会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明申请
    • ELECTRO-HYDRODYNAMIC COOLING FOR HANDHELD MOBILE COMPUTING DEVICE
    • 手持移动计算装置的电动液压冷却
    • WO2012088074A3
    • 2012-09-13
    • PCT/US2011066095
    • 2011-12-20
    • INTEL CORPMACDONALD MARKMONGIA RAJIV K
    • MACDONALD MARKMONGIA RAJIV K
    • G06F1/20H05K7/20
    • H05K7/20136B03C2201/14G06F1/203H04M1/0202
    • Embodiments of the invention are directed towards passive cooling systems for handheld mobile computing devices. An electro-hydrodynamic air mover (EAM) may be included in a handheld mobile computing device, the EAM to include an inlet and an outlet. The inlet and outlet are each included in at least one surface side of the handheld mobile computing device. In embodiments of the invention the EAM produces an airflow by accelerating charged particles surrounding an electrode near the inlet towards an second electrode near the outlet in response to an electric field applied to the electrodes. The airflow will result from air drawn into the inlet of the EAM (i.e., air external to the computing device) and air expelled from the outlet of the EAM (i.e., air expelled away from the computing device).
    • 本发明的实施例针对用于手持式移动计算设备的被动式冷却系统。 手持移动计算设备中可以包括电动流体动力空气推进器(EAM),该EAM包括入口和出口。 入口和出口各自包括在手持式移动计算设备的至少一个表面侧中。 在本发明的实施例中,响应于施加到电极的电场,EAM通过将入口附近的电极周围的带电粒子加速朝向出口附近的第二电极产生气流。 吸入EAM入口(即计算设备外部的空气)的空气和从EAM出口排出的空气(即从计算设备排出的空气)将产生气流。
    • 4. 发明申请
    • METHODS OF IGNITING A CATALYTIC CONVERTER
    • 点燃催化转化器的方法
    • WO0120149A9
    • 2002-09-26
    • PCT/US0024493
    • 2000-09-07
    • SOLO ENERGY CORPDIBBLE ROBERT WMONGIA RAJIV K
    • DIBBLE ROBERT WMONGIA RAJIV K
    • F02C3/20F02C3/22F02C7/08F02C7/26F23C13/00F23R3/40
    • F23C13/00F02C3/20F02C3/22F02C7/08F02C7/26F23C13/02F23R3/40Y02E20/14
    • An energy producing system includes a compressor (12) side for compressing an air/fuel mixture, and a turbine side (14) for producing mechanical, electrical, and/or heat energy, and driving the compressor side. A catalytic combustor (26) is disposed upstream of the turbine side for combusting a steady state air/fuel mixture during steady state operation. During start-up, the catalytic combustor is preheated by being supplied with a preheat air/fuel mixture capable of lighting-off therein at ambient temperature, whereby oxidation of the preheat air/fuel mixture in the catalytic combustor produces heat. The preheat air/fuel mixture is produced on-site, preferably in a reformer (54) which burns natural gas in the presence of insufficient oxygen for complete combustion, thereby producing hydrogen and carbon monoxide.
    • 能量产生系统包括用于压缩空气/燃料混合物的压缩机(12)侧和用于产生机械,电和/或热能的涡轮机侧(14)并驱动压缩机侧。 催化燃烧器(26)设置在涡轮机侧的上游,用于在稳态操作期间燃烧稳态空气/燃料混合物。 在启动期间,催化燃烧器通过在环境温度下被供给预热的空气/燃料混合物而被预热,由此催化燃烧器中的预热空气/燃料混合物的氧化产生热量。 预热的空气/燃料混合物现场生产,优选在重整器(54)中,其在氧气不足的情况下燃烧天然气以完全燃烧,从而产生氢气和一氧化碳。