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Scanning Slit Beam Profilers
DataRay manufactures two types of scanning slit beam profilers: the patented BeamMap series, which offers real-time M², divergence, focus and alignment management, and the Beam’R series which provides affordable, compact, and precise beam profiling. All of our scanning slit beam profilers are available with Si, Ge, and InGaAs detectors, covering wavelengths from 190 nm to 2500 nm.
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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.
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*Terahertz Measurement
Terahertz laser power and beam profiling measurement is not a trivial task. But as anyone using or developing THz lasers knows, it is crucial to obtain accurate measurements of your laser. Ophir offers a few choices, depending on what aspect of your laser you need to measure. Read these posts for more about Terahertz measurement.
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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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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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M² Measurement Systems
Thorlabs' M2 Measurement Systems provide self-contained, turn-key solutions for measuring M2, divergence, focus diameter, waist position, Rayleigh length and other laser beam quality metrics. Pre-configured, factory-aligned systems covering wavelength ranges between 250 nm and 2700 nm are available. Choose from among systems that have a scanning-slit beam profiler, a camera beam profiler, or no beam profiler.
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Light Analysis
Welcome to Thorlabs; below you will find links to detectors and instrumentation that measure the various properties of light, a subset of our entire line of photonics products. Thorlabs offers an extensive selection of instruments that measure the properties of light. Our versatile power and energy meters can be used with over 25 different sensors in order to make NIST-traceable power and energy measurements. If the convenience of a meter is not desired, our selection of detectors includes basic photodiodes (uncalibrated and calibrated), photodetectors (biased, amplified, and avalanche), CCD and CMOS arrays, position detectors, integrating spheres, and photomultiplier tubes. The Beam Characterization category contains beam profilers (camera and scanning slit), a wavefront sensor, spectrometers, and interferometers, while the Polarimetery link leads to a selection of instruments used to measure and control the polarization of light.
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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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Laser energy meter with high dynamic range
PM 200
In the past laser energy meters often required a whole selection of pyroelectric detectors for measuring different energies. From this point of view the PM 200 is a very modest instrument. A single detector enables monitoring of energies from the detection limit at 3 ?J up to highest energies of 200 mJ. The active sensor area with an aperture diameter of 34 mm ensures simple and reliable alignment for the detection of large beam profiles.?
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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 the characteristics of the artificially created beam waist and divergence. We have a number of solutions for the measurement of M² ranging from simple manual processes to fully automated dedicated instruments, depending on the frequency of the need to measure M² of lasers and laser systems.
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Specialized Beam Profiler Systems
DataRay offers specialized beam profiler systems. These systems offer solutions for complex applications. The large beam profiling system is suitable for beams up to 200 mm image area, and the line laser profiling system provides for direct measurement of line lasers up to 200 mm in length.
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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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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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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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*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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Beam Profiler
BladeCam Series
0.65" Thin! Portable, Port-Powered, USB 2.0, Beam Profiling for Windows XP & Vista, Intel-Mac.
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Laser
BDL-SMN Series
*Pulse Width Down to 40 ps*Repetition Rate 20 MHz / 50 MHz / 80 MHz / CW (Switchable)*Free Beam Output or Single-Mode Fiber Coupling*Beam Profile Correction Optics*All Electronics Integrated*No External Driver Unit*Simple +12 V Supply*Fast On / Off / Multiplexing Capability*Synchronisation Input
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LED Measurement – UV, VIS, NIR
UV, VIS, and IR LEDs are replacing traditional light sources and are enabling new applications. Ophir offers a number of choices in LED power measurement - use the LED sensor finder to find the right sensor. For cases where a complete image of the beam distribution is necessary, use a beam profiling camera.
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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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Beam Profiler Software
RayCi
CINOGY’s beam profilers are available with the specifically designed beam profiling software RayCi, which utilizes new developed correction algorithms and incomparable visualizations modes. This ensures the highest accuracy in beam profile analysis according to ISO standards.
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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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Scanning Slit Beam Profiling
NanoScan
Measure your beam as never before with the NanoScan™ beam profiler. The advantage of scanning slit beam profiling is sub-micron precision for measuring beam position and size. Scan head configurations include Silicon, Germanium, and Pyroelectric versions for a wide range of wavelengths and laser power levels. The NanoScan software is available in two versions: Standard and Professional, and includes an extensive set of ISO quantitative measurements, an M2 Wizard, and the ability to measure laser power.
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Computerized Knife-Edge Tomography (CKET)
Many new generation lasers, having a spectrum which is out of the sensitivity response of typical camera detectors require different technologies to be ex-amined. Tomographic knife-edge technology offers a feasible solution. Multiple knife-edges scanning from different directions provide beam profiles depen-dent on scanning angle. By reconstruction techniques used in tomography, an image-like profile can be reconstructed and analyzed. Various detectors are used to provide a wide spectral range measurement capability
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Ion Beam Deposition
Create ultra-precise, high-purity, thin film layer devices with maximum uniformity and repeatability with Ion Beam Deposition (IBD) Systems.
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Expanded Beam Connectors
Amphenol Fiber Systems International
Expanded Beam uses a lens in front of the fiber to collimate the light coming out of the fiber. The lens expands the size of the beam from 9 um to 285 um for SM. Expanded Beam connectors have distinct advantages and disadvantages compared to Physical Contact connectors. Read our White Paper on Expanded Beam Connectors for more in-depth details.
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Thermal Profiler
KIC K2
The latest-generation mobile-friendly profiling technologyThe KIC K2 Thermal Profiler features a compact and robust design that allows it to fit through the tight, heated chambers of lead-free reflow ovens. A plug-and-play hardware and graphical user interface makes profiling both quick and easy. The profile data measured by the K2 can now be viewed on either a PC or on a mobile device using the Profile Viewer App.
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Ion Beam Etch
Nexus IBE Series
Etch precise, complex features for high-yield production of discrete microelectronic devices and components with the NEXUS® Ion Beam Etch (IBE) Systems.
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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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Wave Profiler
The Wave Profiler allows the user to measure non-directional wave parameters continuously for long periods of time with high temporal and spatial resolution in deeper water from the safety of an underwater mooring. The instrument is particularly useful for clients who need to measure long-period waves (such as rogue waves or infra-gravity waves), waves in wash and in wakes, and non-linear waves.