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MIOC131000311H1 Datasheet, PDF (1/2 Pages) OPLINK Communications Inc. – 3-port Polarization Insensitive Miniature Optical Circulators | |||
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3-port Polarization Insensitive
Miniature Optical Circulators
MIOC3 Series
Product Description
Oplinkâs polarization insensitive miniature circulator features excellent opti-
cal characteristics over a wide wavelength range while delivering a very small
form factor. It possesses low insertion loss, high isolation, and low PDL making
it an ideal candidate for EDFA, add/drop, dynamic gain equalization, dispersion
compensation and other optical network applications.
Oplink can provide customized designs to meet specialized feature applica-
tions. Also, Oplink offers modular assemblies that integrate other components
to form a full function module or subsystem.
Performance Specificationns
MIOC3 Series
Min
Typical
Max Unit
1310
1290 ~ 1330
Operating Wavelength Range ( λOp )
C Band
L Band
1525 ~ 1565
nm
1570 ~ 1610
C+L Band
1525 ~ 1610
Insertion Loss (1â2 or 2â3 @ λOp ,
TOp , SOP, exclude connectors)
1310, C or L
C+L Band
0.5
0.7
dB
0.7
0.9
Polarization Dependent Loss (PDL)
1310, C or L
C+L Band
0.1
dB
0.2
1310, C or L
Polarization Mode Dispersion (PMD)
C+L Band
0.06
ps
0.1
Channel Isolation (2â1, 3â2, 4â3 1310, C or L
38
@ λOp , TOp , SOP)
C+L Band
32
dB
Directivity (1â3)
50
dB
Return Loss (RL)
50
dB
Chromatic Dispersion (CD)
3
ps/nm
Optical Power Handling
500
mW
Operating Temperature Rang (Top)
0 to +70
°C
Storage Temperature
-40 to +85
°C
Fiber Type
Corning SMF-28
Color Code
Port 1: black; Port 2 & 3: clear
Physical Dimensions
(Φ) 5.5 x (L) 38.0
mm
Note:
1) The maximum IL is under all states of polarization and within the full operating temperature and wavelength
ranges specified..
2) All the parameters are excluding connectors.
Features
ï² Smallest Package Size
ï² Low Insertion Loss
ï² Low PDL
ï² High Channel Isolation
ï² Highly Stable & Reliable
ï² Epoxy-free Optical Path
ï² Low Dispersion
Applications
ï² Optical Amplification
ï² Metropolitan Area Network
ï² Dynamic Gain Equalization
ï² Dispersion Compensation
ï² Laboratory R&D
R05.20090115
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