RS PRO, 1.5Ω 25W Wire Wound Chassis Mount Resistor ±5%
Technical Document
Specifications
Brand
RS ProResistance
1.5Ω
Power Rating
25W
Package/Case
Aluminium Housed
Tolerance
±5%
Technology
Wire Wound
Termination Style
Axial
Maximum Operating Temperature
+200°C
Minimum Temperature Coefficient
-100ppm/°C
Maximum Temperature Coefficient
+100ppm/°C
Dimensions
51 x 28 x 14.6mm
Overall Height
14.6mm
Overall Length
51mm
Overall Width
28mm
Country of Origin
United Kingdom
Product details
RS Pro 25 W Aluminium Housed Wirewound Resistors
RS Pro 25 W Aluminium housed power resistors which are manufactured to be compliant with the requirements of a MIL 18546, IEC 115 and are RoHS compliant.
Features
Compact size for Power rating
High Power to volume
Wound to maximise High Pulse Capability
Applications
Designed for direct heatsink mounting with thermal compound to achieve maximum performance.
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1.185 OMR
Each (In a Pack of 5) (ex VAT)
1.244 OMR
Each (In a Pack of 5) (inc VAT)
5
1.185 OMR
Each (In a Pack of 5) (ex VAT)
1.244 OMR
Each (In a Pack of 5) (inc VAT)
5
Buy in bulk
quantity | Unit price | Per Pack |
---|---|---|
5 - 245 | 1.185 OMR | 5.925 OMR |
250 - 495 | 1.155 OMR | 5.775 OMR |
500 - 1245 | 1.140 OMR | 5.700 OMR |
1250+ | 1.125 OMR | 5.625 OMR |
Technical Document
Specifications
Brand
RS ProResistance
1.5Ω
Power Rating
25W
Package/Case
Aluminium Housed
Tolerance
±5%
Technology
Wire Wound
Termination Style
Axial
Maximum Operating Temperature
+200°C
Minimum Temperature Coefficient
-100ppm/°C
Maximum Temperature Coefficient
+100ppm/°C
Dimensions
51 x 28 x 14.6mm
Overall Height
14.6mm
Overall Length
51mm
Overall Width
28mm
Country of Origin
United Kingdom
Product details
RS Pro 25 W Aluminium Housed Wirewound Resistors
RS Pro 25 W Aluminium housed power resistors which are manufactured to be compliant with the requirements of a MIL 18546, IEC 115 and are RoHS compliant.
Features
Compact size for Power rating
High Power to volume
Wound to maximise High Pulse Capability
Applications
Designed for direct heatsink mounting with thermal compound to achieve maximum performance.