PR02000201003JA100

Description
PR02 Series Axial Metal Film Resistor 100kOhms +/-5% 2W +/-250ppm/degC
Resistance
100kO
Tolerance
5%
Power Rating
2W
Temperature Coefficient
250ppm/°C
Max Operating Temperature
155°C
Datasheet
Product Image
Quantity
Need this part?
Let us do the sourcing. Even if it's not available now, our team can track it down and tailor a solution just for you.
Fusion-Tested. Quality Guaranteed.
  • Resistance Value: 100kΩ
  • Power Rating: 2W
  • Tolerance: +/-5%
  • Temperature Coefficient: 250ppm/°C
  • Max Operating Temperature: 155°C
  • Voltage Rating: 500V

The Vishay PR02 Series Axial Metal Film Resistor is designed for precision applications requiring high stability and reliability. With a resistance value of 100kΩ and a power rating of 2W, this resistor is ideal for various electronic circuits. Its metal film composition ensures low noise and excellent temperature stability, making it suitable for demanding environments. The resistor features a compact conformal package and is compliant with RoHS standards, ensuring it meets modern environmental regulations.

The PR02 Series Axial Metal Film Resistor is commonly used in electronic circuits for precision resistance applications. With a resistance value of 100kOhms and a power rating of 2W, it is ideal for use in high-frequency and low-noise environments. Engineers and designers in various industries, including automotive and telecommunications, utilize this resistor for its reliability and stability across a wide temperature range.

Fusion’s in-house quality hubs and Prosemi testing facility are fully certified to meet critical industry standards for electronic component inspection and testing.

AS6081
AS9120B
ISO 9001
QMS STD 9090
Quantity
Need this part?
Let us do the sourcing. Even if it's not available now, our team can track it down and tailor a solution just for you.
Fusion-Tested. Quality Guaranteed.
See something worth saving? Create an account to track this part and get alerts on price and availability updates.
The Latest Insights
The Latest Insights