


Bourns, Inc.
CAY10-152J4LF
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CAY10-152J4LF Description
CAY10-152J4LF Description
The CAY10-152J4LF from Bourns Inc. is a high-performance 4-resistor array designed for precision surface-mount applications. This 0804 convex long-side terminal package offers a compact footprint of 2.00mm x 1.00mm (0.079" x 0.039") with a low-profile height of 0.45mm (0.018"), making it ideal for space-constrained PCB designs. Each resistor in the array features a 1.5kΩ resistance with a ±5% tolerance and a ±250ppm/°C temperature coefficient, ensuring stable performance across varying environmental conditions. The isolated circuit type configuration provides independent resistors, enhancing design flexibility.
CAY10-152J4LF Features
- Compact & Robust: Ultra-thin 0804 package with convex terminals for reliable solder joints.
- High Power Handling: 62.5mW power rating per element for demanding applications.
- Stable Performance: ±250ppm/°C TCR ensures minimal resistance drift under thermal stress.
- Industry Compliance: ROHS3 and REACH compliant, with MSL 1 (Unlimited) moisture sensitivity for extended shelf life.
- Manufacturing Efficiency: Supplied in Tape & Reel (TR) packaging for automated assembly.
CAY10-152J4LF Applications
This resistor array excels in precision analog and digital circuits, including:
- Signal Conditioning: Voltage dividers, pull-up/pull-down networks in IoT sensors.
- Consumer Electronics: Dense PCBs in wearables, smartphones, and tablets.
- Industrial Systems: PLCs, motor controls, and instrumentation requiring stable resistance values.
- Automotive Electronics: Infotainment and ADAS modules where space and reliability are critical.
Conclusion of CAY10-152J4LF
The CAY10-152J4LF combines miniaturization, reliability, and performance, making it a superior choice for modern electronics. Its isolated resistors, low TCR, and industry-standard compliance address challenges in high-density designs, while its cost-effective tape-and-reel packaging streamlines mass production. Engineers seeking a balance of precision and durability in resistor networks will find this Bourns array an optimal solution.



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