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STH51007N

Description
Laser Diode Emitter, 1280nm Min, 1330nm Max, 1000Mbps, SC Connector, TO-46, Panel Mount, HERMETIC SEALED, SIMILAR TO TO-46, 4 PIN
CategoryWireless rf/communication    Optical fiber   
File Size235KB,10 Pages
ManufacturerInfineon
Websitehttp://www.infineon.com/
Download Datasheet Parametric View All

STH51007N Overview

Laser Diode Emitter, 1280nm Min, 1330nm Max, 1000Mbps, SC Connector, TO-46, Panel Mount, HERMETIC SEALED, SIMILAR TO TO-46, 4 PIN

STH51007N Parametric

Parameter NameAttribute value
MakerInfineon
package instructionTO-46
Reach Compliance Codeunknown
body height15.6 mm
Body length or diameter12.5 mm
Connection TypeSC CONNECTOR
data rate1000 Mbps
maximum descent time0.27 ns
Fiber optic equipment typesLASER DIODE EMITTER
Fiber typeSMF
Installation featuresPANEL MOUNT
Number of channels2
Maximum operating temperature85 °C
Minimum operating temperature-40 °C
Maximum operating wavelength1330 nm
Minimum operating wavelength1280 nm
Nominal operating wavelength1300 nm
Package formTO-46
Rise Time0.1 ns
Spectral width5 nm
Supply current120 mA
Maximum supply voltage1.5 V
surface mountNO
Minimum threshold current45 mA

STH51007N Preview

Fiber Optics
High Power
1300 nm FP Laser
in FC or SC Receptacle Package
STH51007x
Features
Designed for applications in fiber optic networks
Laser Diode with Multi-Quantum Well structure
Suitable for bit rates up to 1 Gbit/s
Ternary Photodiode at rear mirror for monitoring
and control of radiant power
• Hermetically sealed subcomponents,
similar to TO 46
• SM receptacle with 2-hole flange and
optional connector
STH51007G
STH51007N
Data Sheet
1
2001-06-01
STH51007x
Pin Configuration and Flange
Pin Configuration and Flange
Transmitter (bottom view)
2.54 mm
2
1
3
4
Pinning 1
LD
1
4
2
3
MD
Figure 1
Transmitter
Available Pinnings with Flange
Type
STH51007x
Transmitter
1
Data Sheet
2
2001-06-01
STH51007x
Description
Description
Differences between a Fabry-Perot and a DFB Laserdiode
A conventional laser consists of an amplifying medium and two end mirrors. The cavity
is longer than one wavelength, and a standing wave is created. The number n of half
L
-
wavelengths
λ
is n
=
2
×
--
. If L >>
λ
then we speak of a Fabry-Perot Laser because the
λ
laserdiode emits multi-longitudinal modes. Typically the laserdiode is 250 µm long. For
λ
= 1310 nm/1550 nm n is about 350. Therefore for many neighboring wavelengths the
“standing wavelength” condition specified above is fulfilled. For a DFB-Laser a special
grating acts as a distributed filter allowing only one of the cavity’s longitudinal modes to
˜
propagate. This can be described with a reduced oscillator length L which is in the range
of
λ.
For such a reduced oscillator length the standing wavelength condition will be
fulfilled for n
2 what means for only one wavelength.
4
Intensity
0
0
1
1
2
3
Wavelength
λ
4
5
Figure 2
Fabry-Perot Laserdiode
Data Sheet
3
2001-06-01
STH51007x
Description
4
Intensity
0
0
1
2
3
Wavelength
λ
4
5
Figure 3
DFB Laserdiode
Regulatory Compliance
Feature
Electrostatic
Discharge (ESD) to the
Electrical Pins
Standard
MIL-STD 883D
Method 3015.7
Comments
Class 1 (<500 V)
Data Sheet
4
2001-06-01
STH51007x
Technical Data
Technical Data
Absolute Maximum Ratings
Parameter
Module
Operating temperature range at case
Storage temperature range
Soldering temperature (
t
max
= 10 s,
(2 mm distance from bottom edge of case )
Laser Diode
Direct forward current
Radiant power CW
Reverse Voltage
Monitor Diode
Reverse Voltage
Forward Current
Symbol
Limit Values
min.
max.
85
85
260
°C
Unit
T
C
T
stg
T
S
–40
–40
I
F max
P
F, rad
V
R
V
R
I
F
120
4
2
10
2
mA
mW
V
V
mA
The electro-optical characteristics described in the following tables are only valid for use
within the specified maximum ratings or under the recommended operating conditions.
Transmitter Electro-Optical Characteristics
Parameter
Optical output power
(maximum)
Emission wavelength center of
range,
P
F
= 0.5
P
F, max.
Spectral width (RMS)
Temperature coefficient of
wavelength
Threshold current
(whole temperature range)
Radiant power at
I
th
Data Sheet
Symbol
min.
Limit Values
typ.
max.
> 2.4
1280
1330
5
0.5
2
45
1.5
80
5
Unit
mW
nm
P
F, max
λ
trans
σ
λ
TC
I
th
nm/K
mA
V
µW
2001-06-01
Forward voltage,
P
F
= 0.5
P
F, max.
V
F
P
th

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