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    • 1. 发明申请
    • ACTIVATABLE THERMAL FUSE
    • 可激活的热保险丝
    • WO2017121498A1
    • 2017-07-20
    • PCT/EP2016/062038
    • 2016-05-27
    • SCHURTER AG
    • SIGNER, GuidoSTRAUB, PeterSCHIBLI, Benjamin
    • H01H37/70H01H85/36H01H37/76H01H37/04H01H85/10
    • H01H37/70H01H85/10H01H85/36H01H2037/046H01H2037/762
    • Activatable thermal fuse (10) comprising - a first (1) and a second (2) electrical terminal, - an electrically conductive bridge element (3) being in a first electric contact with said first terminal and being in a second electric contact with said second terminal, - at least a part (4) of said bridge element being displaceable from a first position in which said first contact is established to a second position in which said first contact is opened, - a thermally sensitive member (5) holding said part in said first position and releasing said part as soon as said thermally sensitive member is exposed to a predetermined temperature value, - a biasing member (6) biasing said part towards said second position, and - a mechanically displaceable activating element (7) blocking displaceability of said part in said first position in a first position of said activating element and enabling said displaceability of said part in a second position of said activating element. The invention is further directed to a method of manufacturing a printed circuit board with an activatable thermal fuse, a method of monitoring an activatable thermal fuse and to an electronical circuit comprising an activatable thermal fuse.
    • (10),包括 - 第一(1)和第二(2)电端子, - 与所述第一端子处于第一电接触的导电桥元件(3),以及 处于与所述第二端子的第二电接触中, - 所述桥接元件的至少一部分(4)能够从其中建立所述第一接触的第一位置移位到其中打开所述第一接触的第二位置, - 一旦所述热敏元件暴露于预定温度值,热敏元件(5)将所述部分保持在所述第一位置并释放所述部分, - 偏压元件(6),将所述元件偏压向所述第二位置,以及 - 机械可移位的激活元件(7)阻止所述部件在所述第一位置中在所述激活元件的第一位置中的可移动性,并且使所述部件能够在所述激活元件的第二位置中的所述可移位性。 本发明还涉及一种制造具有可激活的热熔断器的印刷电路板的方法,监控可激活的热熔断器的方法以及包括可激活的热熔断器的电子电路。
    • 3. 发明申请
    • MECHANICALLY ACTIVATABLE THERMAL FUSE
    • 机械激活的热保险丝
    • WO2017121474A1
    • 2017-07-20
    • PCT/EP2016/050596
    • 2016-01-14
    • SCHURTER AG
    • SIGNER, GuidoSTRAUB, PeterSCHIBLI, Benjamin
    • H01H37/70H01H85/36H01H37/76H01H37/04
    • H01H37/70H01H85/10H01H85/36H01H2037/046H01H2037/762
    • Activatable thermal fuse (10) comprising - a first (1) and a second (2) electrical terminal, - an electrically conductive bridge element (3) being in a first electric contact with said first terminal and being in a second electric contact with said second terminal, - at least a part (4) of said bridge element being displaceable from a first position in which said first contact is established to a second position in which said first contact is opened, - a thermally sensitive member (5) holding said part in said first position and releasing said part as soon as said thermally sensitive member is exposed to a predetermined temperature value, - a biasing member (6) biasing said part towards said second position, and - a mechanically displaceable activating element 7 blocking displaceability of said part in said first position in a first position of said activating element and enabling said displaceability of said part in a second position of said activating element. The invention is further directed to a method of manufacturing a printed circuit board with an activatable thermal fuse and to an electronical circuit comprising an activatable thermal fuse.
    • (10),包括 - 第一(1)和第二(2)电端子, - 与所述第一端子处于第一电接触的导电桥元件(3),以及 处于与所述第二端子的第二电接触中, - 所述桥接元件的至少一部分(4)能够从其中建立所述第一接触的第一位置移位到其中打开所述第一接触的第二位置, - 一旦所述热敏元件暴露于预定温度值,热敏元件(5)将所述部分保持在所述第一位置并释放所述部分, - 偏压元件(6),将所述元件偏压向所述第二位置,以及 - 机械可移位的激活元件7阻止所述部件在所述第一位置处在所述激活元件的第一位置中的可移动性,并且使所述部件能够在所述激活元件的第二位置中的所述可移位性。 本发明还涉及一种制造具有可激活的热熔断器的印刷电路板的方法以及一种包括可激活的热熔断器的电子电路。
    • 4. 发明申请
    • CURRENT-LIMITING FUSE
    • WO2021151498A1
    • 2021-08-05
    • PCT/EP2020/052356
    • 2020-01-30
    • SCHURTER AG
    • SCHIBLI, BenjaminSIGNER, Guido
    • H01H85/041
    • Current-limiting fuse (20) comprising - an electrically insulating housing (2) with walls surrounding an interior space (6), with a first opening (7) and with a second opening (8) opposite to said first opening, and - an integrally formed electrical conductor element (1) extending from a first terminal area (3) outside said housing, across said first opening, across said interior space, across said second opening and to a second terminal area (4) outside said housing, wherein said conductor element comprises a melting section (5) of reduced cross-section, said melting section being located in said interior space and being configured to melt, when a predefined maximum allowable electrical current in the conductor element is exceeded, and wherein a first sealing section (9) of the conductor element seals said first opening (7) and wherein a second sealing section (10) of the conductor element seals said second opening (9). The invention is further directed to a method of manufacturing the current-limiting fuse.