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Thermal Modeling for GaN CSP

Thermal Modeling for GaN CSP

Gallium nitride–based high-electron–mobility transistors (HEMTs) have been widely adopted in both consumer and industrial power conversion due to their many material and device advantages over legacy silicon-based converters. The improvements in power-conversion efficiency at much higher switching frequencies that are enabled by GaN can translate to lower system costs and improved power density. Heat dissipation analysis and thermal modeling become critically important as power densities increase. In this article, we will review a thermal calculator tool released by Efficient Power Conversion (EPC). EPC manufactures enhancement-mode GaN HEMTs and integrated power-conversion circuits like half-bridges that form the building blocks of many converters.

Power Electronics News
November 2023
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‘GaN Talk Support Forum’ Launches to Reduce Time to Market for High Performance Gallium Nitride (GaN) Based Power System Designs

‘GaN Talk Support Forum’ Launches to Reduce Time to Market for High Performance Gallium Nitride (GaN) Based Power System Designs

Efficient Power Conversion (EPC) provides a forum for engineers to receive product support, ask questions, and share ideas on using GaN technology.

EL SEGUNDO, Calif.—  June, 2022 — EPC announces the debut of a user community, the “GaN Talk Support Forum” as an environment for engineers to access product and design support and share ideas on the use of gallium nitride (GaN) based power technology. The forum was developed for engineers, engineering students, and all GaN enthusiasts and provides an opportunity for users to submit GaN-related questions and share ideas with the user community. Questions can be searched by topic category, top topics, or latest posts. Beyond submitting questions, users can share past questions and answers from within the forum via a ‘share’ link in the post.

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Easy-to-Use Design Tools Reduce Time to Market for High Performance Gallium Nitride (GaN) Based Power System Designs

Easy-to-Use Design Tools Reduce Time to Market for High Performance Gallium Nitride (GaN) Based Power System Designs

Efficient Power Conversion (EPC) provides engineers with a growing array of design tools, models, and performance simulations for high performance GaN-based designs.

EL SEGUNDO, Calif.—  January, 2022 — EPC announces the debut of the GaN Power Bench™, a suite of design tools to assist engineers in getting the optimal performance from their GaN-based designs. eGaN® FETs and ICs provide the fast switching, high efficiency and small size that can meet the stringent power density requirements of today’s leading-edge applications. The tools in the GaN Power Bench assist designers in the selection of the best GaN device for the application, simulate and optimize the thermal performance of the design, and provide application examples with all the supporting documentation needed to quickly and easily replicate the optimal design tips necessary for ideal performance.

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EPC Launches 3rd Edition of Gallium Nitride (GaN) Textbook with Power Conversion Applications Focus

EPC Launches 3rd Edition of Gallium Nitride (GaN) Textbook with Power Conversion Applications Focus

GaN theory and applications, such as lidar, DC-DC conversion, and wireless power using gallium nitride FETs and ICs, form the focus of this third edition of “GaN Transistors for Efficient Power Conversion”

EL SEGUNDO, CA – October 2019 – Efficient Power Conversion Corporation (EPC) announce the publication of the third edition of “GaN Transistors for Efficient Power Conversion,” a textbook written by power conversion industry experts and published by John Wiley and Sons. 

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New Web-based GaN Product Selector Guide from EPC Simplifies Product Selection for High Performance Power Conversion Systems

New Web-based GaN Product Selector Guide from EPC Simplifies Product Selection for High Performance Power Conversion Systems

Designers using state-of-the-art GaN transistors and IC’s for power conversion now have the use of an interactive web-based parametric selection tool to search for the best possible GaN solution for their given power conversion system.

EL SEGUNDO, Calif.—April 2016— Efficient Power Conversion Corporation (EPC) announces the implementation of a user-controlled GaN product selector search tool on the EPC website, epc-co.com. Based upon years of EPC customer interactions, this web-based product selector guide provides power system design engineers the following:

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Efficient Power Conversion Corporation (EPC) Accelerates Learning Curve for Power System Design Engineers with Launch of Video Podcast Series on Gallium Nitride (GaN) Power Transistors

Produced by industry experts, EPC has posted an eleven-part educational video podcast series on the theory, design basics and applications for gallium nitride power transistors.

EL SEGUNDO, Calif. – April 2014 - Efficient Power Conversion Corporation (www.epc-co.com) has created and posted on line an eleven-part educational video podcast series designed to provide power system design engineers a technical foundation and application-focused toolset on how to design more efficient power conversion systems using gallium nitride-based transistors.

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Efficient Power Conversion Corporation (EPC) Now Included in National Instruments Multisim 13.0 Enhanced SPICE Circuit Simulation and Design Software

EPC component models have been included in National Instruments’ Multisim 13.0, which is now available to thousands of engineers to improve power system efficiency, reduce final product size, reduce development cost in their power conversion system designs.

EL SEGUNDO, Calif. — December 2013 — Efficient Power Conversion Corporation, (www.epc-co.com) the leader in enhancement mode gallium nitride FET technology, announces today that its enhancement mode gallium nitride transistors (eGaN® FETs) SPICE models have been included in the latest version of National Instruments’ Multisim circuit simulation and design software. The Multisim toolkit enables engineers to easily calculate, change and sweep critical component parameters in advanced power conversion system applications.

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Efficient Power Conversion Corporation (EPC) Publishes Chinese Edition of Gallium Nitride (GaN) Transistor Textbook

Written by industry experts, “GaN Transistors for Efficient Power Conversion” provides both theory and applications for gallium nitride transistors

EL SEGUNDO, Calif. – November 2012 - Efficient Power Conversion Corporation (www.epc-co.com) announces the publication of a Simplified Chinese edition of its gallium nitride transistor textbook, “GaN Transistors for Efficient Power Conversion”. This textbook provides power system design engineers basic technical and application-focused information on how to design more efficient power conversion systems using gallium nitride-based transistors.

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Efficient Power Conversion Corporation (EPC) Publishes Industry’s First Application-focused Gallium Nitride (GaN) Transistors Textbook

Written by industry experts, "GaN Transistors for Efficient Power Conversion" provides both theory and applications for gallium nitride transistors

EL SEGUNDO, Calif. - January 2012 - Efficient Power Conversion Corporation (www.epc-co.com) announces the publication of a textbook designed to provide power system design engineers basic technical and application-focused information on how to design more efficient power conversion systems using gallium nitride-based transistors.

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Efficient Power Conversion Corporation (EPC) today announced that the company has made available on its web site SPICE models for all of its enhancement mode GaN transistors.

EL SEGUNDO, Calif.--(BUSINESS WIRE)—Efficient Power Conversion Corporation (EPC) today announced that the company has made available on its web site SPICE models for all of its enhancement mode GaN transistors.

TSPICE, PSPICE, and LTSPICE device models have been developed to help the designer of advanced GaN-based power conversion circuits and systems understand the value of this new power transistor family and reduce their time-to-market with benchmark products. These free downloads are available at:

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