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GS8B034120JBT
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GS8B034120JBT Description
GS8B034120JBT Description
The GS8B034120JBT from TT Electronics/IRC is a high-performance ceramic resistor network designed for precision applications in demanding electronic circuits. This 16-pin narrow SOIC package features 15 bussed resistors, each with a 412Ω resistance and a ±5% absolute tolerance, ensuring reliable signal integrity in complex designs. Built with thin-film technology, it delivers exceptional stability with a low ±25ppm/°C temperature coefficient, making it ideal for environments with fluctuating thermal conditions. The SOIC-C series construction provides robust mechanical durability, while the gull-wing termination ensures secure surface mounting. With a maximum operating temperature of 125°C and a derated power range of 70–125°C, this network is engineered for longevity under stress.
GS8B034120JBT Features
- Ceramic substrate for superior thermal and mechanical resilience.
- 15 bussed resistors in a compact 9.91mm × 5.99mm × 1.45mm SOIC package.
- Thin-film technology ensures precision (±5% tolerance) and low TCR (±25ppm/°C).
- 0.05W (1/20) power rating per resistor, with a total 0.8W power dissipation.
- 100V maximum voltage rating and 1.27mm terminal pitch for high-density PCB layouts.
- Non-automotive (PPAP: No) but suitable for industrial and telecom applications.
- Gull-wing leads for reliable surface-mount assembly.
GS8B034120JBT Applications
This resistor network excels in:
- Voltage division and bus termination in high-speed digital circuits.
- Signal conditioning for analog and mixed-signal systems.
- Industrial control systems requiring stable resistance under thermal stress.
- Telecommunication infrastructure, where precision and durability are critical.
- Test and measurement equipment demanding tight ratio tolerance (±0.1%).
Conclusion of GS8B034120JBT
The GS8B034120JBT stands out for its ceramic construction, thin-film precision, and bussed architecture, offering unmatched reliability in harsh environments. While not RoHS-compliant, its high-temperature performance and low TCR make it a preferred choice for engineers prioritizing stability over regulatory constraints. Ideal for industrial, telecom, and instrumentation designs, this network balances compactness with robust electrical performance. For applications demanding repeatable accuracy and thermal resilience, it is a superior alternative to standard epoxy-based arrays.



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