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Picture Part Number Type Wavelength (nm) pa_output-power pa_mode pa_output pa_pulse-width
Aero: High-Energy DPSS Nanosecond/Picosecond Laser Aero Pulsed DPSS Lasers, Airborne Laser, Multi Wavelength, Low SWaP, Ruggedized, High Pulse Energy, High Peak Power, Customizable 266, 355, 532, 1064
BK-FA-CW: 1, 1.5 or 2µm CW Fiber Amplifiers BK-FA-CW "Eye Safe", Narrow Linewidth, Turn-Key System 1030-2054
BK-FL-CW: 1, 1.5 or 2µm CW Fiber Lasers BK-FL-CW "Eye Safe", CW Fiber Lasers, Broadband Lasers, Narrow Linewidth, Customizable 1060-2050
BK-FL-Pulsed: 1 or 1.5µm Pulsed Fiber Lasers BK-FL-Pulsed "Eye Safe", Pulsed Fiber Lasers, Low SWaP, Ruggedized, High Peak Power, Customizable 1030-1100, 1540-1560
Blueback: Laser Pulse Characterization Device Blueback
ER902 "Eye Safe", Pulsed DPSS Lasers, Mil-Spec Lasers, Low SWaP, High Peak Power, Made in the USA, Customizable 1535
Halite 2: Truly-All-Fiber Amplified Femtosecond Oscillator Halite 2 Pulsed Fiber Lasers, Ultrafast Lasers, Ruggedized, High Peak Power, Turn-Key System 1030
Harmony: Optical Parametric Amplifier for Jasper X0 & Jasper Flex Harmony Pulsed Fiber Lasers, Tunable Lasers, Ultrafast Lasers, Multi Wavelength, Ruggedized, Adjustable Rep Rate, Customizable 210-10000, Multiple Wavelength Options
HL-MM: Multimode Laser Diode HL-MM Single Emitter 405, 630, 638, 730, 830, 850
HL-SM: Single-Mode Laser Diode HL-SM Single Emitter 405, 630, 660, 730, 830, 850
Iris: Red or Blue Nanosecond DPSS Laser Iris Pulsed DPSS Lasers, Low SWaP, Adjustable Rep Rate, High Peak Power, Low Jitter 447, 671
Jasper Flex: Compact High-Power Femtosecond Fiber Laser Jasper Flex Pulsed Fiber Lasers, Ultrafast Lasers, Ruggedized, Adjustable Rep Rate, Adjustable Pulse Width, High Peak Power 1030
Jasper Micro: Compact Femtosecond Fiber Laser Jasper Micro Pulsed Fiber Lasers, Ultrafast Lasers, Ruggedized, Adjustable Rep Rate, Adjustable Pulse Width, High Peak Power 1030
Jasper X0: High-Power Femtosecond Fiber Laser Jasper X0 Pulsed Fiber Lasers, Ultrafast Lasers, Ruggedized, Adjustable Rep Rate, Adjustable Pulse Width, High Peak Power 1030
JDL-Unmounted Bars: 760-1070nm Unmounted Laser Diode Bars & Single Emitters JDL-Unmounted Bars Single Emitter, Array (Bar) 760-1070
various configurations of an OEM green DPSS laser housing JenLas D2 CW DPSS Lasers, Collimated Beam, Fiber-Coupled, Customizable 532, 1064
Jenlas Fiber ns Pulsed Fiber Lasers, Ruggedized, Adjustable Rep Rate, High Pulse Energy, High Peak Power, Customizable 1085
JOLD-FC: 760-1070 & 1470nm Fiber-Coupled Laser Diode Modules JOLD-FC Array (Bar), Fiber-Coupled 760-1070
JOLD-Open Heatsinks: 760-1070nm Single Laser Diode Bar Package JOLD-Open Heatsinks Array (Bar) 760-1070
JOLD-Stacks: 760-1070nm High-Power Laser Diode Stacks JOLD-Stacks Array (Bar) 760-1070
KAUKAS "Eye Safe", Pulsed DPSS Lasers, Mil-Spec Lasers, Low SWaP, High Pulse Energy, High Peak Power, Customizable 1534
Lampo: Compact Ultrafast DPSS Laser Lampo Pulsed DPSS Lasers, Ultrafast Lasers, Ruggedized, Adjustable Rep Rate, High Peak Power 266, 355, 532, 1064
LDX-IR-FC: Fiber coupled Infrared Multimode Laser Diode LDX-IR-FC Single Emitter, Fiber-Coupled, Made in the USA 750, 780, 797, 808, 830, 860, 915, 980, 1064, 1120, 1210, 1280, 1370
