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GS4B028252GFT
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GS4B028252GFT Description
GS4B028252GFT Description
The GS4B028252GFT from TT Electronics/IRC is a high-performance 7-resistor bussed network in an 8-pin narrow SOIC package. Designed for precision applications, it features a thin-film construction on a ceramic substrate, ensuring excellent thermal stability and reliability. With a resistance value of 82.5KΩ and a tight absolute tolerance of ±2%, this network is ideal for circuits requiring consistent performance. The ±50ppm/°C temperature coefficient minimizes resistance drift across its operating range of -70°C to +125°C, making it suitable for demanding environments. Its 0.4W total power rating (0.05W per resistor) and 100V maximum voltage rating provide robust electrical performance in compact designs.
GS4B028252GFT Features
- Ceramic SOIC package for superior thermal management and mechanical durability.
- Bussed network topology simplifies circuit design by interconnecting resistors.
- Thin-film technology ensures low noise, high stability, and precise resistance matching.
- Gull-wing termination enables reliable surface-mount (SMD) assembly.
- 2% absolute tolerance and ±1% ratio tolerance for precision applications.
- Wide temperature range (-70°C to +125°C) with derated power handling.
- Non-automotive, non-PPAP compliant, suited for industrial and commercial use.
- Non-RoHS (lead-containing) construction for legacy or specialized applications.
GS4B028252GFT Applications
This resistor network excels in:
- Voltage divider circuits requiring matched resistance ratios.
- Signal conditioning in analog/digital hybrid systems.
- Sensor interfaces where stability across temperature is critical.
- Industrial control systems needing robust, long-term reliability.
- Legacy electronics requiring leaded components due to regulatory or design constraints.
Conclusion of GS4B028252GFT
The GS4B028252GFT combines precision, durability, and compactness, making it a standout choice for engineers designing high-stability circuits. Its ceramic SOIC package, thin-film construction, and tight tolerances offer advantages over polymer-based or lower-tolerance networks. While not suited for automotive or RoHS-compliant designs, it remains a top-tier solution for industrial, instrumentation, and legacy systems demanding consistent performance under thermal stress. For applications prioritizing accuracy and thermal resilience, this network delivers exceptional value.



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