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Laser Beam
See Also: Pulse Width, Beam
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Laser Beam Alignment
The alignment product line provides full solutions for applications such as: alignment of laser cavities, straightness measurement, machine alignment, wide-bed printers alignment and others. The AlignMeter system simultaneously measures incoming laser beam position (in µm) and angle (in µRad).It is a powerful compact device perfect for alignment monitoring, for testing the drift, centration and beam alignment relative to the outer housing or tube.
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Digital Laser Beam Analyzer
ScienceGL offers economic laser beam profiling solutions for laser beam measurement, diagnostics and analysis. The Digital Laser Beam Profiler allows you to analyze laser output quickly and accurately at fraction of the market price. The profiler utilizes our advanced computer graphics engine for best visual perception of the beam in 3D realistic representation. Traditional 2D plot colored by the look up table (LUT) is also available.
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Extended SWIR Camera For Laser Beam Profiling
BPCam
Princeton Infrared Technologies, Inc.
The Princeton Infrared Technologies’ extended SWIR response T2SL BPCam SWIR camera for laser beam profiling supports extended SWIR wavelength response with TEC cooled operation.
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Continuous-wave (CW) Lasers
Continuous-wave lasers (cw lasers) emit a continuous laser beam as compared to ultrafast or pulsed lasers that emit a pulsed laser beam. Spectra-Physics offers wavelength tunable cw lasers, standard cw lasers, quasi-cw lasers, and accessories for continuous-wave lasers.
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Focal Spot Analyzer
Measure your laser beam power distribution and focal spot size of wavelengths from 300 – 1100nm. The average power can be from <1 to 400 Watts and up to 5 kW for FSA-HP, the focal spot can be as small as 34.5μm. The FSA can also be used to measure how the focal spot shifts with power during its critical start-up phase.
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Automated Laser Test System (ATE)
Lix is a class of instruments for automated laser beam profiling, power measurement and analysis with integrated machine vision.
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Laser Modules
The piezo laser modules include an attenuator, a filter wheel, an X-Y aperture, and a rotating waveplate. These compact laser modules can be integrated independently or can be daisy-chained together into laser beam delivery systems and have a damage threshold of 5 J/cm2. Attenuator modules connected together can also provide independent control of energy in multiple wavelength systems.
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Beam Diagnostics Systems
Characterize the spatial intensity distribution and size of laser beams, and visualize beam shape, with speed and accuracy.
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Galvo-Resonant Scan Head and Controller
Our LSK-GR08(/M) Galvo-Resonant Scanner contains one resonant scan mirror and one galvo scan mirror that deflect an incident laser beam in X and Y, respectively. Identical to the galvo-resonant scanner used in our Bergamo® II multiphoton microscopes and complete Cerna®-based confocal systems, the 8 kHz resonant frequency of the resonant scan mirror enables much higher-speed scans than a galvo-galvo system. In our Bergamo system, the scanner can achieve 30 fps at 512 x 512 pixels image resolution.
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*High Power Laser Beam Dumps & Low Power Beam Traps
Laser beam dumps for high power laser processing, laser measurement and other applications, and low power beam traps
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M2 & BPP Systems
The M2 factor wil define the beam propagation characteristics compared to ideal Gaussian beam propagation. According to ISO Standard 11146 rightfully offers the laser beam characterization as "M2 times diffraction limited beam", as such, a perfect beam will have an M2 of 1. 1 will be the best achievable value and no beam could have an M2 less than 1. Our conceptual design is based on sub-assemblies allowing to change the sensing head in the M2 device, offering multiple wavelengths heads up to 2.7 microns from deep UV (knife-edge technology) and camera based technology with built-in automatic filter wheel for adjustment. For focused beams, the same measuring head could be attached to a device for meauring highly divergent or highly convergent beams - FocusGage-BA, wherein the Laser Analyzing Electronic Autocollimator offers the capability of divergence measurement with Coming Soon M2 definition. M2Beam is the cornerstone of those measuring devices.
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Infrared Pyrometer with Laser Sighting
thermoMETER CTlaser
Pyrometers of the thermoMETER CTLaser series are used for precise, industrial measurements. Using two laser beams, the measurement spot is marked which ensures a precise temperature measurement. thermoMETER CTLaser temperature sensors are used in numerous applications. From extremely low temperatures (-50°C) to the highest temperatures (3000°C), these IR pyrometers measure precisely and reliably.
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*Power/Position/Size Thermal Sensors
BeamTrack
Thermal sensors that measure laser power and single shot energy like standard thermal sensors but in addition measure laser beam position and laser size. This position sensing detector measures laser beam position to 0.1mm accuracy and laser size measurement of a Gaussian beam to +/-5% accuracy. Measuring laser position is important for laser alignment where the laser position sensor can provide feedback to the laser position control.
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Micrometers
Shadow laser micrometer is a powerful tool for precision measurements in various applications. This device uses a laser beam to project a shadow of an object onto a receiver, allowing for accurate and non-contact measurement of distances and dimensions.
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SHSLab Wavefront Sensors
The SHSLab wavefront sensor system is a powerful and comprehensive measurement solution for a multitude of optical applications, such as:*alignment of optical systems *measurement of imaging quality*surface shape measurement*laser beam characterization
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Multi-Spectral UV/Laser Range Stimulator
Phantom™
The Phantom is a long-range laser and ultraviolet (UV) stimulator capable of testing aircraft electro-optical sensor suites up to 5 km. Phantom can operate as an independent laser and/or UV stimulator or can be integrated with our other electro-optical and radio frequency range systems (see GTESS and PRTS). The Phantom provides both a laser threat and a synchronized temporal missile plume signature to stimulate both the aircraft’s laser and missile warning systems. Training aircrew to counter maneuver a Laser Beam Riders (LBR) threat is considered essential to survival and in-air training. The Phantom can be deployed either on a shoulder or tripod mount.
