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GS8B032550GGT
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GS8B032550GGT Description
GS8B032550GGT Description
The GS8B032550GGT from TT Electronics/IRC is a high-performance ceramic resistor network designed for precision applications. Packaged in a 16-pin narrow SOIC (SOIC-C series), it integrates 15 bussed resistors with a 255Ω resistance value and a tight ±2% absolute tolerance. The thin-film technology ensures low temperature coefficient (±25ppm/°C) and stable performance across a wide temperature range (70°C to 125°C). With a 0.8W total power rating (0.05W per resistor) and 100V maximum voltage rating, this network is engineered for reliability in demanding circuits. Its gull-wing termination and surface-mount design facilitate easy PCB integration, while the ceramic case enhances thermal and mechanical durability.
GS8B032550GGT Features
- Precision Network: 15 bussed resistors with ±2% tolerance and ±25ppm/°C stability.
- Robust Construction: Ceramic SOIC package ensures high thermal conductivity and mechanical strength.
- Space-Efficient: Compact 9.91mm × 5.99mm × 1.45mm footprint with 1.27mm terminal pitch.
- High Power Handling: 0.8W total dissipation (0.05W per element) at 125°C maximum temperature.
- Wide Voltage Range: Supports up to 100V, ideal for industrial and automotive-grade designs.
- Stable Performance: Thin-film technology minimizes resistance drift over temperature and time.
GS8B032550GGT Applications
This resistor network excels in:
- Voltage Division Circuits: Precision bussed design simplifies signal conditioning.
- Industrial Control Systems: High-temperature tolerance suits harsh environments.
- Automotive Electronics: Robust ceramic package resists vibration and thermal cycling (though not PPAP-certified).
- Test & Measurement Equipment: Low TCR ensures accuracy in calibrated instruments.
- Power Management: Efficient dissipation in compact power supply feedback networks.
Conclusion of GS8B032550GGT
The GS8B032550GGT stands out for its precision, durability, and space-saving design, making it a superior choice for high-reliability applications. Its ceramic construction, tight tolerances, and stable TCR outperform standard epoxy-based networks, particularly in thermal-critical or high-voltage scenarios. While not automotive-qualified, it remains ideal for industrial, telecom, and instrumentation designs demanding long-term stability. Engineers will appreciate its balance of performance, size, and cost in complex circuit architectures.



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