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GS4B033301BT
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GS4B033301BT Description
GS4B033301BT Description
The GS4B033301BT from TT Electronics/IRC is a high-precision ceramic resistor network designed for demanding applications requiring tight tolerance and stability. This 7-resistor bussed network features a 3.3KΩ resistance per element with an absolute tolerance of ±0.1%, ensuring exceptional accuracy. Encased in an 8-pin narrow SOIC package, it leverages thin-film technology for superior performance, offering a low temperature coefficient (±25ppm/°C) and a power rating of 0.4W (0.05W per resistor). With a maximum operating temperature of 125°C and a voltage rating of 100V, it is engineered for reliability in precision circuits.
GS4B033301BT Features
- High Precision: ±0.1% tolerance and ±25ppm/°C TCR for stable performance.
- Robust Construction: Ceramic substrate and SOIC package ensure durability and thermal stability.
- Bussed Configuration: Simplifies PCB layout by integrating multiple resistors into a single network.
- Surface-Mount Design: Gull-wing termination and 1.27mm pitch for easy assembly.
- Wide Temperature Range: Operates from 70°C to 125°C with derated power handling.
- Non-Automotive/Non-PPAP: Suitable for industrial and commercial applications.
GS4B033301BT Applications
This resistor network excels in precision analog circuits, signal conditioning, and voltage division where tight tolerances are critical. Its low TCR and high stability make it ideal for:
- Medical instrumentation requiring long-term accuracy.
- Test & measurement equipment demanding minimal drift.
- Industrial control systems where reliability under thermal stress is essential.
- Communication devices needing consistent signal integrity.
Conclusion of GS4B033301BT
The GS4B033301BT stands out for its exceptional precision, robust ceramic construction, and compact SOIC footprint, making it a superior choice for high-accuracy applications. While not automotive-grade, its thin-film technology and bussed design provide a reliable solution for industrial and commercial electronics. Engineers seeking low-drift, high-tolerance resistor networks will find this model an optimal fit for critical circuit designs.



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