LDX-IR-FS: Free Space Infrared Multimode Laser Diode LDX-IR-FS Single Emitter, Made in the USA 750, 780, 797, 808, 830, 860, 915, 980, 1064, 1120, 1210, 1280, 1370
LDX-SWIR-FC: Fiber coupled Short-wave Infrared Multimode Laser Diode LDX-SWIR-FC "Eye Safe", Single Emitter, Fiber-Coupled, Made in the USA 1470, 1550, 1620, 1640, 1675, 1850
LDX-SWIR-FS: Free Space Short-Wave Infrared Multimode Laser Diode LDX-SWIR-FS "Eye Safe", Single Emitter, Made in the USA 1470, 1550, 1620, 1675, 1850
LDX-VIS-FC: Fiber coupled Visible Multimode Laser Diode LDX-VIS-FC Single Emitter, Fiber-Coupled, Made in the USA 445, 520, 622, 630, 660, 685, 735, 750
LDX-VIS-FS: Free Space Visible Multimode Laser Diode LDX-VIS-FS Single Emitter, Made in the USA 445, 520, 622, 630, 660, 685, 735, 750
LGK-XXX: Ultra-Reliable He-Ne Laser Modules LGK-XXX HeNe Lasers, Narrow Linewidth, Long Coherence Length, Single Longitudinal Mode (SLM), Collimated Beam, Fiber-Coupled 543, 594, 633
LGR-XXX: Ultra-Reliable He-Ne Replacement Tubes LGR-XXX HeNe Lasers, Narrow Linewidth, Long Coherence Length, Single Longitudinal Mode (SLM), Collimated Beam, Fiber-Coupled 543, 594, 633
LXC-Combiner: 4 or 6 Wavelength Laser Module Combiners LXC-Combiner LD Module, CW DPSS Lasers, Narrow Linewidth, Long Coherence Length, Single Longitudinal Mode (SLM), Multi Wavelength, Collimated Beam, Fiber-Coupled, Turn-Key System, Customizable Multiple Wavelength Options
LXX-IR-HPE: Infrared High-Power Laser Diode Module LXX-IR-HPE LD Module, Collimated Beam, Fiber-Coupled, Customizable 750, 785, 830, 940
LXX-IR-SLM: Infrared SLM Laser Module LXX-IR-SLM LD Module, CW DPSS Lasers, Narrow Linewidth, Long Coherence Length, Single Longitudinal Mode (SLM), Collimated Beam, Fiber-Coupled, Customizable 785, 830, 1064
LXX-IR-SM: Infrared Single Mode Laser Diode Module LXX-IR-SM LD Module, CW DPSS Lasers, Collimated Beam, Fiber-Coupled, Customizable 785, 808, 830, 915, 980, 1064
LXX-UV-HPE: Ultraviolet High-Power Laser Diode Module LXX-UV-HPE LD Module, Collimated Beam, Fiber-Coupled, Customizable 375
LXX-UV-SM: Ultraviolet Single Mode Laser Diode Module LXX-UV-SM LD Module, Collimated Beam, Fiber-Coupled, Customizable 375, 395
LXX-VIS-HPE: Visible High Power Laser Diode Module LXX-VIS-HPE LD Module, Collimated Beam, Fiber-Coupled, Customizable 405, 450, 473, 488, 520, 638, 750
LXX-VIS-SLM: Visible SLM Laser Module LXX-VIS-SLM LD Module, CW DPSS Lasers, Narrow Linewidth, Long Coherence Length, Single Longitudinal Mode (SLM), Collimated Beam, Fiber-Coupled, Customizable 532, 553, 561, 633
LXX-VIS-SM: Visible Single Mode Laser Diode Module LXX-VIS-SM LD Module, CW DPSS Lasers, Collimated Beam, Fiber-Coupled, Customizable 405, 415, 445, 450, 458, 473, 488, 505, 515, 532, 553, 561, 607, 633, 638, 640, 642, 647, 660, 730
MB-Combiner: Multi-Wavelength Laser Diode Combiner MB-Combiner LD Module, CW DPSS Lasers, Narrow Linewidth, Long Coherence Length, Single Longitudinal Mode (SLM), Multi Wavelength, Collimated Beam, Fiber-Coupled, Customizable Multiple Wavelength Options
MB-IR-MM: Infrared Multimode Laser Diode Module MB-IR-MM LD Module, Collimated Beam, Fiber-Coupled 785, 808, 830
