Last Update : 2016/12/22

邱煥凱 (Hwann-Kaeo Chiou), Professor

 

OFFICE: E1-405

TEL: 03-422-7151 #34467

FAX: 03-427-6358

E-MAIL: hkchiou@ee.ncu.edu.tw

 

 

學歷

1994-1997

臺灣大學

電機工程研究所

博士

1983-1985

臺灣大學

電機工程研究所

碩士

1978-1982

交通大學

電 子 物 理 系

學士

 

 

經歷

2015/8-迄今

中央大學

資電學院

副院長(兼)

2008-迄今

中央大學

電機工程系

教授

2010-2013

中央大學

電機工程系

系主任(兼)

2005-2010

中央大學

電機工程系

系副主任(兼)

2002-2008

中央大學

電機工程系

副教授

2002-2002

朗弗寬頻微電子(RFIC)

首席科學家

2000-2002

明�砦q通

寬頻事業本部

前瞻技術中心

研發協理

1997-2000

中山科學研究院

簡聘技正

副研究員

1992-1994

中山科學研究院

技正

助理研究員

1985-1992

中山科學研究院

技士

助理研究員

 

 

專長

射頻積體電路(RFIC)、單石微波積體電路(MMIC)、微波工程

 

 

近年國內外之成就與榮譽

1.

90年國防部績學獎章

2.

92學年度中央大學新進教師學術研究補助

3.

97學年度中央大學研究傑出獎

4.

98-104學年度中央大學特聘教授獎

5.

2009自強工業科學基金會卓越貢獻教師

6.

102年度中國電機工程學會傑出電機工程教授獎

7.

指導碩士生謝志宏、林正杰 榮獲91年全國大學類比積體電路設計研究所組優等獎

8.

指導碩士生鄭淦仁 榮獲95年國家晶片系統設計中心晶片製作優良晶片佳作設計獎

9.

指導博士生楊宗育 榮獲96年中央大學研究傑出研究生獎學金

10.

指導碩士生楊家軍 榮獲96年中央大學研究傑出研究生獎學金

11.

指導博士生廖顯原、碩士生梁可駿 榮獲第19屆亞太微波會議(APMC 2007)最佳學生論文獎

12.

指導博士生廖顯原 榮獲96年中央大學優秀學生獎學金

13.

指導碩士生梁可駿 榮獲97年國家晶片系統設計中心晶片製作優良晶片佳作設計獎

14.

指導博士生楊宗育 榮獲97年中央大學校長獎學金

15.

指導博士生廖顯原 榮獲97年中央大學研究傑出研究生獎學金

16.

指導博士生廖顯原 榮獲98年中央大學校長獎學金

17.

指導博士生陳毅山 榮獲99年中央大學研究傑出研究生獎學金

18.

指導博士生廖顯原 榮獲100年中央大學學生研究成果發表績效獎金A級

19.

指導博士生林瑞益 榮獲100年中央大學學生研究成果發表績效獎金A級

20.

指導博士生林貴城 榮獲101年中央大學學生研究成果發表績效獎金A級

21.

指導博士生許源佳 榮獲101年中央大學學生研究成果發表績效獎金B級

22.

指導博士生許源佳、鍾華晏、林貴城 榮獲第一屆桓達科技論文佳作獎

23.

指導博士生林貴城、周泓廷 榮獲102年中央大學研究傑出研究生獎學金

24.

指導博士生周泓廷 榮獲第二屆桓達科技論文科技銀翼獎

25.

指導碩士生郭晉瑋 以「應用於X-band之寬頻CMOS功率放大器」榮獲2014國家晶片設計中心成果發表會優良晶片遴選-射頻類別優等設計獎

26.

指導碩士生郭晉瑋 以「應用於K頻段之寬頻CMOS達靈頓功率放大器」榮獲2014國家晶片設計中心成果發表會優良晶片遴選-射頻類別優等設計獎

27.

指導博士生周泓廷 以「應用於毫米波頻段之超低功耗次諧波CMOS混頻器」榮獲2014國家晶片設計中心成果發表會優良晶片遴選-射頻類別優等設計獎

28.

指導博士生林貴城 以「應用於V-band CMOS 射頻前端電路之超寬頻達靈頓閘極驅動降頻混頻器、低雜訊放大器與高線性化功率放大器之研製」榮獲2014桓達科技論文科技銀翼獎

29.

指導博士生林貴城 以「應用於5-GHz CMOS射頻前端電路之低電壓自偏壓式混頻器與高線性化功率放大器之研製」榮獲103年度臺灣積體電路設計學會(TICD)博士論文獎

30.

指導碩士生簡箐儀以「應用於K頻段且使用電流回授機制之低功耗低雜訊放大器」榮獲2015國家晶片設計中心成果發表會優良晶片遴選-射頻類別優等設計獎

31.

指導碩士生林厚安以「應用傳輸線型變壓器於4~12 GHz之CMOS單向化寬頻功率放大器」榮獲2016國家晶片設計中心成果發表會優良晶片遴選-射頻類別特優設計獎

 

 

專業性學術會議擔任職務

1.

2003 IEDMS - Session Chair

2.

2003 IEEE A-CAS - Session Chair

3.

2004-2015 VLSI/CAD -議程委員

4.

2004 Cross Strait Tri-Regional Radio Science and Wireless Technology Conference - Session Chair

5.

2005 VLSI/CAD - Session Chair

6.

2005 獲教育部“通訊教育國際化發展方案”遴選,赴瑞士洛桑參加RFIC設計之種子教師培訓。並於同年在中央大學開授三天短期課程

7.

2006-2012電資科技應用與發展學術研討會 - 議程委員

8.

2006/2011/2012 APMC - Session Chair

9.

2007 全國電信研討會 - Session Chair

10.

2007 IEEE RFIT - Technical Program Committee

11.

2012 IEEE VLSI/DAT - Session Chair

12.

2012-2015全國電信研討會議程委員

13.

曾獲邀審查國際著名期刊、研討會稿件,如IEEE TED, IEEE EDL, IEEE T-MTT, IEEE MWCL, IEEE T-CAS-I/II, IEEE T-Comm., IEEE Advance Package, IEEE T-VLSI System Integration, IET-MAP, MEJ, Microelectronics Reliability, JJAP, IJEE, I, JCIE, APMC, Symp. On VLSI Circuits, RFIT, ISCAS, ….

14.

曾獲邀至臺灣大學、清華大學、交通大學、成功大學、中正大學、中山大學、中興大學、東華大學、暨南大學、元智大學、長庚大學、台南大學、彰化師大、金門大學、台灣科技大學、雲林科技大學、聯合大學、中華大學、清雲科技大學、勤益科大、萬能科大、龍華科大、明新科大、黎明科大等院校演講與擔任博碩士口試委員

15.

99年參與共同發起創立台灣電磁產學聯盟,以結合業界及學界的力量,期望經由跨校產學合作,積極致力推動電磁科技之發展與創新

16.

2011-2015 中華民國微波學會理、監事

17.

2015-2016 IET  Electronics Letters Associate Editor

 

 

其他擔任職務

1.

1997-迄今  國家晶片系統設計中心(CIC)審查委員

2.

2005-2012 國家晶片系統設計中心(CIC)兼聘研究員

3.

2005-2006 中國電機工程學會電機名詞審議委員會委員

4.

2005-迄今 經濟部SBIR與科技專案技術審查委員

5.

2012-2013 經濟部SBIR 電子領域召集委員

6.

2013 經濟部SBIR 電子領域召集委員兼總召集委員

7.

2010-2013 台灣區電機電子工商同業公會會務顧問

8.

2013-迄今 工研院資通所兼任特聘研究員

 

 

近年協助產業發展績效

1.

功率電晶體與功率放大器模組研究發展(朗弗寬頻)

2.

第三代行動通訊用戶端(CPE)與基地站(BS)關鍵零組件(經濟部/中科院)

3.

第三代行動通訊基地站收發機系統及100 瓦發射機設計(明�砦q通)

4.

區域多點分散式服務(LMDS)收發機模組(明�砦q通)

5.

擔任經濟部SBIR 技術審查委員,協助產業發展

6.

擔任國家晶片系統設計中心(CIC)顧問,協助建立高頻量測技術,提供全國各大專院校射頻量測之需求

7.

92至95年間,由通訊科技人才培育先導型計畫補助開設『微波積體電路設計』課程,業界推廣包含華邦電子、經濟部工業局通訊人才培訓班、推廣教育、工業技術研究院、財團法人自強工業科學基金會社、Agilent Si-Soft、穩懋半導體、源通科技、立積電子、太盟光電、佳得科技、聯華電子及常翔科技共13間公司,其推廣人數總計超過650人

 

 

學術性著作:

A.

Journals

1.

Hwann-Kaeo Chiou, Chi-Yang Chang, and Hao-Hsiung Lin, 1995 Nov. 13 “Balun design for uniplanar broad band double balanced mixer,” Electronics Lett., vol. 31, no. 24, pp. 2113–2114. (SCI)

2.

Hwann-Kaeo Chiou, Chi-Yang Chang, and Hao-Hsiung Lin, 1995 Dec. 5 “A novel coplanar waveguide series stub matching structure for a broadband amplifier,” Microwave and Optical Technology Lett., vol. 10, no. 5, pp. 307–310. (SCI)

3.

Hwann-Kaeo Chiou, Yu-Ru Juang, and Hao-Hsiung Lin, 1997 March 13 “Miniature MMIC star double balanced mixer using lumped dual balun,” Electronics Lett., vol. 33, no. 6, pp. 503–505. (SCI) NSC-85-2622-E-002-009

4.

Hwann-Kaeo Chiou and Hao-Hsiung Lin, 1997 Aug. “A Miniature MMIC Double Doubly Balanced Mixer Using Lumped Dual Balun for High Dynamic Receiver Application,” IEEE Microw. Guided Wave Lett., vol. 7, no. 8, pp. 227–228. (SCI) NSC-85-2622-E-002-009

5.

