| 2018 | HCI | A Scoping Study on the Development of an Interactive Upper-Limb Rehabilitation System Framework for Patients with Stroke. | Kevin C. Tseng, Alice M. K. Wong, Chung-Yu Wu, Tian-Sheuan Chang, Yu-Cheng Pei, Jean-Lon Chen |
| 2018 | ISCAS | An 1.97μ, W/Ch 65nm-CMOS 8-Channel Analog Front-End Acquisition Circuit with Fast-Settling Hybrid DC Servo Loop for EEG Monitoring. | Pin-Wen Chen, Chi-Wei Huang, Chung-Yu Wu |
| 2018 | ISCAS | The Design of CMOS 13.56-MHz High Efficiency 1/3 1.99V/6.29V Active Rectifier for Implantable Neuromodulation Systems. | Sung-Hao Wang, Yueh-Hsuan Lee, Xin-Hong Qian, Chung-Yu Wu |
| 2017 | ASPDAC | Emerging technologies for biomedical applications: Artificial vision systems and brain machine interface. | Masaharu Imai, Yoshinori Takeuchi, Jun Ohta, Gregg Jrgen Suaning, Chung-Yu Wu, Napoleon Torres-Martinez |
| 2017 | ASPDAC | Design considerations and clinical applications of closed-loop neural disorder control SoCs. | Chung-Yu Wu, Cheng-Hsiang Cheng, Yi-Huan Ou-Yang, Chiung-Ghu Chen, Wei-Ming Chen, Ming-Dou Ker, Chen-Yi Lee, Sheng-Fu Liang, Fu-Zen Shaw |
| 2017 | IGARSS | A gradient vector flow snake based multi-level morphological active contour algorithm. | Chao-Cheng Wu, You-Lun Wu, Chung-Yu Wu, Chinsu Lin |
| 2017 | ISCAS | A 16-channel CMOS chopper-stabilized analog front-end acquisition circuits for ECoG detection. | Cheng-Hsiang Cheng, Zhi-Xin Chen, Chung-Yu Wu |
| 2016 | ISCAS | The design of 8-channel CMOS area-efficient low-power current-mode analog front-end amplifier for EEG signal recording. | Ya-Syuan Sung, Wei-Ming Chen, Chung-Yu Wu |
| 2015 | ISCAS | An 8-channel power-efficient time-constant-enhanced analog front-end amplifier for neural signal acquisition. | Jung-Chen Chung, Wei-Ming Chen, Chung-Yu Wu |
| 2013 | ISCAS | A Low power 10bit 500kS/s delta-modulated SAR ADC (DMSAR ADC) for implantable medical devices. | Yuan-Fu Lyu, Chung-Yu Wu, Li-Chen Liu, Wei-Ming Chen |
| 2012 | ISCAS | A low-power current-mode front-end acquisition system for biopotential signal recording. | Wei-Ming Chen, Liang-Ting Kuo, Chung-Yu Wu |
| 2010 | ISCAS | 45-nm Planar bulk-CMOS 23-GHz LNAs with high-Q above-IC inductors. | Wen-Chieh Wang, Zue-Der Huang, Geert Carchon, Abdelkarim Mercha, Stefaan Decoutere, Walter De Raedt, Chung-Yu Wu |
| 2009 | ISCAS | A High Performance Linear Current Mode Image Sensor. | Chih-Cheng Hsieh, Wei-Yu Chen, Chung-Yu Wu |
| 2008 | ISCAS | The design of integrated 3-GHz to 11-GHz CMOS transmitter for full-band ultra-wideband (UWB) applications. | Wen-Chieh Wang, Chang-Ping Liao, Yi-Kai Lo, Zue-Der Huang, Fadi Riad Shahroury, Chung-Yu Wu |
| 2007 | ISCAS | A CMOS Expansion/Contraction Motion Sensor with a Retinal Processing Circuit for Z-motion Detection Applications. | Chung-Yu Wu, Chien-Ta Huang |
| 2007 | ISCAS | A 24-GHz CMOS Current-Mode Power Amplifier with High PAE and Output Power. | Chung-Yu Wu, Shun-Wei Hsu, Wen-Chieh Wang |
| 2005 | ISCAS | A 0.8 V 5.9 GHz wide tuning range CMOS VCO using inversion-mode bandswitching varactors. | Chung-Yu Wu, Chi-Yao Yu |
| 2004 | ISCAS | A low-power implantable Pseudo-BJT-based silicon retina with solar cells for artificial retinal prostheses. | Chung-Yu Wu, Felice Cheng, Cheng-Ta Chiang, Po-Kang Lin |
| 2003 | IJCNN | A new structure of large-neighborhood cellular nonlinear network (LN-CNN). | Chiu-Hung Cheng, Sheng-Hao Chen, Li-Ju Lin, Kuan-Hsun Huang, Chung-Yu Wu |
| 2003 | IJCNN | The design of a bionic sensory chip based on the CNN model derived from the Mammalian retina. | Wen-Chia Yang, Li-Ju Lin, Chung-Yu Wu |
| 2003 | ISCAS | An optimized CMOS pseudo-active-pixel-sensor structure for low-dark-current imager applications. | Yu-Chuan Shih, Chung-Yu Wu |
| 2002 | ISCAS | The design of high-speed pipelined analog-to-digital converters using voltage-mode sampling and current mode processing techniques. | Yu-Yee Liow, Chung-Yu Wu |
| 2002 | ISCAS | Improvement of pattern learning and recognition capability in ratio-memory cellular neural networks with non-discrete-type Hebbian learning algorithm. | Chung-Yu Wu, Jui-Lin Lai |
