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MWDMG1415001114

Description
Micro-Optic WDM
File Size230KB,2 Pages
ManufacturerOplink(Molex)
Websitehttp://www.oplink.com
Download Datasheet View All

MWDMG1415001114 Overview

Micro-Optic WDM

Green
1480/1550 nm Micro-Optic WDM
MWDMG1514 Series
Product Description
Oplink’s Micro-Optic Wavelength Division Multiplexer (MWDM) is based on thin-
film filter technology and patented athermal platform for optical device. This de-
vice has very flat and wide passband, low insertion loss, and high isolation which
makes it ideal for combining pump (1480nm) and signal light (1550nm) in Opti-
cal Fiber Amplification Systems. The MWDM is used in high-power applications
in DWDM systems. Oplink MWDM devices are Bellcore GR-1221 qualification
tested and complied with industry green initiatives such as Rohs and WEEE. All
Oplink products are epoxy-free in the optical path. path.
Performance Specificationns
MWDMG1514 Series
Min
Typical
Max
Unit
Features
Pass Channel Wavelength Range λ1
Reflection Channel Wavelength
Range λ2
Insertion Loss *
Isolation
Passband Ripple
Directivity
Return Loss
Polarization Dependent Loss
Polarization Mode Dispersion
Maximum Power Handling
Fiber Type
Operating Temperature
Storage Temperature
Package Dimensions
**
Type 1514
Type 1415
Type 1514
Type 1415
1528
1440
1440
1528
1610
1493
1493
1610
0.7
0.5
nm
nm
nm
nm
dB
dB
Environmental Green Plan
Compliance
Wide Operating Wavelength Range
Low Insertion Loss
High Channel Isolation
Ultra Flat Wide Passband
Highly Stable & Reliable
Epoxy-free Optical Path
Pass Channel @ λ1
Reflect Channel @ λ2
Reflect Channel @ λ1
Pass Channel @ λ2
14
30
0.15
50
50
0.1
0.05
500
Corning SMF-28
0 to +70
-40 to +85
250 μm Bare Fiber
900 μm Loose Tube
P1: (ø) 5.5 x (L) 34.0
P2: (ø) 5.5 x (L) 40.0
dB
dB
dB
dB
ps
mW
°C
°C
mm
Applications
Fiberoptic Amplifiers
WDM Monitoring
Note:
* Values are referenced without connector loss.
** The mechanical tolerance should be +/-0.2 mm on all package dimensions unless otherwise custom speci-
fied.
*** The maximum IL is under all states of polarization and within the full operating temperature and
wavelength ranges specified
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