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An energy-efficient baseband transmitter design for implantable biotelemetry applications

机译:用于植入式生物遥测应用的高能效基带发射机设计

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Design of implantable wireless telemetry is challenging due to strictly-limited allowable power budgets. The design of wireless prototypes becomes even more challenging due to the need for rice-grain-sized autonomous devices with enhanced useful life. This paper elaborates on the design and implementation of a second-generation prototype of a baseband (BB) transmitter (TX) proposed for use in next-generation body area networks (BANs), with an implementation targeted in TSMC's 65 nm Complementary Metal-Oxide Semiconductor (CMOS) process. The proposed BB TX utilizes a preamble-based asynchronous packet transmission methodology that can potentially meet the energy-efficiency demands of next-generation BANs (below 500pJ/bit). A comparison of the implemented integrated circuit (IC) with the first-generation prototype reveals an improvement of 88% in power consumption. The proposed design requires 1.3mW of power at a supply voltage of 0.9V with an energy efficiency of 144pJ/bit.
机译:由于严格限制了可允许的功率预算,因此植入式无线遥测的设计具有挑战性。由于需要使用寿命更长的米粒大小的自主设备,因此无线原型的设计变得更具挑战性。本文详细介绍了设计用于下一代人体局域网(BAN)的第二代基带(BB)发射器(TX)的设计和实现,其实现目标是台积电(TSMC)的65 nm互补金属氧化物半导体(CMOS)工艺。拟议的BB TX利用基于前同步码的异步数据包传输方法,可以潜在地满足下一代BAN(低于500pJ / bit)的能效要求。将已实现的集成电路(IC)与第一代原型进行比较,结果表明功耗降低了88%。拟议的设计在0.9V的电源电压下需要1.3mW的功率,而能量效率为144pJ / bit。

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