MB-IR-SLM: Infrared SLM Laser Diode Module MB-IR-SLM LD Module, CW DPSS Lasers, Narrow Linewidth, Long Coherence Length, Single Longitudinal Mode (SLM), Collimated Beam, Fiber-Coupled 785, 830, 1030, 1064
MB-IR-SM: Infrared Single Mode Laser Diode Module MB-IR-SM LD Module, CW DPSS Lasers, Collimated Beam, Fiber-Coupled 785, 808, 830, 850, 915, 975, 1064, 1123, 1310
MB-VIS-MM: Visible Multimode Laser Diode Module MB-VIS-MM LD Module, Collimated Beam, Fiber-Coupled, Customizable 450, 638
MB-VIS-SLM: Visible SLM Laser Diode Module MB-VIS-SLM LD Module, CW DPSS Lasers, Narrow Linewidth, Long Coherence Length, Single Longitudinal Mode (SLM), Collimated Beam, Fiber-Coupled 405, 488, 520, 633
MB-VIS-SM: Visible Single Mode Laser Diode Module MB-VIS-SM LD Module, Collimated Beam, Fiber-Coupled 405, 488, 505, 520, 633, 660
MicroMake: Compact All-in-One Precision Micromachining System MicroMake Pulsed DPSS Lasers, High Peak Power, Turn-Key System 266, 532
neoMOS Pulsed DPSS Lasers, Ultrafast Lasers, Ruggedized, Adjustable Rep Rate, High Peak Power, Customizable 1064
two versions of a clean, modern, silver colored pulsed DPSS laser amplifier housing neoVAN 1064
a clean, modern, silver colored pulsed DPSS laser amplifier housing neoYb 1030
Nimbus: Customized DPSS ns/sub-ns Laser Nimbus Pulsed DPSS Lasers, Adjustable Rep Rate, High Pulse Energy, High Peak Power, Low Jitter, Customizable 770, 1064
NPS: Narrowband Picosecond Mode-Locked Laser NPS Pulsed DPSS Lasers, Tunable Lasers, Ultrafast Lasers, Narrow Linewidth, Ruggedized, High Peak Power, Customizable 266-1064, 700-1800 Tunable
Onda: Compact High Peak Power Nanosecond DPSS Laser Onda Pulsed DPSS Lasers, Adjustable Rep Rate, High Peak Power, Customizable 266, 355, 532, 1064
gray and red compact nanosecond pulsed DPSS laser housing One by Bright Solutions One Pulsed DPSS Lasers, Airborne Laser, Low SWaP, Ruggedized, Adjustable Rep Rate, High Peak Power, Customizable 1030, 1047, 1064
PowerMir: 4-9 µm High Power Quantum Cascade Laser PowerMir LD Module, Single Emitter, QCL, Turn-Key System 4000, 4600, 4800, 9400
Q-DOUBLE: Double Pulse DPSS Q-Switched Laser Q-DOUBLE Pulsed DPSS Lasers, High Pulse Energy, High Peak Power, Low Jitter, Turn-Key System, Customizable 263, 266, 351, 355, 526.5, 532, 1053, 1064
sleek, modern, light grey colored DPSS laser housing Q-SHIFT Pulsed DPSS Lasers, High Pulse Energy, High Peak Power, Low Jitter, Turn-Key System, Customizable Multiple Wavelength Options
sleek modern light grey Nanosecond DPSS laser Quantas-Q-SPARK-1064 Q-SPARK Pulsed DPSS Lasers, High Pulse Energy, High Peak Power, Low Jitter, Turn-Key System, Customizable 266, 355, 532, 1064
Q-TUNE-G: Tunable DPSS laser/OPO Q-TUNE-G Pulsed DPSS Lasers, Tunable Lasers, Multi Wavelength, High Pulse Energy, High Peak Power, Turn-Key System, Customizable Tunable
Q-TUNE-HR: High Rep. Rate Tunable DPSS laser/OPO Q-TUNE-HR Pulsed DPSS Lasers, Tunable Lasers, Multi Wavelength, High Peak Power, Turn-Key System, Customizable Tunable
Q-TUNE-IR: Tunable IR DPSS Laser Q-TUNE-IR Pulsed DPSS Lasers, Tunable Lasers, Multi Wavelength, High Pulse Energy, High Peak Power, Turn-Key System, Customizable Tunable
sleek, modern, light grey colored OPO & DPSS laser housing Q-TUNE Pulsed DPSS Lasers, Tunable Lasers, Multi Wavelength, High Pulse Energy, High Peak Power, Turn-Key System, Customizable Tunable
