UM

Browse/Search Results:  1-10 of 16 Help

Selected(0)Clear Items/Page:    Sort:
A Fast Startup 38.4-MHz Crystal Oscillator Achieving 99-nJ Startup Energy with Adaptive Chirping Journal article
Rahmani, Abdolraouf, Ramiah, Harikrishnan, Lei, Ka Meng, Lim, Chee Cheow, Lai, Nai Shyan, Mak, Pui In, Martins, Rui P.. A Fast Startup 38.4-MHz Crystal Oscillator Achieving 99-nJ Startup Energy with Adaptive Chirping[J]. IEEE Access, 2024, 12, 102202-102211.
Authors:  Rahmani, Abdolraouf;  Ramiah, Harikrishnan;  Lei, Ka Meng;  Lim, Chee Cheow;  Lai, Nai Shyan; et al.
Favorite | TC[WOS]:0 TC[Scopus]:0  IF:3.4/3.7 | Submit date:2024/08/05
Cmos  Internet-of-things (Iot)  Crystal Oscillator (Xo)  Startup Time  Chirp Injection  Motional Current  Adaptive Chirp Injection  Energy Injection  
A Battery-Input Three-Mode Buck–Boost Hybrid DC–DC Converter With 97.6% Peak Efficiency Journal article
Zhao, Shuangxing, Zhan, Chenchang, Lu, Yan. A Battery-Input Three-Mode Buck–Boost Hybrid DC–DC Converter With 97.6% Peak Efficiency[J]. IEEE JOURNAL OF SOLID-STATE CIRCUITS, 2024, 59(5), 1567-1577.
Authors:  Zhao, Shuangxing;  Zhan, Chenchang;  Lu, Yan
Favorite | TC[WOS]:3 TC[Scopus]:1  IF:4.6/5.6 | Submit date:2024/02/22
33-v Devices  Flying Capacitor  Lithium-ion (Li-ion) Batteries  Low Electromagnetic Interference (Emi)  Soft-startup Circuits  Three-mode Non-inverting Buck–boost Hybrid Converter (3m-bbhc)  
One-Cycle-Startup Relaxation Oscillator Using Ratiometric Threshold-Referenced and Self-Synchronized Power Gating Techniques Journal article
Guangshu Zhao, Zhiming Xiao, Pui In Mak, Rui P. Martins, Man Kay Law. One-Cycle-Startup Relaxation Oscillator Using Ratiometric Threshold-Referenced and Self-Synchronized Power Gating Techniques[J]. IEEE Transactions on Circuits and Systems II: Express Briefs, 2024, 71(1), 56-60.
Authors:  Guangshu Zhao;  Zhiming Xiao;  Pui In Mak;  Rui P. Martins;  Man Kay Law
Favorite | TC[WOS]:1 TC[Scopus]:1  IF:4.0/3.7 | Submit date:2023/08/03
Relaxation Oscillator  One-cycle Startup  Selfsynchronized Power Gating  Ratiometric Threshold-referenced Technique  
Ultra-Low-Voltage Clock References Book chapter
出自: Analog Circuits and Signal Processing, Switzerland:Springer, 2023, 页码:91-127
Authors:  Ka-Meng Lei;  Pui-In Mak;  Rui P. Martins
Favorite | TC[Scopus]:0 | Submit date:2023/08/03
Cmos  Crystal Oscillator (Xo)  Energy Harvesting  Fast Startup  Internet Of Things (Iot)  Relaxation Oscillator (Rxo)  Ultra-low Power  Ultra-low-voltage (Ulv)  
On the DC-Settling Process of the Pierce Crystal Oscillator in Start-Up Journal article
Zhang, Zehao, Yang, Shiheng, Liu, Yueduo, Zhu, Zihao, Lin, Jiahui, Bao, Rongxin, Xu, Tailong, Yang, Zhizhan, Zhang, Mingkang, Liu, Jiaxin, Zhou, Xiong, Yin, Jun, Mak, Pui In, Li, Qiang. On the DC-Settling Process of the Pierce Crystal Oscillator in Start-Up[J]. IEEE Transactions on Circuits and Systems II: Express Briefs, 2023, 70(1), 26-30.
Authors:  Zhang, Zehao;  Yang, Shiheng;  Liu, Yueduo;  Zhu, Zihao;  Lin, Jiahui; et al.
