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    • 2. 发明申请
    • COMPOSITE ELECTRONIC COMPONENT AND RESISTANCE ELEMENT
    • 复合电子元件和电阻元件
    • US20170011857A1
    • 2017-01-12
    • US15205124
    • 2016-07-08
    • Murata Manufacturing Co., Ltd.
    • Kazuo HATTORIIsamu FUJIMOTOShinichiro KUROIWA
    • H01G4/40H01G4/30H01C1/148H01G4/248H01G4/005
    • H01G4/40H01C1/01H01C1/014H01C1/148H01G2/06H01G4/005H01G4/232H01G4/30
    • A composite electronic component includes an electronic element and a resistance element in a height direction. The electronic element includes an electronic element body, and first and second external electrodes separated from each other in a length direction. The resistance element includes a base portion, a resistor disposed on an upper surface of the base portion, a protective film and first and second upper surface conductors. The first and second upper surface conductors are separated from each other in the length direction and the resistor is between the first and second upper surface conductors. The protective film covers the resistor. Dimensions in the height direction from the upper surface of the base portion to exposed surfaces of a pair of end portions in the length direction of the protective film are smaller than a dimension in the height direction from the upper surface of the base portion to an exposed surface of the protective film in the center portion.
    • 复合电子部件包括高度方向的电子元件和电阻元件。 电子元件包括电子元件主体,以及在长度方向上彼此分离的第一和第二外部电极。 电阻元件包括基部,设置在基部的上表面上的电阻器,保护膜和第一和第二上表面导体。 第一和第二上表面导体在长度方向上彼此分离,并且电阻器在第一和第二上表面导体之间。 保护膜覆盖电阻。 从基部的上表面到保护膜的长度方向上的一对端部的露出表面的高度方向的尺寸小于从基部的上表面到露出的高度方向的尺寸 保护膜在中心部分的表面。
    • 3. 发明申请
    • ELECTRONIC DEVICE
    • 电子设备
    • US20130335874A1
    • 2013-12-19
    • US13916788
    • 2013-06-13
    • Jian ChenChangyin WangLeo Zhong
    • Jian ChenChangyin WangLeo Zhong
    • H02H9/02
    • H02H9/026H01C1/014H01C1/022Y10T29/49204
    • The present disclosure presents an electronic device includes:an electronic element with a first electrode and a second electrode disposed on the opposite sides thereof; a first terminal and a second terminal; a first support mounted to and electrically connected with the first terminal, the first support comprising a first contact part contacting and electrically connected with the first electrode; a second support mounted to and electrically connected with the second terminal, the second support comprising a second contact part contacting and electrically connected with the second electrode; a third elastic support comprising a third contact part contacting with one of the first electrode and the second electrode, wherein the third elastic support is provided so as to push the electronic element out of contact with one of the first support and the second support when the electronic element breaks in a failure state.
    • 本公开提供一种电子设备,包括:电子元件,其具有设置在其相对侧上的第一电极和第二电极; 第一终端和第二终端; 安装到所述第一端子并与所述第一端子电连接的第一支撑件,所述第一支撑件包括与所述第一电极接触并电连接的第一接触部分; 安装到所述第二端子并与所述第二端子电连接的第二支撑件,所述第二支撑件包括接触并与所述第二电极电连接的第二接触部分; 第三弹性支撑件,包括与第一电极和第二电极中的一个接触的第三接触部分,其中设置第三弹性支撑件,以便当电子元件与第一支撑件和第二支撑件之一脱离接触时, 电子元件处于故障状态。
    • 10. 发明授权
    • NTC thermistors
    • NTC热敏电阻
    • US06242998B1
    • 2001-06-05
    • US09304705
    • 1999-05-04
    • Kenjiro Mihara
    • Kenjiro Mihara
    • H01C713
    • H01C1/1413H01C1/014H01C1/022
    • An NTC thermistor is formed with a planar NTC thermistor element, a pair of power-supply terminals and a case which encloses the thermistor element and the terminals inside. The planar NTC thermistor has electrodes formed on a mutually opposite pair of side surfaces and each contacted by one of the power-supply terminals. At least one of the main surfaces of the planar NTC thermistor makes a surface-to-surface contact with an inner wall of the case such that the effective thermal capacity of the thermistor element is increased. Such an NTC thermistor, when inserted in series between an electrical power source and an electrical heat source, say, of an electronic copier, can effectively suppress rush currents when the power source is switched on.
    • NTC热敏电阻形成有平面NTC热敏电阻元件,一对电源端子和封装热敏电阻元件和端子的壳体。 平面NTC热敏电阻具有形成在彼此相对的一对侧表面上并且各自与一个电源端子接触的电极。 平面NTC热敏电阻的至少一个主表面与壳体的内壁面对面接触,使得热敏电阻元件的有效热容增加。 这种NTC热敏电阻当串联插入电源和电热源(电子复印机)时,可以有效地抑制电源接通时的冲击电流。