Hwann-Kaeo Chiou, Hao-Hsiung Lin, and Chi-Yang Chang, 1997 Aug. “Lumped-Element Compensated High/Low-Pass Balun Design for MMIC Double-Balanced Mixer,” IEEE Microw. Guided Wave Lett., vol. 7, no. 8, pp. 248–250. (SCI) NSC-85-2622-E-002-009

6.

Shau-Gang Mao, Hwann-Kaeo Chiou, and Chun Hsiung Chen, 1998 March “Modeling of Lumped-Element Coplanar-Stripline Low-Pass Filter,” IEEE Microw. Guided Wave Lett., vol. 8, no. 3, pp. 141–143. (SCI) NSC-87-2213-E-002-056

7.

Shau-Gang Mao, Hwann-Kaeo Chiou, and Chun Hsiung Chen, 1998 Oct. “Design and Modeling of Uniplanar Double-Balanced Mixer,” IEEE Microw. Guided Wave Lett., vol. 8, no. 10, pp. 354–356. (SCI) NSC-87-2213-E-002-056

8.

Hsien-Chin Chiu, Shih-Cheng Yang, Cheng-Kuo Lin, Ming-Jyh Hwu, Hwann-Kaeo Chiou, and Yi-Jen Chan, 2004 May “K-Band Monolithic InGaP-InGaAs DCFET Amplifier Using BCB Coplanar Waveguide Technology,” IEEE Electron Devices Lett., vol. 25, no. 5, pp. 253–255. (SCI) NSC-90-2219-E-008-003

9.

Cheng-Kuo Lin, Wen-Kai Wang, Yi-Jen Chan, and Hwann-Kaeo Chiou, 2005 Jan. “BCB-Bridged Distributed Wideband SPST Switch Using 0.25μm In0.5Al0.5As-In0.5Ga0.5As Metamorphic HEMTs,“ IEEE Trans. Electron Devices, vol. 52, no. 1, pp. 1–5. (SCI)

10.

Ping-Chun Yeh, Wei-Cheng Liu, and Hwann-Kaeo Chiou, 2005 Feb. “Compact 28-GHz Subharmonically Pumped Resistive Mixer MMIC Using a Lumped-Element High-Pass/Band-Pass Balun,” IEEE Microw. And Wireless Compon. Lett., vol. 15, no. 2, pp. 62–64. (SCI) NSC-92-2219-E-008-006

11.

Sung-Huang Lee, Yueh-Ta Chiang, Hwann-Kaeo Chiou, 2006 June “Quasi-constant-sensitivity VCO with offset-tuning PN junction varactor array,” Microwave and Optical Technology Lett., vol. 48, no. 6, pp. 1063–1066. (SCI) NSC-93-2219-E-008-006

12.

Kuei-Cheng Lin, Tsung-Yu Yang, Kuan-Yu Chen, and Hwann-Kaeo Chiou, 2006 Nov. “High Efficiency Open Collector Adaptive Bias SiGe HBT Differential Power Amplifier,” IEICE TRANS. Electronics, vol. E89-C, no. 11, pp. 1704–1707. (SCI) NSC-94-2219-E-008-006

13.

Hsin-Lung Tu, I-Shan Chen, Ping-Chun Yeh, and Hwann-Kaeo Chiou, 2006 Dec. “High Performance Spiral Inductor on Deep-Trench-Mesh Silicon Substrate,” IEEE Microw. And Wireless Compon. Lett., vol. 16, no. 12, pp. 654–656. (SCI) NSC-94-2219-E-008-006

14.

Ping-Chun Yeh, Tsung-Yu Yang, Wei-Cheng Liu, and Hwann-Kaeo Chiou, 2007 Jan. “A SiGe HBT variable gain low noise amplifier with on-chip active balun design,” Microwave and Optical Technology Lett., vol. 49, no. 1, pp. 42–45. (SCI) NSC-94-2219-E-008-006

15.

Hsin-Lung Tu, Tsung-Yu Yang, Kung-Hao Liang, and Hwann-Kaeo Chiou, 2007 Mar. “A 30 GHz 10 dB low noise amplifier using standard 0.18-μm CMOS technology,” Microwave and Optical Technology Lett., vol. 49, no. 3, pp. 647–649. (SCI) NSC-94-2219-E-008-006

16.

Hwann-Kaeo Chiou, Ping-Chun Yeh, Chwan-Ying Lee, John Yeh, Denny Tang, and John Chern, 2007 Mar. “Geometry Effect on SiGe HBT Unit-Cell for 1-Watt High Efficiency RF Power Amplifier Applications,” Jpn. J. Appl. Phys., vol. 46, no. 3A, pp. 917–925. (SCI) NSC-95-2221-E-008-043

17.

Hwann-Kaeo Chiou, Wan-Ru Lian, and Tsung-Yu Yang, 2007 June “A Miniature Q-Band Balanced Sub-Harmonically Pumped Image Rejection Mixer,” IEEE Microw. And Wireless Compon. Lett., vol. 17, no. 6, pp. 463–465. (SCI) NSC-95-2221-E-008-043

18.

Tsung-Yu Yang and Hwann-Kaeo Chiou, 2007 July “A 16-46 GHz Mixer Using Broadband Multilayer Balun in 0.18-μm CMOS Technology,” IEEE Microw. And Wireless Compon. Lett., vol. 17, no. 7, pp. 534–536. (SCI) NSC-95-2221-E-008-043

19.

Tsung-Yu Yang, Wan-Ru Lian, Chia-Chun Yang, and Hwann-Kaeo Chiou, 2007 July “A Compact V-Band Star Mixer Using Compensated Overlay Capacitors in Dual Balun,” IEEE Microw. And Wireless Compon. Lett., vol. 17, no. 7, pp. 537–539. (SCI) NSC-95-2221-E-008-043

20.

Sung-Huang Lee, Chin-Lung Li, Ying-Zong Juang, and Hwann-Kaeo Chiou, 2007 Aug. “Broadband RF grounding capacitor design for low power CMOS matrix distributed amplifier,” Microwave and Optical Technology Lett., vol. 49, no. 8, pp. 1911–1914. (SCI) NSC-94-2219-E-008-006

21.

H.-K. Chiou, T.-Y. Yang, Y.-C. Hsu, S.-G. Lin, Y.-Z. Juang, 2007 Sept. 13th “15-60 GHz asymmetric broadside coupled balun in 0.18 μm CMOS technology,” Electronics Lett., vol. 43, no. 19, pp. 1028–1030. (SCI)

22.

Hwann-Kaeo Chiou, Ping-Chun Yeh, Cheng-Chieh Lin, and Joseph D.-S. Deng, 2007 Nov. “Band switching matching networks for SiGe 2.4/5.2/5.8 GHz dual-band three-mode low noise amplifier,” Microwave and Optical Technology Lett., vol. 49, no. 11, pp. 2717–2721. (SCI) NSC-95-2221-E-008-043

23.

Hsien-Yuan Liao, Kuan-Yu Chen, Joseph D.-S. Deng, and Hwann-Kaeo Chiou, 2007 Nov. “0.35-μm SiGe BiCMOS variable-gain power amplifier for WiMAX transmitters,” Microwave and Optical Technology Lett., vol. 49, no. 11, pp. 2750–2753. (SCI) NSC-95-2221-E-008-043

24.

Hsien-Yuan Liao, Ching-Ming Tseng, and Hwann-Kaeo Chiou, 2008 Jan. “Ultra-wideband CMOS low noise amplifier with simultaneous gain and noise matches,” Microwave and Optical Technology Lett., vol. 50, no. 1, pp. 158–160. (SCI) NSC-95-2221-E-008-043

25.

Hsien-Yuan Liao, Ching-Ming Tseng, and Hwann-Kaeo Chiou, 2008 Jan. “Lossy LC ladder matching network for ultra-wideband CMOS Gilbert cell mixer design,” Microwave and Optical Technology Lett., vol. 50, no. 1, pp. 220–222. (SCI) NSC-95-2221-E-008-043

26.

Hwann-Kaeo Chiou, Ping-Chun Yeh, and Kuei-Cheng Lin, 2008 Feb. “High performance SiGe HBT power unit-cell for S-Band open collector adaptive bias power amplifier design,” Solid-State Electronics, vol. 52, no. 2, pp. 239–244. (SCI) NSC-95-2221-E-008-043

27.

Yu-Liang Lin, Hsien-Yuan Liao, and Hwann-Kaeo Chiou, 2008 Mar. “Bridged-shunt-series peaking technique for a 3.1–10.6 GHz ultra-wideband CMOS low noise amplifier,” Microwave and Optical Technology Lett., vol. 50, no. 3, pp. 575–578. (SCI) NSC-95-2221-E-008-043

28.

Ping-Chun Yeh, Hwann-Kaeo Chiou, Chwan-Ying Lee, John Yeh, Denny Tang, and John Chern, 2008 Mar. “An Experimental Study on High-Frequency Substrate Noise Isolation in BiCMOS Technology, ” IEEE Electron Devices Lett., vol. 29, no. 3, pp. 255–258. (SCI) NSC-96-2628-E-008-001-MY3

29.

Hwann-Kaeo Chiou and Tsung-Yu Yang, 2008 Apr. “Low-Loss and Broadband Asymmetric Broadside-Coupled Balun for Mixer Design in 0.18-μm CMOS Technology,” IEEE Trans. Microw. Theory Tech., vol. 56, no. 4, pp. 835–848. (SCI) NSC-96-2628-E-008-001-MY3

30.

Tsung-Yu Yang and Hwann-Kaeo Chiou, 2008 Apr. “A 25-75 GHz Miniature Double Balanced Frequency Doubler in 0.18-μm CMOS Technology,” IEEE Microw. And Wireless Compon. Lett., vol. 18, no. 4, pp. 275–277. (SCI) NSC-96-2628-E-008-001-MY3

31.