Favorite | TC[WOS]:1 TC[Scopus]:1  IF:4.0/3.7 | Submit date:2023/01/30
Bluetooth Low-energy (Ble)  Crystal Oscillator (Xo)  Dc Settling  Duty Cycling  Energy Harvesting  Energy Injection  Initial Motional Current  Internet Of Things (Iot)  Low Power  Startup  
Serverless Computing: State-of-the-Art, Challenges and Opportunities Journal article
Li, Yongkang, Lin, Yanying, Wang, Yang, Ye, Kejiang, Xu, Cheng Zhong. Serverless Computing: State-of-the-Art, Challenges and Opportunities[J]. IEEE Transactions on Services Computing, 2022, 16(2), 1522 - 1539.
Authors:  Li, Yongkang;  Lin, Yanying;  Wang, Yang;  Ye, Kejiang;  Xu, Cheng Zhong
Favorite | TC[WOS]:31 TC[Scopus]:53  IF:5.5/5.9 | Submit date:2022/05/17
Survey  Serverless Computing  Faas And Baas  Startup Latency  Isolation  Scheduling  
Startup Time and Energy-Reduction Techniques for Crystal Oscillators in the IoT Era Journal article
Lei,Ka Meng, Mak,Pui In, Martins,Rui P.. Startup Time and Energy-Reduction Techniques for Crystal Oscillators in the IoT Era[J]. IEEE TRANSACTIONS ON CIRCUITS AND SYSTEMS II-EXPRESS BRIEFS, 2021, 68(1), 30-35.
Authors:  Lei,Ka Meng;  Mak,Pui In;  Martins,Rui P.
Favorite | TC[WOS]:11 TC[Scopus]:11  IF:4.0/3.7 | Submit date:2021/03/04
Chirping  Cmos  Constant-frequency Injection  Crystal Oscillator  Dithering  Dynamic Load  Energy Injection  Fast Startup  Inductive  Multi-stage  Negative Resistance  
A Regulation-Free Sub-0.5-V 16-/24-MHz Crystal Oscillator with 14.2-nJ Startup Energy and 31.8-μW Steady-State Power Journal article
Ka-Meng Lei, Pui-In Mak, Man-Kay Law, Rui P. Martins. A Regulation-Free Sub-0.5-V 16-/24-MHz Crystal Oscillator with 14.2-nJ Startup Energy and 31.8-μW Steady-State Power[J]. IEEE Journal of Solid-State Circuits, 2018, 53(9), 2624-2635.
Authors:  Ka-Meng Lei;  Pui-In Mak;  Man-Kay Law;  Rui P. Martins
Favorite | TC[WOS]:21 TC[Scopus]:24  IF:4.6/5.6 | Submit date:2019/02/11
Bluetooth Low-energy (Ble)  Chirping  Cmos  Crystal Oscillator (Xo)  Duty-cycling  Energy Harvesting (Eh)  Fast Startup  Internet-of-things (Iot)  Ultralow Power (Ulp)  Ultralow Voltage (Ulv)  
A regulation-free sub-0.5 V 16/24MHz crystal oscillator for energy-harvesting BLE radios with 14.2 nJ startup energy and 31.8 pW steady-state power Conference paper
Lei, K. M., Mak, P. I., Law, M. K., Martins, R. P.. A regulation-free sub-0.5 V 16/24MHz crystal oscillator for energy-harvesting BLE radios with 14.2 nJ startup energy and 31.8 pW steady-state power[C], 2018.
Authors:  Lei, K. M.;  Mak, P. I.;  Law, M. K.;  Martins, R. P.
Favorite |  | Submit date:2022/01/24
Crystal Oscillators  Fast startup  ultra-low-power  ultra-low-voltage  chirping  multi-stage gm  
A 0.4V 4.8μW 16MHz CMOS crystal oscillator achieving 74-fold startup-time reduction using momentary detuning Conference paper
Ka-Meng Lei, Pui-In Mak, R. P. Martins. A 0.4V 4.8μW 16MHz CMOS crystal oscillator achieving 74-fold startup-time reduction using momentary detuning[C]:IEEE, 2017, 2791-2794.
Authors:  Ka-Meng Lei;  Pui-In Mak;  R. P. Martins
Favorite | TC[WOS]:2 TC[Scopus]:8 | Submit date:2019/02/11
Cmos  Crystal Oscillator  Fast Startup  Low-power  Low-voltage  Ultra-low-power