Department of Electronic Engineering

Chun-Ta Chen, Professor

  • Laboratory/類比積體電路設計實驗室 ES405
  • Education/國立彰化師範大學 電機工程學系博士
  • Specialty/射頻積體電路設計、類比積體電路設計

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揚智科技 (90年8月起迄92年9月)
國立金門技術學院電子系助理教授(97年8月起迄100年7月)
國立金門大學電子系助理教授(100年8月起迄102年1月)
國立金門大學電子系副教授(102年2月起迄107年7月)
國立金門大學電子工程系系主任(106年8月起迄109年7月)
國立金門大學電子系教授(108年8月起迄112年7月)
國立金門大學電機系教授(112年8月起迄115年7月)
國立雲林科技大學電子系教授(115年8月起迄今) 

(A)期刊論文:
 
  1. Jun-Da Chen, Zhao-Ping Zeng, “Analysis and Design of Marchand Balun and Its Application in CMOS Down-Conversion Mixers for Satellite Network Receivers,” Integration, the VLSI Journal, February 2026. (SCI full paper; corresponding author) Q2 Journal ranking:184/368
  2. Jun-Da Chen, Liang-Chung Shen, “An S to Ku band Wideband Low-Voltage Low-Power Up-Conversion Mixer in 0.18-μm CMOS technology, ” Integration, the VLSI Journal, vol. 106,  January 2026. (SCI full paper; corresponding author) Q2 184/368
  3. Jun-Da Chen, Shan-Yi Cheng, “ A High Isolation 16–19 GHz Down-Conversion Mixer in 0.18-μm SiGe Bi-CMOS, ” Integration, the VLSI Journal, vol. 102, May 2025. (SCI full paper; corresponding author)Q2 184/368
  4.  Jun-Da Chen, Jia-Yu Wu, “  A 24–30 GHz Wideband, Low Voltage, Low-Power Down-Conversion Mixer in 0.18-μm SiGe Bi-CMOS Technology, ”  Circuits Syst Signal Process, March 2025. (SCI full paper; corresponding author) Q3 223/368
  5. Jun-Da Chen, Zhi-Xiang Chen, “An Ultra-Wideband Low-Voltage High-Gain Up-conversion CMOS mixer in CMOS 0.18-µm Technology for 3–16 GHz,” International Journal of Circuit Theory and Applications, March 2025. (SCI full paper; corresponding author) Q3 259/368
  6. Jun-Da Chen, Jia-bin Qian, “ A Highly Linear, Low Power, Highly Efficient, CMOS Wideband Power Amplifier for 2–5 GHz Wireless Communications, ” Circuits Syst Signal Process, vol. 43, pp. 4691–4714 2024. (SCI full paper; corresponding author) Q3 223/368
  7. Jun-Da Chen, Meng-Kai Jian, “A 1–18-GHz High-Gain and Low-Voltage Down-C onversion Mixer in 0.18-μm CMOS Technology, ” in IEEE Access, vol. 11, pp. 120944-120954, 2023. (SCI full paper; corresponding author) Q2 130/368
  8. Jun-Da Chen, Zhi-Xiang Chen, “A 2.8–10 GHz CMOS Current Reuse Cascaded Linearity Improving Ultra-Wideband Low Noise Amplifier,” Circuits Systems and Signal Processing, vol. 42, pp. 5091–5107, 2023. (SCI full paper; corresponding author) Q3 223/368
  9. Jun-Da Chen, Meng-kai Jian, “A 1.5–7 GHz wideband low-voltage low-power switched transconductor up-conversion mixer,” AEU - International Journal of Electronics and Communications, vol. 134, May 2021,153681. (SCI full paper; corresponding author) Q2 143/368
  10. Jun-Da Chen, Jia-bin Qian, and Sheng-yi Huang, “A Low-Noise and High-Gain Folded Mixer for a UWB System in 0.18-μm SiGe Bi-CMOS Technology, ”IEEE Transactions on Circuits and Systems II: Express Briefs, vol. 68, no. 2, pp. 612–616, Feb. 2021. (SCI; corresponding author) Q1 81/368
  11. Jun-Da Chen and Jia-bin Qian,“Low-power up-conversion folded CMOS mixer for 2–12 GHz ultra-wideband applications,” IET Microwaves, Antennas & Propagation, vol. 14, no. 15, pp. 1975–1982, December 2020. doi: 10.1049/iet-map.2020.0287. (SCI full paper; corresponding author) Q3 289/368
  12. Jun-Da Chen and Wen-Jun Wang, “A K-Band Low-Noise and High-Gain Down-Conversion Active Mixer Using 0.18-µm CMOS Technology,” Wireless Personal Communications, vol. 104, no.1, pp. 407–421, Jan. 2019. doi: 10.1007/s11277-018-6027-4. (SCI full paper; corresponding author) Q3 76/120
  13. Jun-Da Chen and Wen-Jun Wang, “ A 1.5~5 GHz CMOS broadband low-power high-efficiency power amplifier for wireless communications, Integration, the VLSI Journal, vol. 63, pp.167–173, Sept. 2018. doi: 10.1016/j.vlsi.2018.07.003 (SCI full paper; corresponding author) Q2 184/368
  14. Jun-Da Chen and Jie Zhang, “ A 0.7V 6.66–9.36 GHz Wide Tuning Range CMOS LC VCO With Small Chip Size,” International Journal of Electronics, vol. 104, no.10, pp. 1763–1776, May 2017. doi 10.1080/00207217.2017.1326173  (SCI full paper; corresponding author) (NSC 100-2221-E-507-003) Q4  295/368
  15. Jun-Da Chen and Song-Hao Wang, “A Low-Power, High-Gain, and Low-Noise 802.11a Down-Conversion Mixer in 0.35-µm SiGe Bi-CMOS Technology,” Journal of Circuits, Systems, and Computers, vol. 26, no.9, 1750134, September 2017. (SCI full paper; corresponding author) doi: 10.1142/S0218126617501341 Q4 304/368
  16. Jun-Da Chen and Song-Hao Wang, “A Low-Power and High-Gain Ultra-Wideband Down-Conversion Active Mixer in 0.18-µm SiGe Bi-CMOS Technology,” Circuits Systems and Signal Processing, vol. 36, no.7, pp.2635–2653, July. 2017. (SCI full paper; corresponding author) Q3 223/368
  17. Jun-Da Chen and Cheng-Kai Ye, “Design of a CMOS bandgap Reference Circuit with a Wide temperature Range, High Precision and Low temperature coefficient,” Journal of Circuits, Systems, and Computers, vol. 23, no.8, pp.1–17, Jan. 2014. (SCI full paper; corresponding author) Q4  304/368
  18.  Jun-Da Chen, “A Low-Voltage Ultra-Wideband Down-Conversion Mixer With Improved Power Conversion Gain,” International Journal of Electronics, vol. 98, no. 8, pp.1055–1073, August 2011. (SCI full paper; corresponding author) Q4  295/368
  19. Jun-Da Chen, “A Low-Power Ultrawideband Low-Noise Amplifier in 0.18

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Department of Electronic Engineering, YunTech

123 University Road, Section 3,Douliou, Yunlin 64002, Taiwan, R.O.C. (Department of Electronic Engineering Office ES202)

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Email:uel@yuntech.edu.tw