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    • 5. 发明授权
    • Thermoelectric conversion module and method of manufacturing thereof
    • 热电转换模块及其制造方法
    • US08742246B2
    • 2014-06-03
    • US13450822
    • 2012-04-19
    • Kaori ToyodaTakaaki HigashidaTakashi Kubo
    • Kaori ToyodaTakaaki HigashidaTakashi Kubo
    • H01L35/32H01L35/34
    • H01L35/10H01L35/32H01L35/34
    • The invention provides a thermoelectric conversion module, which can implement a high power generation capacity and high reliability of electric connection between thermoelectric conversion elements and meet various diameters and lengths of a tube as a heat source. The thermoelectric conversion module includes a straight-chain module unit. In the module unit, plural P-type elements and plural N-type elements, which are alternately arrayed, are electrically connected in series by a braided wire A and a braided wire B. The braided wire A connects one end surface of the P-type element and one end surface of the N-type element. The braided wire B connects the other end surface of the P-type element and the other end surface of the N-type element. The braided wire B is shorter than the braided wire A. The thermoelectric conversion module including only the module unit is spirally wound around a tube as a heat source.
    • 本发明提供一种热电转换模块,其可以实现热电转换元件之间的高发电能力和高可靠性的电连接,并且满足作为热源的管的各种直径和长度。 热电转换模块包括直链模块单元。 在模块单元中,交替排列的多个P型元件和多个N型元件通过编织线A和编织线B串联电连接。编织线A将P- 型元件和N型元件的一个端面。 编织线B连接P型元件的另一端面和N型元件的另一端面。 编织线B比编织线A短。仅包括模块单元的热电转换模块螺旋地缠绕在作为热源的管上。
    • 6. 发明授权
    • Apparatus for manufacturing thermoelectric conversion element
    • 用于制造热电转换元件的装置
    • US09087963B2
    • 2015-07-21
    • US13444147
    • 2012-04-11
    • Takaaki HigashidaTakashi KuboKaori ToyodaSatoshi Maeshima
    • Takaaki HigashidaTakashi KuboKaori ToyodaSatoshi Maeshima
    • H01L35/34F27D3/14
    • H01L35/34F27D3/14
    • The present invention relates to an apparatus and a method for manufacturing a thermoelectric conversion element. The present invention provides an apparatus for manufacturing a thermoelectric conversion element that can easily realize a high-density array of thermoelectric conversion elements and secure connection reliability. This is an apparatus for manufacturing a thermoelectric conversion element that sucks a p-type or n-type thermoelectric conversion material into heat-resisting insulating tube 102 and includes preheating apparatus 205 that can heat tube 102 to a predetermined temperature before sucking the melted thermoelectric conversion element. Tube 102 whose temperature condition is adjusted by being heated by preheating apparatus 205 is inserted into crucible 204 and the molten thermoelectric conversion material is sucked into tube 102 by decompression apparatus 201.
    • 本发明涉及一种用于制造热电转换元件的装置和方法。 本发明提供一种能够容易地实现高密度的热电转换元件阵列并确保连接可靠性的热电转换元件的制造装置。 这是用于制造将p型或n型热电转换材料吸入耐热绝缘管102中的热电转换元件的装置,并且包括预热装置205,该预热装置205在吸入熔融的热电转换之前将管102加热至预定温度 元件。 通过预热装置205加热调节其温度的管102被插入坩埚204中,熔融的热电转换材料通过减压装置201被吸入管102中。
    • 7. 发明申请
    • THERMOELECTRIC CONVERSION ELEMENT MODULE AND METHOD OF MANUFACTURING THE SAME
    • 热电转换元件模块及其制造方法
    • US20130220394A1
    • 2013-08-29
    • US13881596
    • 2012-03-28
    • Takaaki HigashidaKaori ToyodaTakashi Kubo
    • Takaaki HigashidaKaori ToyodaTakashi Kubo
    • H01L35/04H01L35/34
    • H01L35/04H01L35/32H01L35/34
    • The present invention provides a thermoelectric conversion element module and a manufacturing method thereof capable of easily realizing a high-density array and securing connection reliability. The module includes a thermoelectric conversion element group made up of P-type elements and N-type elements alternately arranged in a first direction and a heat-resistant insulating member filling the periphery of the thermoelectric conversion materials, wherein the P-type elements and the N-type elements are connected via connection electrodes on a side portion of the group along the first direction, and connection electrodes at other parts of the group along a second direction crossing the first direction. The module is manufactured by forming a connection electrode layer that extends to the side portion of the group on the surface of the group and cutting this connection electrode layer between the thermoelectric conversion elements along the first direction and the second direction.
