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GQ8A024320GT
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GQ8A024320GT Description
GQ8A024320GT Description
The GQ8A024320GT from TT Electronics/IRC is a high-performance 8-resistor thin-film network designed for precision applications. Housed in a 16-pin QSOP ceramic package, it features 432Ω resistance per element with a tight ±2% tolerance and ±50ppm/°C temperature coefficient, ensuring stability across a 70°C to 125°C operating range. Its isolated (ISOL) circuit design allows independent resistor operation, while the 0.1W (1/10W) power rating per resistor and 0.75W (3/4W) total power rating make it suitable for demanding environments. The gull-wing termination and surface-mount (SMD) construction facilitate reliable PCB integration.
GQ8A024320GT Features
- Ceramic Case: Enhances thermal performance and durability.
- Thin-Film Technology: Delivers low noise and high precision.
- 100V Maximum Voltage Rating: Ideal for medium-voltage circuits.
- Compact Dimensions: 4.9mm (L) × 6.02mm (D) × 1.47mm (H) with tight tolerances (±0.1mm height/length, ±0.2mm depth).
- Wide Temperature Range: Operates up to 125°C, derated for high-temperature reliability.
- QSOP Package: Space-efficient for dense PCB layouts.
- Non-Automotive (PPAP No): Optimized for industrial/commercial use.
GQ8A024320GT Applications
This resistor network excels in:
- Signal Conditioning: Precision dividers and feedback networks in analog circuits.
- Medical Electronics: Stable performance in diagnostic equipment.
- Test & Measurement: High-accuracy instrumentation requiring minimal drift.
- Telecom Infrastructure: Reliable operation in baseband and RF modules.
- Industrial Controls: Robust performance in PLCs and sensor interfaces.
Conclusion of GQ8A024320GT
The GQ8A024320GT stands out for its ceramic isolation, thin-film accuracy, and compact QSOP footprint, making it a superior choice for precision electronics. While not RoHS-compliant, its high power density and thermal resilience cater to specialized industrial applications. Engineers will value its balance of performance, size, and reliability in critical circuits.



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