Flyin Opticres Co.,Ltd

awg,aawg,Athermal AWG,Thermal AWG,fwdm, Manufacturer and Supplier - China(CN)

Flyin 40ch 100G Thermal AWG(40ch 100G TAWG)

Flyin 40ch 100G Thermal AWG(40ch 100G TAWG)

Business Information

  • Min. Order : 1 pcs
  • Certificate : CE,FCC,
  • FOB Port : shenzhen
  • Made In : China(CN)
  • Packaging : ABS box
  • Supply Capability : 20000 pcs per month
  • Delivery Time : depends
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Product Features

Flyin Optronics offers a full range of Thermal/Athermal AWG products, including 50GHz, 100GHz and 200GHz Thermal/Athermal AWG. Here we present the generic specification for the 40-channel 100GHz Flat Top Thermal AWG (40 channel TAWG) MUX/DEMUX component supplied for use in DWDM system.

Flyin’s 40 channel 100G Thermal AWG(100G TAWG) is designed for use within the C -band release of DWDM system. To decrease the power dissipation of the devices in different environmental conditions, the TAWG package is special designed with selection of reliable thermal plastic with low thermal conduction, and the TAWG operating temperature is controlled by using foil resist heater or Peltier TEC with thermistor temperature sensor. Different input and output fibers, such as SM fibers, MM fibers and PM fiber can be selected to meet different applications. We can also offer different product packages, inluding special metal box and 19” 1U rackmount.

The planar DWDM components(Thermal/Athermal AWG) from Flyin Optronics are fully qualified according to Telcordia reliability assurance requirements for fiber optic and opto-electronic components (GR-1221-CORE/UNC, Generic Reliability Assurance Requirements for Fiber Optic Branching Components, and Telcordia TR-NWT-000468, Reliability Assurance Practices for Opto-electronic Devices).

 Flyin 40ch 100G Thermal AWG(40ch 100G TAWG)

Optical Specification  (Flat Top Thermal AWG)

Parameters

Condition

Specs

Units

Min

Typ

Max

Number of Channels

 

40

 

Number Channel Spacing

100GHz

100

GHz

Cha. Center Wavelength

ITU frequency.

C -band

nm

Clear Channel Passband

 

±0.1

nm

Wavelength Stability

Maximum range of the wavelength error  of all channels and temperatures in average polarization.

±0.05

nm

-1 dB Channel Bandwidth

Clear channel bandwidth defined by passband shape. For each channel

0.4

 

 

nm

-3 dB Channel Bandwidth

Clear channel bandwidth defined by passband shape. For each channel

0.6

 

 

nm

Optical Insertion Loss at ITU grid

Defined as the minimum transmission at ITU wavelength for all channels. For each channel, at all temperatures and polarizations.

 

4.5

6.0

dB

Adjacent Channel Isolation

Insertion loss difference from the mean transmission at the ITU grid wavelength to the highest power, all polarizations, within the ITU band of the adjacent channels.

25

 

 

dB

Non-Adjacent, Channel

Isolation

Insertion loss difference from the mean transmission at the ITU grid wavelength to the highest power, all polarizations, within the ITU band of the nonadjacent channels.

30

 

 

dB

Total Channel Isolation

Total cumulative insertion loss difference from the mean transmission at the ITU grid wavelength to the highest power, all polarizations, within the ITU band of all other channels, including adjacent channels.

22

 

 

dB

Insertion Loss Uniformity

Maximum range of the insertion loss variation within ITU across all channels, polarizations and temperatures.

 

1.0

1.5

dB

Directivity(Mux Only)

Ratio of reflected power out of any channel(other than channel n)to power in from the input channel n

40

 

 

dB

Insertion Loss Ripple

Any maxima and any minima of optical loss across ITU band, excluding boundary points, for each channel at each port

 

 

0.5

dB

Optical Return loss

Input & output ports

40

 

 

dB

PDL/Polarization Dependent Loss in Clear

Channel Band

Worst-case value measured in ITU band

 

0.3

0.5

dB

Polarization Mode

Dispersion

 

 

 

0.5

ps

Maximum Optical Power

 

 

 

23

dBm

MUX/DEMUX input/ output

Monitoring range

 

-35

 

+23

dBm

IL Represents the worst case over a +/-0.1nm window around the ITU wavelength

PDL was measured on average polarization over a +/- 0.1nm window around the ITU wavelength.

 

Ordering Information

AWG

X

XX

X

XXX

X

X

X

XX

 

Band

Number of Channels

Spacing

1st Channel

Filter Shape

Package

Fiber Length

In/Out Connector

C=C-Band

L=L-Band

D=C+L-Band

X=Customize

16=16-CH

32=32-CH

40=40-CH

48=48-CH

XX=Special

1=100G

2=200G

5=50G

X=Special

C60=C60

H59=H59

C59=C59

H58=H58

XXX=special

G=Gaussian

B=Broad Gaussiar

F=Flat Top

M=Module

R=Rack

X=Special

1=0.5m

2=1m

3=1.5m

4=2m

5=2.5m

6=3m

S=Specify

0=None

1=FC/APC

2=FC/PC

3=SC/APC

4=SC/PC

5=LC/APC

6=LC/PC

7=ST/UPC

S=Specify

Product Specifications

Flyin 40ch 100G Thermal AWG(40ch 100G TAWG)

Flyin Optronics offers a full range of Thermal/Athermal AWG products, including 50GHz, 100GHz and 200GHz Thermal/Athermal AWG. Here we present the generic specification for the 40-channel 100GHz Flat Top Thermal AWG (40 channel TAWG) MUX/DEMUX component supplied for use in DWDM system.

Flyin’s 40 channel 100G Thermal AWG(100G TAWG) is designed for use within the C -band release of DWDM system. To decrease the power dissipation of the devices in different environmental conditions, the TAWG package is special designed with selection of reliable thermal plastic with low thermal conduction, and the TAWG operating temperature is controlled by using foil resist heater or Peltier TEC with thermistor temperature sensor. Different input and output fibers, such as SM fibers, MM fibers and PM fiber can be selected to meet different applications. We can also offer different product packages, inluding special metal box and 19” 1U rackmount.

The planar DWDM components(Thermal/Athermal AWG) from Flyin Optronics are fully qualified according to Telcordia reliability assurance requirements for fiber optic and opto-electronic components (GR-1221-CORE/UNC, Generic Reliability Assurance Requirements for Fiber Optic Branching Components, and Telcordia TR-NWT-000468, Reliability Assurance Practices for Opto-electronic Devices).

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