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周肇基

周肇基

Jau-Ji Jou - 電信組

英文名字: Jau-Ji Jou
分  機: 15653
電子郵件: jjjou@nkust.edu.tw
學  歷: 國立台灣科技大學 電子工程博士
專  長: 光纖通訊
積體電路設計
光纖放大器
光電元件

 

重點設備

  1. 積體電路設計相關軟體
  2. 高速光纖傳輸效能量測設備

研究領域

  1. 摻鉺光纖光放大器之分析與研究
  2. 光纖通訊高速光接收與發射積體電路設計
  3. 電壓控制振盪器、鎖相迴路、時脈與資料回復電路之設計
  4. 光纖感測之分析與研究

近年國科會專題計畫

近年之研究成果

期刊論文

  1. J.-J. Jou*, P.-Y. Wang, W. Hidayat, B.-H. Liu, C.-L. Yang, C.-L. Tseng, “A low-power 3-Gb/s PRBS generator using an improved TSPC D-type flip-flop in 0.18 µm CMOS technology,” Circuits, Systems, and Signal Processing, online publish, 4 Feb. 2026. DOI: 10.1007/s00034-025-03482-2
  2. J.-J. Jou*, C.-L. Yang, C.-L. Tseng, C.-C. Yao, J.-Y. Zheng, “Real-time monitoring of high-speed signal quality using asynchronous sampling, amplitude sorting, and artificial neural network and its FPGA implementation,” International Journal of Circuit Theory and Applications, Vol. 53, No. 12, pp. 7260-7270, Dec. 2025. DOI: 10.1002/cta.4557
  3. J.-J. Jou*, P.-Y. Wang, B.-H. Liu, C.-L. Yang, C.-L. Tseng, “Wide-range tunable ring VCO with band-switching in 0.18-μm CMOS technology,” Circuits, Systems, and Signal Processing, online publish, Oct. 2025. DOI: 10.1007/s00034-025-03384-3
  4. W. Hidayat, P.-H. Tseng, J.-H. Liu, J.-J. Jou*, “Design and verification of a 53-Gb/s PAM-4 cooled DFB-LD TOSA employing cost-effective TO-CAN package,” IEEE Access, Vol. 13, pp. 155855-155864, Sept. 2025. DOI: 10.1109/ACCESS.2025.3605604
  5. W. Hidayat, P.-H. Chen, C.-L. Yang, J.-Y. Yeh, C.-P. Chao, and J.-J. Jou*, “Design and fabrication of a four-channel CWDM cooled DFB-LD module with OSFP electrical interface for CPO external laser sources,” Optics Continuum, Vol. 4, No. 8, pp. 1719-1731, Aug. 2025. DOI: 10.1364/OPTCON.569826
  6. J.-J. Jou*, T.-T. Shih, and T.-Y. Wu, “VCSEL driver with synthesis of 25-Gb/s PAM-4 signal in 90-nm CMOS technology,” Analog Integrated Circuits and Signal Processing, Vol. 114, No. 3, pp. 379-386, Mar. 2023. DOI: 10.1007/s10470-022-02111-1
  7. J.-J. Jou*, T.-T. Shih, and H.-W. Hsu, “32-Gb/s NRZ and 40-Gb/s PAM-4 transimpedance amplifier paralleling with a differentiator for bandwidth enhancement in 90-nm CMOS technology,” Circuits, Systems, and Signal Processing, Vol. 41, No. 2, pp. 621-635, Feb. 2022. DOI: 10.1007/s00034-021-01826-2
  8. J.-J. Jou*, T.-T. Shih, C.-C. Peng, H.-W. Hsu, and X.-Y. Ye, “Inductorless broadband transimpedance amplifier for 25-Gb/s NRZ and 50-Gb/s PAM-4 operations in a 90-nm CMOS technology,” Journal of Semiconductor Technology and Science, Vol. 21, No. 5, pp. 304-310, Oct. 2021. DOI: 10.5573/JSTS.2021.21.5.304
  9. J.-J. Jou*, T.-T. Shih, and T.-Y. Wu, “A 50-Gb/s PAM-4 VCSEL diode driver in 90-nm CMOS technology,” Microwave and Optical Technology Letters, Vol. 63, No. 6, pp. 1682-1687, June 2021. DOI: 10.1002/mop.32790
  10. J.-J. Jou*, T.-T. Shih, and C.-L. Chiu, “400-Gb/s optical transmitter and receiver modules for on-board interconnects using polymer waveguide arrays,” OSA Continuum, Vol. 1, No. 2, pp. 658-667, Oct. 2018. DOI: 10.1364/OSAC.1.000658
  11. J.-J. Jou*, T.-T. Shih, Z.-X. Su, C.-Y. Liao, and W. Wang, “Low-cost coaxial DFB LD transmitter optical subassembly for 25-Gb/s NRZ and 50-Gb/s PAM-4 transmissions,” IET Optoelectronics, Vol. 12, Iss. 5, pp. 233-238, Oct. 2018. DOI: 10.1049/iet-opt.2018.0027
  12. H.-Y. Kao, Z.-X. Su, H.-S. Shih, Y.-C. Chi, C.-T. Tsai, H.-C. Kuo, C.-H. Wu, J.-J. Jou, T.-T. Shih, and G.-R. Lin*, “CWDM DFBLD transmitter module for 10-km inter-data center with single-channel 50-Gbit/s PAM-4 and 62-Gbit/s QAM-OFDM,” Journal of Lightwave Technology, Vol. 36, No. 3, pp. 703-711, Feb. 2018. DOI: 10.1109/JLT.2017.2777822
  13. H.-Y. Kao, Y.-C. Chi, C.-T. Tsai, S.-F. Leong, C.-Y. Peng, H.-Y. Wang, J. J. Huang, J.-J. Jou, T.-T. Shih, H.-C. Kuo, W.-H. Cheng, C.-H. Wu, and G.-R. Lin*, “Few-mode VCSEL chip for 100-Gb/s transmission over 100 m multimode fiber,” Photonics Research, Vol. 5, No. 5, pp. 507-515, Oct. 2017. DOI: 10.1364/PRJ.5.000507
  14. C.-T. Tsai, C.-Y. Peng, Y.-C. Wu; S.-F. Leong, H.-Y. Kao, H.-Y. Wang, Y.-W. Chen, Z.-K. Weng, Y.-C. Chi, H.-C. Kuo, J.-J. Huang, T.-C. Lee, T.-T. Shih, J.-J. Jou, W.-H. Cheng, C.-H. Wu, and G.-R. Lin*, “Multi-mode VCSEL chip with high-indium-density InGaAs/AlGaAs quantum-well pairs for QAM-OFDM in multi-mode fiber,” IEEE Journal of Quantum Electronics, Vol. 53, No. 4, p. 2400608, Aug. 2017. DOI: 10.1109/JQE.2017.2703645
  15. H.-Y. Kao, C.-T. Tsai, S.-F. Leong, C.-Y. Peng, Y.-C. Chi, J.-J. Huang, H.-C. Kuo, T.-T. Shih, J.-J. Jou, W.-H. Cheng, C.-H. Wu, and G.-R. Lin*, “Comparison of single-/few-/multi-mode 850 nm VCSELs for optical OFDM transmission,” Optics Express, Vol. 25, No. 14, pp. 16347-16363, Jul. 2017. DOI: 10.1364/OE.25.016347
  16. T.-T. Shih*, Y.-C. Chi, R.-N. Wang, C.-H. Wu, J.-J. Huang, J.-J. Jou, T.-C. Lee, H.-C. Kuo, G.-R. Lin, and W.-H. Cheng, “Efficient heat dissipation of uncooled 400-Gbps (16×25-Gbps) optical transceiver employing multimode VCSEL and PD arrays,” Scientific Reports, 7, 46608, Apr. 2017. DOI: 10.1038/srep46608
  17. J.-J. Jou*, T.-T. Shih, C.-Y. Wu, and Z.-X. Su, “Low-cost TO-CAN package combined with flexible and hard printed circuit boards for 25-Gb/s optical subassembly modules,” Opt. Eng., Vol. 56, No. 2, pp. 026108, Feb. 2017. DOI: 10.1117/1.OE.56.2.026108
