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GS8B037321DT
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GS8B037321DT Description
GS8B037321DT Description
The GS8B037321DT from TT Electronics/IRC is a high-precision ceramic resistor network designed for demanding surface-mount applications. This 16-pin narrow SOIC device integrates 15 bussed resistors with a 7.32KΩ resistance value and an exceptional ±0.5% absolute tolerance. Built using thin-film technology, it delivers stable performance across a wide temperature range (70°C to 125°C) with a low temperature coefficient of ±25ppm/°C. The SOIC-C series package features a compact 9.91mm × 5.99mm × 1.45mm footprint, making it ideal for space-constrained designs. With a 0.05W (1/20) power rating per resistor and a 100V maximum voltage rating, it balances precision and durability.
GS8B037321DT Features
- High Precision: ±0.5% tolerance and ±25ppm/°C TCR ensure minimal drift.
- Robust Construction: Ceramic substrate and gull-wing termination enhance reliability.
- Space-Efficient: Narrow SOIC (SOIC-C) package optimizes PCB real estate.
- Bussed Configuration: Simplifies circuit design with shared connections.
- Wide Operating Range: Rated for 125°C maximum temperature and derated up to 70°C.
- Surface-Mount Ready: Compatible with automated assembly processes.
GS8B037321DT Applications
This resistor network excels in precision analog and digital circuits, including:
- Voltage dividers and signal conditioning in industrial sensors.
- Feedback networks for op-amps and ADCs in test equipment.
- Impedance matching in communication systems.
- Power management circuits requiring stable resistance under thermal stress.
Its non-automotive (PPAP: No) and non-RoHS status may suit legacy or specialized industrial systems.
Conclusion of GS8B037321DT
The GS8B037321DT stands out for its tight tolerance, low TCR, and compact SOIC-C package, offering engineers a reliable solution for high-precision applications. While not suited for automotive use, its ceramic thin-film construction and bussed design make it a top choice for industrial, telecom, and instrumentation designs where accuracy and space efficiency are critical.



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