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6983R10KDLF
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6983R10KDLF Description
6983R10KDLF Description
The 6983R10KDLF is a high-precision resistor network manufactured by TT Electronics / BI Technologies, designed for demanding electronic applications requiring tight tolerance and stability. This 8-resistor isolated array features a 10kΩ resistance per element with an exceptional ±0.5% tolerance and ±25ppm/°C temperature coefficient, ensuring reliable performance across varying environmental conditions. Housed in a 16-pin DIP package with dimensions of 0.750" x 0.250" (19.05mm x 6.35mm), it offers a compact footprint for through-hole mounting. The device operates at 100mW power per element and boasts a ±0.1% resistor matching ratio, making it ideal for precision analog circuits.
6983R10KDLF Features
- High Precision: ±0.5% tolerance and ±25ppm/°C TCR for stable performance.
- Low Ratio Drift: ±5ppm/°C resistor-ratio-drift ensures minimal deviation in matched networks.
- Robust Construction: Through-hole design with a 4.32mm seated height for durability.
- Isolated Circuit Type: Independent resistors for flexible circuit design.
- Moisture Resistant: MSL 1 (Unlimited) rating guarantees reliability in humid environments.
- REACH Compliance: Unaffected by REACH restrictions, suitable for global markets.
6983R10KDLF Applications
This resistor array excels in precision-critical applications such as:
- Analog Signal Conditioning: Ideal for op-amp gain networks and voltage dividers.
- Medical Electronics: Used in diagnostic equipment where accuracy is paramount.
- Industrial Control Systems: Suitable for PLCs and sensor interfaces requiring stable resistance values.
- Test & Measurement Equipment: Ensures repeatable performance in calibration circuits.
- Aerospace & Defense: Reliable operation in harsh environments due to low drift and high tolerance.
Conclusion of 6983R10KDLF
The 6983R10KDLF stands out as a high-performance resistor network, combining precision, stability, and ruggedness for critical electronic designs. Its low ratio drift, tight matching, and through-hole reliability make it a preferred choice for engineers in medical, industrial, and aerospace sectors. While marked as obsolete, its legacy performance ensures continued suitability for legacy systems and precision applications where alternative components may not meet the same stringent specifications.



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