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Beam
a shaft of directed energy.
See Also: Shaft, Beam Analyzers, Beam Load Cells, Beam Profilers, Beam Sensors, Beam Splitters, Electron Beam, E-Beam, Laser Beam, Focused Ion Beam, Laser Beam Analyzers, Laser Beam Profilers
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Column Array Loudspeakers
CAL
Designed primarily for vocal reproduction in fixed installations, CAL loudspeakers produce a vertical beam of programmable width and then digitally steer the beam’s pattern up to 30 degrees up or down for best intelligibility.
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Multi-Sector Antennas
*Up to 10 or more beams*Increase site capacity & data throughput*Ideal for demanding venues such as sports arenas*Provide near one-to-one ratio of capacity increase for each beam
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Radar Simulation 3.0
RADSIM
RADSIM provides the fidelity and flexibility of a phototexture-based digital radar landmass simulation (DRLMS) system. It uses Leidos-developed core radar simulation technology and can produce a very high-fidelity geo-specific or generic, simulated real-time synthetic aperture radar (SAR), Doppler beam sharpening (DBS), and real beam imagery to less than one-meter resolution.
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S Beam Load Cell
Futek Advanced Sensor Technology, Inc.
FUTEK S Beam Load Cells (Tension/Compression) offer a compact design for a variety of applications. Available in standard and metric, the S Beam Load Cell series provides accuracy, compact design features, overload protection (select models), and a wide capacity range to choose from. S Beam Load Cells are also commonly known as Z Beam Load Cells or S Type Load Cells.
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Shear Beam Force Sensors For Pull/push Direction
INELTA Sensorsysteme GmbH & Co. KG
Inelta Force Sensors operate with foil strain gauges
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Shear Beam LoadCells
Shear Beam LoadCells are designed for low profile scales and process applications. These loadcells should be mounted on a smooth flat surface using high strength hardend bolts. The mountaing holes are at the opposite end to where the cell is loaded. Some of the larger Shear Beam Loadcells use multiple mounting holes to allow extra bolts to hold them in place and keep them from stretching under the stress.
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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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Safety Laser Scanner Type 3
SD3-A1
Panasonic Industrial Devices Sales Company of America
The Panasonic SD3 Safety Laser Scanner is a cost-effective alternative for guarding danger zones. It can be used flexibly in confined spaces and for areas where the danger zone changes.The SD3 can monitor an area within an angle of up to 190° and divides it into 2 zones: a warning zone within a radius of 15m, and a protection zone within a radius of 4m. The contours of these zones can be configured precisely for any application. Up to eight zone patterns can be set and activated at any given time even during operation.The reference boundary function memorizes the position of stationary objects and establishes a virtual boundary. It also monitors beam alignment after installation and issues an alarm if a beam becomes misaligned.
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Beam and Singlepoint Load Cells
We have trimmed all the non-essential fat off these load cells, however you can be sure that nothing has been trimmed from the actual load cells, they are precision tested and certified to meet all the exacting requirements on the downloadable technical specifications shown below.
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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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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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Bi-Sector Array Antennas
*Dual 33 degree beam antennas with a 65 degree pattern foot print*Multi-band capable*IIndependent tilt control for each beam**RemoteElectricalTilt (AISG 2.0)*Increase site capacity & data throughput
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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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Beam Lead PIN Diodes
The SemiGen SBL 2000 series Beam Lead PIN Diodes feature fast switching speeds at both low capacitance and resistance. Beam Lead PIN Diodes have high levels of mechanical strength and stability during assembly. These diodes are suitable for microstrip or stripline circuits as well as circuits requiring high isolation from a series of mounted diodes such as multi-throw switches, phase shifters, attenuators and modulators.
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Laser Microdissection and Optical Tweezers
Laser Microdissection is the contamination-free method for separating and collecting cells of interest out of tissue samples or cell cultures. The isolated pure cell populations are the ideal starting point for specific and meaningful results in your molecular analysis. Optical Tweezers are also a contact-free method that uses a highly focused laser beam to manipulate and sort cells in suspension, for example bacteria.
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X-Band Silicon Radar Quad Core IC
AWS-0101
The AWS-0101 is a highly integrated silicon quad core IC intended for radar and 5G phased array applications. The device supports four radiating elements, single beam transmit, and dual beam receive and includes all requisite beam steering controls for 6 bit phase and gain control. The device provides 21 dB gain during transmit mode, +15 dBm output power during transmit, and 3.4 dB NF during receive. Additional features include gain compensation over temperature, temperature reporting, and fast beam switching using eight on-chip beam weight storage registers. The device features ESD protection on all pins, operates from a +1.8V supply, and is packaged in a 56 lead 7x7 QFN for easy installation in planar phased array antennas.
