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GS8B013161DBT
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GS8B013161DBT Description
GS8B013161DBT Description
The GS8B013161DBT from TT Electronics/IRC is a high-precision ceramic resistor network designed for demanding electronic applications. This 16-pin narrow SOIC package features 15 bussed resistors with a 3.16KΩ resistance value and an absolute tolerance of ±0.5%, ensuring exceptional accuracy. Built with thin-film technology, it offers a ±100ppm/°C temperature coefficient, maintaining stability across a wide operating range of -70°C to +125°C. The SOIC-C series construction provides robust performance in surface-mount (SMD) applications, with a 0.8W total power rating (0.05W per resistor) and a 100V maximum voltage rating. Its gull-wing termination and 1.27mm terminal pitch facilitate easy PCB integration.
GS8B013161DBT Features
- Precision Network: 15 bussed resistors with ±0.5% tolerance and ±0.1% ratio tolerance for matched performance.
- High-Temperature Stability: ±100ppm/°C TCR ensures reliability in fluctuating environments.
- Robust Construction: Ceramic case and thin-film technology enhance durability and thermal performance.
- Compact & Efficient: 9.91mm length, 5.99mm depth, and 1.45mm height (±0.1mm tolerance) for space-constrained designs.
- Surface-Mount Ready: Gull-wing leads and 1.27mm pitch simplify assembly.
- Wide Voltage Range: Supports up to 100V, ideal for industrial and automotive (non-PPAP) applications.
GS8B013161DBT Applications
- Signal Conditioning: Precision voltage division in sensor interfaces and ADC/DAC circuits.
- Industrial Controls: Stable performance in PLC modules, power supplies, and test equipment.
- Communications: Impedance matching in RF modules and telecom infrastructure.
- Medical Devices: Reliable resistance networks for diagnostic equipment due to low drift.
- Automotive Electronics: Non-PPAP applications like infotainment systems (though not automotive-qualified).
Conclusion of GS8B013161DBT
The GS8B013161DBT excels in high-precision, space-efficient designs requiring stable resistance networks. Its ceramic construction, tight tolerances, and wide temperature range make it superior to standard thick-film arrays, particularly in industrial, medical, and communication systems. While not PPAP-compliant, its performance-to-size ratio and thin-film accuracy position it as a top choice for engineers prioritizing reliability in compact layouts.



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