OPR2800V OPTEK | Alldatasheet
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Technical content
OPTEK Technology Inc. — 1645 Wallace Drive, Carrollton, Texas 75006 Phone: (972) 323-2200 or (800) 341-4747 FAX: (972) 3 23-2396 sensors@optekinc.com www.optekinc.com Issue A.1 09/06 Page 1 of 3 Infrared Light Emitting VCSEL OPR2800V OPTEK reserves the right to make changes at any time in order to improve design and to supply the best product possible. Description: The OPR2800V is a high performance 850 nm invisible VCSEL (Class 1M) with a flat lens window. Its high speed, high output power and concentric beam pattern make it an ideal transmitter for all types of high-speed data equipment applications. Please refer to Application Bulletins 221 and 224 for additional design information and reliability (degradation) data. Features:
- High speed VCSEL
- High output power
- Narrow beam angle
- Suitable for all types of high-speed data communications equipment
- Also available as diode (OPR2800, OPR2800T) RoHS
Ordering Information
OPR2800V 850 nm 24° Class 1M OPR2800V Applications:
- Fibre channel
- Gigabit Ethernet
- ATM
- VSR (Very Short Reach)
- Intra-system links
- Optical backplane interconnects Pin # LED
1 Cathode
2 Anode
Infrared Light Emitting VCSEL OPR2800V OPTEK Technology Inc. — 1645 Wallace Drive, Carrollton, Texas 75006 Phone: (972) 323-2200 or (800) 341-4747 FAX: (972) 3 23-2396 sensors@optekinc.com www.optekinc.com Issue A .1 09/06 Page 2 of 3 OPTEK reserves the right to make changes at any time in order to improve design and to supply the best product possible. Notes: 1. Threshold current is based on the two line intersection method specified in Telcordia GR468-Core. Line 1 from 4 mA to 6mA. Line 2 from 0 mA to 0.5 mA. 2. Series resistance is the slope of t he voltage-current line from 5 to 8 mA. 3. Slope efficiency is the slope of the best-fi t LI line from 5 mA to 8 mA, using no larger than 0.25 mA test interval points. 4. Using data points taken for slope effici ency above, delta L/delta I shall be calculated for each adjacent pair of points. Electrical Characteristics (TA = 25° C unless otherwise noted) SYMBOL PARAMETER MIN TYP MAX UNITS TEST CONDITIONS VF Forward Voltage 1.60 - 2.20 V I F = 7 mA IR Reverse Current - - 35 µA - tr, tf Output Rise Time, Output Fall Time - 100 - ps 20% to 80% POT Total Power Out 1.50 - - mW I F = 7 mA ITH Threshold Current 0.80 - 3 mA See note (1) RS Series Resistance 20 - 55 ohms See note (2) η Slope Efficiency 0.28 - - mW/mA See note (3) - Linearity 0.00 - - - See note (4) λP Wavelength at Peak Emission 840 850 860 nm - Δλ Optical Bandwidth - - 0.85 nm - θ Beam Divergence - 24 - Degree I F = 7 mA NRI Relative Intensity Noise - -123 - db/Hz - ΔITH/ΔT Temp Coefficient of Threshold Current - ±1.0 - mA 0° - 70° (1) Δλ/ΔT Temp Coefficient of Wavelength - 0.06 - %/°C 0° - 70°, I F = 7 mA ΔVF/ΔT Temperature Coefficient for V F - -2.5 - mW%/°C 0° - 70°, IF = 7 mA Δη/ΔT Temperature Coefficient for Efficiency (2) - -0.5 - %/C 0° - 70° (3) Notes: 1. Solder time less than 5 seconds at temperature extreme. Absolute Maximum Ratings (TA = 25° C unless otherwise noted) Storage Temperature Range -40o C to +100o C Operating Temperature Range -20o C to +85o C Maximum Forward Peak Current 20 mA Maximum Reverse Voltage 10 V Maximum Continuous Optical Power at 70° C 1.1 mW Solder reflow time within 5°C of peak temperature is 20 to 40 seconds (1) 250° C (1)
OPTEK Technology Inc. — 1645 Wallace Drive, Carrollton, Texas 75006 Phone: (972) 323-2200 or (800) 341-4747 FAX: (972) 3 23-2396 sensors@optekinc.com www.optekinc.com Issue A.1 09/06 Page 3 of 3 Infrared Light Emitting VCSEL OPR2800V OPTEK reserves the right to make changes at any time in order to improve design and to supply the best product possible. OP2800V - Normalized Output Power vs Forward Current