Ping-Chun Yeh, Hwann Kaeo Chiou, Chwan-Ying  Lee, John Yeh, Denny  Tang, and John  Chern, 2008 May “High power density, high efficiency 1-W SiGe power HBT for 2.4 GHz power amplifier applications,” Solid-State Electronics, vol. 52, no. 5, pp. 745–748. (SCI) NSC-96-2628-E-008-001-MY3

32.

Hwann-Kaeo Chiou and Hsien-Jui Chen, 2008 Dec. “Transformer-coupled injection for a V-band divide-by-three injection-locked frequency divider,” Microwave and Optical Technology Lett., vol. 50, no. 12, pp. 3169–3172. (SCI) NSC-96-2628-E-008-001-MY3

33.

Hwann-Kaeo Chiou and Yu-Lin Zou, 2008 Dec. “Second harmonic power combining technique for low phase noise cross-coupled push-push VCO,” Microwave and Optical Technology Lett., vol. 50, no. 12, pp. 3242–3246. (SCI) NSC-96-2628-E-008-001-MY3

34.

Hwann-Kaeo Chiou, Hsien-Jui Chen, Hsien-Yuan Liao, Shuw-Guann Lin, and Yin-Cheng Chang, 2008 Dec. “Design formula for band-switching capacitor array in wide tuning range low-phase-noise LC-VCO,” Microelectronics Journal, vol. 39, no. 12, pp. 1687–1692. (SCI) NSC-96-2628-E-008-001-MY3

35.

H.-K. Chiou, H.-Y. Liao, and K.-C. Liang, 2008 Dec. “Compact and low power consumption K-band differential low noise amplifier design using transformer feedback technique,” IET Microwaves, Antennas & Propagat., vol. 2, no. 8, pp. 871–879. (SCI) NSC-96-2628-E-008-001-MY3

36.

H.-K. Chiou and C.-F. Tai, 2009 May 7th “Dual-band microstrip bandstop filter using dual-mode loop resonator,” Electronics Lett., vol. 45, no. 10, pp. 507–509. (SCI) NSC-96-2628-E-008-001-MY3

37.

I-Shan Chen, Hwann-Kaeo Chiou, and Nan-Wei Chen, 2009 Oct. “V-Band On-Chip Dipole-Based Antenna,” IEEE Trans. Antennas Propagat., vol. 57, no. 10, pp. 2853–2861. (SCI) NSC-96-2628-E-008-001-MY3

38.

Hwann-Kaeo Chiou, Chin-Lung Li, Hsien-Yuan Liao, and Sung-Huang Lee, 2010 Jan. “Inductive Matching Technique for a Feed-Forward Noise-Cancelling CMOS Low Noise Amplifier,” Microwave and Optical Technology Lett., vol. 52, no. 1, pp. 72–75. (SCI) NSC-96-2628-E-008-001-MY3

39.

Hwann-Kaeo Chiou and Hsien-Jui Chen, 2010 Jan. “3.1 – 10.6 GHz Ultra-Wide Band RF Receiver in 0.18 μm CMOS Technology,” Microwave and Optical Technology Lett., vol. 52, no. 1, pp. 232–236. (SCI) NSC-96-2628-E-008-001-MY3

40.

Hwann-Kaeo Chiou, Hsien-Yuan Liao, Chien-Chung Chen, Shih-Ming Wang, and Cheng-Chung Chen, 2010 Feb. “A 2.6-GHz Fully Integrated CMOS Power Amplifier Using Power-Combining Transformer,” Microwave and Optical Technology Lett., vol. 52, no. 2, pp. 299–302.  (SCI) NSC-96-2628-E-008-001-MY3

41.

H.-K. Chiou, I-S. Chen, and W.-C. Chen, 2010 Mar. 4th. “High gain V-band active-integrated antenna transmitter using Darlington pair VCO in 0.13 μm CMOS process,” Electronics Lett., vol. 46, no. 5, pp. 321–322. (SCI) NSC-96-2628-E-008-001-MY3

42.

H.-K. Chiou and I.-S. Chen, 2010 “On-chip fgcpw lowpass and bandpass filters with low insertion loss and high stopband rejection for v-band applications,” Progress In Electromagnetics Research C, vol. 13, pp. 135–148. (EI) NSC-96-2628-E-008-001-MY3

43.

Hwann-Kaeo Chiou and Tsung-Yu Yang, 2010 Aug. “Post-linearization with image rejection for high IIP3 and image-rejection ratio of a 17 GHz CMOS low noise amplifier,” Microelectronics Journal, vol. 41, no. 8, pp. 494–501. (SCI) NSC-96-2628-E-008-001-MY3

44.

Hwann-Kaeo Chiou and Hsien-Yuan Liao, 2010 Sept. “Broadband and Low-Loss 1:9 Transmission-Line Transformer in 0.18-μm CMOS Process,” IEEE Electron Devices Lett., vol. 31, no. 9, pp. 921–923. (SCI) NSC-96-2628-E-008-001-MY3

45.

H.-Y. Liao, M.-W. Pan, and H.-K. Chiou, 2010 Oct. 28 “Fully-integrated CMOS class-E power amplifier using broadband and low-loss 1:4 transmission-line transformer,” Electronics Lett., vol. 46, no. 22, pp. 1490–1491. (SCI) NSC-99-2221-E-008-100-MY3

46.

Hwann-Kaeo Chiou and I-Shan Chen, 2010 Dec. “High-Efficiency Dual-Band On-Chip Rectenna for 35- and 94-GHz Wireless Power Transmission in 0.13-μm CMOS Technology,” IEEE Trans. Microw. Theory Tech., vol. 58, no. 12, pp. 3598–3606. (SCI) NSC-99-2221-E-008-100-MY3

47.

F.-M. Kuo, J.-W. Shi, H.-C. Chiang, H.-P. Chuang, H.-K. Chiou, C.-L. Pan, N.-W. Chen, H.-J. Tsai and C.-B. Huang, 2010 Oct. “Spectral Power Enhancement in a 100 GHz Photonic Millimeter-Wave Generator Enabled by Spectral Line-by-Line Pulse Shaping,” IEEE Photonics Journal, vol. 2, no. 5, pp. 718-727. (SCI)

48.

Jui-Yi Lin and Hwann-Kaeo Chiou, 2011 Jan. “Power-Constrained Third-Order Active Notch Filter Applied in IR-LNA for UWB Standards,” IEEE Trans. Circuits Syst. II, Exp. Briefs, vol. 58, no. 1, pp. 11–15. (SCI)

49.

Yuan-Chia Hsu, Hwann-Kaeo Chiou, Hsien-Ku Chen, Ta-Yeh Lin, Da-Chiang Chang, and Ying-Zong Juang, 2011 May “Low Phase Noise and Low Power Consumption VCO Using CMOS and IPD Technologies,” IEEE Trans. On Advanced Packaging, vol.1, no.5, pp.673-680. (SCI) NSC-99-2221-E-008-100-MY3

50.

Hwann-Kaeo Chiou, Jui-Yi Lin and Chiung-Feng Tai, 2011 May “Band selection filter for UWB/Ku dual-band LNA in CMOS process,” IET Microwaves, Antennas & Propagat., vol.5, no.7, pp.823-830. (SCI) NSC-99-2221-E-008-100-MY3

51.

Hsien-Yuan Liao and Hwann-Kaeo Chiou, 2011 Jun. “RF model and verification of through-silicon vias in fully-integrated SiGe power amplifier,” IEEE Electron Devices Lett., vol.32, no.6, pp.809-811. (SCI) NSC-99-2221-E-008-100-MY3

52.

Hwann-Kaeo Chiou and Jui-Yi Lin, 2011 Jun. “Symmetric offset stack Balun in standard 0.13 μm CMOS technology for three broadband and low-loss balanced passive mixer designs,” IEEE Trans. Microw. Theory Tech., vol.59, no.6, pp.1529-1538. (SCI) NSC-99-2221-E-008-100-MY3

53.

Hwann-Kaeo Chiou and Jui-Yi Lin, 2011 July  “Balanced Mixer Using Wideband Symmetric Offset Stack Balun in 0.18um CMOS,” Progress in Electromagnetics Research C, 2011, Vol.23, pp 41-54. (EI) NSC-99-2221-E-008-100-MY3

54.

Hwann-Kaeo Chiou,  Kuei-Cheng Lin, Wei-Hsien Chen, and Ying-Zong Juang, 2012 June “A 1-V 5-GHz self-bias folded-switch mixer in 90-nm CMOS for WLAN receiver,” IEEE Trans. Circuits Sys. I, vol. 59, no. 6, pp. 1215-1227. (SCI)

55.

Chiung-Feng Tai, and Hwann-Kaeo Chiou, 2012 July “A compact band selection filter in 0.18-μm CMOS technology,” IEICE Electronics Express (ELEX), vol. 9, no. 14, pp. 1166-1171. (SCI) NSC-99-2221-E-008-100-MY3

56.

Chiung-Feng Tai, and Hwann-Kaeo Chiou, 2012 July “Extended-resonant output matching design for 24GHz transformer-coupled CMOS VCO,” IEICE Electronics Express (ELEX), vol. 9, no. 14, pp. 1153-1159. (SCI) NSC-99-2221-E-008-100-MY3

57.

H.-T. Chou, J.-R. Liang, and H.-K. Chiou, 2012 Aug. 2 “V-band low-power Darlington-pair gate-pumped mixer with thin-film LC-hybrid linear combiner in 90 nm CMOS,” Electronics Lett., vol. 48, no. 16, pp. 1023–1024. (SCI) NSC-99-2221-E-008-100-MY3 < featured paper >

58.

K.-C. Lin, H.-K. Chiou, D.-C. Chang, Y.-Z. Juang, 2012 Aug. “2.1 dB noise figure 5.2 GHz CMOS low noise amplifier using wafer-level integrated passive device technology with a DC power consumption of 10 mW,” IET Microw. Antennas Propag., 2012, vol. 6, Iss. 11, pp. 1286- 1290. (SCI) NSC-99-2221-E-008-100-MY3

59.

