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D2547P871

Description
Laser Diode, 1602nm,
CategoryLED optoelectronic/LED    photoelectric   
File Size260KB,10 Pages
ManufacturerBroadcom
Download Datasheet Parametric View All

D2547P871 Overview

Laser Diode, 1602nm,

D2547P871 Parametric

Parameter NameAttribute value
Reach Compliance Codecompliant
Maximum forward current0.225 A
Maximum forward voltage2.5 V
Installation featuresSURFACE MOUNT
Maximum operating temperature75 °C
Minimum operating temperature-5 °C
Optoelectronic device typesLASER DIODE
peak wavelength1602 nm
surface mountYES
Base Number Matches1
Data Sheet
March 2006
Wavelength-Selectable High-Power
D2547P-Type CW DFB Laser Module
Applications
n
Telecommunications:
— Dense WDM
— SONET/SDH OC-192/ STM-64
— Extended and ultra-long reach
— Undersea systems
Digital video
n
Description
The D2547P-Type DFB laser module is designed for
use with an external lithium niobate modulator and
also in applications where high power (20 mW) is
required.
The laser comes packaged in an industry-standard
14-pin butterfly module with a polarization-maintain-
ing fiber pigtail.
Temperature-stabilized with a thermoelectric cooler
(TEC) and thermistor, the package is available in C
and L band ITU-T grid wavelengths on a 100 GHz
spacing plan.
D2547P does not contain a wavelength locker, which
is not needed for high-reliability operation in
100GHz-spaced applications. For a 20 mW CW laser
butterfly version with integrated wavelength locker
and available on a 50 GHz grid, refer to the compan-
ion product data sheet for D3587P.
Featuring wavelength selection to the DWDM ITU-T grid, the
D2547P Laser Modules are ideally suited for use with external
lithium niobate modulators, and in high-power (20 mW) appli-
cations.
Features
n
High-performance, multiquantum-well (MQW),
distributed-feedback (DFB) laser
D2547P-Type is offered on 100 GHz ITU grid
wavelengths ranging from 1528.77 nm—
1610.06 nm
Polarization-maintaining fiber pigtail
For use with lithium niobate modulators
High optical power (20 mW, CW)
Hermetic, 14-pin package
n
n
n
n
n
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