
Analog Devices Inc.
ADN2873ACPZ
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ADN2873ACPZ Description
ADN2873ACPZ Description
The ADN2873ACPZ from Analog Devices Inc. is a high-performance Laser Diode Driver (LDD) IC designed for 4.25Gbps optical communication systems. Packaged in a compact 24-lead LFCSP (Lead Frame Chip Scale Package), this surface-mount device operates within a 3V to 3.6V supply range, making it suitable for low-power, high-speed applications. It features a single-channel architecture with a modulation current of 90mA and a bias current of 100mA, ensuring precise control for laser diodes. Compliant with ROHS3 and REACH standards, it is ideal for environmentally conscious designs. With an MSL3 (168 hours) rating, it requires careful handling to avoid moisture exposure.
ADN2873ACPZ Features
- High-Speed Performance: Supports data rates up to 4.25Gbps, enabling use in SONET/SDH, Fibre Channel, and Ethernet applications.
- Low Power Consumption: Operates at 31mA supply current, reducing thermal load.
- Precision Current Control: 90mA modulation current and 100mA bias current ensure stable laser output.
- Robust Packaging: 24LFCSP offers excellent thermal dissipation and space efficiency.
- Compliance: ROHS3, REACH Unaffected, and EAR99 classifications simplify global deployment.
- Wide Operating Voltage: 3V–3.6V range accommodates various system designs.
ADN2873ACPZ Applications
- Optical Transceivers: Ideal for SFP, SFP+, and XFP modules in data centers and telecom networks.
- High-Speed Data Links: Suitable for 4.25Gbps Fibre Channel and Gigabit Ethernet systems.
- Test & Measurement Equipment: Provides reliable laser driving for optical signal integrity testing.
- Medical Imaging: Used in precision laser systems requiring low noise and high stability.
Conclusion of ADN2873ACPZ
The ADN2873ACPZ stands out as a high-speed, low-power laser driver with exceptional current control and compact packaging. Its compliance with industry standards and suitability for 4.25Gbps applications make it a preferred choice for optical communication, data centers, and medical devices. Compared to similar models, its efficiency, reliability, and integration ease offer significant advantages for demanding designs.



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