Year |
Name |
Master Thesis |
Current state |
113 |
林奕廷 |
Design of a High-Area-Efficiency Digital Power Management Architecture Based on Integer Arithmetic |
力智電子 |
113 |
黃郁喬 |
Design of Wide Operating Range BJT-Based Temperature Sensor Integrated Circuits |
力智電子 |
113 |
林宜潔 |
Design of a Low-Noise Galvanic Skin Response Sensing Chip for Mental Stress Monitoring Applications |
瑞昱 |
113 |
林冠宇 |
Design of Low-Power Analog Front-End Integrated Circuits for Photoplethysmography Sensors |
聯詠科技 |
113 |
盧亮潔 |
A 1.8V Slew-rate Enhancement Buffer and a Bi-directional Current Stimulator with an Active Charge Balancer on 0.18 μm CMOS |
|
113 |
顏敬任 |
Design of High-Efficiency CMOS Rectifier and RF-DC Power Converter for Wireless Energy Harvesting |
UCSD 博士班 (Fellowship) |
113 |
林逸凡 |
Ultra Low Power Voltage and Current Reference Circuit Design |
瑞昱 |
113 |
余孟勳 |
A Voltage-Controlled Oscillator-Based Delta-Sigma Readout Chip for Resistive Sensor Applications |
聯詠科技 |
112 |
陳顗鈞 |
Digital Signal Processing Chip Design for ECG and PPG Biomedical Sensing Applications |
聯詠科技 |
112 |
蔡承澤 |
A 2nd-order Voltage-Controlled Oscillator-Based Delta-Sigma Readout Chip for Electrical Double-Layer Electrochemical Sensing Applications |
聯詠科技 |
112 |
黃映婕 |
Design of Highly Digital Resistor-Based Temperature Sensors |
聯詠科技 |
112 |
劉惟誠 |
Design of Low-Noise Analog Front-End Sensing Chip for Electrocardiography Monitoring Applications |
瑞昱 |
112 |
呂定恆 |
Sensing Interface Circuit and Analog-to-Digital Convertor for Electrochemical Sensing |
聯詠科技 |
111 |
葉詠華 |
An Electrochemical Impedance Spectroscopy Chip with Low-distortion Current Stimulator for Sweat Sensing Applications |
聯詠科技 |
111 |
陳靖翔 |
A 433-MHz Wireless Burst-chirp Modulation Transmitter with an Adjustable Duty-cycle Control Loop |
聯發科技 |
111 |
鍾政緯 |
Dual Edge Digital Pulse Width Modulation with 124 ps Time Resolution for Multiphase DC-DC Buck Converter |
立錡科技 |
111 |
林昊 |
A Reconfigurable, Pulse-shaping Electrochemical Readout System for Bio-Sensing Transistors |
NVIDIA |
111 |
林奕德 |
Readout Interface Circuits for Electrical Impedance and Heartbeat Measurement |
台積電 |
110 |
郭浩毅 |
A High-efficiency and Wide-input-Range Power Management Chip Using Adaptive Load/Input Power Matching Technique for Mobile UHF RF Charging Applications |
立錡科技 |
110 |
單祥鑫 |
A Low-power, CMOS Double-pulse Sensing Front-end Circuit for Rapid Disease Screening |
高通半導體 (Qualcomm) |
110 |
邵丞擇 |
Design of Low-power Voltage Reference Circuits and Temperature Sensor in Sub-threshold Region |
聯發科技 |
109 |
黃凱杰 |
Soil-Powered Inductive LED Driver with Dual-Mode Power Extraction |
天鈺 |
109 |
呂浚銨 |
Wide Input Power Range RF Energy Harvesting System with Load Modulation Technique |
群聯 |
108 |
陳誼家 |
Microwatt Dual-Mode Front-End IC for Electrochemical Sensing Applications |
亞德諾半導體 (ADI) |
108 |
陳晏廷 |
0.8V Sub-mW 433MHz-band Transmitter and Receiver in 0.18μm CMOS |
聯發科技 |
108 |
劉家宏 |
Capacitive DC-DC Converter with Extending High Efficiency Range for Soil Microbial Energy Extraction |
瑞昱 |
107 |
郭鎮億 |
Wide Input-Range RF Energy Harvesting System |
瑞昱 |
106 |
施韋志 |
A CMOS UHF Chip With An Adaptive Impedance Matching Mechanism |
奇景科技 |
106 |
蔡瑞翔 |
Implementation of Wirelessly-Powered, Wide-Range Electrochemical Readout Interface |
瑞昱 |
105 |
段秋月 |
A 145uW 315MHz RF Transmitter With Frequency Multiplcation Techniques for IoT Applications |
凌陽科技 |
105 |
林祓𩱾 |
Low-Power Wireless Electrochemical Sensing IC for Biomedical Application |
立錡科技 |
105 |
林書玄 |
Wide Input-Range Power Management System for RF Energy Harvesting |
聯發科技 |
105 |
楊佳評 |
Capacitive DC-DC Converter with Maximum Power Point Tracking for Soil Energy Extraction |
瑞昱 |
103 |
黃士杰 |
A Closed-Loop, Fully-Integrated Wireless CMOS Bondwire Accelerometer Design |
友達光電 |
103 |
許弘昇 |
Design of Low Power Current-Reused Dual-Band Receiver |
友達光電 |
103 |
余晨暐 |
High Efficiency, Clock-Reference-free Power Management System for Wireless Energy Harvesting |
凌陽科技 |
103 |
曹舒堯 |
A Wirelessly-Powering Current-Mode Analog-to-Digital Converter for Blood Glucose Monitoring |
原盛科技 |
103 |
郭昱均 |
Self-Sustaining Wireless Moisture Sensor using Solely Soil Energy |
捷達創新 |
102 |
洪志豪 |
Design and Applications of Low Phase Noise Oscillators |
友達光電 |
102 |
溫富鈞 |
A Self-Sustained Wireless Sensor System for Environmental Monitoring |
工研院 |