| Brand Name: | Gracyfiber |
The 50GHz AWG Module is a passive wavelength-division multiplexing component designed for high-density DWDM optical transmission systems. Based on Arrayed Waveguide Grating technology, it can combine multiple closely spaced wavelength channels onto a common optical path or separate a multiplexed optical signal into individual wavelength channels.
The 50GHz channel spacing enables higher wavelength density than wider-grid DWDM configurations, making the module suitable for optical networks where efficient fiber utilization and multi-channel wavelength management are required.
The module can be configured according to system requirements for channel count, center wavelengths, spectral profile, fiber type, connector interface, and package structure.
50GHz Channel Spacing
Designed for dense wavelength-division multiplexing with closely spaced optical channels.
AWG Technology
Uses an Arrayed Waveguide Grating structure for wavelength-selective multiplexing and demultiplexing.
High Channel Density
Supports multiple wavelength channels within a compact spectral range.
MUX and DEMUX Configurations
Can combine individual wavelength channels onto one common fiber or separate a composite DWDM signal into individual channels.
Defined Wavelength Grid
Center wavelengths and channel spacing are specified according to the required DWDM channel plan.
Channel Isolation
Designed to separate adjacent wavelength channels and reduce unwanted inter-channel interference.
Passive Optical Operation
Requires no external electrical power for wavelength routing.
Configurable Module Design
Channel count, fiber type, connector, pigtail length, spectral profile, and package can be specified according to the project.
DWDM optical transmission systems
Metropolitan optical networks
Backbone transmission networks
Data center interconnect
Fiber capacity expansion
Multi-wavelength optical transport
Optical wavelength routing
Optical monitoring systems
Optical test and measurement
Photonic research platforms
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50GHz refers to the nominal frequency spacing between adjacent DWDM channels. It does not represent the data transmission rate or total bandwidth of the module.
It separates or combines multiple optical wavelength channels according to a predefined wavelength grid. In a MUX configuration, several channels are combined onto one common fiber. In a DEMUX configuration, they are separated into individual outputs.
No. The AWG is a passive wavelength-routing device. The actual data rate is determined by the transceivers, modulation format, and transmission system.
A narrower channel spacing allows more wavelength channels to be placed within a given optical spectrum, helping increase fiber utilization in high-density DWDM systems.
No. A splitter divides optical power, while an AWG separates or combines optical signals according to wavelength.
Depending on the product platform, channel count, center wavelength grid, spectral profile, fiber type, connector, and package can be configured according to system requirements.
Yes. An AWG can separate wavelength channels so that downstream monitoring equipment can measure or analyze them. The AWG itself does not perform the measurement.
Important parameters include channel count, channel spacing, center wavelengths, passband, spectral profile, insertion loss, adjacent and non-adjacent isolation, ripple, PDL, return loss, fiber type, connector type, package dimensions, and operating temperature.