
TT Electronics/IRC
GS8A035360GGT
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GS8A035360GGT Description
GS8A035360GGT Description
The GS8A035360GGT 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 536Ω resistance and a tight ±2% absolute tolerance (with ±2% ratio tolerance). Its ±25ppm/°C temperature coefficient ensures stability across a wide operating range of -70°C to +125°C, making it suitable for demanding environments. The SOIC package (9.91mm × 5.99mm × 1.45mm) with gull-wing terminations enables reliable surface-mount assembly, while the ceramic case enhances thermal and mechanical durability. Rated for 100V maximum voltage and 0.1W per resistor (0.8W total), it balances power handling with compactness.
GS8A035360GGT Features
- Isolated Resistors: 8 independent elements for flexible circuit design.
- Precision Stability: ±25ppm/°C TCR and ±2% tolerance ensure consistent performance.
- Robust Construction: Ceramic SOIC package resists thermal stress and vibration.
- High-Temperature Operation: Rated up to 125°C with derated power at elevated temps.
- Surface-Mount Ready: 1.27mm pitch gull-wing leads simplify PCB integration.
- Low Noise: Thin-film technology minimizes parasitic effects for signal integrity.
GS8A035360GGT Applications
Ideal for precision analog circuits, this network excels in:
- Industrial Controls: Signal conditioning, feedback loops, and sensor interfaces.
- Test & Measurement Equipment: Voltage dividers, calibration circuits.
- Medical Electronics: Isolated amplification stages in diagnostic devices.
- Automotive Systems (non-AECQ): Engine control modules where temperature resilience is critical.
- Telecom Infrastructure: Impedance matching in high-frequency RF stages.
Conclusion of GS8A035360GGT
The GS8A035360GGT stands out for its combination of precision, isolation, and ruggedness in a compact SOIC footprint. Its ceramic substrate and thin-film resistors deliver superior thermal performance compared to polymer-based networks, while the 2% tolerance and low TCR make it a reliable choice for mission-critical designs. Though not PPAP or automotive-qualified, it is well-suited for industrial, medical, and telecom applications requiring stable, high-density resistor arrays. Engineers will appreciate its balance of electrical performance and mechanical reliability in space-constrained layouts.



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