Collimators
Align and line up rays.
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Electro-Optical System Test Bench
IRCOL
Optical collimators and universal electro-optical test benches.
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Incoherent Sources
Our Incoherent Sources include unmounted LEDs, mounted LEDs, collimated LEDs, LED light sources, superluminescent diodes, and broadband light sources. Our collimated LEDs are particularly popular and are compatible with many microscopes. Versions are available with center wavelengths from the UV into the NIR or that emit white light.
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Fiber Optomechanics
The versatile FiberBench product line includes Single and Multi-Axis FiberBenches as well as a wide variety of compatible components ranging from beamsplitter modules to wave plate units. FiberBenches form the foundation of a nearly infinite array of miniature fiber optic systems that customers have been building for the last decade. When used with the FiberPort Collimators/Couplers, a complete optical circuit can be constructed. The Fiber Launch Platforms are ideal for coupling a free space laser into a single mode, multimode, or polarization-maintaining fiber. Other accessories include fiber mounts, fixed and kinematic collimator adapters, and L-bracket mating sleeves.
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Optics Test Systems
Electronic And Visual Autocollimators
Optik Elektronik Gerätetechnik GmbH
OEG GmbH specializes in the use of autocollimators, collimators and telescopes for special applications in optical measurement technology in the wavelength range from 380nm to 1550nm (SWIR).
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Large Area UV Light Source
Model 30L
The OAI UV Light Source Grande is a large area collimated light source. The device is available with output power up to 10KW. Utilizing collimating mirrors, the UV Light Source Grande is a highly efficient UV light source intended for a variety of larger-scale applications.
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Camera Testing
FLIR
CI Systems' FLIR turn-key test stations carry out all the necessary tests to verify and compare the quality of an infrared/thermal camera. The FLIR test systems are based on CI Systems' NIST traceable blackbody radiation sources, collimators and special thermally controlled targets, designed to provide very accurate IR test patterns. All these combine to project standardized targets with known geometry and intensity to the Unit Under Test(UUT).
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Filters / Splitters / Detectors
DiCon’s 100 GHz WDM is designed to multiplex and demultiplex signals in multi-wavelength systems based on the ITU 100 GHz grid. The component uses a thin film filter mounted between a pair of GRIN lens collimators. The 100 GHz WDM is housed in a compact, environmentally stable package that offers superior resistance to humidity and temperature and is suitable for mounting on a printed circuit board or within a module.
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Pro-Line Laser Kit
The Pinpoint Pro-Line Laser Kit combines the features of a transit, an infinitely long straightedge and a laser alignment system all in one compact, portable and versatile design. Precision laser alignment for production, maintenance and plant engineering projects, both large and small, has never been so easy. The Pro-Line Laser produces a crisp, collimated laser reference beam that forms a bulls-eye pattern for easy visual alignment and measuring. A finely ruled target and magnetic base are easily moved around for checking alignments, allowing one person to do the work of several.
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Rotary wheels
Rotary wheels are one of basic blocks of systems for testing imaging EO systems. They are needed to enable motorized exchange of active target at collimator focal plane. There are usually 8 holes in the wheel for targets (other numbers are also possible). Wheels are covered with a black high emissivity coating (emissivity at least 0.97).
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Long Light Source
LM-A
The long light source is compatible with the LM-101 or the LMC-20. The light is supplied with a 50 watt tungsten halogen convection cooled light source which provides suffcient energy for use with narrow band pass filters or monochronomators in the wave length range of .35 to 2.5 microns. The light beam is chopped at 200 hz by a quiet, vibration free, synchronous motor. The housing also contains a secondary LED light source and detector for synchronization of the amplifier, plus an electro-mechanical shutter to block the light output when the instrument is zeroed. An internal collimating lens produces a narrow beam (<1") so the LM-A can be used in bell-jar and large coating systems.
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Optical Fiber
Thorlabs' full line of optical fiber and fiber optic components are presented here. This includes our industry-leading selection of bare optical fiber and fiber optic patch cables as standard stock items. In addition, custom fiber patch cables can be ordered and shipped within 24 hours. Also available is an extensive line of optical fiber components including collimators, polarization controllers, fiber optic couplers, WDMs, circulators, and attenuators, as well as all of the tools and supplies needed to terminate, inspect, and clean optical fiber and fiber components.
