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DM5-8824D1-CC02 Specifications

Detailed technical information and Application Scenarios

Product Details

PartNumberManufactorQuantityAvailability
DM5-8824D1-CC02Agilent/AVAGO236Yes

Part Number:** DM5-8824D1-CC02 **Manufacturer:** Agilent/AVAGO ### **Specifications:** - **Type:** Optical Transceiver Module - **Form Factor:** SFP (Small Form-factor Pluggable) - **Data Rate:** 1.

Part Number: DM5-8824D1-CC02

Manufacturer: Agilent/AVAGO

Specifications:

  • Type: Optical Transceiver Module
  • Form Factor: SFP (Small Form-factor Pluggable)
  • Data Rate: 1.25 Gbps
  • Wavelength: 1310 nm
  • Transmission Distance: Up to 10 km (SMF, Single-Mode Fiber)
  • Connector Type: LC Duplex
  • Operating Temperature Range: 0°C to +70°C
  • Supply Voltage: 3.3V
  • Compliance: RoHS Compliant

Descriptions:

The DM5-8824D1-CC02 is a high-performance SFP optical transceiver designed for 1.25 Gbps data communication over single-mode fiber. It supports a transmission distance of up to 10 km and operates at a wavelength of 1310 nm.

Features:

  • Hot-pluggable SFP footprint
  • Compliant with IEEE 802.3z (1000BASE-LX)
  • Digital Diagnostic Monitoring (DDM) support
  • Low power consumption
  • Metal housing for enhanced EMI performance
  • Class 1 Laser Safety Certified

This module is suitable for use in Gigabit Ethernet, Fiber Channel, and other high-speed networking applications.

# DM5-8824D1-CC02: Technical Analysis and Implementation Guide

## Practical Application Scenarios

The DM5-8824D1-CC02, a high-performance optoelectronic component from Agilent/AVAGO, is widely used in industrial and communication systems requiring precise optical sensing and signal transmission. Key applications include:

1. Fiber Optic Communication Systems

  • The component serves as a high-speed optical transceiver in data centers and telecom networks, enabling reliable signal conversion between electrical and optical domains. Its low latency and high bandwidth make it suitable for 10G/40G Ethernet and SONET/SDH applications.

2. Industrial Automation

  • In automated manufacturing, the DM5-8824D1-CC02 is deployed for optical encoders and position sensing, where accuracy and durability are critical. Its robust design ensures stable performance in harsh environments with vibration and temperature fluctuations.

3. Medical Imaging Equipment

  • The device is utilized in laser-based diagnostic systems, such as optical coherence tomography (OCT), due to its high signal-to-noise ratio and precision.

4. Military/Aerospace Systems

  • Its radiation-hardened variants (if applicable) are used in avionics and secure communication links, where reliability under extreme conditions is paramount.

## Common Design-Phase Pitfalls and Avoidance Strategies

1. Thermal Management Issues

  • *Pitfall:* Inadequate heat dissipation can degrade performance or cause premature failure.
  • *Solution:* Implement proper heatsinking and ensure airflow in the enclosure. Thermal simulations during PCB layout are recommended.

2. Signal Integrity Challenges

  • *Pitfall:* High-frequency signal degradation due to improper impedance matching or parasitic capacitance.
  • *Solution:* Use controlled impedance traces, minimize trace lengths, and employ termination resistors where necessary.

3. Optical Misalignment

  • *Pitfall:* Poor alignment between the component and fiber optic cables leads to insertion loss.
  • *Solution:* Use precision alignment fixtures during assembly and verify alignment with optical power meters.

4. Power Supply Noise

  • *Pitfall:* Electrical noise from switching regulators affects sensitive analog circuits.
  • *Solution:* Implement low-noise LDO regulators and decoupling capacitors near the power pins.

## Key Technical Considerations for Implementation

1. Electrical Interface Compliance

  • Ensure compatibility with industry standards (e.g., SFP+ for fiber optics) and verify voltage/current requirements.

2. Environmental Robustness

  • Confirm operating temperature ranges and, if needed, select conformally coated or ruggedized variants.

3. Optical Performance Validation

  • Test insertion loss, return loss, and eye diagram integrity to meet system specifications.

4. Regulatory Compliance

  • Verify adherence to RoHS, REACH, and applicable safety certifications for target markets.

By addressing these factors, designers can maximize the reliability and performance of the DM5-8824D1-CC02 in their applications.

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