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Chia-Fu Lee
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2020 – today
- 2024
- [c12]Hidehiro Fujiwara, Haruki Mori, Wei-Chang Zhao, Kinshuk Khare, Cheng-En Lee, Xiaochen Peng, Vineet Joshi, Chao-Kai Chuang, Shu-Huan Hsu, Takeshi Hashizume, Toshiaki Naganuma, Chen-Hung Tien, Yao-Yi Liu, Yen-Chien Lai, Chia-Fu Lee, Tan-Li Chou, Kerem Akarvardar, Saman Adham, Yih Wang, Yu-Der Chih, Yen-Huei Chen, Hung-Jen Liao, Tsung-Yung Jonathan Chang:
34.4 A 3nm, 32.5TOPS/W, 55.0TOPS/mm2 and 3.78Mb/mm2 Fully-Digital Compute-in-Memory Macro Supporting INT12 × INT12 with a Parallel-MAC Architecture and Foundry 6T-SRAM Bit Cell. ISSCC 2024: 572-574 - 2023
- [c11]Haruki Mori, Wei-Chang Zhao, Cheng-En Lee, Chia-Fu Lee, Yu-Hao Hsu, Chao-Kai Chuang, Takeshi Hashizume, Hao-Chun Tung, Yao-Yi Liu, Shin-Rung Wu, Kerem Akarvardar, Tan-Li Chou, Hidehiro Fujiwara, Yih Wang, Yu-Der Chih, Yen-Huei Chen, Hung-Jen Liao, Tsung-Yung Jonathan Chang:
A 4nm 6163-TOPS/W/b $\mathbf{4790-TOPS/mm^{2}/b}$ SRAM Based Digital-Computing-in-Memory Macro Supporting Bit-Width Flexibility and Simultaneous MAC and Weight Update. ISSCC 2023: 132-133 - [c10]Po-Hao Lee, Chia-Fu Lee, Yi-Chun Shih, Hon-Jarn Lin, Yen-An Chang, Cheng-Han Lu, Yu-Lin Chen, Chieh-Pu Lo, Chung-Chieh Chen, Cheng-Hsiung Kuo, Tan-Li Chou, Chia-Yu Wang, J. J. Wu, Roger Wang, Harry Chuang, Yih Wang, Yu-Der Chih, Tsung-Yung Jonathan Chang:
A 16nm 32Mb Embedded STT-MRAM with a 6ns Read-Access Time, a 1M-Cycle Write Endurance, 20-Year Retention at 150°C and MTJ-OTP Solutions for Magnetic Immunity. ISSCC 2023: 494-495 - 2022
- [c9]Hidehiro Fujiwara, Haruki Mori, Wei-Chang Zhao, Mei-Chen Chuang, Rawan Naous, Chao-Kai Chuang, Takeshi Hashizume, Dar Sun, Chia-Fu Lee, Kerem Akarvardar, Saman Adham, Tan-Li Chou, Mahmut Ersin Sinangil, Yih Wang, Yu-Der Chih, Yen-Huei Chen, Hung-Jen Liao, Tsung-Yung Jonathan Chang:
A 5-nm 254-TOPS/W 221-TOPS/mm2 Fully-Digital Computing-in-Memory Macro Supporting Wide-Range Dynamic-Voltage-Frequency Scaling and Simultaneous MAC and Write Operations. ISSCC 2022: 1-3 - [c8]Chia-Fu Lee, Cheng-Han Lu, Cheng-En Lee, Haruki Mori, Hidehiro Fujiwara, Yi-Chun Shih, Tan-Li Chou, Yu-Der Chih, Tsung-Yung Jonathan Chang:
A 12nm 121-TOPS/W 41.6-TOPS/mm2 All Digital Full Precision SRAM-based Compute-in-Memory with Configurable Bit-width For AI Edge Applications. VLSI Technology and Circuits 2022: 24-25 - 2021
- [c7]Yu-Der Chih, Po-Hao Lee, Hidehiro Fujiwara, Yi-Chun Shih, Chia-Fu Lee, Rawan Naous, Yu-Lin Chen, Chieh-Pu Lo, Cheng-Han Lu, Haruki Mori, Wei-Cheng Zhao, Dar Sun, Mahmut E. Sinangil, Yen-Huei Chen, Tan-Li Chou, Kerem Akarvardar, Hung-Jen Liao, Yih Wang, Meng-Fan Chang, Tsung-Yung Jonathan Chang:
An 89TOPS/W and 16.3TOPS/mm2 All-Digital SRAM-Based Full-Precision Compute-In Memory Macro in 22nm for Machine-Learning Edge Applications. ISSCC 2021: 252-254 - 2020