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Incandescent Light Sources
Collimated, uniform, 1 inch diameter output beamSupports 75W-300W QTH LampsSupports xenon, mercury, & mercury-xenon arc lampsForced Air CooledRefractive condensing optics attachments availableVariable power supply (purchased separately) with optical feedback (option)Vertically mounted arc lampSide exit port with back spherical reflector
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Mobile Assay System
ISO-CART-85
Complete In-situ NDA Gamma-Ray Analysis Solutions for a Wide Variety of Samples including "Free-Release" Decommissioning WasteMeasures all common geometries: pipes, cylinders, floors, ceilings, walls, drums, boxes, and soilsEasy-roll cart for maneuvering over any surfaceWide selection of collimators and shields available for different measurement situationsContinuous height adjustment and variable tilt adjustmentISOTOPIC software, proven results on thousands of real-world samplesFactory pre-calibrated or calibrate with a single inexpensive mixed isotope point sourceFlexible reporting: measurement results can be reported in grams or activity (Bq or Ci)
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Highly Collimated Solar Simulators
This solar simulator is based on a Fresnel lens to collimate the light beam from the arc lamp source to infinity, which results in highly collimated illumination of the target spot. A 2.5kW xenon ozone free lamp is used as the light source. The spectral distribution of the xenon light source, along with the use of specially calibrated AirMass filters, closely simulates the sun’s true spectral distribution in various conditions on Earth.
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Microscope Platforms
Applied Scientific Instrumentation
ASI Modular Microscope components consist of tube lenses along with adapters and accessories that either are primarily used in the collimated light space or adapters that are to be used on the image side. Collimated light adapters use the 38 mm diameter C60-RING system to connect components. Focus-side adapters attached to lens tubes with either a 30 mm diameter coupling to the I.D. of the C60-TUBE, or with a 50 mm coupling on the O.D. of the lens tube.
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Collimators
The collimator and object generator combination project a test target at a particular subtended angle depending on the focal length of the collimator.
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Modular Infinity Microscope
MIM
Applied Scientific Instrumentation
ASI Modular Microscope components consist of tube lenses along with adapters and accessories that either are primarily used in the collimated light space or adapters that are to be used on the image side. Collimated light adapters use the 38mm diameter C60-RING system to connect components. Focus-side adapters attached to lens tubes with either a 30mm diameter coupling to the I.D. of the C60-TUBE, or with a 50mm coupling on the O.D. of the lens tube.
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Standard Class AAA Solar Simulator
TriSOL TSS
Essential for testing virtually any material or product that is exposed to sunlight for long or short periods of time, OAI’s low-cost, Standard Solar Simulators deliver highly collimated, uniform light. Depending on configuration, output on these Solar Simulators is rated at 350W -5,000W.These Class AAA Solar Simulators feature OAI’s Advanced Uniform Beam Optics and are available with a choice of air mass filters to reproduce a wide range of solar spectra. For added flexibility, OAI’s proven lens and collimating mirror technology allows for a variety of exposure area sizes. A Class AAA Solar Simulator is an essential tool for manufacturing as well as R&D; it is indispensable in test labs, industry, and in universities. OAI Standard Solar Simulators are used in photobiology, biomedical, solar cell testing, cosmetic testing, and paints & coatings analysis. Based on 35+ years of proven UV light technology, OAI Solar Simulator Systems deliver repeatable, reliable, constant output, and measurement uniformity.
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Standard IR Target Projectors
Santa Barbara Infrared’s 14000Zi Series reflective infrared target projectors are turnkey test systems for electro-optical (E-O) testing of FLIRs and other infrared (IR) imaging systems. The standard target projectors are assembled from SBIR’s STC Series Collimators, Infinity Blackbodies and 300 Series Target Wheels. SBIR also offers a standard athermal target projector with a 5.7° field of view (FOV).
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Monochromator Gratings - Type IV
HORIBA Scientific produces a wide range of holographic master gratings from which high precision replicas are manufactured.Using Type IV aberration-corrected monochromator gratings, a single concave grating disperses, collimates, and refocuses the light from the entrance slit onto the exit slit. Wavelength scanning is obtained through a simple rotation of the grating.The groove spacing of these gratings is computer-optimized to produce high quality images with a minimum of astigmatism and coma, even at large numerical apertures. Compared with Czerny-Turner monochromators (equipped with one plane grating, one collimating mirror and one focusing mirror), Type IV aberration-corrected monochromator gratings provide much better light collection efficiency and signal-to-noise ratio.
