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    • 3. 发明授权
    • Anti-surge over-current protection device
    • 防浪涌过流保护装置
    • US09112348B2
    • 2015-08-18
    • US14072992
    • 2013-11-06
    • Chun Teng TsengPin Syuan LiChi Jen Su
    • Chun Teng TsengPin Syuan LiChi Jen Su
    • H02H9/02H01C7/02H01C7/13
    • H02H9/026H01C7/02H01C7/13
    • An anti-surge over-current protection device comprises a PTC material layer, first and second conductive layers. The PTC material layer has opposite first and second planar surfaces. The first conductive layer is in physical contact with the first planar surface and comprises a plurality of first conductive members isolated from each other. The second conductive layer is in physical contact with the second planar surface, and comprises a plurality of second conductive members isolated from each other. The first conductive layer, the PTC material layer and the second conductive layer form a circuit containing first and second conductive paths. In the first conductive path, the PTC material layer forms a first series connection resistive component having at least two resistors. In the second conductive path, the PTC material layer forms a second series connection resistive component having at least two resistors.
    • 防浪涌过流保护装置包括PTC材料层,第一和第二导电层。 PTC材料层具有相对的第一和第二平面。 第一导电层与第一平坦表面物理接触并且包括彼此隔离的多个第一导电构件。 第二导电层与第二平坦表面物理接触,并且包括彼此隔离的多个第二导电构件。 第一导电层,PTC材料层和第二导电层形成包含第一和第二导电路径的电路。 在第一导电路径中,PTC材料层形成具有至少两个电阻器的第一串联连接电阻元件。 在第二导电路径中,PTC材料层形成具有至少两个电阻器的第二串联连接电阻元件。
    • 4. 发明授权
    • Over-current protection device
    • 过电流保护装置
    • US09007166B2
    • 2015-04-14
    • US13737802
    • 2013-01-09
    • Polytronics Technology Corp.
    • Chun Teng TsengDavid Shau Chew Wang
    • H01C7/10H01C7/13H01C7/02H01C1/14
    • H01C7/02H01C1/1406H01C7/13
    • An over-current protection device comprises a PTC material layer, a first electrode layer and a second electrode layer. The PTC material layer has opposite first and second surfaces and opposite first and second lateral surfaces. The first electrode layer is in physical contact with the first surface of the PTC material layer and extends to the first lateral surface. The second electrode layer is in physical contact with the first surface of the PTC material layer and extends to the second lateral surface. The second electrode layer is insulated from the first electrode layer by a first separation. The first electrode layer and the second electrode layer are substantially laterally symmetrical, and serve as interfaces for current flowing in and out of the device when the over-current protection device is in use.
    • 过电流保护装置包括PTC材料层,第一电极层和第二电极层。 PTC材料层具有相对的第一和第二表面以及相对的第一和第二侧表面。 第一电极层与PTC材料层的第一表面物理接触并延伸到第一侧表面。 第二电极层与PTC材料层的第一表面物理接触并延伸到第二侧表面。 第一电极层通过第一分离与第一电极层绝缘。 第一电极层和第二电极层基本上是横向对称的,并且当使用过流保护装置时用作电流流入和流出装置的接口。
    • 5. 发明授权
    • Laminated ceramic electronic component
    • 层压陶瓷电子元件
    • US08879234B2
    • 2014-11-04
    • US13550630
    • 2012-07-17
    • Masaki TsukidaAtsushi Ishida
    • Masaki TsukidaAtsushi Ishida
    • H01G4/00H01G4/30H01G4/012H01C7/13H01G4/232H01C7/18H01C1/148H01L41/047H01F27/29H01F17/00
    • H01C7/13H01C1/148H01C7/18H01F17/0013H01F27/292H01G4/012H01G4/232H01G4/30H01L41/0471
    • In a laminated ceramic electronic component, a first functional portion and a second functional portion are disposed within a ceramic element body so as to be adjacent to each other along a height direction, first and second internal electrodes face each other through a ceramic layer in the first functional portion, and third and fourth internal electrodes whose number of laminated layers is different from the number of laminated layers of the first and second internal electrodes face each other through the ceramic layer in the second functional portion. A marking internal conductor is disposed on the same plane as the first internal electrode and/or the second internal electrode, a marking external conductor is disposed on the side surface of the ceramic element body so as to link a plurality of exposed marking internal conductors such that it is possible to recognize vertical directionality.
