Beam Sensors
See Also: Beam
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Thermocouple Power Sensors
N8487A
N8480 Series Power Sensors are the replacement solutions for 8480 Series Power Sensors.
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3U OpenVPX Sensor Interface Unit
SIU32S
The SIU32S is a highly configurable Modular Open Systems Approach (MOSA) rugged system or subsystem ideally suited to support a multitude of Mil-Aero applications that require high-density I/O, processing, communications and Ethernet switching. The SIU32S leverages NAI’s Configurable Open Systems Architecture™ (COSA®) 3U boards and smart function modules to deliver off-the-shelf solutions that accelerate deployment of SWaP-optimized systems in air, land and sea applications.
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10 MHz to 33 GHz LAN Wide Dynamic Range Average and Peak Power Sensor
L2063XA
The Keysight L2063XA is a fast, accurate and wide dynamic range 10 MHz – 33 GHz LAN peak power sensor.
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Balance Thermocouple Power Sensor, DC To 50 GHz
N8487S
The Keysight N8480S Series Balance Thermocouple Power Sensors are intended to be used as measurement standards for RF power. They are suitable for use in a microcalorimeter-based primary measurement standard and as a secondary or reference measurement standard. The new balance thermocouple power sensors offer a broad frequency range DC up to 18/50 GHz, high maximum input power of +20dBm, fast measurement speed/settling time as well as ease of maintenance.
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10 MHz to 18 GHz USB Wide Dynamic Range Average & Peak Power Sensor
U2062XA
The Keysight U2062XA is a fast, accurate and wide dynamic range 10 MHz – 18 GHz USB peak power sensor.
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10 MHz to 50/53 GHz USB Wide Dynamic Range Peak and Average Power Sensor
U2065XA
The Keysight U2065XA is a fast, accurate and wide dynamic range 10 MHz – 50/53 GHz USB peak and average power sensor.
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Diode Power Sensor
8487D
Excellent SWR for reducing mismatch uncertainty Accurate calibration and traceability to US National Institute of Standards and Technology (NIST) millimeter-wave sensor calibration Compatible with EPM (new N1913A/ 14A, E4418B/ 19B), EPM-P (E4416A/ 17A) and P-series (N1911A/ 12A) power meters, plus the E1416A VXI and discontinued 70100A and 43X power meter Accurate average power measurements over -70 to -20 dBm Frequency range 50 MHz to 50 GHzDiode power sensing element
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P-Series Wideband Power Sensor, 50 MHz to 40 GHz
N1922A
Peak, peak-to-average ratio, average power, rise time, fall time, maximum power, minimum power, and statistical data of wideband signals.
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Balance Thermocouple Power Sensor, DC To 18 GHz
N8481S
The Keysight N8480S Series Balance Thermocouple Power Sensors are intended to be used as measurement standards for RF power. They are suitable for use in a microcalorimeter-based primary measurement standard and as a secondary or reference measurement standard. The new balance thermocouple power sensors offer a broad frequency range DC up to 18/50 GHz, high maximum input power of +20dBm, fast measurement speed/settling time as well as ease of maintenance.
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10 MHz to 18 GHz LAN Wide Dynamic Range Average Power Sensor
L2052XA
The Keysight L2052XA is a fast, accurate and wide dynamic range 10 MHz – 18 GHz LAN average power sensor.
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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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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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50% Beam Splitter
10701A
The Keysight 10701A beam splitter is designed for beam diameters of 6 mm or less. It reflects one half of the total incoming laser beam, and transmits one half. The Keysight 10701A optic includes a housing for standard mounting.
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Beam Lead Capacitors
Beam lead capacitors have high insulation resistance, low dissipation factor, and low temperature coefficient, which allow for use in military and aerospace designs. Their robust performance and small form factor provide repeatable performance.
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50% Beam Splitter
10725A
The 10725A 50% beam splitter, designed for beam diameters of 9 mm or less, divides the beam into equal parts. It transmits one part straight through, and bends the other part at a 90-degree angle. This optic is without housing and requires a user-supplied mount.
