate the use of universal asynchronous receiver-transmitter (UART) to access IEEE Std. 1687 networks. We have developed a protocol to describe the information transported over UART and a hardware component to translate (retarget) information between UART and IEEE Std. 1687. The objective is to minimize the amount of information transported over UART and the area of the hardware component while maintaining the flexibility to access an arbitrary combination of instrument in the IEEE Std. 1687 network. We have developed software for the protocol translation, implemented the hardware component and IEEE Std. 1687 networks of different sizes in an field-programmable gate array (FPGA). For comparison, we developed a number of alternatives, all implemented on FPGA. The experimental results show that proposed scheme gives low overhead in terms of transported information (data) and low area of the hardware component.
机译:IEEE标准P1687.1工作组目前正在探索IEEE标准的替代方案。 1149.1测试访问端口(TAP)作为集成电路(IC)与IEEE标准之间的接口。 1687个网络。在本文中,我们研究了使用通用异步收发器(UART)来访问IEEE Std。 1687个网络。我们已经开发出一种协议来描述通过UART传输的信息,并开发了一种硬件组件来在UART和IEEE Std之间转换(重定向)信息。 1687.目的是最大程度地减少通过UART传输的信息量和硬件组件的面积,同时保持访问IEEE Std中任意仪器组合的灵活性。 1687网络。我们开发了用于协议转换的软件,实现了硬件组件和IEEE Std。现场可编程门阵列(FPGA)中的1687个不同大小的网络。为了进行比较,我们开发了许多替代方案,全部在FPGA上实现。实验结果表明,该方案在传输信息(数据)和减少硬件组件的面积方面具有较低的开销。

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