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Y5076V0780DD9L Description
Y5076V0780DD9L Description
The Y5076V0780DD9L is a high-precision 2-resistor voltage divider network from VPG Foil Resistors' VHD200 series, designed for applications requiring ultra-stable TCR-matched performance. It features a 2kΩ/17kΩ resistance pair with an exceptional ±0.5% tolerance and ±2ppm/°C temperature coefficient, ensuring minimal drift under varying thermal conditions. Encased in a through-hole package with dimensions of 11.05mm x 4.70mm, this component is engineered for reliability in demanding environments. Its ±0.1ppm/°C resistor-ratio drift and ±0.5% matching ratio make it ideal for precision analog circuits where signal integrity is critical.
Y5076V0780DD9L Features
- Ultra-Precision Matching: TCR-matched resistors with ±0.5% ratio tolerance for consistent voltage division.
- Low Drift: ±0.1ppm/°C ratio drift ensures long-term stability in temperature-sensitive applications.
- High Power Handling: 100mW per element accommodates robust circuit designs.
- Through-Hole Mounting: Secure mechanical attachment for industrial and instrumentation use.
- Wide Operating Range: Suitable for -55°C to +125°C environments, compliant with EAR99 and HTSUS 8533.21.0050.
Y5076V0780DD9L Applications
This resistor network excels in:
- Precision Voltage References: Critical for ADC/DAC circuits and sensor signal conditioning.
- Medical Instrumentation: High-accuracy dividers for diagnostic equipment.
- Aerospace & Defense: Stable performance in avionics and radar systems.
- Test & Measurement: Calibration tools requiring minimal drift over time.
Conclusion of Y5076V0780DD9L
The Y5076V0780DD9L stands out for its unmatched stability, precision, and durability, making it a top choice for engineers designing high-reliability systems. Its VHD200 series pedigree ensures compliance with stringent performance standards, while its through-hole design simplifies integration. For applications demanding sub-ppm drift and tight TCR matching, this component delivers superior performance over conventional resistor networks.



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