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S2 Unicolor Sensors
ULP-S2 SCI/V
The Universal LightProbe S2 Unicolor Sensor is designed for the intensity test of any single one of the five main LED colors (blue, green, yellow, orange, and red) plus white and Infrared (700nm to 1,000nm). Implemented in a unique and customizable 2-Part solution, the S2 Unicolor Sensor is assembled with your choice of Fiber-Optic Probe, including for the test of densely-spaced LEDs, bright LEDs, dim or misaligned LEDs, right-angle LEDs, and more, including the popular “Trident” Fiber-Optic Probes to sequentially test 3 LEDs with a single Sensor.Operating temperature range: 0oC to 70oCPower consumption: Operates between +5 and 28 volts D.C., at 6mA max. Less than 4.75 volts is not recommendedVoltage protection: Withstands up to +40 volts, & reverse polarity to -18 voltsSignal Output Loads: 20 mA max. Non-inductive.Output Pins: 3 gold-plated standard wire-wrap pins (0.025 in. sq.)Sensor Size: 0.560 in. dia x 1.38 in. longOperating Temperature Range: 0hC to 70hCTypical response times:<10mS capture time; 65mS overall response time; intensity output of correct color only.Fiber-Optic Probes: Can utilize any Universal LightProbe Fiber-Optic Probe
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Beam Bender
10726A
The Keysight 10726A bends the incoming beam at a 90-degree angle and is designed for beam diameters of 9 mm or less. This bare optic requires a user-supplied mount.
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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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10 MHz to 53 GHz LAN Thermal Vacuum Compliance Power Sensor
L2065XT
The Keysight L2065XT is a fast, accurate and wide dynamic range 10 MHz – 53 GHz LAN thermal vacuum compliance power sensor.
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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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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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40 Mm Beam Pitch General Purpose Area Sensor
NA40
Panasonic Industrial Devices Sales Company of America
The NA40 General Purpose Area Sensor from Panasonic offers a slim body design, failure monitoring and easy modification of length with robust aluminum enclosure.
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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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Single Beam Echosounder, Hydrographic Survey Boat
Z-Boat 1250
Teledyne Oceanscience Z-Boats® are the number one choice for reliable, remotely controlled, hydrographic surveying in streams, rivers, lakes, and coastal waters around the world.Whether you need to reduce survey time, keep people safe during hazardous conditions, or access hard to reach locations, there is a Z-Boat to suit your survey and your budget. The Z-Boat 1250 is easy to operate. The integrated echosounder has an embedded transceiver with digital signal processing and outputs depth & temperature using NMEA 0183 data output.
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Sensors
Werth MultiRing®
Angle of incidence programmableNo loss of working distanceNo moving partsProgrammable incidence angle over large rangeHigh performance white LEDs
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Beam Load Cell
EST-70
Technopark Automation & Control
The EST-70 Shear Beam Load Cell is commonly used on platform, hopper weighing and pallet weighing applications. It is low cost and available in capacities from 500 kg to 2000 kg.
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Bending Beam Load Cell
EST-7
Technopark Automation & Control
The EST-7 is a Bending Beam Load Cell suitable for use on lower capacity weigh hoppers, filling machines, packaging machines and conveyor belt scales. This load cell is available in capacities from 10 kg to 200 kg.
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Sensors
Ultrasonic technology coupled with digital signal processing makes the detection of clear and opaque labels on clear or opaque backing material easy. The introduction of the OLED graphic display in place of simple indicator lights offers the user has an unprecedented view of the sensor's performance, options, program modes, and helpful simple instructions never before offered in a clear label sensor. A stainless steel removable gap plate and anodized aluminum housing makes this sensor rugged. Setup is fast with one press of a button for the label and one press for the label gap.
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Sensors
A wide range of probes, sensors and signals is available for ALMEMO® data loggers and measuring instruments, which are connected via intelligent connectors with integrated data carrier. For common measuring tasks the connectors are configured at the factory and the measuring device automatically recognizes the connected sensor. All sensors can be calibrated, scaled and provided with a unique designation via the intelligent connectors. The programming always remains with the corresponding sensor, so that it can be connected to any input on the measuring instrument. Inaccuracies of a sensor can be corrected in the connector, thus turning simple sensors into precise transducers.





























