


Bourns, Inc.
4820P-2-103F
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4820P-2-103F Description
4820P-2-103F Description
The 4820P-2-103F from Bourns Inc. is a high-performance 19-resistor bussed network designed for precision surface-mount applications. Encased in a compact 20-pin SOIC package with dimensions of 0.540" x 0.220" (13.72mm x 5.59mm) and a low-profile height of 0.094" (2.40mm), this device integrates 10kΩ resistors with a tight ±2% tolerance and a stable ±100ppm/°C temperature coefficient. Its 80mW power rating per element ensures reliable operation in demanding circuits, while the bussed circuit configuration simplifies design by interconnecting resistors for streamlined routing. Compliant with REACH and ECCN EAR99, it is ideal for industrial and commercial electronics requiring robust, space-efficient solutions.
4820P-2-103F Features
- 19-resistor bussed array in a 20-pin SOIC footprint for space savings.
- 10kΩ resistance with ±2% tolerance and ±100ppm/°C thermal stability, ensuring precision in varying environments.
- Surface-mount design (Tape & Reel packaging) for automated assembly efficiency.
- 80mW power dissipation per resistor, suitable for moderate-power applications.
- MSL 1 (Unlimited) moisture sensitivity, enabling extended shelf life and flexible handling.
- REACH Affected compliance, meeting stringent environmental standards.
4820P-2-103F Applications
This resistor network excels in voltage division, pull-up/pull-down circuits, and signal conditioning across:
- Industrial control systems requiring stable, high-density resistor arrays.
- Consumer electronics (e.g., smart devices, displays) where board space is critical.
- Automotive modules (non-safety-critical) needing robust thermal performance.
- Test and measurement equipment demanding precision and repeatability.
Conclusion of 4820P-2-103F
The 4820P-2-103F combines Bourns' 4800P series reliability with a compact, high-density design, offering engineers a balance of precision, power handling, and ease of integration. Its bussed architecture and industrial-grade specs make it a superior choice over discrete resistors or less stable networks, particularly in space-constrained, temperature-variable applications. Ideal for modern electronics demanding repeatable performance and compliance with environmental regulations.



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