  18. T.-J. Su, S.-M. Wang, H.-Q. Vu, J.-J. Jou*, and C.-K. Sun, “Mean arterial pressure control system using model predictive control and particle swarm optimization,” Microsystem Technologies, Article first published online: 25 Nov. 2016. DOI: 10.1007/s00542-016-3212-9
  19. C.-L. Tseng, Y.-W. Lin, P.-J. Chiang*, and J.-J. Jou, “Homo-multilayer ITO films on PET substrates using roll-to-roll sputtering method,” Journal of Chung Cheng Institute of Technology, vol. 45, No. 2, pp. 23-28, Nov. 2016. (EI)
  20. C.-L. Tseng*, Y.-W. Lin, P.-J. Chiang, Y.-T. Cheng, J.-J. Jou and C.-K. Liu, “Wavelength-adjustable all optical wavelength conversion using a tunable fiber laser and an electro-absorption modulator,” Optica Applicata, vol. 46, No. 3, pp. 347-352, 2016. DOI: 10.5277/oa160302
  21. T.-T. Shih, J.-J. Jou*, and S.-S. Chu, “Analysis of high frequency performance of TO-46 header through three-dimensional full wave electromagnetic model and circuit model,” Int. J. Numer. Model., Article first published online: 10 Jun. 2015, vol. 29, issue 2, pp. 301-308, Mar/Apr. 2016. (SCI/EI) DOI: 10.1002/jnm.2077
  22. T.-T. Shih*, C.-W. Yu, J.-J. Jou, and C. L. Chiu,Fundamental properties of localized surface plasmons of organic electro-optical devices doped with metallic nano-particles: a review,” Reviews in Advanced Sciences and Engineering, vol. 4, pp. 22-28, Mar. 2015. (EI)
  23. C.-W. Yu, C.-L. Chiu*, T.-T. Shih, and J.-J. Jou, “A stable and compact optical module for fiber-optic gyroscope application,” Fiber and Integrated Optics, vol. 33, pp. 306-314, 2014. (SCI/EI) DOI: 10.1080/01468030.2014.923070
  24. J.-J. Jou*, C.-K. Liu, and F.-S. Lai, “Gamma-ray irradiation effects on dynamic gain of erbium-doped fiber amplifiers,” Optica Applicata, vol. 40, pp. 921-926, 2010. (SCI/EI)
  25. Z.-R. Lin, C.-K. Liu*, G. Keiser, S.-L. Lee, K.-C. Lai, H.-C. Chang, C.-L. Tseng, and J.-J. Jou, “A low-cost passive optical network for television broadcasting and high-speed bidirectional communications in intelligent buildings,” J. Chinese Ins. Eng., vol. 33, pp. 707-716, 2010. (SCI, EI) DOI: 10.1080/02533839.2010.9671660
  26. C.-L. Tseng*, J.-J. Jou, C.-K. Liu, and J.-H. Jian, “A multiwavelength erbium-doped fiber MOPA laser with partial overlapping linear cavities,” Optica Applicata, vol. 39, pp.579-585, 2009. (SCI/EI)
  27. C.-L. Tseng, C.-K. Liu*, J.-J. Jou, W.-Y. Lin, C.-W. Shih, S.-C. Lin, S.-L. Lee, and G. Keiser, “Bidirectional transmission using tunable fiber lasers and injection-locked Fabry-Perot laser diodes for WDM access networks,” IEEE Photon. Technol. Lett., vol. 20, pp. 794-796, May 2008. (SCI, EI) DOI: 10.1109/LPT.2008.921116
  28. J.-J. Jou* and C.-K. Liu, “Equivalent circuit model for erbium-doped fibre amplifiers including amplified spontaneous emission,” IET Optoelectron., vol. 2, pp. 29-33, Feb. 2008. (SCI, EI) DOI: 10.1049/iet-opt:20060095
  29. J.-J. Jou* and C.-K. Liu, “Computer aided analysis of distortions in SCM systems with EDFAs including chirping effect,” AEU-Int. J. Electron. Commun., vol. 61, pp. 243-248, Apr. 2007. (SCI, EI) DOI: 10.1016/j.aeue.2006.05.010
  30. J.-J. Jou*, C.-K. Liu, and S.-L Lee, “A unified circuit model for static and dynamic analyses of semiconductor optical amplifiers and laser diodes,” Solid-State Electron., vol. 51, pp. 360-365, Mar. 2007. (SCI, EI) DOI: 10.1016/j.sse.2007.01.035
  31. C.-K. Liu*, J.-J. Jou, S.-K. Liaw, and H.-C. Lee, “Computer-aided analysis of transients in fiber lasers and gain-clamped fiber amplifiers in ring and line configurations through a circuit simulator,” Opt. Commun., vol. 209/4-6, pp. 427-436, Aug. 2002. (SCI, EI) DOI: 10.1016/S0030-4018(02)01729-7
  32. J.-J. Jou and C.-K. Liu*, “Application of SPICE simulation to study WDM and SCM systems using EDFAs with chirping,” IEEE T. Educ., vol. 45, pp. 238-244, Aug. 2002. (SCI, EI) DOI: 10.1109/TE.2002.1024616
  33. J.-J. Jou, C.-K. Liu*, C.-M. Hsiao, H.-H. Lin, and H.-C. Lee, “Time-delay circuit model of high-speed p-i-n photodiodes,” IEEE Photon. Technol. Lett., vol. 14, pp. 525-527, Apr. 2002. (SCI, EI) DOI: 10.1109/68.992599
  34. J.-J. Jou, F.-S. Lai, B.-H. Chen, and C.-K. Liu*, “On-line extraction of parameters in erbium-doped fiber amplifiers,” J. Chinese Ins. Eng., vol. 23, pp. 615-623, Sept. 2000. (SCI, EI) DOI: 10.1080/02533839.2000.9670582
  35. C.-K. Liu*, F.-S. Lai, and J.-J. Jou, “Analysis of nonlinear response in erbium-doped fiber amplifiers,” Opt. Eng., vol. 39, pp. 1548-1555, June 2000. (SCI, EI) DOI: 10.1117/1.602528
  36. F.-S. Lai, C.-K. Liu*, and J.-J. Jou, “Analyses of distortions and cross modulations in erbium-doped fiber amplifiers,” IEEE Photon. Technol. Lett., vol. 11, pp. 545-547, May 1999. (SCI, EI) DOI: 10.1109/68.759393
  37. F.-S. Lai, J.-J. Jou, and C.-K. Liu*, “Indicator of amplified spontaneous emission in erbium doped fiber amplifiers,” Elecrton. Lett., vol. 35, pp. 587-588, Apr. 1999. (SCI, EI) DOI: 10.1049/el:19990383
  38. C.-K. Liu*, F.-S. Lai, J.-J. Jou, and M.-C. Chiang, “Temperature and electromagnetic effects on erbium-doped fiber amplifier systems,” Opt. Eng., vol. 37, pp. 2095-2100, July 1998. (SCI, EI) DOI: 10.1117/1.601726
  39. C.-K. Liu*, J.-J. Jou, and F.-S. Lai, “Second-order harmonic distortion and optimal fiber length in erbium-doped fiber amplifiers,” IEEE Photon. Technol. Lett., vol. 7, pp. 1412-1414, Dec. 1995. (SCI, EI) DOI: 10.1109/68.477266

