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    • 1. 发明申请
    • THE SURGE ARRESTER WITH A REPLACEABLE OVERVOLTAGE PROTECTION MODULE
    • 具有可更换过电压保护模块的浪涌电抗器
    • WO2012130192A1
    • 2012-10-04
    • PCT/CZ2012/000017
    • 2012-02-27
    • SALTEK s.r.o.SUCHÝ, Jaromír
    • SUCHÝ, Jaromír
    • H01T4/06H01T1/12H01T1/14
    • H02H3/20H01T1/12H01T1/14H01T4/06
    • The surge arrester with a replaceable overvoltage protection module in a single-pole or a multi-pole configuration, consisting of the U-shaped overvoltage protection base (5) adjusted for inserting one or three or four overvoltage protection replaceable modules (2), where the overvoltage protection replaceable module (2), featuring a visual status signalling window (17) of the thermal disconnector implemented via a visual signalling flexible strip (18), comprises C- shaped plug contacts (1) on the opposite lateral sides and a coding field (4) on one or both lateral sides, comprising of rectangular projections and/or indentations of a different profile, width and length, which slide in the complementary indentations and/or projections on one or both internal lateral sides of the overvoltage protection base (5).
    • 具有单极或多极配置的可更换过电压保护模块的电涌放电器,包括U形过电压保护基座(5),用于插入一个或三个或四个过压保护可更换模块(2),其中 具有通过视觉信令柔性带(18)实现的隔热开关的视觉状态信号窗口(17)的过电压保护可更换模块(2)包括位于相对侧面上的C形插头触点(1)和编码 在一个或两个侧面上的场(4),包括不同轮廓,宽度和长度的矩形突起和/或凹陷,其在过压保护基座的一个或两个内侧横向上的互补压痕和/或突起中滑动 (5)。
    • 2. 发明申请
    • DESIGN OF THE TRIGGERING CIRCUIT OF THE OVERVOLTAGE PROTECTION
    • WO2014032631A3
    • 2014-03-06
    • PCT/CZ2012/000104
    • 2012-10-17
    • SALTEK s.r.o.SUCHÝ, Jaromír
    • SUCHÝ, Jaromír
    • H02H9/06H02H9/04H02H9/00H02H1/04
    • The design of the triggering circuit (1) of the overvoltage protection connected in three poles to the spark gap (4) of the overvoltage protection, provided with input terminals I (2) and II (3), comprising an auxiliary electrode (7) of the spark gap connected in series with varistor I (8) and one end of the secondary winding (14) of the transformer (13), the other end of which is connected to main electrode II (6) of the spark gap (4) and input terminal II (3), whereas one end of the primary winding (15) of the transformer (13) is connected in series to a gas discharge tube (10), varistor II (9), resistor (11) and capacitor (12), connected to the other end of the primary winding (15) of the transformer (13), connected to input terminal II (3), whereas the junctor connecting varistor II (9) to the resistor (11) is interconnected with the junctor, connecting input terminal clamp I (2) with main electrode I (5) of the spark gap (4). The advantageous design of the triggering circuit (1) of the overvoltage protection provides a thermo- sensitive disconnector (17), thermally coupled (16) to varistor II (9), which is either connected in series to varistor II (9), or is connected in a junctor between the junction connecting varistor II (9) to the resistor (11) and the junction connecting input terminal I (2) to main electrode I (5) of the spark gap (4), or the thermo-sensitive disconnector (17) is connected between the primary winding (15) of the transformer (13) and the gas discharge tube (10).