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GS8A013320GBT
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GS8A013320GBT Description
GS8A013320GBT Description
The GS8A013320GBT from TT Electronics/IRC is a high-performance ceramic resistor network designed for precision applications requiring stable resistance values and robust thermal performance. Housed in a 16-pin narrow SOIC package, this 8-resistor isolated network features 332Ω resistance per element with a tight ±2% absolute tolerance and an exceptional ±0.1% ratio tolerance. Its thin-film technology ensures low noise and high reliability, while the ceramic case style enhances thermal dissipation and mechanical durability. Rated for 0.1W per resistor (0.8W total), it operates across a wide temperature range of -70°C to +125°C, with a ±100ppm/°C temperature coefficient for minimal drift. The 100V maximum voltage rating and gull-wing termination make it suitable for demanding surface-mount applications.
GS8A013320GBT Features
- Isolated 8-resistor network in a 16-pin SOIC package for flexible circuit design.
- Thin-film technology delivers high precision (±2% tolerance) and low noise.
- Ceramic substrate ensures superior thermal stability and mechanical strength.
- Wide operating range: -70°C to +125°C with derated power up to 125°C.
- Low TCR (±100ppm/°C) minimizes resistance drift under temperature fluctuations.
- Gull-wing termination for reliable surface-mount (SMD) assembly.
- 100V maximum voltage rating for robust performance in high-voltage circuits.
- Compact dimensions: 9.91mm (L) × 5.99mm (D) × 1.45mm (H) with tight tolerances (±0.1mm).
GS8A013320GBT Applications
Ideal for precision analog and digital circuits, the GS8A013320GBT excels in:
- Voltage dividers and signal conditioning in industrial sensors.
- Feedback networks for op-amps and ADCs/DACs.
- Impedance matching in high-frequency communication systems.
- Medical equipment requiring stable, low-drift resistance.
- Automotive ECUs (where non-automotive grade is acceptable).
- Power supply balancing in multi-channel systems.
Conclusion of GS8A013320GBT
The GS8A013320GBT combines precision, durability, and thermal resilience, making it a standout choice for engineers needing reliable resistor networks in harsh environments. Its ceramic construction, tight tolerances, and isolated design offer superior performance over plastic-encased alternatives, particularly in high-temperature or high-voltage scenarios. While not PPAP or automotive-qualified, it remains a cost-effective solution for industrial, medical, and telecom applications demanding long-term stability. For designs requiring low drift, high power dissipation, and compact form factors, this model delivers exceptional value.



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