UM

Browse/Search Results:  1-10 of 10 Help

Selected(0)Clear Items/Page:    Sort:
A BW-Extended Fourth-Order Gain-Boosted N-Path Filter Employing a Switched gm – C Network Journal article
Qi, Gengzhen, Guo, Haonan, Li, Yunchu, Mak, Pui In. A BW-Extended Fourth-Order Gain-Boosted N-Path Filter Employing a Switched gm – C Network[J]. IEEE Journal of Solid-State Circuits, 2024.
Authors:  Qi, Gengzhen;  Guo, Haonan;  Li, Yunchu;  Mak, Pui In
Favorite | TC[WOS]:0 TC[Scopus]:0  IF:4.6/5.6 | Submit date:2024/05/16
Band-pass Filters  Bandpass Filtering  Bandwidth (Bw)  Baseband (Bb)  Bw Extension  Gain  Gain Boosted  Linearity  N-path Filter  Noise Figure (Nf)  Out-of-band (Ob) Linearity  Passband  Poly-phase Cells  Q-factor  Radio Frequency  Radio Frequency (Rf)  Resonator Filters  Switched $g_{\text{m}}$ $c$ Network  Switches  
A 35-to-50 GHz CMOS Low-Noise Amplifier with 22.2% -1-dB Fractional Bandwidth and 30.5-dB Maximum Gain for 5G New Radio Conference paper
Wei, Dong, Wu, Tianxiang, Ma, Shunli, Chen, Yong, Ren, Junyan. A 35-to-50 GHz CMOS Low-Noise Amplifier with 22.2% -1-dB Fractional Bandwidth and 30.5-dB Maximum Gain for 5G New Radio[C], NEW YORK, USA:Institute of Electrical and Electronics Engineers Inc., 2021, 195-198.
Authors:  Wei, Dong;  Wu, Tianxiang;  Ma, Shunli;  Chen, Yong;  Ren, Junyan
Favorite | TC[WOS]:7 TC[Scopus]:9 | Submit date:2021/12/08
Low-noise Amplifier (Lna)  Noise Figure (Nf)  Cmos  Transformer  Gm Boosting  Gain Flatness  Magnetically Coupling Resonator  Fractional Bandwidth (Bw)  5g New Radio  Ieee 802.11aj  Common Source  Common Gate  Noise Factor  
A Multiband FDD SAW-Less Transmitter for 5G-NR Featuring a BW-Extended N-Path Filter-Modulator, a Switched-BB Input, and a Wideband TIA-Based PA Driver Journal article
Qi,Gengzhen, Shao,Haijun, Mak,Pui In, Yin,Jun, Martins,Rui P.. A Multiband FDD SAW-Less Transmitter for 5G-NR Featuring a BW-Extended N-Path Filter-Modulator, a Switched-BB Input, and a Wideband TIA-Based PA Driver[J]. IEEE Journal of Solid-State Circuits, 2020, 55(12), 3387-3399.
Authors:  Qi,Gengzhen;  Shao,Haijun;  Mak,Pui In;  Yin,Jun;  Martins,Rui P.
Favorite | TC[WOS]:5 TC[Scopus]:4  IF:4.6/5.6 | Submit date:2021/03/04
5g New Radio (5g-nr)  Adjacent-channel Leakage Rejection (Aclr)  Bandpass Filter  Bandwidth-extended Npath Filter Modulator (Bw-ext Fil-mod)  Baseband (Bb)  Cmos  Miller Effect  Multiband  N-path  Out-of-band (Ob)  Passive Mixer  Phase Noise  Positive-feedback Network (Pfn)  Power Amplifier Driver (Pas)  Surface Acoustic Wave (Saw)  Switched Capacitor (Sc)  Switched-bb Input Network  Transmitter (Tx)  
Wideband Variable-Gain Amplifiers Based on a Pseudo-Current-Steering Gain-Tuning Technique Conference paper
Lingshan Kong, Yong Chen, Haohong Yu, Quan Pan, Chirn Chye Boon, Pui-In Mak, Rui P. Martins. Wideband Variable-Gain Amplifiers Based on a Pseudo-Current-Steering Gain-Tuning Technique[C]:IEEE, 2020, 153-156.
Authors:  Lingshan Kong;  Yong Chen;  Haohong Yu;  Quan Pan;  Chirn Chye Boon; et al.
Favorite | TC[WOS]:4 TC[Scopus]:5 | Submit date:2021/03/09
Variable-gain Amplifier (Vga)  Cmos  Pseudo-current Steering  Wide-tuning Gain Control  Bandwidth (Bw)  High-speed Transceiver  Negative Capacitance  Peak-to-peak Jitter  
A 36-Gb/s 1.3-mW/Gb/s duobinary-signal transmitter exploiting power-efficient cross-quadrature clocking multiplexers with maximized timing margin Journal article
Yong Chen, Pui-In Mak, Chirn Chye Boon, Rui P. Martins. A 36-Gb/s 1.3-mW/Gb/s duobinary-signal transmitter exploiting power-efficient cross-quadrature clocking multiplexers with maximized timing margin[J]. IEEE Transactions on Circuits and Systems I: Regular Papers, 2018, 65(9), 3014-3026.
