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Ta-Shun Chu
ORCID
Publication Activity (10 Years)
Years Active: 2007-2022
Publications (10 Years): 8
Top Topics
Cmos Technology
Digital Straight Line
Feature Extraction
Signal Processing
Top Venues
ISSCC
IEEE Trans. Circuits Syst. I Regul. Pap.
Sensors
ICECS
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Publications
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Yue-Ming Wu
,
Yu-Hsien Kao
,
Ta-Shun Chu
A 68-GHz Loss Compensated Distributed Amplifier Using Frequency Interleaved Technique in 65-nm CMOS Technology.
IEEE Trans. Very Large Scale Integr. Syst.
30 (1) (2022)
Yue-Ming Wu
,
Hao-Chung Chou
,
Cheng-Yung Ke
,
Chien-Cheng Wang
,
Chien-Te Li
,
Li-Han Chang
,
Borching Su
,
Ta-Shun Chu
,
Yu-Jiu Wang
An X-Band CMOS Digital Phased Array Radar from Hardware to Software.
Sensors
21 (21) (2021)
Chun-Chieh Peng
,
Ta-Shun Chu
A 10.7b 300MS/s Two-Step Digital-Slope ADC in 65nm CMOS.
IEEE Trans. Circuits Syst. I Regul. Pap.
(9) (2020)
Kuei-Chi Tsao
,
Ling Lee
,
Ta-Shun Chu
,
Yuan-Hao Huang
A Two-Stage Reconstruction Processor for Human Detection in Compressive Sensing CMOS Radar.
Sensors
18 (4) (2018)
Yu-Hsien Kao
,
Hao-Chung Chou
,
Chun-Chieh Peng
,
Yu-Jiu Wang
,
Borching Su
,
Ta-Shun Chu
18.3 A single-port duplex RF front-end for X-band single-antenna FMCW radar in 65nm CMOS.
ISSCC
(2017)
Chi-Hsuan Hsieh
,
Yu-Fang Chiu
,
Yi-Hsiang Shen
,
Ta-Shun Chu
,
Yuan-Hao Huang
A UWB Radar Signal Processing Platform for Real-Time Human Respiratory Feature Extraction Based on Four-Segment Linear Waveform Model.
IEEE Trans. Biomed. Circuits Syst.
10 (1) (2016)
Yu-Hsien Kao
,
Ta-Shun Chu
A Direct-Sampling Pulsed Time-of-Flight Radar With Frequency-Defined Vernier Digital-to-Time Converter in 65 nm CMOS.
IEEE J. Solid State Circuits
50 (11) (2015)
Jinn-Yann Liu
,
Shi-Yu Huang
,
Ta-Shun Chu
Cell-based programmable phase shifter design for pulsed radar SoC.
ASICON
(2015)
Yu-Hsien Kao
,
Chang-Ming Lai
,
Jen-Ming Wu
,
Po-Chiun Huang
,
Ping-Hsuan Hsieh
,
Ta-Shun Chu
28.3 A frequency-defined vernier digital-to-time converter for impulse radar systems in 65nm CMOS.
ISSCC
(2014)
Chang-Ming Lai
,
Kai-Wen Tan
,
Yen-Ju Chen
,
Ta-Shun Chu
A UWB Impulse-Radio Timed-Array Radar With Time-Shifted Direct-Sampling Architecture in 0.18-µm CMOS.
IEEE Trans. Circuits Syst. I Regul. Pap.
(7) (2014)
Chun-Chieh Peng
,
Yu-Hsien Kao
,
Hou-Chung Chou
,
Si-Cheng Lin
,
Ta-Shun Chu
A scalable microradio receiver used in radiation pattern measurement technology.
ICECS
(2014)
Chi-Hsuan Hsieh
,
Yi-Hsiang Shen
,
Yu-Fang Chiu
,
Ta-Shun Chu
,
Yuan-Hao Huang
Human respiratory feature extraction on an UWB radar signal processing platform.
ISCAS
(2013)
Chang-Ming Lai
,
Jen-Ming Wu
,
Po-Chiun Huang
,
Ta-Shun Chu
A scalable direct-sampling broadband radar receiver supporting simultaneous digital multibeam array in 65nm CMOS.
ISSCC
(2013)
Chang-Ming Lai
,
Kai-Wen Tan
,
Liu-Yuan Yu
,
Yen-Ju Chen
,
Jun-Wei Huang
,
Shr-Chau Lai
,
Feng-Hsu Chung
,
Chia-Fung Yen
,
Jen-Ming Wu
,
Po-Chiun Huang
,
Keh-Jeng Chang
,
Shi-Yu Huang
,
Ta-Shun Chu
A UWB IR timed-array radar using time-shifted direct-sampling architecture.
VLSIC
(2012)
Cheng-Hao Hong
,
Hsiao-Husan Shen
,
Huan-Chung Wu
,
Husan Shen
,
Chiao-Wen Cheng
,
Ta-Shun Chu
,
Jen-Ming Wu
Fast selection of time-interleaved samples for wireless healthcare monitoring with pulse radar.
BioCAS
(2012)
Ta-Shun Chu
,
Jonathan Roderick
,
SangHyun Chang
,
Timothy Mercer
,
Chenliang Du
,
Hossein Hashemi
A short-range UWB impulse-radio CMOS sensor for human feature detection.
ISSCC
(2011)
Ta-Shun Chu
,
Hossein Hashemi
A true time-delay-based bandpass multi-beam array at mm-waves supporting instantaneously wide bandwidths.
ISSCC
(2010)
Hossein Hashemi
,
Ta-Shun Chu
,
Jonathan Roderick
Integrated true-time-delay-based ultra-wideband array processing.
IEEE Commun. Mag.
46 (9) (2008)
Ta-Shun Chu
,
Hossein Hashemi
A CMOS UWB Camera with 7×7 Simultaneous Active Pixels.
ISSCC
(2008)
Ta-Shun Chu
,
Jonathan Roderick
,
Hossein Hashemi
An Integrated Ultra-Wideband Timed Array Receiver in 0.13µm CMOS Using a Path-Sharing True Time Delay Architecture.
IEEE J. Solid State Circuits
42 (12) (2007)
Ta-Shun Chu
,
Jonathan Roderick
,
Hossein Hashemi
A 4-Channel UWB Beam-Former in 0.13μm CMOS using a Path-Sharing True-Time-Delay Architecture.
ISSCC
(2007)