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"Time borrowing" technique for design of low-power high-speed multi-modulus prescaler in frequency synthesizer., , , и . ISCAS, стр. 1004-1007. IEEE, (2008)Current Mode Feed-Forward Gain Control for 0.8V CMOS hearing aid., , , и . ISCAS, стр. 793-796. IEEE, (2011)A highly-integrated wireless configuration circuit for FPGA chip., , , и . ISIC, стр. 260-263. IEEE, (2014)A 5.8-GHz Wideband TSPC Divide-by-16/17 Dual Modulus Prescaler., , , , , , и . IEEE Trans. Very Large Scale Integr. Syst., 23 (1): 194-197 (2015)A High Energy-Efficiency FPGA-Based LSTM Accelerator Architecture Design by Structured Pruning and Normalized Linear Quantization., , , , и . FPT, стр. 271-274. IEEE, (2019)A pH-ISFET Based Micro Sensor System on Chip Using Standard CMOS Technology., , , , , , и . IWSOC, стр. 180-183. IEEE Computer Society, (2005)A -115dB PSRR CMOS bandgap reference with a novel voltage self-regulating technique., , , , , и . CICC, стр. 1-4. IEEE, (2014)Revisiting and-inverter cones., , , , , , и . FPGA, стр. 45-54. ACM, (2014)A TIA-based readout circuit with temperature compensation for MEMS capacitive gyroscope., , , , и . NEMS, стр. 401-405. IEEE, (2011)Size aware placement for island style FPGAs., , , , и . FPT, стр. 28-35. IEEE, (2014)