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GS7B012320FFT
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GS7B012320FFT Description
GS7B012320FFT Description
The GS7B012320FFT from TT Electronics/IRC is a high-performance ceramic resistor network designed for precision applications in demanding electronic circuits. This 14-pin Narrow SOIC device features 13 bussed resistors with a 232Ω resistance value, offering ±1% absolute tolerance and ±1% ratio tolerance. Built with thin-film technology, it ensures stable performance across a wide temperature range (70°C to 125°C) and delivers a power rating of 0.7W (0.05W per resistor). The SOIC package with gull-wing termination facilitates easy surface-mount assembly, while its ceramic construction enhances durability and thermal stability.
GS7B012320FFT Features
- High Precision: ±1% tolerance for both absolute and ratio values, ensuring consistent performance.
- Robust Construction: Ceramic case with thin-film resistors for low TCR (±100ppm/°C) and high reliability.
- Compact Design: 8.66mm x 5.99mm footprint with a 1.45mm profile, ideal for space-constrained PCBs.
- Wide Voltage Range: Supports up to 100V, suitable for industrial and automotive applications.
- Thermal Performance: Operates reliably up to 125°C with derated power handling.
- Bussed Configuration: Simplifies circuit design by connecting multiple resistors in a single network.
GS7B012320FFT Applications
This resistor network excels in:
- Analog Signal Conditioning: Precision voltage dividers and sensor interfaces.
- Industrial Controls: PLCs, motor drivers, and power management systems requiring stable resistance.
- Automotive Electronics: Engine control units (ECUs) and infotainment systems (though not PPAP-certified).
- Test & Measurement Equipment: Calibration circuits and reference networks.
- Medical Devices: High-accuracy instrumentation where thermal drift is critical.
Conclusion of GS7B012320FFT
The GS7B012320FFT stands out for its precision, compactness, and thermal resilience, making it a superior choice for engineers needing high-density, reliable resistor networks. Its ceramic thin-film design ensures long-term stability, while the bussed architecture reduces component count in complex circuits. Though not automotive-grade or RoHS-compliant, it remains ideal for industrial, medical, and instrumentation applications where accuracy and durability are paramount.



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