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SLD1Y5K000BA Description
SLD1Y5K000BA Description
The SLD1Y5K000BA from VPG Foil Resistors is a high-precision 5kΩ resistor network designed for voltage divider applications requiring ultra-low TCR (Temperature Coefficient of Resistance) matching (±2.5ppm/°C) and exceptional stability. Part of the SLD series, this through-hole-mounted network features two matched resistors with a ±0.05% ratio tolerance and ±0.1% absolute tolerance, ensuring minimal deviation in critical circuits. Its compact 7.50mm x 2.20mm footprint and 8.00mm height make it suitable for space-constrained designs.
SLD1Y5K000BA Features
- Ultra-Precision Matching: ±0.05% resistor ratio tolerance and ±0.1% absolute tolerance for unmatched accuracy.
- Low TCR Drift: ±2.5ppm/°C TCR and ±3ppm/°C resistor-ratio-drift ensure stability across temperature fluctuations.
- Robust Construction: Through-hole mounting with MSL Not Applicable rating, ideal for harsh environments.
- Voltage Divider Optimized: TCR-matched resistors minimize thermal errors in divider applications.
- High Reliability: Bulk packaging and EAR99/ECCN compliance for industrial and aerospace use.
SLD1Y5K000BA Applications
- Precision Voltage Dividers: Ideal for reference voltage generation in DACs, ADCs, and sensor interfaces.
- Test & Measurement Equipment: Ensures accuracy in calibration instruments and data acquisition systems.
- Aerospace & Defense: Stable performance in avionics, radar, and satellite systems with extreme thermal demands.
- Medical Electronics: Critical for patient monitoring and diagnostic devices requiring long-term drift immunity.
Conclusion of SLD1Y5K000BA
The SLD1Y5K000BA sets a benchmark for precision resistor networks, combining low TCR, tight ratio matching, and rugged construction for mission-critical applications. Its 5ppm-level stability and voltage-divider-optimized design make it superior to generic resistor arrays, particularly in high-accuracy analog circuits. Engineers in aerospace, medical, and instrumentation fields will benefit from its reliability and performance consistency.



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