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Powering the Wireless World with MEMS

机译:借助MEMS为无线世界供电

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Battery life is huge problem for today's CE devices and every year the problem gets worse. That is a painful consequence of the explosion in capability and applications in modern wireless electronics of all types, and is particularly acute in advanced smartphones. Fuel cells have long been touted as the solution to the battery problem, and significant programs have been funded at large companies, start-ups, and within academia. Thus far, none of those efforts have resulted in a commercially successful product for consumer electronics. Lilliputian Systems has taken a unique approach by leveraging MEMS fabrication methods to enable the use of a fuel cell known as a solid oxide fuel cell (SOFC). SOFCs provide high efficiency and reliable operation in a very compact Silicon Power Cell™, and allow the use of high energy density fuels, such as butane. This combination overcomes the barriers which have prevented other fuel cell efforts from being commercialized. But in order to use SOFCs, the MEMS structure must operate at elevated temperatures, typically above 600℃, must do so very efficiently, and must be effectively integrated into a complete system. By overcoming these unusual challenges, Lilliputian has developed a solution with a run-time 5-10X longer than existing batteries and with instant recharge by inserting a new cartridge. The absolute safety of the approach is supported by world-wide approval for carry-on and use on airplanes. Over the past several years, Lilliputian Systems has created the many innovations required to bring this complex system to high-volume manufacturing. We will discuss the unique challenges in system architecture and high-temperature MEMS design which have been overcome, enabling Lilliputian to provide long-lasting portable power for consumer electronics devices.
机译:对于当今的CE设备,电池寿命是一个巨大的问题,而且每年的问题都在恶化。这是各种类型的现代无线电子产品功能和应用爆炸性增长的痛苦后果,在高级智能手机中尤为严重。长期以来,人们一直以吹捧燃料电池作为解决电池问题的手段,并已在大型公司,初创企业和学术界为重大计划提供资金。迄今为止,这些努力都没有产生用于消费电子产品的商业上成功的产品。 Lilliputian Systems通过利用MEMS制造方法采取了独特的方法,从而能够使用称为固体氧化物燃料电池(SOFC)的燃料电池。 SOFC在非常紧凑的Silicon Power Cell™中提供了高效率和可靠的运行,并允许使用高能量密度的燃料,例如丁烷。这种结合克服了阻碍其他燃料电池努力商业化的障碍。但是,为了使用SOFC,MEMS结构必须在通常高于600℃的高温下工作,必须非常高效,并且必须有效地集成到完整的系统中。通过克服这些不寻常的挑战,Lilliputian开发了一种解决方案,其运行时间比现有电池长5至10倍,并且可以通过插入新墨盒来立即充电。该方法的绝对安全性得到了全世界随身携带和在飞机上使用的认可。在过去的几年中,Lilliputian Systems创造了将这种复杂系统带入大批量生产所需的许多创新。我们将讨论已克服的系统体系结构和高温MEMS设计方面的独特挑战,从而使Lilliputian能够为消费电子设备提供持久的便携式电源。

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