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488 nm diode laser

Genesis CX-Series

Genesis CX-Series

Genesis CX-Series Based on OPSL technology, Genesis CX lasers feature outstanding reliability and performance. Wavelengths range from 355 nm to 577 nm and power scales from tens of milliwatts to 10 Watts, allowing these OPSLs to be tailored to the needs of your specific application. The Genesis CX…

Genesis Taipan Series

Genesis Taipan Series

…Genesis Taipan family of lasers. These lasers have the ability to deliver high output powers at unique wavelengths. With a wavelength range from 460 nm to 639 nm, Taipan lasers have the capability to satisfy all laser lightshow applications. The OEM laser head design of Genesis Taipan-Series…

Genesis MX-Series

Genesis MX-Series

…ranging from 460 nm to 1154 nm. Genesis MX-Series lasers are available in 3 different platforms, each unique for varying applications. The Genesis MX STM-Series (TEM00) is intended for life sciences and research application, and is available at several wavelengths from 460 nm to 639 nm, with up to…

Advances in Diode Lasers and OPSLs

Advances in Diode Lasers and OPSLs

…monitoring, metrology and scientific research. Table. 3: Operating costs for various laser types for an operation time of 10,000 hours. OPSL 488 nm Argon Ion 488 nm Laser Diode 445 nm HeCd 442 nm OPSL 355 nm Argon Ion UV Power class (mW) 50 50 50 50 100 100 Electricity costs (0.19C/kWh) 100 1,900…

Advances in Diode Lasers and OPSLs

Advances in Diode Lasers and OPSLs

…monitoring, metrology and scientific research. Table. 3: Operating costs for various laser types for an operation time of 10,000 hours. OPSL 488 nm Argon Ion 488 nm Laser Diode 445 nm HeCd 442 nm OPSL 355 nm Argon Ion UV Power class (mW) 50 50 50 50 100 100 Electricity costs (0.19C/kWh) 100 1,900…

Advances in Diode Lasers and OPSLs

Advances in Diode Lasers and OPSLs

…commonly applied wavelengths (in nm) of ion, HeCd, diode lasers and OPSLs. UV Violet Blue Green Yellow Orange Red IR Argon 351 364 457 477 488 514 HeNe 543 a 594 b 612 c 633 d HeCd 322 354 442 Laser Diode 375 405 445 488 635 640 660 685 730 785 OPSL 355 458 460 480 488 514 532 552 561 568 577 639…

Advances in Diode Lasers and OPSLs

Advances in Diode Lasers and OPSLs

…commonly applied wavelengths (in nm) of ion, HeCd, diode lasers and OPSLs. UV Violet Blue Green Yellow Orange Red IR Argon 351 364 457 477 488 514 HeNe 543 a 594 b 612 c 633 d HeCd 322 354 442 Laser Diode 375 405 445 488 635 640 660 685 730 785 OPSL 355 458 460 480 488 514 532 552 561 568 577 639…

Advances in Diode Lasers and OPSLs

Advances in Diode Lasers and OPSLs

…commonly applied wavelengths (in nm) of ion, HeCd, diode lasers and OPSLs. UV Violet Blue Green Yellow Orange Red IR Argon 351 364 457 477 488 514 HeNe 543 a 594 b 612 c 633 d HeCd 322 354 442 Laser Diode 375 405 445 488 635 640 660 685 730 785 OPSL 355 458 460 480 488 514 532 552 561 568 577 639…

Advances in Diode Lasers and OPSLs

Advances in Diode Lasers and OPSLs

…commonly applied wavelengths (in nm) of ion, HeCd, diode lasers and OPSLs. UV Violet Blue Green Yellow Orange Red IR Argon 351 364 457 477 488 514 HeNe 543 a 594 b 612 c 633 d HeCd 322 354 442 Laser Diode 375 405 445 488 635 640 660 685 730 785 OPSL 355 458 460 480 488 514 532 552 561 568 577 639…

Advances in Diode Lasers and OPSLs

Advances in Diode Lasers and OPSLs

…absorb near-IR pump light (from laser diodes) and to emit laser light at a wavelength determined by the size and stoichiometry of the quantum wells contained in these layers. Figure 2: Schematic of an OPSL. In contrast to the more common edge emitting diode laser, the resonator output mirror is not…

Advances in Diode Lasers and OPSLs

Advances in Diode Lasers and OPSLs

…absorb near-IR pump light (from laser diodes) and to emit laser light at a wavelength determined by the size and stoichiometry of the quantum wells contained in these layers. Figure 2: Schematic of an OPSL. In contrast to the more common edge emitting diode laser, the resonator output mirror is not…

Advances in Diode Lasers and OPSLs

Advances in Diode Lasers and OPSLs

…absorb near-IR pump light (from laser diodes) and to emit laser light at a wavelength determined by the size and stoichiometry of the quantum wells contained in these layers. Figure 2: Schematic of an OPSL. In contrast to the more common edge emitting diode laser, the resonator output mirror is not…

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