| 2001 | ISCAS | The design of a CMOS IF bandpass amplifier with low sensitivity to process and temperature variations. | Chung-Yu Wu, Chung-Yun Chou |
| 2000 | ISCAS | A compact CMOS 2 V low-power direct-conversion quadrature modulator merged with quadrature voltage-controlled oscillator and RF amplifier for 1.9 GHz RF transmitter applications. | Hong-Sing Kao, Chung-Yu Wu |
| 2000 | ISCAS | Design and analysis of the on-chip ESD protection circuit with a constant input capacitance for high-precision analog applications. | Ming-Dou Ker, Tung-Yang Chen, Chung-Yu Wu, Hun-Hsien Chang |
| 2000 | ISCAS | The new CMOS 2 V low-power IF fully differential Rm-C bandpass amplifier for RF wireless receivers. | Chung-Yu Wu, Yu Cheng, Jeng Gong |
| 2000 | ISCAS | A new CMOS readout circuit for uncooled bolometric infrared focal plane arrays. | Tsung-Hsin Yu, Chung-Yu Wu, Pei-Yen Chen, Fa-Wen Chi, Jiunn-Jye Luo, Cheng Der Chiang, Ya-Tung Cherng |
| 1999 | IJCNN | The design of CMOS cellular neural network (CNN) using the neuron-bipolar junction transistor (νBJT). | Chiou-Ling Yeh, Chung-Yu Wu |
| 1999 | ISCAS | The design of high-performance 128128 CMOS image sensors using new current-readout techniques. | Yu-Chuan Shih, Chung-Yu Wu |
| 1999 | ISCAS | A new dynamic ternary sense amplifier for 1.5-bit/cell multi-level low-voltage CMOS DRAMs. | Chung-Yu Wu, Yu-Yee Liow |
| 1999 | ISCAS | A new compact neuron-bipolar cellular neural network structure with adjustable neighborhood layers and high integration level. | Wen-Cheng Yen, Chung-Yu Wu |
| 1995 | ISCAS | A 1.5 V CMOS Current-Mode Cyclic Analog-to-Digital Converter with Digital Error Correction. | Chih-Cheng Chen, Chung-Yu Wu, Jyh-Jer Cho |
| 1995 | ISCAS | Low-Voltage Low-Power CMOS True-Single-Phase Clocking Scheme with Locally Asynchronous Logic Circuits. | Hong-Yi Huang, Jinn-Shyan Wang, Yuan-Hua Chu, Tain-Shun Wu, Kuo-Hsing Cheng, Chung-Yu Wu |
| 1995 | ISCAS | Complementary-LVTSCR ESD Protection Scheme for Submicron CMOS IC's. | Ming-Dou Ker, Chung-Yu Wu, Hun-Hsien Chang, Tao Cheng, Tain-Shun Wu |
| 1995 | ISCAS | CMOS Current-Mode Outstar Neural Networks with Long-Period Analog Ratio Memory. | Jeng-Feng Lan, Chung-Yu Wu |
| 1995 | ISCAS | The Design of New Low-Voltage CMOS VHF Continuous-Time Lowpass Biquaud Filters. | Chung-Yu Wu, Heng-Shou Hsu |
| 1995 | ISCAS | A 3-V 1-GHz Low-Noise Bandpass Amplifier. | Chung-Yu Wu, Shuo-Yuan Hsiao, Ron-Yi Liu |
| 1995 | ISCAS | A New CMOS Current-Sensing Complementary Pass-Transistor Logic (CSCPTL) for High-Speed Low-Voltage Applications. | Chung-Yu Wu, Jr-Houng Lu, Kuo-Hsing Cheng |
| 1995 | ISCAS | A 1.5V CMOS Balanced Differential Switched-Capacitor Filter with Internal Clock Boosters. | Chung-Yu Wu, Wei-Shinn Wey, Tsai-Chung Yu |
| 1994 | ISCAS | An Alorithmic Analog-to-Digital Converter with low Ratio-and Gain-Sensitivities and 4N-Clock Conversion Cycle. | Shu-Yuan Chin, Chung-Yu Wu |
| 1994 | ISCAS | New CMOS Differential Logic Circuits for True-Single-Phase Pipelined Systems. | Hong-Yi Huang, Chung-Yu Wu |
| 1994 | ISCAS | The Design of the CMOS Current-Mode General-Purpose Analog Processor. | Liang-Hung Lu, Chung-Yu Wu |
| 1994 | ISCAS | VHF/UHF High-Q Bandpass Tunable Filters Design Using CMOS Inverter-Based Transresistnace Amplifiers. | Ping-Hsing Lu, Chung-Yu Wu, Ming-Kai Tsai |
| 1994 | ISCAS | Feedback-Controlled Enhance-Pull-Down BiCMOS for Sub-3-V Digital Circuit. | Yuh-Kuang Tseng, Kuo-Hsing Cheng, Chung-Yu Wu |
| 1994 | ISCAS | The Continuous-Time VHF Lowpass Filter Design Using Finite-Gain Current and Voltage Amplifiers and Special Q-Enhancement Circuit. | Chung-Yu Wu, Heng-Shou Hsu |
| 1993 | ISCAS | Chopper-stabilized Sigma-delta Modulator. | Ying-Hwi Chang, Chung-Yu Wu, Tsai-Chung Yu |
| 1993 | ISCAS | A Ratio-independent and Gain-insensitive Algorithmic Analog-to-digital Converter. | Shu-Yuan Chin, Chung-Yu Wu |
| 1993 | ISCAS | Redundant Algebra and Integrated Circuit Implementation of Ternary Logic and Their Applications. | Hong-Yi Huang, Chung-Yu Wu |
| 1993 | ISCAS | VHF Bandpass Filter Design Using CMOS Transresistance Amplifiers. | Ping-Hsing Lu, Chung-Yu Wu, Ming-Kai Tsai |