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Broadband multimode fiber optic circulator,Broadband Multimode Fiber Optic Circulator Low Loss High Isolation MM Optical Routing Device Fiber Sensing Communication

Broadband multimode fiber optic circulator,Broadband Multimode Fiber Optic Circulator Low Loss High Isolation MM Optical Routing Device Fiber Sensing Communication

Brand Name: Gracyfiber
Detail Information
Place of Origin:
China
Fiber Type:
Multimode
Port Configuration:
3-port
Operation Type:
Passive
Wavelength Range:
Broadband
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Product Description
Broadband multimode fiber optic circulator,Broadband Multimode Fiber Optic Circulator Low Loss High Isolation MM Optical Routing Device Fiber Sensing Communication
1. Product Description

The Broadband Multimode Fiber Optic Circulator is a passive non-reciprocal optical component designed to route multimode optical signals between designated ports in a predefined direction.

In a typical three-port configuration, light entering Port 1 is directed to Port 2, while light entering Port 2 is routed to Port 3. This directional behavior allows forward and reflected optical signals to be separated within the same fiber system.

Designed for broadband multimode applications, the circulator can be integrated into optical sensing, test and measurement, bidirectional transmission, and other systems that require controlled optical signal routing. Operating wavelength, fiber type, port configuration, connector type, and package can be specified according to the application.

2. Key Features
  • Non-Reciprocal Optical Routing
    Directs optical signals sequentially between designated ports.
  • Multimode Fiber Configuration
    Designed for optical systems using multimode fiber, subject to the specified fiber type and core size.
  • Broadband Operation
    Can be configured for a defined wavelength range according to system requirements.
  • Separation of Forward and Reflected Signals
    Suitable for applications where transmitted and returned optical signals need to be routed to different ports.
  • Passive Optical Operation
    Requires no external electrical power for optical signal routing.
  • Compact System Integration
    Can be incorporated into optical instruments, sensing assemblies, test platforms, and custom optical modules.
  • Configurable Interfaces
    Fiber type, connectors, pigtail length, package, and port configuration can be selected according to project requirements.
3. Main Applications
  • Multimode fiber sensing systems
  • Optical test and measurement equipment
  • Bidirectional optical transmission
  • Reflection monitoring systems
  • Fiber characterization equipment
  • Optical source protection
  • Multimode laboratory optical systems
  • Optical monitoring modules
  • Custom photonic assemblies
  • Research and development platforms

Broadband multimode fiber optic circulator,Broadband Multimode Fiber Optic Circulator Low Loss High Isolation MM Optical Routing Device Fiber Sensing Communication

Broadband multimode fiber optic circulator,Broadband Multimode Fiber Optic Circulator Low Loss High Isolation MM Optical Routing Device Fiber Sensing Communication

4. FAQ
Q1: What does a multimode fiber optic circulator do?

It routes multimode optical signals between ports in a predefined direction. In a typical 3-port device, light travels from Port 1 to Port 2 and from Port 2 to Port 3.

Q2: Is a circulator the same as an optical splitter?

No. A splitter divides optical power into multiple output paths, while a circulator routes optical signals directionally between different ports.

Q3: Does the circulator increase the transmission speed?

No. A circulator is a passive routing component and does not determine the data transmission rate of the optical system.

Q4: Why is broadband operation important?

Broadband operation allows the circulator to work across a defined wavelength range rather than only around a narrow center wavelength. The exact wavelength range should be confirmed from the product specification.

Q5: What multimode fiber types can be used?

This depends on the product design. Fiber core size, OM grade, numerical aperture, and operating wavelength should be confirmed before ordering.

Q6: What parameters should be confirmed before ordering?

The main parameters include operating wavelength range, fiber type, port count, insertion loss, isolation, return loss, directivity, connector type, pigtail length, package dimensions, and operating temperature.