Vishay, 33Ω 12.5W Wire Wound Chassis Mount Resistor RH01033R00FE02 ±1%
Technical Document
Specifications
Brand
VishayResistance
33Ω
Power Rating
12.5W
Series
RH010
Package/Case
Aluminium Housed
Tolerance
±1%
Technology
Wire Wound
Termination Style
Axial
Minimum Operating Temperature
-55°C
Maximum Operating Temperature
+250°C
Minimum Temperature Coefficient
-20ppm/°C
Maximum Temperature Coefficient
+20ppm/°C
Product details
10 Watt RH010 Series ±1%
The Vishay RH010 series wirewound chassis mount resistor has a complete welded and moulded construction for total environmental protection in aluminium housing. These resistors mount directly onto a chassis to utilize heat-sink effect. This range of wirewound resistors offers high stability at conventional power ratings and flat marking surface for easy identification.
Mounts on chassis to utilize heat-sink effect
Moulded construction for total environmental protection
High Stability <0.05% Year
Resistance Tolerance 1%
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€ 5.05
Each (ex VAT)
Standard
1
€ 5.05
Each (ex VAT)
Standard
1
Buy in bulk
quantity | Unit price |
---|---|
1 - 4 | € 5.05 |
5 - 9 | € 4.04 |
10 - 24 | € 3.79 |
25 - 49 | € 3.54 |
50+ | € 3.29 |
Technical Document
Specifications
Brand
VishayResistance
33Ω
Power Rating
12.5W
Series
RH010
Package/Case
Aluminium Housed
Tolerance
±1%
Technology
Wire Wound
Termination Style
Axial
Minimum Operating Temperature
-55°C
Maximum Operating Temperature
+250°C
Minimum Temperature Coefficient
-20ppm/°C
Maximum Temperature Coefficient
+20ppm/°C
Product details
10 Watt RH010 Series ±1%
The Vishay RH010 series wirewound chassis mount resistor has a complete welded and moulded construction for total environmental protection in aluminium housing. These resistors mount directly onto a chassis to utilize heat-sink effect. This range of wirewound resistors offers high stability at conventional power ratings and flat marking surface for easy identification.
Mounts on chassis to utilize heat-sink effect
Moulded construction for total environmental protection
High Stability <0.05% Year
Resistance Tolerance 1%