FFD-200 Perkin Elmer Optoelectronics, FFD-200 Datasheet - Page 46

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FFD-200

Manufacturer Part Number
FFD-200
Description
si Pins Large Area
Manufacturer
Perkin Elmer Optoelectronics
Datasheet
www.datasheet4u.com
44
laser diodes
www.optoelectronics.perkinelmer.com
Typical Applications
• Laser Range Finding
• LIDAR
• Optical Fusing
• High Speed Switching
• Weapons Simulation
• Laser Scanning
• Fiber Optic Instrumentation
• YAG Laser Simulation
Test conditions: T = 22ºC
Test conditions: T = 22ºC
Multiple Quantum Well Types–850 nm
Technical Specification
Multiple Quantum Well Types–905 nm–PGA Series
Technical Specification
PGAS1S03
PGAS1S06
PGAS1S09
PGAS1S12
PGAS1S16
PGAS1S24
PGAS3S06
PGAS3S09
PGAS3S12
PGAS4S12
PGAS4S16
PFAS1S03
PFAS1S09
PFAS1S12
PFAS1S16
PFAS2S09
PFAS2S12
PFAS3S12
Number
Number
Part
Part
Preferred
Preferred
Package
Package
TO-52
TO-52
TO-52
TO-52
TO-52
TO-52
TO-52
TO-52
TO-52
TO-52
TO-52
TO-52
TO-52
TO-52
TO-52
TO-52
TO-52
TO-52
Peak Output
Peak Output
P
P
Power
Power
ko
ko
120
Description
Pulsed Laser Diodes
These devices range in wavelength from 850 nm to 1550 nm and
are produced using Vapor Phase Epitaxial (VPE) and MOCVD
growth techniques. Fiber optic pigtailed devices employ an
advanced fibre alignment process yielding highly stable fiber to
laser diode positioning. Alternative packages and fiber optic core
diameters may be supplied on a custom basis.
High Energy Laser Diodes—Quasi CW Lasers
These devices have been designed specifically to meet the demanding
requirements of laser initiated ordnance (LIO) applications.
Product offerings include a 9.0 mm TO-style package and an 8 pin
miniDIL pigtailed package equipped with a rear facet monitor
photodiode and 100/140 µm optical fiber. The 980 nm laser chip
employs advanced epitaxial materials and processing techniques,
providing reliable high optical power output capability and
significant power retention at elevated temperatures. Alternate
package outlines and fiber optic core diameters may be
considered on a custom basis.
5.5
5.5
17
26
34
34
52
78
12
18
24
33
49
34
50
67
90
(W)
(W)
Peak Forward
Peak Forward
Current
Current
I
I
F
F
20
30
40
20
30
30
15
22
30
40
60
15
22
30
30
40
7
7
(A)
(A)
t
t
Width
Width
Pulse
w
Pulse
w
150
150
150
150
150
150
150
150
150
150
150
50
50
50
50
50
50
50
(ns)
(ns)
Duty Factor
Duty Factor
Maximum
Maximum
DF (%)
DF (%)
0.025
0.025
0.025
0.025
0.025
0.025
0.025
0.01
0.01
0.01
0.01
0.01
0.01
0.01
0.01
0.01
0.01
0.01
Table of Contents
Response Beam Diverg.
Response Beam Diverg.
tr (ns)
tr (ns)
Time
Time
<1
<1
<1
<1
<1
<1
<1
<1
<1
<1
<1
<1
<1
<1
<1
<1
<1
<1
Q¨xQ^ (deg.)
12x30
12x30
12x30
12x30
12x30
12x30
12x30
10x25
10x25
10x25
10x25
10x25
10x25
10x30
10x30
10x30
10x30
10x30
FWHM
Q¨xQ^
(deg.)
Elements
Elements
of Diode
of Diode
Number
Number
1
1
1
1
2
2
3
1
1
1
1
1
1
3
3
3
4
4

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