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1 - 12 of 257 Products for '355 nm pulsed laser' Page 1 of 22 |

355 nm pulsed laser

Talisker Ultra DS

Talisker Ultra DS

…Ultra 532-8 Picosecond Industrial Laser INVISIBLE LASER RADIATION. AVOID EYE OR SKIN EXPOSURE TO DIRECT OR SCATTERED RADIATION. CLASS IV LASER RADIATION PRODUCT PER EN60825-1 (A2:2001) ENERGY PER PULSE: 250 µJ at 200 kHz EMITTED WAVELENGTH: 1064, 532 and 355 nm Printed in the U.S.A. MC-016-12-0M0412…

PaladinAdvanced355 DS

PaladinAdvanced355 DS

…INVISIBLE AND/OR VISIBLE LASER RADIATION. AVOID EYE OR SKIN EXPOSURE TO DIRECT OR SCATTERED RADIATION. CLASS 4 LASER PRODUCT PER EN 60825-1 : 2001 1.06 - 1.07 µm 0.52 - 0.54 µm 0.35 - 0.36 µm Max. Power 0.2W 0.2W 40W Max. Pulse 2.5 nJ/5 ps 2.5 nJ/5 ps 500 nJ/5 ps MODE-LOCKED LASER, 80 MHz

PaladinAdvanced355 DS

PaladinAdvanced355 DS

…INVISIBLE AND/OR VISIBLE LASER RADIATION. AVOID EYE OR SKIN EXPOSURE TO DIRECT OR SCATTERED RADIATION. CLASS 4 LASER PRODUCT PER EN 60825-1 : 2001 1.06 - 1.07 µm 0.52 - 0.54 µm 0.35 - 0.36 µm Max. Power 0.2W 0.2W 40W Max. Pulse 2.5 nJ/5 ps 2.5 nJ/5 ps 500 nJ/5 ps MODE-LOCKED LASER, 80 MHz

Microsoft Word - LDP-100MQU, LDP-100TQU Specification Sheets & Performance Graphs V6

Microsoft Word - LDP-100MQU, LDP-100TQU Specification Sheets & Performance Graphs V6

…DIODE-PUMPED Nd:YAG LASER MODEL LDP-100TQU 355 nm Wavelength An innovative laser optics design, combined with an industrial-grade power supply, results in an extraordinarily reliable and rugged diode-pumped Nd:YAG laser for industrial use. A TOTALLY SOLID-STATE LASER for TROUBLE-FREE MANUFACTURING…

PaladinAdvanced355 DS

PaladinAdvanced355 DS

System Specifications Paladin 355-8000 355-10000 355-16000 355-24000 Wavelength (nm) 355 Output Power1 (W) >8 >10 >16 >24 Repetition Rate (MHz) 80 ±1 80 ±1 80 ±1 82 ±1 Pulse Length (ps) >15 at 1064 nm Spatial Mode TEM00 M2 100:1, vertical Noise (10 Hz to 2 MHz) <1% (rms) Long-term Power Stability…

Picosecond laser

Picosecond laser

…to 532 nm (SHG, green) and 355 nm (THG, UV) is optionally possible. The output for IR, SHG and THG are spatially separated and optionally switchable via software. Furthermore an optional external process shutter (AOM) can be integrated. Laser system optical power (up to value) pulse energy [µJ]…

Picosecond laser

Picosecond laser

…to 532 nm (SHG, green) and 355 nm (THG, UV) is optionally possible. The output for IR, SHG and THG are spatially separated and optionally switchable via software. Furthermore an optional external process shutter (EOM) can be integrated. Laser system optical power (up to value) pulse energy [µJ]…

Picosecond laser

Picosecond laser

…to 532 nm (SHG, green) and 355 nm (THG, UV) is optionally possible. The output for IR, SHG and THG are spatially separated and optionally switchable via software. Furthermore an optional external process shutter (AOM) can be integrated. Laser system optical power (up to value) pulse energy [µJ]…

Picosecond laser

Picosecond laser

…to 532 nm (SHG, green) and 355 nm (THG, UV) is optionally possible. The output for IR, SHG and THG are spatially separated and optionally switchable via software. Furthermore an optional external process shutter (EOM) can be integrated. Laser system optical power (up to value) pulse energy [µJ]…

Picosecond laser

Picosecond laser

…to 532 nm (SHG, green) and 355 nm (THG, UV) is optionally possible. The output for IR, SHG and THG are spatially separated and optionally switchable via software. Furthermore an optional external process shutter (AOM) can be integrated. Laser system optical power (up to value) pulse energy [µJ]…

Picosecond laser

Picosecond laser

…to 532 nm (SHG, green) and 355 nm (THG, UV) is optionally possible. The output for IR, SHG and THG are spatially separated and optionally switchable via software. Furthermore an optional external process shutter (EOM) can be integrated. Laser system optical power (up to value) pulse energy [µJ]…

Industrial Laser Solutions - November/December 2015

Industrial Laser Solutions - November/December 2015

…relabeled after packaging. Also, the ink is a possible source of contamination. In this test, the laser was used to mark 2D barcodes on the curved surface of a pill bottle (FIGURE 1). The 355 nm laser, working with a focused spot size of 30µm, was scanned over the part surface using a galvanometer…

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