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A Load-Insensitive Hybrid LSK Back Telemetry System With Slope-Based Demodulation for Inductively Powered Biomedical Devices
- Lee, Hyun-Su;
- Ahn, Jisan;
- Kang, Minil;
- Lee, Hyung-Min
WEB OF SCIENCE
23SCOPUS
25초록
This paper presents a hybrid load-shift keying (LSK) modulation for a load-insensitive back telemetry system to realize near-constant voltage changes in a primary coil (L-1) against a wide range of load variations. The hybrid-LSK-enabled full-wave rectifier enables the sequential combination of open- and short-coil functions for hybrid-LSK modulation in addition to wireless power conversion operation. Load-insensitive L-1 voltage changes can be demodulated using the proposed slope- based demodulator, which utilizes the threshold slope of L-1 voltage changes over the back data pulse width, enabling robust data recovery regardless of the load conditions. The 0.56-mm(2) 0.18-mu m standard CMOS hybrid-LSK prototype demonstrated that the variation of L-1 voltage changes could be minimized to 60 mV under load changes between 50 omega and 50 k omega at coil separation distance of 10 mm, achieving 88.2% reduction compared to the conventional short-coil LSK with 510 mV variation. The proposed back telemetry system also achieved a bit error rate (BER) of < 9.1 x 10(-10) under load ranges from 50 omega to 50 k omega and data rate of 1 Mbps, ensuring reliable back data recovery against load variations.
키워드
- 제목
- A Load-Insensitive Hybrid LSK Back Telemetry System With Slope-Based Demodulation for Inductively Powered Biomedical Devices
- 저자
- Lee, Hyun-Su; Ahn, Jisan; Kang, Minil; Lee, Hyung-Min
- 발행일
- 2022-08
- 유형
- Article
- 권
- 16
- 호
- 4
- 페이지
- 651 ~ 663