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MNR35J5RJ203
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MNR35J5RJ203 Description
MNR35J5RJ203 Description
The MNR35J5RJ203 from ROHM Semiconductor is a high-performance 8-resistor bussed network designed for precision surface-mount applications. Encased in a compact 2512 (6432 Metric) convex package with long-side terminals, it offers a 20kΩ resistance per element with a ±5% tolerance and a ±200ppm/°C temperature coefficient. The device operates within a 62.5mW power rating per resistor, ensuring reliable performance in demanding circuits. Its 0.026" (0.65mm) low-profile height and 6.40mm x 3.10mm footprint make it ideal for space-constrained designs. Compliant with ROHS3 and REACH standards, it is delivered in Tape & Reel (TR) packaging for automated assembly efficiency.
MNR35J5RJ203 Features
- 8-resistor bussed array simplifies circuit design by reducing component count.
- 2512 convex package with long-side terminals enhances mechanical stability and solder joint reliability.
- ±200ppm/°C TCR ensures stable performance across temperature variations.
- 62.5mW power rating per resistor supports moderate power applications.
- Low-profile (0.65mm) and compact dimensions optimize PCB space utilization.
- ROHS3/REACH compliant and MSL 1 (Unlimited) for environmental and handling flexibility.
MNR35J5RJ203 Applications
This resistor network excels in:
- Voltage divider circuits and pull-up/pull-down networks in digital systems.
- Signal conditioning for sensors and analog front-ends.
- Power supply feedback loops requiring stable resistance values.
- Consumer electronics, industrial controls, and automotive modules where space and reliability are critical.
- Automated assembly-friendly designs due to its tape-and-reel packaging.
Conclusion of MNR35J5RJ203
The MNR35J5RJ203 combines high density, thermal stability, and ease of integration, making it a superior choice for modern electronics. Its bussed architecture reduces layout complexity, while its robust construction ensures longevity in harsh environments. Ideal for engineers seeking a balance of performance, size, and cost in resistor networks.



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