會議論文

  1. P.-Y. Wang, J.-H. Liu, B.-Z. Zhang, T.-L. Hsieh, Jau-Ji Jou*, “Four-Channel 200 Gb/s PAM-4 Electro-Absorption-Modulated Laser Module,” 11th IEEE International Conference on Applied System Innovation (ICASI 2025), Tokyo, Japan, April 22-25, 2025, J250143.
  2. C.-H. Chen, T.-Y. Chen, M.-J. Jiang, B.-H. Liu, J.-J. Jou, C.-Y. Lien, S.-I Chu, C.-K. Wen, “The deep learning-based semantic cross-modal moving-object moment retrieval system,” 10th IEEE International Conference on Applied System Innovation (ICASI 2024), Kyoto, Japan, April 17-21, 2024. pp. 134-136. DOI: 10.1109/ICASI60819.2024.10547990.
  3. C.-H. Chen, T.-Y. Chen, Y.-L. Chen, B.-H. Liu, J.-J. Jou and C.-K. Wen, “The abnormal events detection system by feature enhancement-based deep learning network,” 2023 IEEE 12th Global Conference on Consumer Electronics (GCCE), Nara, Japan, Oct. 10-13 2023, pp. 417-418. DOI: 10.1109/GCCE59613.2023.10315297.
  4. H.-Y. Zheng, Y.-K. Chang, T.-J. Hsueh*, J.-J. Jou, “YSZ/WO3/MEMS H2S gas sensor,” in 7th International Conference on Knowledge Innovation and Invention (ICKII 2023), K230166, Sapporo, Hokkaido, Japan, Aug. 11-13, 2023.
  5. C.-L. Wu, Y.-K. Chang, T.-J. Hsueh*, J.-J. Jou, “A SiNx/ZnO Thin film MEMS H2S gas sensor,” in 7th International Conference on Knowledge Innovation and Invention (ICKII 2023), K230161, Sapporo, Hokkaido, Japan, Aug. 11-13, 2023.
  6. S.-L. Wu, R.-Y. Ding, T.-J. Hsueh*, J.-J. Jou, “Gallium oxide nanoparticles/MEMS gas sensor,” in 7th International Conference on Knowledge Innovation and Invention (ICKII 2023), K230157, Sapporo, Hokkaido, Japan, Aug. 11-13, 2023.
  7. T.-H. Hsu, J.-J. Jou*, T.-T. Shih, Y.-J. Hung, “Monolithic integration of photo-diode and transimpedance amplifier in CMOS 90 nm technology,” in 9th International Conference on Applied System Innovation 2023 (ICASI 2023), J230528, Tokyo (Chiba), Japan, 21-25 Apr., 2023.
  8. P.-Y. Wang, J.-J. Jou*, C.-L. Tseng, C.-L. Yang, T.-Y. Chen, T.-T. Shih, “Design and analysis of wireless passive LC sensor prototypes for intraocular pressure monitoring,” in 9th International Conference on Applied System Innovation 2023 (ICASI 2023), J230331, Tokyo (Chiba), Japan, 21-25 Apr., 2023.
  9. C.-H. Chung, J.-J. Jou*, T.-J. Hsueh, H.-Y. Wang, T.-T. Shih, “A 50 Gb/s NRZ and 100 Gb/s PAM-4 modified RGC transimpedance amplifier in 40 nm CMOS technology,” in 9th International Conference on Applied System Innovation 2023 (ICASI 2023), J230200, Tokyo (Chiba), Japan, 21-25 Apr., 2023.
  10. M.-Y. Lin, J.-J. Jou*, C.-L. Chiu, C.-Y. Lien, B.-H. Liu, “A 50 Gb/s NRZ optical modulator driver circuit in 0.18 μm SiGe BiCMOS technology,” in 9th International Conference on Applied System Innovation 2023 (ICASI 2023), J230116, Tokyo (Chiba), Japan, 21-25 Apr., 2023.
  11. 葉宣熠、周肇基*、施天從、曾志隆,「使用40 nm CMOS製程之四通道400-Gb/s四階脈波振幅調變轉阻放大器陣列」,第十八屆全國電子設計創意競賽暨學術研討會,高雄,台灣,2022年3月26日。
  12. 鄭鈞元、周肇基*、楊淳良、曾志隆,「以FPGA實現用於25 Gb/s非歸零傳輸之新型人工神經網路自適應前饋均衡器」,第十八屆全國電子設計創意競賽暨學術研討會,高雄,台灣,2022年3月26日。
  13. C.-C. Yao, J.-Y. Zheng, J.-J. Jou* and C.-L. Yang, “Performance Monitoring of High-Speed NRZ Signals Using Machine Learning Techniques,” in 2021 International Symposium on Intelligent Signal Processing and Communication Systems (ISPACS), P1-25, Hualien, Taiwan, 16-19 Nov., 2021.
  14. H.-W. Hsu, X.-Y. Ye, J.-J. Jou*, and T.-T. Shih, “A 40-Gb/s NRZ inductorless transimpedance amplifier in a 0.18-μm SiGe BiCMOS technology,” in 2021 International Symposium on Intelligent Signal Processing and Communication Systems (ISPACS), P1-24, Hualien, Taiwan, 16-19 Nov., 2021.
  15. 楊正宏*、陳文慶、丁羿廷、周肇基,「台灣地區能源發電量預測模型之研究」,第十九屆離島資訊技術與應用研討會,金門,台灣,Session A5-2,2021年5月28日。
  16. 黃明祥、周肇基*、施天從,「50 Gb/s非歸零與100 Gb/s四階脈波振幅調變光調變器驅動電路設計」,第十七屆全國電子設計創意競賽暨學術研討會,B04,高雄,台灣,2021年3月27日。
  17. 楊勝傑、周肇基*、呂庭嘉,「基於薩格納克干涉器之四通道光纖聲波感測器陣列」,第十七屆全國電子設計創意競賽暨學術研討會,B08,高雄,台灣,2021年3月27日。
  18. 畢國信、李岳翰、周家洋、周肇基*,「被動式LC壓力感測器無線讀取外部線圈之模擬與量測」,第十七屆全國電子設計創意競賽暨學術研討會,B09,高雄,台灣,2021年3月27日。
  19. 薛裕豐、侯奕丞、施天從*、周肇基,「垂直共振腔面射型雷射高頻分析與溫度特性」,第21屆民生電子研討會,A05-04,高雄,台灣,2020年12月11日。
  20. H. Wu, P.-H. Tseng, C.-N. Liu, J.-J. Jou, W.-H. Cheng, Y.-D. Wu, P.-J. Chiang, T.-J. Hsueh, and T.-T. Shih, “Design of optical transmitter module for O-band silicon photonic engine,” in 2020 IEEE 70th Electronic Components and Technology Conference (ECTC), pp. 2209-2214, 3-30 June, 2020.
  21. I.-C. Hou, P.-H. Tseng, J.-J. Jou, C.-H. Chang, Y.-D. Wu, P.-J. Chiang, T.-J. Hsueh, and T.-T. Shih, “Design of 4-channel 25 Gbaud/s PAM-4 optical transmitter module for short reach applications,” in 2020 IEEE 70th Electronic Components and Technology Conference (ECTC), pp. 2272-2277, 3-30 June, 2020.
  22. H.-W. Hsu, C.-C. Peng, J.-J. Jou*, T.-T. Shih, Y.-D. Wu, S.-I Chu, C.-Y. Lien, and B.-H. Liu, “25 Gb/s NRZ and 50 Gb/s PAM-4 transimpedance amplifier with active feedback and equalization in 90 nm CMOS technology,” in 2019 International Conference on Optical Communication Systems (OPTICS 2019), Prague, Paper #3 , July 26-28, 2019.
  23. K.-T. Lin, Y.-C. Lin, T.-T. Shih*, J.-J. Jou, P.-J. Chiang, and Y.-D. Wu, “Design and testing of a 25 Gb/s NRZ and 50 Gb/s PAM-4 optical receiver module for 400 Gb/s short-reach applications,” in International Scientific Conference on Engineering and Applied Sciences (ISCEAS 2019), Hong Kong, ISCEAS-0195, June 4-6, 2019.
  24. T.-C. Lu, C.-C. Peng, J.-J. Jou*, B.-H. Liu, S.-I Chu, and C.-L. Chiu, “Design of a 25-Gb/s PAM-4 transimpedance amplifier with high linearity in 90-nm CMOS technology,” in International Scientific Conference on Engineering and Applied Sciences (ISCEAS 2019), Hong Kong, ISCEAS-0200, June 4-6, 2019.
  25. J.-Y. Lai, C.-Y. Liao, J.-J. Jou, T.-T. Shih*, and P.-J. Chiang, “Design of high-speed optical receiver module for 160Gb/S NRZ and 200Gb/S PAM4 transmissions,” in 2019 IEEE International Symposium on Circuits and Systems (ISCAS 2019), Sapporo, Japan, ID: 1134, May 26-29, 2019.
  26. T.-Y. Wu, J.-J. Jou*, T.-T. Shih, P.-J. Chiang, and Y.-D. Wu, “Design of a 25-Gb/s PAM-4 VCSEL diode driver with an equalizer in 90-nm CMOS technology,” in 2019 IEEE International Symposium on Circuits and Systems (ISCAS 2019), Sapporo, Japan, ID: 1354, May 26-29, 2019.
  27. S.-I Chu*, S.-T. Liao, C.-Y. Lien, C.-L. Chiu, J.-J. Jou, C.-E. Hsieh, “Routing mechanism for VANET by integrating AODV and network coding,” in The 9th International Congress on Engineering and Information (2019 ICEAI), Osaka, Japan, ICEAI-0202, May 7-9, 2019.
  28. J.-Y. Lai, J.-J. Jou, and T.-T. Shih, “25-Gb/s SFP28 LR optical transceiver modules with optimized via-hole design of multi-layer PCB,” in Optics & Photonics Taiwan International Conference (OPTIC 2018), Tainan, Taiwan, ID: 0072, Dec. 6-8, 2018.
  29. C.-H. Chang, G.-T. Lin, Y.-C. Lin, J.-J. Jou, and T.-T. Shih*, “Design of 100-Gb/s SWDM optical transceiver module for short reach transmissions,” in Optics & Photonics Taiwan International Conference (OPTIC 2018), Tainan, Taiwan, ID: 0228, Dec. 6-8, 2018.
  30. C.-L. Chiu*, Y.-H. Liao, C.-Y. Lien, J.-J. Jou, B.-H. Liu, and S.-I Chu, “The output power of multimode waveguide coupler with the low-loss linear tapered waveguide is enhanced on a SOI chip,” in 2018 International Congress on Engineering and Information, Hokkaido, Japan, ICEAI-0108, May 1-4, 2018.
  31. C.-C. Peng, J.-J. Jou*, T.-T. Shih, and C.-L. Chiu, “High linearity transimpedance amplifier in 0.18-μm CMOS technology for 20-Gb/s PAM-4 receivers,” in International SoC Design Conference (ISOCC 2017), Seoul, Korea, A20170714-0131, Nov. 5-8, 2017.
  32. C.-H. Wu, J.-J. Jou*, H.-W. Ting, S.-I Chu, and B.-H. Liu, “Multi-channel multi-gigabit PRBS generator with a built-in clock in 0.18-μm CMOS technology,” in International SoC Design Conference (ISOCC 2017), Seoul, Korea, A20170714-0130, Nov. 5-8, 2017.
  33. C.-L. Chiu, Y.-H. Liao, J.-J. Jou, S.-I Chu, and C.-Y. Lien, “Analysis of dissipating heat substrate applied through glass via filled with various conductive materials,” in 2017 International Congress on Engineering and Information, Kyoto, Japan, ICEAI-0024, May 9-11, 2017.
  34. H.-Y. Kao, C.-T. Tsai, C.-Y. Peng, S.-F. Liang, Z.-K. Weng, Y.-C. Chi, H.-C. Kuo, J.-J. Huang, T.-C. Lee, T.-T. Shih, J.-J. Jou, W.-H. Cheng, C.-H. Wu, and G.-R. Lin*, “Few-mode 850-nm VCSEL chip with direct 16-QAM OFDM encoding at 80-Gbit/s for 100-m OM4 MMF link,” in 2017 Optical Fiber Communication Conference (OFC), Los Angeles, California, USA, Th2A.38, March 19-23, 2017.
  35. C.-L. Chiu, R.-N. Wang, J.-J. Jou, T.-T. Shih*, “Design of printed circuit board with separate heat metal block for high-speed optical transceiver module,” in 11th International Microsystems, Packaging, Assembly and Circuits Technology (IMPACT 2016), Taipei, Taiwan, TW050-1, Oct. 26-28, 2016.
  36. Z.-X. Su, C.-Y. Wu, J.-J. Jou, T.-T. Shih*, “Analysis and design of connection between flexible PCB and hard PCB for 25 Gb/s optical subassembly module,” in 11th International Microsystems, Packaging, Assembly and Circuits Technology (IMPACT 2016), Taipei, Taiwan, TW045-1, Oct. 26-28, 2016.
  37. K.-L. Sie ,W. Wang ,J.-J. Jou, and T.-T. Shih*, “Optimized design of through-hole via in high-speed printed circuit board,” in 11th International Microsystems, Packaging, Assembly and Circuits Technology (IMPACT 2016), Taipei, Taiwan, TW049-1, Oct. 26-28, 2016.
  38. H.-J. Chen, J.-J. Jou*, and T.-T. Shih, “Design of pseudo-random bit sequence generator with adjustable sinusoidal jitter,” in International SoC Design Conference (ISOCC 2016), Jeju, Korea, pp. 263&264, Oct. 23-26, 2016.
  39. J.-Y. Li, J.-J. Jou*, T.-T. Shih, C.-L. Chiu, J.-C. Liou, and H.-W. Ting, “Design of 20-Gb/s four-level pulse amplitude modulation VCSEL driver in 90-nm CMOS technology,” in 2016 IEEE International Conference on Electron Devices and Solid-State Circuits (EDSSC 2016), Hong Kong, pp. 195-198, Aug. 3-5, 2016.

