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    • 1. 发明申请
    • Thermophotovoltaic power supply
    • 热光伏电源
    • US20050121069A1
    • 2005-06-09
    • US10728108
    • 2003-12-03
    • Siaw ChouChang ShuWen YangHong XueZhi Li
    • Siaw ChouChang ShuWen YangHong XueZhi Li
    • H01L31/00H01L31/0216H01L31/04H01L31/068
    • H01L31/0693H01L31/02167H02S10/30Y02E10/544
    • A microthermophotovoltaic (micro-TPV) system is a novel micro power device. The system fully utilizes the high surface-to-volume ratio of a microcombustor, and is able to deliver and electrical power output of 0.5-10 W in a package of the order of centimeters. The system comprises mainly a combustor-emitter, a filter, a photovoltaic (PV) cell array, and cooling fins. The combustor-emitter functions to convert chemical energy into radiative heat energy. The filter is able to recycle a large part of the unusable energy that cannot be converted into electricity by the PV cell array. The PV cell array is used to convert radiative heat energy into electricity. The system has no moving parts. Its fabrication and assembly are relatively easy. As a result, it can be readily used as a power source of micro mechanical devices and portable devices, in which convenience and low cost reliability and ease of maintenance are the key factors of consideration.
    • 微型光伏(micro-TPV)系统是一种新型微功率器件。 该系统充分利用微型燃烧器的高表面积与体积比,并且能够在厘米数量级的包装中输送0.5-10瓦的电力输出。 该系统主要包括燃烧器 - 发射器,过滤器,光伏(PV)电池阵列和冷却片。 燃烧器 - 发射器用于将化学能转化为辐射热能。 过滤器能够回收大量不能用PV电池阵列转换成电的不可用能量。 光伏电池阵列用于将辐射热能转换为电能。 系统没有移动部件。 其制造和组装相对容易。 因此,它可以容易地用作微机械装置和便携式装置的电源,其中便利性和低成本的可靠性和易于维护是考虑的关键因素。
    • 3. 发明授权
    • Thermal metal oxide varistor circuit protection device
    • 热金属氧化物变阻器电路保护装置
    • US09570260B2
    • 2017-02-14
    • US14232412
    • 2011-06-17
    • Wen YangHailang TangHongbing Liu
    • Wen YangHailang TangHongbing Liu
    • H01H61/02H01H37/76H01C7/10H01C7/12H01H9/32
    • H01H61/02H01C7/10H01C7/12H01H9/32H01H37/761H01H2037/762
    • A circuit protection device including a housing, a metal oxide varistor disposed within said housing, a terminal having a contact lead at a first end electrically attached to said metal oxide varistor by solder and having a second end extending outside of said housing, an arc shield disposed within said housing between said contact lead and said metal oxide varistor, a micro switch housed in a pocket portion of the housing, said micro switch having a trigger portion and an indicator portion disposed at least partially outside of said housing, said arc shield positioned against said trigger portion, and a spring configured to bias said arc shield away from said pocket portion and to move said arc shield away from said trigger portion when said solder is melted to provide a barrier between said metal oxide varistor and said contact lead, whereby the indicator portion is retracted into the housing.
    • 一种电路保护装置,包括壳体,设置在所述壳体内的金属氧化物变阻器,具有在第一端处的接触引线的端子,所述第一端通过焊料电连接到所述金属氧化物变阻器,并且具有延伸到所述壳体外部的第二端, 设置在所述壳体内的所述接触引线和所述金属氧化物变阻器之间,微型开关,其容纳在所述壳体的凹部中,所述微型开关具有触发部分和至少部分地设置在所述壳体外部的指示器部分, 以及弹簧,其构造成在所述焊料熔化时使所述电弧罩偏离所述袋部,并使所述电弧护罩远离所述触发器部分移动,以在所述金属氧化物变阻器和所述接触引线之间提供阻挡层,由此 指示器部分缩回到壳体中。
    • 5. 发明申请
    • METHOD FOR CLEANING & PASSIVATING GALLIUM ARSENIDE SURFACE AUTOLOGOUS OXIDE AND DEPOSITING AL2O3 DIELECTRIC
    • 用于清洁和钝化铝酸盐表面氧化物和沉积Al2O3电介质的方法
    • US20130078819A1
    • 2013-03-28
    • US13528509
    • 2012-06-20
    • Qingqing SunRunchen FangWen YangPengfei WangWei Zhang
    • Qingqing SunRunchen FangWen YangPengfei WangWei Zhang
    • H01L21/316
    • H01L21/0228H01L21/02052H01L21/02178H01L21/02301H01L21/02312H01L21/306
    • The present invention belongs to the technical field of semiconductor materials and specifically relates to a method for cleaning & passivizing gallium arsenide (GaAs) surface autologous oxide and depositing an Al2O3 dielectric. This method includes: use a new-type of sulfur passivant to react with the autologous oxide on the GaAs surface to clean it and generate a passive sulfide film to separate the GaAs from the outside environment, thus preventing the GaAs from oxidizing again; further cleaning the residuals such as autologous oxides and sulfides on the GaAs surface through the pretreatment reaction of the reaction source trimethyl aluminum (TMA) of the Al2O3 ALD with the GaAs surface, and then deposit high-quality Al2O3 dielectric through ALD as the gate dielectric which fully separates the GaAs from the outside environment. The present invention features a simple process and good effects, and can provide preconditions for manufacturing the GaAs devices.
    • 本发明属于半导体材料的技术领域,具体涉及一种清洗和钝化砷化镓(GaAs)表面自氧化物并沉积Al2O3电介质的方法。 该方法包括:使用新型硫钝化剂与GaAs表面的自氧化物反应,对其进行清洗,并产生钝化的硫化物膜,使GaAs与外界环境分离,从而防止GaAs再次氧化; 通过Al2O3 ALD的反应物三甲基铝(TMA)与GaAs表面的预处理反应,进一步清洗GaAs表面上的残余物,如自生氧化物和硫化物,然后通过ALD作为栅极电介质沉积高质量的Al2O3电介质 其将GaAs与外部环境完全分离。 本发明具有简单的工艺和良好的效果,并且可以为制造GaAs器件提供前提条件。
    • 7. 发明授权
    • System and method for charging capacitors using automatic cell balancing
    • 使用自动电池平衡对电容器充电的系统和方法
    • US08198869B2
    • 2012-06-12
    • US12073924
    • 2008-03-12
    • Wen YangYong Kok SimVui Min Ho
    • Wen YangYong Kok SimVui Min Ho
    • H02J7/00H02J7/14
    • H02M3/07
    • A circuit for charging a capacitor block including series-connected capacitive elements has an input node for receiving an input, an output node coupled to the capacitor block, a third capacitive element connectable to the input node and the output node, and first and second switching circuitries coupled to the third capacitive element. A voltage sensor determines a relationship between first voltage at the first capacitive element and second voltage at the second capacitive element to separately control switching of the first and second switching circuitries in accordance with the relationship between the voltages.
    • 用于对包括串联连接的电容元件的电容器块进行充电的电路具有用于接收输入的输入节点,耦合到电容器块的输出节点,可连接到输入节点和输出节点的第三电容元件,以及第一和第二开关 电路耦合到第三电容元件。 电压传感器确定第一电容元件的第一电压与第二电容元件的第二电压之间的关系,以分别根据电压之间的关系来控制第一和第二开关电路的开关。