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01_1Laser Diodes_1212-1221.qxd.P:1212-1221 7/27/11 1:10 PM Page 1212 Light The Thorlabs engineering team’s vast knowledge includes materials science, mixed technology assembly, device design, wafer growth and fabrication, processing, advanced electro-optic device packaging, and system engineering. Our Maryland facility has full in-house Indium Phosphide (InP) and Lithium Niobate (LiNbO3) capabilities and foundry services as well as Class 100 and Class 10,000 Cleanroom facilities. We have recently used these in-house capabilities to drastically increase our laser diode offerings. • Surface Mount Technology (SMT) and Through-Hole Assembly • Mixed Technology Capabilities • Box-Build Services • Turnkey Assembly • Electro-Mechanical Assembly • 18,000 Square Feet of Class 100 and 10,000 Cleanroom Facilities Thorlabs’ manufacturing process is ISO 9001:2008 certified. Our employees are well trained in laser and ESD safety and are dedicated to providing quality workmanship throughout the manufacturing cycle. Thorlabs Quantum Electronics (TQE) Cleanroom 1212 www.thorlabs.com
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Selection Guide Coherent Sources Selection Guide Laser Diodes Pigtailed Laser Diodes Fiber-Coupled Laser Sources Helium-Neon Lasers Laser Diode Modules and Kits Benchtop and OEM Tunable Lasers Femtosecond Lasers Optical Amplifiers
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Laser Diodes Pigtailed Diodes Laser Sources HeNe Lasers Laser Diode Tunable Lasers Optical Amplifiers Laser Diode Selection Guide Chip on Submount, Chip on C-Mount, and TO Headers TO-Packaged Pigtail Laser Diodes Butterfly Laser Diodes individual items for complete details. 2. Pin code is based on laser pin configuration and is used to help select socket cable assemblies. The laser diodes shown on pages 1216 — 1248 are designated for use solely as components and are not sold as a complete laser product. The purchaser assumes the responsibility to comply with US 21 CFR 1040.10, US 21 CFR...
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Laser Diodes Pigtailed Diodes Laser Sources HeNe Lasers Laser Diode Tunable Lasers tical Amplifiers
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Laser Diodes Pigtailed Diodes Laser Sources HeNe Lasers Laser Diode Tunable Lasers Optical Amplifiers k = 375 nm, P = 20 mW, Single Mode Thorlabs L375P020MLD 20 mW (Typical) Optical Output Power (CW) 1.2 W/A (Typical) Slope Efficiency 2 common case (cathode) 3 monitor diode anode *Ships witli S05LM9, an SM05-compatible mount for 05-6 mm and 09 mm packages Note: All data are presented as typical unless otherwise specified. X = 405 nm, P = 5 mW, Single Mode Sanyo DL3146-151 I 35 mA (Typical) Threshold Current 2 common case (cathode) 3 monitor diode anode Note: All data are presented as...
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k = 405 nm, P = 40 mW, Single Mode Sanyo DL5146-101S 2 common case (cathode) 3 monitor diode anode I 40 mW (Typical) Output Power (CW) I 1.2 mW/mA (Typical) Slope Efficiency Note: All data are presented as typical unless otherwise specified. Laser Diodes Pigtailed Diodes Laser Sources HeNe Lasers X = 405 nm, P = 120 mW, Single Mode Mitsubishi ML320G2-11 Laser Diode Tunable Lasers Optical Amplifiers I 45 mA (Typical) Threshold Current Note: All data are presented as typical unless othei X = 473 nm, P = 20 mW, Single Mode Thorlabs L473P020MLD 20 mW (Typical) Optical Output Power (CW) 0.45 W/A...
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Laser Diodes Pigtailed Diodes Laser Sources HeNe Lasers Laser Diode Tunable Lasers Optical Amplifiers X = 488 nm, P = 60 mW, Single Mode Thorlabs L488P060MLD 60 mW (Typical) Optical Output Power (CW) 0.9 W/A (Typical) Slope Efficiency 2 common case (cathode) 3 monitor diode anode *Ships with S05LM9, an SM05-compatible mount for 05-6 mm and 09 mm packages Note: All data are presented as typical unless otherwise specified. X = 635 nm, P = 3 mW, Single Mode Hitachi HL6314MG 3 monitor diode anode AlGalnP Index-Guided MOW Structure Single Longitudinal Mode High Polarization Ratio >350:1 <§> 3 mW...
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X = 635 nm, P = 5 mW, Single Mode Hitachi HL6312G AlGalnP Index-Guided Single Longitudinal Mode High Polarization Ratio >400 @ 5 mW 6 mf Pulsed Optical Power with a 50% Duty Cycle and a Maximum Pulse Width 3 monitor diode anode *Pulse Condition: Pulse Width <1 us, Duty <50 % *For quantities over 5 pieces, please call our local office for pricing. Note: All data are presented as typical unless otherwise specified. X = 635 nm, P = 5 mW, Single Mode Hitachi HL6335G 3 monitor diode anode Single Longitudinal Mode 6 mf Pulsed Optical Power with a 50% Duty Cycle and a Maximum Pulse Width of 1 us...
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01_1Laser Diodes_1212-1221.qxd.P:1212-1221 7/27/11 10:23 AM Page 1220 Light M CHAPTERS Coherent Sources Incoherent Sources Quantum Electronics Drivers/Mounts Accessories M SECTIONS λ = 635 nm, P = 5 mW, Single Mode Thorlabs L635P005 Maximum Ratings (Tc = 25 °C) Pin Description 1 2 3 CAUTION: ELECTROSTATIC SENSITIVE I I I I Ø5.6 mm Package 0.6 mW/mA (Typical) Slope Efficiency Single Transverse Mode MOCVD-Grown with Quantum Well Structures 2 CHARACTERISTIC Optical Output Power (CW) LD Reverse Voltage PD Reverse Voltage 2 Operation Case Temperature 2 Case Case Storage Temperature Case C PD LD...
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X = 635 nm, P = 15 mW, Single Mode Hitachi HL6322G 3 monitor diode anode 15 mW Optical Output Power (CW) Single Longitudinal Mode *For quantities over 5 pieces, please call our local office for pricing. Note: All data are presented as typical unless otherwise specified. X = 635 nm, P = 30 mW, Single Mode Sanyo DL5038-021 3 monitor diode anode AlGalnP Index Guided-MQW Structure High Power/Low Threshold Current *For quantities over 5 pieces, please call our local office for pricing. Note: All data are presented as typical unless otherwise specified. X = 637 nm, P = 170 mW, Single Mode Opnext...
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Laser Diodes Pigtailed Diodes Laser Sources HeNe Lasers Laser Diode Tunable Lasers Optical Amplifiers antistatic products. X = 637 nm, P = 250 mW, Single Mode Hitachi HL6388MG 250 mW Optical Output Power (CW) Multimode Diode *For quantities over 5 pieces, please call our local office for pricing. Note: All data are presented as typical unless otherwise specified. X = 638 nm, P = 20 mW, Single Mode Sanyo DL5148-030 3 monitor diode anode 60 mn (Typical) Threshold Current *For quantities over 5 pieces, please call our local office for pricing. Note: All data are presented as typical unless...
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