 | 2012 |
| 33 |  | Willy Sansen,
Christian Enz,
Willy Sansen,
Boris Murmann,
Philip K. T. Mok:
Low-power analog signal processing.
ISSCC 2012: 518 |
| 2011 |
| 32 |  | Philip K. T. Mok:
High-efficient DC-DC converter design.
CICC 2011: 1 |
| 31 |  | Cheng Huang,
Philip K. T. Mok:
Cross-Regulation-Suppression control scheme for CCM Single-Inductor-Dual-Output buck converter with ordered-power-distributive control.
ISCAS 2011: 1612-1615 |
| 30 |  | Xiaocheng Jing,
Philip K. T. Mok,
Ming Chak Lee:
Current-slope-controlled adaptive-on-time DC-DC converter with fixed frequency and fast transient response.
ISCAS 2011: 1908-1911 |
| 29 |  | Ming Chak Lee,
Xiaocheng Jing,
Philip K. T. Mok:
A 14V-output adaptive-off-time boost converter with quasi-fixed-frequency in full loading range.
ISCAS 2011: 233-236 |
| 28 |  | Xiaocheng Jing,
Philip K. T. Mok:
Ultra-fast hysteretic single-inductor-dual-output boost regulator with predictable noise spectrum and minimized cross-regulation.
ISCAS 2011: 297-300 |
| 27 |  | Edward N. Y. Ho,
Philip K. T. Mok:
Design optimization of an output capacitor-less low dropout regulator with compensation capcitance reduction and slew-rate enhancement technique.
ISCAS 2011: 53-56 |
| 26 |  | Man Pun Chan,
Philip K. T. Mok:
Design and Implementation of Fully Integrated Digitally Controlled Current-Mode Buck Converter.
IEEE Trans. on Circuits and Systems 58-I(8): 1980-1991 (2011) |
| 25 |  | Xiaocheng Jing,
Philip K. T. Mok,
Ming Chak Lee:
A Wide-Load-Range Constant-Charge-Auto-Hopping Control Single-Inductor-Dual-Output Boost Regulator With Minimized Cross-Regulation.
J. Solid-State Circuits 46(10): 2350-2362 (2011) |
| 2010 |
| 24 |  | Edward N. Y. Ho,
Philip K. T. Mok:
Ramp signal generation in Voltage mode CCM Random switching Frequency Buck converter for conductive EMI reduction.
CICC 2010: 1-4 |
| 23 |  | Ying Wu,
Philip K. T. Mok:
A two-phase switching hybrid supply modulator for polar transmitters with 9% efficiency improvement.
ISSCC 2010: 196-197 |
| 22 |  | Ka Nang Leung,
Yuan Yen Mai,
Philip K. T. Mok:
A Chip-Area Efficient Voltage Regulator for VLSI Systems.
IEEE Trans. VLSI Syst. 18(12): 1757-1762 (2010) |
| 21 |  | Patrick Y. Wu,
Philip K. T. Mok:
Comparative Studies of Common Fix-Frequency Controls for Reference Tracking and Enhancement by End-Point Prediction.
IEEE Trans. on Circuits and Systems 57-I(11): 3023-3034 (2010) |
| 20 |  | Edward N. Y. Ho,
Philip K. T. Mok:
A Capacitor-Less CMOS Active Feedback Low-Dropout Regulator With Slew-Rate Enhancement for Portable On-Chip Application.
IEEE Trans. on Circuits and Systems 57-II(2): 80-84 (2010) |
| 19 |  | Patrick Y. Wu,
Philip K. T. Mok:
A Two-Phase Switching Hybrid Supply Modulator for RF Power Amplifiers With 9% Efficiency Improvement.
J. Solid-State Circuits 45(12): 2543-2556 (2010) |
| 18 |  | Patrick Y. Wu,
Sam Y. S. Tsui,
Philip K. T. Mok:
Area- and Power-Efficient Monolithic Buck Converters With Pseudo-Type III Compensation.
J. Solid-State Circuits 45(8): 1446-1455 (2010) |
| 2009 |
| 17 |  | Xiaocheng Jing,
Philip K. T. Mok,
Ming Chak Lee:
A wide-load-range single-inductor-dual-output boost regulator with minimized cross-regulation by constant-charge-auto-hopping (CCAH) control.