Hwann-Kaeo Chiou and Hung-Ting Chou, 2013 March “A 4.6-mW 45-GHz Compact-Size Darlington-Pair LC-VCO in 0.18-um CMOS Technology,” Microwave and Optical Technology Lett., vol. 55, no. 3, pp. 648-652, Mar. 2013. (SCI) NSC-99-2221-E-008-100-MY3

60.

Hwann-Kaeo Chiou and Hung-Ting Chou, 2013 Jan. “A 0.4 V Microwatt Power Consumption Current-Reused Up-Conversion Mixer,” IEEE Microw. And Wireless Compon. Lett., vol. 23, no. 1, pp. 40–42, Jan. 2013. (SCI) NSC-99-2221-E-008-100-MY3

61.

Kuei-Cheng Lin, Hwann-Kaeo Chiou, Po-Chang Wu, Wei-Hsien Chen, Chun-Lin Ko, and Ying-Zong Juang, 2013 Aug. “2.4-GHz Complementary Metal Oxide Semiconductor Power Amplifier Using High-Quality Factor Wafer-Level Bondwire Spiral Inductor,” IEEE Trans. Compon. Packag. Manuf. Technol., vol.3, no.8, pp. 1286–1292, Aug. 2013. (SCI) NSC-99-2221-E-008-100-MY3

62.

Kuei-Cheng Lin, Hwann-Kaeo Chiou, Kuan-Hsiu Chien, Tsung-Yu Yang, Po-Chang Wu, Chun-Lin Ko, and Ying-Zong Juang, 2013 Apr. “A 4.2 mW 6 dB Gain 5 to 65 GHz Gate-pumped Down-conversion Mixer Using Darlington Cell for 60-GHz CMOS Receiver,” IEEE Trans. Microw. Theory Tech., vol.61, no.4, pp.1516-1522, Apr. 2013. (SCI) NSC-99-2221-E-008-100-MY3

63.

H.-K. Chiou and H.-Y. Chung, 2013 Apr. “A 2.5-7 GHz single balanced mixer with an integrated Ruthroff-type balun in 0.18-μm CMOS technology,” Electronics Lett., vol. 49, no. 7, pp. 474–475, Apr. 2013. (SCI) NSC-101-2221-E-008-073-MY3

64.

Hwann-Kaeo Chiou and Hung-Ting Chou, 2013 July “An Ultra-Low Power V-Band Source-Driven Down-Conversion Mixer with Low-Loss and Broadband Asymmetrical Broadside-Coupled Balun in 90 nm CMOS Technology,” IEEE Trans. Microw. Theory Tech., vol.61, no.7, pp. 2620–2631, July 2013. (SCI) NSC-99-2221-E-008-100-MY3

65.

Hwann-Kaeo Chiou, Yuan-Chia Hsu, Da-Chiang Chang, and Ying-Zong Juang, 2013 Sep.  “A 5 GHz Band Low Phase Noise CMOS VCO Using Above-IC Technologies,” Microwave and Optical Technology Lett., vol.55, no.9, pp. 2051–2055, Sep. 2013. (SCI) NSC-101-2221-E-008-073-MY3

66.

Hua-Yen Chung, Chin-Wei Kuo, and Hwann-Kaeo Chiou, 2013 Sep. “A full X-band power amplifier with an integrated Guanellatype transformer and a pre-distortion linearizer in 0.18 μ‑m CMOS,” Microwave and Optical Technology Lett., vol.55, no.9, pp. 2229–2232, Sep. 2013. (SCI) NSC-101-2221-E-008-073-MY3

67.

Hwann-Kaeo Chiou, Hua-Yen Chung, Yuan-Chia Hsu,Da-Chiang Chang, and Ying-Zong Juang, 2013 “Broadband and High-Efficiency Power Amplifier that Integrates CMOS and IPD Technology,” IEEE Trans. Compon. Packag. Manuf. Technol., vol.3, no.9, pp. 1489–1497. (SCI) NSC-101-2221-E-008-073-MY3

68.

Hwann-Kaeo Chiou and Hung-Ting Chou, “A 35-to-83 GHz Multiconductor-Lines Signal Combiner for High Linear and Wideband Mixer,” IEEE Microw. And Wireless Compon. Lett., vol. 23, no. 10, pp. 548–550, 2013. (SCI) NSC-101-2221-E-008-073-MY3

69.

Chin-Wei Kuo, Hwann-Kaeo Chiou, and Hua-Yen Chung, “An 18 to 33 GHz Fully-Integrated Darlington Power Amplifier with Guanella-Type Transmission-Line Transformers in 0.18-μm CMOS Technology,” IEEE Microw. And Wireless Compon. Lett., vol. 23, no. 12, pp. 668–670, 2013. (SCI) NSC-101-2221-E-008-073-MY3

70.

Hua-Yen Chung, Hwann-Kaeo Chiou, Yuan-Chia Hsu, Tsung-Yu Yang, and Chia-Long Chang, “Design of Step-Down Broadband and Low-Loss Ruthroff-Type Baluns Using IPD Technology,” IEEE Trans. Compon. Packag. Manuf. Technol., vol.4, no.6, pp. 967–974, 2014. (SCI) NSC-101-2221-E-008-073-MY3

71.

H.-K. Chiou, S.-C. Kuo, and H.-Y. Chung, “14–30 GHz low-power sub-harmonic single-balanced gate-pumped mixer with transformer combiner in 0.18 μm CMOS,” IET Electronics Lett., vol. 50, no. 16, pp. 1141–1143, 2014. (SCI) NSC-101-2221-E-008-073-MY3

72.

Cihun-Siyong Alex Gong, Yu-Lin Tsou, Yan-Hsien Yang, Hwann-Kaeo Chiou, I-Chyn Wey, Meng-Tsan Tsai, Changhoung Yu and Lingling Lin, “Design and implementation of a voltage-controlled oscillator for MICS-based sensor network system,” International Journal of Microwave and Wireless Technologies, Mar. 2015. (SCI)

73.

Jian-Ying Chen, Hung-Ting Chou, and Hwann-Kaeo Chiou, “A -187.7-FoM V-band low-power CMOS VCO using modified fT -Doubler with current-reused technique,” Microwave and Optical Technology Lett., vol. 57, no. 7, pp. 1752–1755, Jul. 2015. (SCI) MOST-103-2221-E-008-114-MY3

74.

Kuan-Hsiu Chien and Hwann-Kaeo Chiou, “44 pJ/bit energy-efficiency K-band OOK transmitter for wireless sensor networks,” IET Electronics Lett., vol. 51, no. 15, pp. 1207–1209, 2015. (SCI) NSC-101-2221-E-008-073-MY3

75.

Chien, K.-H.; Chen, J.-Y., and Chiou, H.-K., “Designs of K-Band Divide-by-2 and Divide-by-3 Injection-Locked Frequency Divider With Darlington Topology,” IEEE Trans. Microw. Theory Tech., vol. 63, no.9, pp. 2877–2888, Sep. 2015. (SCI) MOST-103-2221-E-008-114-MY3

76.

Yuan-Chia Hsu, Hwann-Kaeo Chiou,*,Hua-Yen Chung, Tsung-Yu Yang, Chia-Long Chang  andYing-Zong Juang, “A V-band band-pass filter design using advanced integrated passive devices technology,” Microwave and Optical Technology Lett., vol. 58, no. 1, pp. 199-202, Jan., 2016. (SCI) MOST-103-2221-E-008-114-MY3 

77.

Kuei-Cheng Lin, Hwann-Kaeo Chiou*, Chun-Lin Ko, Po-Chang Wu, Hann-Huei Tsai, Ying-Zong Juang, "Compact high-linearity, high-efficiency complementary metal- oxide- semiconductor power amplifier with post-distortion lineariser for wireless local area network and Wireless Gigabit Alliance applications,” IET Microw. Antennas Propag., 2016, vol. 10, Iss. 4, pp. 464-470. (SCI) MOST-103-2221-E-008-114-MY3 

78.

Hwann-Kaeo Chiou* and Kuan-Hsiu Chien, “A 9.5 mW fully integrated K-band OOK receiver with -47.6 dBm sensitivity and 600 Mbps data rate in 90-nm CMOS,” IET Electronics Lett., vol. 52, no. 12, pp. 1175 - 1177, 23rd June 2016. (SCI) MOST-103-2221-E-008-114-MY3 .

79.

Po-Hsun Chen, Hwann-Kaeo Chiou*, and Yuan-Chang Wang, “A K-band 24.1% PAE wideband unilateralized CMOS power amplifier using differential transmission-line transformers in 0.18-μm CMOS,” IEEE Microw. and Wireless Compon. Lett., vol. 26, no. 11, pp. 924–926, 2016. (SCI) MOST 103-2221-E-008-114-MY3

B.

Conferences

1.

Hao-Hsiung Lin, J.-S. Lin, Hwann-Kaeo Chiou, and Si-Chen Lee, 1984 “Determination of AlGaAs Γ15-Γ1 Band Gap Energy by Schottky Barrier Spectral Response Measurement,” Annual Meeting of the Chinese Material Science Association, pp. 225–228.

2.

Hwann-Kaeo Chiou, C. Z. Chen, and Si-Chen Lee, 1985 “AlGaAs Buried Heterostructure Lasers,” Annual Conference of Chinese Society for Material Science, Taipei, Taiwan, pp. 224.

3.

Hwann-Kaeo Chiou and Si-Chen Lee, 1985 “AlGaAs/GaAs Buried Heterostructure Lasers,” The 11th Electronic Devices and Material Symposium (EDMS), Hsinchu, Taiwan.

4.

Hwann-Kaeo Chiou, N. D. Nieu, “High Performance Broad Band Thin Film Circulator at X Band,” Proceedings of edms’87, pp. 49–51.

5.

Hwann-Kaeo Chiou “An X-Band Frequency Synthesizer,” Proceedings of 1991 International Electronic Defense Symposium, pp. 162–165, (1987).

