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GS7B037501DBT
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GS7B037501DBT Description
GS7B037501DBT Description
The GS7B037501DBT from TT Electronics/IRC is a high-precision ceramic resistor network designed for demanding electronic applications. Housed in a 14-pin narrow SOIC package, it features 13 bussed resistors with a 7.5KΩ resistance value and an absolute tolerance of ±0.5%, ensuring exceptional accuracy. The thin-film technology and ±25ppm/°C temperature coefficient provide stable performance across a wide temperature range (70°C to 125°C). With a power rating of 0.7W (0.05W per resistor) and a maximum voltage rating of 100V, this component is engineered for reliability in precision circuits. Its gull-wing termination and surface-mount design facilitate easy integration into compact PCB layouts.
GS7B037501DBT Features
- High Precision: ±0.5% absolute tolerance and ±0.1% ratio tolerance for critical applications.
- Robust Construction: Ceramic case and thin-film technology ensure durability and thermal stability.
- Wide Operating Range: Functions reliably from 70°C to 125°C with derated power.
- Compact Design: SOIC package (8.66mm × 5.99mm × 1.45mm) with tight tolerances (±0.1mm height/length, ±0.2mm depth).
- Low TCR: ±25ppm/°C minimizes resistance drift under temperature fluctuations.
- Automotive-Grade Alternatives: While not PPAP or automotive-qualified, its performance suits industrial and instrumentation use.
GS7B037501DBT Applications
Ideal for precision analog circuits, voltage dividers, and sensor signal conditioning, this resistor network excels in:
- Test & Measurement Equipment: High accuracy ensures repeatable results.
- Medical Devices: Stable performance in critical diagnostics.
- Industrial Control Systems: Reliable operation in harsh environments.
- Communication Hardware: Low TCR maintains signal integrity.
Conclusion of GS7B037501DBT
The GS7B037501DBT combines precision, compactness, and thermal resilience, making it a superior choice for applications demanding tight tolerance and stability. While not RoHS-compliant or automotive-rated, its ceramic construction and thin-film technology offer distinct advantages over polymer-based networks. Engineers will value its consistent performance in high-accuracy systems, particularly where space and reliability are paramount.



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