sleek, modern, light grey colored DPSS laser housing Quantas-Q1 Pulsed DPSS Lasers, Adjustable Rep Rate, High Pulse Energy, High Peak Power, Low Jitter, Turn-Key System, Customizable 211, 213, 263, 266, 351, 355, 526.5, 532, 1053, 1064
Quantas-Q2-1064: High Energy, Compact, Nanosecond, DPSS Laser Quantas-Q2 Pulsed DPSS Lasers, High Pulse Energy, High Peak Power, Low Jitter, Turn-Key System, Customizable 211, 213, 263, 266, 351, 355, 526.5, 532, 1053, 1064
Quantas-Q2HE: High Energy, Nanosecond, DPSS Laser Quantas-Q2HE Pulsed DPSS Lasers, High Pulse Energy, High Peak Power, Low Jitter, Turn-Key System, Customizable 211, 213, 263, 266, 351, 355, 526.5, 532, 1053, 1064
sleek, modern, ultra-compact ns pulsed dpss RANGER laser housing for portable/handheld remote sensing, LIDAR, LIBS, and more RANGER "Eye Safe", Pulsed DPSS Lasers, Mil-Spec Lasers, Low SWaP, High Pulse Energy, High Peak Power, Customizable 1533
REPXXXX-DM: Discrete-Mode (DFB Like) Stabilized Laser Diode REPXXXX-DM LD Module, Single Emitter, DFB, Narrow Linewidth, Single Longitudinal Mode (SLM), Fiber-Coupled 759-764, 1260-1310, 1500-1560, 1560-1600, 1635-1670, 1720-1770, 2300-2333
REPXXXX-FP: Single-Mode Laser Diode REPXXXX-FP "Eye Safe", LD Module, Single Emitter, Fiber-Coupled 759-764, 1260-1310, 1500-1560, 1560-1600, 1635-1670, 1720-1770, 2300-2333
RPK-FL CW Fiber Lasers 1085
RPK-IR-MM: Fiber-Coupled IR Multimode Laser Diodes RPK-IR-MM Single Emitter, Multi-Emitter, Fiber-Coupled 793, 808, 976, 1064
RPK-IR-STAB: Fiber-Coupled IR Stabilized Laser Diode RPK-IR-STAB Multi-Emitter, VBG, Narrow Linewidth, Single Longitudinal Mode (SLM), Fiber-Coupled 785, 808, 878, 976, 1064
RPK-TK: Fiber-Coupled Turn-Key Direct Diode Laser System RPK-TK Multi-Emitter, Fiber-Coupled, Turn-Key System 405, 445, 520, 635, 660, 690, 785, 808, 830, 915, 976, 1064
RPK-VIS-MM: Fiber-Coupled Visible Multimode Laser Diode RPK-VIS-MM Single Emitter, Multi-Emitter, Fiber-Coupled 405, 525, 635
RPK-VIS-SM: Fiber-Coupled Visible Single Mode Laser Diode RPK-VIS-SM Single Emitter, Multi-Emitter, Fiber-Coupled 520, 635
RVBG: Stabilized Laser Diode RVBG LD Module, Single Emitter, VBG, Narrow Linewidth, Single Longitudinal Mode (SLM), Fiber-Coupled, Made in the USA 633, 680, 785, 808, 860, 976, 1030, 1064
RWLD-DFB: DFB Laser Diode RWLD-DFB Single Emitter, DFB, Narrow Linewidth, Single Longitudinal Mode (SLM) 1064, 1270, 1460, 1485, 1660
RWLD-IR-MM: Infrared Multimode Laser Diode RWLD-IR-MM Single Emitter 760, 780, 808, 850, 880, 915, 940, 980, 1064
RWLD-IR-SM: Infrared Single Mode Laser Diode RWLD-IR-SM Single Emitter 760, 780, 808, 850, 880, 915, 940, 980, 1064
RWLD-SWIR-MM: SWIR Multimode Laser Diode RWLD-SWIR-MM "Eye Safe", Single Emitter 1064, 1460, 1535, 1555
RWLD-VIS-MM: Visible Multimode Laser Diode RWLD-VIS-MM Single Emitter 445, 520, 635, 660
RWLD-VIS-SM: Visible Single Mode Laser Diode RWLD-VIS-SM Single Emitter 405, 460, 480, 488, 495, 505, 510, 520, 635, 650, 660
RWLP-DFB: DFB Stabilized Laser Diode RWLP-DFB Single Emitter, DFB, Narrow Linewidth, Single Longitudinal Mode (SLM), Fiber-Coupled 1270, 1310, 1410, 1460
RWLP-IR-MM Single Emitter, Fiber-Coupled 1064
RWLP-IR-SM: Infrared Single Mode Laser Diode RWLP-IR-SM Single Emitter, Fiber-Coupled 1064
