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A Hybrid Structure Dual-Path Step-Down Converter With 96.2% Peak Efficiency Using 250-m Omega Large-DCR Inductor

Authors
Huh, YeunheeHong, Sung-WanCho, Gyu-Hyeong
Issue Date
Jan-2019
Publisher
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
Keywords
Buck; dc resistance (DCR); dc-dc converter; dual-path; equivalent series resistance (ESR); hybrid; parasitic resistance; step-down
Citation
IEEE JOURNAL OF SOLID-STATE CIRCUITS, v.54, no.4, pp 959 - 967
Pages
9
Journal Title
IEEE JOURNAL OF SOLID-STATE CIRCUITS
Volume
54
Number
4
Start Page
959
End Page
967
URI
https://scholarworks.sookmyung.ac.kr/handle/2020.sw.sookmyung/3690
DOI
10.1109/JSSC.2018.2882526
ISSN
0018-9200
1558-173X
Abstract
A dual-path step-down converter (DPDC) is presented for achieving high power efficiency in the mobile power management ICs (PMICs). Adopting a hybrid structure using one inductor and one flying capacitor, the proposed DPDC supplies a load current via two parallel paths, relieved an intrinsic problem of the conventional buck converter (CBC) topology, which is a significant power loss from a large DCR of the inductor (R-DCR). Therefore, DPDC achieves a high power efficiency and thus also reduces the heating problem, which is another critical issue in the mobile set. Moreover, DPDC can shrink the volume of the PMIC set with a low manufacturing cost by alleviating an R-DCR specification of the inductor. In this paper, although a 250 m Omega of large R-DCR inductor is used for our measurements, a 96.2% of peak efficiency was achieved and the power loss of total parasitic resistances can be reduced to up to 30% of that of CBC. Moreover, according to our measurement plots, it is verified that DPDC achieves the efficiency notably higher not only in a wide load current (I-LOAD) range but also in a wide conversion ratio (V-OUT/V-IN) range, compared to CBC.
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