ERJ3EKF1002V Panasonic
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ManufacturerPanasonic
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Mfg Part NumberERJ3EKF1002V
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In StockNo Quantity Available
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Lifecycle StatusActive
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Description
We pick, pack, and dispatch all orders within 24-48 hours from order confirmation. Some parts may require additional testing to ensure the highest degree of quality.
| Rated Temperature: | 70 Cel |
| Terminal Finish: | MATTE TIN OVER NICKEL |
| No. of Terminals: | 2 |
| Package Style (Meter): | SMT |
| Length (Package): | 1.6 mm |
| Technology: | METAL GLAZE/THICK FILM |
| Operating Voltage: | 75 V |
| Maximum Operating Temperature: | 155 Cel |
| Resistor Type: | FIXED RESISTOR |
| Shape (Package): | RECTANGULAR PACKAGE |
| Height (Package): | .45 mm |
| Other Names: | P10.0KHCT-NDR<br>Q6795038Z<br>P10.0KHTR<br>P10.0KHDKR-NDR<br>ERJ3EKF1002<br>P10.0KHCT<br>P10.0KHDKR<br>ERJ-3EKF1002<br>ERJ3EKF1002V<br>P10.0KHTR-NDR |
| Construction: | Rectangular |
| Packing Method: | TR, PUNCHED, 7 INCH |
| Tolerance: | 1 % |
| Width (Package): | .8 mm |
| Size Code: | 0603 |
| Mounting Type: | SURFACE MOUNT |
| JESD-609 Code: | e3 |
| Minimum Operating Temperature: | -55 Cel |
| Resistance: | 10000 ohm |
| Temperature Coef (ppm/Cel): | 100 |
| Rated Power Dissipation (P): | .1 W |
| Terminal Shape: | WRAPAROUND |
| Additional Features: | PRECISION, STANDARD: IEC60115-8 |
| Reference Standard: | AEC-Q200 |
Rated Temperature: 70 °C
Suitable for operating in moderate temperature environments, ensuring reliable performance.
Technology: METAL GLAZE/THICK FILM
Utilizing advanced technology for better stability and accuracy in resistance values.
Resistance: 10000 ohm
Provides a specific resistance value which is commonly used in various electronic circuits.
Maximum Operating Temperature: 155 °C
Capable of withstanding high temperature conditions, making it versatile for different applications.
Minimum Operating Temperature: -55 °C
Capable of operating in low temperature conditions, ensuring functionality in diverse environments.
Tolerance: 1 %
Offers high precision in resistance values, allowing for accurate performance in electronic devices.