| Brand Name: | Gracyfiber |
The 48 Channel AWG Module is a passive wavelength-division multiplexing component designed for high-channel-count optical transmission and wavelength routing. Based on Arrayed Waveguide Grating technology, it can combine multiple wavelength channels onto a common optical path or separate a multiplexed optical signal into 48 individual wavelength channels.
Supports multiplexing or demultiplexing of up to 48 optical wavelength channels.
Uses an Arrayed Waveguide Grating structure for wavelength-selective optical routing.
Integrates multiple wavelength channels into a compact passive optical module.
Can combine individual wavelength channels onto one common fiber or separate a composite signal into individual channels.
Center wavelengths and channel spacing are determined according to the required wavelength plan.
Designed to separate wavelength channels and reduce unwanted inter-channel interference.
Requires no external electrical power for wavelength multiplexing or demultiplexing.
Fiber type, connectors, pigtail length, spectral profile, and package can be specified according to project requirements.
DWDM transmission systems
Metropolitan optical networks
Backbone optical networks
Data center interconnect
Fiber capacity expansion
Optical wavelength routing
Multi-wavelength transmission systems
Optical monitoring platforms
Optical test and measurement systems
Photonic research and laboratory systems
A 48 Channel AWG Module is a passive optical component that uses Arrayed Waveguide Grating technology to combine or separate 48 wavelength channels.
An AWG MUX combines multiple wavelength channels into one common optical path, while an AWG DEMUX separates a multiplexed signal into individual wavelength channels.
No. An AWG is a passive wavelength-routing component. Optical modulation is performed by transmitters or modulators.
Yes. The AWG can separate individual wavelength channels for downstream monitoring or measurement equipment. It does not perform the measurement itself.
A 48-channel design allows multiple wavelength channels to share a common fiber, helping increase fiber utilization in high-channel-count optical transmission systems.
Depending on the product platform, different channel spacings and wavelength grids can be provided. The exact configuration should be confirmed before production.
Gaussian AWG modules have a narrower spectral response around the channel center, while flat-top designs provide a wider usable passband. The appropriate option depends on the system requirements.
Typical parameters include channel count, channel spacing, center wavelengths, passband, insertion loss, adjacent and non-adjacent isolation, ripple, PDL, return loss, spectral profile, fiber type, connector type, package dimensions, and operating temperature.
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