
TT Electronics/IRC
GQ8A031692FT
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GQ8A031692FT Description
GQ8A031692FT Description
The GQ8A031692FT from TT Electronics/IRC is a high-precision thin-film resistor network designed for demanding electronic applications. This 8-resistor isolated network features a 16.9KΩ resistance value per resistor with a tight 1% tolerance and a low ±25ppm/°C temperature coefficient, ensuring stable performance across a wide temperature range of 70°C to 125°C. Housed in a ceramic QSOP package, it offers a compact 4.9mm x 6.02mm footprint with a 1.47mm profile, making it ideal for space-constrained designs. The gull-wing termination and 0.64mm terminal pitch facilitate reliable surface-mount assembly, while its 100V maximum voltage rating and 0.75W total power dissipation (0.1W per resistor) ensure robust operation in high-density circuits.
GQ8A031692FT Features
- High Precision: 1% tolerance and ±25ppm/°C TCR for minimal drift in critical applications.
- Durable Construction: Ceramic case enhances thermal stability and mechanical strength.
- Space-Efficient: QSOP-16 package (4.9mm x 6.02mm x 1.47mm) optimizes PCB real estate.
- Reliable Termination: Gull-wing leads ensure secure soldering and vibration resistance.
- Wide Operating Range: -70°C to +125°C with derated power handling.
- Isolated Design: Independent resistors (ISOL circuit) for flexible circuit integration.
GQ8A031692FT Applications
This resistor network excels in precision analog and digital systems, including:
- Signal conditioning in industrial sensors and measurement equipment.
- Voltage division and impedance matching in communication devices.
- Feedback networks for op-amps and ADCs in medical instrumentation.
- Automotive electronics (non-automotive grade) where stability under thermal stress is critical.
- Embedded systems requiring compact, high-density passive components.
Conclusion of GQ8A031692FT
The GQ8A031692FT combines thin-film accuracy, ceramic reliability, and QSOP compactness for engineers prioritizing performance in constrained layouts. Its isolated design and low TCR make it superior to standard thick-film networks in precision applications, while its rugged construction ensures longevity in harsh environments. Ideal for high-frequency, low-noise circuits, this network is a versatile solution for advanced electronics.



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