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GS7B017502JGT
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GS7B017502JGT Description
GS7B017502JGT Description
The GS7B017502JGT from TT Electronics/IRC is a high-performance ceramic resistor network designed for precision applications. This 14-pin narrow SOIC device features 13 bussed resistors with a 75 kΩ resistance value and a ±5% absolute tolerance, ensuring reliable performance in demanding environments. Built with thin-film technology, it offers a ±100 ppm/°C temperature coefficient, maintaining stability across a wide operating range of -70°C to +125°C. The SOIC package (8.66 mm × 5.99 mm × 1.45 mm) with gull-wing terminations ensures easy surface-mount integration, while its 0.7 W total power rating (0.05 W per resistor) and 100 V maximum voltage rating make it suitable for robust circuit designs.
GS7B017502JGT Features
- Bussed Network Design: 13 resistors connected in a bus configuration, simplifying PCB layout.
- High Stability: ±100 ppm/°C TCR and 5% tolerance ensure consistent performance under thermal stress.
- Compact & Durable: Ceramic SOIC case with tight dimensional tolerances (±0.1 mm height, ±0.2 mm depth).
- Wide Operating Range: Functions reliably from -70°C to +125°C, even at derated power.
- Surface-Mount Ready: Gull-wing terminals with 1.27 mm pitch for automated assembly.
- Non-Automotive Grade: Ideal for industrial and commercial applications where PPAP compliance is not required.
GS7B017502JGT Applications
This resistor network excels in:
- Voltage Division Circuits: Precision dividers in test equipment or sensor interfaces.
- Signal Conditioning: Buffering and impedance matching in communication systems.
- Industrial Control Systems: Stable resistance networks for PLCs and motor drives.
- Medical Electronics: Reliable performance in diagnostic devices where thermal drift is critical.
- Power Management: Auxiliary circuits in DC/DC converters or power supplies.
Conclusion of GS7B017502JGT
The GS7B017502JGT stands out for its ceramic construction, tight tolerances, and bussed design, offering superior thermal and electrical stability compared to standard epoxy-based networks. While not RoHS-compliant, its thin-film technology and wide temperature range make it a preferred choice for precision analog circuits in harsh environments. Engineers will appreciate its balance of compactness, power handling, and reliability, particularly in industrial and instrumentation applications where consistent performance is paramount.



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