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GS7B011581JBT
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GS7B011581JBT Description
GS7B011581JBT Description
The GS7B011581JBT from TT Electronics/IRC is a high-performance ceramic resistor network designed for precision applications in demanding electronic circuits. This 14-pin Narrow SOIC device features 13 bussed resistors with a 1.58KΩ resistance value and a ±5% absolute tolerance, ensuring consistent performance across a wide temperature range of 70°C to 125°C. Its thin-film technology provides excellent stability with a ±100ppm/°C temperature coefficient, while the 0.05W (1/20) power rating per resistor and 0.7W total power rating make it suitable for low-power applications. The SOIC package with gull-wing termination ensures reliable surface-mount assembly, and its compact dimensions (8.66mm x 5.99mm x 1.45mm) make it ideal for space-constrained designs.
GS7B011581JBT Features
- 13 bussed resistors in a 14-pin SOIC package for simplified circuit design.
- Ceramic case style for enhanced thermal and mechanical stability.
- Thin-film technology with ±100ppm/°C TCR for precision performance.
- 1.58KΩ resistance with ±5% tolerance and ±0.1% ratio tolerance for tight matching.
- Wide operating temperature range (70°C to 125°C) for harsh environments.
- 0.7W total power rating and 100V maximum voltage rating for robust operation.
- Gull-wing termination for reliable surface-mount (SMD) assembly.
- Compact SOIC footprint (8.66mm x 5.99mm x 1.45mm) for high-density PCB layouts.
GS7B011581JBT Applications
This resistor network is ideal for:
- Voltage divider circuits in precision analog systems.
- Signal conditioning in industrial sensors and measurement equipment.
- Bus termination in communication and data acquisition systems.
- Impedance matching in RF and high-frequency applications.
- Automotive and industrial electronics requiring stable performance under thermal stress.
Conclusion of GS7B011581JBT
The GS7B011581JBT offers a reliable, high-precision solution for resistor networks in surface-mount applications. Its ceramic construction, thin-film technology, and tight tolerance make it superior to standard thick-film alternatives, particularly in thermal stability and long-term reliability. While not automotive-grade or RoHS-compliant, its performance in industrial and precision electronics makes it a preferred choice for engineers requiring consistent resistance matching and low thermal drift. Ideal for space-constrained, high-performance designs, this component balances compactness, power handling, and precision effectively.



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