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FU-68PDF-V510M194B fiches techniques PDF

Mitsubishi Electric Semiconductor - 1.58 um (L-Band) DFB-LD MODULE WITH POLARIZATION MAINTAINING FIBER PIGTAIL (WAVELENGTH SELECTED/ BIAS CIRCUIT INTEGRATED/ DIGITAL APPLICATION)

Numéro de référence FU-68PDF-V510M194B
Description 1.58 um (L-Band) DFB-LD MODULE WITH POLARIZATION MAINTAINING FIBER PIGTAIL (WAVELENGTH SELECTED/ BIAS CIRCUIT INTEGRATED/ DIGITAL APPLICATION)
Fabricant Mitsubishi Electric Semiconductor 
Logo Mitsubishi Electric Semiconductor 





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FU-68PDF-V510M194B fiche technique
MITSUBISHI (OPTICAL DEVICES)
FU-68PDF-V510MxxxB
1.58 µm (L-Band) DFB-LD MODULE WITH POLARIZATION MAINTAINING FIBER PIGTAIL
(WAVELENGTH SELECTED, BIAS CIRCUIT INTEGRATED, DIGITAL APPLICATION)
DESCRIPTION
Module type FU-68PDF-V510MxxB is a 1.58µm
(L-Band) DFB-LD module with polarization
maintaining optical fiber.
This module is suitable to a CW light source for
external modulator for use in 2.5Gb/s and 10Gb/s
digital optical communication systems.
This module is prepared to expand the wavelength
channels into L-Band for Dense-WDM transmission.
FEATURES
l Input impedance is 25
l Multi quantum wells (MQW) DFB Laser Diode
module
l Emission wavelength is in 1.58µm band
l Polarization maintaining optical fiber pig-tail
l Built-in optical isolator
l Built-in thermal electric cooler
l Butterfly package
l With photodiode for optical output monitor
APPLICATION
High speed transmission systems (~10Gb/s)
Dense-WDM systems
OPTION
l Wavelength option:
1565nm~1625nm are available
ABSOLUTE MAXIMUM RATINGS (Tld=Tset)
Parameter
Symbol
Conditions
Rating
Unit
Laser diode Optical output
Pf
CW
15 mW
power
Forward current
If
CW
150 mA
Reverse voltage
Vrl
-
2V
Photodiode Reverse voltage
Vrd
-
20 V
Forward current
Ifd
-
2 mA
Thermo-
Cooler current
Ipe
-
1.3 A
electric cooler Cooler voltage
(Note)
Vpe
-
3.1 V
Operating case temperature
Tc -
-20 ~ 70
°C
Storage temperature
Tstg -
-40 ~ 85
°C
Note) Even if the thermo-electric cooler (TEC) is operated within the rated conditions, uncontrolled current
loading or operation without heatsink may easily damage the module by exceeding the storage
temperature range. Thermistor resistance should be properly monitored by the feedback circuit during TEC
operation to avoid the catastrophic damage.

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