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GS7B026201JFT
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GS7B026201JFT Description
GS7B026201JFT Description
The GS7B026201JFT from TT Electronics/IRC is a high-performance 14-pin narrow SOIC ceramic resistor network designed for precision applications. This bussed (BUS) configuration device integrates 13 thin-film resistors, each with a 6.2KΩ resistance and a ±5% absolute tolerance, ensuring consistent performance. The network operates within a wide temperature range of -70°C to +125°C, with a derated power capability up to 125°C, making it suitable for demanding environments. Its SOIC package (8.66mm x 5.99mm x 1.45mm) features gull-wing terminations and a 1.27mm pitch, optimized for surface-mount assembly. The ±50ppm/°C temperature coefficient and 0.05W (1/20) power rating per resistor enhance stability in precision circuits.
GS7B026201JFT Features
- Ceramic substrate for superior thermal and mechanical reliability.
- Thin-film technology delivers low noise and high accuracy (±1% ratio tolerance).
- Bussed design simplifies circuit layout in voltage-divider or pull-up/down applications.
- 100V maximum voltage rating and 0.7W total power dissipation.
- Non-automotive grade (PPAP: No) but ideal for industrial and telecom systems.
- Tube packaging for safe handling and automated placement.
- EU RoHS non-compliant, requiring careful material selection for regulated markets.
GS7B026201JFT Applications
This resistor network excels in:
- Analog signal conditioning (e.g., sensor interfaces, ADC/DAC circuits).
- Voltage division networks in power supplies and measurement equipment.
- Pull-up/down arrays for digital logic circuits (e.g., microcontrollers, FPGAs).
- Industrial control systems where temperature stability (±50ppm/°C) is critical.
- Telecommunication infrastructure due to its compact SOIC footprint and reliability.
Conclusion of GS7B026201JFT
The GS7B026201JFT stands out for its ceramic-based construction, tight tolerance (±5%), and bussed topology, offering a robust solution for precision analog and mixed-signal designs. While not suited for automotive applications, its high-temperature performance and thin-film accuracy make it a preferred choice for industrial, telecom, and test equipment. Engineers will appreciate its balance of density, power handling, and thermal stability in space-constrained, high-reliability systems.



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