無線IC

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Zushu Yan, Pui In Mak, Man-Kay Law, R. P. Martins, Frequency Compensation Techniques for Low-Power and Small-Area Multistage Amplifiers

Granted Number: 8,963,639

Application Number: 13/770,020

US Patent

Feb-2015
Yong Chen, Pui In Mak, Li Zhang, Yan Wang, A 0.002-mm2 6.4-mW 10-Gb/s Full-Rate Direct DFE Receiver with 59.6% Horizontal Eye Opening at 10-12 BER under 23.3-dB Channel Loss at Nyquist

IEEE Transactions on Microwave Theory and Techniques

vol. 62, no. 12, pp. 3107-3117 Dec-2014
Zhicheng Lin, Pui In Mak, R. P. Martins, A Sub-GHz Multi-ISM-Band ZigBee Receiver Using Function-Reuse and Gain-Boosted N-Path Techniques for IoT Applications

IEEE Journal of Solid-State Circuits

vol. 49, Issue 12, pp. 2990 - 3004 Dec-2014
Shiheng Yang, Pui In Mak, R. P. Martins, A 104μW EMI-Resisting Bandgap Voltage Reference Achieving –20dB PSRR, and 5% DC Shift under a 4dBm EMI Level

IEEE Asia-Pacific Conference on Circuits and Systems (APCCAS)

Nov-2014
Pui In Mak, Man-Kay Law, R. P. Martins, 技術發明獎二等獎(模擬與射頻微電子介面關鍵技術–應用於無處不在無線連接)

The Science and Technology Development Fund(FDCT)

Nov-2014
Diyang Zhao, Certificate of Student Travel Support(Title:Design Considerations of a Low-Noise Receiver Front-End and its Spiral Coil for Portable NMR Screening)

2014 IEEE Asia pacific confernce on Circuits and System

Nov-2014
Ze Wang, Chi Man Wong, Janir Nuno da Cruz, Feng Wan, Pui In Mak, Peng Un Mak, R. P. Martins, Muscle and Electrode Motion Artifacts Reduction in ECG Using Adaptive Fourier Decomposition

IEEE International Conference on Systems, Man, and Cybernetics (SMC)

pp.1456-1461 Oct-2014
Md. Tawfiq Amin, Pui In Mak, R. P. Martins, A 0.137 mm 9 GHz Hybrid Class-B/C QVCO with Output Buffering in 65 nm CMOS

IEEE Microwave and Wireless Components Letters

vol. 24, no. 10 Oct-2014
Zhicheng Lin, Pui In Mak, R. P. Martins, Analysis and Modeling of a Gain-Boosted N-Path Switched-Capacitor Bandpass Filter

IEEE Transactions on Circuits and Systems – I

vol. 9, pp. 2560-2568 Sep-2014
Zhicheng Lin, Pui In Mak, R. P. Martins, A 0.14-mm2, 1.4-mW, 59.4 dB-SFDR, 2.4-GHz ZigBee/WPAN Receiver Exploiting a Split-LNTA + 50% LO Topology in 65-nm CMOS

IEEE Transactions on Microwave Theory and Techniques

vol. 62, pp. 1525-1534 Jul-2014
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