- [c6]Yu-Der Chih, Yi-Chun Shih, Chia-Fu Lee, Yen-An Chang, Po-Hao Lee, Hon-Jarn Lin, Yu-Lin Chen, Chieh-Pu Lo, Meng-Chun Shih, Kuei-Hung Shen, Harry Chuang, Tsung-Yung Jonathan Chang:
13.3 A 22nm 32Mb Embedded STT-MRAM with 10ns Read Speed, 1M Cycle Write Endurance, 10 Years Retention at 150°C and High Immunity to Magnetic Field Interference. ISSCC 2020: 222-224
2010 – 2019
- 2019
- [j3]Yi-Chun Shih, Chia-Fu Lee, Yen-An Chang, Po-Hao Lee, Hon-Jarn Lin, Yu-Lin Chen, Ku-Feng Lin, Ta-Ching Yeh, Hung-Chang Yu, Harry Chuang, Yu-Der Chih, Tsung-Yung Jonathan Chang:
Logic Process Compatible 40-nm 16-Mb, Embedded Perpendicular-MRAM With Hybrid-Resistance Reference, Sub- $\mu$ A Sensing Resolution, and 17.5-nS Read Access Time. IEEE J. Solid State Circuits 54(4): 1029-1038 (2019) - [c5]William J. Gallagher, Eric Chien, Tien-Wei Chiang, Jian-Cheng Huang, Meng-Chun Shih, C. Y. Wang, Christine Bair, George Lee, Yi-Chun Shih, Chia-Fu Lee, Roger Wang, Kuei-Hung Shen, J. J. Wu, Wayne Wang, Harry Chuang:
Recent Progress and Next Directions for Embedded MRAM Technology. VLSI Circuits 2019: 190- - 2018
- [c4]Yi-Chun Shih, Chia-Fu Lee, Yen-An Chang, Po-Hao Lee, Hon-Jarn Lin, Yu-Lin Chen, Ku-Feng Lin, Ta-Ching Yeh, Hung-Chang Yu, Harry Chuang, Yu-Der Chih, Tsung-Yung Jonathan Chang:
Logic Process Compatible 40NM 16MB, Embedded Perpendicular-MRAM with Hybrid-Resistance Reference, Sub-μA Sensing Resolution, and 17.5NS Read Access Time. VLSI Circuits 2018: 79-80 - 2017
- [j2]Yu-Jen Ku, Dian-Yu Lin, Chia-Fu Lee, Ping-Jung Hsieh, Hung-Yu Wei, Chun-Ting Chou, Ai-Chun Pang:
5G Radio Access Network Design with the Fog Paradigm: Confluence of Communications and Computing. IEEE Commun. Mag. 55(4): 46-52 (2017) - [c3]Chia-Fu Lee, Hon-Jarn Lin, Chiu-Wang Lien, Yu-Der Chih, Tsung-Yung Jonathan Chang:
A 1.4Mb 40-nm embedded ReRAM macro with 0.07um2 bit cell, 2.7mA/100MHz low-power read and hybrid write verify for high endurance application. A-SSCC 2017: 9-12 - 2016
- [c2]Chih-Wei Ho, Chun-Ting Chou, Yu-Chun Chien, Chia-Fu Lee:
Unsupervised Anomaly Detection Using Light Switches for Smart Nursing Homes. DASC/PiCom/DataCom/CyberSciTech 2016: 803-810 - 2013
- [c1]Caleb Y.-S. Cho, J. C. Wang, Lion Huang, Milo Weng, Yu-Fan Lin, Chia-Fu Lee, C. W. Lien, H. C. Feng, Tassa Yang, S. P. Liao, J. J. Wu, Yu-Der Chih, Sreedhar Natarajan:
A 55-nm, 0.86-Volt operation, 75MHz high speed, 96uA/MHz low power, wide voltage supply range 2M-bit split-gate embedded Flash. VLSI-DAT 2013: 1-4
2000 – 2009
- 2007
- [j1]Fang-Shi Lai, Chia-Fu Lee:
On-Chip Voltage Down Converter to Improve SRAM Read/Write Margin and Static Power for Sub-Nano CMOS Technology. IEEE J. Solid State Circuits 42(9): 2061-2070 (2007)
Coauthor Index
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