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CAT16-223J2LF Description
CAT16-223J2LF Description
The CAT16-223J2LF from Bourns Inc. is a compact, surface-mount resistor network designed for high-density PCB applications. This dual-resistor array features two isolated 22kΩ resistors with a ±5% tolerance and a ±200ppm/°C temperature coefficient, ensuring stable performance across varying environmental conditions. Encased in a 0606, Concave package (1.60mm x 1.60mm x 0.75mm), it offers a space-saving solution for modern electronics. With a power rating of 62.5mW per element, this RoHS3-compliant and REACH-unaffected component is ideal for precision circuits requiring reliable resistance matching. Its Tape & Reel (TR) packaging facilitates automated assembly processes.
CAT16-223J2LF Features
- Dual Isolated Resistors: Two independent 22kΩ resistors in a single package, reducing component count.
- Compact Footprint: 0606 (1.6mm x 1.6mm) concave package with a low 0.75mm profile, ideal for space-constrained designs.
- Stable Performance: ±200ppm/°C temperature coefficient and ±5% tolerance ensure consistent operation.
- Automation-Friendly: Supplied in Tape & Reel (TR) for efficient pick-and-place assembly.
- Compliance: Meets RoHS3 and REACH standards, with an ECCN of EAR99 and HTSUS 8533.10.0057.
CAT16-223J2LF Applications
This resistor network excels in applications requiring precision and miniaturization, such as:
- Signal Conditioning: Voltage dividers and pull-up/pull-down circuits in sensors and IoT devices.
- Consumer Electronics: Dense PCBs in smartphones, wearables, and audio equipment.
- Industrial Controls: Isolated resistor networks for PLCs and instrumentation.
- Automotive Electronics: Auxiliary circuits where board space is critical.
Conclusion of CAT16-223J2LF
The CAT16-223J2LF combines Bourns' reliability with a compact, high-performance design, making it a superior choice for engineers prioritizing space efficiency and resistance stability. While marked as obsolete, its robust specifications ensure continued suitability for legacy designs or replacements in precision analog and digital circuits. Its isolation and tolerance characteristics outperform similar arrays in noise-sensitive environments.



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