6.

Hwann-Kaeo Chiou, C.-Y. Chang, C.-C. Chang, and T.-H. Wang, 1992 Dec. “A mm-Wave Broadband Schottky Diode Fequency Doubler,” 1992 R.O.C. Radar Technology Conference Digest, pp.204–207.

7.

C.-Y. Chang, Hwann-Kaeo Chiou, C.-S. Wu, and C.-C. Chang, 1993 Apr. “Multi-Octave DC Block and RF Choke Using Planar Circuit Technology,” Proceedings of 1993 Trans. Pacific Electronic Warfare Symposium, pp. 184–190.

8.

Hwann-Kaeo Chiou and C.-Y. Chang, C.-S. Wu, and C.-C. Chang, 1993 Apr. “A 10 GHz Coplanar Waveguide Distribution Amplifier,” Proceedings of 1993 Eesof User Group Meeting in Asia.

9.

C.-Y. Chang, Hwann-Kaeo Chiou, C.-L. Tseng, and C.-C. Chang, 1993 Oct. 18–21 “The Realization of Low Impedance CPW Lines,” 5th IEEE Asia-Pacific Microwave Conference (APMC), Hsinchu, Taiwan, pp. 5-60–5-65.

10.

C.-Y. Chang, Hwann-Kaeo Chiou, F.-T. Tsai, and C.-C. Chang, 1993 Oct. 18–21 “A CPW to Microstrip Transition Suitable for Probe Measurement,” 5th IEEE Asia-Pacific Microwave Conference (APMC), Hsinchu, Taiwan, pp. 14-33–14-36.

11.

C.-Y. Chang, Hwann-Kaeo Chiou, H.-M. Liu, and C.-C. Chang, 1993 Oct. 18–21 “A New Design for Planar Circuit Crossover Works Up to 26.5 GHz,” 5th IEEE Asia-Pacific Microwave Conference (APMC), Hsinchu, Taiwan, pp. 14-37–14-40.

12.

C.-Y. Chang, Hwann-Kaeo Chiou, T.-H. Wang, and C.-C. Chang, 1993 Oct. 18–21 “A CPW Inductor Coupled Bandpass Filter,” 5th IEEE Asia-Pacific Microwave Conference (APMC), Hsinchu, Taiwan, pp. 16-64–16-68.

13.

Hwann-Kaeo Chiou, C.-Y. Chang, C.-S. Wu, and C.-C. Chang, 1994 July “A CPW Amplifier Using Series Stub Matching,” Proceedings of 1994 HP-Eesof User Group Meeting.

14.

Hwann-Kaeo Chiou, Chi-Yang Chang, Hwan-Min Liu, Pao-Kuei Horng, Te-Hui Wang, and Chung-Sen Wu, 1994 July 12–15 “Two X-band Monolithic Voltage Controlled Oscillators,” International Electron Devices and Materials Symposium (IEDMS), Hsinchu, Taiwan, pp. 11-6-21–11-6-24.

15.

Hwann-Kaeo Chiou, “ The Analysis and Synthesis of Suspended Coplanar waveguide Lange Coupler,” Internal Report in C.S.I.S.T.

16.

Huang, H. C. Tsai, Hwann-Kaeo Chiou, and H. H. Lin, “Fabrication and characterization of high speed InAlAs/InGaAs heterojunction bipolar transistors, “ pp.297-300, Proceeding of the first radio science symposium, Kaohsiung, Taiwan.  (1995).

17.

Hwann-Kaeo Chiou, C. Y. Chang, and and H. H. Lin, ‘’A uniplanar broad band double balanced mixer using a novel balun design, “ 1995 International Symposium on communications, Vol 2 pp.1221-1228, (1995).

18.

Hwann-Kaeo Chiou, S. J. Shen, H. J. Hung, and H. H. Lin, ‘’A GaAs MMIC transceiver chip-set for 2.4 GHz WLAN RF front end, ‘’ 1996 IEDMS, Symposium B, B2-6, pp. 77-80, Hsinchu, Taiwan.  (1996).

19.

Hwann-Kaeo Chiou, Y.U. Juang and H.H. Lin, “ Lumped dual balun for miniature MMIC star and double double balanced mixer design,” 1996 National Sympt. On Telecommunications, pp292-297, (1996).

20.

Hwann-Kaeo Chiou, C.Y. Chang and H.H. Lin, “ A novel lumped-element balun for MMIC double balanced mixer design,” The fourth Sympt.. on Nano device technology,(1996).

21.

Hwann-Kaeo Chiou, and H.H. Lin“ A Miniature MMIC Double Doubly Balanced Mixer Using Lumped Dual Balun For High Dynamic Receiver Application “The fourth Sympt.. on Nano device technology, (1996).

22.

Hwann-Kaeo Chiou, C. Y. Chang, and Hao-Hsiung Lin “ A uniplanar 1.5 to 40 GHz double-balanced mixer using a novel balun design ,” Proc. HP-EESOF 1996 User Group Conference, July (1996).

23.

徐榮輝,邱煥凱,張志揚 “ 處理X-頻帶高功率移相器 ,” Proc. HP-EESOF 1996 User Group Conference, July (1996).

24.

Hwann-Kaeo Chiou, Y.U. Juang and H.H. Lin, “ 應用於2.4 GHz ISM頻帶砷化鎵微波單石積體電路晶片組之研製”, 1997 HP user group meeting 論文競賽首獎, (1997)

25.

Hwann-Kaeo Chiou, Y.U. Juang and H.H. Lin, “ High performance GaAs MMIC transceiver chip set for 2.4 GHz WLAN RF front end,” 1997 International Symposium on communications, (1997).

26.

Y.U. Juang, Hwann-Kaeo Chiou,and H.H. Lin, “ Low power Consumption Design for Two Stage Low Noise Amplifier,” Proceedings of EDMS’97,Chung-Li, Taiwan, R.O.C. pp. 492-495.(1997).

27.

Joseph D.-S. Deng , Hwann-Kaeo Chiou, P. T. Jya, T. H. Wang and C. S. Wu, “ An Experimental Method for Microwave SMT Package Characterization,” Proc. HP-EESOF 1998 User Group Conference, July

28.

Joseph D.-S. Deng and Hwann-Kaeo Chiou, 1998 Oct. 26–28 “ Considerations of Characterizing Standard SMT Packages for RFIC applications,” 7th Topical Meeting on Electrical Performance of Electronic Packaging, West Point, NY, pp. 97–100.

29.

Joseph D.-S. Deng and Hwann-Kaeo Chiou, “Characterization of Commercial SMT Packages for Wireless Communication Application,” 1998 International Symposium on communications, P115-118,(1998).

30.

Hwann-Kaeo Chiou, and Chung-Tai Chan and Hao-Hsiung Lin, “5.7 GHz GaAs MMIC Transeciver Chip for 5.7 GHz RF Front End.” 1998 International Symposium on communications, Hsinchu, Taiwan, P202-205,(1998).

31.

Wen-Chieh Wu, Hwann-Kaeo Chiou, and Chung-Tai Chan and Hao-Hsiung Lin, “ GaAs Monolithic 1.5 to 2.8 GHz Tunable Ring Oscillator with Quadrature Output.” 1998 International Symposiym on Compound Semiconductor, Nara, Japan,(1998).

32.

Wen-Chieh Wu, Hwann-Kaeo Chiou, and Chung-Tai Chan and Hao-Hsiung Lin, “ GaAs Monolithic Wide Bandwidth Voltage Controlled Oscillator with Quadrature Output.” 1998 IEDMS, Symposium B, B3-7, pp. 98-101, Tainan, Taiwan. (1998).

33.

Wen-Chieh Wu, Hwann-Kaeo Chiou, and Chung-Tai Chan and Hao-Hsiung Lin, “ High Performance 2.4 GHz GaAs Monolithic Image Rejection Mixer.” 1998 IEDMS, Symposium B, B3-8, pp. 102-105, Tainan, Taiwan. (1998).

34.

Joseph D.-S. Deng, H.C. Lee, Yu Shan Jen and Hwann-Kaeo Chiou, “Characterization of Multilayer Circuit Components for Microwave Applications,” 1999 International Multilayer Circuits Symposium, Hsinchu, Taiwan, B4-1-B4-10,(1999).

35.

Hwann-Kaeo Chiou, “ MMIC Chip Set for 5.8 GHz WLAN Application,” 第三代通訊系統核心技術與WB-CDMA/WLL系統發展研討會, Taoyuan, Taiwan, B2-1-B2-19, (1999).

36.

Hwann-Kaeo Chiou, and Wen-Chung Wang “RF and IF Transceiver of Subscriber Unit for WB-CDMA Wireless Local Loop Applications” 2000 National Sympt. On Telecommunications, pp 2-6, (2000).

37.

Hwann-Kaeo Chiou, and Shing-Yeu Juang , Cheng-Li Tseng, “RF Module for 5.8 GHz WLAN Applications,” 2000 National Sympt. On Telecommunications, pp1-351, (2000).

38.

Joseph D.-S. Deng and Hwann-Kaeo Chiou, “Characterization on effects of small discontinuities on transmission lines,” 2000 National Sympt. On Telecommunications, pp2-221, (2000).

39.

Ping-Chun Yeh, Chih-Hung Hsieh, Chwan-Ying Lee, Yu-Lin Chu, Kuan-Lun Chang, Denny Tang, John Chern and Hwann-Kaeo Chiou, 2004 Jan. “Geometrical Effect Analysis on fT and fmax of 0.18 μm SiGe HBT,” IEEE Topical Workshop on Power Amplifiers for Wireless Communications.

40.

Jenq-Pyng Chen and Hwann-Kaeo Chiou, 2004 Aug. 10–13 “The Implementation of 5.8 GHz Hartley Image-Rejection Receiver using 0.18 μm CMOS Technology,” 15th VLSI Design/CAD Symposium, Kenting Taiwan.

