SBIR Phase I: Advancing HIgh-Power Diamond Devices Towards Commercialization
SBIR Phase I: Advancing HIgh-Power Diamond Devices Towards Commercialization
批准号:
1747133
负责人:
Manpuneet Benipal
金额:
$22.5万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2018
资助国家:
美国
项目状态:
已结题
起止时间:
2018-01-01 至 2019-01-31
中文摘要
该小型企业创新研究(SBIR)第一阶段项目的更广泛影响/商业潜力是钻石技术的创新,这将提高电动汽车的效率和可靠性,从而支持绿色技术的发展和减少二氧化碳排放。具体而言,金刚石二极管将减少约三分之一的动力系统损失,从而直接转化为电力车辆(EPV)范围增加10%。虽然金刚石二极管的影响很大,但这项技术的发展也旨在推动金刚石功率器件的发展。额外的金刚石组件-如绝缘栅双极晶体管(IGBT)-将进一步提高电动汽车的效率和可靠性。此外,钻石的成功商业化将最终影响除EPV之外的许多电力市场:包括地热钻探、航空航天和电网中的转换器和逆变器;雷达和通信系统等高频应用;以及与核工业和太空探索相关的极端环境电子学,如金星的探索。拟议的项目预计的钻石续流肖特基PIN二极管的EPV的制造。这些器件将利用实验室生长的金刚石来生产和测试PIN二极管。虽然最近已经开发了生长技术以使得能够制造这种结构,但是仍然需要许多创新来促进金刚石器件的可扩展性和商业化。因此,在第一阶段,研究范围将包括以下活动,以制造用于电动汽车动力总成转换器和逆变器的钻石二极管:(a)使用模拟来证明金刚石续流二极管的预期性能,(B)控制单晶金刚石层的掺杂浓度和厚度,(c)开发用于金刚石器件的可缩放的制造和图案化工艺,(e)确定金刚石PIN二极管的电特性,以及(f)研究封装的金刚石PIN二极管的可靠性和可能的故障机制。用于电力应用的金刚石器件的一个重大挑战将是实现成本平价。考虑到金刚石衬底的成本相对较高,将采用创新的商业化战略来保持低初始成本,使金刚石器件更快地实现成本平价。
英文摘要
The broader impact/commercial potential of this Small Business Innovation Research (SBIR) Phase I project is the innovation of diamond technologies that will enhance the efficiency and reliability of electric vehicles, thus supporting the development of green technology and reduction of CO2 emissions. Specifically, diamond diodes will reduce powertrain losses by about a third and thus directly translate into a 10% increase in electric power vehicle (EPV) range. While the impact of diamond diodes is significant, the development of this technology is also intended to advance diamond power devices. Additional diamond components - such as insulated gate bipolar transistors (IGBTs) - will increase the efficiency and reliability of electric vehicles even further. Moreover, the successful commercialization of diamond will ultimately affect many power markets in addition to EPVs: including converters and inverters in geothermal drilling, aerospace, and power grids; high-frequency applications such as radar and communication systems; and extreme environment electronics relevant to the nuclear industry and space exploration, such as the exploration of Venus.The proposed project expects the fabrication of diamond freewheeling Schottky-PIN diodes for EPVs. These devices will utilize lab-grown diamond to produce and test PIN diodes. While growth techniques have recently been developed to enable to the fabrication of such structures, much innovation is still needed to facilitate scalability and commercialization of diamond devices. Therefore, in Phase I, the scope of research will consist of the following activities to make diamond diodes for powertrain converters and inverters in EPVs: (a) demonstrate the expected performance of diamond freewheeling diodes using simulations, (b) control the doping concentrations and thickness of single-crystal diamond layers, (c) develop scalable fabrication and patterning processes for diamond devices, (e) determine electrical characteristics of diamond PIN diodes, and (f) investigate the reliability and possible failure mechanisms of packaged diamond PIN diodes. A significant challenge for diamond devices for power applications will be the achievement of cost parity. Considering the relatively high cost of diamond substrates, an innovative commercialization strategy will be adapted to keep initial costs low, allowing diamond devices to achieve cost parity faster.
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SBIR Phase II: Advancing High-Power Diamond Devices Towards Commercialization
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批准号:1951263
-
项目类别:Standard Grant
-
资助金额:$75.0万
-
财政年份:2020
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负责人:Manpuneet Benipal
-
依托单位:
国内基金
海外基金
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