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GS8A031602JAT
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GS8A031602JAT Description
GS8A031602JAT Description
The GS8A031602JAT from TT Electronics/IRC is a high-performance 8-resistor thin-film network in a 16-pin SOIC package, designed for precision isolation (ISOL) applications. It features 16KΩ resistance per resistor with a 5% tolerance and a ±25ppm/°C temperature coefficient, ensuring stable performance across a 70°C to 125°C operating range. The ceramic case style and gull-wing termination enable reliable surface-mount (SMD) assembly, while the 0.8W total power rating (0.1W per resistor) and 100V maximum voltage rating make it suitable for demanding circuits. Packaged in a tube, this non-automotive (PPAP: No) component is ideal for industrial and commercial electronics requiring high-density, low-drift resistance networks.
GS8A031602JAT Features
- Thin-film technology: Delivers low noise and high stability compared to thick-film alternatives.
- Precision isolation (ISOL) design: Ensures minimal crosstalk in multi-channel systems.
- Ceramic substrate: Enhances thermal conductivity and mechanical durability.
- Compact SOIC-16 package: 9.91mm × 5.99mm × 1.45mm dimensions with ±0.1mm length/height tolerances for space-constrained PCBs.
- Wide temperature range: Operates reliably from 70°C to 125°C with derated power.
- Gull-wing terminals: Facilitates robust solder joints in automated assembly processes.
- Non-RoHS compliant: Suitable for legacy or specialized applications where RoHS exemptions apply.
GS8A031602JAT Applications
- Signal conditioning circuits: Precision voltage dividers in data acquisition systems.
- Industrial control systems: Isolation resistors for PLC I/O modules or sensor interfaces.
- Test & measurement equipment: Stable reference networks in multimeters or oscilloscopes.
- Medical electronics: Low-drift networks for patient monitoring devices (non-implantable).
- Telecommunications: Impedance matching in RF front-end circuits.
Conclusion of GS8A031602JAT
The GS8A031602JAT excels in precision, thermal stability, and compactness, making it a superior choice for isolated resistor networks in harsh environments. Its ceramic construction, thin-film technology, and tight tolerances outperform generic arrays, particularly in high-temperature or high-reliability applications. While not RoHS-compliant, it remains a cost-effective solution for industrial, medical, and telecom systems requiring long-term performance consistency. Engineers should evaluate this model for critical analog circuits where drift and power dissipation are key concerns.



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