Abstract:
A method for detecting and growing isolated dots in a document image having a plurality of pixels is provided. The method includes isolating the pixels of the image to form a plurality of windows, each window having a target pixel; detecting an isolated dot in the received image; identifying a dot growth factor to grow the detected isolated dot in the received image; using the dot growth factor to identify tiered pixel patterns from a plurality of predefined, tiered pixel patterns, wherein each of the tiered pixel patterns having a predetermined dot growth factor; comparing the pixels within each window to the pixel patterns within the identified tier to identify a match between the pixels within the window and at least one of the pixel patterns; and changing a pixel value of the target pixel, when a match is identified, to grow the isolated dot by the dot growth factor.
Abstract:
A card edge connector (100) includes an insulative housing, a set of contacts (2) retained in the insulative housing and an ejector (3). The insulative housing has a central slot (12) and one tower portion (13) having a receiving slot (135). The contacts protrude into the central slot. The ejector has a main portion (31) received in the receiving slot, an ejecting portion (34) extending from a lower end (35) of the main portion, a locking portion (32) extending inwardly from an upper end of the main portion, and a lever portion (37) extending outwardly from the upper end of the main portion. The locking portion has a pair of vertical portions (324), and a transverse portion (323). The transverse portion connects the vertical portions and divides the vertical portions into upper and lower retaining parts.
Abstract:
A card edge connector 100 includes an elongated insulative housing 1, a plurality of contacts 2 retained in the housing 1 and a pair of latches 3 pivoted on the housing 1. The housing 1 has an elongated central slot 12 for receiving a daughter card 200. The latch 3 has a locking head 36 to lock the daughter card 200 for preventing the daughter card 200 from escaping out of the central slot 12 in a mating direction. An end of the locking head 36 has a bump 360 passing through the daughter card 200 to abut against an outside surface of the daughter card 200.
Abstract:
A method for producing an electronic annotated document including embedding annotation information into an electronic annotation object having image data including an annotation, and producing the electronic annotated document using pixel information from the electronic document and the electronic annotation object. The annotation embedded information may be used to select corresponding pixel information from one of the electronic annotated object and electronic document to be provided in the electronic annotated document. A system and tangible storage medium having machine-readable instructions for producing an electronic annotated document are also disclosed.
Abstract:
A method for processing image data includes using advantages of both a three-layer MRC model and an N-layer MRC model to create a new 3+N layer MRC model and to generate a 3+N layer MRC image. The method includes providing input image data; segmenting the input image data to generate: (i) a background layer representing the background and the pictorial attributes of the image data, (ii) one or more binary foreground layers, (iii) a selector layer, and (iv) a contone foreground layer representing the foreground attributes of the image data on the background layer; and integrating the background layer, the selector layer, the contone foreground layer, and the one or more binary foreground layers into a data structure having machine-readable information for storage in a memory device. Each binary foreground layer includes one or more pixel clusters representing text pixels of a particular color in the input image data.
Abstract:
A voltage detection circuit can include a status sensing network and a comparing network. The status sensing network can simultaneously detect a cell voltage for each battery cell of a plurality of battery cells. The comparing network can simultaneously compare the detected cell voltages with a predetermined voltage threshold by comparing the maximum of the cell voltages with a first (high-voltage) threshold, and by comparing the minimum of the cell voltages with a second (low-voltage) threshold. The comparing network can also generate an indication signal when a cell voltage does not satisfy the respective voltage threshold.
Abstract:
The invention generally features the use of Yaba monkey tumor virus nucleic acid molecules and polypeptides for the treatment or prevention of immunoinflammatory disorders.
Abstract:
A card edge connector for mating with a corresponding daughter card 200 with a locking notch 201 at a side thereof, comprises: an insulative housing 1, a plurality of contacts 2 assembled to the insulative housing 1 and an ejector 3 and a locking member 4 set on two longitudinal ends of the insulative housing 1. The insulative housing defines a central slot 14 along the longitudinal direction. The locking member 4 is formed with a retention portion 41 and a pair of elastic arms 42 extending upwardly from the retention portion 41 and symmetrically located on two opposite sides of the central slot along a transverse direction perpendicular to longitudinal direction, each elastic arm 42 having a locking portion 321 protruding toward each other for locking with the locking notch 201 of the daughter card 200.
Abstract:
A card edge connector includes an elongated housing, the housing extends along a longwise direction thereof and has a pair of opposed side walls, a central slot between the side walls, and a tower portion disposed at one end thereof. A plurality of contacts are retained in the housing. An ejector mechanism is rotatable retained in the housing and has a body portion, a flexible arm divided from the body portion and a locking protrusion located on the flexible arm. The lock protrusion is adapted to resist the tower portion during the ejector mechanism rotates with respect to the housing.
Abstract:
A method for improving image quality of edge pixels, when separating an image signal into a set of image planes is provided. The method includes searching for a minimum value and a maximum value within at least one predefined neighborhood pixel window centered on a current pixel in the image signal; and conditionally switching the edge pixels to either the minimum value or the maximum value in the foreground and background planes respectively, or to a value of a specified characteristic of the current pixel, based on predetermined criteria. One such predetermined criteria for this conditional switching of the edge pixels comprises comparing the minimum or maximum luminance values in the predefined neighborhood window of the current pixel and their corresponding chrominance values to some predetermined thresholds which are characteristic of the image for the foreground and background planes, respectively.