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GS8A015600GGT
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GS8A015600GGT Description
GS8A015600GGT Description
The GS8A015600GGT from TT Electronics/IRC is a high-performance 8-resistor thin film network designed for precision applications. Housed in a 16-pin SOIC ceramic package, it offers 560Ω resistance per resistor with a tight 2% tolerance and a low ±100ppm/°C temperature coefficient, ensuring stability across a wide operating temperature range of 70°C to 125°C. With a 0.1W power rating per resistor (0.8W total), this surface-mount device (SMD) features gull wing terminations for reliable PCB connections. Its isolated (ISOL) circuit design and ceramic case provide excellent thermal and electrical isolation, making it ideal for harsh environments.
GS8A015600GGT Features
- Precision Thin Film Technology: Delivers stable resistance values with minimal drift.
- High Power Density: 0.8W total power rating in a compact 9.91mm × 5.99mm × 1.45mm footprint.
- Robust Construction: Ceramic SOIC package ensures durability and heat dissipation.
- Isolated Resistors: Independent resistors prevent cross-talk, suitable for signal isolation.
- Wide Voltage Rating: Supports up to 100V, accommodating diverse circuit requirements.
- Automated Assembly-Friendly: Gull wing leads and 1.27mm pitch enable efficient SMT processes.
GS8A015600GGT Applications
This resistor network excels in:
- Industrial Control Systems: Precision voltage dividers, feedback networks.
- Test & Measurement Equipment: High-accuracy signal conditioning.
- Medical Electronics: Isolated sensor interfaces due to low noise and drift.
- Telecommunications: Impedance matching in RF modules.
- Automotive (Non-Automotive Rated): Prototyping or benign-environment circuits.
Conclusion of GS8A015600GGT
The GS8A015600GGT stands out for its combination of precision, power handling, and isolation in a compact SMD package. While not PPAP or automotive-qualified, its ceramic construction and thin film technology make it a reliable choice for high-reliability industrial and medical applications. Engineers will appreciate its balance of performance and space efficiency, particularly in designs requiring multiple matched resistors with minimal thermal coupling.



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