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GaN Technology from EPC Space Exhibits Extreme Robustness for Space Missions

GaN Technology from EPC Space Exhibits Extreme Robustness for Space Missions

Space exploration has always demanded cutting-edge technology, reliability, and resilience. The latest breakthrough in power electronics, gallium nitride (GaN) technology, has emerged as a game-changer for space-based systems offering superior radiation tolerance and unmatched electrical performance compared to traditional silicon MOSFETs. In this article, we delve into the reasons why GaN power devices are the ultimate choice for power conversion applications in space and how their resistance to radiation makes them an extremely robust solution for space missions.

Components in Electronics
October 2023
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GaN in Space: Unlocking Efficiency and Performance in Satellite Systems

GaN in Space: Unlocking Efficiency and Performance in Satellite Systems

The space industry is undergoing a transformative shift to “New Space,” driven by the increasing demand for ubiquitous connectivity and the emergence of innovative business models. One of the key elements of this transformation is the adoption of gallium nitride (GaN) technology in space applications. GaN holds immense potential due to its impressive radiation hardness, high system efficiency and lightweight characteristics.

In a discussion with EE Times Europe, Taha Ayari and Aymen Ghorbel, technology and market analysts at Yole Intelligence, part of Yole Group, explained how New Space—the low Earth orbit (LEO) mission segment, with a typical satellite lifespan of three to five years and lower reliability requirements—has become a focal point for GaN adoption. As a result, power GaN devices are being adopted for various satellite systems, including DC/DC converters, point-of-load systems, motor drives and ion thrusters.

EE Times Europe
October 2023
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EPC Space Brings GaN to the Edge of the Atmosphere

EPC Space Brings GaN to the Edge of the Atmosphere

Bringing GaN to the final frontier, EPC Space introduced two new radiation-hardened GaN transistors for high-current switching in space-based applications. As the number of commercial satellites continues to increase, designers require more options for space-ready power electronics with improved current handling.

All About Circuits
September, 2023
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GaN HEMT Package Improves Paralleling Of Devices In Space Power Applications

GaN HEMT Package Improves Paralleling Of Devices In Space Power Applications

As more processing power and more complex loads are placed on-orbit or into deep space missions, it is sometime necessary to parallel two or more power switches. However, conventional power device packages, such as the FSMD-A/B/C/D and their I/O pad provisioning make it difficult to accomplish paralleling these devices in a performance-conscious manner. When paralleled, the gate and source-sense pads on these packages either serve to block the most efficient/shortest interconnect from package-to-package for the drain and source connections or for the gate and source-sense pads. So in parallel configurations, there is always a compromise between optimized drain-source load-circuit performance and gate-source-sense drive-loop performance. This article introduces the FSMD-G discrete HEMT package and explains how the reconfiguration of its I/O pads overcomes these limitations when paralleling GaN HEMTs.

How2Power
September, 2023
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40 V Rad Hard GaN FETs Set New Performance Standards for Demanding Space Applications

40 V Rad Hard GaN FETs Set New Performance Standards for Demanding Space Applications

Efficient Power Conversion (EPC) expands its family of radiation-hardened (rad-hard) gallium nitride (GaN) products for power conversion solutions with two new 40 V devices rated at 62 A and 250 A to address critical spaceborne and other high-reliability applications.

EL SEGUNDO, Calif.— July 2023 — EPC announces the introduction of two new 40 V rated radiation-hardened GaN FETs.EPC7001 is a 40 V, 4 mΩ, 250 APulsed, rad-hard GaN FET in a small 7 mm2 footprint. EPC7002 is a 40 V, 14.5 mΩ, 62 APulsed, rad-hard GaN FET in a tiny 1.87 mm2 footprint.  Both devices have a total dose radiation rating greater than 1,000K Rad(Si) and SEE immunity for LET of 83.7 MeV/mg/cm2 with VDS up to 100% of rated breakdown. These new devices, along with the rest of the Rad Hard family, are offered in a chip-scale package.  Packaged versions are available from EPC Space.

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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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GaN Transistors Bring Newest Rad Hard Technology to Demanding Space Applications

GaN Transistors Bring Newest Rad Hard Technology to Demanding Space Applications

Efficient Power Conversion (EPC) expands its family of radiation-hardened (rad-hard) gallium nitride (GaN) products for power conversion solutions with two new devices rated at 100 V and 200 V to address a multitude of critical spaceborne and other high-reliability .

EL SEGUNDO, Calif.— April 2023 — EPC announces the introduction of two new radiation-hardened GaN FETs. The EPC7020 is a 200 V, 11 mΩ, 170 APulsed, rad-hard GaN FET in a small 12 mm2 footprint. The EPC7003 is a 100 V, 30 mΩ, 42 APulsed, rad-hard GaN FET in a tiny 1.87 mm2 footprint.  Both devices have a total dose radiation rating greater than 1,000K Rad(Si) and SEE immunity for LET of 83.7 MeV/mg/cm2 with VDS up to 100% of rated breakdown. These new devices, along with the rest of the Rad Hard family, EPC7019, EPC7014, EPC7004, EPC7018, EPC7007, are offered in a chip-scale package, the same as the commercial eGaN® FET and IC family.  Packaged versions will be available from EPC Space.

