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Producttags
China fabrikant van airconditioning temperatuursensor
Airconditioning temperatuursensor 5K 10K 15K 20K 50K 100K 100K airconditioner buissensor rubberen kop koperen kop.
The following is the core technology analysis and application guide of air conditioning temperature sensor, comprehensive structure, principle and selection points:
Airconditioning temperatuursensor 5K 10K 15K 20K 50K 100K 100K airconditioner buissensor rubberen kop koperen kop.
I. Core type and functional positioning
Sensor type | Installation location | Core function | Typical resistance (25℃) |
Indoor ambient temperature sensor | Indoor unit air inlet | Monitor room temperature, control compressor start/stop/frequency conversion operation | 5KΩ/10KΩ/15KΩ |
Indoor pipe temperature sensor | Evaporator copper tube surface | Refrigeration anti-freezing, heating anti-cold wind, control indoor unit wind speed | Same ambient temperature or higher |
Buiten omgevingstemperatuursensor | Back of outdoor unit condenser | Monitor ambient temperature, adjust outdoor unit fan speed | 10KΩ~50KΩ |
Compressor exhaust temperature sensor | Exhaust pipe metal surface | Monitor exhaust temperature (>150℃), prevent overheating protection | 50KΩ/100KΩ |
Outdoor pipe temperature sensor | Condenser coil | Defrost control and overheating protection | 10KΩ~50KΩ |
Opmerking:
Household air conditioners are mainly based on NTC thermistors (temperature↑resistance↓);
The resistance of different sensors of the same air conditioner may be different (such as Panasonic inner ring temperature is usually 15KΩ, tube temperature is 25KΩ).
II. Key performance parameters and selection
Accuracy requirements
Ambient temperature sensor: ±0.5℃ (±0.1℃ for high-precision models);
Pijptemperatuursensor: ±1℃ (key for anti-freeze protection).
Temperatuurbereik
Conventional environment: -30℃~+80℃ (epoxy resin encapsulation);
High temperature area: exhaust gas sensor needs to withstand 150℃↑ (glass seal/gold electrode encapsulation).
B value selection
Standard B value: 3435K/3950K, affecting the slope of the temperature-resistance curve;
High B value (4100K) improves the sensitivity in the high temperature zone.
III. Typical faults and diagnostic logic
mermaid Copy Code
graph LR
A[Air conditioning abnormal protection] –> B[Check sensor resistance]
B –> C{Measured resistance at 25℃}
C — Deviation from nominal value ±3%↑ –> D[Replace sensor]:ml-citation{ref=”11″ data=”citationList”}
C — Normal –> E[Check the connection line]
E — Open circuit/short circuit –> F[Maintenance harness]:ml-citation{ref=”8″ data=”citationList”}
E — Normal –> G[Mainboard ADC failure]:ml-citation{ref=”9″ data=”citationList”}
Case: Haier air conditioner internal unit pipe temperature sensor nominal 10KΩ, if the actual measurement <9.7KΩ or >10.3KΩ, it needs to be replaced.
Iv. Installation and maintenance specifications
Positioning criteria
The ambient temperature sensor needs to be exposed to the air flow and avoid local heat sources;
The pipe temperature sensor must fit tightly to the copper tube (filled with thermal conductive silicone grease).
Replacement steps
Turn off power → remove the control board → unplug the plug → replace the new sensor → restore the test;
It is strictly forbidden to bend the lead (which may cause internal fracture).
V. Technology Evolution Direction
Multi-sensor Fusion: The new air conditioner uses 4-6 sensors to link and realize dynamic temperature control through spatial temperature field modeling;
Intelligent Calibration: Automatically detect sensor resistance drift when powered on, and software compensation improves long-term stability.
Appendix: Resistance Quick Comparison Table
Temperatuur | 5K sensor | 10K sensor |
0℃ | 16.3KΩ | 32.6KΩ |
25℃ | 5KΩ | 10KΩ |
50℃ | 1.8KΩ | 3.6KΩ |
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