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    • 91. 发明申请
    • Safety Unit Integrated on a Printed Circuit Board and the Printed Circuit Board
    • 集成在印刷电路板和印刷电路板上的安全单元
    • US20120044036A1
    • 2012-02-23
    • US13205777
    • 2011-08-09
    • Wei Shang
    • Wei Shang
    • H01H85/20
    • H01H85/046H01H69/022H05K1/0293H05K3/28H05K2201/10204H05K2201/10636Y02P70/611
    • The invention provides a safety unit integrated on a PCB (printed circuit board) and the PCB, and pertains to the technical field of circuit protecting device. The safety unit comprises: first electrode terminals; copper wire connected to the first electrode terminals at both ends respectively; an insulating paint film covering the copper wire; a chip fixed resistor disposed on the insulating paint film; and second electrode terminals connected to both ends of the chip fixed resistor respectively; wherein the first electrode terminals, the second electrode terminals and the copper wire are firmly pressed to be fixed onto the substrate of the printed circuit board. The safety unit provided by the invention possesses such characteristics as being simple in structure, low in cost and small in volume.
    • 本发明提供集成在PCB(印刷电路板)和PCB上的安全单元,并且涉及电路保护装置的技术领域。 安全单元包括:第一电极端子; 铜线分别连接到两端的第一电极端子; 覆盖铜线的绝缘漆膜; 设置在绝缘漆膜上的芯片固定电阻器; 和分别连接到芯片固定电阻两端的第二电极端子; 其中第一电极端子,第二电极端子和铜线被牢固地按压以固定到印刷电路板的基板上。 本发明提供的安全单元具有结构简单,成本低,体积小等特点。
    • 99. 发明授权
    • Method of providing a protective component with an adjusted time characteristic of the thermal transfer from a heating element to a fusible element
    • 提供具有从加热元件到可熔元件的热转印的调节时间特性的保护元件的方法
    • US07265653B2
    • 2007-09-04
    • US10488072
    • 2002-08-16
    • Manfred RupallaStephan HellAndreas Baus
    • Manfred RupallaStephan HellAndreas Baus
    • H01H85/055H01H85/05
    • H01H85/048H01H85/0052H01H85/0056H01H85/046H01H2085/0414H01H2085/466Y10T29/49107
    • The invention relates to a method for producing a protective component, for example a fuse component or a fusing resistor, including a fusible element and a heating element, which are attached as stacking components to the surface of a substrate. The fusible element is configured in such a way that a current flow between its connections is interrupted, if the fusible component is heated, at least in one fusible region, for a predetermined time period to above a predetermined temperature. The fusible element and the heating element are arranged on the substrate in such a way, that heat created by the heating element is transported to the fusible element and the current flow through the heating element exceeds a threshold value for a predetermined time period. During production, the heating element is positioned next to the fusible element, at a predetermined distance from it. A predetermined, local thermal capacitance is set, at least approximately, at the location of the heating element and is coupled to the latter. Alternatively, a predetermined, local thermal capacitance is set at least at one predetermined location between the heating element and the fusible element. The capacitance accumulates part of the heat that is dissipated from the heating element to the fusible element. This produces, at least approximately, a defined time response of the thermal transmission from the heating element to the fusible element.
    • 本发明涉及一种用于制造保护元件的方法,例如保险丝元件或熔断电阻器,其包括可熔元件和加热元件,其作为堆叠元件附着到基片的表面。 可熔元件被构造成使得如果可熔组件在至少一个可熔区域中被加热了预定时间段以上到预定温度以上,则其连接件之间的电流中断。 可熔元件和加热元件以这样的方式设置在基板上,使得由加热元件产生的热量被传送到可熔元件,并且通过加热元件的电流超过阈值达预定时间段。 在生产期间,加热元件位于可熔元件旁边,距离其一定距离。 至少大约在加热元件的位置处设置预定的局部热电容,并且耦合到加热元件的位置。 或者,将预定的局部热电容设置在加热元件和可熔元件之间的至少一个预定位置处。 电容积聚从加热元件散发到可熔元件的部分热量。 这至少大致地形成了从加热元件到可熔元件的热传递的限定的时间响应。