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GS8B018252DAT
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GS8B018252DAT Description
GS8B018252DAT Description
The GS8B018252DAT from TT Electronics/IRC is a high-precision ceramic resistor network designed for demanding electronic applications. This 16-pin narrow SOIC device features 15 bussed resistors with a 82.5KΩ resistance value and an absolute tolerance of ±0.5%, ensuring exceptional accuracy. Built with thin-film technology, it offers a temperature coefficient of ±100ppm/°C, maintaining stability across a wide operating range of -70°C to +125°C. The SOIC package (9.91mm x 5.99mm x 1.45mm) with gull-wing terminations ensures reliable surface-mount assembly, while its 0.05W (1/20) power rating per resistor and 100V maximum voltage rating make it suitable for low-power, high-voltage circuits.
GS8B018252DAT Features
- Precision Performance: ±0.5% absolute tolerance and ±0.05% ratio tolerance for critical analog circuits.
- Robust Construction: Ceramic case and thin-film technology ensure durability and long-term reliability.
- Thermal Stability: Operates from -70°C to +125°C with minimal resistance drift (±100ppm/°C).
- Space-Efficient: Compact SOIC package (9.91mm x 5.99mm) ideal for high-density PCB designs.
- High Voltage Handling: Supports up to 100V, making it suitable for industrial and automotive systems.
- Automated Assembly: Gull-wing terminations and 1.27mm pitch enable seamless SMT integration.
GS8B018252DAT Applications
- Analog Signal Conditioning: Precision voltage dividers and sensor interfaces in test equipment.
- Industrial Controls: Feedback networks in PLCs and motor drives requiring stable resistance.
- Medical Electronics: Low-noise, high-accuracy circuits in diagnostic devices.
- Telecom Infrastructure: Impedance matching and filtering in RF modules.
- Power Management: Bias networks and current sensing in DC-DC converters.
Conclusion of GS8B018252DAT
The GS8B018252DAT stands out for its precision, thermal resilience, and compact form factor, making it ideal for applications demanding tight tolerance and reliability. Its ceramic construction and thin-film technology provide superior performance over standard thick-film networks, particularly in harsh environments. While not PPAP or automotive-qualified, it excels in industrial, medical, and telecom systems where accuracy and stability are paramount. Engineers will appreciate its balance of performance and manufacturability in space-constrained designs.



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