Shenzhen Optico Communication Co., Ltd. is one of the most credible manufacturers and suppliers of 100g 40ch demux aawg nc in China. Please feel free to wholesale high quality customized products at competitive price form our factory. If you have any enquiry about free sample, please feel free to email us.
100G 40CH Demux AAWG NC
OPTICO's 100G 40CH Flat-top Athermal-AWG (NC) B has an 800mm long monitoring port and an 82mm long branch output terminal. It is one of the top and most popular versions in our inventory.
It is a passive module based on PLC (athermal arrayed waveguide grating) technology that does not require additional power or temperature control. It has the advantages of high integration, good uniformity, low PDM, and low insertion loss. OPTICO's AAWG has A variety of channel numbers, packaging methods, and expansion ports are available for selection, and are perfectly suitable for long-distance communications such as WAN, backbone networks, and data centers. It is a cost-effective device for the upcoming 5G network center.This is only to prevent this product for your reference.
| Parameter | Symbol | Description | Value | Unit | ||
| Min. | Typ. | Max. | ||||
| Output Channel | CH | 40 | ||||
| Channel Spacing | 100 | GHz | ||||
| Reference Passband | PB | @ITU wavelength | -12.5 | - | +12.5 | GHZ |
| Wavelength Accuracy | Δλ | Offset from ITU: -10℃~70℃ | -0.050 | +0.050 |
nm |
|
| Insertion Loss | IL | Worst IL Passband | -5.5 | dB | ||
| IL Uniformity | IL Unif. | Difference between max IL and min. IL | 1 | dB | ||
| PDL | PDL | Max. case@passband | 0.5 | dB | ||
| Ripple | Ripple | @passband | 0.5 | dB | ||
| 1dB Bandwidth | BW1 | 1dB down from the peak IL | 0.4 | nm | ||
| 3dB Bandwidth | BW3 | 3dB Down from the peak IL | 0.6 | nm | ||
| Adjacent Crosstalk | Ax | The difference between I.L transmission in passband. | 25 | dB | ||
| Non-Adjacent Crosstalk | nAx | The difference between I.L and adjacent channel's transmission in passband | 30 | dB | ||
| Total Crosstalk | Tx | Cumulative crosstalk of all other channels | 22 | dB | ||
| Return Loss | RL | Input& Output | -40 | dB | ||
| Polarization Mode Dispersion | PMD | 0.5 | ps | |||
Multiple transmission methods are available
OPTICO's 100G AAWG module has 32, 40, 48 channels, and can add expansion and monitoring ports according to customer requirements.

40CH 100G AAWG single fiber bidirectional transmission

40CH 100G AAWG single fiber bidirectional transmission with EXP and Monitoring port

40CH 100G AAWG dual fiber bidirectional transmission

40CH 100G AAWG dual fiber bidirectional transmission with EXP and Monitoring port
Loss comparison of Gaussian and flat-top 100G 40CH AAWG

Gaussian AAWG

Flat top AAWG
Highlights

High channel isolation

Industril Grade
Project Case
Overlaying 10Gbps Networks with Additional 40Gbps or 100Gbps Services
How to add 40Gbps and 100Gbps services to your existing metro networks without effecting the legacy installation?
In fact, you just need to plug 40G or 100G fiber optic transceiver into the terminal equipment (Ethernet switch, router etc.) , then use the patch cable to connect it to your existing DWDM network via a 1310nm band pass port on the DWDM multiplexer.
Since the 1310nm band port is integrated into a 40 channels 100GHz DWDM multiplexer, then this set-up allows the transport of up to 40 x10Gbps plus 100Gbps over one fiber pair, in total 500Gbps, but without replacing any infrastructure.

Structure Dimensions

How we can stand by you
Quick response within 24 hours
One-to-one consulting Service
Professional technical team support (very low PDL and crosstalk/ Grade B connectors)
Super strict quality control (Real 1000 times plug experiment)
Huge production capacity
Never change prices arbitrarily
Hot Tags: 100g 40ch demux aawg nc, China, manufacturers, suppliers, factory, wholesale, customized, Arrayed Waveguide Grating AWG DWDM, AWG Arrayed Wave guide Grating
100G 40CH Demux AAWG NC
| Parameter | Symbol | Description | Value | Unit | ||
| Min. | Typ. | Max. | ||||
| Output Channel | CH | 40 | ||||
| Channel Spacing | 100 | GHz | ||||
| Reference Passband | PB | @ITU wavelength | -12.5 | - | +12.5 | GHZ |
| Wavelength Accuracy | Δλ | Offset from ITU: -10℃~70℃ | -0.050 | +0.050 |
nm |
|
| Insertion Loss | IL | Worst IL Passband | -5.5 | dB | ||
| IL Uniformity | IL Unif. | Difference between max IL and min. IL | 1 | dB | ||
| PDL | PDL | Max. case@passband | 0.5 | dB | ||
| Ripple | Ripple | @passband | 0.5 | dB | ||
| 1dB Bandwidth | BW1 | 1dB down from the peak IL | 0.4 | nm | ||
| 3dB Bandwidth | BW3 | 3dB Down from the peak IL | 0.6 | nm | ||
| Adjacent Crosstalk | Ax | The difference between I.L transmission in passband. | 25 | dB | ||
| Non-Adjacent Crosstalk | nAx | The difference between I.L and adjacent channel's transmission in passband | 30 | dB | ||
| Total Crosstalk | Tx | Cumulative crosstalk of all other channels | 22 | dB | ||
| Return Loss | RL | Input& Output | -40 | dB | ||
| Polarization Mode Dispersion | PMD | 0.5 | ps | |||