專利

  1. 施天從、周肇基、馬奕先,「供射頻裝置訊號連接的高頻接頭裝置,及用於設置高頻接頭的電路板」中華民國發明專利,發明第I550968號,專利權期間:2016年9月21日至2034年8月20日。
  2. 陳昭和、周肇基、張子星,「移動攝影機之畫面穩定方法」,中華民國發明專利,發明第I496115號,專利權期間:2015年8月11日至2033年12月4日。
  3. 周肇基、林皓宇,「具有重疊式多重迴路之電壓控制環型振盪器」,中華民國發明專利,發明第I477060號,專利權期間:2015年3月11日至2029年10月1日。
  4. 施天從、朱訓賢、曾培豪、周肇基、詹正義,「對稱型電容補償式高速罐型光封裝模組」,中華民國發明專利,發明第I464813號,專利權期間:2014年12月11日至2032年4月25日。
  5. 周肇基、劉政光、張桓嘉,「可接收無線訊號之被動光學網路傳輸系統」,中華民國發明專利,發明第I416884號,專利權期間:2013年11月21日至2028年9月3日。
  6. 周肇基、黃宇志、劉政光、曾志隆,「多段式長波段摻鉺光纖放大器」,中華民國發明專利,發明第I400903號,專利權期間:2013年7月1日至2028年1月29日。
  7. 刘政光、李三良、曾志隆、周肇基、林淑娟,「可调式掺稀土族元素光纤激光光源的双向传输网络装置」,中华人民共和国实用新型专利,专利号:ZL 2008 2 0179601. 3,专利权期间:2009年09月02日至2018年11月27日。
  8. 劉政光、李三良、曾志隆、周肇基、林淑娟,「基於可調式摻稀土族元素光纖雷射光源之雙向傳輸網路裝置」,中華民國新型專利,新型第M347761號,專利權期間:2008年12月21日至2018年08月21日。
  9. 劉政光、周肇基,「以等效電路描述摻鉺光纖放大器特性之方法」,中華民國發明專利,發明第196529號,專利權期間:2004年1月21日至2023年1月9日。

學歷與經歷

1986/09 ~ 1991/06  國立高雄工商專科學校  電子工程科  專士

1991/09 ~ 1993/06  國立台灣工業技術學院  電子工程系  學士

1993/09 ~ 1995/06  國立台灣科技大學  電子工程系  碩士

1997/09 ~ 2002/07  國立台灣科技大學  電子工程系  博士

1997/07 ~ 1999/02  台北市立仁愛醫院工務股  技士

1999/02 ~ 2000/02  台北市立仁愛醫院資訊室  技士

2003/02 ~ 2003/07  樹德科技大學電腦與通訊系  助理教授

2003/08 ~ 2011/01  國立高雄應用科技大學電子工程系  助理教授

2011/02 ~ 2018/01  國立高雄應用科技大學電子工程系  副教授

2018/02 ~  國立高雄科技大學電子工程系  教授

 

研究領域

  1. 摻鉺光纖光放大器之分析與研究
  2. 光纖通訊高速光接收與發射積體電路設計
  3. 電壓控制振盪器、鎖相迴路、時脈與資料回復電路之設計
  4. 光纖感測之分析與研究