    • 本发明提供一种能够容易地实现高密度阵列并确保连接可靠性的热电转换元件模块及其制造方法。 该模块包括由P型元件和沿第一方向交替布置的N型元件组成的热电转换元件组和填充热电转换材料周围的耐热绝缘元件,其中P型元件和 N型元件沿着第一方向连接在组的侧部上的连接电极,以及沿着与第一方向交叉的第二方向的组中的其它部分处的连接电极。 通过形成连接电极层来制造该模块,该连接电极层沿着该组的表面延伸到该组的侧部,并沿着第一方向和第二方向切割该热电转换元件之间的该连接电极层。
    • 8. 发明授权
    • Thermoelectric conversion element module and method of manufacturing the same
    • 热电转换元件模块及其制造方法
    • US09024173B2
    • 2015-05-05
    • US13881596
    • 2012-03-28
    • Takaaki HigashidaKaori ToyodaTakashi Kubo
    • Takaaki HigashidaKaori ToyodaTakashi Kubo
    • H01L35/34H01L35/28H01L35/04H01L35/32
    • H01L35/04H01L35/32H01L35/34
    • The present invention provides a thermoelectric conversion element module and a manufacturing method thereof capable of easily realizing a high-density array and securing connection reliability. The module includes a thermoelectric conversion element group made up of P-type elements and N-type elements alternately arranged in a first direction and a heat-resistant insulating member filling the periphery of the thermoelectric conversion materials, wherein the P-type elements and the N-type elements are connected via connection electrodes on a side portion of the group along the first direction, and connection electrodes at other parts of the group along a second direction crossing the first direction. The module is manufactured by forming a connection electrode layer that extends to the side portion of the group on the surface of the group and cutting this connection electrode layer between the thermoelectric conversion elements along the first direction and the second direction.
    • 本发明提供一种能够容易地实现高密度阵列并确保连接可靠性的热电转换元件模块及其制造方法。 该模块包括由P型元件和沿第一方向交替布置的N型元件组成的热电转换元件组和填充热电转换材料周围的耐热绝缘元件,其中P型元件和 N型元件沿着第一方向连接在组的侧部上的连接电极,以及沿着与第一方向交叉的第二方向的组中的其它部分处的连接电极。 通过形成连接电极层来制造该模块,该连接电极层沿着该组的表面延伸到该组的侧部,并沿着第一方向和第二方向切割该热电转换元件之间的该连接电极层。
    • 10. 发明授权
    • Polyester resin for toner
    • 聚碳酸酯树脂
    • US08921021B2
    • 2014-12-30
    • US13498501
    • 2010-10-01
    • Norihiro FukuriTakashi KuboYasunori InagakiKatsutoshi Aoki
    • Norihiro FukuriTakashi KuboYasunori InagakiKatsutoshi Aoki
    • G03G9/08C08G63/547C08G63/60G03G9/087
    • C08G63/547C08G63/06C08G63/60G03G9/08755
    • A polyester resin for a toner obtained by polycondensing a carboxylic acid component and an alcohol component, wherein the polyester resin for a toner is obtained using, as the carboxylic acid component and/or the alcohol component, a specified aromatic compound; a polyester resin for a toner obtained by polycondensing a reaction product obtained by treating a specified aromatic compound with a carboxylic acid having an unsaturated reactive group, a carboxylic acid component, and an alcohol component; a resin binder for a toner, containing the polyester resin for a toner; and a toner for electrophotography, containing the resin binder. The polyester resin for a toner of the present invention is suitably used for a resin binder of a toner used in developing and the like of latent images formed in electrophotography, electrostatic recording method, electrostatic printing method or the like.
    • 通过使羧酸成分和醇成分缩聚得到的调色剂用聚酯树脂,其中,作为羧酸成分和/或醇成分使用规定的芳香族化合物,得到调色剂用聚酯树脂; 将通过用具有不饱和反应性基团的羧酸,羧酸组分和醇组分处理特定芳族化合物获得的反应产物缩聚得到的调色剂用聚酯树脂; 用于调色剂的树脂粘合剂,其包含用于调色剂的聚酯树脂; 和含有树脂粘合剂的电子照相用调色剂。 用于本发明的调色剂的聚酯树脂适合用于在电子照相,静电记录方法,静电印刷方法等中形成的潜像的显影等中使用的调色剂的树脂粘合剂。