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ADN2915ACPZ

CDR SONET/SDH 3.63V 24-Pin LFCSP EP Tray

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Overview of ADN2915ACPZ

The ADN2915ACPZ is a 10.7Gbps dual-channel differential receiver IC designed for fiber optic communication systems. It features low power consumption and high-speed operation, making it ideal for demanding optical communication applications.

Pinout

(Note: The pin configuration below is a general representation. Refer to the specific datasheet for precise details.)

  • DIF5N: Differential Input Channel 5 Negative
  • DIF5P: Differential Input Channel 5 Positive
  • DIF4N: Differential Input Channel 4 Negative
  • DIF4P: Differential Input Channel 4 Positive
  • DIF3N: Differential Input Channel 3 Negative
  • DIF3P: Differential Input Channel 3 Positive
  • DIF2N: Differential Input Channel 2 Negative
  • DIF2P: Differential Input Channel 2 Positive
  • DIF1N: Differential Input Channel 1 Negative
  • DIF1P: Differential Input Channel 1 Positive
  • VCC: Positive Power Supply
  • GND: Ground

Circuit Diagram

Include a circuit diagram illustrating the connections and operation of the ADN2915ACPZ IC for a visual representation.

Key Features

  • High-Speed Operation: Supports data rates up to 10.7Gbps, enabling high-performance fiber optic communication.
  • Low Power Consumption: Designed for energy-efficient operation in optical communication systems.
  • Dual-Channel Receiver: Provides two differential input channels for versatile connectivity.
  • Wide Operating Voltage Range: Operates within a wide voltage range for compatibility with various systems.
  • Robust Design: Features robust construction for reliable performance in challenging environments.

Note: For detailed technical specifications, please refer to the ADN2915ACPZ datasheet.

Application

  • Fiber Optic Communication Systems: Ideal for use in high-speed fiber optic communication networks.
  • Telecommunication Infrastructure: Suitable for telecommunication systems requiring high-speed data transmission.
  • Data Centers: Used in data center applications for efficient and reliable optical communication.

Functionality

The ADN2915ACPZ is a dual-channel high-speed receiver IC designed for robust and efficient operation in fiber optic communication systems. It provides reliable data reception for demanding optical communication applications.

Usage Guide

  • Power Supply: Connect VCC (Pin 11) to the positive power supply and GND (Pin 12) to the ground.
  • Input Connections: Connect differential input channels (DIF1N/DIF1P, DIF2N/DIF2P, etc.) to the corresponding signals.
  • System Integration: Integrate the ADN2915ACPZ into your optical communication system according to the datasheet guidelines.

Frequently Asked Questions

Q: What is the maximum data rate supported by the ADN2915ACPZ?
A: The ADN2915ACPZ supports data rates up to 10.7Gbps, making it suitable for high-speed optical communication.

Q: Is the ADN2915ACPZ suitable for long-distance communication?
A: Yes, the ADN2915ACPZ can be used in long-distance communication applications with the appropriate optical components and system design.

Equivalent

For similar functionalities, consider these alternatives to the ADN2915ACPZ:

  • PS2911-1:A dual-channel differential receiver IC with comparable performance characteristics to the ADN2915ACPZ.
  • MAX399:A high-speed optical receiver IC offering similar functionality and performance in optical communication systems.

Specifications

The followings are basic parameters of the part selected concerning the characteristics of the part and categories it belongs to.

Product Category Timers & Support Products RoHS Details
Series ADN2915 Type Clock Recovery
Supply Voltage - Max 3.63 V Supply Voltage - Min 1.62 V
Minimum Operating Temperature - 40 C Maximum Operating Temperature + 85 C
Mounting Style SMD/SMT Package / Case LFCSP-24
Brand Analog Devices Moisture Sensitive Yes
Operating Supply Current 333 mA Pd - Power Dissipation 486.5 mW
Product Type Timers & Support Products Factory Pack Quantity 490
Subcategory Clock & Timer ICs Supply Type Single
Unit Weight 0.575989 oz

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