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 Vertical Cavity Surface Emitting Laser
OPV300, OPV310, OPV310Y, OPV314, OPV314Y
Features:
* * * * * * * 850nm VCSEL Technology Data rates up to 2.5 Gbps High thermal stability Low drive current / high output density Narrow and concentric beam angle Recommended for multimode fiber applications Burned in for communication level reliability
Description: The OPV300 / OPV310 / OPV314 series are high performance 850nm Vertical Cavity Surface Emitting Laser (VCSEL). The OPV300 and OPV310 are designed to be utilized for sensing applications as well as air transmission of data. The OPV314 is designed for high speed communication links. The OPV310 / OPV314 combine all the performance advantages of a VCSEL with the addition of a power monitor diode for precise control of optical power. The OPV310 and OPV314 have a back monitor photodiode used for optical power management or optical reception for data communication applications. The OPV300 / OPV310 have a flat lens while the OPV314 has a microbead lens. Refer to mechanical drawings for details. The high performance 850nm VCSEL is designed for applications where low current is required with high onaxis optical power. These product's combine features including high speed, high output optical power and concentric beam making it an ideal transmitter for integration into all types of data communications equipment as well as for reflective and transmissive switches.
Applications: * Fiber Channel * Gigabit Ethernet * ATM * VSR * Intra-System links * Optical backplane interconnects * Reflective sensing * Interruptive sensing * Long distance spot illumination
Absolute Maximum Ratings (TA=25C unless otherwise noted)
Operating Temperature Range Storage Temperature Range Maximum Forward Peak Current, continuous Maximum Reverse Voltage Max. Continuous Optical Power at 70 C Lead Soldering Temperature Maximum Forward Current, pulsed (1 s P.W., 10% D.C.) 0C to +70C -40C to +100C 12 mA 5V 1.1 mW 260C for 10 sec. 48 mA
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.
Additional laser safety information can be found on the Optek website. See application bulletin #221. Classification is not marked on the device due to space limitations. See package outline for centerline of optical radiance. Operating devices beyond maximum rating may result in hazardous radiation exposure.
Pb
RoHS
OPTEK Technology Inc.-- 1645 Wallace Drive, Carrollton, Texas 75006 Phone: (800) 341-4747 FAX: (972) 323- 2396 sensors@optekinc.com www.optekinc.com
Issue A.2 09 / 09 Page 1 of 4
Vertical Cavity Surface Emitting Laser
OPV300, OPV310, OPV310Y, OPV314, OPV314Y
Electrical/Optical Characteristics (TA = 25C unless otherwise noted)
Symbol
POT ITH VF IR RS Total Power Out Threshold Current Forward Voltage Reverse Current Series Resistance Slope Efficiency Linearity tr/tf NRI ITH /T VFT /T Wavelength Optical Bandwidth Beam Divergence (OPV300 / OPV310 only) Rise and Fall Time Relative Intensity Noise Temp Variance of Threshold Current Temp Coefficient of Wavelength Temperature Coefficient for VF Temperature Coefficient for Efficiency 24 100 -123 1.0 0.06 -2.5 -0.5 20 0.28 0.00 840 850 860 0.85 nm nm Degree IF = 7 mA , FWHM ps dB/Hz mA %/C mV/C %/C 0 - 70 C, Note 1 0 - 70 C, IF = 7 mA 0 - 70 C, IF = 7 mA 0 - 70 C, Note 3 20% to 80%
Parameter
OPV300 / OPB310 OPV314
Min
1.50 1.40 0.80 1.60
Typ
Max
Units
mW
Test Conditions
IF = 7 mA Note 1 IF = 7 mA VR = 5 V Note 2
3.00 2.20 100 55 0.60
mA V nA ohms
mW/mA Note 3 Note 4
Photodiode Electrical Characteristics (OPV310/OPV314 series) IRPD IM1 IM2 Reverse Current, photodiode Monitor Current Monitor Current OPV310 OPV314 OPV310 OPV314 30 40 40 45 30 nA A A VR = 5 V IF = 7 mA, VR = 5 V PO = 2 mW, VR = 5 V
NOTES:
(1) (2) (3) (4) (5) 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. Series Resistance is the slope of the Voltage-Current line from 5 to 8 mA. 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. Using data points taken for slope efficiency above, delta L/delta I shall be calculated for each adjacent pair of points. ESD Class 1
Issue A.2 09 / 09 Page 2 of 4
OPTEK Technology Inc.-- 1645 Wallace Drive, Carrollton, Texas 75006 Phone: (800) 341-4747 FAX: (972) 323- 2396 sensors@optekinc.com www.optekinc.com
Vertical Cavity Surface Emitting Laser
OPV300, OPV310, OPV310Y, OPV314, OPV314Y
Normalized Output Power vs. Forward Current
Normalized Output Power
Forward Current (mA)
OPV300 & OPV310
VCSEL
VCSEL
PD
VCSEL
PD
1
2
1
2
3
1
2
3
OPV300
Pin 1 2 3 Connection VCSEL Anode VCSEL Cathode No Connection Pin 1 2 3
OPV310
Connection VCSEL Anode VCSEL Cathode/PD Anode PD Cathode Pin 1 2 3
OPV310Y
Connection VCSEL Cathode VCSEL Anode/PD Cathode PD Anode
Issue A.2 09 / 09 Page 3 of 4
OPTEK Technology Inc.-- 1645 Wallace Drive, Carrollton, Texas 75006 Phone: (800) 341-4747 FAX: (972) 323- 2396 sensors@optekinc.com www.optekinc.com
Vertical Cavity Surface Emitting Laser
OPV300, OPV310, OPV310Y, OPV314, OPV314Y
OPV314
1) Tolerances are 0.005 unless otherwise specified 2) Dimensions in inches [mm]
VCSEL
PD
VCSEL
PD
1
2
3
1
2
3
OPV314
Pin 1 2 3 Connection VCSEL Anode VCSEL Cathode/PD Anode PD Cathode Pin 1 2 3
OPV314Y
Connection VCSEL Cathode VCSEL Anode/PD Cathode PD Anode
Issue A.2 09 / 09 Page 4 of 4
OPTEK Technology Inc.-- 1645 Wallace Drive, Carrollton, Texas 75006 Phone: (800) 341-4747 FAX: (972) 323- 2396 sensors@optekinc.com www.optekinc.com


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