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GS8A035101CT
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GS8A035101CT Description
GS8A035101CT Description
The GS8A035101CT from TT Electronics/IRC is a high-precision 8-resistor isolated network in a 16-pin narrow SOIC package, designed for demanding electronic applications. Built with thin-film technology on a ceramic substrate, it delivers exceptional stability with a ±25ppm/°C temperature coefficient and ±0.25% tolerance for precise resistance matching. The 5.1KΩ resistors are rated for 0.1W (1/10W) per element, with a total power rating of 0.8W, and operate reliably across a wide temperature range of -70°C to +125°C. Its 100V maximum voltage rating and gull-wing termination ensure robust performance in surface-mount designs.
GS8A035101CT Features
- High Precision: ±0.25% absolute tolerance and ±25ppm/°C TCR for critical signal conditioning.
- Isolated Design: Independent resistors minimize crosstalk, ideal for multi-channel systems.
- Robust Construction: Ceramic case and thin-film technology enhance thermal stability and longevity.
- Compact Footprint: 9.91mm × 5.99mm × 1.45mm SOIC package saves board space.
- Wide Operating Range: Derated power up to 125°C suits harsh environments.
- Non-Automotive: Not PPAP-capable, optimized for industrial/telecom applications.
GS8A035101CT Applications
This resistor network excels in:
- Precision Analog Circuits: Voltage dividers, feedback networks, and DAC/ADC interfaces.
- Medical Equipment: High-accuracy signal processing in diagnostic devices.
- Test & Measurement: Calibration and sensor signal conditioning.
- Industrial Controls: Isolated signal paths in PLCs and motor drives.
- Telecom Infrastructure: Line termination and impedance matching in high-frequency systems.
Conclusion of GS8A035101CT
The GS8A035101CT combines precision, isolation, and ruggedness in a compact SOIC package, making it a superior choice for applications demanding tight tolerance and thermal stability. While not automotive-grade, its ceramic construction and thin-film technology ensure reliability in industrial, medical, and telecom systems. Engineers will benefit from its low crosstalk, high power dissipation, and ease of integration in space-constrained designs.



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