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MNR32J0ABJ132
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MNR32J0ABJ132 Description
MNR32J0ABJ132 Description
The MNR32J0ABJ132 from ROHM Semiconductor is a high-performance dual-resistor network designed for precision surface-mount applications. This device integrates two isolated 1.3kΩ resistors with a ±5% tolerance and a ±200ppm/°C temperature coefficient, ensuring stable performance across varying environmental conditions. Housed in a compact 1210 convex long-side terminal package, it measures 3.10mm x 2.60mm with a low-profile height of 0.65mm, making it suitable for space-constrained PCB designs. Compliant with ROHS3 and REACH standards, it is ideal for modern electronics requiring environmental regulation adherence.
MNR32J0ABJ132 Features
- Dual 1.3kΩ resistors in an isolated configuration for independent circuit operation.
- 125mW power rating per element, ensuring reliable performance in low-power applications.
- 1210 convex package with long-side terminals for improved mechanical stability and solderability.
- ±200ppm/°C temperature coefficient for minimal resistance drift under thermal stress.
- Moisture Sensitivity Level (MSL) 1, allowing unlimited floor life prior to reflow.
- Tape & Reel (TR) packaging for automated assembly efficiency.
MNR32J0ABJ132 Applications
This resistor array excels in signal conditioning, voltage division, and pull-up/pull-down circuits in:
- Consumer electronics (e.g., smart devices, wearables).
- Industrial control systems requiring stable resistance under thermal fluctuations.
- Automotive electronics where compact, high-reliability components are critical.
- Telecommunication infrastructure for impedance matching and termination.
Conclusion of MNR32J0ABJ132
The MNR32J0ABJ132 combines miniaturization, precision, and robustness, making it a superior choice for designers seeking reliable resistor networks. Its low thermal drift, high power tolerance, and compliance with environmental standards position it as a versatile solution for both commercial and industrial applications. For engineers prioritizing space efficiency and performance consistency, this model stands out among comparable resistor arrays.



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