近年之研究成果

期刊論文

  1. J.-J. Jou*, C.-L. Yang, C.-L. Tseng, C.-C. Yao, J.-Y. Zheng, “Real-time monitoring of high-speed signal quality using asynchronous sampling, amplitude sorting, and artificial neural network and its FPGA implementation,” International Journal of Circuit Theory and Applications, Vol. 53, No. 12, pp. 7260-7270, Dec. 2025. DOI: 10.1002/cta.4557
  2. J.-J. Jou*, P.-Y. Wang, B.-H. Liu, C.-L. Yang, C.-L. Tseng, “Wide-range tunable ring VCO with band-switching in 0.18-μm CMOS technology,” Circuits, Systems, and Signal Processing, online publish, Oct. 2025. DOI: 10.1007/s00034-025-03384-3
  3. W. Hidayat, P.-H. Tseng, J.-H. Liu, J.-J. Jou*, “Design and verification of a 53-Gb/s PAM-4 cooled DFB-LD TOSA employing cost-effective TO-CAN package,” IEEE Access, Vol. 13, pp. 155855-155864, Sept. 2025. DOI: 10.1109/ACCESS.2025.3605604
  4. W. Hidayat, P.-H. Chen, C.-L. Yang, J.-Y. Yeh, C.-P. Chao, and J.-J. Jou*, “Design and fabrication of a four-channel CWDM cooled DFB-LD module with OSFP electrical interface for CPO external laser sources,” Optics Continuum, Vol. 4, No. 8, pp. 1719-1731, Aug. 2025. DOI: 10.1364/OPTCON.569826
  5. J.-J. Jou*, T.-T. Shih, and T.-Y. Wu, “VCSEL driver with synthesis of 25-Gb/s PAM-4 signal in 90-nm CMOS technology,” Analog Integrated Circuits and Signal Processing, Vol. 114, No. 3, pp. 379-386, Mar. 2023. DOI: 10.1007/s10470-022-02111-1
  6. J.-J. Jou*, T.-T. Shih, and H.-W. Hsu, “32-Gb/s NRZ and 40-Gb/s PAM-4 transimpedance amplifier paralleling with a differentiator for bandwidth enhancement in 90-nm CMOS technology,” Circuits, Systems, and Signal Processing, Vol. 41, No. 2, pp. 621-635, Feb. 2022. DOI: 10.1007/s00034-021-01826-2
  7. J.-J. Jou*, T.-T. Shih, C.-C. Peng, H.-W. Hsu, and X.-Y. Ye, “Inductorless broadband transimpedance amplifier for 25-Gb/s NRZ and 50-Gb/s PAM-4 operations in a 90-nm CMOS technology,” Journal of Semiconductor Technology and Science, Vol. 21, No. 5, pp. 304-310, Oct. 2021. DOI: 10.5573/JSTS.2021.21.5.304
  8. J.-J. Jou*, T.-T. Shih, and T.-Y. Wu, “A 50-Gb/s PAM-4 VCSEL diode driver in 90-nm CMOS technology,” Microwave and Optical Technology Letters, Vol. 63, No. 6, pp. 1682-1687, June 2021. DOI: 10.1002/mop.32790
  9. J.-J. Jou*, T.-T. Shih, and C.-L. Chiu, “400-Gb/s optical transmitter and receiver modules for on-board interconnects using polymer waveguide arrays,” OSA Continuum, Vol. 1, No. 2, pp. 658-667, Oct. 2018. DOI: 10.1364/OSAC.1.000658
  10. J.-J. Jou*, T.-T. Shih, Z.-X. Su, C.-Y. Liao, and W. Wang, “Low-cost coaxial DFB LD transmitter optical subassembly for 25-Gb/s NRZ and 50-Gb/s PAM-4 transmissions,” IET Optoelectronics, Vol. 12, Iss. 5, pp. 233-238, Oct. 2018. DOI: 10.1049/iet-opt.2018.0027
  11. H.-Y. Kao, Z.-X. Su, H.-S. Shih, Y.-C. Chi, C.-T. Tsai, H.-C. Kuo, C.-H. Wu, J.-J. Jou, T.-T. Shih, and G.-R. Lin*, “CWDM DFBLD transmitter module for 10-km inter-data center with single-channel 50-Gbit/s PAM-4 and 62-Gbit/s QAM-OFDM,” Journal of Lightwave Technology, Vol. 36, No. 3, pp. 703-711, Feb. 2018. DOI: 10.1109/JLT.2017.2777822
  12. H.-Y. Kao, Y.-C. Chi, C.-T. Tsai, S.-F. Leong, C.-Y. Peng, H.-Y. Wang, J. J. Huang, J.-J. Jou, T.-T. Shih, H.-C. Kuo, W.-H. Cheng, C.-H. Wu, and G.-R. Lin*, “Few-mode VCSEL chip for 100-Gb/s transmission over 100 m multimode fiber,” Photonics Research, Vol. 5, No. 5, pp. 507-515, Oct. 2017. DOI: 10.1364/PRJ.5.000507
  13. C.-T. Tsai, C.-Y. Peng, Y.-C. Wu; S.-F. Leong, H.-Y. Kao, H.-Y. Wang, Y.-W. Chen, Z.-K. Weng, Y.-C. Chi, H.-C. Kuo, J.-J. Huang, T.-C. Lee, T.-T. Shih, J.-J. Jou, W.-H. Cheng, C.-H. Wu, and G.-R. Lin*, “Multi-mode VCSEL chip with high-indium-density InGaAs/AlGaAs quantum-well pairs for QAM-OFDM in multi-mode fiber,” IEEE Journal of Quantum Electronics, Vol. 53, No. 4, p. 2400608, Aug. 2017. DOI: 10.1109/JQE.2017.2703645
  14. H.-Y. Kao, C.-T. Tsai, S.-F. Leong, C.-Y. Peng, Y.-C. Chi, J.-J. Huang, H.-C. Kuo, T.-T. Shih, J.-J. Jou, W.-H. Cheng, C.-H. Wu, and G.-R. Lin*, “Comparison of single-/few-/multi-mode 850 nm VCSELs for optical OFDM transmission,” Optics Express, Vol. 25, No. 14, pp. 16347-16363, Jul. 2017. DOI: 10.1364/OE.25.016347
  15. T.-T. Shih*, Y.-C. Chi, R.-N. Wang, C.-H. Wu, J.-J. Huang, J.-J. Jou, T.-C. Lee, H.-C. Kuo, G.-R. Lin, and W.-H. Cheng, “Efficient heat dissipation of uncooled 400-Gbps (16×25-Gbps) optical transceiver employing multimode VCSEL and PD arrays,” Scientific Reports, 7, 46608, Apr. 2017. DOI: 10.1038/srep46608
  16. J.-J. Jou*, T.-T. Shih, C.-Y. Wu, and Z.-X. Su, “Low-cost TO-CAN package combined with flexible and hard printed circuit boards for 25-Gb/s optical subassembly modules,” Opt. Eng., Vol. 56, No. 2, pp. 026108, Feb. 2017. DOI: 10.1117/1.OE.56.2.026108
  17. T.-J. Su, S.-M. Wang, H.-Q. Vu, J.-J. Jou*, and C.-K. Sun, “Mean arterial pressure control system using model predictive control and particle swarm optimization,” Microsystem Technologies, Article first published online: 25 Nov. 2016. DOI: 10.1007/s00542-016-3212-9
