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GUS-QS8B-01-3480-JF
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GUS-QS8B-01-3480-JF Description
GUS-QS8B-01-3480-JF Description
The GUS-QS8B-01-3480-JF from TT Electronics/IRC is a high-performance thin-film resistor network designed for precision surface-mount applications. This 16-pin QSOP package integrates 15 resistors, each with a 348Ω resistance value and a 5% tolerance, delivering a total power rating of 0.75W (3/4W). The device operates within a wide temperature range of 70°C to 125°C, with a maximum operating temperature of 125°C, ensuring reliability in demanding environments. Its thin-film technology provides excellent stability, with a low temperature coefficient of ±100ppm/°C, making it ideal for applications requiring tight resistance matching and minimal drift.
GUS-QS8B-01-3480-JF Features
- Compact & Robust Design: Measures 4.9mm (L) x 6.02mm (D) x 1.47mm (H) with tight tolerances (±0.1mm height/length, ±0.2mm depth), suitable for high-density PCB layouts.
- High Power Handling: 0.05W per resistor (15 resistors) with a 100V maximum voltage rating, ensuring durability in power-sensitive circuits.
- Precision Thin Film: Offers superior ±100ppm/°C TCR and 5% tolerance for stable performance in analog/digital systems.
- Gull Wing Termination: Facilitates reliable surface-mount (SMD) assembly with a 0.64mm terminal pitch for automated placement.
- Non-Automotive, Non-PPAP: Optimized for industrial, telecom, and instrumentation use.
GUS-QS8B-01-3480-JF Applications
- Voltage Divider Networks: Precision signal conditioning in data acquisition systems.
- Impedance Matching: High-frequency RF and communication circuits.
- ADC/DAC Interfaces: Stable reference resistors for analog-to-digital converters.
- Medical & Test Equipment: Low-drift performance in sensitive measurement devices.
- Power Supply Feedback: Reliable current sensing in DC-DC converters.
Conclusion of GUS-QS8B-01-3480-JF
The GUS-QS8B-01-3480-JF excels in space-constrained, high-reliability applications due to its thin-film precision, compact QSOP package, and robust power handling. While not RoHS-compliant, its thermal stability and tight tolerances make it a preferred choice for industrial and telecom designs requiring consistent performance under thermal stress. Engineers benefit from its balanced trade-off between power dissipation, size, and accuracy, outperforming thicker-film alternatives in critical circuits.



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