Patent classifications
G01N2201/024
Sensor system, information processing device, and sensor management method
The disclosure provides a technique for facilitating management of image sensors having a modular structure. A sensor system includes image sensors and an information processing device. The image sensor is a modular image sensor configured by combining modularized components. Each of the components includes a non-volatile memory for storing specific information related to the component. The information processing device includes an information acquisition part for acquiring the information stored in the memory of the component constituting the image sensor from each of the image sensors in an image sensor group installed in a target range via the network, and an information generation part for generating configuration list information indicating a combination of the components for each of the image sensors with respect to the image sensor group installed in the target range based on the information acquired by the information acquisition part.
MICROFLUIDIC DEVICES
The present invention provides novel microfluidic substrates and methods that are useful for performing biological, chemical and diagnostic assays. The substrates can include a plurality of electrically addressable, channel bearing fluidic modules integrally arranged such that a continuous channel is provided for flow of immiscible fluids.
Fluorescence signal reading device having sample flow detecting function
A fluorescence reader includes a base frame having an open part formed at the front thereof so that a diagnostic cartridge is inserted therein and having an inner space therein, an optical module disposed in the inner space of the base frame, and disposed to be positioned above the diagnostic cartridge inserted through the open part to irradiate a light to the diagnostic cartridge; a driving module for moving the optical module; and a sensor module for sensing the insertion of the diagnostic cartridge and the position of the optical module. The fluorescence signal reader automatically calculates a measurement time when a user loads a solution, thus improving detection accuracy and shortening a detection time.
SYSTEMS AND METHODS FOR MULTI-ANALYSIS
Systems and methods are provided for sample processing. A device may be provided, capable of receiving the sample, and performing one or more of a sample preparation, sample assay, and detection step. The device may be capable of performing multiple assays. The device may comprise one or more modules that may be capable of performing one or more of a sample preparation, sample assay, and detection step. The device may be capable of performing the steps using a small volume of sample.
MODULAR OPTICAL ANALYTIC SYSTEMS AND METHODS
A system includes a plurality of modular subassemblies and a plate; wherein each modular subassembly comprises an enclosure and a plurality of optical components aligned to the enclosure, and each enclosure comprises a plurality of mounting structures; and wherein each modular subassembly is mechanically coupled to the plate by attachment of a mounting structure of the modular subassembly directly to a corresponding mounting structure located on the plate, such that by mechanically coupling each modular subassembly to the plate using the mounting structure of the modular subassembly and the corresponding mounting structure on the plate, adjacent modular subassemblies are aligned to each other upon such attachment, and wherein two of the modular subassemblies mechanically coupled to the plate are also attached to each other by mechanically coupling an alignment structure on one of the two modular subassemblies to a respective alignment structure on the other of the two modular subassemblies.
LIGHT PIPE FOR SPECTROSCOPY
A spectroscopic assembly may include a spectrometer. The spectrometer may include an illumination source to generate a light to illuminate a sample. The spectrometer may include a sensor to obtain a spectroscopic measurement based on light, reflected by the sample, from the light illuminating the sample. The spectroscopic assembly may include a light pipe to transfer the light reflected from the sample. The light pipe may include a first opening to receive the spectrometer. The light pipe may include a second opening to receive the sample, such that the sample is enclosed by the light pipe and a base surface when the sample is received at the second opening. The light pipe may be associated with aligning the illumination source and the sensor with the sample.
Optical measurement apparatus, and optical measurement method
An optical measurement apparatus includes a main body base, an optical base movably combined with the main body base, a measurement optical system fixed to the optical base, and an optical base moving mechanism which moves the optical base relative to the main body base. The optical base moving mechanism moves the optical base relative to the main body base between an internal measurement position and an external measurement position. A measurement object position of the measurement optical system coincides with an internal measurement object position within the main body base. The measurement object position of the measurement optical system coincides with an external measurement object position outside the main body base.
Apparatus for inspecting welding tips of spot welding guns
Description according to the present disclosure relates to an apparatus for inspecting a welding tip of a spot welding gun, and more particularly, to an apparatus for inspecting a welding tip of a spot welding gun, the apparatus enabling a user to replace a camera module swiftly and conveniently.
Modular testing device for analyzing biological samples
A modular testing device includes a base unit and an expansion unit that communicates with the base unit. The expansion unit includes a housing, a receptacle in which a sample holder containing a biological sample and reagent mixture can be placed, and an optical assembly positioned in the housing. The optical assembly is configured to amplify and detect a signal from the biological sample and reagent mixture. Data that is collected in the optical assembly is communicated to the base unit.
Modular optical analytic systems and methods
A system for biological sample analysis includes a plurality of modular subassemblies and a precision mounting plate, wherein each modular subassembly includes an enclosure and a plurality of optical components pre-aligned to the enclosure, and the enclosure includes a plurality of precision mounting structures, and each modular subassembly is mechanically coupled to the precision mounting plate, such that each precision mounting structure from a modular subassembly attaches directly to a corresponding precision mounting structure located on the precision mounting plate or an adjacent modular subassembly to optimize optomechanical tolerance.