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GQ0A039532DAT
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GQ0A039532DAT Description
GQ0A039532DAT Description
The GQ0A039532DAT from TT Electronics/IRC is a high-precision thin-film resistor network designed for demanding electronic applications. This 20-pin QSOP package features 10 isolated resistors, each with a 95.3KΩ resistance, 0.5% tolerance, and a ±25ppm/°C temperature coefficient, ensuring exceptional stability and accuracy. The ceramic case style and gull-wing termination make it ideal for surface-mount (SMD) applications, while its 1W total power rating (0.1W per resistor) supports robust performance in compact designs. With a maximum operating temperature of 125°C and 100V voltage rating, this component excels in environments requiring reliability under thermal and electrical stress.
GQ0A039532DAT Features
- Precision Thin Film Technology: Delivers ±25ppm/°C thermal stability and 0.5% tolerance for critical analog circuits.
- Isolated Resistor Network: 10 independent resistors (95.3KΩ each) with 100V maximum rating, suitable for signal isolation.
- Robust Ceramic Package: QSOP-20 form factor (8.66mm × 6.02mm × 1.47mm) with ±0.1mm dimensional tolerances for consistent PCB mounting.
- High-Temperature Operation: Rated for 125°C with derated performance up to 70–125°C, ideal for industrial and automotive-adjacent applications (though not PPAP/automotive-certified).
- Gull-Wing Termination: Ensures reliable surface-mount soldering with 0.64mm pitch for high-density layouts.
GQ0A039532DAT Applications
This resistor network is optimized for:
- Signal Conditioning: Precision voltage dividers, feedback networks, and ADC/DAC interfaces in test equipment.
- Medical Electronics: Isolated measurement circuits where low drift and accuracy are critical.
- Industrial Controls: PLCs, sensor interfaces, and power management systems requiring thermal resilience.
- Communications: RF and analog signal processing in base stations or networking hardware.
Conclusion of GQ0A039532DAT
The GQ0A039532DAT combines high precision, thermal stability, and compact SMD design, making it a superior choice for engineers prioritizing accuracy in space-constrained, high-temperature environments. Its ceramic construction and isolated resistor array offer distinct advantages over polymer-based networks, particularly in applications demanding long-term reliability. While not automotive-grade, its performance aligns with industrial, medical, and telecom needs where component-level precision is non-negotiable.



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