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Beam Pattern Measurement System
BP100
The BP100 is purpose-made for luminous intensity measurement of lamps, using a diffusely transmitting screen to provide a flat image that can be measured by an imaging photometer. This is a low cost, versatile solution in comparison to the traditional method of measuring lamp properties as a function of angle of emission, using Goniometers that are often costly and dedicated for one specific measurement.
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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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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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50% Beam Splitter BK7, Fixed Horizontal-Bend Mount
E1834G
The E1834G is a 50% beam splitter in a high performance horizontal mount that offer the high pointing stability for Keysight laser interferometer measurement system. The 8 flexure feet are designed for stable beam pointing.
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Full Bridge Thin Beam Force Sensors
TBS SERIES
The TBS Series thin beam force sensors many different parameters found in medical instrumentation, home appliances, process control, robotics, and automotive are exceptionally suited for small load measurements. They are designed to measure and many other high volume applications. A specially developed integrated strain gage includes all balancing, compensating and conductive elements and is laminated to the beam to provide excellent stability and reliability.
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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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Compact Type 4 Safety Beam Sensor
ST4
Panasonic Industrial Devices Sales Company of America
Panasonic's concept of connecting 6 sets of Sensor heads to 1 Controller in series offers maximum flexibility to solve a wide range of safety applications. Just configure exactly the number of Sensor heads and controllers required to protect the area in question, e.g. small openings or irregularly shaped spaces impractical for Safety Light Curtains. A beam interruption indicator is incorporated in both the emitter and receiver to indicate operation and assist with beam alignment.
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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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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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Single Beam Interferometer
10705A
The Keysight 10705A Single Beam Interferometer, the smallest linear interferometer, is designed for making low mass or limited space single axis measurements. It is ideal for use in disk drive and other confined space applications. The single beam interferometer is called that because the outgoing and returning beams are superimposed on each other, giving the appearance of only one beam traveling between the interferometer and the retroreflector.









