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GS4A022051GGT
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GS4A022051GGT Description
GS4A022051GGT Description
The GS4A022051GGT from TT Electronics/IRC is a high-performance 4-resistor isolated network in an 8-pin narrow SOIC package, designed for precision applications requiring stable thin-film resistance. With a 2.05 kΩ resistance value and ±2% absolute tolerance, this ceramic-based network ensures reliable signal conditioning and voltage division. Its ±50 ppm/°C temperature coefficient and 125°C maximum operating temperature make it suitable for environments with thermal fluctuations. The SOIC-C series construction features gull-wing terminations for robust surface-mount assembly, while the 100V maximum voltage rating and 0.1W power rating per resistor ensure durability in compact designs.
GS4A022051GGT Features
- Isolated Resistor Network: Four independent resistors (2.05 kΩ each) with isolated elements, eliminating crosstalk.
- High Stability: Thin-film technology and ±50 ppm/°C TCR ensure minimal drift under thermal stress.
- Precision Tolerance: ±2% absolute and ratio tolerance for balanced performance in differential circuits.
- Robust Packaging: Ceramic SOIC case (4.9mm x 5.99mm x 1.45mm) with ±0.1mm dimensional tolerances for consistent PCB fit.
- Wide Operating Range: -70°C to +125°C derated power range, ideal for industrial and automotive-adjacent applications (non-automotive certified).
GS4A022051GGT Applications
- Signal Conditioning: Precision voltage dividers in sensor interfaces and ADC/DAC circuits.
- Industrial Controls: Isolated feedback networks in power supplies and motor drives.
- Test & Measurement Equipment: Stable reference resistors for calibration systems.
- Medical Electronics: Low-noise signal paths in diagnostic devices (note: non-RoHS version).
- Aerospace & Defense: Reliable performance in avionics where thermal cycling is critical.
Conclusion of GS4A022051GGT
The GS4A022051GGT excels in precision analog circuits demanding thermal stability and isolation. Its ceramic construction, tight tolerances, and thin-film technology offer superior performance over polymer-based networks, particularly in high-temperature or vibration-prone environments. While not PPAP or automotive-qualified, it remains a cost-effective solution for industrial, medical, and instrumentation designs requiring repeatable resistance matching. Engineers should verify RoHS compliance for regulated markets.



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