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A high efficiency, 3 kW capable, 2-phase, 3-level Converter using paralleled eGaN FETs

A high efficiency, 3 kW capable, 2-phase, 3-level Converter using paralleled eGaN FETs

As the revolution of renewable energy as well as transportation electrification progresses, the need for residential energy storage systems is increasing. A high efficiency DC-to-DC converter is usually required to exchange energy generated from renewable sources, such as solar panels, with a battery. The fast-switching speed and low RDS(on) of gallium nitride (GaN) FETs can help save energy by reducing power consumption inside the DC-to-DC converter. This article shows how to design a high efficiency 100 – 250 V to 40 - 60 V DC-to-DC converter.

Power Electronics Europe
May, 2023
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汽車電子用於低壓配電的演變—從 ICE 、MHEV 到目前的BEV汽車應用

汽車電子用於低壓配電的演變—從 ICE 、MHEV 到目前的BEV汽車應用

汽車電子在過去30年内經歷了幾個時代的演變。 從主要採用機械或發動機驅動系統的純內燃機 (ICE),到添加電力動力的輕度混合動力 (MHEV),再到全電池電動汽車 (BEV)應用。 在這三個時代中,用於轉換和分配電力的架構甚至基本半導體元件都發生了重大的變化。 本文討論了這個進化過程和對將來進化的方向做出了一些推測。

Power Systems Design
2023年8月
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小型化的低壓 GaN FET的準確表徵

小型化的低壓 GaN FET的準確表徵

低壓 GaN FET 可實現更小、冷却要求最小化和效率更高的解決方案

與採用傳統的矽基功率 MOSFET的應用相比,低壓 GaN FET(即 100 V)可實現更小,冷却要求最小化和效率更高的解決方案。 本文討論了氮化鎵元件如何應對動態性能需要重複和可靠的表徵的挑戰。 定制氮化鎵夾具和測試板的機械和電氣設計仔細、周全,就可以克服其中許多挑戰,使您能够在設計功率轉換器時,自信地使用這些新型寬能隙元件。

Power Electronics News
2023年7月
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In-situ RDS(on) Characterization and Lifetime Projection of GaN HEMTs under Repetitive Overvoltage Switching

In-situ RDS(on) Characterization and Lifetime Projection of GaN HEMTs under Repetitive Overvoltage Switching

Transient voltage overshoot is a common phenomenon in GaN high electron mobility transistors (HEMTs) under high slew rate switching conditions. The dynamic parametric instability under such stress is a critical concern for GaN applications. This work, for the first time, accurately characterized the evolution of dynamic on-resistance (RDS(on)) in GaN HEMTs under repetitive voltage overshoot up to billions of switching cycles. The dynamic RDS(on) increase was found to be the dominant device degradation under overvoltage switching. Such findings were obtained from a high-frequency, repetitive, unclamped inductive switching (UIS) test with active temperature control and accurate in-situ RDS(on) monitoring. A physics-based model was proposed to correlate the dynamic RDS(on) drift with the peak overvoltage, and a good agreement with experimental data was achieved. This model was further used to project the lifetime of GaN HEMTs. For 100 V rated GaN HEMTs switched under 100 kHz and 120 V spikes, the model projects less than 10% dynamic RDS(on) shift over 25 years of continuous operation. This work addresses the major concerns of overvoltage switching reliability of GaN HEMTs and provides new insights of the electron trapping mechanism.

IEEE Xplore
Ruizhe Zhang, Ricardo Garcia, Robert Strittmatter, Yuhao zhang, Shengke Zhange
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利用單片氮化鎵積體電路設計解決方案以實現更高性能、縮小尺寸和降低成本

利用單片氮化鎵積體電路設計解決方案以實現更高性能、縮小尺寸和降低成本

事實證明,15 V ~ 350 V 氮化鎵異質結場效應功率電晶體在功率轉換、馬達控制和光達等應用中,無論是在效率、尺寸、速度和成本方面都比矽元件更具優勢 。氮化鎵積體電路為許多高頻應用提供了多方面的系統級優勢。 氮化鎵積體電路才剛剛發展,其優勢肯定會隨著其技術發展而不斷增强。

Bodo’s Power Systems
2023年6月
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基於氮化鎵元件的功率轉換解決方案著眼於下一代應用

基於氮化鎵元件的功率轉換解決方案著眼於下一代應用

宜普電源轉換公司(EPC)是增强型氮化鎵 (GaN) FET 和 IC產品的領導者,在紐倫堡舉行的 PCIM Europe 2023展會上分享了關於氮化鎵技術的發展和其應用的演示。 我們與該公司的聯合創始人暨首席執行長 Alex Lidow 就電力電子行業和氮化鎵技術對行業的影響進行了深度交流。

Electronic Design
2023年5月
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Podcast: EPC’s Progress in GaN Reliability in RadHard and New Space Applications

Podcast: EPC’s Progress in GaN Reliability in RadHard and New Space Applications

In this episode of Spirit: Behind the Screen, Spirit Electronics CEO Marti McCurdy chats with EPC’s CEO Alex Lidow and Marketing Director Renee Yawger about the progress of GaN. They discuss GaN’s performance under high radiation as well as the extensive testing, failure modes and device lifespan detailed in EPC’s Phase 15 reliability report. With the full potential of GaN still to be explored and new EPC products releasing frequently, including new half-bridge drivers, low-side drivers and full power stage, GaN is especially useful in New Space and commercial space applications.

