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GS8B031102CT
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GS8B031102CT Description
GS8B031102CT Description
The GS8B031102CT from TT Electronics/IRC is a high-precision ceramic resistor network designed for demanding applications requiring tight tolerance and stability. Housed in a 16-pin narrow SOIC package, it features 15 bussed resistors with a 11kΩ resistance value and an exceptional ±0.25% absolute tolerance. Built with thin-film technology, this network offers a low ±25ppm/°C temperature coefficient, ensuring reliable performance across a wide temperature range (70°C to 125°C). The SOIC-C series construction provides a compact footprint (9.91mm × 5.99mm × 1.45mm) with gull-wing terminations for easy surface-mount assembly. Rated for 100V maximum voltage and 0.8W total power dissipation, it is ideal for precision analog and digital circuits.
GS8B031102CT Features
- High Precision: ±0.25% tolerance and ±25ppm/°C TCR for stable performance.
- Robust Construction: Ceramic case ensures durability and thermal stability.
- Space-Efficient: 16-pin SOIC package (9.91mm × 5.99mm) optimizes PCB real estate.
- Bussed Network: 15 resistors with a common bus simplify circuit design.
- Wide Operating Range: Derated power up to 125°C, suitable for industrial environments.
- Thin-Film Technology: Delivers low noise and high accuracy.
- Surface-Mount Ready: Gull-wing terminations (1.27mm pitch) for automated assembly.
GS8B031102CT Applications
This resistor network excels in precision applications such as:
- Voltage Dividers & Sensor Interfaces: High tolerance ensures accurate signal conditioning.
- Medical & Test Equipment: Stable performance under thermal stress.
- Industrial Control Systems: Reliable operation in harsh environments.
- Communication Devices: Low TCR minimizes drift in RF and analog circuits.
- Automotive Electronics (non-Automotive PPAP): Suitable for non-safety-critical modules.
Conclusion of GS8B031102CT
The GS8B031102CT stands out for its precision, compactness, and thermal resilience, making it a superior choice for engineers designing high-reliability systems. Its thin-film ceramic construction and tight electrical specs outperform generic networks, particularly in signal chain and power management applications. While not PPAP-capable, it remains a cost-effective solution for industrial, medical, and communication hardware where accuracy and longevity are critical.



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