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GS8B014321JDT
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GS8B014321JDT Description
GS8B014321JDT Description
The GS8B014321JDT from TT Electronics/IRC is a high-performance ceramic resistor network designed for precision applications in demanding environments. Housed in a 16-pin narrow SOIC package, this bussed network integrates 15 thin-film resistors with a 4.32KΩ resistance value and a ±5% absolute tolerance. Its ±100ppm/°C temperature coefficient ensures stable performance across a wide operating range of 70°C to 125°C, making it suitable for industrial and automotive-grade designs. The SOIC-C series construction features a rectangular ceramic case with gull-wing terminations, offering robust mechanical and thermal stability. With a 0.8W total power rating (0.05W per resistor) and 100V maximum voltage rating, it balances power handling with compact dimensions (9.91mm × 5.99mm × 1.45mm).
GS8B014321JDT Features
- Precision Thin-Film Technology: Delivers ±0.5% ratio tolerance for matched resistance values, critical for differential signal processing.
- High-Temperature Resilience: Operates reliably up to 125°C with derated power, outperforming standard epoxy-based networks.
- Space-Efficient SOIC Package: 16-pin narrow profile (1.63mm seated height) optimizes PCB real estate in dense layouts.
- Robust Ceramic Substrate: Enhances thermal conductivity and durability compared to polymer-based alternatives.
- Bussed Circuit Design: Simplifies bus termination and voltage division in multi-channel systems.
GS8B014321JDT Applications
- Industrial Control Systems: Ideal for PLC I/O modules requiring stable resistance under thermal stress.
- Automotive Electronics: Suitable for sensor interfaces and ECU signal conditioning (though not PPAP-certified).
- Test & Measurement Equipment: Precision voltage dividers and calibration circuits benefit from low TCR and tight ratio tolerance.
- Telecom Infrastructure: Used in line termination networks for impedance matching in high-frequency PCBs.
Conclusion of GS8B014321JDT
The GS8B014321JDT stands out for its ceramic construction, tight tolerance, and high-temperature performance, addressing gaps in conventional resistor networks. While not RoHS-compliant or automotive-qualified, its thin-film accuracy and SOIC footprint make it a top choice for industrial, telecom, and precision analog designs. Engineers should evaluate its non-standard compliance status but can leverage its reliability in harsh environments where thermal stability is paramount.



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