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A 266-µW Bluetooth Low-Energy (BLE) Receiver Featuring an N-Path Passive Balun-LNA and a Pipeline Down-Mixing BB-Extraction Scheme Achieving 77dB SFDR and -3dBm OOB-B-1dB
Journal article
IEEE Journal of Solid-State Circuits, 2022,Volume: 57,Issue: 12,Page: 3669–3680
Authors:
Shao, Haijun
;
Mak, Pui-In
;
Qi, Gengzhen
;
Martins, Rui P.
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TC[WOS]:
0
TC[Scopus]:
0
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Submit date:2022/12/15
A 108-nW 0.8-mm 2 Analog Voice Activity Detector Featuring a Time-Domain CNN With Sparsity-Aware Computation and Sparsified Quantization in 28-nm CMOS
Journal article
IEEE Journal of Solid-State Circuits, 2022,Volume: 57,Issue: 11,Page: 1-10
Authors:
Chen, Feifei
;
Un, Ka Fai
;
Yu, Wei Han
;
Mak, Pui In
;
Martins, Rui P.
Adobe PDF
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TC[WOS]:
0
TC[Scopus]:
0
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Submit date:2022/07/22
Approximate Computing
Convolutional Neural Network (Cnn)
Feature Extraction
Keyword Spotting (Kws)
Quantization
Reconfigurable
Sparsity
Switched-capacitor Circuits
Voice Activity Detection (Vad)
A 266- μ W Bluetooth Low-Energy (BLE) Receiver Featuring an N -Path Passive Balun-LNA and a Pipeline Down-Mixing BB-Extraction Scheme Achieving 77-dB SFDR and − 3-dBm OOB-B −1 dB
Journal article
IEEE Journal of Solid-State Circuits, 2022,Page: 1-12
Authors:
Shao, Haijun
;
Mak, Pui In
;
Qi, Gengzhen
;
Martins, Rui P.
Favorite
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TC[WOS]:
0
TC[Scopus]:
1
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Submit date:2022/09/29
[Removed] -path
Balun-low-noise Amplifier (Balun-lna)
Bandpass Filtering
Baseband (Bb)
Bluetooth Low-energy (Ble)
Cmos
Gain
Hybrid Filter
Noise Figure (Nf)
Noise Measurement
Nonlinearity
Out-of-band (Oob)
Passive Gain
Pipeline
Pipelines
Radio Frequency
Receivers
Spurious-free Dynamic Range (Sfdr)
Transformers
Ultra-low-power (Ulp)
Voltage
A 529-μW Fractional-N All-Digital PLL Using TDC Gain Auto-Calibration and an Inverse-Class-F DCO in 65-nm CMOS
Journal article
IEEE Transactions on Circuits and Systems I: Regular Papers, 2022,Volume: 69,Issue: 1,Page: 51-63
Authors:
Chen, Peng
;
Meng, Xi
;
Yin, Jun
;
Mak, Pui In
;
Martins, Rui P.
;
Staszewski, Robert Bogdan
Favorite
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TC[WOS]:
4
TC[Scopus]:
3
|
Submit date:2021/09/20
Adpll
Bandwidth
Bluetooth Le (bLe)
Circuit Stability
Dco
Dtc
Fractional-n Pll
Gain
Inverse-class-f
Jitter
Low Power
Oscillators
Phase Locked Loops
Phase Noise (Pn)
Quantization (Signal)
Tdc
The Iot.
Revisiting the Frontiers of Analog and Mixed-Signal Integrated Circuits Architectures and Techniques towards the future Internet of Everything (IoE) Applications
Journal article
Foundations and Trends® in Integrated Circuits and Systems, 2021,Volume: 1,Issue: 2-3,Page: 72-216
Authors:
Rui P. Martins
;
Pui-In Mak
;
Sai-Weng Sin
;
Man-Kay Law
;
Yan Zhu
;
Yan Lu
;
Jun Yin
;
Chi-Hang Chan
;
Yong Chen
;
Ka-Fai Un
;
Mo Huang
;
Minglei Zhang
;
Yang Jiang
;
Wei-Han Yu
Adobe PDF
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TC[WOS]:
0
TC[Scopus]:
0
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Submit date:2022/08/30
Analog-to-digital Converters, Mixed-signal Circuits And Systems, Rf Circuits, Mm-wave Integrated Circuits, Wireless Circuits, Wireline Circuits, Data Converters, Analog-to-digital Converters, Sensors, Analog-to-digital Conversion
A 0.12-mm2 1.2-to-2.4 mW 1.3-to-2.65 GHz Fractional-N Bang-Bang Digital PLL with 8-μs Settling Time for Multi-ISM-Band ULP Radios
Journal article
IEEE Transactions on Circuits and Systems I: Regular Papers, 2019,Page: 3307-3316
Authors:
Un, K. F.
