
VPG Foil
Y0006V0281AA12L
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Y0006V0281AA12L Description
Y0006V0281AA12L Description
The Y0006V0281AA12L from VPG Foil Resistors is a high-precision 2-resistor voltage divider network designed for applications demanding ultra-low TCR (Temperature Coefficient of Resistance) and exceptional ratio stability. Part of the 300144 series, this through-hole component features 2.525kΩ and 5.05kΩ resistances with a ±0.05% tolerance and ±2ppm/°C TCR, ensuring minimal drift over temperature variations. Its ±0.5ppm/°C resistor-ratio drift makes it ideal for precision analog circuits where ratio accuracy is critical. The device is housed in a compact 7.49mm x 2.54mm (0.295" x 0.100") package with a 8.13mm (0.320") height, suitable for space-constrained designs.
Y0006V0281AA12L Features
- Ultra-High Precision: ±0.05% tolerance and ±0.05% resistor matching ratio for unmatched accuracy.
- Low TCR: ±2ppm/°C ensures stability across extreme temperature ranges.
- Exceptional Ratio Stability: ±0.5ppm/°C drift guarantees long-term reliability in divider applications.
- Robust Construction: Through-hole mounting with a 100mW power rating per element.
- No MSL Concerns: Not moisture-sensitive, simplifying storage and handling.
- TCR-Matched Design: Optimized for voltage divider configurations, reducing thermal-induced errors.
Y0006V0281AA12L Applications
This resistor network excels in precision instrumentation, medical devices, aerospace systems, and high-end test equipment where voltage division accuracy is paramount. Key use cases include:
- Reference voltage dividers in DAC/ADC circuits.
- Sensor signal conditioning requiring minimal drift.
- Calibration equipment demanding sub-ppm-level stability.
- Aerospace and defense electronics where environmental resilience is critical.
Conclusion of Y0006V0281AA12L
The Y0006V0281AA12L stands out as a top-tier solution for precision voltage division, combining VPG Foil’s proprietary bulk metal foil technology with rigorous performance specs. Its low TCR, tight tolerance, and unmatched ratio stability make it superior to conventional thin-film or thick-film networks. For engineers designing mission-critical analog systems, this component delivers repeatable accuracy and long-term reliability, ensuring optimal performance in the most demanding environments.



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