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GS8A034752FBT
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GS8A034752FBT Description
GS8A034752FBT Description
The GS8A034752FBT from TT Electronics/IRC is a high-performance ceramic resistor network designed for precision applications. This 16-pin narrow SOIC device features 8 isolated thin-film resistors, each with a 47.5KΩ resistance and a tight ±1% absolute tolerance. The ±25ppm/°C temperature coefficient ensures stability across a wide operating range (70°C to 125°C), while the 100V maximum voltage rating and 0.1W power rating per resistor (0.8W total) make it suitable for demanding environments. Encased in a rectangular SOIC package with gull-wing terminations, it offers excellent mechanical and thermal reliability.
GS8A034752FBT Features
- Isolated Resistor Network: 8 independent resistors with ±0.1% ratio tolerance for precision signal conditioning.
- Robust Construction: Ceramic substrate and thin-film technology ensure low noise and high durability.
- Stable Performance: ±25ppm/°C TCR and 1% tolerance for consistent operation in varying temperatures.
- Compact Design: 9.91mm × 5.99mm × 1.45mm dimensions with 1.27mm terminal pitch, ideal for space-constrained PCBs.
- Surface-Mount Ready: Gull-wing terminations simplify automated assembly processes.
GS8A034752FBT Applications
This resistor network excels in:
- Precision Analog Circuits: Voltage dividers, feedback networks, and sensor interfaces requiring tight tolerance.
- Industrial Electronics: PLCs, motor controls, and instrumentation where thermal stability is critical.
- Medical Devices: Low-noise signal paths in diagnostic equipment.
- Automotive (Non-Automotive Compliant): Prototyping or non-safety-critical systems needing reliable resistance matching.
Conclusion of GS8A034752FBT
The GS8A034752FBT stands out for its precision, thermal stability, and compact form factor, making it a superior choice for high-accuracy applications. While not PPAP or automotive-qualified, its ceramic construction and isolated design ensure reliability in industrial, medical, and test equipment. Engineers seeking a low-drift, high-tolerance resistor network will find this model ideal for critical signal-path applications.



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