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    • 21. 发明申请
    • Industrial thermoelectric generator
    • 工业热电发电机
    • US20080078434A1
    • 2008-04-03
    • US11906034
    • 2007-09-28
    • Swapan Chakraborty
    • Swapan Chakraborty
    • H01L35/00
    • H01L35/32H01L35/10
    • An industrial thermoelectric generation assembly and method are provided. A plurality of thermoelectric generation elements is provided. Each element has a first side, a second side opposite the first side, and a lateral surface. A thermally insulative material surrounds the lateral surface of each thermoelectric element. The first side of each thermoelectric element is disposed to contact a process heat source, and the second side is configured to be exposed to an ambient environment. At least two of the plurality of thermoelectric generation elements are wired in series. The thermoelectric generation elements, being good thermal insulators, provide good thermal insulation to the process. Withholding heat within the process (which is desired), is converted to electricity.
    • 提供了一种工业热电发电组件和方法。 提供多个热电发电元件。 每个元件具有第一侧,与第一侧相对的第二侧和侧面。 绝热材料围绕每个热电元件的侧表面。 每个热电元件的第一侧设置成接触工艺热源,并且第二侧被配置为暴露于周围环境。 多个热电发电元件中的至少两个串联连接。 作为良好的热绝缘体的热电发电元件为该工艺提供了良好的隔热性能。 在此过程中保持热量(这是所需的),转换为电。
    • 23. 发明授权
    • Two-stage three-terminal thermionic/thermoelectric coolers
    • 两级三端子热电偶/热电冷却器
    • US06552256B2
    • 2003-04-22
    • US09800164
    • 2001-03-06
    • Ali ShakouriChristopher J. LaBountyJohn E. Bowers
    • Ali ShakouriChristopher J. LaBountyJohn E. Bowers
    • H01L3528
    • H01L35/10H01L35/00Y10S257/93
    • A multi-stage cooler is formed from monolithically integrated thermionic and thermoelectric coolers, wherein the thermionic and thermoelectric coolers each have a separate electrical connection and a common ground, thereby forming a three terminal device. The thermionic cooler is comprised of a superlattice barrier surrounded by cathode and anode layers grown onto an appropriate substrate, one or more metal contacts with a finite surface area deposited on top of the cathode layer, and one or more mesas of different areas formed by etching around the contacts to the anode layer. The thermoelectric cooler is defined by metal contacts deposited on the anode layer or the substrate itself. A backside metal is deposited on the substrate for connecting to the common ground.
    • 多级冷却器由单片集成的热电偶和热电冷却器形成,其中热电偶和热电冷却器各自具有单独的电连接和公共接地,从而形成三端子装置。 热离子冷却器由生长在合适衬底上的阴极和阳极层围绕的超晶格屏障,一个或多个沉积在阴极层顶部的有限表面积的金属触点以及通过蚀刻形成的不同区域的一个或多个台面 围绕与阳极层的接触。 热电冷却器由沉积在阳极层或衬底本身上的金属触点限定。 背面金属沉积在基板上用于连接到公共地面。
    • 24. 发明申请
    • Two-stage three-terminal thermionic/thermoelectric coolers
    • 两级三端子热电偶/热电冷却器
    • US20010050099A1
    • 2001-12-13
    • US09800164
    • 2001-03-06
    • Ali ShakouriChristopher J. LabountyJohn E. Bowers
    • H01L035/34H01L037/00
    • H01L35/10H01L35/00Y10S257/93
    • A multi-stage cooler is formed from monolithically integrated thermionic and thermoelectric coolers, wherein the thermionic and thermoelectric coolers each have a separate electrical connection and a common ground, thereby forming a three terminal device. The thermionic cooler is comprised of a superlattice barrier surrounded by cathode and anode layers grown onto an appropriate substrate, one or more metal contacts with a finite surface area deposited on top of the cathode layer, and one or more mesas of different areas formed by etching around the contacts to the anode layer. The thermoelectric cooler is defined by metal contacts deposited on the anode layer or the substrate itself. A backside metal is deposited on the substrate for connecting to the common ground.
    • 多级冷却器由单片集成的热电偶和热电冷却器形成,其中热电偶和热电冷却器各自具有单独的电连接和公共接地,从而形成三端子装置。 热离子冷却器由生长在合适衬底上的阴极和阳极层围绕的超晶格屏障,一个或多个沉积在阴极层顶部的有限表面积的金属触点以及通过蚀刻形成的不同区域的一个或多个台面 围绕与阳极层的接触。 热电冷却器由沉积在阳极层或衬底本身上的金属触点限定。 背面金属沉积在基板上用于连接到公共地面。