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GS7B031542GBT
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GS7B031542GBT Description
GS7B031542GBT Description
The GS7B031542GBT from TT Electronics/IRC is a high-precision 14-pin narrow SOIC ceramic resistor network designed for demanding applications requiring stable performance under varying thermal conditions. This bussed network integrates 13 thin-film resistors, each with a 15.4KΩ resistance and a tight ±2% absolute tolerance, ensuring consistent signal integrity. The SOIC package (8.66mm × 5.99mm × 1.45mm) features gull-wing terminations for reliable surface-mount assembly, while its ±25ppm/°C temperature coefficient minimizes resistance drift across the -70°C to +125°C operating range. With a 0.7W total power rating (0.05W per resistor) and 100V maximum voltage rating, it balances compactness with robust electrical performance.
GS7B031542GBT Features
- Ceramic substrate for superior thermal stability and durability.
- Thin-film technology delivers low noise and high accuracy (±0.1% ratio tolerance).
- Bussed circuit design simplifies PCB layout for shared-voltage applications.
- Narrow SOIC (SOIC-C) package optimizes board space in high-density designs.
- Wide derated temperature range (up to 125°C) suits harsh environments.
- Non-automotive grade (PPAP: No), ideal for industrial and telecom systems.
- Tube packaging ensures handling protection during assembly.
GS7B031542GBT Applications
This resistor network excels in:
- Voltage divider circuits requiring precise ratio matching (e.g., ADC reference networks).
- Signal conditioning in test/measurement equipment and sensor interfaces.
- Power supply feedback loops where thermal drift must be minimized.
- Industrial control systems needing reliable, space-efficient passive components.
- Telecommunication infrastructure (e.g., line drivers, impedance matching).
Conclusion of GS7B031542GBT
The GS7B031542GBT stands out for its ceramic-based thermal resilience, thin-film accuracy, and compact SOIC footprint, making it a superior choice for precision analog designs. While non-RoHS compliant, its 2% tolerance and ±25ppm/°C stability cater to applications where performance outweighs regulatory constraints. Engineers will value its bussed architecture for simplifying layouts and its derated power handling in elevated temperatures. For cost-sensitive yet performance-critical systems, this network offers an optimal balance of reliability and precision.



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