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GS7B024122FDT
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GS7B024122FDT Description
GS7B024122FDT Description
The GS7B024122FDT from TT Electronics/IRC is a high-performance ceramic resistor network designed for precision applications. Packaged in a 14-pin narrow SOIC (SOIC-C series), it features 13 bussed resistors with a 41.2KΩ resistance value and a tight ±1% absolute tolerance, ensuring consistent performance. The thin-film technology delivers excellent stability with a ±50ppm/°C temperature coefficient, making it suitable for environments with operating temperatures up to 125°C. The 0.05W (1/20) power rating per resistor and 0.7W total power rating provide reliable operation in compact designs. Its gull-wing termination and surface-mount compatibility facilitate easy PCB integration.
GS7B024122FDT Features
- Bussed Network Design: Simplifies circuit layout with shared connections (BUS configuration).
- High Precision: ±1% absolute tolerance and ±0.5% ratio tolerance for critical analog/digital systems.
- Robust Construction: Ceramic case ensures durability and thermal stability.
- Wide Temperature Range: Operates from 70°C to 125°C with derated power handling.
- Compact Footprint: 8.66mm (L) × 5.99mm (D) × 1.45mm (H) with tight tolerances (±0.1mm height/length).
- Low TCR: ±50ppm/°C minimizes resistance drift under thermal stress.
- High Voltage Rating: Supports up to 100V, ideal for industrial and instrumentation use.
GS7B024122FDT Applications
- Analog Signal Conditioning: Precision voltage dividers in sensor interfaces.
- Industrial Controls: Feedback networks in PLCs and motor drivers.
- Medical Electronics: Stable resistor arrays for diagnostic equipment.
- Automotive Systems (non-Automotive PPAP): Engine control modules (where high-temperature stability is critical).
- Test & Measurement: Calibration circuits requiring low drift.
Conclusion of GS7B024122FDT
The GS7B024122FDT excels in high-reliability applications demanding precision, thermal resilience, and space efficiency. Its ceramic thin-film construction, bussed architecture, and tight tolerances make it superior to standard thick-film networks. While not RoHS-compliant, it remains a top choice for industrial and instrumentation designs where performance outweighs regulatory constraints. Ideal for engineers prioritizing stability, compactness, and ease of integration in harsh environments.



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