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GS8B029761GFT
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GS8B029761GFT Description
GS8B029761GFT Description
The GS8B029761GFT from TT Electronics/IRC is a high-precision ceramic resistor network designed for surface-mount applications in demanding electronic circuits. Part of the SOIC-C Series, this 16-pin narrow SOIC package integrates 15 bussed resistors with a 9.76KΩ resistance value and a tight ±2% absolute tolerance. Its thin-film technology ensures excellent stability, with a low ±50ppm/°C temperature coefficient, making it ideal for environments with operating temperatures ranging from 70°C to 125°C. The 0.05W (1/20) power rating per resistor and 0.8W total power rating provide reliable performance in compact designs.
GS8B029761GFT Features
- Ceramic case for enhanced thermal and mechanical durability.
- Bussed network (BUS) simplifies circuit design by interconnecting resistors.
- Gull-wing termination ensures secure surface-mount (SMD) compatibility.
- High voltage rating (100V) and low ratio tolerance (±1%) for precision applications.
- Compact dimensions (9.91mm x 5.99mm x 1.45mm) with tight tolerances (±0.1mm length/height, ±0.2mm depth).
- Non-automotive (PPAP: No) and non-RoHS compliant, suited for industrial use.
GS8B029761GFT Applications
This resistor network excels in:
- Analog signal conditioning and voltage division in measurement equipment.
- Bus termination for digital communication interfaces (e.g., SPI, I2C).
- Precision instrumentation requiring stable resistance ratios.
- Power management circuits where thermal stability is critical.
- Industrial control systems benefiting from its high-temperature resilience.
Conclusion of GS8B029761GFT
The GS8B029761GFT stands out for its robust ceramic construction, precision thin-film resistors, and compact SOIC footprint. While not suited for automotive use, its high voltage tolerance, low TCR, and bussed design make it a top choice for industrial and precision electronics. Engineers will appreciate its reliability in thermally challenging environments and its ability to simplify PCB layouts with integrated resistor networks.



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