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GQCB014702BAT
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GQCB014702BAT Description
GQCB014702BAT Description
The GQCB014702BAT from TT Electronics/IRC is a high-precision thin-film resistor network designed for demanding applications requiring tight tolerance and stable performance. This 24-pin QSOP (Quarter Small Outline Package) device integrates 23 resistors with a 47K Ohm resistance value, offering 0.1% tolerance and a ±100ppm/°C temperature coefficient. Encased in a ceramic package, it ensures excellent thermal stability and durability, with a maximum operating temperature of 125°C. The 1W total power rating (0.05W per resistor) and 100V maximum voltage rating make it suitable for precision analog and digital circuits.
GQCB014702BAT Features
- High Precision: 0.1% tolerance and ±100ppm/°C TCR ensure minimal drift in critical applications.
- Robust Construction: Ceramic case provides superior thermal and mechanical stability.
- Space-Efficient Design: QSOP package (8.66mm x 6.02mm x 1.47mm) with gull-wing terminations enables high-density PCB layouts.
- Reliable Performance: Thin-film technology delivers low noise and high accuracy over a 70°C to 125°C derated power range.
- Automated Assembly Friendly: Surface-mount (SMD) design with 0.64mm terminal pitch simplifies manufacturing.
GQCB014702BAT Applications
This resistor network is ideal for:
- Precision voltage dividers in test & measurement equipment.
- Signal conditioning circuits in industrial automation and instrumentation.
- Feedback networks for high-accuracy op-amps and ADCs/DACs.
- Medical devices requiring stable, low-drift resistance values.
- Aerospace and defense systems where reliability under thermal stress is critical.
Conclusion of GQCB014702BAT
The GQCB014702BAT stands out for its exceptional precision, compact form factor, and robust ceramic construction, making it a superior choice for high-reliability applications. While not PPAP or automotive-qualified, its thin-film technology and tight tolerances cater to industries demanding uncompromising performance. Engineers will appreciate its balance of power handling, thermal stability, and space-saving design, particularly in precision analog and mixed-signal systems.



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