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GS7B016492FBT
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GS7B016492FBT Description
GS7B016492FBT Description
The GS7B016492FBT from TT Electronics/IRC is a high-performance ceramic resistor network designed for precision applications. This 14-pin Narrow SOIC device features 13 bussed resistors with a 64.9KΩ resistance value, offering ±1% absolute tolerance and ±0.1% ratio tolerance for superior accuracy. Built with thin-film technology, it ensures stable performance across a wide temperature range (70°C to 125°C) and delivers a power rating of 0.7W (0.05W per resistor). The SOIC package with gull-wing termination facilitates easy surface-mount assembly, while its ceramic case enhances durability and thermal management.
GS7B016492FBT Features
- High Precision: ±1% absolute tolerance and ±0.1% ratio tolerance ensure reliable signal conditioning.
- Robust Construction: Ceramic case and thin-film technology provide excellent thermal stability and longevity.
- Wide Operating Range: Rated for -55°C to +125°C, with derated power up to 125°C.
- Compact Design: 8.66mm x 5.99mm x 1.45mm footprint, ideal for space-constrained PCBs.
- Low TCR: ±100ppm/°C temperature coefficient minimizes resistance drift.
- High Voltage Rating: Supports up to 100V, suitable for industrial and automotive environments.
GS7B016492FBT Applications
This resistor network is ideal for:
- Precision voltage dividers in instrumentation and test equipment.
- Signal conditioning in industrial control systems and PLCs.
- Analog circuitry requiring tight tolerance matching (e.g., ADCs, DACs).
- Automotive electronics (non-safety-critical due to non-AECQ compliance).
- Medical devices where stable resistance values are critical.
Conclusion of GS7B016492FBT
The GS7B016492FBT excels in precision, durability, and thermal performance, making it a standout choice for high-accuracy analog designs. Its ceramic construction, tight tolerances, and compact form factor cater to demanding applications in industrial, medical, and automotive electronics. While not PPAP or RoHS compliant, its reliability and performance justify its use in specialized circuits where consistency is paramount.



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