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X-Band Silicon Radar Quad Core IC
AWS-0105
The AWS-0105 is a highly integrated silicon quad core IC intended for radar and 5G phased array applications. The device supports four radiating elements, single beam transmit, and single beam receive and includes all requisite beam steering controls for 6 bit phase and gain control. The device provides 21 dB gain and +15 dBm output power during transmit mode and 7 dB gain and +7 dBm IIP3 during receive mode. Additional features include gain compensation over temperature, temperature reporting, and fast beam switching using eight on-chip beam weight storage registers. The device features ESD protection on all pins, operates from a +1.8 V supply, and is packaged in a 56 lead 7x7 mm QFN for easy installation in planar phased array antennas.
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X-Band Silicon Radar Quad Core IC
AWS-0104
The AWS-0104 is a highly integrated silicon quad core IC intended for radar and 5G phased array applications. The device supports four radiating elements, single beam transmit, and single beam receive and includes all requisite beam steering controls for 6 bit phase and gain control. The device provides 21 dB gain during transmit mode, 21dB gain in receive mode, +15 dBm output power during transmit, and 3.4 dB NF during receive. Additional features include gain compensation over temperature, temperature reporting, and fast beam switching using eight on-chip beam weight storage registers. The device features ESD protection on all pins, operates from a +1.8V supply, and is packaged in a 56 lead 7x7 QFN for easy installation in planar phased array antennas.
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X-Band Silicon Radar Quad Core IC
AWS-0103
The AWS-0103 is a highly integrated silicon quad core IC intended for radar and 5G phased array applications. The device supports four radiating elements, single beam transmit, and dual beam receive and includes all requisite beam steering controls for 6 bit phase and gain control. The device provides 21 dB gain and +15 dBm output power during transmit mode and 7 dB gain and +7 dBm IIP3 during receive mode. Additional features include gain compensation over temperature, temperature reporting, and fast beam switching using eight on-chip beam weight storage registers. The device features ESD protection on all pins, operates from a +1.8V supply, and is packaged in a 56 lead 7x7 mm QFN for easy installation in planar phased array antennas.
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Capacitors - Beam Lead
Macom Technology Solutions Holdings Inc.
MACOM’s MMI-9000 and 9100 Series Chip Capacitors feature high stand-off voltage and low dielectric loss leveraging nitride/oxide dielectric layers. Gold bonding surfaces, top and bottom provide ease of bonding and minimum contact resistance. MACOMs beam lead capacitors have high insulation resistance, low dissipation factor, and low temperature coefficient, which are features that produce devices with excellent long-term stability.
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Automated Headlight Tester
VLT 0936/MK2
Fully computerized controlled CCD Head-light Beam Tester, with fully automated vertical and horizontal movements, with automated searching of the hot spot of the beam. This robot type Headlight Beam Tester is connected to the Vehicle Test Lane Computer system and displays instructions and results to one of the large overhead SVGA monitors of the Test Lane.
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Beam Bender BK7, Fixed Horizontal-Bend Mount
E1834M
The E1834M is a beam bender that bends the incoming beam at a 90-degree angle and is designed for beam diameters of 9 mm or less. This referenced optics uses high performance horizontal mount to deliver laser beam throughout a measurement system. The 8 flexure feet are designed for stable beam pointing.
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RF Systems
With our detailed, end-to-end knowledge of beam generation systems and the way platforms operate in the field, we deliver state-of-the-art radio-frequency and x-ray systems. These integrated and effective systems are built with optimised components and interfaces to achieve the performance, reliability and ease-of-use expected by platform designers, manufacturers and end-users.
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Laser Alignment
Laser beams are tracing a perfect straight propagating line. A special unique instrument was developed to monitor the direction and position of this laser beam, creating a cornerstone device for alignment. Typical applicationns are mechanical straightness and alignment, calibration articulated arms, accurate positioning, and many more. To facilitate unrestricted movement of the AlignMeter family a built-in wireless system was developed.
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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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Laser Attitude Measuring Devices
For analyzing laser beam collimation its direction in space and its profile distribution proprietary instruments were developed. A collimated laser beam with a relatively large beam can be tested with the laser analyzing Autcollimator having an input apreture 100 mm, this device acompanied by AngleMeter U3 and the AngleMeter LA will provide a full product line for analyzing collimated or near collimation laser beams.
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Camera BasedBeam Profilers
Our Camera beam diagnostic Line-up offers measuring capabilities starting from sub-micron laser beams to sensors of 1/1.2" with built-in automatic filters wheels. The camera based beam diagnostic offers the intensity measuring profile and the detailed beam power distribution within the profile.
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Beam Profiling
The beam propagation factor M2 is a common single parameter that charac-terizes the whole beam as it propagates through space. According to ISO standard 11146, this parameter could be defined by several measurement techniques based on beam profiling along several points of the propagating beam. The standard defines several measurement techniques, all of which are based on beam profiling measurements using devices such as cam-eras, knife edge and slits. There are two main measurement requierments - 1) Measurements of focused beams. 2) Measurements of collimated beams. Our M2 devices are capable of measurements of both laser types and due to their modular design interchangeable heads can be mounted in same M2 gear.
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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.