
TT Electronics/IRC
GS8B016492GAT
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GS8B016492GAT Description
GS8B016492GAT Description
The GS8B016492GAT from TT Electronics/IRC is a high-performance 16-pin narrow SOIC ceramic resistor network, designed for precision applications requiring stable resistance values in compact surface-mount packages. This bussed (BUS) configuration integrates 15 thin-film resistors, each with a 64.9KΩ resistance and a tight ±2% absolute tolerance, ensuring consistent performance across demanding environments. The device operates over a wide temperature range of 70°C to 125°C with a ±100ppm/°C temperature coefficient, making it suitable for thermally challenging circuits. Encased in a rectangular ceramic SOIC package, it offers excellent thermal stability and durability, with a 0.8W total power rating (0.05W per resistor).
GS8B016492GAT Features
- Precision Thin-Film Technology: Delivers stable resistance with ±0.05% ratio tolerance for matched performance.
- Robust Construction: Ceramic case ensures high thermal conductivity and mechanical strength.
- Space-Efficient Design: 9.91mm × 5.99mm × 1.45mm footprint with gull-wing termination for easy surface mounting.
- High Voltage Handling: Supports up to 100V maximum voltage rating.
- Wide Operating Range: Reliable performance from -55°C to +125°C (derated power above 70°C).
- Automated Assembly Friendly: 1.27mm terminal pitch aligns with standard PCB layouts.
GS8B016492GAT Applications
Ideal for precision analog circuits, voltage dividers, and sensor signal conditioning in:
- Industrial Control Systems: Where stable resistance ratios are critical for feedback loops.
- Medical Electronics: High-reliability applications like patient monitoring equipment.
- Telecommunications: Signal processing and impedance matching in RF modules.
- Test & Measurement Equipment: Calibration circuits requiring low drift over temperature.
Conclusion of GS8B016492GAT
The GS8B016492GAT stands out for its ceramic-based thermal resilience, tight tolerance, and compact SOIC packaging, making it a superior choice over plastic-encased networks in harsh environments. While not RoHS-compliant, its thin-film technology and bussed architecture cater to designs demanding precision and durability. Engineers will value its balance of performance, size, and cost in mission-critical applications.



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