RWLP-SWIR-MM: Short-Wave Infrared Multimode Laser Diode RWLP-SWIR-MM "Eye Safe", Single Emitter, Fiber-Coupled 1460
RWLP-UV-MM: Ultra Violet Multimode Laser Diode RWLP-UV-MM Single Emitter, Fiber-Coupled 375
RWLP-VIS-MM: Visible Multimode Laser Diode RWLP-VIS-MM Single Emitter, Fiber-Coupled 405, 445, 520, 660
RWLP-VIS-SM: Visible Single Mode Laser Diode RWLP-VIS-SM Single Emitter, Fiber-Coupled 405, 445, 520, 660
RWLS-RGB-TK: White Laser Diode Module RWLS-RGB-TK Single Emitter, Multi Wavelength, Fiber-Coupled, Turn-Key System, Customizable 445, 520, 635
SB1-IR: Ultra-Compact Rugged Infrared Microchip Laser SB1-IR Pulsed DPSS Lasers, Microchip Lasers, Airborne Laser, Narrow Linewidth, Single Longitudinal Mode (SLM), Low SWaP, Ruggedized, High Peak Power 946, 1064
SB1-UV: Ultra-Compact Rugged Ultraviolet Microchip Laser SB1-UV Pulsed DPSS Lasers, Microchip Lasers, Airborne Laser, Narrow Linewidth, Single Longitudinal Mode (SLM), Low SWaP, Ruggedized, High Peak Power 236.5, 266, 355
SB1-VIS: Ultra-Compact Rugged Visible Microchip Laser SB1-VIS Pulsed DPSS Lasers, Microchip Lasers, Airborne Laser, Narrow Linewidth, Single Longitudinal Mode (SLM), Low SWaP, Ruggedized, High Peak Power 473, 532
SL-Pico: White Light Picosecond Supercontinuum Laser SL-Pico Supercontinuum Laser, Broadband Lasers, Ultrafast Lasers, Multi Wavelength, Adjustable Rep Rate, High Peak Power, Turn-Key System 410-2400
SMX-DFB: DFB Stabilized Laser Diode SMX-DFB "Eye Safe", Single Emitter, DFB, Narrow Linewidth, Single Longitudinal Mode (SLM), Fiber-Coupled, Made in the USA 1310, 1550
SMX-MM "Eye Safe", Single Emitter, Triple-Junction, Fiber-Coupled, Made in the USA 1310, 1350, 1450, 1470, 1550, 1650, 1940
SMX-SM: Single-Mode Laser Diode SMX-SM "Eye Safe", Single Emitter, Fiber-Coupled, Made in the USA 1310, 1470, 1550, 1625, 1640, 1650, 1660
chip on carrier, straight, tilted, and curved waveguide chips, and a 14-pin butterfly package for semiconductor optical amplifiers SOAs SMX-SOA "Eye Safe", Fiber-Coupled, Made in the USA, Customizable 1310, 1550
simple, compact OEM pulsed laser housing with cooling fan and f-theta lens SOL Pulsed DPSS Lasers, Ruggedized, Adjustable Rep Rate, High Pulse Energy, High Peak Power 355, 532, 1064
sleek modern dpss laser housing, simple cubic design, black and blue TLS-Blue-Fixed-Bandwidth Supercontinuum Laser, Broadband Lasers, Tunable Lasers, Ultrafast Lasers, Multi Wavelength, Adjustable Rep Rate, High Peak Power, Turn-Key System Tunable
TLS-Red-Tunable-Bandwidth: Broadband Tunable Picosecond Laser TLS-Red-Tunable-Bandwidth Supercontinuum Laser, Broadband Lasers, Tunable Lasers, Ultrafast Lasers, Multi Wavelength, Adjustable Rep Rate, High Peak Power, Turn-Key System Tunable
UniMir: 10-17um: DFB Narrow Linewidth Gas Sensing QCL UniMir LD Module, Single Emitter, QCL, DFB, Narrow Linewidth Multiple Wavelength Options
Vento: MOPA Sub-Nanosecond Laser Vento Pulsed DPSS Lasers, Mil-Spec Lasers, Airborne Laser, Low SWaP, Ruggedized, Adjustable Rep Rate, High Pulse Energy, High Peak Power, Customizable 532, 1064
Wedge: Short Pulse Q-Switched DPSS Laser Wedge Pulsed DPSS Lasers, Airborne Laser, Ruggedized, Adjustable Rep Rate, High Pulse Energy, High Peak Power, Low Jitter 266-3100

