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SCW1301F-200FCR

Description
Telecom / Datacom Laser Modules
File Size186KB,2 Pages
ManufacturerMACOM
Websitehttp://www.macom.com
Download Datasheet View All

SCW1301F-200FCR Overview

Telecom / Datacom Laser Modules

M/A-COM Technology Solutions
4 Olsen Avenue
Edison, NJ 08820 USA
Voice (732) 549-9001
Fax: (732) 906-1559
Internet:
www.laserdiode.com
Email: sales@laserdiode.com
Laser Diode Incorporated
ISO 9001:2000 Certified
Telecom / Datacom
Laser Modules
Wavelengths: 1310nm and 1550nm
Power to 2mW
Singlemode 9/125/900 fiber
14-pin DIP
High Stability Fiber Coupling
Hermetically Sealed
RoHS Compliant
Typical Applications:
Telecom data transmission
Instrument laser
Light source
Laser Diode Incorporated’s 1310nm and 1550nm Fabry-Perot lasers offer excellent output power and
wavelength stability.
These modules are ideally used in short, intermediate and long distance
telecommunication systems such as SONET, SDH and Ethernet or Fiberchannel systems.
Specifications and Limits @ 25
o
C
Optical Characteristics
Power Options
Wavelength Range
Spectral Width FWHM (typ)
Drive Characteristics
Threshold current (typ;max)
Modulation current (typ;max)
Forward voltage maximum
Maximum optical rise/fall time
Monitor Diode
Photocurrent at P
MAX
(min;max)
Maximum dark current
Maximum capacitance
Maximum rise/fall time
Maximum reverse voltage
Tracking error*
Temperature Range
Module operating temperature
Storage temperature
Thermoelectric Cooler
Maximum cooler capacity
Current for maximum capacity
Maximum current
Voltage for maximum current
Thermistor
Resistance at T = 25
o
C
Temperature coefficient
uA
nA
pF
ns
V
dB
o
o
Units
uW
nm
nm
mA
mA
V
ns
1310nm
500 / 1000 / 2000
1270-1330
2
6;15
15;25
2
0.5
50;1200
10
6
2
10
±0.5
-20 to +70
-40 to +85
45
0.75
1.2
1.2
9.8-10.2
-4.4
1550nm
500 / 1000 / 2000
1520-1580
1.3
10;14
12;16
1.4
0.5
50;1200
10
6
2
10
±0.5
-20 to +70
-40 to +85
45
0.75
1.2
1.2
9.8-10.2
-4.4
C
C
o
C
A
A
V
%/
o
C
*Tracking error is the variation of the linear relationship between fiber-coupled power and monitor diode current over the
specified operation temperature range
LDI Document #10-4400-0012 Rev. B 1/20/09

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