Beam Sensors
See Also: Beam
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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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Sensors
Panasonic Industrial Devices Sales Company of America
Panasonic Sensor Solutions offer a wide and constantly evolving range of technologies that provide design engineers with the flexibility to easily choose and implement the Sensor technology best suited for existing and ever-emerging new applications all from a single, world class supplier. Panasonic built-in Sensors contribute to energy savings, safety and comfort. With high-functionality and high-performance, Panasonic has solutions for sensing and detecting rotational speed and angle, position, flow, velocity, temperature, magnetism, currents and much more! Panasonic Sensor products combine the latest technologies with plug-and-play devices such as Grid-EYE® Thermopile Array Sensors, the Ultrasonic Gas Flow Sensor, the highly accurate and flexible 6in1 Sensor (6DoF Automotive Inertial Sensor), a wide array of Passive Infrared Motion Sensors (PIRs), and highly specialized and accurate Industrial Sensors.
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Beam Geometry & Alignment Testing
Perform quality control testing of your Digital Radiography (DR), Computed Radiography (CR) and Fluoroscopy X-ray systems with ease. Comply with local, state, federal, and governing bodies for digital and traditional analog radiographic imaging technologies.
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Sensor
Hyperion Fluorescein
The Hyperion Fluorometer sensor range delivers a high-performance measurement of Chlorophyll A, Fluorescein, Rhodamine and Phycocyanin. Offered as standard in a 6000m depth rated, titanium housing the Hyperion Fluorometer has a wide range (9-28V DC) isolated power supply, data output up to 16Hz and RS232, RS485 and Modbus communications.
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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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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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Sensors
EPL3
sotropic and potential-free measurement of electrical alternating fieldsIncluding 2.5m optical fiberFor connection to the field meter FM10Observations on field meter FM10 comfortably readDisplays the total field strength as well as the three field componentsAnalog signals are available at the output of the field meter FM10LS for spectrum analysisAll filter and display functions of the FM10 can be usedRecording the field strengths with the field meter FM10LSupplied with holder and stand holderExcellent price / performance ratio
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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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Sensors
Renesas' light and optical sensors are best in class for ultra low light sensitivity, low power consumption, ideal spectral response, and easy to use simple output algorithms. We offer a full suite of optical sensors to suit your application requirements and budget.
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Shear Beam Load Cell
SB-1.0
The Shear Beam Load Cell SB-1.0 is a single point weighing device, suitable for use in multiple applications.
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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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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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Power Sensor and SNS Noise Source Cable (6.1m/20 feet)
11730C
The Keysight 11730 series power sensor cables are used with the 8480 and E-series power sensors (except the E9320 family of peak and average sensors). These cables are designed to reduce RFI effects on low power readings with an improved shielding design in the cable itself. Cables may be ordered individually or in pairs in any combination desired for single and dual-channel measurements.
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Heavy Duty Shear Beam Load Cells
SBL SERIES
The SBL Series heavy duty shear beam load cells are ideal for process weighing and for use in low profile industrial scales. These economical load cells are easy to install and durable in the field. Environmental protection is afforded through water resistant potting, a compression sealed and strain relieved cable entry, and corrosion resistant nickel plated steel.
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Bending Beam Load Cell
Futek Advanced Sensor Technology, Inc.
Are the best fit for many measuring tasks. Here, the signal, on principle, depends on the bending moment.
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Electron Beam Lithography System
Spot type Electron Beam Lithography System JBX-8100FS achieved high throughput, small footprint and electric power saving.
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Clamp Sensors
Kyoritsu Electrical Instruments Works, Ltd.
