Positive-temperature-coefficient thermistor heating device and process
for production of the same
    1.
    发明授权
    Positive-temperature-coefficient thermistor heating device and process for production of the same 失效
    正温系数热敏电阻加热装置及其制造方法

    公开(公告)号:US5354969A

    公开(公告)日:1994-10-11

    申请号:US60939

    申请日:1993-05-13

    IPC分类号: H05B3/14 H05B3/08

    CPC分类号: H05B3/141

    摘要: A positive-temperature-coefficient thermistor heating device including of a PTC element, a first electrode formed on its surface, a heat radiating means having heat radiating fins and a second electrode, and conductive particles contained in the first electrode and electrically conductive with the second electrode, and, also, a process for production of a positive-temperature-coefficient thermistor heating device including the steps of printing an electrode material paste containing conductive particles on the surface of a PTC element, heating this to bake it on and form a first electrode having a rough surface, and bringing the first electrode and the second electrode of the heat radiating means into contact by the conductive particles.

    摘要翻译: 一种正温度系数热敏电阻加热装置,包括PTC元件,在其表面上形成的第一电极,具有散热翅片的散热装置和第二电极,以及包含在第一电极中并与第二电极导电的导电颗粒 电极,以及制造正温度系数热敏电阻加热装置的方法,包括以下步骤:在PTC元件的表面上印刷含有导电性粒子的电极材料糊料,将其加热烘烤,形成第一 具有粗糙表面的电极,并使第一电极和散热装置的第二电极与导电颗粒接触。

    Heater unit having increased dielectric strength
    2.
    发明授权
    Heater unit having increased dielectric strength 失效
    加热器单元具有增加的介电强度

    公开(公告)号:US5831251A

    公开(公告)日:1998-11-03

    申请号:US794992

    申请日:1997-02-05

    IPC分类号: H05B3/14 H05B1/02

    CPC分类号: H05B3/141

    摘要: A heater unit 1 has a plurality of flat heaters 11 adjacently arranged side by side and having common upper and lower surfaces. The thickness T of the heaters 11 is substantially uniform. Each heater 11 has an adjacent end surface 111 which faces toward an adjacent end surface 111 of the adjacent heater 11. The heater unit 1 also has upper and lower electrodes 21 holding the heaters 11 and respectively attached to the upper and lower surfaces of the heaters 11. The adjacent end surfaces 111 of the heaters 11 adjoining each other, and the upper and lower electrodes 21 form an air gap 12 therebetween. The creepage distance L along each adjacent end surface 111 is larger than the thickness T of the heaters 11. The dielectric strength of the heater unit 1 depends on the creepage distance L. The thickness T of the heaters 11 can be decreased without decreasing the dielectric strength of the heater unit 1. The output of the heater unit 1 increases when the thickness T is decreased.

    摘要翻译: 加热器单元1具有并排相邻并具有共同的上表面和下表面的多个扁平加热器11。 加热器11的厚度T基本上均匀。 每个加热器11具有邻近相邻加热器11的相邻端面111的相邻端面111.加热器单元1还具有保持加热器11并分别附接到加热器的上表面和下表面的上电极21和下电极21 加热器11的相邻的端面111彼此相邻,并且上部和下部电极21在它们之间形成气隙12。 沿着每个相邻端面111的爬电距离L大于加热器11的厚度T.加热器单元1的介电强度取决于爬电距离L.可以减小加热器11的厚度T而不减小电介质 加热器单元1的强度。当厚度T减小时,加热器单元1的输出增加。

    Positive TCR thermistor device having surface roughness and filling oil
for high heat transfer characteristics
    3.
    发明授权
    Positive TCR thermistor device having surface roughness and filling oil for high heat transfer characteristics 失效
    具有表面粗糙度和填充油的正TCR热敏电阻器件具有高的传热特性

    公开(公告)号:US5729189A

    公开(公告)日:1998-03-17

    申请号:US630506

    申请日:1996-04-11

    CPC分类号: H05B3/141

    摘要: A positive TCR thermistor device has excellent electrical contact between a heat generator and heat radiating blocks and high heat transfer efficiency therebetween. The positive TCR thermistor includes a heat generator having a positive temperature coefficient of resistance and heat radiating blocks supplying electric current to the heat generator and heating a heated medium by receiving heat generated by the heat generator. The heat generator is provided with a metallic paste electrode at a contact surface which is in contact with the heat radiating blocks and oil having flowability is disposed between the metallic paste electrode of the heat generator and the heat radiating blocks.

    摘要翻译: 正TCR热敏电阻器件在发热体和散热块之间具有优异的电接触,并且其间具有高的传热效率。 正TCR热敏电阻包括具有正的温度系数的热发生器和向发热体提供电流的热辐射块,并且通过接收由发热体产生的热量来加热受热介质。 发热体在与散热块接触的接触面上设有金属膏电极,在发热体的金属糊电极和散热块之间配置具有流动性的油。