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Passive Optical Components
Wuhan Sunma Technology Co., Ltd.
Passive Optical Components are the foundation stone of WDM Passive Optical Network (PON). Besides MUX/DEMUX and splitters, SunmaFiber also provides other passive optical components such as attenuators, circulators, collimators, and isolators etc. In addition, we offer Customized Service that products with various parameters can be designed to meet different requirements. With very high performance but lowest prices on the market, our passive optical components can be the most cost-effective solution for modern PON systems.
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Laser Module
LDM200
Artifex Engineering GmbH & Co. KG
The LDM200 series of laser diode modules are specialized units for high-end applications. The fibre coupled design allows flexible installation and separation of the electrical and optical sections. High quality optics and precision adjustment provide for excellent beam quality and very long collimation distances up to 100m. Customized fixed focus distances may also be provided. The option of choice of pola
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Day Camera Testing
CI Systems' CCD test stations are used to carry out all the necessary tests to verify and compare the quality of a CCD based camera. These stations are based on CI Systems' reflective collimators, Visible Radiation Sources, special targets and integrated software, to project standard patterns with known geometry and intensity to the Unit Under Test. As a result, these stations are turnkey solutions for the CCD camera testing needs.
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Optics Test Systems
Mirror Collimator And Autocollimator
Optik Elektronik Gerätetechnik GmbH
Mirror collimator and autocollimator for the entire wavelength range from UV to MIR The compact mirror collimator can be used both as an autocollimator and as a telescope.
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IR/Visible Target Projectors
Santa Barbara Infrared’s reflective infrared and visible target projectors are turnkey test systems for electro-optical (E-O) testing of FLIRs and other infrared (IR) and visible imaging systems. The standard target projectors are assembled from SBIR’s STC Series Collimators, Infinity Blackbodies, Infinity VSX Integrating Spheres and 300 Series Target Wheels.
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XRF
O Series
The O Series combines high performance with a small x-ray spot size. This is made possible by the poly-capillary focusing optics system that replaces the collimator assembly installed in standard Bowman systems. The optics are designed to focus the x-rays coming from the tube exit window to a very small spot size (80μm FWHM) while retaining virtually 100% of the tube flux. So instead of attenuating the x-rays that can’t fit through the small apertures, as is the case with collimator systems, the poly-capillary optics assembly allows almost all of the x-rays from the tube to reach the sample. The result is much greater sensitivity for testing very small components or thin coatings. Shorter test times can achieve even better repeatability when comparing optics systems vs. a similar sized collimator.
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Spectroelectrochemical Flow Cell
SEC-2F
Using the spectroelectrochemical flow cell, it is possible to have a different optical path length changing the gasket. We offer, as an optional item, a silicon and Teflon gasket with a 100, 250 and 500 m of the thickness. SEC-2F Spectroelectrochemical flow cell was designed to fit perfectly in the SEC2000 Spectrometer, and it eliminated the use of the optical fiber to connect the Spectrometer to the SEC-2F. Even for another brand of the spectrometer, you can connect the SEC-2F using the collimating lens and optical fiber.
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Collimator Telescope
JUSKO
F. W. Breithaupt & Sohn GmbH & Co.KG
*Focal length 600mm*Objective aperture 60mm*Annular rings ground to high precision*Stabil ground plate*Reversion spirit levels (10’’/2mm)*Illuminated reticule with scale*Made in Germany
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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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Lens Antennas
A lens antenna is a directional antenna that uses a shaped piece of microwave-transparent material to bend and focus microwaves by refraction, as an optical lens does for light.[1] Typically it consists of a small feed antenna such as a patch antenna or horn antenna which radiates radio waves, with a piece of dielectric or composite material in front which functions as a converging lens to collimate the radio waves into a beam.[2] Conversely, in a receiving antenna the lens focuses the incoming radio waves onto the feed antenna, which converts them to electric currents which are delivered to a radio receiver. They can also be fed by an array of feed antennas, called a focal plane array (FPA), to create more complicated radiation patterns.





























