Large-size direct insertion type resistor capable of improving heat dissipation performance
A technology with heat dissipation performance and large size, applied in the direction of resistors, resistor components, resistor terminals/electrodes, etc., can solve the problems affecting the normal operation of the resistor, and achieve the effect of improving the heat dissipation method, improving the heat dissipation capacity, and ensuring the normal operation.
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Embodiment 1
[0025] Such as Figure 1 to Figure 3 As shown, the large-size in-line resistor with improved heat dissipation performance includes ceramic substrate 1, surface electrode 2, back electrode 3, resistor body 4, primary protective layer 5, secondary protective layer 6, terminal electrode 8, and intermediate electrode 9 , an external electrode 10, a shell 13, the ceramic substrate 1 is a cylinder, and the inside is a cavity, the resistor body 4 covers the middle and lower part of the ceramic substrate 1, and the primary protective layer 5 covers the resistor body 4 The surface, the secondary protection layer 6 is covered on the surface of the primary protection layer 5; the bottom end of the ceramic substrate 1 covered with the resistor 4 is provided with a terminal electrode 8, and the lower surface of the terminal electrode 8 is covered with an intermediate electrode 9, The lower surface of the intermediate electrode 9 is covered with an external electrode 10; the upper end of th...
Embodiment 2
[0036] Large-sized in-line resistors with improved heat dissipation performance, including ceramic substrate 1, surface electrode 2, back electrode 3, resistor body 4, primary protective layer 5, secondary protective layer 6, terminal electrodes 8, intermediate electrodes 9, and external electrodes 10. Housing 13, the ceramic substrate 1 is a cylinder with a cavity inside, the resistor body 4 covers the middle of the ceramic substrate 1, the primary protective layer 5 covers the surface of the resistor body 4, and the secondary The protective layer 6 covers the surface of the primary protective layer 5; the upper end of the resistor 4 is sequentially provided with a terminal electrode 8, an intermediate electrode 9, and an external electrode 10, and the upper external electrode 10 is also connected to a metal conductor 12; A terminal electrode 8 , an intermediate electrode 9 , and an external electrode 10 are sequentially arranged at the lower end of the resistor 4 from top to ...
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