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GS8A013601JFT
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GS8A013601JFT Description
GS8A013601JFT Description
The GS8A013601JFT from TT Electronics/IRC is a high-performance thin-film resistor network designed for precision applications requiring stable resistance and isolation. This 8-resistor network features a 3.6K Ohm resistance per element with a 5% tolerance and a ±100ppm/°C temperature coefficient, ensuring reliable performance across a wide temperature range (70°C to 125°C). Housed in a 16-pin SOIC ceramic package, it offers 0.1W power dissipation per resistor (0.8W total) and a 100V maximum voltage rating. Its gull-wing termination and surface-mount design make it ideal for automated assembly.
GS8A013601JFT Features
- Isolated Resistor Network (ISOL): Ensures minimal crosstalk between resistors, critical for signal integrity.
- Ceramic Case & Thin-Film Technology: Delivers superior thermal stability and low noise compared to thick-film alternatives.
- High Power Density: 0.8W total power rating in a compact 9.91mm × 5.99mm × 1.45mm footprint.
- Wide Operating Range: Rated for -55°C to +125°C, suitable for industrial and harsh environments.
- Precision Gull-Wing Terminals: 1.27mm pitch ensures compatibility with standard SOIC layouts.
- Non-Automotive (PPAP No): Optimized for general-purpose and industrial electronics.
GS8A013601JFT Applications
- Signal Conditioning Circuits: Isolation and impedance matching in analog/digital interfaces.
- Voltage Dividers & Pull-Up Networks: Used in microcontroller and FPGA designs.
- Medical & Test Equipment: High stability and low drift are critical for measurement accuracy.
- Power Supply Feedback Networks: Reliable performance in DC-DC converters and LDO regulators.
- Industrial Control Systems: Robust ceramic construction withstands vibration and thermal cycling.
Conclusion of GS8A013601JFT
The GS8A013601JFT stands out for its ceramic isolation, thin-film precision, and compact power handling, making it a top choice for engineers needing reliable resistor networks in space-constrained, high-stability applications. While not RoHS-compliant, its performance in harsh conditions and compatibility with standard SOIC processes ensure broad usability across industrial, medical, and instrumentation designs. For designs demanding low tolerance, high isolation, and thermal resilience, this model offers a compelling balance of cost and performance.



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