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Podcast: GaN Devices for Space Applications

Podcast: GaN Devices for Space Applications

GaN power devices should be the ideal choice for power conversion applications in space because they are more robust than rad hard MOSFETs when exposed to various forms of radiation. The electrical and thermal performance of GaN has also demonstrated superior operation in a space environment. In this podcast, Bel Lazar, Chief Executive Officer of EPC Space, will analyze the importance of GaN for the space industry. In addition to his role as CEO of EPC Space, Bel currently serves as COO of Efficient Power Conversion (EPC).

EETimes
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EPC新推於市場上具有最低導通電阻的100 V抗輻射電晶體, 用於要求嚴格的航太應用

EPC新推於市場上具有最低導通電阻的100 V抗輻射電晶體, 用於要求嚴格的航太應用

宜普電源轉換公司(EPC)擴展了其抗輻射氮化鎵產品系列,新推的100 V元件用於要求嚴格的機載和其他高可靠性環境的電源轉換解決方案,與目前市場上的任何100 V耐輻射電晶體相比,它具有最低的導通電阻。

EPC公司宣佈推出100 V、3.9 mΩ、345 APulsed的抗輻射GaN FET EPC7018 r,尺寸爲13.9 mm2,其總劑量等級大於1 Mrad,綫性能量轉移(LET)的單一事件效應(SEE)抗擾度爲85 MeV/(mg/cm2)。與EPC7014、EPC7007和EPC7019耐輻射產品系列相同,都是採用晶片級封裝。封裝元件由EPC Space.提供。

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EPC新推實現超低導通電阻的200 V抗輻射電晶體, 用於要求嚴格的航太應用

EPC新推實現超低導通電阻的200 V抗輻射電晶體, 用於要求嚴格的航太應用

宜普電源轉換公司(EPC)擴展了其抗輻射氮化鎵產品系列,新推的200 V產品用於要求嚴格的機載和其他高可靠性環境下的電源轉換解決方案,它具備超低導通電阻和極小型化等優勢。

EPC公司宣佈推出200 V、25 mΩ、80 APulsed的抗輻射GaN FET EPC7007。尺寸小至5.76 mm2,其總劑量等級大於1 Mrad,綫性能量轉移(LET)的單一事件效應(SEE)抗擾度為85 MeV/(mg/cm2)。與商用eGaN FET和IC系列相同,採用芯片級封裝。 封裝元件將由EPC Space提供。

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基於GaN元件、在兆赫頻率下開關的多相轉換器

基於GaN元件、在兆赫頻率下開關的多相轉換器

本文介紹了基於氮化鎵元件、具有120 VDC輸入電壓、工作頻率爲 6.7 MHz 的兩相 DC/DC轉換器。 120 VDC 是國際太空站 (ISS) 二次電路系統中的標準電壓水平。

使用具備高功率密度和開關超快等優勢的GaN FET ,Tell-I 公司新開發的 SDK 電路板使用兩相來超越正常的開關速度。 多相配置支持用於 ISS 等系統的標準120-V 匯流排電壓,讓交錯轉換器在 3 MHz、5 MHz 和 6.87 MHz 下實現高效開關。使用四個 EPC2019 GaN FET和支持小型閘極驅動及功率迴路的兩個 LMG1210 閘極驅動器,可實現最佳和緊凑的佈局。

Power Electronics News
2022年4月
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Efficient Power Conversion (EPC) Releases Lowest On-Resistance Rad Hard Transistor Available on the Market for Demanding Space Applications

Efficient Power Conversion (EPC) Releases Lowest On-Resistance Rad Hard Transistor Available on the Market for Demanding Space Applications

Efficient Power Conversion (EPC) expands its family of radiation-hardened (rad-hard) gallium nitride (GaN) products for power conversion solutions in critical spaceborne and other high reliability environments with a device that has the lowest on-resistance of any rad hard transistor currently available on the market.

EL SEGUNDO, Calif.— March 2021 — EPC announces the introduction of the EPC7019 radiation-hardened eGaN FET. The EPC7019, a 40 V, 1.5 mΩ, 530 APulsed, rad-hard eGaN FET in a small 13.9 mm2 footprint. The EPC7019 has a total dose rating greater than 1 Mrad and SEE immunity for LET of 85 MeV/(mg/cm2). These devices are offered in a chip-scale package, the same as the commercial eGaN FET and IC family.  Packaged versions will be available from EPC Space.

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The Impact of GaN on Advanced Automotive Design

The Impact of GaN on Advanced Automotive Design

Wide-bandgap semiconductors like gallium nitride (GaN) and silicon carbide (SiC) are changing how people are thinking about power. In this video, Electronic Design talks to Alex Lidow, Founder and CEO of Efficient Powert Conversion (EPC), about the growing role of GaN in advanced embedded applications like automotive, among others such as space.

Electronic Design
January, 2022
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Motor Driver Applications in Space

Motor Driver Applications in Space

As the outer reaches of the Earth’s atmosphere and space are opened to commercial development, motors will become increasingly important to systems places there for various functions. With the inevitability of manufacturing in space, motors – including their drivers – will take on even more functions. Of equal importance will be the motor drivers selected to drive those motors efficiently and reliably.

Components in Electronics
October, 2021
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Discovering GaN for Power Design in Space — An Interview with Alex Lidow

Discovering GaN for Power Design in Space — An Interview with Alex Lidow

Unlike silicon, whereby specific manufacturing processes and packaging are required to insulate semiconductors from the effects of radiation, GaN devices are largely resistant to the damage caused by space radiation due to their physical characteristics and structure. In an interview with Alex Lidow, CEO at EPC, Power Electronic News have discovered the features of GaN for space applications.

Power Electronics News
September, 2021
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