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Y1685V0001QQ9R
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Y1685V0001QQ9R Description
Y1685V0001QQ9R Description
The Y1685V0001QQ9R from VPG Foil Resistors is a high-precision 10kΩ/10kΩ voltage divider resistor network from the VFCD1505 series, designed for demanding applications requiring ultra-tight tolerance and stability. Encased in a compact 1505 (3812 Metric) surface-mount package, this dual-resistor network features an exceptional ±0.02% tolerance and an ultra-low ±0.2ppm/°C temperature coefficient (TCR), ensuring minimal drift under thermal stress. With a resistor-ratio drift of just 0.5ppm/°C, it delivers unmatched accuracy in precision analog circuits. The 50mW power rating per element and 3-pin configuration make it ideal for space-constrained, high-reliability designs.
Y1685V0001QQ9R Features
- Ultra-High Precision: ±0.02% tolerance and ±0.02% resistor matching ratio for critical signal conditioning.
- Exceptional Stability: ±0.2ppm/°C TCR and 0.5ppm/°C ratio drift ensure long-term reliability.
- Compact SMT Design: 0.150" × 0.050" (3.81mm × 1.27mm) footprint with a low 0.025" (0.64mm) profile.
- Robust Construction: Bulk packaging and EAR99/ECCN compliance for industrial and aerospace use.
- Voltage Divider Optimized: Matched 10kΩ resistors in a 3-pin network for balanced performance.
Y1685V0001QQ9R Applications
- Precision Instrumentation: Reference voltage dividers in DACs, ADCs, and metrology equipment.
- Aerospace & Defense: Stable signal conditioning in avionics, radar, and guidance systems.
- Medical Electronics: Low-drift circuits for patient monitoring and diagnostic devices.
- Industrial Automation: High-accuracy feedback networks in PLC and process control systems.
- Test & Measurement: Calibration standards and sensor interfaces requiring ppm-level stability.
Conclusion of Y1685V0001QQ9R
The Y1685V0001QQ9R sets a benchmark for precision resistor networks, combining sub-ppm thermal drift, military-grade stability, and a miniaturized form factor. Its VFCD1505-series pedigree ensures superior performance over conventional thin-film or thick-film arrays, making it indispensable for applications where accuracy, repeatability, and thermal resilience are non-negotiable. For engineers designing next-generation high-reliability systems, this component offers a critical edge in performance and integration.



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