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Kang Wei 0001
Person information
- affiliation: Texas Instruments Inc, Dallas, TX, USA
Other persons with the same name
- Kang Wei — disambiguation page
- Kang Wei 0002
— Southeast University, Nanjing, China - Kang Wei 0003
— University of Jinan, Jinan, China - Kang Wei 0004
— Southeast University, Nanjing, Jiangsu, China
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2020 – today
- 2024
[j4]Lei Zhao
, Junyao Tang
, Kang Wei
, Cheng Huang
:
A 4-Phase DAB Current-Mode Hysteretic Controlled Buck Converter With Relaxed Inductor Requirements and Enhanced DC and Dynamic Performance. IEEE J. Solid State Circuits 59(5): 1556-1566 (2024)
[j3]Lei Zhao
, Junyao Tang
, Xin Zhang
, Kang Wei
, Raveesh Magod
, Cheng Huang
:
A 96.1% Efficiency Single-Inductor Multiple-Output (SIMO) Buck Converter With 2.1-A/ns Transient Speed and 2.2-A Maximum Current Capacity. IEEE J. Solid State Circuits 59(8): 2545-2556 (2024)
[c5]Junyao Tang, Jianqiang Jiang, Lei Zhao, Xin Zhang, Kang Wei, Cheng Huang:
A Monolithic 3-Level Single-Inductor Multiple-Output Buck Converter with State-Based Non-Linear Control Capable of Handling 1A/1.5ns Transient with On-Die LC. CICC 2024: 1-2- 2023
[c4]Muhammad Rizwan Khan
, Kang Wei, Xin Zhang, Cheng Huang:
A Single-Inductor 4-Phase Hybrid Switched-Capacitor Topology for Integrated 48V-to-1V DC-DC Converters. ISCAS 2023: 1-5- 2021
[j2]Kang Wei
, Dongsheng Brian Ma
:
A 10-MHz DAB Hysteretic Control Switching Power Converter for 5G IoT Power Delivery. IEEE J. Solid State Circuits 56(7): 2113-2122 (2021)
[j1]Kang Wei
, Yogesh Ramadass, Dongsheng Brian Ma
:
Direct 12V/24V-to-1V Tri-State Double Step-Down Power Converter With Online VCF Rebalancing and In-Situ Precharge Rate Regulation. IEEE J. Solid State Circuits 56(8): 2416-2426 (2021)- 2020
[c3]Kang Wei, Yogesh Ramadass, Dongsheng Brian Ma:
11.1 A Direct 12V/24V-to-1V 3W 91.2%-Efficiency Tri-State DSD Power Converter with Online VCF Rebalancing and In-Situ Precharge Rate Regulation. ISSCC 2020: 190-192
2010 – 2019
- 2019
[c2]Kang Wei, Bumkil Lee, Dongsheng Brian Ma:
A 10-MHz 14.3W/mm2 DAB Hysteretic Control Power Converter Achieving 2.5W/247ns Full Load Power Flipping and above 80% Efficiency in 99.9% Power Range for 5G IoTs. VLSI Circuits 2019: 172-- 2017
[c1]Kang Wei
, Dongsheng Brian Ma:
Comparative topology and power loss study for high power density and high conversion ratio integrated switching power converters. LASCAS 2017: 1-4
Coauthor Index

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