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Pulsed Lasers FAQs
What is a Pulsed Laser?
What is a Pulsed Laser?

A pulsed laser is any laser that does not emit a continuous-wave (CW) laser beam. Instead, they emit light pulses at some duration with some period of ‘off’ time between pulses and a frequency measured in cycles per second (Hz). There are several different methods for pulse generation, including passive and active q-switching and mode-locking. Pulsed lasers store energy and release it in these pulses or energy packets. This pulsing can be very beneficial, for example, when machining certain materials or features. The pulse can rapidly deliver the stored energy, with downtime in between, preventing too much heat from building up in the material. If you would like to read more about q-switches and the pros and cons of passive vs active q-switches, check out this blog “The Advantages and Disadvantages of Passive vs Active Q-Switching,” or check out our Overview of Pulsed Lasers section on our Lasers 101 Page!

What is the best laser for LIDAR?

What is the best laser for LIDAR?

There are actually numerous laser types that work well for various LIDAR and 3D Scanning applications. The answer comes down to what you want to measure or map. If your target is stationary, and distance is the only necessary measurement, short-pulsed lasers, with pulse durations of a few nanoseconds (even <1ns) and high pulse energy are what you’re looking for. This is also accurate for 3D scanning applications (given a stationary, albeit a much closer target), but select applications can also benefit from frequency-modulated, single-frequency (narrow-linewidth) fiber lasers. If your target is moving, and speed is the critical measurement, you need a single-frequency laser to ensure accurate measurement of the Doppler shift. If you want to learn more about the various forms of LIDAR and the critical laser source requirements, check out our LIDAR page for a list of detailed articles, as well as all the LIDAR laser source products we offer. Get more information from our Lasers 101, Blogs, Whitepapers, FAQs, and Press Release pages in our Knowledge Center!