  18. C.-L. Tseng, Y.-W. Lin, P.-J. Chiang*, and J.-J. Jou, “Homo-multilayer ITO films on PET substrates using roll-to-roll sputtering method,” Journal of Chung Cheng Institute of Technology, vol. 45, No. 2, pp. 23-28, Nov. 2016. (EI)
  19. C.-L. Tseng*, Y.-W. Lin, P.-J. Chiang, Y.-T. Cheng, J.-J. Jou and C.-K. Liu, “Wavelength-adjustable all optical wavelength conversion using a tunable fiber laser and an electro-absorption modulator,” Optica Applicata, vol. 46, No. 3, pp. 347-352, 2016. DOI: 10.5277/oa160302
  20. T.-T. Shih, J.-J. Jou*, and S.-S. Chu, “Analysis of high frequency performance of TO-46 header through three-dimensional full wave electromagnetic model and circuit model,” Int. J. Numer. Model., Article first published online: 10 Jun. 2015, vol. 29, issue 2, pp. 301-308, Mar/Apr. 2016. (SCI/EI) DOI: 10.1002/jnm.2077
  21. T.-T. Shih*, C.-W. Yu, J.-J. Jou, and C. L. Chiu,Fundamental properties of localized surface plasmons of organic electro-optical devices doped with metallic nano-particles: a review,” Reviews in Advanced Sciences and Engineering, vol. 4, pp. 22-28, Mar. 2015. (EI)
  22. C.-W. Yu, C.-L. Chiu*, T.-T. Shih, and J.-J. Jou, “A stable and compact optical module for fiber-optic gyroscope application,” Fiber and Integrated Optics, vol. 33, pp. 306-314, 2014. (SCI/EI) DOI: 10.1080/01468030.2014.923070
  23. J.-J. Jou*, C.-K. Liu, and F.-S. Lai, “Gamma-ray irradiation effects on dynamic gain of erbium-doped fiber amplifiers,” Optica Applicata, vol. 40, pp. 921-926, 2010. (SCI/EI)
  24. Z.-R. Lin, C.-K. Liu*, G. Keiser, S.-L. Lee, K.-C. Lai, H.-C. Chang, C.-L. Tseng, and J.-J. Jou, “A low-cost passive optical network for television broadcasting and high-speed bidirectional communications in intelligent buildings,” J. Chinese Ins. Eng., vol. 33, pp. 707-716, 2010. (SCI, EI) DOI: 10.1080/02533839.2010.9671660
  25. C.-L. Tseng*, J.-J. Jou, C.-K. Liu, and J.-H. Jian, “A multiwavelength erbium-doped fiber MOPA laser with partial overlapping linear cavities,” Optica Applicata, vol. 39, pp.579-585, 2009. (SCI/EI)
  26. C.-L. Tseng, C.-K. Liu*, J.-J. Jou, W.-Y. Lin, C.-W. Shih, S.-C. Lin, S.-L. Lee, and G. Keiser, “Bidirectional transmission using tunable fiber lasers and injection-locked Fabry-Perot laser diodes for WDM access networks,” IEEE Photon. Technol. Lett., vol. 20, pp. 794-796, May 2008. (SCI, EI) DOI: 10.1109/LPT.2008.921116
  27. J.-J. Jou* and C.-K. Liu, “Equivalent circuit model for erbium-doped fibre amplifiers including amplified spontaneous emission,” IET Optoelectron., vol. 2, pp. 29-33, Feb. 2008. (SCI, EI) DOI: 10.1049/iet-opt:20060095
  28. J.-J. Jou* and C.-K. Liu, “Computer aided analysis of distortions in SCM systems with EDFAs including chirping effect,” AEU-Int. J. Electron. Commun., vol. 61, pp. 243-248, Apr. 2007. (SCI, EI) DOI: 10.1016/j.aeue.2006.05.010
  29. J.-J. Jou*, C.-K. Liu, and S.-L Lee, “A unified circuit model for static and dynamic analyses of semiconductor optical amplifiers and laser diodes,” Solid-State Electron., vol. 51, pp. 360-365, Mar. 2007. (SCI, EI) DOI: 10.1016/j.sse.2007.01.035
  30. C.-K. Liu*, J.-J. Jou, S.-K. Liaw, and H.-C. Lee, “Computer-aided analysis of transients in fiber lasers and gain-clamped fiber amplifiers in ring and line configurations through a circuit simulator,” Opt. Commun., vol. 209/4-6, pp. 427-436, Aug. 2002. (SCI, EI) DOI: 10.1016/S0030-4018(02)01729-7
  31. J.-J. Jou and C.-K. Liu*, “Application of SPICE simulation to study WDM and SCM systems using EDFAs with chirping,” IEEE T. Educ., vol. 45, pp. 238-244, Aug. 2002. (SCI, EI) DOI: 10.1109/TE.2002.1024616
  32. J.-J. Jou, C.-K. Liu*, C.-M. Hsiao, H.-H. Lin, and H.-C. Lee, “Time-delay circuit model of high-speed p-i-n photodiodes,” IEEE Photon. Technol. Lett., vol. 14, pp. 525-527, Apr. 2002. (SCI, EI) DOI: 10.1109/68.992599
  33. J.-J. Jou, F.-S. Lai, B.-H. Chen, and C.-K. Liu*, “On-line extraction of parameters in erbium-doped fiber amplifiers,” J. Chinese Ins. Eng., vol. 23, pp. 615-623, Sept. 2000. (SCI, EI) DOI: 10.1080/02533839.2000.9670582
  34. C.-K. Liu*, F.-S. Lai, and J.-J. Jou, “Analysis of nonlinear response in erbium-doped fiber amplifiers,” Opt. Eng., vol. 39, pp. 1548-1555, June 2000. (SCI, EI) DOI: 10.1117/1.602528
  35. F.-S. Lai, C.-K. Liu*, and J.-J. Jou, “Analyses of distortions and cross modulations in erbium-doped fiber amplifiers,” IEEE Photon. Technol. Lett., vol. 11, pp. 545-547, May 1999. (SCI, EI) DOI: 10.1109/68.759393
  36. F.-S. Lai, J.-J. Jou, and C.-K. Liu*, “Indicator of amplified spontaneous emission in erbium doped fiber amplifiers,” Elecrton. Lett., vol. 35, pp. 587-588, Apr. 1999. (SCI, EI) DOI: 10.1049/el:19990383
  37. C.-K. Liu*, F.-S. Lai, J.-J. Jou, and M.-C. Chiang, “Temperature and electromagnetic effects on erbium-doped fiber amplifier systems,” Opt. Eng., vol. 37, pp. 2095-2100, July 1998. (SCI, EI) DOI: 10.1117/1.601726
  38. C.-K. Liu*, J.-J. Jou, and F.-S. Lai, “Second-order harmonic distortion and optimal fiber length in erbium-doped fiber amplifiers,” IEEE Photon. Technol. Lett., vol. 7, pp. 1412-1414, Dec. 1995. (SCI, EI) DOI: 10.1109/68.477266

