Current research interests include large-array and focal-plane array
receiver systems and very low noise systems in radio astronomical applications using MMICs.
Ph.D, Astronomy, University Bonn, Germany (2000~2003)
M.Sc., Communication Engineering, National Taiwan University, Taiwan (1997~1999)
Journal Papers affiliated with ASIAA(23)
Nguyen-Luong Q; Nakamura F; Taniguchi K; Dinh-V-Trung; Liu S-Y; Shimoikura T; Chiong C-C; Dobashi K; Hirano N; Yonekura Y; Nishimura A; Ogawa H; Chien C; Ho C-T; Hwang Y-J; Yeh Y-T; Lai S-P; Fujii Y; Yamasaki Y; Kawabe R; Nolan A; Dung Pham V,
"A spectral-line survey of CIT 6 between 30 and 50 GHz with the eQ receiver at NRO 45 m",
A&A: 706, id.A127 (12 pp), Feb, 2026 [SCI]
( ADS | Fulltext )
Taniguchi K; Nakamura F; Liu S-Y; Shimoikura T; Chiong C-C; Dobashi K; Hirano N; Yonekura Y; Nomura H; Nishimura A; Ogawa H; Chien C; Ho C-T; Hwang Y-J; Yeh Y-T; Lai S-P; Fujii Y; Yamasaki Y; Nguyen-Luong Q; Kawabe R,
"Q-band Line Survey Observations toward a Carbon-chain-rich Clump in the Serpens South Region",
PASJ: 76(6), 1270-1301, Dec, 2024 [SCI]
Nakamura F; Chiong C-C; Taniguchi K; Chien C; Ho C-T; Hwang Y-J; Yeh Y-T; Shimoikura T; Yamasaki Y; Liu S-Y; Hirano N; Lai S-P; Nishimura A; Kawabe R; Dobashi K; Fujii Y; Yonekura Y; Ogawa H; Nguyen-Luong Q,
"An ultra wide-band, high-sensitivity Q-band receiver for single-dish telescopes, eQ: rest frequency determination of CCS ( JN = 43 - 32 ) and SO ( JN = 10 - 01 ), and high-redshift CO ( J = 1-0) detection",
PASJ: 76(4), pp.563-578, Aug, 2024 [SCI]
Huang WZ; Wang YS; Liu SW; Chiong CC; Wang H,
"A 30–50-GHz Ultralow-Power Low-Noise Amplifier With Second-Stage Current-Reuse for Radio Astronomical Receivers in 90-nm CMOS Process",
IEEE Microwave and Wireless Technology Letters: 33(5), 555-558, May, 2023 [SCI]
Wang Y; Chiu T-Y; Chiu T-Y; Yu K-J; Teng Y-M; Huang G-W; Li C-H; Kuo C-N; Chiong C-C; Wang H,
"A Ka-to G-Band Detector With 5.5-GHz Video Bandwidth Using a Modified Traveling-Wave Structure in 65-nm CMOS Technology",
IEEE Trans. Circuits Syst. II-Express Briefs: 70(4), 1371-1375, April, 2023 [SCI]
Tatematsu KI; Yeh Y-T; Hirano N; Liu S-Y; Liu T; Dutta S; Sahu D; Evans NJ, Ii; Juvela M; Yi H-W; Lee J-E; Sanhueza P; Li S; Eden D; Kim G; Lee C-F; Wu Y; Kim K-T; T'oth LV; Choi M; Kang M; Thompson MA; Fuller GA; Di L; Wang K; Sakai T; Kandori R; Hsu S-Y; Chiong C-C; JCMT Large Program SCOPE collaboration; ALMASOP collaboration,
"Nobeyama Survey of Inward Motions toward Cores in Orion Identified by SCUBA-2",
ApJ: 931(1), id.33 (24pp), May, 2022 [SCI]
Chiong CC; Wang YS; Chang KC; Wang H,
"Low-Noise Amplifier for Next-Generation Radio Astronomy Telescopes: Review of the State-of-the-Art Cryogenic LNAs in the Most Challenging Applications",
IEEE Microwave Magazine: 23(1), 31-47, Jan, 2022 [SCI]
