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Technical content
www.roithner-laser.com 1 RLT650 -150MGE
- Red Laser Diode
- 658 nm, 150 mW
- Single transverse mode
- TO18 package, Flat Window Maximum Rating* (TCASE = 25°C) Parameter Symbol Values Unit Min. Max. Reverse Voltage VR 2 V Operating Temperature* TOPR - 10 + 60 °C Storage Temperature* TSTG - 40 + 85 °C Soldering Temperature (max. 3s) TSOL + 260 °C * operating close to or outside these conditions may damage the device Electro-Optical Characteristics (TCASE = 25°C) Parameter Symbol Values Unit Min. Typ. Max. Peak Wavelength λP 650 658 665 nm Optical Output Power PO 150 mW Spectral Width λ 2.0 nm Operating Voltage VF 2.8 3.5 V Threshold Current Ith 55 75 mA Operating Current IF 220 240 mA Slope Efficiency η 0.8 1.0 W/A Beam Divergence (FWHM) parallel ӨII 10 13 deg. perpendicular Ө┴ 15 18 deg. Electrical Connection Pin Configuration Bottom View
Description
RLT650-150MGE is a red laser diode, typically emitting at 658 nm. It features single transverse mode emission and wide operating temperature range of up to 60°C. It is an efficient radiation source for many applications like laser projection, holography, metrology, or use in the biomedical field. RLT650-150MGE comes in 5.6 mm TO-Can package without PD. Pin # Function Pin 1 LD anode Pin 2 LD cathode (case) Pin 3 not connected 18.10.17
www.roithner-laser.com 2 Outline Dimensions All dimensions in mm Precautions Safety Caution: Laser light emitted from any laser diode may be harmful to the human eye. Avoid looking directly into the laser diode’s aperture when the diode is in operation. Note: The use of optical lenses with this laser diode will increase eye hazard ESD caution Always do handle laser diodes with extreme care to prevent electrostatic discharge, the primary cause of unexpected diode failure. To prevent ESD related failures, it is strongly advised to always wearing wrist straps, and grounding all applicable work surfaces, when handling laser diodes Operating Considerations It is strongly advised to only operate this laser diode with a current source. The current of a laser diode is an exponential function of the voltage across it. Usage of current regulated drive circuits is mandatory. Laser diodes may be damaged by excessive drive currents or switching transients It is advised, to operat e the laser diode at the lowest temperature possible, and to never exceed maximum specifications as outlined in the datasheet . Device degradation will accelerate with increased temperature. Proper heat sinking will greatly enhance stability and life time of the laser diode © All Rights Reserved The above specifications are for reference purpose only and subjected to change without prior notice.