;
Qi, G.
;
Yin, J.
;
Yang, S.
;
Yu, S.
;
Ieong, C. -I.
;
Mak, P. I.
;
Martins, R. P.
Favorite
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TC[WOS]:
0
TC[Scopus]:
0
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Submit date:2022/01/25
digital phase-locked loop (DPLL)
bang-bang
digital-to-time converter (DTC)
gain calibration
voltage-controlled oscillator (VCO)
ring VCO
ultra-low-power (ULP)
ultra-fast settling
A 0.12-mm2 1.2-to-2.4-mW 1.3-to-2.65-GHz Fractional-N bang-bang digital PLL with 8-μs settling time for multi-ISM-Band ULP radios
Journal article
IEEE Transactions on Circuits and Systems I: Regular Papers, 2019,Volume: 66,Issue: 9,Page: 3307-3316
Authors:
Un,Ka Fai
;
Qi,Gengzhen
;
Yin,Jun
;
Yang,Shiheng
;
Yu,Shupeng
;
Ieong,Chio In
;
Mak,Pui In
;
Martins,Rui P.
Favorite
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TC[WOS]:
7
TC[Scopus]:
5
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Submit date:2021/03/09
Bang-bang
Digital Phase-locked Loop (Dpll)
Digital-to-time Converter (Dtc)
Gain Calibration
Ring Vco
Ultra-fast Settling
Ultra-low-power (Ulp)
Voltage-controlled Oscillator (Vco)
A 0.18-V 382-mu W Bluetooth Low-Energy Receiver Front-End With 1.33-nW Sleep Power for Energy-Harvesting Applications in 28-nm CMOS
Journal article
IEEE JOURNAL OF SOLID-STATE CIRCUITS, 2018,Volume: 53,Issue: 6,Page: 1618-1627
Authors:
Yi, Haidong
;
Yu, Wei-Han
;
Mak, Pui-In
;
Yin, Jun
;
Martins, Rui P.
Favorite
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TC[WOS]:
40
TC[Scopus]:
45
|
Submit date:2018/10/30
Bandgap Reference (Bgr)
Bluetooth Low Energy (Ble)
Charge Pump (Cp)
Class-d Voltage-controlled Oscillator (Vco)
Cmos
Energy Harvesting
Low-noise Amplifier (Lna)
Micropower Manager (Mu Pm)
Power-gating
Receiver (Rx)
Ultra-low Power (Ulp)
Ultra-low Voltage (Ulv)
A 0.18V 382µW Bluetooth Low-Energy (BLE) Receiver Front-End with 1.33nW Sleep Power for Energy-Harvesting Applications in 28nm CMOS
Journal article
IEEE Journal of Solid-State Circuits, 2018,Volume: 53,Issue: 6,Page: 1618 - 1627
Authors:
Haidong Yi
;
Wei-Han Yu
;
Pui-In Mak
;
Jun Yin
;
Rui P. Martins
Favorite
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TC[WOS]:
41
TC[Scopus]:
43
|
Submit date:2019/03/12
Bandgap Reference (Bgr)
Bluetooth Low Energy (Ble)
Charge Pump (Cp)
Class-d Voltage-controlled Oscillator (Vco)
Cmos
Energy Harvesting
Low-noise Amplifier (Lna)
Micropower Manager (Μpm)
Power-gating
Receiver (Rx)
Ultra-low Power (Ulp)
Ultra-low Voltage (Ulv)
A 0.18-V 382-μ W Bluetooth Low-Energy Receiver Front-End with 1.33-nW Sleep Power for Energy-Harvesting Applications in 28-nm CMOS
Journal article
IEEE Journal of Solid-State Circuits, 2018,Volume: 53,Issue: 6,Page: 1618-1627
Authors:
Haidong Yi
;
Wei-Han Yu
;
Pui-In Mak
;
Jun Yin
;
Rui P. Martins
Favorite
|
|
TC[WOS]:
41
TC[Scopus]:
45
|
Submit date:2019/02/11
Bandgap Reference (Bgr)
Bluetooth Low Energy (Ble)
Charge Pump (Cp)
Class-d Voltage-controlled Oscillator (Vco)
Cmos
Energy Harvesting
Low-noise Amplifier (Lna)
Micropower Manager (Μpm)
Power-gating
Receiver (Rx)
Ultra-low Power (Ulp)
Ultra-low Voltage (Ulv)