Arcol Ohmite 33kΩ Silicone Ceramic Resistor 2W ±10% OY333KE

Technical Document
Specifications
Brand
Arcol OhmiteResistance
33kΩ
Power Rating
2W
Tolerance
±10%
Technology
Silicone Ceramic
Series
OY
Temperature Coefficient
Minimum of -1300ppm/°C
Maximum Operating Temperature
+220°C
Minimum Operating Temperature
-40°C
Country of Origin
Japan
Product details
OY Series Ceramic Axial Resistors
Ohmite OY Series of fixed ceramic resistors are ideal for circuitry associated with surges, high peak power or high energy. They offer enhanced performance in high voltage power supplies, R-C snubber circuits, and inrush limiters. The OY resistors can often replace carbon composition resistors which can be difficult to source.
Replaces carbon composition resistors
Meets high energy density demands
High peak power
10% Tolerance
Ohmite Resistors
AED 74.93
AED 14.986 Each (In a Bag of 5) (ex VAT)
AED 78.68
AED 15.735 Each (In a Bag of 5) (inc. VAT)
5
AED 74.93
AED 14.986 Each (In a Bag of 5) (ex VAT)
AED 78.68
AED 15.735 Each (In a Bag of 5) (inc. VAT)
5
Stock information temporarily unavailable.
Please check again later.
quantity | Unit price | Per Bag |
---|---|---|
5 - 20 | AED 14.986 | AED 74.93 |
25 - 45 | AED 13.854 | AED 69.27 |
50 - 95 | AED 13.493 | AED 67.46 |
100 - 245 | AED 13.132 | AED 65.66 |
250+ | AED 12.772 | AED 63.86 |
Technical Document
Specifications
Brand
Arcol OhmiteResistance
33kΩ
Power Rating
2W
Tolerance
±10%
Technology
Silicone Ceramic
Series
OY
Temperature Coefficient
Minimum of -1300ppm/°C
Maximum Operating Temperature
+220°C
Minimum Operating Temperature
-40°C
Country of Origin
Japan
Product details
OY Series Ceramic Axial Resistors
Ohmite OY Series of fixed ceramic resistors are ideal for circuitry associated with surges, high peak power or high energy. They offer enhanced performance in high voltage power supplies, R-C snubber circuits, and inrush limiters. The OY resistors can often replace carbon composition resistors which can be difficult to source.
Replaces carbon composition resistors
Meets high energy density demands
High peak power
10% Tolerance