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OPV310 Datenblatt(PDF) 3 Page - TT Electronics.

Teilenummer OPV310
Bauteilbeschribung  Vertical Cavity Surface Emitting Laser
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Hersteller  TTELEC [TT Electronics.]
Direct Link  http://www.ttelectronics.com/
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Vertical Cavity Surface
Emitting Laser
OPV300, OPV310, OPV310Y, OPV314,
OPV314Y
© TT electronics plc
Issue A
11/2016
Page 3
TT Electronics | OPTEK Technology, Inc.
1645 Wallace Drive, Suite 130, Carrollton, TX 75006 |Ph: +1 972-323-2200
www.ttelectronics.com | sensors@ttelectronics.com
General Note
TT Electronics reserves the right to make changes in product specification without
notice or liability. All information is subject to TT Electronics’ own data and is
considered accurate at time of going to print.
Electrical Characteristics (TA = 25° C unless otherwise noted)
Symbol
Parameter
Min
Typ
Max
Units
Test Conditions
POT
Total Power Out
OPV300 / OPV310
OPV314
1.50
1.40
mW
IF = 7 mA
ITH
Threshold Current
0.80
3.00
mA
Note 1
VF
Forward Voltage
1.60
2.20
V
IF = 7 mA
IR
Reverse Current
100
nA
VR = 5 V
RS
Series Resistance
20
55
ohms
Note 2
ŋ
Slope Efficiency
0.28
0.60
mW/mA Note 3
Linearity
0.00
Note 4
λ
Wavelength
840
850
860
nm
∆λ
Optical Bandwidth
0.85
nm
θ
Beam Divergence (OPV300 / OPV310 only)
24
Degree
IF = 7 mA , FWHM
tr/tf
Rise and Fall Time
100
ps
20% to 80%
NRI
Relative Intensity Noise
-123
dB/Hz
∆ITH
Temp Variance of Threshold Current
±1.0
mA
0° - 70° C, Note 1
∆λ/∆T
Temp Coefficient of Wavelength
0.06
nm/°C
0° - 70° C, IF = 7 mA
∆VF∆T
Temperature Coefficient for VF
-2.5
mV/°C
0° - 70° C, IF = 7 mA
∆ŋ/∆T
Temperature Coefficient for Efficiency
-0.5
%/°C
0° - 70° C, Note 3
Photodiode Electrical Characteristics (OPV310/OPV314 series)
IRPD
Reverse Current, photodiode
30
nA
VR = 5 V
IM1
Monitor Current
OPV310
OPV314
30
40
µA
IF = 7 mA, VR = 5 V
IM2
Monitor Current
OPV310
OPV314
40
45
µA
PO = 2 mW, VR = 5 V
NOTES:
(1)
Threshold Current is based on the two line intersection method specified in Telcordia GR-468-Core. Line 1 from 4 mA to 6 mA. Line 2
from 0 mA to 0.5 mA.
(2)
Series Resistance is the slope of the Voltage-Current line from 5 to 8 mA.
(3)
Slope efficiency, is the slope of the best fit LI line from 5 mA to 8 mA using no larger than .25 mA test interval points.
(4)
Using data points taken for slope efficiency above, delta L/delta I shall be calculated for each adjacent pair of points.
(5)
ESD Class 1
Electrical Specifications


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