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GS8A018201FBT
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GS8A018201FBT Description
GS8A018201FBT Description
The GS8A018201FBT from TT Electronics/IRC is a high-performance 8-resistor thin-film network designed for precision applications. Housed in a 16-pin SOIC ceramic package, it features 8.2KΩ resistance per resistor with a tight 1% tolerance and a low ±100ppm/°C temperature coefficient. The isolated (ISOL) circuit design ensures independent resistor functionality, while the 0.8W total power rating (0.1W per resistor) and 100V maximum voltage rating make it suitable for demanding environments. With a surface-mount gull-wing termination, it offers reliable solderability and mechanical stability. The ceramic case provides excellent thermal and electrical insulation, supporting operation from 70°C to 125°C.
GS8A018201FBT Features
- Precision Thin Film Technology: Delivers stable performance with low TCR (±100ppm/°C) and 1% tolerance.
- Robust Ceramic Package: Enhances thermal management and durability in harsh conditions.
- Isolated Resistor Network: Each of the 8 resistors operates independently, ideal for multi-channel designs.
- High Power Handling: 0.8W total dissipation (0.1W per resistor) at derated temperatures up to 125°C.
- Compact SOIC-16 Footprint: Space-efficient (9.91mm × 5.99mm × 1.45mm) with ±0.1mm length/height tolerances.
- Automotive-Grade Alternatives: While not PPAP-certified, its reliability suits industrial and telecom applications.
GS8A018201FBT Applications
This resistor network excels in:
- Signal Conditioning: Precision voltage dividers and feedback networks in analog circuits.
- Medical Equipment: Isolated measurement systems requiring stable resistance values.
- Industrial Controls: PLCs, sensor interfaces, and power management where temperature stability is critical.
- Telecom Infrastructure: RF modules and base station circuitry benefiting from low TCR.
- Test & Measurement: Calibration tools and instrumentation requiring repeatable performance.
Conclusion of GS8A018201FBT
The GS8A018201FBT stands out for its precision, isolation, and ceramic-based reliability, making it a superior choice over plastic-encapsulated networks in high-temperature or noise-sensitive designs. Its combination of thin-film accuracy, robust packaging, and flexible configuration caters to advanced electronics where consistent performance is non-negotiable. While not RoHS-compliant, its niche advantages justify its use in specialized industrial and communication systems.



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