Damping stable thermistor

A thermistor and stable technology, applied in the field of shock-absorbing and stable thermistors, can solve the problems of vibration loss affecting the internal parts of the thermistor, inconsistency in the comparison size of the temperature-sensing cross-section, and wrong current transfer operation of the resistance, so as to improve the performance of the thermistor. The small inner shell protects the operation, improves the adaptation sensitivity and anti-loss maintenance, and ensures the effect of stability

Active Publication Date: 2020-07-31
肇庆市端诚电子科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] Aiming at the deficiencies in the prior art, the object of the present invention is to provide a shock-absorbing and stable thermistor to solve the problem of the temperature difference adapting the current calorific value of the electronic components in real time for the detection of the positive temperature coefficient and the detection of the negative temperature coefficient of the thermistor. Monitor the contact end, but the silicon diode is friable and easy to shake, which will cause the vibration of the pin rod when the integrated circuit board is plugged and moved, causing a difference in alignment between the positive temperature coefficient detection horizontal tube and the negative temperature coefficient detection horizontal tube. The inconsistencies in the size of the temperature-sensing cross-section lead to delayed feedback efficiency of thermistors, and temperature data deviations cause the resistors to mislead the current transfer operation, resulting in rigidity and short-circuiting of the overall internal circuit, which affects the sensitivity of the thermistor itself and the vibration loss of internal parts The problem

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0033] see Figure 1-Figure 6 , the present invention provides a shock-absorbing and stable thermistor, the structure of which includes: a positive pin rod 1, a gate trimming frame 2, a single-chip microcomputer board 3, a label thin groove 4, a resistance shell cover 5, and a collector ring 6 , sliding sleeve seat 7, negative pole pin tube 8, the gate fine-tuning frame 2 is fastened together with the positive pin rod 1 and the axis is collinear, and the gate fine-tuning frame 2 is connected to the set through the single-chip microcomputer board 3 The electric ring 6 is electrically connected, the collector ring 6 is nested with the sliding sleeve seat 7 and the axis is collinear, the sleeve seat 7 is fastened with the negative pin tube 8, and the label thin groove 4 is connected with the The resistance housing body 5 has an integrated structure and is on the same level. The single-chip microcomputer board 3 is inserted and embedded in the front side of the resistance housing ...

Embodiment 2

[0040] see Figure 1-Figure 6 , the present invention provides a shock-absorbing stable type thermistor, other aspects are the same as embodiment 1, the difference is:

[0041] see figure 2 , the rotor collector 2F is composed of a front cover end cap 2F1, a rotor frame tube 2F2, a tailstock groove 2F3, and an arc top wide groove 2F4, and the tailstock groove 2F3 and the front cover end cap 2F1 are respectively nested in the rotor frame The left and right sides of the tube 2F2 are co-linear, and the rotor frame tube 2F2 is installed inside the arc top wide groove 2F4, through which the rotor frame tube 2F2 forms an electromagnetic rotary traction force in the iron wall pipe to be magnetic in the arc top wide slot 2F4 , to ensure the rotation speed of the rotor supported by the magnetic field, and to improve the effect of magnetic attraction stretching thermistor block change.

[0042] see Figure 5 , the rotor frame tube 2F2 is composed of three copper wire lead plates 2F2...

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Abstract

The invention discloses a damping stable thermistor which structurally comprises a positive electrode pin rod, a thyristor fine tuning frame, a single-chip microcomputer board, a label thin groove, aresistor housing cover body, a collecting ring, a sliding sleeve seat and a negative electrode pin tube. Cooperation between the thyristor fine tuning frame and the single-chip microcomputer board isrealized, the single-chip microcomputer board is used in detecting positive and negative temperature coefficients to form a section conduction effect with stable alignment, the alignment tensioning disc is pulled to slide in the negative temperature coefficient detection tube of the thermistor, the stability of 360-degree displacement of the detection pipe is ensured, and the positive and negativetemperature coefficient detection butt joint efficiency is improved; synchronous counterweight pad protection guarantees the semi-wrapped maintenance effect of the bottom silicon thyristor, the packaging and pressing effect of the thyristor wheel plate bundle bag connected with the overall negative electrode pin tube in an inserted mode is improved, rigid insertion electronic components are changed, the overall tiny inner shell protection operation is improved through the insulating soft body and the elastic vibration isolation materials, and the adaptive sensitivity and the loss-resistant maintenance degree of the thermistor are also improved in real time.

Description

technical field [0001] The invention is a shock-absorbing and stable thermistor, which belongs to the field of electronic equipment. Background technique [0002] Thermistor is an auxiliary electronic component that adapts to sliding resistors and custom resistors. It is convenient to contact and detect overload current and overheated wires on the integrated circuit board to increase resistance and ensure the stability of the line. The essence of the sensitive resistor monitoring operation is to improve the stability of the overall internal circuit. The shortcomings of the current technology that need to be optimized are: [0003] The positive temperature coefficient detection and negative temperature coefficient detection of the thermistor are the contact terminals for real-time monitoring of the current calorific value of the temperature difference adaptation electronic components, but the silicon diode is friable and easy to shake, which will cause the integrated circuit ...

Claims

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Application Information

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IPC IPC(8): G01K7/24
CPCG01K7/24
Inventor 许春生
Owner 肇庆市端诚电子科技有限公司
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