CICC 2009: 299-302 |
| 16 |  | Ying Wu,
Sam Y. S. Tsui,
Philip K. T. Mok:
An area- and power-efficient monolithic Buck converter with fast transient response.
CICC 2009: 307-310 |
| 2008 |
| 15 |  | Tsz Yin Man,
Ka Nang Leung,
Chi Yat Leung,
Philip K. T. Mok,
Mansun Chan:
Development of Single-Transistor-Control LDO Based on Flipped Voltage Follower for SoC.
IEEE Trans. on Circuits and Systems 55-I(5): 1392-1401 (2008) |
| 14 |  | Yuan Yen Mai,
Philip K. T. Mok:
A Constant Frequency Output-Ripple-Voltage-Based Buck Converter Without Using Large ESR Capacitor.
IEEE Trans. on Circuits and Systems 55-II(8): 748-752 (2008) |
| 2004 |
| 13 |  | Ka Nang Leung,
Philip K. T. Mok,
Sai Kit Lau:
A low-voltage CMOS low-dropout regulator with enhanced loop response.
ISCAS (1) 2004: 385-388 |
| 12 |  | Chi Yat Leung,
Ka Nang Leung,
Philip K. T. Mok:
Design of a 1.5-V high-order curvature-compensated CMOS bandgap reference.
ISCAS (1) 2004: 48-52 |
| 11 |  | Chi Yat Leung,
Philip K. T. Mok,
Ka Nang Leung:
A 1.2V buck converter with a novel on-chip low-voltage current-sensing scheme.
ISCAS (5) 2004: 824-827 |
| 2003 |
| 10 |  | Xibo Zhang,
Philip K. T. Mok,
Mansun Chan,
Ping K. Ko:
Large-signal and phase noise performance analysis of active inductor tunable oscillators.
ISCAS (1) 2003: 705-708 |
| 9 |  | Yat-Hei Lam,
Wing-Hung Ki,
Chi-Ying Tsui,
Philip K. T. Mok:
Single-inductor dual-input dual-output switching converter for integrated battery charging and power regulation.
ISCAS (3) 2003: 447-450 |
| 2002 |
| 8 |  | Ka Chun Kwok,
Philip K. T. Mok:
Pole-zero tracking frequency compensation for low dropout regulator.
ISCAS (4) 2002: 735-738 |
| 7 |  | Cheung Fai Lee,
Philip K. T. Mok:
On-chip current sensing technique for CMOS monolithic switch-mode power converters.
ISCAS (5) 2002: 265-268 |
| 2001 |
| 6 |  | Dongsheng Ma,
Wing-Hung Ki,
Chi-Ying Tsui,
Philip K. T. Mok:
A single-inductor dual-output integrated DC/DC boost converter for variable voltage scheduling.
ASP-DAC 2001: 19-20 |
| 5 |  | Hoi Lee,
Philip K. T. Mok:
A CMOS current-mirror amplifier with compact slew rate enhancement circuit for large capacitive load applications.
ISCAS (1) 2001: 220-223 |
| 4 |  | Wei Chen,
Wing-Hung Ki,
Philip K. T. Mok,
Mansun Chan:
Switched-capacitor power converters with integrated low dropout regulators.
ISCAS (3) 2001: 293-296 |
| 3 |  | Dongsheng Ma,
Wing-Hung Ki,
Philip K. T. Mok,
Chi-Ying Tsui:
Single-inductor multiple-output switching converters with bipolar outputs.
ISCAS (3) 2001: 301-304 |
| 1999 |
| 2 |  | Ka Nang Leung,
Philip K. T. Mok,
Wing-Hung Ki:
Optimum nested Miller compensation for low-voltage low-power CMOS amplifier design.
ISCAS (2) 1999: 616-619 |
| 1 |  | Ka Nang Leung,
Philip K. T. Mok,
Wing-Hung Ki:
A novel frequency compensation technique for low-voltage low-dropout regulator.
ISCAS (5) 1999: 102-105 |