


Bourns, Inc.
4308M-101-680
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4308M-101-680 Description
4308M-101-680 Description
The 4308M-101-680 from Bourns Inc. is a high-performance 7-resistor bussed array designed for precision applications in electronic circuits. With a 68Ω resistance per element and a tight ±2% tolerance, this through-hole-mounted network ensures reliable signal integrity and consistent performance. Its compact 0.784" x 0.085" (19.91mm x 2.16mm) footprint and 0.250" (6.35mm) height make it suitable for space-constrained designs. The device operates within a ±100ppm/°C temperature coefficient range, with a 50ppm/°C resistor-ratio drift, ensuring stability across varying environmental conditions. Packaged in a tube, it is part of Bourns' 4300M series, known for robustness and industrial-grade reliability.
4308M-101-680 Features
- 7-resistor bussed array with 68Ω resistance per element, ideal for uniform current distribution.
- ±2% tolerance and ±100ppm/°C temperature coefficient for precision performance.
- 250mW power rating per element, ensuring durability in demanding circuits.
- Through-hole mounting (8-pin SIP) for secure mechanical and electrical connections.
- REACH Affected but MSL Not Applicable, simplifying handling and storage.
- Low resistor-ratio drift (50ppm/°C), critical for analog signal conditioning and voltage division.
4308M-101-680 Applications
This resistor network excels in:
- Voltage division and pull-up/pull-down circuits in microcontrollers and digital logic systems.
- Signal termination and impedance matching in communication hardware.
- Industrial control systems requiring stable, high-density resistor arrays.
- Automotive electronics, where temperature stability and reliability are paramount.
- Test and measurement equipment, leveraging its low drift and tight tolerance.
Conclusion of 4308M-101-680
The 4308M-101-680 combines Bourns' engineering excellence with a compact, high-performance design. Its bussed architecture, low drift, and industrial-grade specs make it a superior choice over discrete resistors or less stable networks. Ideal for precision analog/digital hybrid systems, it balances space efficiency, thermal resilience, and cost-effectiveness. Engineers seeking a reliable, standardized solution for signal conditioning or power distribution will find this model indispensable.



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