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MNR12ERAPJ331
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MNR12ERAPJ331 Description
MNR12ERAPJ331 Description
The MNR12ERAPJ331 from ROHM Semiconductor is a compact, surface-mount resistor network designed for high-density PCB applications. This device features two isolated 330Ω resistors with a ±5% tolerance, housed in a 0606 convex package measuring just 1.60mm x 1.60mm x 0.55mm. With a ±200ppm/°C temperature coefficient and 62.5mW power rating per element, it ensures stable performance across a wide operating range. The RoHS3-compliant and REACH-unaffected construction makes it suitable for environmentally conscious designs, while its MSL 1 (Unlimited) rating ensures ease of handling and storage. Packaged in Tape & Reel (TR), it is optimized for automated assembly processes.
MNR12ERAPJ331 Features
- Compact 0606 Package: Ideal for space-constrained designs with dimensions of 0.063" x 0.063".
- Isolated Circuit Configuration: Ensures independent resistor operation, reducing crosstalk in sensitive applications.
- Wide Temperature Stability: ±200ppm/°C coefficient guarantees reliable performance under thermal stress.
- High Power Handling: 62.5mW per resistor accommodates moderate power dissipation needs.
- Automation-Ready Packaging: Supplied in Tape & Reel (TR) for efficient pick-and-place assembly.
- Environmental Compliance: RoHS3 and REACH adherence meets global regulatory standards.
MNR12ERAPJ331 Applications
This resistor array excels in precision analog and digital circuits, including:
- Signal Conditioning: Voltage division and pull-up/down networks in IoT sensors and microcontrollers.
- Consumer Electronics: Integration into smartphones, wearables, and compact audio devices.
- Industrial Controls: Robust performance in PLC modules and motor drivers.
- Automotive Electronics: Suitable for infotainment systems and ECU signal paths due to its stability.
Conclusion of MNR12ERAPJ331
The MNR12ERAPJ331 stands out for its miniaturized form factor, reliable isolation, and broad compatibility, making it a versatile choice for modern electronics. Its balance of precision, power handling, and environmental compliance positions it as a superior alternative to larger or less stable resistor networks. Engineers designing high-density, thermally variable systems will find this component indispensable for optimizing performance and footprint.



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