Abstract:
An inspection system for inspecting a semiconductor wafer. The inspection system comprises an illumination setup for supplying broadband illumination. The broadband illumination can be of different contrasts, for example brightfield and darkfield broadband illumination. The inspection system further comprises a first image capture device and a second image capture device, each configured for receiving broadband illumination to capture images of the semiconductor wafer while the semiconductor wafer is in motion. The system comprises a number of tube lenses for enabling collimation of the broadband illumination. The system also comprises a stabilizing mechanism and an objective lens assembly. The system further comprises a thin line illumination emitter and a third image capture device for receiving thin line illumination to thereby capture three-dimensional images of the semiconductor wafer. The system comprises a reflector assembly for enabling the third image capture device to receive illumination reflected from the semiconductor wafer in multiple directions.
Abstract:
A user interface and method is embodied on a computer readable medium and executable on a computer. The user interface is a labeler which labels only foreground pixels of an image stored in a computing environment. The labeler operates in a Region mode/state and Brush mode/state, and includes a Tentative mode that permits an assigned label to be changed after pixels have been selected. Groups of pixels may be selected for labeling at once by a point-and-click command, and a pixel may belong to one or more groups of pixels which are stored in memory as image layers. The groups are formed dynamically by user selection actions, and/or through automatic recognition algorithms. Pixels already labeled with certain labels may be locked to not be altered by additional labeling operations. Unassigned pixels may be highlighted to increase the ease at which they are identified in an image. Comparisons between labeled images are undertaken to indicate differences between different groundtruth labeling.
Abstract:
A method of modeling a fermentation process comprises providing a first principles model of a fermentation process; determining the concentration of at least one substrate in a fermentation composition at a first time; and predicting the concentration of at least one component of the fermentation composition at a second time using the first principles model, wherein the second time is after the first time.
Abstract:
An air flow adjusting frame for a heat sink device which includes a first fixing plate and a second fixing plate is disclosed. The first fixing plate is fixed to a heat dissipation fin with the second fixing plate pivoted to the first fixing plate. Besides, the second fixing plate is for being fixed to a fan. An air flow angle of the fan is adjusted through the air flow adjusting frame.
Abstract:
Methods for performing epitope mapping, and for characterizing the antibody binding affinity and epitope diversity of antibodies in a sample using peptide microarray are provided. In some aspects, methods are provided for the specific characterization of IgE and IgG4. Also disclosed are methods for diagnosing whether a milk-allergic individual will outgrow his or her allergy based on the characterization of the individual's milk allergen-specific IgE antibodies.
Abstract:
An electrochemical test sensor is adapted to measure glucose and correct for the oxygen effect in a fluid sample. The test sensor comprises a base, first and second working electrodes, and a counter electrode. The first working electrode includes glucose oxidase, a mediator and peroxidase. The second working electrode includes glucose oxidase and the mediator. The first working electrode, the second working electrode and the counter electrode are located on the base. In other embodiments, an electrochemical test sensor is adapted to measure cholesterol, lactate, pyruvate or xanthine and correct for the oxygen effect in a fluid sample.
Abstract:
The invention provides a computer module replacement design of a digital signage. The digital signage has a main circuit board and a plug-board disposed therein and connected to each other. The plug-board has a plug-card with a plug-slot, and a track disposed on each side thereof. The digital signage is covered up by a back cover so that an opening can be formed at one side edge of the digital signage. The computer module has a frame and a motherboard. The frame has a rail disposed on each side thereof and the motherboard has a slot and a connecting terminal disposed thereon. The slot has an interface socket card. The computer module can be placed into the digital signage through the opening with the rail placed into the track. Therefore, the connecting terminal is connected to the plug-slot and the computer module can be drawn out for maintenance.
Abstract:
A display device including a main body and at least a cover is provided. The main body has multiple TV standing holes. The cover detachable disposed on the main body is used to cover the TV standing holes. The cover includes multiple buckling parts, at least a lug and a removable portion. The buckling parts are disposed on corresponding opposite two sides of the cover, and the lugs and the removable portion are disposed on another corresponding opposite two sides of the cover. The buckling parts are adapted to pass through the TV standing holes respectively by the force of the friction and elastic. The lug is adapted to contact with the inner wall of the display device. The buckling parts are located between the lug and the removable portion. The removable portion is adapted to separate the cover and the display device.