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    • 5. 发明授权
    • Separator and fuel cell stack using the same
    • 分离器和燃料电池堆使用相同
    • US07842411B2
    • 2010-11-30
    • US12213693
    • 2008-06-23
    • Young-Seung NaJun-Won SuhKyoung-Hwan Choi
    • Young-Seung NaJun-Won SuhKyoung-Hwan Choi
    • H01M2/14H01M2/18H01M8/00
    • H01M8/0265
    • Disclosed is a separator for a fuel cell stack. The separator includes a plate having a first opening and a second opening on a surface thereof. A field or a channel is formed on the surface of the plate. The field has a first end and a second end. A field inlet is formed on the surface of the plate and connects the first end of the field to the first opening, and a field outlet is formed on the surface of the plate and connects the second end of the field to the second opening. An area of a cross-section of the field inlet, which is cut perpendicular to the surface of the plate, is smaller than an area of a cross-section of the field outlet, which is cut perpendicular to the surface of the plate.
    • 公开了一种用于燃料电池堆的隔板。 分离器包括在其表面上具有第一开口和第二开口的板。 在板的表面上形成场或通道。 该领域具有第一端和第二端。 场板入口形成在板的表面上,并将场的第一端连接到第一开口,并且在板的表面上形成场出口,并将场的第二端连接到第二开口。 垂直于板的表面切割的入口的横截面的面积小于垂直于板的表面切割的场出口的横截面的面积。
    • 6. 发明申请
    • Separator and fuel cell stack using the same
    • 分离器和燃料电池堆使用相同
    • US20090087718A1
    • 2009-04-02
    • US12213693
    • 2008-06-23
    • Young-Seung NaJun-Won SuhKyoung-Hwan Choi
    • Young-Seung NaJun-Won SuhKyoung-Hwan Choi
    • H01M2/14H01M4/86
    • H01M8/0265
    • Disclosed is a separator for a fuel cell stack. The separator includes a plate having a first opening and a second opening on a surface thereof. A field or a channel is formed on the surface of the plate. The field has a first end and a second end. A field inlet is formed on the surface of the plate and connects the first end of the field to the first opening, and a field outlet is formed on the surface of the plate and connects the second end of the field to the second opening. An area of a cross-section of the field inlet, which is cut perpendicular to the surface of the plate, is smaller than an area of a cross-section of the field outlet, which is cut perpendicular to the surface of the plate.
    • 公开了一种用于燃料电池堆的隔板。 分离器包括在其表面上具有第一开口和第二开口的板。 在板的表面上形成场或通道。 该领域具有第一端和第二端。 场板入口形成在板的表面上,并将场的第一端连接到第一开口,并且在板的表面上形成场出口,并将场的第二端连接到第二开口。 垂直于板的表面切割的入口的横截面的面积小于垂直于板的表面切割的场出口的横截面的面积。
    • 7. 发明授权
    • Semiconductor equipment control system and method
    • 半导体设备控制系统及方法
    • US07689315B2
    • 2010-03-30
    • US11877542
    • 2007-10-23
    • Pyong-II ChoHyun-Sik SimKyoung-Hwan Choi
    • Pyong-II ChoHyun-Sik SimKyoung-Hwan Choi
    • G06F19/00G05B11/01G06F11/30G21C17/00
    • G05B19/042G05B2219/2602
    • A semiconductor equipment control system and method is provided. The semiconductor equipment control system preferably includes semiconductor equipment having a process recipe stored therein and a host connected to the semiconductor equipment through a network. The host preferably includes a database in which a reference recipe is stored and is preferably configured to receive and compare a final modification time of the process recipe with a final modification time of the reference recipe. When the final modifications times are equal, the host is preferably configured to instruct the semiconductor equipment to perform a process according to the process recipe. When the final modification times are different, the host is preferably configured to check a recipe body of the process recipe against a recipe body of the reference recipe to determine if the process recipe is within an established tolerance. If the process recipe is within tolerance, the host may instruct the semiconductor equipment to perform the process according to the process recipe. If the process recipe is not within tolerance, the host preferably interlocks the process. Using this semiconductor equipment and control method, unconditional checking of the process recipe body can be eliminated, thereby resulting in significant time savings and a more efficient manufacturing process.
    • 提供了一种半导体设备控制系统和方法。 半导体设备控制系统优选地包括其中存储有工艺配方的半导体设备和通过网络连接到半导体设备的主机。 主机优选地包括其中存储参考食谱的数据库,并且优选地被配置为接收和比较处理食谱的最终修改时间与参考食谱的最终修改时间。 当最终修改时间相等时,主机优选地被配置为指示半导体设备执行根据处理配方的处理。 当最终修改时间不同时,主机优选地被配置为根据参考食谱的配方主体检查处理配方的配方主体,以确定处理配方是否在建立的公差内。 如果处理配方在公差范围内,则主机可以指示半导体设备根据处理配方进行处理。 如果工艺配方不在公差范围内,则主机优选地将该过程互锁。 利用这种半导体设备和控制方法,可以消除对过程配方体的无条件检查,从而节省大量的时间和更高效的制造过程。
    • 8. 发明授权
    • Fuel amount control system for fuel cell
    • 燃料电池燃油量控制系统
    • US07563530B2
    • 2009-07-21
    • US10820822
    • 2004-04-09
    • Hae-Kyoung KimKyoung-Hwan Choi
    • Hae-Kyoung KimKyoung-Hwan Choi
    • H01M8/04H01M8/12G01N33/00G01N37/00G01N7/00G01N33/18G01R27/28G01R27/08
    • H01M8/04194H01M8/1011Y02E60/523
    • A fuel amount control system of a fuel cell includes a fuel storage unit that stores the fuel to be supplied to the anode, a diluent storage unit that stores a diluent generated as a result of the chemical reaction in the cathode, a fuel mixing unit that mixes the fuel supplied from the fuel storage unit and the diluent supplied from the diluent storage unit to supply a fuel mixture solution to the anode, a sensor located inside the fuel mixing unit, which has a various volume that depends on the concentration of the fuel in the fuel mixture solution and outputs an electrical signal according to a volume variation, and a control unit that receives the electrical signal output from the sensor and outputs electrical signals to open and close the fuel storage unit and the diluent storage unit such that the fuel mixture solution having an appropriate concentration is supplied from the fuel mixing unit to the fuel cell stack.
    • 燃料电池的燃料量控制系统包括储存供给阳极的燃料的燃料储存单元,将在化学反应中产生的稀释剂存储在阴极中的稀释剂储存单元,燃料混合单元, 将从燃料存储单元供应的燃料和从稀释剂储存单元供应的稀释剂混合以将燃料混合物溶液供应到阳极,位于燃料混合单元内部的传感器具有取决于燃料浓度的各种体积 在燃料混合物溶液中并根据体积变化输出电信号;以及控制单元,其接收从传感器输出的电信号并输出​​电信号以打开和关闭燃料存储单元和稀释剂储存单元,使得燃料 具有适当浓度的混合溶液从燃料混合单元供应到燃料电池堆。