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This paper presents a low power, long-transmission distance, high data rate intrabody communication (IBC) analog receiver front end (RFE). First, to optimize the transmission performance, conventional transmission line analysis scheme is creatively adopted to the IBC design to characterize the body channel. Second, switched-capacitor filters based on sampling rate boosting technique are adopted for...
This paper presented a novel IntraBody Communication Receiver Front End (RFE) based on switched capacitor filter scheme with proposed sampling rate boosting technique. New technique aims to increase the oversampling ratio without rising system clock frequency to enhance the transmission performance. In this work, specifically, sampling rate is boosted 4 times with 50MHz system clock, which can reach...
This paper presents an IntraBody Communication (IBC) based receiver front end module design. By introducing Binary Signal Recovery (BSR) module with Blind Oversampling Clock and Data Recovery (BOCDR) synchronization technique, the proposed receiver achieves data speed-2.5Mb/s and transmission distance-170cm with 1.84e-6 Bit Error Rate (BER). In the proposed IBC receiver, distorted and noisy signal...
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