Can measure AC current up to 1000A Flexible and light weight by the air core coil used at the sensor part Designed to meet the international safety standard IEC 61010-1 CAT IV 300V, CAT III 600V
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Strain Sensors
Conventional strain sensors are based on strain gage technology. In order to effectively measure the strain values in a force or load measurement application, a full, 4 element strain gage bridge circuit is utilized. The configuration is known as a Wheatstone Bridge Circuit. A Wheatstone Bridge has a very linear output in it’s midrange. That being considered +100% to -100% of range. Unfortunately, a Wheatstone Bridge becomes non-linear above the upper and lower extremes of range. Therefore, significant errors can result above the end points when attempting to take precision measurements. It is particularly important to take accurate measurements in some R&D or control applications. To avoid the mentioned error issues, PCB manufactures quartz piezoelectric strain sensors that output the same mV/microstrain sensitivity throughout the entire useful range. Thus, accuracy is improved and control requirements are enhanced that may occur at positive extremes of the measurement range. The models RHM240 and model 740B02 series sensors are the strain sensors for these applications.
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Photoelectric Sensors
Our broad range of photoelectric sensors is aimed at all automation solutions where noncontact object detection can be utilized. The wide variety of different operating principles, models, sizes and specifications means that the best possible sensor can always be found for the relevant application and all conditions that occur in practice can be met.
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AC Sensor
This sensor started it all! Our original handheld sensor detects 50-1000 volts AC and is designed for a CAT IV environment. Always ready for use, this sensor can prevent electrical shock and is non-reactive to static electricity.
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Frequency Sensor
DARE?s frequency sensors and monitors are available in both AC powered and DC powered models in a wide variety of standard or custom enclosures. Used in aircraft, ground support equipment (GSE), ground power applications, and other military and industrial applications, DARE frequency sensors, monitors, and frequency sensing relays will protect equipment that is sensitive to fluctuations in power line frequency from damage due to over and / or under frequency conditions.
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Power Sensors
Measure CW power from 10 MHz to 50 GHz. Modulated Average Power Measurement. Peak Power Measurement.
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Optical Sensors
Optical (Infra-Red) Proximity Switches with advanced and reliable technology for every application offer a flexible solution for automation, where other Proximity Switches can not perform. Optical Proximity Switches have distinct advantage of higher sensing distance over Inductive and Capacitive types.
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Web Sensor
P8552
The devices are equipped with two connectors for connection of the temperature and humidity external probes and three binary inputs for two-states signals. The dry contact or two-state voltage signal can be connect to the binary input.
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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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Web Sensor
T3511
Web Sensor with relative humidity and temperature probe. The device is supplied with T+RH probe on the cable. High precision capacitive polymer sensor ensures excellent long term calibration stability and ultimate accuracy. Dual line LCD is an advantage. Measured values are also converted to other humidity interpretation: dew point temperature, absolute humidity, specific humidity, mixing ratio and specific enthalpy.
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Cavitation Sensors
Cavitation is often induced by an external acoustic field which typically has very high acoustic amplitudes but the acoustic emissions from these cavitation events are significantly smaller. The small acoustic emissions are characterised by well defined spectral peaks at integer harmonics and sub-harmonics relative to the fundamental bubble frequency.
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Sensors
We design, develop and produce state-of-the-art SIGINT sensors that seek, exploit, identify, and locate sources of RF energy, underwater sound, light, heat and other complex phenomena. These sensors recognize threats, gather intelligence, and allow our customers to make informed, strategic response decisions.
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DS Sensor
Z-Gard DS Sensor
The Z-Gard DS Sensor is designed to detect the presence of carbon monoxide and nitrogen dioxide gases in parking garages, vehicle storage areas or wherever else these two toxic gases could be found. These sensors employ electrochemical sensors which generate a representative output signal proportional to the calibrated operating range.
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Eddy-Current Sensors
Eddy-Current sensors are noncontact devices capable of high-resolution measurement of the position and/or change of position of any conductive target. Eddy-Current sensors are also called inductive sensors, but generally "eddy current" refers to precision displacement instruments (or nondestructive testing probes) and "inductive" refers to inexpensive proximity switches. High resolution and tolerance of dirty environments make eddy-current sensors indispensable in today's modern industrial operations.





























