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SLD2Y2K400/200R0BB
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SLD2Y2K400/200R0BB Description
SLD2Y2K400/200R0BB Description
The SLD2Y2K400/200R0BB from VPG Foil Resistors is a high-precision 2-resistor network designed for voltage divider applications with TCR-matched performance. This through-hole component features resistances of 200Ω and 2.4kΩ with an ultra-tight tolerance of ±0.1% and an exceptional temperature coefficient (TCR) of ±2.5ppm/°C, ensuring stability across varying thermal conditions. Its compact 7.50mm x 2.20mm footprint and 8.00mm max height make it suitable for space-constrained designs. The ±0.1% resistor matching ratio and ±3ppm/°C ratio drift further enhance its precision in critical circuits.
SLD2Y2K400/200R0BB Features
- Ultra-High Precision: ±0.1% tolerance and ±2.5ppm/°C TCR for unmatched accuracy.
- TCR-Matched Resistors: Ensures minimal drift in voltage divider configurations.
- Robust Construction: Through-hole mounting with MSL Not Applicable, ideal for harsh environments.
- Low Ratio Drift: ±3ppm/°C maintains divider accuracy over temperature fluctuations.
- Compact Design: 0.295" x 0.087" size balances performance and space efficiency.
- Wide Resistance Range: Dual resistors (200Ω and 2.4kΩ) support flexible circuit design.
SLD2Y2K400/200R0BB Applications
This resistor network excels in precision analog circuits, including:
- Reference voltage dividers in data acquisition systems.
- Sensor signal conditioning for medical or industrial equipment.
- Calibration circuits requiring long-term stability.
- High-end test & measurement instruments where TCR matching is critical.
Its low noise and drift make it ideal for aerospace, automotive, and telecom applications demanding reliability under thermal stress.
Conclusion of SLD2Y2K400/200R0BB
The SLD2Y2K400/200R0BB stands out for its exceptional precision, thermal stability, and compact form factor, outperforming standard resistor networks in TCR-sensitive designs. Its VPG Foil Resistors pedigree ensures reliability for mission-critical applications, making it a top choice for engineers prioritizing accuracy and durability.



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