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DuPont has excellent capability in resin chemistry and has developed proprietary resins suitable for photochromic coatings that can be applied and cured on optical lenses and other surfaces.
The PicoEndo endoscope is the smallest tethered endoscope in the world (4.5mm x 12.0mm).
This micro-reinforcement technology enables new applications where existing thermoplastics, elastomers, thermosets, and reinforcing technologies have not had sufficient toughness or fracture strength, particularly at elevated temperatures...
Developed originally for color-matching inks on digital printers, MutohÆs suite of spectrometer and spectrophotometer designs and technologies include first- and second-generation devices.
This technology encompasses light emitting diodes that have silyl-substituted pyrenes (an example compound is shown in the figure).
Aerosol deposition makes possible the formation of ultrathin ceramic films upon metals or plastics at room temperature.
In a light emitting device with Lambertian emission (such as OLED) the extraction of light is limited by the waveguide effect inside the substrate.
In organic light emitting device (OLED) different layers are deposited in order to fabricate the final layout with limitations in terms of costs and lifetime.
This one-step laser etching process proves advantageous for the micro-fabrication of optics, electromechanical systems, and fluidics.
This ôdry,ö thin-film actuator holds promise for applications in virtual instrumentation, robotics, and automated equipment.
Every day we use devices that incorporate Liquid Crystal Displays or LCDs.
The present invention relates to the field of acousto-optical scanners, especially those capable of generating fast non-linear scans, and/or fast longitudinal focus scanning.
Since the invention of mode-locked lasers, considerable effort has been directed towards the generation of ultrashort optical pulses.
Experiments with holograms have led to a thin-film flat-plate lens that has a periodic (layered) structure and that is capable of a resolution of 100nm or finer.
The present invention relates to thin-film protection of visible light photocathodes and more particularly to photocathodes protected by thin films and photon sensors and fast electron sources incorporating such photocathodes.
The present invention relates to lasers and optical resonators.
The present invention is in the field of high resolution scanning techniques and relates to an apparatus for near-field optical inspection of articles, particularly useful for inspecting a substantially large surface area with very high s...
The present invention relates to a multilevel diffractive optical element (DOE), in particular to a computer generated phase DOE, comprising a substrate with a substantially periodic transmissive or reflective relief pattern of phase reta...
Most of the chemical elements in nature come as a mixture of isotopes - different versions of the same element with almost indistinguishable chemical and physical properties.
The present invention relates to optical microscopy, more specifically to a method and an apparatus for determining the fine structure of materials with the aid of scanning laser microscopy.
The present invention relates to the field of compression of ultrashort optical pulses.
Providing the capability to identify your objects and persons based on existing FLIR inventory.
A holographic optical device that includes a light-transmissive substrate, a first holographic optical element, and a second holographic optical element that is laterally disposed on the substrate from the first holographic optical element.
Non-contact electro-optical measuring systems are advantageous over those using mechanical sensing, because of their relatively high speed and non-destructive capabilities.
AIST has developed efficient dye-sensitized solar cells (DSSCs) based on novel organic-dye molecules (MK dyes).
This invention relates to multigrooved brightness enhancement and light directing films with reduced Moire effects.
This technology provides an elegant, efficient and cost effective way to measure absolute position in one or two dimensions using a new Point Coupled Linear Transformer (PCLT).
AIST has developed a thin film technology that can reduce the consumption of raw selenium below one-tenth of the conventional standard when manufacturing non-silicon-based CIGS thin-film solar cells.
The attractiveness of almost all industrial products is strongly governed by the visual quality and appearance of their finish.
AIST researchers have developed a thin film alloy of magnesium and titanium that, when applied to glass, may be easily switched between a reflective and transparent state.
The technology is a method to produce glass material with a promising negative refractive index.
The present invention relates to an optical micro-machining method of glass.
A new method for positioning an object in space is proposed in the present invention.
The technology is a method to produce primary material, specifically glass, with refracting capabilities that may be applied to uses beyond conventional fiber optics.
The present invention relates to an optical phantom that enables dynamic changes in physiological state which take place in muscles, the brain, and blood flow to be measured.
A new technology which applies a "grafting" technique to form strong adhesive bonds between mating material surfaces.
This technology relates the production optical carbonhydrates, employing D-glucose as the starter reactant and transfer it into L-sugars and derivatives with easy steps.
This technology has been designed to use a mobile phone, PDA, GPS system (or Tom Tom), MP3 player, IPod, Digital Camera and Digital Video Camera (any handheld device with a digital screen) as a ranger finder.
A light detector is used during coffee brewing to guarantee the desired strength of the coffee.
The cooling system described here is capable of cooling a laser, laser power supply, and a laser light valve from one single circulating unit.
The device measures the characteristics of a line of laser illumination, as is used in applications such as laser imaging.
This technology allows the authentication of objects such as banknotes, paycards, passports, identity cards etc. by the presence of a phosphor of a specific type.
Several laser applications require the laser beam to be accurately focused on a surface or detector.
A light bundle of unclad optical fibers is used to change the cross section of incoming light to a different cross section (e.g. from a line to a circle), for better adaptation to e.g. a detector such as a photomultiplier.
Colour reference targets are made to the internationally accepted IT-8 standard.
Densitometers or spectrophotometers need to be calibrated with standard grey wedges that provide reliable densities.
Honeywell's unique, commercialized technology is suitable for fiber optic surface reflectivity (gloss) measurements.
Honeywell's novel design for an optical liquid level sensor eliminates the need for encapsulation material to seal the light source, detector, and associated wire bonds within the assembly.
A novel pressure-sensitive assembly has been designed--being more reliable and repeatable than competing devices.
Northrop Grumman Corporation has over three dozen patents covering optical correlation and applications which enable rapid, real-time identification and correlation of selected objects and images.
An improved design facilitates the mapping of video data onto display panels which have insufficient numbers of dots to permit standard 1:1 mapping.
An optical fiber rotation sensor having an ordinary single mode fiber coil with a depolarizer in series therewith configured with component optical path lengths therein and birefringent axes relationships therein chosen with respect to th...
A subtractive color liquid crystal display employing circular polarizers.
OVERVIEW We need to print thin conductive traces on touch-screen substrates, while maintaining good visibility through the screen, and achieving high adherence.
We are looking for a detector array for the infrared region to detect two-dimensional radiation patterns.
Traditional light emitting diodes are semiconductor devices that emit light at very specific wavelengths.
OVERVIEW This technology need is for an aerosol with the properties that it can be easily launched using a pulsed jet fogger, has needed reflectivity or other optical properties, and is safe for human cutaneous and pulmonary contact.
We are looking for a small (< 10 mm diameter), low cost, externally controllable lens.
We are looking for a compact layer or apparatus that can convert photons in the infrared (1200-1400 nm) range to the visual (450-650 nm) range.
 
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