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4310M-101-681
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4310M-101-681 Description
4310M-101-681 Description
The 4310M-101-681 from Bourns Inc. is a high-performance resistor network designed for precision applications in electronic circuits. This 9-resistor bussed array offers a 680Ω resistance per element with a tight ±2% tolerance, ensuring reliable signal conditioning and voltage division. Encased in a 10-pin SIP package, it features a compact 0.984" x 0.085" (24.99mm x 2.16mm) footprint and a 6.35mm seated height, making it suitable for space-constrained designs. With a ±100ppm/°C temperature coefficient and 50ppm/°C resistor-ratio drift, it delivers stable performance across varying thermal conditions. The 250mW power rating per element and through-hole mounting ensure durability in demanding environments.
4310M-101-681 Features
- Bussed Circuit Configuration: Simplifies PCB layout by sharing a common node, reducing wiring complexity.
- High Precision: ±2% tolerance and low TCR (±100ppm/°C) ensure consistent performance.
- Robust Construction: Moisture Sensitivity Level (MSL) Not Applicable enhances reliability in humid conditions.
- Wide Operating Range: Suitable for industrial temperatures (-55°C to +125°C).
- Compliance: REACH Affected and EAR99 ECCN certified for global market compatibility.
- Tube Packaging: Facilitates automated assembly processes.
4310M-101-681 Applications
Ideal for:
- Voltage Division in analog signal processing.
- Pull-up/Pull-down Networks in digital logic circuits.
- Sensor Interface Conditioning (e.g., thermistors, strain gauges).
- Industrial Control Systems requiring stable resistance ratios.
- Automotive Electronics where vibration resistance is critical.
Conclusion of 4310M-101-681
The 4310M-101-681 stands out for its precision, compactness, and thermal stability, making it a superior choice over generic resistor arrays. Its bussed design reduces component count, while Bourns' quality assurance ensures long-term reliability. Perfect for industrial, automotive, and instrumentation applications, this resistor network balances performance with cost-effectiveness. Engineers can leverage its low drift and high power handling for designs demanding repeatability under stress.



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