Method of regulating ceramic positive temperature coefficient thermistor value
A technology of positive temperature coefficient and thermistor, applied in the direction of resistors with positive temperature coefficient, etc., can solve the problems of uneven powder, not all within the qualified requirements, lower product qualification rate, etc., to improve product quality Resistance value, improved withstand voltage performance, and small lift-to-drag ratio
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Embodiment 1
[0007] The sintered tiles were treated with different concentrations of Mn(NO 3 ) 2 Solution (0.02g / cm 3 , 0.04g / cm 3 , 0.06g / cm 3 ) for 5 minutes, and then treat the tiles at 850°C, and then test the electrical properties by electrodes. ) shown.
[0008] 1. Test method
[0009] Table 1)
[0010] product performance
testing method
Test Equipment
Zero Power Resistor
The ceramic piece after being well-electroded is placed in an environment of 25±2°C
Measure its resistance after leaving it for an hour. A total of 50 pieces were measured,
Calculate its average resistance value.
Zero Power Resistance Meter
Lift-to-drag ratio
Measure the R-T curves of 10 tiles, take the highest point and the most
Calculate the lift-to-drag ratio of the resistance at the low point, and calculate its average value.
Resistance temperature (R-T)
Curve Tester
Voltage withstand capabi...
Embodiment 2
[0015] Put the sintered tiles at 0.04g / cm 3 Mn(NO 3 ) 2 Immerse in the solution for 5 minutes, and then treat the tiles at 800°C, 850°C, and 900°C respectively, and then electroded them at the same time as the tiles without the above treatment, and then tested the electrical properties. The comparison results are shown in Table (3). Show.
[0016] table 3)
[0017]
[0018] It can be seen from the above results that the present invention can adjust the resistance value of the ceramic PTC, and in addition it can also improve the withstand voltage capability of the ceramic PTC thermistor without affecting the lift-resistance characteristic of the PTC thermistor.
PUM
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