Marco Ho, Ph.D.

Affiliations: 
2013 The Chinese University of Hong Kong, Hong Kong, Hong Kong 
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"Marco Ho"

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K. S. Leung grad student 2013 Chinese University of Hong Kong
 (Development of Low-Power High-Accuracy Ultrafast-Transient-Response Low-Dropout Regulators for Battery-Powered Applications.)
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Publications

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Wang Z, Chen B, Zhu L, et al. (2018) A 3.3-MHz fast-response load-dependent-on/off-time buck-boost DC-DC converter with low-noise hybrid full-wave current sensor Microelectronics Journal. 74: 1-12
Ho M, Guo J, Mui TW, et al. (2016) A Two-Stage Large-Capacitive-Load Amplifier With Multiple Cross-Coupled Small-Gain Stages Ieee Transactions On Very Large Scale Integration (Vlsi) Systems
Zheng Y, Ho M, Guo J, et al. (2016) A Single-Inductor Multiple-Output Auto-Buck-Boost DC-DC Converter With Tail-Current Control Ieee Transactions On Power Electronics. 31: 7857-7875
Ho M, Guo J, Mak KH, et al. (2016) A CMOS Low-Dropout Regulator with Dominant-Pole Substitution Ieee Transactions On Power Electronics. 31: 6362-6371
Zheng Y, Ho M, Guo J, et al. (2016) A single-inductor multiple-output auto-buck-boost DC-DC converter with autophase allocation Ieee Transactions On Power Electronics. 31: 2296-2313
Guo J, Ho M, Leung KN, et al. (2016) Digitally-assisted constant-on-time dynamic-biasing technique for bandwidth and slew-rate enhancement in ultra-low-power low-dropout regulator International Journal of Circuit Theory and Applications. 44: 504-513
Mak KH, Lau MW, Guo J, et al. (2015) A [Formula: see text] [Formula: see text] Hybrid OTA Driving 15 nF Capacitive Load With 1.46 MHz GBW Ieee Journal of Solid-State Circuits
Guo J, Ho M, Kwong KY, et al. (2015) Power-area-efficient transient-improved capacitor-free FVF-LDO with digital detecting technique Electronics Letters. 51: 94-96
Mui TW, Ho M, Mak KH, et al. (2014) An Area-Efficient 96.5%-Peak-Efficiency Cross-Coupled Voltage Doubler With Minimum Supply of 0.8 V Ieee Transactions On Circuits and Systems Ii-Express Briefs. 61: 656-660
Sun L, Ko CT, Ho M, et al. (2014) 23 µW 8.9-effective number of bit 1.1 MS/s successive approximation register analog-to-digital converter with an energy-efficient digital-to-analog converter switching scheme The Journal of Engineering. 2014: 420-425
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