41.

Tsung-Yu Yang, Wei-Cheng Liu and Hwann-Kaeo Chiou, 2004 Aug. 10–13 “A SiGe HBT Variable Gain LNA with Reconfigured Interstage Matching Network for 802.11b/g Applications,” 15th VLSI Design/CAD Symposium, Kenting Taiwan.

42.

Cheng-Chieh Lin and Hwann-Kaeo Chiou, 2004 Aug. 10–13 “A SiGe HBT Direct Conversion Receiver for Wide Band CDMA Application,” 15th VLSI Design/CAD Symposium, Kenting Taiwan.

43.

Ping-Chun Yeh, Wei-Cheng Liu, and Hwann-Kaeo Chiou, 2004 Sept. 19–25 “Ka-Band Power Amplifier for LMDS Application,” Cross Strait Tri-Regional Radio Science and  Wireless Technology Conference, Hsinchu, Taiwan.

44.

Tsung-Yu Yang, Wei-Cheng Liu, and Hwann-Kaeo Chiou, 2004 Sept. 19–25 “5 GHz Differential VCO Using HBT Technology,” Cross Strait Tri-Regional Radio Science and  Wireless Technology Conference, Hsinchu, Taiwan.

45.

Sung-Huang Lee, Ying-Zong Juang, Chin-Fong Chiu, and Hwann-Kaeo Chiou, 2004 Dec. 6–9 “A Novel Low Noise Design Method for CMOS L-degeneration Cascoded LNA,” IEEE Asia-Pacific Conference on Circuits and Systems (A-CAS), vol. 1, pp. 273–276.

46.

Cheng-Chieh Lin, Ping-Chun Yeh, and Hwann-Kaeo Chiou, 2004 Dec. 6–9 “An Evaluation of SiGe/Si HBT High Efficient Power Amplifiers for High Dynamic Range Power Control Applications,” IEEE Asia-Pacific Conference on Circuits and Systems (A-CAS), vol. 1, pp. 281–284.

47.

Ping-Chun Yeh, Kuei-Cheng Lin, Hwann-Kaeo Chiou, 2004 Dec. 6–9 “A 1.8-V Monolithic SiGe HBT Power Amplifier with a Novle Proposed Linearizing Bias Circuit,” IEEE Asia-Pacific Conference on Circuits and Systems (A-CAS), vol. 1, pp. 305–308.

48.

June-Hong Taie, Jenq-Pyng Chen, and Hwann-Kaeo Chiou, 2004 Dec. 20–23 “A Low Insertion Loss 5.8-GHz Band SPDT T/R Switch Using 0.18 μm CMOS Technology,” International Electron Devices and Materials Symposium (IEDMS), Hsinchu, Taiwan, pp 427–430.

49.

Tsung-Yu Yang, Wei-Cheng Liu, and Hwann-Kaeo Chiou, 2004 Dec. 20–23 “A Compact Size High Efficient MMIC Drive Amplifier for LMDS Applications,” International Electron Devices and Materials Symposium (IEDMS), Hsinchu, Taiwan, pp 509–512.

50.

Tsung-Yu Yang, Jenq-Pyng Chen and Hwann-Kaeo Chiou, 2005 Aug. “A 5.8Ghz CMOS Doubly Balanced Sub-Harmonic Mixer for Direct Conversion Receiver,” 16th VLSI Design/CAD Symposium, Hualien, Taiwan.

51.

Chih-Yu Tsai and Hwann-Kaeo Chiou, 2005 Aug. “A Differential Variable Gain SiGe BiCMOS LNA Design Using Current Splitting and Feedback Techniques,” 16th VLSI Design/CAD Symposium, Hualien, Taiwan.

52.

Yueh-Ta Chiang and Hwann-Kaeo Chiou, 2005 Aug. “A Quasi-Constant KVCO SiGe BiCMOS VCO Design for WCDMA Application,” 16th VLSI Design/CAD Symposium, Hualien, Taiwan.

53.

Kuei-Cheng Lin, and Hwann-Kaeo Chiou, 2005 Aug. “A Variable Gain Active Predistorter for High Linearity SiGe HBT Differential Drive Amplifier Design,” 16th VLSI Design/CAD Symposium, Hualien, Taiwan.

54.

Sung-Huang Lee, Chi-Yu Lai, Hwann-Kaeo Chiou, 2005 Nov. 30–Dec. 02 “A Filter-based, SSB Mixer for UWB Application,” IEEE International Workshop on Radio-Frequency Integration Technology (RFIT), Singapore, pp. 109–112.

55.

Sung-Huang Lee, Chih-Yu Tsai, Hwann-Kaeo Chiou, 2005 Nov. 30–Dec. 02 “A SiGe Down-Conversion Micromixer for Wideband-CDMA Application,” IEEE International Workshop on Radio-Frequency Integration Technology (RFIT), Singapore, pp. 165–167.

56.

Chiung-Feng Tai, Chih-Yu Tsai, Hwann-Kaeo Chiou, 2005 Nov. 30–Dec. 02 “A Differential Variable Gain SiGe BiCMOS LNA Design Using Current Splitting and Feedback Techniques,” IEEE International Workshop on Radio-Frequency Integration Technology (RFIT), Singapore, pp. 179–182.

57.

Hsin-lung Tu, Tsung-Yu Yang and Hwann-Kaeo Chiou, 2005 Dec. 4–7 “Low phase noise VCO design with Symmetrical Inductor in CMOS 0.35-μm Technology,” 17th IEEE Asia-Pacific Microwave Conference (APMC), Suzhou, China, pp. 1119–1122.

58.

Tsung-Yu Yang, Li-Chih Pai and Hwann-Kaeo Chiou, 2005 Dec. 4–7 “A Compact Ka-band Power Amplifier using Finite-Ground Coplanar Waveguide Design,” 17th IEEE Asia-Pacific Microwave Conference (APMC), Suzhou, China, pp. 2959–2962.

59.

Kan-Jen Cheng, Tsung-Yu Yang, and Hwann-Kaeo Chiou, 2005 Dec. 4–7 “A Compact Ka Band Sub-harmonically Resistive Mixer MMIC Using Miniature Hybrid Elements,” 17th IEEE Asia-Pacific Microwave Conference (APMC), Suzhou, China, pp. 3375–3378.

60.

Tsung-Yu Yang, Hsin-Lung Tu, and Hwann-Kaeo Chiou, 2006 May 21–24 “Low-voltage High-linear and Isolation Transformer Based Mixer for Direct Conversion Receiver,” IEEE International Symposium on Circuits and Systems (ISCAS), Island of Kos, Greece, pp. 3754–3757.

61.

Tsung-Yu Yang, and Hwann-Kaeo Chiou, 2006, June 11–13 “A 28 GHz Sub-harmonic Mixer Using LO Doubler in 0.18-μm CMOS Technology,” IEEE Radio Frequency Integrated Circuits (RFIC) Symposium, San Francisco, CA, pp. 209–212.

62.

Kuan-Yu Chen, and Hwann-Kaeo Chiou, 2006 Aug. “A SiGe HBT Differential Power Amplifier with Open Collector Adaptive Biasing,” 17th VLSI Design/CAD Symposium, Hualien, Taiwan.

63.

Ching-Ming Tseng, Hsien-Yuan Liao, and Hwann-Kaeo Chiou, 2006 Aug. “A Multi-Octave LC Ladder Loss-Compensation CMOS Mixer Design Using 0.18-μm CMOS Technology,” 17th VLSI Design/CAD Symposium, Hualien, Taiwan.

64.

Hsien-Jui Chen, and Hwann-Kaeo Chiou, 2006 Aug. “A Low Phase Noise Wide Tuning Range Complementary LC Cross-coupled VCO for 802.11 WLAN Applications,” 17th VLSI Design/CAD Symposium, Hualien, Taiwan.

65.

Hsien-Yuan Liao, Kuan-Yu Chen, and Hwann-Kaeo Chiou, 2006, Dec. 1–2 “Variable-Gain Driving Amplifier for WiMAX Application,” National Symposium on Telecommunications (NST), Kaohsiung, Taiwan, pp. 132.

66.

Hsien-Yuan Liao, Cheng-Chieh Lin , and Hwann-Kaeo Chiou, 2006, Dec. 1–2 “Design of Direct-Conversion Receiver for W-CDMA Application,” National Symposium on Telecommunications (NST), Kaohsiung, Taiwan, pp. 133.

67.

Kai-Yun Lin, I-Shan Chen, and Hwann-Kaeo Chiou, 2006, Dec. 12–15 “A 26-65 GHz GaAs pHEMT Cascaded Single Stage Distributed Amplifier with High Gain/Area Efficiency,” 18th Asia-Pacific Microwave Conference (APMC), Yokohama, Japan, vol. 2, pp. 722–725.

68.

Yu-Lin Zou, I-Shan Chen, and Hwann-Kaeo Chiou, 2006, Dec. 12–15 “A High Performance Ka-band Push-Push Oscillator Design Using Finite Ground CPW Structure,” 18th Asia-Pacific Microwave Conference (APMC), Yokohama, Japan, vol. 3, pp. 751–754.

69.

Chiung-Feng Tai, I-Chia Chen, and Hwann-Kaeo Chiou, 2006, Dec. 12–15 “A Novel Bandpass Filter Design Using Cascaded CPW/Slotline Ring Resonators with Tapered Step Impedance CPW Fed Structure.” 18th Asia-Pacific Microwave Conference (APMC), Yokohama, Japan, vol. 3, pp. 1557–1560.

70.

Nein-Yi Li, Doug Collins, Shashank Jatar, Olga Lavrova, Chris Helms, Wenlin Luo, Linlin Liu, Chiyu Liu, Mei Qiu, Kent Roff, Charlie Wang, Chia-Chun Yang, and Hwann-Kaeo Chiou, 2007 Jan. 24 “Design and Manufacturing of 10G GenX VCSELs at Emcore.” Proc. Of SPIE, San Jose, CA, vol. 6484,  pp. 648402-1–648402-11.

