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GS7B022201CCT
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GS7B022201CCT Description
GS7B022201CCT Description
The GS7B022201CCT from TT Electronics/IRC is a high-precision ceramic resistor network designed for demanding electronic applications. Housed in a 14-pin narrow SOIC package, this bussed network integrates 13 thin-film resistors, each with a 2.2KΩ resistance and an exceptional ±0.25% absolute tolerance. The device operates over a wide temperature range (-70°C to +125°C) with a ±50ppm/°C temperature coefficient, ensuring stability in harsh environments. With a 0.05W (1/20) power rating per resistor and a total power rating of 0.7W, it balances compactness with robust performance. The gull-wing termination and surface-mount design facilitate easy PCB integration, while the 100V maximum voltage rating enhances reliability in high-voltage circuits.
GS7B022201CCT Features
- Precision Tolerance: ±0.25% absolute and ratio tolerance for accurate signal conditioning.
- Stable Performance: Thin-film technology with ±50ppm/°C tempco ensures minimal drift.
- Robust Construction: Ceramic case and SOIC package offer durability and thermal resilience.
- High-Density Integration: 13 resistors in a compact 8.66mm × 5.99mm × 1.45mm footprint.
- Wide Operating Range: Derated power up to 125°C, suitable for industrial and automotive (non-PPAP) applications.
- Surface-Mount Ready: Gull-wing leads with 1.27mm pitch for automated assembly.
GS7B022201CCT Applications
- Analog Signal Processing: Precision voltage dividers in instrumentation and sensor interfaces.
- Industrial Controls: Stable resistance networks for PLCs and motor drivers.
- Telecom Infrastructure: High-reliability components in base stations and RF modules.
- Medical Electronics: Critical circuits where tolerance and thermal stability are paramount.
- Power Management: Auxiliary circuits in DC-DC converters and power supplies.
Conclusion of GS7B022201CCT
The GS7B022201CCT excels in applications requiring tight tolerance, thermal stability, and compact integration. Its ceramic construction, thin-film technology, and bussed design make it a superior choice over standard thick-film networks, particularly in precision analog and high-temperature environments. While not PPAP-certified for automotive use, it remains ideal for industrial, medical, and telecom systems where reliability and performance are critical. Engineers will appreciate its balance of precision, power handling, and space-saving form factor.



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