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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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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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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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Ultra-compact Laser Collimated Beam Sensor
HL-T1
Panasonic Industrial Devices Sales Company of America
The HL-T1 Sensor is an ultra-small laser Thru-Beam Sensor with very high 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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Automated Laser Beam Quality Measurement System
Beamage-M2
Large Apertures: The only M2 system on the market equipped with a complete set of 50mm optics. Also, the sensor is 11.3 x 11.3 mm. Simple Alignment: Two beam-steering mirrors are included for quick and easy alignment of your laser into the system. The internal mirrors are factory-aligned and the pre-set height also simplifies the alignment.Available Fall '17
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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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Blue-violet Laser Diode Modules: 450nm, Elliptical Beam
The Optoelectronics Company Ltd
Custom lasing wavelengths, from 405 nm to 852 nm, output power options and laser engraving are available to your specifications. Both standard and custom configurations provide OEMs, end-users and systems integrators with complete cost-effective laser solutions.
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Infrared Laser Diode Modules: 830nm-852nm, Elliptical Beam
The Optoelectronics Company Ltd
Custom lasing wavelengths, from 405 nm to 852 nm, output power options and laser engraving are available to your specifications. Both standard and custom configurations provide OEMs, end-users and systems integrators with complete cost-effective laser solutions.
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Laser Diode Collimators, 520nm - 785nm, Elliptical Beam
The Optoelectronics Company Ltd
Custom lasing wavelengths and power options are available. Both standard and custom configurations provide OEMs, end-users and systems integrators with complete, cost-effective laser solutions.
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Beam Probes
The CO2 Laser Beam Probes are hand-held plates designed to simplify the alignment of IR optical systems. They display the laser beam as a dark image on a fluorescent background using the same UV-excited, thermal-sensitive surfaces developed for Macken Instruments'' Thermal Image Plates.
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Beam Profiler
WinCamD series
CW & Pulsed laser profiling. Wavelength Range: 190 nm- 15 m*. Resolution: 5.0 m*. Smallest Beam: 42 m*.
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Beam Profiling
The beam propagation factor M2 is a common single parameter that charac-terizes the whole beam as it propagates through space. According to ISO standard 11146, this parameter could be defined by several measurement techniques based on beam profiling along several points of the propagating beam. The standard defines several measurement techniques, all of which are based on beam profiling measurements using devices such as cam-eras, knife edge and slits. There are two main measurement requierments...show more -
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Laser Diode Modules: 635nm-660nm Visible Wavlength, Elliptical Beam
The Optoelectronics Company Ltd
Custom lasing wavelengths, from 405 nm to 852 nm, output power options and laser engraving are available to your specifications. Both standard and custom configurations provide OEMs, end-users and systems integrators with complete cost-effective laser solutions.
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15% Beam Splitter
10725C
The 10725C 15% beam splitter, designed for beam diameters of 9 mm or less, reflects 15% of the total incoming laser beam and transmits 85% straight through. This optic is without housing and requires a user-supplied mount.
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33% Beam Splitter
10700A
The Keysight 10700A beam splitter is designed for beam diameters of 6 mm or less. It reflects one third of the total incoming laser beam, and transmits two thirds. It includes a housing for standard mounting.
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4% Beam Splitter
10725B
The 10725B 4% beam splitter, designed for beam diameters of 9 mm or less, reflects 4% of the total incoming laser beam and transmits 96% straight through. This optic is without housing and requires a user-supplied mount.
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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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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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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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Beam Profiling System
BeamCheck
BeamCheck is an integrated laser measurement system designed to measure critical laser beam parameters for laser-based additive manufacturing systems BeamCheck includes a CCD camera for spatial measurements and a NIST-traceable power sensor that will provide a complete analysis of the laser power density profile.
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*Beam Propagation Analysis
M²
M², or Beam Propagation Ratio, is a value that indicates how close a laser is to being a single mode TEM00 beam, which in turn determines how small a beam waist can be focused. For the perfect Gaussian TEM00 condition the M² equals 1. M² cannot be determined from a single beam profile measurement. The ISO/DIS 11146 requires that M² be calculated from a series of measurements. M² is measured on real beams by focusing the beam with a fixed position lens of known focal length, and then measuring th...show more -
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*High-Power Beam Profiling
Beam analysis of high-powered industrial lasers have always proved to be difficult because of the power levels (affecting the power densities) that these lasers operate at. Yet, the measurement of these lasers are critical for their success because of thermal effects which are more of a factor at these higher powers. These high-power performance measurement products have proven to be solutions for laser users who operate and maintain these high-powered lasers
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Non-Contact Beam Profiler
BeamWatch
The patented BeamWatch non-contact profiling system accurately captures and analyzes industrial multi-kilowatt lasers wavelengths from 980nm - 1080nm by measuring Rayleigh Scattering. It features a complete passthrough beam measurement technique, no moving parts, and a lightweight compact design which makes it ideal for comprehensive analysis of industrial multi-kilowatt lasers
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UV-NIR Beam Profiler
CinCam
CINOGY Technologies CinCam is optimized to provide excellent sensitivity from the UV to NIR spectral range involving CCD/CMOS/InGaAs technologies. Thanks to its high resolution and its small pixel size, the CinCam ensures the highest accuracy in laser beam analysis of cw and pulsed laser systems. The plug and play design facilitates easy and flexible adaption to standard optical components.
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*Beam Profiling For 266nm To 3000µm
Unlike a power meter that measures average or instantaneous Watts or Joules of the overall laser beam, knowing how the power is distributed within the beam is equally as important. As an example, if you want to cut something the power should generally be focused in the center of the beam to concentrate the power density in a very small area but if you were trying to weld something with all the power in the center you would poke a hole in the weld; requiring the power to be equally distributed as in a top hat profile.
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Camera Based Beam Profiling
BeamGage
See your beam as never before with BeamGage®. The camera-based beam profiling system consists of a camera and analysis software. Often times, this system will need to be used with beam attenuation or beam sizing accessories, depending on your laser application. The advantage to camera-based beam profiling is the real-time viewing and measuring of a laser’s structure. BeamGage software includes an extensive set of ISO quantitative measurements, features a rich graphical interface, and features its patented UltraCal™ algorithm, providing the industry’s highest accuracy measurements.
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Entry Level Beam Profiling
BeamMic®
BeamMic is simplified set of measurement tools for the entry level beam analysis user. The camera-based beam profiling system consists of a camera and analysis software. Often times, this system will need to be used with beam attenuation or beam sizing accessories, depending on your laser application. BeamMic includes a complete set of high-accuracy measurements, and features a rich graphical interface. For the laser technician, this entry-level software will easily help you quickly become familiar with the many benefits of beam profiling.
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High Power Beam Analysis
The advantages of fiber lasers are their high power, mechanical stability and good beam quality; however beam quality and beam profile has to be periodically checked. In general, there are many difficulties in checking beam quality especially at the focal point, where densities will exceed 50KWatt per square cm. On one hand those energies are capable of melting and destroying most known materials, while on the other hand measuring a focused profile is the most significant measurement.
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Large Aperture Beam Profilers
Modern laser applications seldom require large beam profiling, combined with high resolution. The BeamOn HR 1" is the perfect solution enabling both relatively large beam characterization, with a high resolution detector of 20 MP. By implementing a diffuser to present the beam to a smaller detector via dedicated optics, one of the largest beam profilers of 60 mm is offered, i.e BeamOn LA U3. Even further than that, for collimated beams the Laser Analyzing Telescope offers an input aperture of 100 mm combined with high resolution, attitude and divergence measurement of the laser beam.