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EPC正在带领全球开启无线充电新时代

EPC正在带领全球开启无线充电新时代

NextbigFuture访问了EPC公司的首席执行官Alex Lidow。 EPC公司是制造氮化镓晶体管的领导厂商,目前带领业界开启无线充电新时代。在5至10年内,我们将有可能看到全屋或写字楼从采用昂贵的电源线改为在广泛地方采用无线充电解决方案供电。

NextBigFuture
2017年9月9日
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The Race to Cut the Power Cord is Already Happening

The Race to Cut the Power Cord is Already Happening

The year is 2022. You sit down at your office desk, back from Ikea with your new lamp. You take it out of the box, place it on the table, and it illuminates the workspace immediately. You then take your MacBook out of your backpack, place it to the right of the lamp, and it starts charging instantly. It sounds unreasonable to think that all this could become reality in just a few years. But behind closed doors, this technology already exists.

“A couple of months ago, we demonstrated an entire table top where everything on it was powered wirelessly,” Alex Lidow, CEO of EPC, tells Inverse. “A lamp, computer monitor, computer, cell phones being charged… all sorts of stuff.”

Inverse Innovation
August, 2017
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Why a world without power cords is now within reach

Why a world without power cords is now within reach

Since Nikola Tesla first experimented with wireless power during the early 1900s, there has been a quest to “cut the cord” – and go wireless. Today’s applications for wireless power undoubtedly extend far beyond Tesla’s wildest imagination, as we now have the ability to wirelessly charge cell phones, power tools, and even buses while at their scheduled stops, not to mention airborne drones while flying. However, despite strong consumer and business demand for wireless charging, power cords still reign. What explains the lag in our ability to power all of our electronic devices and appliances wirelessly?

ITProPortal
August 2, 2017
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一位科学家的自述:曾为世界节省15%的电量,如今找到硅的替代物

一位科学家的自述:曾为世界节省15%的电量,如今找到硅的替代物

这位在40年前成为博士的科学家曾为世界节省了15%电量,如今他正继续自己的创新之旅,为人类找到了硅的全新替代材料。

我父亲常常教导我:一个人的真正价值,是通过他对社会所作出的贡献来衡量的。1975年我进入研究生院学习,那时我的兴趣在半导体领域,并且认为我对社会最大的贡献,就是找到可以替代硅的半导体材料。我的研究生毕业课题从围绕砷化镓展开,但是直到在1977年获得博士学位后,我才发现,作为一种半导体材料,砷化镓受其基本材料特性所影响,它的应用前景非常有限,于是我转而专注于研究如何制造出更好的硅基器件。

财富中文网 (Fortune China)
2017年6月15日
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GaN FETs Drive Fidelity and Efficiency in Class-D Audio Amplifiers

GaN FETs Drive Fidelity and Efficiency in Class-D Audio Amplifiers

With the current maturity of Class-D audio amplifier architectures, amplifier fidelity and efficiency limitations are primarily at the device level. Silicon MOSFETs have been evolving for almost forty years, and their progress towards a perfect switch has slowed dramatically. There are some fundamental characteristics of MOSFETs that degrade sound quality and efficiency. In 2010, the enhancement mode Gallium nitride (GaN) power FET was introduced by Efficient Power Conversion (EPC), providing a large step towards the perfect switch.

Audio Engineering Society
May 11, 2017
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48V-to-1V Conversion - the Rebirth of Direct-to-Chip Power

48V-to-1V Conversion - the Rebirth of Direct-to-Chip Power

During last week's PCIM Europe event in Nuremberg, Germany, direct 48V-to-1V power conversion architectures were a significant topic. “The use of GaN switches in 48V-to-1V direct dc-dc converters can improve system performance by 30%, compared with today’s best silicon-based designs,” commented Alex Lidow, CEO of Efficient Power Conversion.

PowerPulse
May 31, 2017
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This Wireless Desktop Could Foreshadow Our Future Without Cords

This Wireless Desktop Could Foreshadow Our Future Without Cords

Wireless charging promises a cord-free future, one that offers freedom from being tethered to the end of a charging cable. One company might have its finger on the pulse for this wirelessly powered future. Alexander Lidow is the CEO and founder of Efficient Power Conversion, a company looking to expand upon its namesake. EPC most notably displays how it wants to revolutionize wireless charging with a seemingly simple desktop.

Interesting Engineering
May 23, 2017
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如何剪断电源线 -- 这是无线充电发展的重要时刻

如何剪断电源线 -- 这是无线充电发展的重要时刻

我们讨论无线充电的发展已经有相当的一段时间,无线充电不是一个全新的议题。可惜的是,该技术一直以来仍然未被消费者广泛地采纳。可是,传输线圈的设计最近采用了创新的方法,使得无线充电技术做好准备,可以被广泛应用于不同的领域。

How2Power
2017年5月
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硅基氮化镓功率器件如何把硅基功率MOSFET逐出市场

硅基氮化镓功率器件如何把硅基功率MOSFET逐出市场

氮化镓(GaN)功率晶体管专为高效电源转换而设计,投产已经有7年了。由于氮化镓器件具备优越的开关速度,因此它推动了新兴市场的发展,例如激光雷达、包络跟踪及无线充电市场。 这些市场使得氮化镓产品得以大量投产、实现低生产成本及高可靠性。 这些优势对于就算是比较保守的设计工程师来说,都是十分吸引的,使得他们在诸如DC/DC转换器、AC/DC转换器及汽车应用中,开始了对氮化镓器件进行评估。那么,目前120亿美元的硅基功率MOSFET市场在转为氮化镓晶体管市场的过程中,还有什么阻力吗?信心。

Alex Lidow
2017年3月
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功率芯片 – 但是,跟我们所认识的不一样了

功率芯片 – 但是,跟我们所认识的不一样了

Max Smolaks欢迎于电源链(power chain)即将替代硅材料的全新氮化镓材料。

在过去的35年里,电源供电一直采用功率金属氧化物半导体场效应晶体管(MOSFET) –利用电压受控的硅器件进行开关及利用电场允许或阻止电流的流通。

Data Center Dynamics
2017年4月19日
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剪断电源线!看看氮化镓技术如何实现无线智能家居

剪断电源线!看看氮化镓技术如何实现无线智能家居

我们被引导相信社会迈向无线智能世界,但目前在电视机背面的电源线告诉我们不一样的故事。正如物联网(IoT)设备需要越来越多的BRIDGE。我们希望实现无线供电家居及如何利用氮化镓(GaN)技术实现无线家居。如果谈及氮化镓的相关发展,我们必定会跟一位创新者谈论 – 他真的改变了我们的世界。他首次与我们分享为什么氮化镓技术可以颠覆硅基技术(EP180)。之后他谈及实现X-Ray药丸的激光雷达技术(203)。 今天他跟我们谈论氮化镓技术如何对任何设备进行无线充电,让我们感到十分兴奋。他就是宜普电源转换公司(EPC)首席执行官暨共同创办人Alex Lidow博士。他将谈论技术发展如何使得电源线消失,以及EPC公司如何带领业界走进无线充电领域。

Tech Blog Writer 播客
2017年4月14日
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