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HFBR-2521Z Specifications

Detailed technical information and Application Scenarios

Product Details

PartNumberManufactorQuantityAvailability
HFBR-2521ZBROADCOM 754Yes

HFBR-2521Z** is a fiber optic transmitter manufactured by **Broadcom Limited**.

The HFBR-2521Z is a fiber optic transmitter manufactured by Broadcom Limited.

Specifications:

  • Type: Fiber Optic Transmitter
  • Data Rate: Up to 5 MBd (Mega Baud)
  • Wavelength: 660 nm (visible red)
  • Operating Temperature Range: -40°C to +85°C
  • Output Power (min): -18 dBm
  • Fiber Type: 1 mm POF (Plastic Optical Fiber)
  • Connector Type: ST connector
  • Supply Voltage: 4.75V to 5.25V
  • Current Consumption: 60 mA (typical)
  • Package Type: Through-hole

Descriptions:

The HFBR-2521Z is designed for short-distance communication over plastic optical fiber (POF). It is commonly used in industrial, automotive, and networking applications where reliable data transmission is required.

Features:

  • High-speed data transmission (up to 5 MBd)
  • Compatible with 1 mm POF
  • Low power consumption
  • Wide operating temperature range (-40°C to +85°C)
  • Visible red LED for easy alignment
  • ST connector for secure fiber attachment
  • RoHS compliant

This transmitter is part of Broadcom's fiber optic product line, ensuring high performance and durability in harsh environments.

# HFBR-2521Z Fiber Optic Transmitter: Application, Design, and Implementation

## Practical Application Scenarios

The HFBR-2521Z from Broadcom is a high-performance fiber optic transmitter designed for use in industrial, medical, and communication systems requiring reliable data transmission over short to medium distances. Its core applications include:

1. Industrial Automation: The HFBR-2521Z is widely used in factory automation for transmitting control signals and sensor data across noisy environments where EMI/RFI immunity is critical. Its 650 nm red LED source enables efficient coupling with plastic optical fibers (POF), making it suitable for motor control, PLCs, and robotic systems.

2. Medical Equipment: In medical devices such as patient monitoring systems, the component ensures galvanic isolation, preventing ground loops and enhancing patient safety. Its compliance with IEC 60601-1 for electrical isolation makes it ideal for sensitive applications.

3. Data Communication: The transmitter is employed in short-range data links, including intra-rack and inter-rack communication in data centers. Its 5 MBd data rate supports protocols like PROFIBUS and DeviceNet.

4. Automotive Systems: Used in infotainment and diagnostic systems, the HFBR-2521Z provides robust performance in high-vibration environments.

## Common Design-Phase Pitfalls and Avoidance Strategies

1. Fiber Coupling Misalignment: Improper alignment between the LED and fiber can lead to signal loss.

  • *Solution*: Use manufacturer-recommended alignment tools and verify coupling efficiency during prototyping.

2. Thermal Management: Excessive heat can degrade LED performance over time.

  • *Solution*: Ensure proper heat sinking and adhere to the specified operating temperature range (-40°C to +85°C).

3. Signal Integrity Issues: Reflections due to impedance mismatches can distort signals.

  • *Solution*: Terminate fibers correctly and avoid sharp bends that increase attenuation.

4. Power Supply Noise: Noisy power rails can introduce jitter.

  • *Solution*: Implement decoupling capacitors near the supply pins and use low-noise regulators.

5. Inadequate Eye Safety Compliance: The LED’s output must meet Class 1 laser safety standards.

  • *Solution*: Verify compliance with IEC 60825-1 and incorporate failsafe drive circuitry.

## Key Technical Considerations for Implementation

1. Drive Circuitry: The HFBR-2521Z requires a forward current of 20–60 mA. A constant current driver is recommended to maintain stable output power.

2. Compatibility: Ensure compatibility with HFBR-152xZ receivers for optimal performance.

3. Fiber Selection: Use 1 mm POF or 200 µm HCS fibers with NA = 0.3–0.5 for best results.

4. Signal Conditioning: For high-speed applications, pre-emphasis circuits may be necessary to compensate for bandwidth limitations.

5. Environmental Robustness: In harsh environments, consider additional sealing or conformal coating to protect against moisture and contaminants.

By addressing these factors, designers can leverage the HFBR-2521Z’s capabilities effectively while mitigating common risks.

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