Skip to main navigation Skip to main content
  • KIEEME

J Electr Electron Mater : Journal of Electrical and Electronic Materials

OPEN ACCESS
ABOUT
BROWSE ARTICLES
EDITORIAL POLICIES
FOR CONTRIBUTORS

Page Path

4
results for

"Deep trench"

Keywords

Publication year

Authors

"Deep trench"

The Process and Fabrication of 500 V Unified Trench Gate Power MOSFET
Ey Goo Kang
J Korean Inst Electr Electron Mater Eng 2013;26(10):720-725.   Published online October 1, 2013
DOI: https://doi.org/10.4313/JKEM.2013.26.10.720
Power MOSFET operate voltage-driven devices, design to control the large power switching device for power supply, converter, motor control, etc. We have analyzed trench process, field limit ring process for fabrication of unified trench gate power MOSFET. And we have analyzed electrical characteristics of fabricated unified trench gate power MOSFET. The optimal trench process was based on SF6. After we carried out SEM measurement, we obtained superior trench gate and field limit ring process. And we compared electrical characteristics of planar and trench gate unified power MOSFET after completing device fabrication. As a result, the both of them was obtained 500 V breakdown voltage. However trench gate unified power MOSFET was shown improved Vth and on state voltage drop characteristics than planar gate unified power MOSFET.
  • 70 View
  • 0 Download
Design of Unified Trench Gate Power MOSFET for Low on Resistance and Chip Efficiency
Ey Goo Kang
J Korean Inst Electr Electron Mater Eng 2013;26(10):713-719.   Published online October 1, 2013
DOI: https://doi.org/10.4313/JKEM.2013.26.10.713
Power MOSFET operate voltage-driven devices, design to control the large power switching device for power supply, converter, motor control, etc. We have optimal designed planar and trench gate power MOSFET for high breakdown voltage and low on resistance. When we have designed 6,580 um ×5,680 um of chip size and 20 A current, on resistance of trench gate power MOSFET was low than planar gate power MOSFET. The on state voltage of trench gate power MOSFET was improved from 4.35 V to 3.7 V. At the same time, we have designed unified field limit ring for trench gate power MOFET. It is Junction Termination Edge type. As a result, we have obtained chip shrink effect and low on resistance because conventional field limit ring was convert to unify.
  • 65 View
  • 0 Download
Study on the Design of DC-DC Converter for Super Junction MOSFET Battery Charger of Electric Vehicles
Bum June Kim, Yong Sung Hong, Gwan Pil Silm, Ey Goo Kang
J Korean Inst Electr Electron Mater Eng 2013;26(8):587-590.   Published online August 1, 2013
DOI: https://doi.org/10.4313/JKEM.2013.26.8.587
Release competition and development of eco-friendly vehicles have been conducted violently also automaker, it will be a high growth industry of the charger and battery, which is the driving source of the motor of an electric vehicle. Reduces the on-resistance power elements DC - DC converter for battery charger for electric vehicles, must minimize switching losses. Should have a low on-resistance power than existing products. Compare the Super Junction MOSFET and Planar MOSFET, As a result, super junction MOSFET improve on about 87.4% on-state voltage drop performance than planar MOSFET.
  • 63 View
  • 0 Download
A Study on 600 V Super Junction Power MOSFET Optimization and Characterization Using the Deep Trench Filling
Jung Hoon Lee, Eun Sik Jung, Ey Goo Kang
J Korean Inst Electr Electron Mater Eng 2012;25(4):270-275.   Published online April 1, 2012
DOI: https://doi.org/10.4313/JKEM.2012.25.4.270
Power MOSFET(metal oxide silicon field effect transistor) operate voltage-driven devices, design to control the large power switching device for power supply, converter, motor control, etc. But on-resistance characteristics depending on the increasing breakdown voltage spikes is a problem. So 600 V planar power MOSFET compare to 1/3 low on-resistance characteristics of super junction MOSFET structure. In this paper design to 600 V planar MOSFET and super junction MOSFET, then improvement of comparative analysis breakdown voltage and resistance characteristics. As a result, super junction MOSFET improve on about 40% on-state voltage drop performance than planar MOSFET.
  • 80 View
  • 0 Download