    • 在层叠陶瓷电子部件中,第一功能部分和第二功能部分沿着高度方向设置在陶瓷元件主体内以彼此相邻,第一和第二内部电极通过陶瓷层中的陶瓷层彼此面对 第一功能部分,以及第三和第四内部电极,其数量与第一和第二内部电极的叠层数不同,通过第二功能部分中的陶瓷层彼此面对。 标记内部导体设置在与第一内部电极和/或第二内部电极相同的平面上,标记外部导体设置在陶瓷元件主体的侧表面上,以将多个暴露的标记内部导体 可以识别垂直方向性。
    • 8. 发明授权
    • Resetable over-current protection device and method of making the same
    • 可复位过电流保护装置及其制作方法
    • US07138900B2
    • 2006-11-21
    • US10853617
    • 2004-05-25
    • Wen-Lung LiuChi-Hao ChiuKang-Neng HsuSzu-Lung Sun
    • Wen-Lung LiuChi-Hao ChiuKang-Neng HsuSzu-Lung Sun
    • H01C7/10
    • H01C17/006H01C1/142H01C7/13
    • The present invention relates to a resetable over-current protection device. The device is characterized in that: disconnected areas are maintained at end faces of formed cutting regions of the protection device, wherein one or two of the end faces of the formed cutting regions are partly formed with electrically conductive layers so as to increase the lifespan of the device and allows easy manufacturing of the device. The present invention also provides a method of manufacturing the resetable over-current protection device. The method is characterized in that a polymer-based sheet is divided into a plurality of components from which resetable over-current protection devices are subsequently manufactured into the resetable over-current protection devices to save the cost of material.
    • 本发明涉及一种可重置的过电流保护装置。 该装置的特征在于:在保护装置的成形切割区域的端面处保持断开的区域,其中形成的切割区域的一个或两个端面部分地形成有导电层,以便增加寿命 该设备并且允许容易地制造该设备。 本发明还提供一种制造可重置过电流保护装置的方法。 该方法的特征在于,聚合物基片材被分成多个部件,随后将可复位的过电流保护装置制造成可复位的过电流保护装置,以节省材料成本。
    • 9. 发明授权
    • Electrical devices
    • US07053748B2
    • 2006-05-30
    • US10637369
    • 2003-08-07
    • Justin ChiangShou-Mean FangWilliam C. Beadling
    • Justin ChiangShou-Mean FangWilliam C. Beadling
    • H01C7/10
    • H01C13/02H01C1/1406H01C7/027H01C7/13H01C17/006
    • A composite circuit protection device includes a laminar insulating member and first and second laminar circuit protection devices. Each of the first and second laminar circuit protection devices includes (1) a first laminar electrode, (2) a second laminar electrode, (3) a laminar PTC resistive element which (i) exhibits PTC behavior, (ii) has a first face to which the first electrode is secured and an opposite second face to which the second electrode is secured, and (iii) defines first and second apertures which run between the first and second faces, (4) a third laminar conductive member which (i) is secured to the second face of the PTC resistive element in the area of the first aperture, and (ii) is spaced apart from the second electrode, (5) a fourth laminar conductive member which (i) is secured to the first face of the PTC resistive element in the area of the second aperture, and (ii) is spaced apart from the first electrode, (6) a first transverse conductive member which lies within the first aperture defined by the PTC resistive element, runs between the first and second faces of the PTC element, is secured to the PTC element, and is physically and electrically connected to the first laminar electrode and to the third laminar conductive member, but is not connected to the second laminar electrode, and (7) a second transverse conductive member which lies within the second aperture defined by the PTC resistive element, runs between the first and second faces of the PTC element, is secured to the PTC element, and is physically and electrically connected to the second laminar electrode and to the fourth laminar conductive member, but is not connected to the first laminar electrode. The first and second laminar devices are physically secured together in a stacked configuration, with the laminar insulating member between them; and the devices are connected together electrically by interfacial electrical connections between adjacent electrodes and laminar conductive members so that when an electrical power supply is connected to (i) one of the electrodes and (ii) the third or fourth laminar member on the same face of the PTC resistive element as the electrode (i), the first and second laminar circuit protection devices are connected electrically in parallel.