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Pro Laser Tachometer
332
The #332 is the ideal tool for easy and accurate measurement of RPM in almost any environment. Simply aim the laser beam at a reflective mark placed on a rotating device, push the button and the RPM reading is immediately displayed. No contact with the shaft or wheel is necessary. The laser beam is not affected by shop light and can detect RPM from longer distances of up to 6 feet away. The #332 can measure up to 99,999 RPM in 1 RPM increments. It can be used to measure RPM on coil-on-plug and diesel engines, where conventional inductive tachometers can not be used. Other uses include generators, compressors, industrial engines, fans, gears and more. Zippered case, reflective tape, instructions & 9V battery included.
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Micromachining Laser Systems
Versatility in terms of materials Taper controlled drilling Only top – quality components Intelligent laser machining software Beam focus adjustment Beam power (pulse energy) control Many options for system customization Table top system Small footprint Cost effective workstation User-friendly, flexible, upgradeable system control
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wavefront sensors
HASO4 FIRST
HASO4 FIRST is the ideal choice for results driven professionals in domains including adaptive optics, optical process optimization, laser beam characterization, and many others. Thanks to our patented technology, the HASO family by Imagine Optic are world's only sensors with no bias error, keeping its phase accuracy on any measured intensity profile (Gaussian, Top-Hat, hyper Gaussian, etc.). The USB 3.0 connectivity and the ergonomic design allow an easy plug and play installation of the HASO4 FIRST in any application.
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Thermal Image Plates
No longer are the firebricks and smoldering paper "tools of the trade" for researchers working with CO2 lasers. Now it''s possible to see IR laser beams in real time and with high resolution using a Thermal Image Plate from Macken Instruments. The characteristics of this instrument enable it to solve a wide range of problems. For example:
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Three Axis Interferometer
10735A
The Keysight 10735A Three Axis Interferometer is used in multiple axis applications where linear and angular control of the stage is required. It combines in a single package the functionality of an optical bench with multiple beam benders, beam splitters, and three interferometers. The interferometers split an incoming laser beam into three beams to measure linear distance, pitch and yaw, or linear distance, roll and yaw. Three linear measurements provide the basis for calculating two angular measurements. The inherent beam parallelism ensures that there is essentially no cosine error between the three measurements and also ensures angle accuracy for pitch and yaw measurements. Other characteristics include:
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Beam Position Detectors
We offer a wide range of laser beam position detectors for optical alignment including Quadrant Cell Photoreceivers, PSDs, and Thermopile Position Sensors. Please see our Beam Position Sensor Guide for more information.
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Camera BasedBeam Profilers
Our Camera beam diagnostic Line-up offers measuring capabilities starting from sub-micron laser beams to sensors of 1/1.2" with built-in automatic filters wheels. The camera based beam diagnostic offers the intensity measuring profile and the detailed beam power distribution within the profile.
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Laser Beam Positioning
Under the trade name of SpotOn we offer a wide variety of computerized position measurement systems.This is a family of cost-effective and versatile solutions to numerous industrial and laboratory applications.Among the measurement applications, are:Measure laser power and centration or displacementAlign beams and QC of optical systemsMeasure target rotation and displacementMonitor vibration, deflection and motion
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Laser Microdissection and Optical Tweezers
Laser Microdissection is the contamination-free method for separating and collecting cells of interest out of tissue samples or cell cultures. The isolated pure cell populations are the ideal starting point for specific and meaningful results in your molecular analysis. Optical Tweezers are also a contact-free method that uses a highly focused laser beam to manipulate and sort cells in suspension, for example bacteria.
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Laser Levels
Fast, accurate and portable, PLS laser levels save time and money versus traditional layout methods using a bubble vials, plumb bobs or complex measurements. Compare the benefits PLS laser tools: Beam quality will be bright, thin and crisp. Drop tested with water and dust Ingress Protection (IP). Designed for the professional contractor with self-leveling technology. Green Laser Levels, Rotary Lasers, Point Lasers and Line and Combo Lasers.
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50% Beam Splitter
10701A
The Keysight 10701A beam splitter is designed for beam diameters of 6 mm or less. It reflects one half of the total incoming laser beam, and transmits one half. The Keysight 10701A optic includes a housing for standard mounting.
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Flatness Accessory Kit
55282A
The 55282A Flatness Accessory Kit is composed of an 10759A Footspacing Kit and two 10773A Flatness Mirrors. The footspacing kit provides three precision baseplates, with 50.8 mm (2 in), 101.6 mm (4 in), and 152.4 mm (6 in) pad spacing respectively, that minimize the grid setup and data accumulation time required for plate calibration. The flatness mirrors provide 100 percent reflectance and turn the direction of an incoming laser beam 90 degrees.
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*Measure Focus Spot
The focus spot analyzer can measure your laser beam power distribution and focal spot size of wavelengths from 266 – 1100nm. The average power can be from <1 to 400 Watts and the focal spot can be as small as 25µm. The FSA can also be used to measure how the focal spot shifts with power during its critical start-up phase.
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Laser Rangefinders
A rangefinder that uses a laser beam to determine the distance to an object.