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10Gbps lithium niobate intensity modulator
Classification:
Lithium niobate (LiNbO3) electro-optical intensity modulator is fabricated by titanium diffusion or proton exchange process, which has the characteristics of low insertion loss, high modulation bandwidth, low half-wave voltage and high damage power. Mainly used in space optical communication systems, pulse generators, quantum optics and other fields.
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Lithium niobate (LiNbO3) electro-optical intensity modulator is fabricated by titanium diffusion or proton exchange process, which has the characteristics of low insertion loss, high modulation bandwidth, low half-wave voltage and high damage power. Mainly used in space optical communication systems, pulse generators, quantum optics and other fields.
Main Features Features
Low insertion loss
Low drive voltage
DC bias and RF signal separation to ensure long-term stability
High switch extinction ratio
Meets GR-468-CORE standards
Application field Applications
10 Gb/s high-speed transmission equipment
TDM and WDM10Gb/s Transmission System
40 Gb/s, 80 Gb/s coherent transmission system
Performance parameters:
Parameters
Unit
Numerical
Optics
Working wavelength
nm
1525-1605
Insertion loss
dB
≤ 5.5
Extinction ratio (DC)
dB
≥20
Light return loss
dB
≥45
Electricity
RF V π @ DC
V
≤ 6
S11 Return Loss
dB
≤-10
Bias voltage V π
V
≤ 10
Electro-optic bandwidth (-3dBe)
GHz
≥ 8
Mechanical
Connector
-
V Connector
Offset connector
-
2PIN
Environment
Working temperature
℃
0~ 70
Storage temperature
℃
-40~ 80
Overall dimensions:

-
Model
Main features
Application areas
Low insertion loss
Low drive voltage
DC bias and RF signal separation to ensure long-term stability
High switch extinction ratio
Meets GR-468-CORE standards
10 Gb/s high-speed transmission equipment
TDM and WDM10Gb/s Transmission System
40 Gb/s, 80 Gb/s coherent transmission system
Lithium Niobate Multifunctional Integrated Optics (Y-Waveguide)
Ultra-small package size, light weight
Low-loss X-cut Y-transmission lithium niobate optical waveguide
Fabrication of waveguide by annealing proton exchange process, single polarization operation, high chip polarization extinction ratio
Push-pull electrode design to reduce half-wave voltage
Good long-term stability of the device
Fiber Optic Gyroscope (FOG)
Fiber Optic Current Sensor (FOCS)
Hydrophone and other fiber optic sensing fields
Periodic Poled Lithium Niobate (PPLN) Crystal
For use in the visible to mid-infrared wavelength range
Can realize SHG/SFG/DFG and other nonlinear frequency conversion
Change
uniform periodic polarization structure
Precision Waveguide End Surface Polishing and Coating
High Damage Threshold
electric laser display
mid-infrared spectroscopy
all-optical wavelength conversion
optical sensing
scientific research and medical treatment
Environmental detection
Non-linear frequency conversion such as SHG/SFG/DFG can be realized
High efficiency coupling between fiber and chip
High conversion efficiency
High Damage Threshold
Good long-term stability
high power single frequency laser
quantum secure communication
Lidar
optical sensing
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E-mail: sales@fiberlink.com.cn
Address: Building 1, No. 12 Miaoshan East Road, Jiangxia District, Wuhan, Hubei Province, 430073 P.R China