What is the best laser for tattoo removal?

What is the best laser for tattoo removal?

Similar to laser hair removal, laser tattoo removal utilizes a process known as selective photothermolysis to target the embedded ink in the epidermis and dermis.  Photothermolysis is the use of laser microsurgery to selectively target tissue utilizing specific wavelengths of light to heat and destroy the tissue without affecting its surroundings.  In laser tattoo removal this is accomplished by using a focused q-switched laser with a fluence of approximately 10 J/cm2, to heat the ink molecules locally.  Since the q-switched laser’s pulse duration (100 ps to 10 ns) is shorter than the thermal relaxation time of the ink molecules it prevents heat diffusion from taking place.  In addition to minimizing damage to the surrounding tissue, this rapid localized heating results in a large thermal differential, resulting in a shock wave which breaks apart the ink molecules. If you would like more details on pulsed lasers for tattoo removal applications, see our Aesthetics Lasers page here! Get more information from our Lasers 101, Blogs, Whitepapers, and FAQ pages in our Knowledge Center!

What is the difference between active and passive q-switching?
What is the difference between active and passive q-switching?

There are a wide variety of q-switch technologies, but the technique as a whole can be broken down into two primary categories of q-switches, passive and active. Active q-switches could be a mechanical shutter device, an optical chopper wheel, or spinning mirror / prism inside the optical cavity, relying on a controllable, user set on/off ability. Passive q-switches use a saturable absorber, which can be a crystal (typically Cr:YAG), a passive semiconductor, or a special dye, and automatically produce pulses based on it’s design. Both passive and active q-switching techniques produce short pulses and high peak powers, but they each have their pros and cons. When choosing between actively q-switched and passively q-switched lasers, the key is to understand the tradeoffs between cost/size and triggering/energy and decide which is best for your particular application. Read more about these tradeoffs in this article: “The Advantages and Disadvantages of Passive vs Active Q-Switching.” Get more information from our Lasers 101, Blogs, Whitepapers, FAQs, and Press Release pages in our Knowledge Center!

What type of laser is used for LIBS?
What type of laser is used for LIBS?

A laser source used for LIBS must have a sufficiently large energy density to ablate the sample in as short a time possible. Typically, pulsed DPSS lasers take center stage here. However, it’s been shown that pulsed fiber lasers can also be a great option. For example, you could utilize fiber lasers to measure detection limits as low as micrograms per gram (µg/g) for many common metals and alloys, including aluminum, lithium, magnesium, and beryllium. Analytical performances showed to be, in some cases, close to those obtainable with a traditional high-energy Nd:YAG laser. The beam quality of fiber lasers, in conjunction with longer pulse widths, resulted in significantly deeper and cleaner ablation craters. If you want to learn more about LIBS and ideal laser sources, check out either this blog: “OEM Fiber Lasers for Industrial Laser Induced Breakdown Spectroscopy,” or this blog: “Laser Induced Breakdown Spectroscopy (LIBS) in Biomedical Applications.” Get more information from our Lasers 101, Blogs, Whitepapers, FAQs, and Press Release pages in our Knowledge Center!

Which IR laser is best for laser target designation?
Which IR laser is best for laser target designation?

There are many different types of laser designation systems used by the military today. Still, they all share the same basic functionality and outcome. At a glance, the laser requirements seem relatively straightforward. The laser needs to be invisible to the human eye, and it needs to have a programmable pulse rate. Still, when you look in more detail, many small factors add up to big problems if not appropriately addressed. Excellent divergence and beam pointing stability, low timing jitter, and rugged, low SWaP design are all critical features of a good laser designation source. Read more on these critical features in this article: “What are the Critical Laser Source Requirements for Laser Designation?” Get more information from our Lasers 101, Blogs, Whitepapers, FAQs, and Press Release pages in our Knowledge Center!