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GS8A011072GGT
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GS8A011072GGT Description
GS8A011072GGT Description
The GS8A011072GGT from TT Electronics/IRC is a high-performance thin-film resistor network designed for precision applications. This 8-resistor isolated network features a 10.7KΩ resistance per resistor with a tight 2% tolerance and a low ±100ppm/°C temperature coefficient, ensuring stable performance across a wide operating temperature range of -70°C to +125°C. Housed in a 16-pin SOIC ceramic package, it offers excellent thermal stability and durability, making it ideal for demanding environments. The 0.8W total power rating (0.1W per resistor) and 100V maximum voltage rating provide robust performance in compact designs.
GS8A011072GGT Features
- Isolated Resistor Network (ISOL): Ensures independent resistor performance, reducing crosstalk.
- Ceramic SOIC Package: Enhances thermal management and mechanical strength.
- Thin-Film Technology: Delivers high precision, low noise, and superior stability.
- Gull Wing Termination: Facilitates reliable surface-mount (SMD) assembly with a 1.27mm terminal pitch.
- Wide Temperature Range: Operates reliably from -70°C to +125°C, with derated power up to 125°C.
- Non-Automotive, Non-PPAP: Suitable for industrial and commercial applications.
GS8A011072GGT Applications
This resistor network excels in:
- Precision Analog Circuits: Signal conditioning, voltage dividers, and feedback networks.
- Test & Measurement Equipment: High-accuracy instrumentation requiring stable resistance values.
- Medical Electronics: Isolated signal paths in diagnostic devices.
- Industrial Control Systems: Robust performance in harsh environments.
- Telecommunications: RF and filtering circuits where low TCR is critical.
Conclusion of GS8A011072GGT
The GS8A011072GGT stands out for its precision, reliability, and ceramic-based isolation, making it a superior choice for applications demanding tight tolerances and thermal stability. While not RoHS-compliant, its thin-film construction and rugged package ensure longevity in industrial and commercial systems. Engineers will appreciate its balanced performance in space-constrained, high-reliability designs.



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