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A 12-Gb/s -16.8-dBm OMA Sensitivity 23-mW Optical Receiver in 65-nm CMOS.

, , , , , , and . IEEE J. Solid State Circuits, 53 (2): 445-457 (2018)

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A 12-Gb/s -16.8-dBm OMA Sensitivity 23-mW Optical Receiver in 65-nm CMOS., , , , , , and . IEEE J. Solid State Circuits, 53 (2): 445-457 (2018)Compute SNR-boosted 22 nm MRAM-based In-memory Computing Macro using Statistical Error Compensation., , , , , , , and . ESSCIRC, page 25-28. IEEE, (2023)A Low-Noise Frequency Synthesizer Using Multiphase Generation and Combining Techniques., , , , and . IEEE J. Solid State Circuits, 55 (3): 592-601 (2020)A 32-MHz, 34-μW Temperature-Compensated RC Oscillator Using Pulse Density Modulated Resistors., , , , and . IEEE J. Solid State Circuits, 57 (5): 1470-1479 (2022)A 5GHz 370fsrms 6.5mW clock multiplier using a crystal-oscillator frequency quadrupler in 65nm CMOS., , , , , and . ISSCC, page 392-394. IEEE, (2018)A 20µs turn-on time, 24kHz resolution, 1.5-100MHz digitally programmable temperature-compensated clock generator with 7.5ppm/°C inaccuracy., , , , , , , , and . CICC, page 1-2. IEEE, (2022)A 54MHz Crystal Oscillator With 30× 18.5 Start-Up Time Reduction Using 2-Step Injection in 65nm CMOS., , , , , , and . ISSCC, page 302-304. IEEE, (2019)A Fast Startup CMOS Crystal Oscillator Using Two-Step Injection., , , , , , and . IEEE J. Solid State Circuits, 54 (12): 3257-3268 (2019)Design of Crystal-Oscillator Frequency Quadrupler for Low-Jitter Clock Multipliers., , , , and . IEEE J. Solid State Circuits, 54 (1): 65-74 (2019)A 20-μs Turn-On Time, 24-kHz Resolution, 1.5-100-MHz Digitally Programmable Temperature-Compensated Clock Generator., , , , , , , , and . IEEE J. Solid State Circuits, 58 (3): 785-795 (March 2023)