首页> 外文会议>IEEE Custom Integrated Circuits Conference >A 7×7×2mm3 8.6-μ 500-kb/s Transmitter with Robust Injection-Locking Based Frequency-to-Amplitude Conversion Receiver Targeting for Implantable Applications
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A 7×7×2mm3 8.6-μ 500-kb/s Transmitter with Robust Injection-Locking Based Frequency-to-Amplitude Conversion Receiver Targeting for Implantable Applications

机译:一种7×7×2mm 3 8.6μ500kb / s发射机,具有基于稳健的注入锁定的频幅转换接收器,适用于植入式应用

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This paper presents the first transmitter (TX)/receiver (RX) pair using galvanic coupling to achieve Inbody to On-body Body Channel Communication (I2O-BCC) for ultra-low power (ULP) miniaturized implanted applications. The measured channel loss characteristic is smaller than 40dB within 10 ~ 40 MHz band when the implanted depth is no more than 10cm. Injection locking (IL) based frequency-to-amplitude (F2A) conversion demodulator is proposed in RX to handle large frequency variations of TX FSK signals due to the lack of off-chip reference. The implanted TX only requires two off-chip components, micro battery and tiny probes, achieving packaged size of 7×7×2 mm3. The in-body TX consumes only 8.6 μW at 500 kb/s while the on-body RX consumes 591.5 μW. The TX power are 8× lower than previous works and achieves energy efficiency at 17.2pJ/b with minimal bill of material (BOM).
机译:本文介绍了第一对采用电流耦合的发射器(TX)/接收器(RX)对,以实现超低功耗(ULP)小型化植入应用的体内到体外通道通信(I2O-BCC)。当植入深度不超过10cm时,测得的通道损耗特性在10〜40 MHz频带内小于40dB。在RX中提出了基于注入锁定(IL)的频率-幅度(F2A)转换解调器,以处理由于缺乏片外基准而导致TX FSK信号的较大频率变化。植入的TX仅需要两个片外组件,微型电池和微型探针,实现了7×7×2 mm的封装尺寸 3 。体内TX在500 kb / s时仅消耗8.6μW,而体内RX则消耗591.5μW。 TX功率比以前的工作低8倍,并以最小的物料清单(BOM)达到了17.2pJ / b的能效。

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