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GS4B012212CBT
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GS4B012212CBT Description
GS4B012212CBT Description
The GS4B012212CBT from TT Electronics/IRC is a high-precision 7-resistor thin film network designed for surface-mount applications. Encased in a ceramic SOIC-8 package, it offers a 22.1KΩ resistance per resistor with an ultra-tight ±0.25% tolerance and a ±100ppm/°C temperature coefficient, ensuring stability across a wide operating range of -70°C to +125°C. The 0.4W total power rating (0.05W per resistor) and 100V maximum voltage rating make it suitable for demanding circuits. Its gull-wing termination and 1.27mm terminal pitch facilitate reliable PCB mounting, while the ceramic substrate enhances thermal performance and durability.
GS4B012212CBT Features
- Precision Thin Film Technology: Delivers low noise and high stability for sensitive analog/digital circuits.
- Ceramic Case: Superior heat dissipation and mechanical robustness compared to polymer-based networks.
- BUS Configuration: Ideal for voltage division, pull-up/pull-down networks, and bus termination.
- Automotive-Grade Alternatives: While not PPAP-certified, its 125°C max operating temperature suits industrial and telecom applications.
- Strict Tolerances: ±0.1mm height/length tolerances ensure consistent PCB assembly compatibility.
GS4B012212CBT Applications
This resistor network excels in:
- Precision Instrumentation: Signal conditioning in medical devices and test equipment.
- Communication Systems: Impedance matching and termination in high-speed data buses.
- Industrial Controls: Robust performance in motor drives and power management modules.
- Aerospace & Defense: Reliable operation in harsh environments due to ceramic construction.
Conclusion of GS4B012212CBT
The GS4B012212CBT stands out for its combination of precision, power handling, and thermal resilience, making it a top choice for engineers prioritizing signal integrity and long-term reliability. While not RoHS-compliant, its ceramic SOIC package and thin film technology offer distinct advantages over standard arrays, particularly in high-temperature or precision-critical designs. For bus-oriented circuits requiring tight tolerances and low drift, this network delivers exceptional performance.



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