MKS Ophir
Ophir is a brand within the MKS Instruments Photonics Solutions Division. The Ophir product portfolio consists of laser and LED measurement products, including laser power and energy meters, laser beam profilers measuring femto-watt to hundred-kilowatt lasers, high-performance IR and visible optical elements, IR thermal imaging lenses and zoom lenses for defense and commercial applications, OEM and replacement high-quality optics and sub-assemblies for CO2 and high-power fiber laser material processing applications. Ophir products enhance our customers’ capabilities and productivity in the semiconductor, advanced electronics and specialty industrial markets. For more information, visit www.ophiropt.com.
- 1-800-383-0814
435-753 3729 - 435-753 5231
- sales.ophir.usa@mksinst.com
- 3050 North 300 West
North Logan,, UT 84341
United States of America
Categories
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*Laser Thermal Power Sensors
Thermal sensors have a series of bimetallic junctions called a thermopile. Radial or axial heat flow through the sensor creates a voltage proportional to the power absorbed as it flows through the thermopile. The reading is not dependent on the ambient temperature since only the temperature difference is measured and not the absolute temperature. The thermopile elements are so arranged that the reading is almost independent of beam size and position. Generally, Ophir specifies ±2% or better uniformity of reading over the surface.
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*OEM Power Sensors
The OEM “standard” sensors are actually families of existing OEM sensors with typical specifications shown. They can be tailored as needed to fit your specific requirements. In addition to the products described, Ophir has developed hundreds of other OEM solutions. These compact laser power sensors have built-in amplifiers and are easy to install. They contain all the electronics needed including algorithms to increase the sensor's speed of response. Connections to the sensors are simple, with the host providing DC power and the sensor providing a voltage or digital output. Outputs Available: DB15 smart sensor output; Calibrated analog output; RS232; USB; Ehthernet. Simply fill out the Sensor Customization form so we can provide just the right solution for your needs.
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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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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 Thermal Sensors & Power Pucks – 1W to 120kW
15K-W-BB-45
The 15K-W-BB-45 is a water cooled thermal power/energy laser measurement sensor for very high powers with a 45mm aperture. It can measure power from 100W to 15,000W. It has a deflecting cone and annular absorber that withstands high power densities to 10kW/cm². It covers the spectral range from 0.8 - 2 and 10.6µm. The sensor comes with a standard 5 meter cable for connecting to a meter or PC interface.
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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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*OEM Energy Sensors
The OEM “standard” sensors are actually families of existing OEM sensors with typical specifications shown. They can be tailored as needed to fit your specific requirements. In addition to the products described, Ophir has developed hundreds of other OEM solutions. Simply fill out the Sensor Customization form so we can provide just the right solution for your needs.
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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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Handheld Power & Energy Meter
Nova 7Z01500
*Compatible with all standard Ophir Thermopile, Pyroelectric & Photodiode sensors.*Single shot energy measurement with thermal sensors.*Optional RS232 computer interface. Works with Ophir's StarCom32 application.*Power and energy logging with graphical display and statistics.*Laser Power Measurement averaging.*Easy to use soft keys, menu driven.*Screen graphics.*Backlight & rechargeable battery.*Analog output.*EMI rejection.*LabVIEW software included.
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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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High End Portable Laser Power/Energy Meter
Centauri Single Channel P/N7Z01700
*Compatible with all standard Ophir Thermal, BeamTrack, Pyroelectric and Photodiode sensors*Large 7" Full Color Touch Display*Multilingual interface – English, French, Spanish, Italian, German, Russian, Japanese, Chinese and Korean*Single and Dual Channel models available*Various Displays: Bargraph, Analog Needle, Line Plot, Pulse Chart, Pass/Fail, Position, Stability, and Real Time Statistics*Dual Channel Instrument supports Split and Merged Graphical Displays*Sophisticated power and energy logging, including logging every pulse at up to 25000Hz with Pyro sensors*Math functions: Density, Scale Factor, Normalize against base line, etc. Functions can be mixed together, displayed graphically, and can also be logged
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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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Handheld Laser Power & Energy Meter
Vega 7Z01560
*Compatible with all standard Ophir Thermopile, BeamTrack, Pyroelectric and Photodiode sensors*Brilliant color large size TFT 320x240 display*Clear screen color for work with laser safety goggles*Illuminated keys for working in the dark*Both digital and analog needle display*USB and RS232 output to PC with Statistics package*Select between English and Japanese interfaces*Analog output*Soft keys and menu driven functions with on line help*Log every data point at up to 4000Hz with pyroelectric sensors*Non-volatile data storage up to 250,000 points*Laser tuning screen and power log*2 position kickstand*System Integrator Tools included: LabVIEW VIs, COM Object Interface
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*Irradiance And Dosage Sensors
This sensor family provides cosine corrected irradiance measurement in W/cm² and dosage measurement in J/cm². The sensors are calibrated over their entire spectral range, and are thus ideal for irradiance and dosage measurement of UV, VIS and IR LED based light sources
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*Photodiode Energy Sensors
Ophir photodiode laser energy sensors are able to measure low energy pulses down to 10pJ at frequencies up to 20 kHz. Silicon photodiodes for the UV and visible spectrum and Germanium photodiodes for infrared.















