


Bourns, Inc.
4116R-2-331
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4116R-2-331 Description
4116R-2-331 Description
The 4116R-2-331 from Bourns Inc. is a high-performance 15-resistor bussed network designed for precision applications in electronic circuits. With a 330Ω resistance per element and a tight ±2% tolerance, this through-hole-mounted array ensures reliable signal conditioning and voltage division. Its compact 0.865" x 0.300" (21.97mm x 7.62mm) footprint and 0.185" (4.69mm) seated height make it suitable for space-constrained PCB designs. The device operates within a ±100ppm/°C temperature coefficient range, ensuring stability across varying environmental conditions. Packaged in a 16-pin DIP tube, it is ideal for automated assembly processes.
4116R-2-331 Features
- 15-resistor bussed network with 330Ω ±2% tolerance for consistent performance.
- Low TCR (±100ppm/°C) and 50ppm/°C resistor-ratio drift for enhanced thermal stability.
- 125mW power rating per element, suitable for low-to-moderate power applications.
- Through-hole mounting ensures robust mechanical and electrical connections.
- REACH compliant and EAR99/ECCN classified, facilitating global supply chain integration.
- Not MSL-rated (Moisture Sensitivity Level), simplifying storage and handling.
4116R-2-331 Applications
This resistor network excels in precision analog circuits, voltage dividers, and pull-up/pull-down resistor arrays in digital systems. Its bussed configuration is ideal for bus termination, I/O port conditioning, and sensor signal processing in industrial controls, automotive electronics, and test equipment. The 4100R series reliability makes it a preferred choice for medical devices and communication infrastructure where long-term stability is critical.
Conclusion of 4116R-2-331
The 4116R-2-331 combines high accuracy, thermal resilience, and compact design, making it a versatile solution for demanding electronic applications. Its through-hole durability and bussed architecture streamline circuit design while reducing component count. Engineers can leverage its low drift and tight tolerance for systems requiring repeatable performance, ensuring efficiency in both prototyping and mass production.



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