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E2505H58

Description
e2500-type 2.5 gbits/s electroabsorption moudlated isolated laser module (EM-ilm) for ultralong-reach applications
File Size159KB,10 Pages
ManufacturerAgere System(LSI Logic)
Download Datasheet View All

E2505H58 Overview

e2500-type 2.5 gbits/s electroabsorption moudlated isolated laser module (EM-ilm) for ultralong-reach applications

Data Sheet, Rev. 1
September 2001
E2500-Type 2.5 Gbits/s Electroabsorption Modulated Isolated
Laser Module (EM-ILM) for Ultralong-Reach Applications
Applications
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SONET/SDH extended-reach applications
High-capacity DWDM system applications
High-speed data communications
Digitized video
Description
The E2500-Type EM-ILM is a 1.5 µm laser with an
integrated electroabsorptive modulator packaged in
an industry-standard, 14-pin butterfly package. The
device has been designed to be used in 2.5 Gbits/s
extended-reach applications where the distances
between regenerators is in the range of 150 km—
1000 km. To boost the transmitter power high enough
to reach the receiver, the device typically is coupled
with an erbium-doped fiber amplifier (EDFA) such as
Agere Systems Inc.’s 1724 EDFA. The standard
product is specified for use up to 360 km (E2505
Series) and 600 km (E2502 Series).
The E2500 EM-ILM can replace external modulators
in many applications. The nominal input impedance
for the modulator is 50
Ω.
By integrating the
modulator with the laser chip, the device offers a
compact, cost-effective solution for extended-reach
transmission applications. It can also be specified for
WDM applications where wavelength selection is
required. Agere is providing devices compatible with
the ITU-T wavelength standards.
The E2500 EM-ILM, the newest generation of the award-
winning 266-Type EM-ILM, features an integrated modulator
and laser chip, and provides a compact, cost-effective solu-
tion for extended-reach transmissions.
Features
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Integrated electroabsorptive modulator
1.5 µm wavelength
Characterized for 2.5 Gbits/s operation
Very low dispersion penalty over 600 km
Low modulation voltage
Temperature stabilized
Wavelengths selectable to ITU-T standards
Ultrastable wavelength aging performance for
DWDM systems
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