71.

Yu-Liang Lin, Feng-Lin Shiu, and Hwann-Kaeo Chiou, 2007 Aug. 7–10 “A 3.1–10.6 GHz Ultra-Wideband CMOS Low Noise Amplifier Using Bridged-Shunt-Series Peaking Technique,” 18th VLSI Design/CAD Symposium, Hualien, Taiwan.

72.

Ying-Ta Lu, Hsien-Yuan Liao, Shau-Liang Lu, Joseph D.-S. Deng, and Hwann-Kaeo Chiou, 2007 Aug. 7–10 “Differential Feed-forward Transconductor Design for High Linearity WiMax Subharmonic Mixer,” 18th VLSI Design/CAD Symposium, Hualien, Taiwan.

73.

Yin-Cheng Chang, Yin-Chung Chiu, Shuw-Guann Lin, Ying-Zong Juang, and Hwann-Kaeo Chiou, 2007 Oct. 8–12 “High Phase Accuracy On-Wafer Measurement for Quadrature Voltage-Controlled Oscillator,” 37th European Microwave Conference (EuMC), Munich, Germany, pp. 340–343.

74.

Hsien-Jui Chen and Hwann-Kaeo Chiou, 2007 Nov. 8–9 “Implementation on 3.1 -10.6 GHz Ultra-Wide Band RF Front-End Receiver in 0.18-μm CMOS Technology,” Taiwan-Japan Joint Conference on Communication Technology, Hsinchu, Taiwan.

75.

Jhih-Hong Chen, Yan-Hsien Yang, Hwann-Kaeo Chiou, and Joseph D.-S. Deng, 2007 Nov. 23–24 “Switched Tuning 6440~6600 MHz Differential Colpitts VCO for WiMAX Application,” National Symposium on Telecommunications (NST), Taipei, Taiwan.

76.

Hsien-Yuan Liao, Ying-Ta Lu, Joseph D.-S. Deng, and Hwann-Kaeo Chiou, 2007 Dec. 09–11 “Feed-Forward Correction Technique for a High Linearity WiMAX Differential Low Noise Amplifier,” IEEE International Workshop on Radio-Frequency Integration Technology (RFIT), Singapore, pp. 218–221.

77.

Hsien-Yuan Liao, Keko-Chun Liang, and Hwann-Kaeo Chiou, 2007 Dec. 11–14 “A Compact and Low Power Consumption K-band Differential Low Noise Amplifier Design Using Transformer Feedback Technique,” 19th Asia-Pacific Microwave Conference (APMC), Bangkok, Thailand, pp. 571–574. <Student Paper Award>

78.

Hsien-Yuan Liao, Chia-Chun Yang, and Hwann-Kaeo Chiou, 2007 Dec. 11–14 “A Compact V-band Subharmonic Resistive Mixer Using LO Stacked Marchand Balun and RF Miniaturized Power Divider,” 19th Asia-Pacific Microwave Conference (APMC), Bangkok, Thailand, pp. 1673–1676.

79.

Feng-Lin Shiu, and Hwann-Kaeo Chiou, 2008 May “Inductor-less Low Power Low Noise Amplifier for Medical Implant Communication System,” 15th Symposium on Nano Device Technology (SNDT), Hsinchu, Taiwan, pp. 72.

80.

Sheng-Chi Chen, and Hwann-Kaeo Chiou, 2008 May “Low Voltage Operation VCO Using Transformer Feedback Technique,” 15th Symposium on Nano Device Technology (SNDT), Hsinchu, Taiwan, pp. 74.

81.

Yin-Cheng Chang, Yuan-Chia Hsu, Shuw-Guann Lin, Ying-Zong Juang, and Hwann-Kaeo Chiou, 2008 June 15–20 “On-Wafer Single Contact Quadrature Accuracy Measurement Using Receiver Mode in Four-Port Vector Network Analyzer,” IEEE MTT-S International Microwave Symposium, Atlanta, GA, pp. 371–374.

82.

I-Shan Chen and Hwann-Kaeo Chiou, 2008 Oct. 27–30 “On-Wafer Millimeter Wave Dipole Antenna with a Novel Horizontal Directed Structure,” International Symposium on Antennas and Propagation, Taipei, Taiwan, pp. 198–201.

83.

Yan-Hsien Yang , Wei-Ciang Chen , and Hwann-Kaeo Chiou, 2008 Dec. 5–6 “Ultra Low Power VCO Design for 403.5 MHz MICS Band Applications,” National Symposium on Telecommunications (NST), Yunlin, Taiwan, pp. 822–826.

84.

Feng-Lin Shiu, Po-Ning Chen, and Hwann-Kaeo Chiou, 2008 Dec. 5–6 “Inductor-less Low Power Mixer for Medical Implant Communication System,” National Symposium on Telecommunications (NST), Yunlin, Taiwan, pp. 827–830.

85.

Hsien-Yuan Liao, Jhih-Hong Chen, Hwann-Kaeo Chiou, and Cheng-Chung Chen, 2008 Dec. 16–20 “High-Linearity CMOS Feedforward Power Amplifier for WiMAX application,” 20th Asia-Pacific Microwave Conference (APMC), Hong Kong, China.

86.

Hwann-Kaeo Chiou and I-Shan Chen, 2009 Mar. 23–27 “A Compact and Low Loss V-band Lowpass Filter Using Coplanar Waveguide Structure,” 25th Progress In Electromagnetics Research Symposium (PIERS), Beijing, China, pp. 1743–1745.

87.

Hsien-Yuan Liao, Jhih-Hong Chen, Hwann-Kaeo Chiou, and Shih-Ming Wang, 2009 May 24–27 “Harmonic Control Network for 2.6 GHz CMOS Class-F Power Amplifier,” IEEE International Symposium on Circuits and Systems (ISCAS), Taipei, Taiwan, pp. 1321–1324.

88.

Yin-Cheng Chang, Shuw-Guann Lin, Hsien-Yuan Liao, Ying-Zong Juang, and Hwann-Kaeo Chiou, 2009 Sept. 28–Oct. 1 “On-Wafer Differential Noise Figure and Large Signal Measurements of Low-Noise Amplifier,” 39th European Microwave Conference (EuMC), Rome, Italy, pp. 699–702.

89.

Hwann-Kaeo Chiou and Sheng-Chi Chen, 2009 Dec. 7–10 “Low Phase Noise Ku-Band Gm-Boosting Differential Colpitts VCO,” 21th Asia-Pacific Microwave Conference (APMC), Singapore, pp. 313–316.

90.

Yin-Cheng Chang, Shuw-Guann Lin, Hwann-Kaeo Chiou, Da-Chiang Chang, and Ying-Zong Juang, 2010 Dec. 7–10 “On-Wafer Noise Figure Measurements of Millimeter-Wave LNA and Mixer,” 22th Asia-Pacific Microwave Conference (APMC), Yokohama, Japan, pp. 1424–1427.

91.

Hsu-Feng Hsiao, Shuw-Guann Lin, Hwann-Kaeo Chiou, Da-Chiang Chang, and Ying-Zong Juang, 2010 Dec. 7–10 “On-Wafer mm-Wave V-band Semi-Automatic Power Measurement System,” in 22th Asia-Pacific Microwave Conference (APMC), Yokohama, Japan, pp. 1432–1435.

92.

Hwann-Kaeo Chiou, Kuan-Zung Lee, and Shang-Ju Wu, 2010 Dec. 7–10 “A High Performance V-Band Low Noise Amplifier Using Thin-Film Microstrip (TFMS) Lines in 0.13μm CMOS Technology,” in 22th Asia-Pacific Microwave Conference (APMC), Yokohama, Japan, pp. 1513–1516.

93.

Hung-Ting Chou, Zhi-Lin Ke, Hya-Yen Chung, and Hwann-Kaeo Chiou, 2011, Aug. “A 0.7 V 25 GHz low power compact size CMOS low noise amplifier using forward   body-bias technique,” in 21th VLSI Design/CAD Symposium, Yunlin, Taiwan.

94.

Hung-Ting Chou , Zhi-Lin Ke , Hwann-Kaeo Chiou, 2011 Dec. 5–8 “A low power compact size forward body-biased K-band CMOS low noise amplifier,” in 25th Asia-Pacific Microwave Conference (APMC), Melbourne, Austria, pp. 494-497.

95.

Kuei-Cheng Lin, Hwann-Kaeo Chiou, Po-Chang Wu, Da-Chiang Chang, and Ying-Zong Juang, 2012 Apr. 23–25 “Variable Gain Active Predistorter with Linearity Enhancement for a 2.4 GHz SiGe HBT Power Amplifier Design,” in 2012 International Symposium on VLSI Design, Automation and Test (2012 VLSI-DAT), Hsinchu, Taiwan.

96.

Sy-Haur Su, Shuw-Guann Lin, Hsu-Feng Hsiao, Da-Chiang Chang, and Hwann-Kaeo Chiou, 2012 May 14–16 “Digital Modulation/Demodulation Measurement System within Connected Solution,” 18th International Mixed-Signals, Sensors, and Systems Test Workshop (2012 IMS3TW), Taipei,Taiwan.

97.

Hua-Yen Chung, Yuan-Chia Hsu, Hwann-Kaeo Chiou, Da-Chiang Chang, and Ying-Zong Juang, 2012 Jun. 17–22 “Broadband and Low-loss Ruthroff-type Transmission Line Transformer in Integrated Passive Devices Technology,” in 2012 Internation Microwave Sympsoium (IMS2012), Montréal, Canada.

98.

Hsu-Feng Hsiao, Shuw-Guann Lin, Sy-Haur Su, Chih-Ho Tu, Hwann-Kaeo Chiou, Da-Chiang Chang, and Ying-Zong Juang, 2012 May 13–16 “Bit Error Rate Measurement System for Radio Frequency Integrated Circuits,” in 2012 IEEE International Instrumentation and Measurement Technology Conference (I2MTC 2012), Graz, Austria.

