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Free Space Tapered Amplifier
The AOSense tapered amplifier (TA) provides a coherent high-power beam, inheriting all properties from the seed source. TA’s are an essential optical component for quantum sciences, such as laser cooling and trapping, cold atom sensors, electromagnetically induced transparency, and quantum spectroscopy. The TA is also used in commercial laser modules, including master oscillator power amplifier (MOPA) lasers and external cavity lasers.
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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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Pure Boron Foils
MICROMATTER™ boron foils are also produced by laser plasma ablation; however, the deposition process is much more complex and time consuming than that for diamond-like carbon. Accordingly, only thin films, mainly designed for beam stripping of heavy ions in electrostatic accelerators, are available. All films are generally delivered on glass substrates coated with a release agent.
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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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High-power, Retro-reflective Laser Sensor
LV-H67
High-power, Retro-reflective. Ultra-high power laser with a maximum detecting distance of 50m(164?). The bright beam spot allows easy optical axis alignment, even at a long distance.
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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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Wavefront Measurement Systems Using the Shack-Hartmann Sensor
Lumetrics has applied the ingenious Shack-Hartmann sensor to a range of wavefront measurement systems ideal for analyzing optics-related products and materials, from contact lenses to intraocular lenses to laser beam analysis, surface measurement, and phase parameters. While Shack-Hartmann technology may be widely adopted in the wavefront metrology industry, Lumetrics has applied the technology in unique ways and added industry-leading hardware and software features to our systems that offer you significant advantages over our competitors.
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Laser Rangefinders
A rangefinder that uses a laser beam to determine the distance to an object.
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Simulating Optical Design Components
Wave Optics Module
The Wave Optics Module provides dedicated tools for electromagnetic wave propagation in linear and nonlinear optical media for accurate component simulation and optical design optimization. With this module you can model high-frequency electromagnetic wave simulations in either frequency- or time-domain in optical structures. It also adds to your modeling of optical media by supporting inhomogeneous and fully anisotropic materials, and optical media with gains or losses. It is straightforward to simulate optical sensors, metamaterials, optical fibers, bidirectional couplers, plasmonic devices, nonlinear optical processes in photonics, and laser beam propagation.
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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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Turning Mirror
10769A
The 10769A is ideal for use in laser measurement and calibration applications. In the calibration of slant bed lathes, for example, the beam steering mirror deflects the beam from the laser head upward, through the interferometer, along the lathe's cross slide. One or more mirrors can also create a path from a laser head to an interferometer located in an otherwise inaccessible position, as in the case of a milling machine with a table that moves in only one axis.
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LED Collimated Beam Sensor
LA-300
Panasonic Industrial Devices Sales Company of America
LED Collimated Beam Type, which is as accurate as a Laser Sensor, but much safer.
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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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High-resolution, SWIR megapixel camera
Wildcat+ 1280 Series
The Wildcat+ 1280 series is based upon a state-of-the-art InGaAs photodiode array with 1280×1024 pixels and 5 μm pixel pitch. The camera offers superior, high-resolution SWIR imaging capabilities, comes in a versatile and industry-proven Wildcat camera package (GenICam compliant) and offers advanced on-board image processing.The Wildcat+ 1280 camera outputs full frame images at 120 Hz via either a CameraLink or USB3 Vision interface.The Wildcat+ 1280 is suitable for semiconductor inspection, display inspection (mobile phone and TV), microscopy and laser beam analysis.Benefits & Features• Compact and industry-proven camera design• High-resolution SWIR imaging• Advanced on-board image processing performance• GenlCam compliant• Flexible optical mount and lens options
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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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Laser Levels
Shenzhen UYIGAO Electronic Technology Co., Ltd
UYIGAO laser level is a construction tool which measures levelness by projecting a red or green light beam onto a flat surface. Laser levels are used to deduct how level or straight a surface is by projecting a light beam across or around it.
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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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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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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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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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Fiber Pigtailed Tapered Amplifier
The AOSense tapered amplifier (TA) provides a coherent high-power beam, inheriting all properties from the seed source. TA’s are an essential optical component for quantum sciences, such as laser cooling and trapping, cold atom sensors, electromagnetically induced transparency, and quantum spectroscopy. The TA is also used in commercial laser modules, including master oscillator power amplifier (MOPA) lasers and external cavity lasers.
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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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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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Multi-Laser Light Source
LS-n
The LS-n is a customizable, compact fluorescence excitation source that provides up to four different laser wavelengths in a single combined output beam, with each laser individually controllable using ANF's custom software. An LS-4 unit (containing four lasers) is included with each standard NFM NanoFluorescence Microscope.
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Laser Heads
The laser head is the source of the laser beam used in all laser motion and position measurement systems. The primary difference between laser heads is in the velocity, reference frequency and optical output power. Other considerations are size, heat dissipation, and input power requirements. Which laser you choose depends primarily on the application in which it will be used. For example, semiconductor lithography systems typically have faster moving parts (stages), and therefore need higher velocities than machine tool applications.
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Digital Laser Sensor
LS-400
Panasonic Industrial Devices Sales Company of America
The LS Series Digital Laser Sensor combines a highly focused, concentrated laser beam with a coaxial optical lens system to detect extremely small objects from long distances. This Series is particularly suitable for monitoring or detecting extremely small objects on a conveyor belt, for monitoring the sizes of objects and for monitoring edge positions in industrial production.
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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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Laser Head
5517CL
The Keysight 5517CL is used primarily in VME and PC based laser interferometer systems where the velocity of motion is faster, such as semiconductor lithography and flat panel applications. Option 009 allows a larger angular range of measurement by providing a 9 mm beam diameter for use with three-axis interferometers. Please contact Keysight for custom requirements.
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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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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.