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Best Selling Thermal Cutoff Fuse Thermo Switch RoHS Compliant UL VED PSE Certification

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Port: Foshan
Payment Terms: L/C,T/T,Western Union
Supply Ability: 1000000000000 Piece/Pieces per Month
product name: thermal fuse/thermal cutoff
Usage: Thermal
Shape: cylindrical
Place of Origin: Guangdong China
Leads length: customized
type: all types of thermal fuse
Model Number: kehua
Case: metal
Brand Name: KH
Rated current: 10A 15A
Safety Standards: IEC
Rated voltage: 125V 250V
Temperature range: 72~240°C
Safety Approval Certificate: UL.VDE.PSE .CCC.CB.SGS,ROHS ,REACH
Thermostat Type: Other Home Appliance Parts
Breaking Capacity: High
Delivery Detail: Shipped in 15 days after payment
Packaging Detail: carton
Foshan Kehua Electric Appliance Co., Ltd.
Gold Supplier
CN
Manufacturer, Trading Company
81.8%
Response Rate
100.0%
On-time delivery rate
US$ 340,000+
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 Best Selling Thermal Cutoff Fuse Thermo Switch RoHS Compliant UL VED PSE Certification

 

 

 

 

Product detail

 

 

To maximize product life, we suggest a 30℃ minimum differential between operating ambient temperature at the thermal cutoff location and your selected “Rated Functioning Temperature”.

Under no conditions should the thermal cutoff be exposed to a continuous normal ambient temperature in excess of 200℃.

Note: only proper testing of the above will help you in determining the selected thermal cutoff’s suitability within the application.

Temperature increasing according to UL standard: 1℃ / Min

 

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TF (Rated Functioning Temperature)
The temperature of the thermal cutoff which causes it to change its state of conductivity with a detecion current up to 10 mA as the only load. Under the UL/IEC standards the tolerance is +0℃, -10℃.

 

TH (Holding Temperature)
The maximum temperature of the thermal cutoff at which it will not change its state of conductivity for 168 hours while conducting its rated voltage. It is called Th for short by UL and called Tc by IEC/VDE.

 

TM (Maximum Temperature Limit)
The tmperature of the thermal cutoff, up to which the mechanical and electrical properties of the thermal cutoff, having changed its state of conductivity, will not be impaired for 10 minutes.

 

 

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