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我們如何設計不用電源線的電視機?

我們如何設計不用電源線的電視機?

電視機可以無線方式來取得電視內容,但它必需配備一組電源線來供電。消費電子行業一直在構想電視機如何不用電源線,但這個目標無從實現。原因有多個,例如很難符合大螢幕電視機所要求的高功率和需要找出更經濟的技術。但是,eGaN FET電晶體可以使得電視機真正不需要使用電源線來供電。

Power Electronic Tips
2017年2月23日
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氮化鎵盯緊基於矽元件的數據中心的龐大市場潛力

氮化鎵盯緊基於矽元件的數據中心的龐大市場潛力

在深度學習盛行下,數據中心的功率密度再次備受關注,並且產生了全新的商業機遇,包括支援30 kW/rack 以上的設備內的專有雲端服務,以及為提高系統能效以解決功率密度問題的功率轉換公司提供機遇 。氮化鎵是電源轉換晶片的全新半導體材料,可替代矽元件、實現體積小很多、能效更高及開關速度快速很多的元件。

Data Center Knowledge
2017年2月
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Velodyne Says It's Got a "Breakthrough" in Solid State Lidar Design

Velodyne Says It's Got a "Breakthrough" in Solid State Lidar Design

Lidar is a fantastic sensor for autonomous cars. Most companies developing self-driving vehicles seem to agree that the massive amount of long range, high accuracy data that you get from lidar is necessary, especially for complicated and variable urban environments. Really, the only reason why there's been so much focus on getting autonomy to work with just cameras and radar is that cameras and radar are cheap, and lidar is ridiculously expensive.

IEEE Spectrum
December, 13, 2016
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更快速、更智慧、更優越的性能:下一代晶片革命

Barron’s

更快速、更智慧、更優越的性能:下一代晶片革命

半導體與微型發動機的新穎結合將使得世界很快被機器吞沒而影響到我們的生活空間、身體,以至對光和聲音的體驗。簡單如對智慧手機充電或煮蛋,以至複雜如檢查大腸癌或對長征的無人機供電,完成這些任務的方式都將會改變。

Barron’s
2016年10月22日
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Freebird Semiconductor Partners with EPC for Development of Radiation Hardened Gallium Nitride Power Conversion Systems for Satellite and Harsh Environment Applications

Freebird Semiconductor Partners with EPC for Development of Radiation Hardened Gallium Nitride Power Conversion Systems for Satellite and Harsh Environment Applications

Freebird Semiconductor and Efficient Power Conversion (EPC) have entered into an agreement whereby Freebird will develop products for use in high reliability space and harsh environment applications based upon eGaN® power transistors and integrated circuits.

NORTH ANDOVER, MA. — April 2016 — Freebird Semiconductor Corporation, North Andover, Massachusetts announces the signing of an agreement with Efficient Power Conversion Corporation (EPC), the leading provider of enhancement-mode gallium nitride power transistors to develop products for use in high reliability, space, and harsh environment applications based upon EPC’s eGaN® technology.

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