會議論文

  1. P.-Y. Wang, J.-H. Liu, B.-Z. Zhang, T.-L. Hsieh, Jau-Ji Jou*, “Four-Channel 200 Gb/s PAM-4 Electro-Absorption-Modulated Laser Module,” 11th IEEE International Conference on Applied System Innovation (ICASI 2025), Tokyo, Japan, April 22-25, 2025, J250143.
  2. C.-H. Chen, T.-Y. Chen, M.-J. Jiang, B.-H. Liu, J.-J. Jou, C.-Y. Lien, S.-I Chu, C.-K. Wen, “The deep learning-based semantic cross-modal moving-object moment retrieval system,” 10th IEEE International Conference on Applied System Innovation (ICASI 2024), Kyoto, Japan, April 17-21, 2024. pp. 134-136. DOI: 10.1109/ICASI60819.2024.10547990.
  3. C.-H. Chen, T.-Y. Chen, Y.-L. Chen, B.-H. Liu, J.-J. Jou and C.-K. Wen, “The abnormal events detection system by feature enhancement-based deep learning network,” 2023 IEEE 12th Global Conference on Consumer Electronics (GCCE), Nara, Japan, Oct. 10-13 2023, pp. 417-418. DOI: 10.1109/GCCE59613.2023.10315297.
  4. H.-Y. Zheng, Y.-K. Chang, T.-J. Hsueh*, J.-J. Jou, “YSZ/WO3/MEMS H2S gas sensor,” in 7th International Conference on Knowledge Innovation and Invention (ICKII 2023), K230166, Sapporo, Hokkaido, Japan, Aug. 11-13, 2023.
  5. C.-L. Wu, Y.-K. Chang, T.-J. Hsueh*, J.-J. Jou, “A SiNx/ZnO Thin film MEMS H2S gas sensor,” in 7th International Conference on Knowledge Innovation and Invention (ICKII 2023), K230161, Sapporo, Hokkaido, Japan, Aug. 11-13, 2023.
  6. S.-L. Wu, R.-Y. Ding, T.-J. Hsueh*, J.-J. Jou, “Gallium oxide nanoparticles/MEMS gas sensor,” in 7th International Conference on Knowledge Innovation and Invention (ICKII 2023), K230157, Sapporo, Hokkaido, Japan, Aug. 11-13, 2023.
  7. T.-H. Hsu, J.-J. Jou*, T.-T. Shih, Y.-J. Hung, “Monolithic integration of photo-diode and transimpedance amplifier in CMOS 90 nm technology,” in 9th International Conference on Applied System Innovation 2023 (ICASI 2023), J230528, Tokyo (Chiba), Japan, 21-25 Apr., 2023.
  8. P.-Y. Wang, J.-J. Jou*, C.-L. Tseng, C.-L. Yang, T.-Y. Chen, T.-T. Shih, “Design and analysis of wireless passive LC sensor prototypes for intraocular pressure monitoring,” in 9th International Conference on Applied System Innovation 2023 (ICASI 2023), J230331, Tokyo (Chiba), Japan, 21-25 Apr., 2023.
  9. C.-H. Chung, J.-J. Jou*, T.-J. Hsueh, H.-Y. Wang, T.-T. Shih, “A 50 Gb/s NRZ and 100 Gb/s PAM-4 modified RGC transimpedance amplifier in 40 nm CMOS technology,” in 9th International Conference on Applied System Innovation 2023 (ICASI 2023), J230200, Tokyo (Chiba), Japan, 21-25 Apr., 2023.
  10. M.-Y. Lin, J.-J. Jou*, C.-L. Chiu, C.-Y. Lien, B.-H. Liu, “A 50 Gb/s NRZ optical modulator driver circuit in 0.18 μm SiGe BiCMOS technology,” in 9th International Conference on Applied System Innovation 2023 (ICASI 2023), J230116, Tokyo (Chiba), Japan, 21-25 Apr., 2023.
  11. 葉宣熠、周肇基*、施天從、曾志隆,「使用40 nm CMOS製程之四通道400-Gb/s四階脈波振幅調變轉阻放大器陣列」,第十八屆全國電子設計創意競賽暨學術研討會,高雄,台灣,2022年3月26日。
  12. 鄭鈞元、周肇基*、楊淳良、曾志隆,「以FPGA實現用於25 Gb/s非歸零傳輸之新型人工神經網路自適應前饋均衡器」,第十八屆全國電子設計創意競賽暨學術研討會,高雄,台灣,2022年3月26日。
  13. C.-C. Yao, J.-Y. Zheng, J.-J. Jou* and C.-L. Yang, “Performance Monitoring of High-Speed NRZ Signals Using Machine Learning Techniques,” in 2021 International Symposium on Intelligent Signal Processing and Communication Systems (ISPACS), P1-25, Hualien, Taiwan, 16-19 Nov., 2021.
  14. H.-W. Hsu, X.-Y. Ye, J.-J. Jou*, and T.-T. Shih, “A 40-Gb/s NRZ inductorless transimpedance amplifier in a 0.18-μm SiGe BiCMOS technology,” in 2021 International Symposium on Intelligent Signal Processing and Communication Systems (ISPACS), P1-24, Hualien, Taiwan, 16-19 Nov., 2021.
  15. 楊正宏*、陳文慶、丁羿廷、周肇基,「台灣地區能源發電量預測模型之研究」,第十九屆離島資訊技術與應用研討會,金門,台灣,Session A5-2,2021年5月28日。
  16. 黃明祥、周肇基*、施天從,「50 Gb/s非歸零與100 Gb/s四階脈波振幅調變光調變器驅動電路設計」,第十七屆全國電子設計創意競賽暨學術研討會,B04,高雄,台灣,2021年3月27日。
  17. 楊勝傑、周肇基*、呂庭嘉,「基於薩格納克干涉器之四通道光纖聲波感測器陣列」,第十七屆全國電子設計創意競賽暨學術研討會,B08,高雄,台灣,2021年3月27日。
  18. 畢國信、李岳翰、周家洋、周肇基*,「被動式LC壓力感測器無線讀取外部線圈之模擬與量測」,第十七屆全國電子設計創意競賽暨學術研討會,B09,高雄,台灣,2021年3月27日。
  19. 薛裕豐、侯奕丞、施天從*、周肇基,「垂直共振腔面射型雷射高頻分析與溫度特性」,第21屆民生電子研討會,A05-04,高雄,台灣,2020年12月11日。
  20. H. Wu, P.-H. Tseng, C.-N. Liu, J.-J. Jou, W.-H. Cheng, Y.-D. Wu, P.-J. Chiang, T.-J. Hsueh, and T.-T. Shih, “Design of optical transmitter module for O-band silicon photonic engine,” in 2020 IEEE 70th Electronic Components and Technology Conference (ECTC), pp. 2209-2214, 3-30 June, 2020.
  21. I.-C. Hou, P.-H. Tseng, J.-J. Jou, C.-H. Chang, Y.-D. Wu, P.-J. Chiang, T.-J. Hsueh, and T.-T. Shih, “Design of 4-channel 25 Gbaud/s PAM-4 optical transmitter module for short reach applications,” in 2020 IEEE 70th Electronic Components and Technology Conference (ECTC), pp. 2272-2277, 3-30 June, 2020.
  22. H.-W. Hsu, C.-C. Peng, J.-J. Jou*, T.-T. Shih, Y.-D. Wu, S.-I Chu, C.-Y. Lien, and B.-H. Liu, “25 Gb/s NRZ and 50 Gb/s PAM-4 transimpedance amplifier with active feedback and equalization in 90 nm CMOS technology,” in 2019 International Conference on Optical Communication Systems (OPTICS 2019), Prague, Paper #3 , July 26-28, 2019.
  23. K.-T. Lin, Y.-C. Lin, T.-T. Shih*, J.-J. Jou, P.-J. Chiang, and Y.-D. Wu, “Design and testing of a 25 Gb/s NRZ and 50 Gb/s PAM-4 optical receiver module for 400 Gb/s short-reach applications,” in International Scientific Conference on Engineering and Applied Sciences (ISCEAS 2019), Hong Kong, ISCEAS-0195, June 4-6, 2019.
  24. T.-C. Lu, C.-C. Peng, J.-J. Jou*, B.-H. Liu, S.-I Chu, and C.-L. Chiu, “Design of a 25-Gb/s PAM-4 transimpedance amplifier with high linearity in 90-nm CMOS technology,” in International Scientific Conference on Engineering and Applied Sciences (ISCEAS 2019), Hong Kong, ISCEAS-0200, June 4-6, 2019.
  25. J.-Y. Lai, C.-Y. Liao, J.-J. Jou, T.-T. Shih*, and P.-J. Chiang, “Design of high-speed optical receiver module for 160Gb/S NRZ and 200Gb/S PAM4 transmissions,” in 2019 IEEE International Symposium on Circuits and Systems (ISCAS 2019), Sapporo, Japan, ID: 1134, May 26-29, 2019.
  26. T.-Y. Wu, J.-J. Jou*, T.-T. Shih, P.-J. Chiang, and Y.-D. Wu, “Design of a 25-Gb/s PAM-4 VCSEL diode driver with an equalizer in 90-nm CMOS technology,” in 2019 IEEE International Symposium on Circuits and Systems (ISCAS 2019), Sapporo, Japan, ID: 1354, May 26-29, 2019.
  27. S.-I Chu*, S.-T. Liao, C.-Y. Lien, C.-L. Chiu, J.-J. Jou, C.-E. Hsieh, “Routing mechanism for VANET by integrating AODV and network coding,” in The 9th International Congress on Engineering and Information (2019 ICEAI), Osaka, Japan, ICEAI-0202, May 7-9, 2019.
  28. J.-Y. Lai, J.-J. Jou, and T.-T. Shih, “25-Gb/s SFP28 LR optical transceiver modules with optimized via-hole design of multi-layer PCB,” in Optics & Photonics Taiwan International Conference (OPTIC 2018), Tainan, Taiwan, ID: 0072, Dec. 6-8, 2018.
  29. C.-H. Chang, G.-T. Lin, Y.-C. Lin, J.-J. Jou, and T.-T. Shih*, “Design of 100-Gb/s SWDM optical transceiver module for short reach transmissions,” in Optics & Photonics Taiwan International Conference (OPTIC 2018), Tainan, Taiwan, ID: 0228, Dec. 6-8, 2018.
  30. C.-L. Chiu*, Y.-H. Liao, C.-Y. Lien, J.-J. Jou, B.-H. Liu, and S.-I Chu, “The output power of multimode waveguide coupler with the low-loss linear tapered waveguide is enhanced on a SOI chip,” in 2018 International Congress on Engineering and Information, Hokkaido, Japan, ICEAI-0108, May 1-4, 2018.
  31. C.-C. Peng, J.-J. Jou*, T.-T. Shih, and C.-L. Chiu, “High linearity transimpedance amplifier in 0.18-μm CMOS technology for 20-Gb/s PAM-4 receivers,” in International SoC Design Conference (ISOCC 2017), Seoul, Korea, A20170714-0131, Nov. 5-8, 2017.
  32. C.-H. Wu, J.-J. Jou*, H.-W. Ting, S.-I Chu, and B.-H. Liu, “Multi-channel multi-gigabit PRBS generator with a built-in clock in 0.18-μm CMOS technology,” in International SoC Design Conference (ISOCC 2017), Seoul, Korea, A20170714-0130, Nov. 5-8, 2017.
  33. C.-L. Chiu, Y.-H. Liao, J.-J. Jou, S.-I Chu, and C.-Y. Lien, “Analysis of dissipating heat substrate applied through glass via filled with various conductive materials,” in 2017 International Congress on Engineering and Information, Kyoto, Japan, ICEAI-0024, May 9-11, 2017.
  34. H.-Y. Kao, C.-T. Tsai, C.-Y. Peng, S.-F. Liang, Z.-K. Weng, Y.-C. Chi, H.-C. Kuo, J.-J. Huang, T.-C. Lee, T.-T. Shih, J.-J. Jou, W.-H. Cheng, C.-H. Wu, and G.-R. Lin*, “Few-mode 850-nm VCSEL chip with direct 16-QAM OFDM encoding at 80-Gbit/s for 100-m OM4 MMF link,” in 2017 Optical Fiber Communication Conference (OFC), Los Angeles, California, USA, Th2A.38, March 19-23, 2017.
  35. C.-L. Chiu, R.-N. Wang, J.-J. Jou, T.-T. Shih*, “Design of printed circuit board with separate heat metal block for high-speed optical transceiver module,” in 11th International Microsystems, Packaging, Assembly and Circuits Technology (IMPACT 2016), Taipei, Taiwan, TW050-1, Oct. 26-28, 2016.
  36. Z.-X. Su, C.-Y. Wu, J.-J. Jou, T.-T. Shih*, “Analysis and design of connection between flexible PCB and hard PCB for 25 Gb/s optical subassembly module,” in 11th International Microsystems, Packaging, Assembly and Circuits Technology (IMPACT 2016), Taipei, Taiwan, TW045-1, Oct. 26-28, 2016.
  37. K.-L. Sie ,W. Wang ,J.-J. Jou, and T.-T. Shih*, “Optimized design of through-hole via in high-speed printed circuit board,” in 11th International Microsystems, Packaging, Assembly and Circuits Technology (IMPACT 2016), Taipei, Taiwan, TW049-1, Oct. 26-28, 2016.
  38. H.-J. Chen, J.-J. Jou*, and T.-T. Shih, “Design of pseudo-random bit sequence generator with adjustable sinusoidal jitter,” in International SoC Design Conference (ISOCC 2016), Jeju, Korea, pp. 263&264, Oct. 23-26, 2016.
  39. J.-Y. Li, J.-J. Jou*, T.-T. Shih, C.-L. Chiu, J.-C. Liou, and H.-W. Ting, “Design of 20-Gb/s four-level pulse amplitude modulation VCSEL driver in 90-nm CMOS technology,” in 2016 IEEE International Conference on Electron Devices and Solid-State Circuits (EDSSC 2016), Hong Kong, pp. 195-198, Aug. 3-5, 2016.

