ADNV-6340 Single-Mode Vertical-Cavity Surface Emitting Laser VCSEL
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ADNV-6340 Single-Mode Vertical-Cavity Surface Emitting Laser VCSEL Data Sheet This advanced class of VCSELs was engineered by Avago Technologies providing a laser diode with a single longitudinal as well as a single transverse mode. In contrast to most oxide-based single-mode VCSELs, these VCSELs remain within a single mode operation over a wide range of output power. When compared to an LED, the ADNV-6340 has a significantly lower power consumption making it an ideal choice for optical navigation applications. KAPTON TAPE • Advanced Technology VCSEL chip • Single Mode Lasing operation • Non-hermetic plastic package • 832-865 nm wavelength • Enhanced ESD up to 2-KV Notes Dimensions in millimeter Dimension tolerance ±0.1mm unless specified otherwise 1° MAX. ± BASE W = Bin Number X = Bin Number Y = Subcontractor Code V = VCSEL Die Source CATHODE FLAT AT SHOULDER WXYV +3° 2X 90° - 5° Figure Outline drawing for ADNV-6340 VCSEL ± AT LEAD TIP Note Since the VCSEL package is not sealed, the protective kapton tape should not be removed until just prior to assembly into the ADNS-6120 or ADNS-6130-001 lens. MAX. CABLE/WIRE CONNECTION RECOMMENDED PCB THICKNESS mm Figure Suggested ADNV-6340 PCB mounting guide PLASTIC VCSEL PACKAGE PITCH LEADS x Absolute Maximum Ratings VCSEL Die Source Marking Parameter V = A,V Max 12 19 24 5 150 5 to 45 -40 to +85 260 2 V=C Max 9 24 8 170 5 to 45 -40 to +85 260 2 Units mA mW V ºC ºC ºC ºC kV Notes Duration = 100ms, 10% duty cycle I = 10µA See reflow profile Figure 6 Comments 1. Stresses greater than those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are the stress ratings only and functional operation of the device at these or any other condition beyond those indicated for extended period of time may affect device reliability. 2. The maximum ratings do not reflect eye-safe operation. Eye safe operating conditions are listed in the power adjustment procedure section in the LaserStream sensor datasheet. The inherent design of this component causes it to be sensitive to electrostatic discharge. The ESD threshold is listed above. To prevent ESDinduced damage, take adequate ESD precautions when handling this product. Optical/Electrical Characteristics at Tc = 5°C to 45°C : VCSEL Die Source Marking V = A,V Parameter Symbol Min Typ Max Min Typ Max Units Notes Peak Wavelength 865 832 865 nm Maximum Radiant LOPmax Power mW Maximum output power un- |
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