
TT Electronics/IRC
GS7B016811JCT
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GS7B016811JCT Description
GS7B016811JCT Description
The GS7B016811JCT from TT Electronics/IRC is a high-performance ceramic resistor network designed for precision applications requiring stable resistance values and robust thermal performance. Packaged in a 14-pin narrow SOIC (SOIC-C) format, this bussed network integrates 13 thin-film resistors, each rated at 6.81KΩ with an absolute tolerance of ±5% and a ratio tolerance of ±0.25%. The device operates over a wide temperature range of -55°C to +125°C, with derated power handling up to 125°C. Its ±100ppm/°C temperature coefficient ensures minimal resistance drift, making it suitable for demanding environments. The SOIC package features gull-wing terminations for reliable surface-mount assembly, with a compact footprint of 8.66mm × 5.99mm × 1.45mm and tight dimensional tolerances.
GS7B016811JCT Features
- High-Density Integration: 13 resistors in a 14-pin SOIC, saving PCB space.
- Stable Thin-Film Technology: Delivers low noise and high accuracy (±5% absolute, ±0.25% ratio tolerance).
- Wide Operating Range: -55°C to +125°C with 0.05W (1/20W) per resistor and 0.7W total power dissipation.
- Robust Construction: Ceramic substrate enhances thermal stability and durability.
- Precision Termination: 1.27mm pitch gull-wing leads ensure reliable soldering and mechanical strength.
- High Voltage Rating: 100V maximum per resistor, suitable for industrial and automotive systems (non-Automotive PPAP).
GS7B016811JCT Applications
- Analog Signal Conditioning: Ideal for voltage dividers, gain networks, and sensor interfaces in test equipment.
- Industrial Controls: Used in PLC I/O modules, power management circuits, and feedback networks due to its stability.
- Medical Electronics: Suitable for low-drift instrumentation where consistent resistance ratios are critical.
- Communications Infrastructure: Employed in RF matching networks and filter circuits requiring tight tolerance.
Conclusion of GS7B016811JCT
The GS7B016811JCT excels in applications demanding precision, thermal resilience, and space efficiency. Its ceramic thin-film design, combined with tight tolerances and high-voltage capability, makes it a superior choice over generic resistor arrays. While not RoHS-compliant, its performance in industrial, medical, and communication systems justifies its use in specialized designs. Engineers seeking reliable, high-density resistance networks will find this model a compelling solution.



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