Spirit: Behind the Screen
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Test-to-Fail Methodology for Accurate Reliability and Lifetime Evaluation of eGaN Devices in Solar Applications

Test-to-Fail Methodology for Accurate Reliability and Lifetime Evaluation of eGaN Devices in Solar Applications

Modern solar panels are demanding increasingly higher power density and longer operating lifetimes. Solar applications including power optimizers and panels with built-in microinverters are becoming the prevailing trend for an increasing number of solar customers, where low voltage GaN power devices (VDS < 200 V) are extensively used.

Bodo’s Power Systems
May, 2023
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Growing GaN Ecosystem for BLDC Motor Drives

Growing GaN Ecosystem for BLDC Motor Drives

Gallium nitride (GaN) transistors and ICs have the best attributes to satisfy BLDC inverter needs. The superior switching capability of GaN helps to remove dead time and increase PWM frequency to obtain unmatched sinusoidal voltage and current waveforms for smoother, silent operation with higher system efficiency

Power Systems Design
May, 2023
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How to Integrate GaN Power Stages for Efficient Battery-Powered BLDC Motor Propulsion Systems

How to Integrate GaN Power Stages for Efficient Battery-Powered BLDC Motor Propulsion Systems

This article discusses the advantages of GaN-based power stages and introduces a sample device from EPC, implemented in a half-bridge topology. It explains how to use associated development kits to quickly get started on a project. In the process, designers will learn how to measure the parameters of a BLDC motor and operate it in sensorless field orientation control (FOC) with minimal programming effort using Microchip Technology’s motorBench Development Suite.

Digi-Key Electronics
April, 2023
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Power Steering with GaN ePower™ ICs

Power Steering with GaN ePower™ ICs

With Electronic Power Steering (EPS), the hydraulic system is replaced with an electric motor that aids the driver only when needed. Its digital assistance control can be modified online to adapt to driving conditions. There are, however, several design constraints to consider. One is that the driver does not want to lack the haptic feedback from the tires, especially when a vehicle is large, such as a truck. Other constraints are determined by safety regulations, particularly for automatic guided vehicles. These constraints require adopting an efficient, accurate and redundant system. Gallium nitride technology helps the designers in all these areas.

Power Electronics News
March, 2023
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Power Packaging for the GaN Generation of Power Conversion

Power Packaging for the GaN Generation of Power Conversion

Since the launch of GaN-on-Si enhancement mode power transistors in March 2010 there has been a slow but monotonic shift towards adoption and replacement of silicon-based power MOSFETs. Initial adoption came from risk-taker visionaries in applications such as lidar, high-end audio amplifiers, robots, vehicle headlamps, and high-performance DC-DC converters. For the expansion of GaN for power conversion to get beyond the early adopters, a more user-friendly format than the WLCP needed to be developed. This format, however, needed to preserve the key attributes of small size, low RDS(on), high speed, excellent thermal conductivity, and low cost. In other words, the best package would be the least amount of package technically possible. Enter the PQFN…

Bodo’s Power Systems
March, 2023
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GaN-based Design of a 2 kW 48 V/12 V Bi-directional Power Module for 48 V Mild Hybrid Electric Vehicles

GaN-based Design of a 2 kW 48 V/12 V Bi-directional Power Module for 48 V Mild Hybrid Electric Vehicles

With the increase in government mandates to combat climate change, automakers are moving quickly to leverage new technology to respond by switching from the internal combustion engine to electric-drive vehicles. This article presents the design of a 2 kW, two-phase 48 V/12 V bi-directional converter using GaN FETs that achieves 96% efficiency and is targeted for the 48 V mild hybrid system.

PSD North America
March, 2023
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GaN’s Evolution from Science Project to Mainstream Power Conductor

GaN’s Evolution from Science Project to Mainstream Power Conductor

Power-conversion technologies are experiencing the first tectonic shift since the move from bipolar to MOS. That shift, of course, is due to the viral adoption of wide-bandgap power devices. At this point, GaN is more than a specialty technology; it is a broad-scale replacement for silicon MOSFETs in applications ranging from 30 V up to 650 V — a multibillion-dollar market.

Power Electronics News
December, 2022
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eBook: The Next Silicon Frontier

eBook: The Next Silicon Frontier

Despite the continued progress in traditional transistor scaling, the semiconductor industry has reached an inflection point. The demand for faster, smaller, smarter, and more energy-efficient chips calls for new design and manufacturing paradigms. This eBook includes contributions from technology and market experts Malcolm Penn, Future Horizons; Tim Burgess and Bernd Westhoff, Renesas Electronics; Jean-Christophe Eloy, Yole Group; Luc Van den hove, imec; Ezgi Dogmus, Poshun Chiu, and Taha Ayari, Yole Intelligence; Alex Lidow, Efficient Power Conversion; Victor Veliadis, PowerAmerica; Richard Collins and Yu-Han Chang, IDTechEx; and Jean-René Lèquepeys, CEA-Leti.

EETimes
December, 2022
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eGaN FETs Enable More Than 4-kW/in3 Power Density for 48 V to 12 V Power Conversion

eGaN FETs Enable More Than 4-kW/in3 Power Density for 48 V to 12 V Power Conversion

Growing computational power and miniaturization of electronics in computing and data centers is increasingly putting pressure on 48-V power delivery and conversion systems. High-efficiency and high-power–density converters enable a reduction in power losses at the system level while allowing smaller form factors. In this context, LLC resonant topologies combined with GaN technology succeed to deliver outstanding performance, as it has been demonstrated with multiple examples. This article will show the key design parameters and components to achieve beyond 4 kW/in3 of power density in a 48-V to 12-V LLC converter using eGaN® FETs.

Power Electronics News
December, 2022
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