99.

Hwann-Kaeo Chiou, and Hung-Ting Chou, 2012, Aug. 7-10 “A Fully-Integrated Three-Stage Pseudo-Differential Millimeter-Wave CMOS Power Amplifier with Wideband Reduced-Size Wilkinson Power Divider/Combiner,” in 23th VLSI Design/CAD Symposium, Pingtung, Taiwan.

100.

Hung-Ting Chou , Zhi-Lin Ke , Hwann-Kaeo Chiou, 2012, Dec. 4–7 “A Low-Power, Compact Size Millimeter-Wave Two-Stage Current-Reused Low Noise Amplifier in 90-nm CMOS Technology,” in 26th Asia-Pacific Microwave Conference (APMC), Kaohsiung, Taiwan, Dec. 2012, pp. 750-752.

101.

Ya-Wen Ou, Sy-Haur Su, Yin-Cheng Chang, Shuw-Guann Lin, Hsu-Chen Cheng, Ying-Zong Juang, and Da-Chiang Chang, and Hwann-Kaeo Chiou, 2013, May 6–9,  “Phase Noise and Transient Measurement Methods for V-band Applications,” in 2013 IEEE International Instrumentation and Measurement Technology Conference (I2MTC 2013), Minneapolis, United States, May 2013, pp. 461–464.

102.

Hung-Ting Chou, Shin-Wei Chen, and Hwann-Kaeo Chiou, 2013 Jun. 02–07 “A Low-Power Wideband Dual-Feedback LNA Exploiting the Gate-Inductive Bandwidth/Gain-Enhancement Technique,” in 2013 Internation Microwave Sympsoium (IMS2013), Seattle, United States, 2013 Jun..

103.

Hung-Ting Chou, Yuan-Chang Wang, and Hwann-Kaeo Chiou, 2013, Aug. 6-9  “A High-Gain Two-Stage WiMAX/WLAN Power Amplifier Adopting Self-Biased Cascode Topology in 0.18-µm CMOS Technology,” in 24th VLSI Design/CAD Symposium, Kaohsiung, Taiwan.

104.

Y. C. Chiu, and H. K. Chiou, 2013 Sep. 03–07 “A 4.7-mW K-band Low Noise Amplifier with Transformer-Feedback Technique for Low-Power and Compact-Size Design,” in 2013 Asia-Pacific Radio Science Conference (AP-RASC’13), Howard International House, Taipei, Taiwan.

105.

Kuan-Hsiu Chien, and Hwann-Kaeo Chiou, Nov. 5-8, 2013, “A 0.6-6.2 GHz Wideband LNA Using Resistive Feedback and Gate Inductive Peaking Techniques for Multiple Standards Application,” in 27th Asia-Pacific Microwave Conference (APMC 2013), Coex, Soule, South Korea.

106.

Tzu-Yi Lian, Kuan-Hsiu Chien and Hwann-Kaeo Chiou, Nov. 5-8, 2013, “An Improved Gm-boosted Technique for a K-band Cascode Colpitts CMOS VCO,” in 27th Asia-Pacific Microwave Conference (APMC 2013), Coex, Soule, South Korea.

107.

Kuei-Cheng Lin, Hwann-Kaeo Chiou, Po-Chang Wu, Chun-Lin Ko,Hann-Huei Tsai, and Ying-Zong Juang, Nov. 5-8, 2013,“A 28 dBm Pout 5-GHz CMOS Power Amplifier Using Integrated Passive Device Power Combining Transformer,” in 27th Asia-Pacific Microwave Conference (APMC 2013), Coex, Soule, South Korea.

108.

Jian-Ying Chen, Hung-Ting Chou, Kuan-Hsiu Chien and Hwann-Kaeo Chiou, 2013 Nov. 15–16 “The Implementation of a Low-Power Divide-by-2 Injection-Locked Frequency Divider Using the Current-Reused fT-Doubler Topology,” National Symposium on Telecommunications (NST), Tainan, Taiwan.

109.

Kuei-Cheng Lin, Hwann-Kaeo Chiou, Po-Chang Wu, Hann-Huei Tsai, Ying-Zong Juang, and Chun-Lin Ko, June 1-5, 2014,“5-GHz SiGe Linearity Power Amplifier Using Integrated Feedforward Architecture for WLAN Applications,” 2014 IEEE International Symposium on Circuits and Systems (ISCAS 2014), Melbourne, Australia.

110.

Kuan-Hsiu Chien, and Hwann-Kaeo Chiou, May 7-10, 2014,“Design of a K-Band Wireless Sensor Network On-off Keying Transmitter with Active Power,” the 3rd International Symposium on Next-Generation Electronics (ISNE 2014), Taoyuan, Taiwan.

111.

Yao Chen Kuo and Hwann-Kaeo Chiou, Aug. 5-8, 2014, “A Ku-Band Wide Locking Range ILFD with Low Q Tank and Double Injection Techniques,” in 25th VLSI Design/CAD Symposium, Taichung, Taiwan.

112.

Ching-I Chien, Yuan-Chang Wang, Kuan-Hsiu Chien and Hwann-Kaeo Chiou, Nov. 4-7, 2014, “A Low Power, Wide Bandwidth K-band Transformer Feedback Low Noise Amplifier with Current-Reused Topology,” in 28th Asia-Pacific Microwave Conference (APMC 2014), Sendai, Japan.

113.

Yuan-Chang Wang, Hwann-Kaeo Chiou and Kuan-Hsiu Chien, Nov. 4-7, 2014, “A Constant Output Power Q-band VCO with Distributed Cross-coupled -Gm Core and A-mode pMOS Varactors,” in 28th Asia-Pacific Microwave Conference (APMC 2014), Sendai, Japan.

114.

Ya-Wen Ou, Yin-Cheng Chang, Shuw-Guann Lin, Da-Chiang Chang, and Hwann-Kaeo Chiou, 2015, May 11-14, “Full-span error calibration method for on-chip quadrature accuracy measurement,” in 2015 IEEE International Instrumentation and Measurement Technology Conference (I2MTC 2015), Pisa, Italy, May, 2015.

115.

Tzu-Yun Chou, Kuan-Hsiu Chien, and Hwann-Kaeo Chiou, “An Ultra Low-power and Low-noise VCO Using Transformer Coupled Dual LC Tanks Topology,” in 36th In Electromagnetics Research Symposium (PIERS), Prague, Czech Republic, European Union, 6-9 July, 2015.

116.

Shuw-Guann Lin, Da-Chiang Chang, Ying-Zong Juang and Hwann-Kaeo Chiou, “Comparison Study of Scalar and Vector Calibrations for Wideband Modulation Signals,” in 45th European Microwave Conference (EuMC), 2015, Paris, France. 7th – 10th, September 2015.

117.

Kuan-Hsiu Chien, Yuan-Chia Hsu, Ta-Yeh Lin, and Hwann-Kaeo Chiou, Aug. 4-7, 2015, “Design of the low power consumption and low phase noise VCO using CMOS and IPD technologies for K-band application,” in 26th VLSI Design/CAD Symposium, Hualien, Taiwan.

118.

Hsu-Liang Yen, Kuan-Hsiu Chien, and Hwann-Kaeo Chiou, Aug. 4-7, 2015, “A DC to15 GHz CMOS T/R Switch by Using Negative Body-Biasing Technique,” in 26th VLSI Design/CAD Symposium, Hualien, Taiwan.

119.

Hsin-Chieh Lin and Hwann-Kaeo Chiou, Aug. 2-5, 2016, “A 4.67 to 8.49 GHz wideband high efficiency CMOS PA for WLAN applications in 0.18 μm CMOS Technology,” in 27th VLSI Design/CAD Symposium, Kaohsiung, Taiwan.

120.

Hsu-Liang Yen and Hwann-Kaeo Chiou, Aug. 2-5, 2016, “A 2.5-8.5 GHz wideband LNA using self-feedforward body bias and series-shunt inductive peaking techniques for multi-standard applications,” in 27th VLSI Design/CAD Symposium, Kaohsiung, Taiwan.

121.

Yao Chen Kuo and Hwann-Kaeo Chiou, 2016, Aug. 24-26, Taipei. “Analysis of time and frequency domains for a C-band injection locked VCO,” IEEE International Symposium on Radio-Frequency Integration Technology (RFIT). MOST 104-2221-E-008 -084.

C.

Patents

1.

“Lumped constant compensated high/low pass balanced-to-unbalanced transition” 美國專利 發明第6052039號 (2000/04/18)

2.

“集總常數補償式高低通平衡至不平衡轉換器” 中華民國專利 發明第00445707號 (2001/07/11)

3.

“集總常數帶通/高通平衡至非平衡轉換器電路結構” 中華民國專利 發明第I264176號(2006/10/11)

 

 

D.

Books

1.

著作名稱:微波積體電路設計(低雜訊放大器、功率放大器、振盪器、混頻器共四章)

出版處所:教育部顧問室通訊科技人才培育先導型計劃(通訊元件教學推動中心主編,教育部顧問室 補助)

出版時間:中華民國96年3月

2.

著作名稱:ADS應用於功率放大器設計與模擬

編著者:邱煥凱、林貴城

出版處所:國立清華大學出版社

出版時間:中華民國103年5月. ISBN 978-986-6116-43-8

 

 

E.

Technical Reports or other Publications

1.

廖顯原、林志昇、蘇耿立、邱煥凱,”3DIC矽穿孔等效模型研究”,電光先鋒,第14期,82-89頁,2010年07月。

2.

林劭冠、章殷誠、邱煥凱、張大強,“晶圓級毫米波雜訊指數量測考量”,電子月刊,第219期,98-108頁,2013年10月。

3.

邱煥凱、林劭冠、章殷誠、張大強,“四相位振盪器之四相正交精準度量測技術”,電子月刊,第219期, 110-125頁,2013年10月。

 

 

Last Update : 2016/12/22