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Low Temperature 32ch Athermal AWG DWDM

Gezhi Photonics Co.,Ltd

Low Temperature 32ch Athermal AWG DWDM

Brand Name : GEZHI OEM

Model Number : AWG32CH

Certification : CE/RoHS/ISO9001

Place of Origin : China

MOQ : 1pcs

Price : Get Latest Price

Payment Terms : T/T, Paypal,Western Union

Supply Ability : 1000pcs per month

Delivery Time : 5-10 work days

Packaging Details : paper box with foam

Product Name : AAWG

Type : Dual Fiber

Package : 1U Rackmount

Wavelength : C-band @ITU Grid

Channel Number : 32Channel or 40CH

Connector : LC/PC

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Low Temperature 32ch Athermal AWG DWDM

The planar DWDM components (Thermal/Athermal AWG) from GEZHI 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).

Features

Applications

  • Requires no electrical power supply
  • 50/100GHz channel spacing
  • 32/40/44-channel with option upto 88-channel
  • Available in Mux and Dmux configurations
  • Low IL, high channel isolation
  • DWDM fiberoptic network
  • Metro and long-jaul networks
  • WDM PON
  • FTTH

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=Special

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

Specifications

Parameters Condition Specs Units
Min Typ Max
Number of Channels 41
Number Channel Spacing 100GHz 100 GHz
Cha. Center Wavelength ITU frequency. C -band nm
Clear Channel Passband ±12.5 GHz
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 0.24 nm
-3 dB Channel Bandwidth Clear channel bandwidth defined by passband shape. For each channel 0.43 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. 29 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. 1.5 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 1.2 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 wavelengt

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


Product Tags:

sfp fiber optic transceiver

      

sfp transceiver modules

      
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