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MNR14ERAPJ363
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MNR14ERAPJ363 Description
MNR14ERAPJ363 Description
The MNR14ERAPJ363 from ROHM Semiconductor is a high-performance 4-resistor network array designed for precision surface-mount applications. Encased in a compact 1206 (3216 Metric) convex package with long-side terminals, this device offers a 36kΩ resistance per element with a ±5% tolerance and a ±200ppm/°C temperature coefficient, ensuring stable performance across varying environmental conditions. Its isolated circuit configuration enhances signal integrity, while the 62.5mW power rating per resistor provides reliable operation in low-to-moderate power circuits. Compliant with ROHS3 and REACH standards, it is ideal for eco-conscious designs.
MNR14ERAPJ363 Features
- Compact Design: Measures 3.20mm x 1.60mm with a low-profile 0.60mm height, saving PCB space.
- High Reliability: Moisture Sensitivity Level (MSL) 1 ensures unlimited floor life, suitable for extended storage.
- Robust Construction: Convex, long-side terminals improve mechanical stability and solder joint reliability.
- Wide Compatibility: Surface-mount (SMD) packaging in Tape & Reel (TR) for automated assembly efficiency.
- Stable Performance: ±200ppm/°C TCR and ±5% tolerance ensure consistent operation in temperature-sensitive applications.
MNR14ERAPJ363 Applications
This resistor array excels in:
- Signal Conditioning: Precision voltage dividers and pull-up/down networks in IoT sensors and communication modules.
- Consumer Electronics: Integration into smartphones, wearables, and displays due to its compact footprint.
- Industrial Controls: PLC systems and instrumentation requiring stable resistance values under thermal stress.
- Automotive Electronics: ECUs and infotainment systems where ROHS3 compliance is critical.
Conclusion of MNR14ERAPJ363
The MNR14ERAPJ363 combines miniaturization, reliability, and performance, making it a standout choice for modern electronics. Its isolated design, low TCR, and robust packaging cater to demanding applications, while ROHS3 and REACH compliance future-proofs designs. Ideal for engineers seeking a balance of precision and durability in space-constrained, high-reliability systems.



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