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Current/Voltage Dual-Mode Single-Wire Simultaneous Bidirectional Interface Architecture for Sensor System

机译:传感器系统的电流/电压双模单线同时双向接口架构

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This paper presents a simultaneous bidirectional asymmetrical serial interface architecture for sensor systems. The proposed current/voltage dual-mode signaling scheme provides system synchronous clock and continuous data transmission between sensor integrated circuit (IC) and system-on-a-chip (SoC) using a single wire, which minimizes pin requirements on packages. Two types of transceiver circuits were implemented in a 65 nm CMOS technology for the sensor IC and the SoC, and they were designed for transmission rates of 1 Mb/s and 250 Kb/s, core areas of 0.008 mm(2) and 0.142 mm(2), and power consumptions of 7.1 mu W and 145.8 mu W, respectively. The transceiver circuit for the sensor IC was also applied to a monolithic PPG sensor implemented in 180 nm CMOS, and the acquisition and transmission of PPG sensor data with the transceiver for the SoC, implemented in 65 nm, was successfully achieved.
机译:本文介绍了传感器系统的同时双向不对称串行接口架构。所提出的电流/电压双模信令方案使用单线提供传感器集成电路(IC)和芯片系统(SOC)之间的系统同步时钟和连续数据传输,从而最大限度地减少了封装上的引脚要求。用于传感器IC和SOC的65nm CMOS技术中实现了两种类型的收发器电路,它们设计用于1 MB / s和250 kb / s,核心区域为0.008mm(2)和0.142 mm的传输速率(2),分别为7.1μW和145.8μW的功耗。传感器IC的收发器电路也应用于在180nm CMOS中实现的单片PPG传感器,并且成功地实现了在65nm中实现的用于SOC的收发器的PPG传感器数据的获取和传输。

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