電子學(一)(二)(三)

電磁學

通訊導論

光纖通訊

榮譽與獎勵

  1. 擔任國際性期刊Far East Journal of Electronics and Communications之Editorial Board。(http://pphmj.com/journals/fjec_editorial_board.htm)
  2. 2021年,擔任第二十五屆行動計算研討會議程委員。
  3. 2021年,擔任Transactions on Nanotechnology國際期刊之論文審稿工作。
  4. 2021年,擔任Micro and Nano Systems國際期刊之論文審稿工作。
  5. 2021年,擔任IEEE Access國際期刊之論文審稿工作。
  6. 2021年,獲得本校109學年度院級優良導師。
  7. 2022年,擔任第二十六屆行動計算研討會與第十七屆無線、隨意及感測網路研討會議程委員。
  8. 2022年,擔任Electronics國際期刊之論文審稿工作。
  9. 2022年,擔任IEEE Access國際期刊之論文審稿工作。
  10. 2022年,擔任Journal of Circuits, Systems, and Computers國際期刊之論文審稿工作。
  11. 2022年,獲得111年度國科會產學計畫成果發表暨績效考評會,產學成果海報組特優獎。
  12. 2023年,擔任第十九屆全國電子設計創意競賽評審委員。
  13. 2023年,擔任Journal of Circuits, Systems, and Computers國際期刊之論文審稿工作。
  14. 2023年,擔任第二十七屆行動計算研討會與第十八屆無線、隨意及感測網路研討會議程委員。
  15. 2024年,擔任第二十屆全國電子設計創意競賽評審委員。
  16. 2024年,擔任IEEE Journal of Solid State Circuits國際期刊之論文審稿工作。
  17. 2024年,擔任Journal of Circuits, Systems, and Computers國際期刊之論文審稿工作。
  18. 2024年,擔任IEEE Transactions on Very Large Scale Integration Systems國際期刊之論文審稿工作。
  19. 2024年,擔任第二十八屆行動計算研討會與第十九屆無線、隨意及感測網路研討會議程委員。
  20. 2024年,獲得本校113學年度學術類特殊優秀研究人才彈性薪資獎勵傑出B級。
  21. 2025年,擔任Micromachines國際期刊之論文審稿工作。
  22. 2025年,擔任International Journal of Electronics國際期刊之論文審稿工作。
  23. 2025年,擔任Computers and Electrical Engineering國際期刊之論文審稿工作。
  24. 2025年,擔任Journal of Lightwave Technology國際期刊之論文審稿工作。
  25. 2025年,擔任第二十九屆行動計算研討會與第二十屆無線、隨意及感測網路研討會議程委員。
  26. 2025年,擔任OPTIC 2025會議Quantum Photonics and Laser Technology技術議程委員。
  27. 2025年,獲得本校114學年度學術類特殊優秀研究人才彈性薪資獎勵優秀C級。

行政服務

  1. 擔任本校建工校區電子系副主任。(2013~2015年、2016年~2022年、2025年~)
  2. 協助本系申請本校系所改質躍升計畫,擔任計畫內容規畫與計畫書撰寫,獲得每年200萬元的經費補助。(2022年、2025年)
  3. 擔任本校校教評會議教師代表。(2022年)
  4. 擔任本校電資與資訊學院院務會議代表。(2025年)
  5. 擔任本校校務會議教師代表。(2024年、2025年)

專利

  1. 施天從、周肇基、馬奕先,「供射頻裝置訊號連接的高頻接頭裝置,及用於設置高頻接頭的電路板」中華民國發明專利,發明第I550968號,專利權期間:2016年9月21日至2034年8月20日。
  2. 陳昭和、周肇基、張子星,「移動攝影機之畫面穩定方法」,中華民國發明專利,發明第I496115號,專利權期間:2015年8月11日至2033年12月4日。
  3. 周肇基、林皓宇,「具有重疊式多重迴路之電壓控制環型振盪器」,中華民國發明專利,發明第I477060號,專利權期間:2015年3月11日至2029年10月1日。
  4. 施天從、朱訓賢、曾培豪、周肇基、詹正義,「對稱型電容補償式高速罐型光封裝模組」,中華民國發明專利,發明第I464813號,專利權期間:2014年12月11日至2032年4月25日。
  5. 周肇基、劉政光、張桓嘉,「可接收無線訊號之被動光學網路傳輸系統」,中華民國發明專利,發明第I416884號,專利權期間:2013年11月21日至2028年9月3日。
  6. 周肇基、黃宇志、劉政光、曾志隆,「多段式長波段摻鉺光纖放大器」,中華民國發明專利,發明第I400903號,專利權期間:2013年7月1日至2028年1月29日。
  7. 刘政光、李三良、曾志隆、周肇基、林淑娟,「可调式掺稀土族元素光纤激光光源的双向传输网络装置」,中华人民共和国实用新型专利,专利号:ZL 2008 2 0179601. 3,专利权期间:2009年09月02日至2018年11月27日。
  8. 劉政光、李三良、曾志隆、周肇基、林淑娟,「基於可調式摻稀土族元素光纖雷射光源之雙向傳輸網路裝置」,中華民國新型專利,新型第M347761號,專利權期間:2008年12月21日至2018年08月21日。
  9. 劉政光、周肇基,「以等效電路描述摻鉺光纖放大器特性之方法」,中華民國發明專利,發明第196529號,專利權期間:2004年1月21日至2023年1月9日。
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