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SLD302V Datasheet, PDF (2/7 Pages) Roithner LaserTechnik GmbH – 200mW High Power Laser Diode
SLD302V
Electrical and Optical Characteristics
Item
Symbol
Threshold current
Ith
Operating current
Iop
Operating voltage
Vop
Wavelength∗1
λp
Monitor current
Imon
Radiation angle
(F. W. H. M.∗)
Perpendicular θ⊥
Parallel
θ//
Position
Positional accuracy
Angle
∆X, ∆Y
∆φ⊥
Differential efficiency
ηD
∗ F. W. H. M. : Full Width at Half Maximum
Conditions
PO = 180mW
PO = 180mW
PO = 180mW
PO = 180mW
VR = 10V
PO = 180mW
PO = 180mW
PO = 180mW
(Tc: Case temperature, Tc = 25°C)
Min.
Typ. Max.
Unit
150
200
mA
350
500
mA
1.9
3.0
V
770
840
nm
0.3
mA
28
40
degree
12
17
degree
±50
µm
±3
degree
0.65
0.9
mW/mA
∗1 Wavelength Selection Classification
Type
Wavelength (nm)
SLD302V-1
785 ± 15
SLD302V-2
810 ± 10
SLD302V-3
830 ± 10
Type
SLD302V-21
SLD302V-24
SLD302V-25
Wavelength (nm)
798 ± 3
807 ± 3
810 ± 3
Handling Precautions
Eye protection against laser beams
The optical output of laser diodes ranges from
several mW to 1W. However the optical power
density of the laser beam at the diode chip
reaches 1mW/cm2. Unlike gas lasers, since
laser diode beams are divergent, uncollimated
laser diode beams are fairly safe at a laser
diode. For observing laser beams, ALWAYS use
safety goggles that block infrared rays. Usage of
IR scopes, IR cameras and fluorescent plates is
also recommended for monitoring laser beams
safely.
Laser diode
Lens
Optical
material
ATC
APC
Optical boad
Optical power output control device
temperature control device
–2–
Safety goggles for
protection from
laser beam
IR fluorescent plate