Authors:  Yong Chen;  Pui-In Mak;  Chirn Chye Boon;  Rui P. Martins
Favorite | TC[WOS]:26 TC[Scopus]:29  IF:5.2/4.5 | Submit date:2019/02/11
Bandwidth (Bw)  Cmos  Cross-quadrature Clocking  D-type Flip-flop (Dff)  Data-dependent Jitter (Ddj)  Duobinary  Figure-of-merit (Fom)  Latch  Multi-level Signaling  Multiplexer (Mux)  Selector  Timing Margin  
A 36-Gb/s 1.3-mW/Gb/s Duobinary-Signal Transmitter Exploiting Power-Efficient Cross-Quadrature Clocking Multiplexers with Maximized Timing Margin Journal article
Chen, Y., Mak, P. I., Boon, C.C., Martins, R. P.. A 36-Gb/s 1.3-mW/Gb/s Duobinary-Signal Transmitter Exploiting Power-Efficient Cross-Quadrature Clocking Multiplexers with Maximized Timing Margin[J]. IEEE Transactions on Circuits and Systems I: Regular Papers, 2018, 3014-3026.
Authors:  Chen, Y.;  Mak, P. I.;  Boon, C.C.;  Martins, R. P.
Favorite |   IF:5.2/4.5 | Submit date:2022/01/25
Bandwidth (BW)  cross-quadrature clocking  data- dependent jitter (DDJ)  duobinary  multi-level signaling  CMOS  multiplexer (MUX)  figure-of-merit (FOM)  timing margin  latch  D-type flip-flop (DFF)  selector  
An area-efficient and tunable Bandwidth-Extension Technique for a Wideband CMOS Amplifier Handling 50+ Gb/s Signaling Journal article
Yong Chen, Pui-In Mak, Haohong Yu, Chirn Chye Boon, Rui P. Martins. An area-efficient and tunable Bandwidth-Extension Technique for a Wideband CMOS Amplifier Handling 50+ Gb/s Signaling[J]. IEEE Transactions on Microwave Theory and Techniques, 2017, 65(12), 4960-4975.
Authors:  Yong Chen;  Pui-In Mak;  Haohong Yu;  Chirn Chye Boon;  Rui P. Martins
Favorite | TC[WOS]:30 TC[Scopus]:26  IF:4.1/4.2 | Submit date:2019/02/11
Ac charActeristic  Bandwidth (Bw)  Bridged-shunt Peaking  Cmos  Data-dependent Jitter (Ddj)  Figure Of Merit (Fom)  Grounded Active Inductor (Gai)  Group Delay Ripple (Gdr)  Intersymbol Interference (Isi)  Shunt Peaking  T-coil  Wideband Amplifier  
Improving the Linearity and Power Efficiency of Active Switched-Capacitor Filters in a Compact Die Area Journal article
Yaohua Zhao, Pui-In Mak, Man-Kay Law, Rui P. Martins. Improving the Linearity and Power Efficiency of Active Switched-Capacitor Filters in a Compact Die Area[J]. IEEE Transactions on Very Large Scale Integration (VLSI) Systems, 2015, 23(12), 3104-3108.
Authors:  Yaohua Zhao;  Pui-In Mak;  Man-Kay Law;  Rui P. Martins
Favorite | TC[WOS]:0 TC[Scopus]:0 | Submit date:2019/02/11
Bandwidth (Bw)  Clock-rate Defined  Cmos  Die Area  Linearity  Low-pass Filter (Lpf)  Switched Capacitor (Sc)  Tunability  Gain-bandwidth Product (Gbw)  
A 0.02 mm2 59.2 dB SFDR 4th-Order SC LPF with 0.5-to-10 MHz Bandwidth Scalability Exploiting a Recycling SC-Buffer Biquad Journal article
Yaohua Zhao, Pui-In Mak, Rui P. Martins, Franco Maloberti. A 0.02 mm2 59.2 dB SFDR 4th-Order SC LPF with 0.5-to-10 MHz Bandwidth Scalability Exploiting a Recycling SC-Buffer Biquad[J]. IEEE Journal of Solid-State Circuits, 2015, 50(9), 1988-2001.
Authors:  Yaohua Zhao;  Pui-In Mak;  Rui P. Martins;  Franco Maloberti
Favorite | TC[WOS]:5 TC[Scopus]:6 | Submit date:2019/02/11
1 Db Compression Point ({p1Db)  Butterworth  Channel Selection  Clock Generator  Clock-rate-defined Bandwidth (Bw)  Cmos  Die Area  Figure-of-merit (Fom)  Long-term Evolution (Lte)  Low-pass Filter (Lpf)  Operational Transconductance Amplifier (Ota)  Recycling  Switched Capacitor (Sc)  Wireless Radios  
On the design of a programmable-gain amplifier with built-In compact DC-Offset cancellers for very low-voltage WLAN systems Journal article
Pui-In Mak, Seng-Pan U, Rui P. Martins. On the design of a programmable-gain amplifier with built-In compact DC-Offset cancellers for very low-voltage WLAN systems[J]. IEEE Transactions on Circuits and Systems I: Regular Papers, 2008, 55(2), 496-509.
Authors:  Pui-In Mak;  Seng-Pan U;  Rui P. Martins
Favorite | TC[WOS]:35 TC[Scopus]:51  IF:5.2/4.5 | Submit date:2018/10/30
Cmos  Constant Bandwidth (Bw)  Dc-offset Canceller (Doc)  Low Voltage (Lv)  Programmable-gain Amplifier (Pga)  Transient  Wireless Local-area Network (Wlan)