Lu B-Z; Wang YS; Wu Y-C; Chiong CC; et al.,
"A Submilliwatt K-Band Low-Noise Amplifier for Next Generation Radio Astronomical Receivers in 65-nm CMOS Process",
IEEE Microw Wirel Co: 30(7), 669-672, Jul, 2020 [SCI]
Chen Y; Chen C-N; Chiong C-C; Wang H,
"A Compact 40-GHz Doherty Power Amplifier With 21% PAE at 6-dB Power Back Off in 0.1- μ m GaAs pHEMT Process",
IEEE Microw Wirel Co: 29(8), 545-547, Aug, 2019 [SCI]
Hu J-H; Choing C-C; Hwang Y-J; Tsai Z-M,
"E-Band Mixer With IP1dB Design Consideration for Radio Astronomical Instrumentation",
IEEE Microw Wirel Co: 28(5), 452-454, May, 2018 [SCI]
Wu Y-C; Chiong C-C; Tsai J-H; Wang H,
"A Novel 30-90-GHz Singly Balanced Mixer With Broadband LO/IF",
IEEE T Microw Theory: 64(12), 4611-4623, Dec, 2016 [SCI]
Yeh H-C; Chiong C-C; Chen M-T; Wang H,
"Advances in Silicon Based Millimeter-Wave Monolithic Integrated Circuits",
Micromachines: 5(4), 1373-1415, Dec, 2014 [SCI]
Kao JC; Lin KY; Chiong CC; Peng CY; Wang H,
"A W-band High LO-to-RF Isolation Triple Cascode Mixer With Wide IF Bandwidth",
IEEE T Microw Theory: 62(7), 1506-1514, July, 2014 [SCI]
Yeh H-C; Aloui S; Chiong C-C; Wang H,
"A Wide Gain Control Range V-Band CMOS Variable-Gain Amplifier With Built-In Linearizer",
IEEE T Microw Theory: 61(2), 902-913, Feb, 2013 [SCI]
Yeh H-C; Chiong C-C; Aloui S; Wang H,
"Analysis and Design of Millimeter-Wave Low-Voltage CMOS Cascode LNA With Magnetic Coupled Technique",
IEEE T Microw Theory: 60(12), 4066 - 4079, Dec, 2012 [SCI]
Weng SH; Chang H-Y; Chiong C-C,
"Gain-Bandwidth Analysis of Broadband Darlington Amplifiers in HBT-HEMT Process",
IEEE T Microw Theory: 60(11), 3458 - 3473, Nov, 2012 [SCI]
Huang BJ; Lin KY (Lin, Kun-You); Chiong CC; Wang H,
"Novel High Robustness RF ESD Protection Circuits Applied to 5.8-GHz GaAs-Based HBT Amplifiers",
IEEE T Microw Theory: 59(3), 687-698, Mar, 2011 [SCI]
Weng SH; Chang HY; Chiong CC,
"A DC-21 GHz Low Imbalance Active Balun Using Darlington Cell Technique for High Speed Data Communications",
IEEE Microw Wirel Co: 19(11), 728-730, Nov, 2009 [SCI]
Kuo JJ; Tsai ZM; Huang PC; Chiong CC; et al.,
"A Wide Tuning Range Voltage Controlled Oscillator Using Common-Base Configuration and Inductive Feedback",
IEEE Microw Wirel Co: 19(10), 653-655, Oct, 2009 [SCI]
Lin Y-S; Hsieh Y-S; Chiong C-C; Hwang Y-J,
"Q-band GaAs bandpass filter design for ALMA band-1",
IEEE Microw Wirel Co: 19(6), 353-355, June 1, 2009 [SCI]
Chang HY; Weng SH; Chiong CC,
"A 30─50 GHz Wide Modulation Bandwidth Bidirectional BPSK Demodulator/Modulator with Low LO Power",
IEEE Microw Wirel Co: 19(5), 332-334, May, 2009 [SCI]
Lee J; Lai RB; Chen CC; Lin CS; Lin KY; Chiong CC; Wang H,
"Low Insertion-Loss Single-Pole-Double-Throw Reduced-Size Quarter-Wavelength HEMT Bandpass Filter Integrated Switches",
IEEE T Microw Theory: 56(12, Sp. Iss. Part 2), 3028-3038, Dec, 2008 [SCI]