Abstract:
A game device includes a player's character controller operative to control the movement of a player's character on a map, a non-player character controller operative to cause, of those non-player characters located on the map, non-player characters located within a predetermined range from the position of the player's character to join a procession following the player's character, and to move the non-player characters belonging to the procession to the position previously occupied by the player's character to allow the non-player characters to follow the player's character, and a procession controller operative to increase, upon receipt of a predetermined control input, the speed at which the non-player characters belonging to the procession to move to the position previously occupied by the player's character and to gather the non-player characters near the player's character.
Abstract:
Disclosed is a coloring composition including a pigment, a transparent resin, a monomer having an ethylenic unsaturated double bond, and a photo-polymerization initiator, wherein a ratio (M/P) of weight (M) of the monomer having an ethylenic unsaturated double bond to weight (P) of the transparent resin is confined to a range of 0.12 to 1.35, and the coloring composition is adapted to be employed in a manufacturing method of a color filter including coating a surface of a substrate with the coloring composition, irradiating a filter segment-forming region or a black matrix-forming region of the coated coloring composition film with a laser beam having a wavelength of 340 nm to 380 nm, thereby curing the irradiated region, and removing uncured portion of the coated coloring composition film to form the filter segment or the black matrix.
Abstract:
In a measurement apparatus, higher-quality measurement is realized in measurement of measurement object displacement or imaging of a two-dimensional image. In a controller, a light receiving signal of a photodiode is supplied to a displacement measuring unit of a sensor head in order to measure a height of a measurement object, and the height of a surface of the measurement object is measured based on the light receiving signal. Then, in the controller, image obtaining timing is determined based on the height of the measurement object. Specifically, a focus adjustment value corresponding to the computed height of the measurement object is obtained from the table, and an image obtaining signal is transmitted to an imaging device at the timing the focus adjustment value is realized. Therefore, a length between two points on the measurement object is computed from the thus obtained image based on the height of the measurement object.
Abstract:
A game device includes a player's character controller operative to control the movement of a player's character on a map, a non-player character controller operative to cause, of those non-player characters located on the map, non-player characters located within a predetermined range from the position of the player's character to join a procession following the player's character, and to move the non-player characters belonging to the procession to the position previously occupied by the player's character to allow the non-player characters to follow the player's character, and a procession controller operative to increase, upon receipt of a predetermined control input, the speed at which the non-player characters belonging to the procession to move to the position previously occupied by the player's character and to gather the non-player characters near the player's character.
Abstract:
An image processing technology for displaying a real object and a virtual object associated with each other is provided. An image analysis apparatus according to the present invention changes a motion pattern of the virtual object depending on the actual movement of the real object. The change detector 110 detects temporal state change in the motion pattern of the real object captured by an imaging apparatus and the display controller 120 reads a motion pattern from the motion pattern storage 122 based on the event generated by the state change of an image. The display pattern controller 122 controls display mode of the virtual object using the read motion pattern.
Abstract:
An extension unit provided adjacent to an amp unit comprises a measurement data accumulation memory, a measurement data acquiring part for acquiring measurement data coming through a transmission line and accumulating it in the above memory, a data analyzing part for analyzing an accumulated series of measurement data according to predetermined algorithm, a determining part for determining a data analyzed result, and an output part for outputting a control signal corresponding to a determined result to the outside. A plurality of process programs in which measurement algorithm is segmentalized are incorporated in the extension unit and a process program is selected according to a command from a personal computer and the selected process program is performed in a predetermined order.
Abstract:
In one embodiment, a pattern inspection apparatus includes a light source configured to generate light, and a condenser configured to shape the light into a line beam to illuminate a wafer with the line beam. The apparatus further includes a spectrometer configured to disperse the line beam reflected from the wafer. The apparatus further includes a two-dimensional detector configured to detect the line beam dispersed by the spectrometer, and output a signal including spectrum information of the line beam. The apparatus further includes a comparison unit configured to compare the spectrum information obtained from corresponding places of a repetitive pattern on the wafer with each other, and a determination unit configured to determine whether the wafer includes a defect, based on a comparison result of the spectrum information.
Abstract:
In accordance with an embodiment, a pattern inspection apparatus includes a stage supporting a substrate with a pattern, a light source irradiating the substrate with light, a detection unit, an optical system, a focus position change unit, a control unit, and a determination unit. The detection unit detects reflected light from the substrate. The optical system leads the light from the light source to the substrate and leads the reflected light to the detection unit. The focus position change unit changes a focus position of the light to the substrate in a direction vertical to the surface of the substrate. The control unit associates the movement of the stage with the light irradiation and controls the stage drive unit and the focus position change unit, thereby changing the focus position. The determination unit determines presence/absence of a defect of the pattern based on the signal from the determination unit.
Abstract:
A method of manufacturing a color filter, includes forming a colored coated film on a substrate using a colored composition containing a pigment, a monomer having an ethylenic unsaturated double bond and photo-polymerization initiator, irradiating a filter segment-forming region or a black matrix-forming region of the colored coated film with an excimer laser beam having a wavelength of 308 nm (XeCL) at a dosage sufficient to achieve a cumulative light exposure of 1-150 mJ/cm2, thereby curing the irradiated region, removing uncured portions of the colored coated film to form the filter segment or the black matrix, and repeating the above-described steps plural times, thereby forming filter segments of at least two colors and/or a black matrix.
Abstract translation:一种彩色滤光片的制造方法,其特征在于,使用含有颜料,具有烯属不饱和双键的单体和光聚合引发剂的着色组合物在基板上形成着色涂膜,照射过滤器段形成区域或黑色矩阵 具有波长为308nm的准分子激光束(XeCL)的彩色涂膜的成膜区域,其剂量足以实现1-150mJ / cm 2的累积曝光,从而固化照射区域,除去未固化的部分 该彩色涂膜形成过滤段或黑色矩阵,多次重复上述步骤,从而形成至少两种颜色和/或黑色矩阵的过滤段。
Abstract:
An image processing apparatus that can determine an optimal registration color according to an acquired image is provided. An image processing unit 6 receives a sample image from an imaging unit 2 and acquires a hue with respect to each of pixels arranged two-dimensionally that constitute the sample image and calculates a hue histogram. A control unit 4 extracts a candidate color based on the hue at a maximum point in the hue histogram received from the image processing unit 6. At the same time, the control unit 4 determines a hue threshold value in order to define the range of the color regarded as the candidate color. Furthermore, the control unit 4 extracts all pixels that satisfy the hue threshold value of the candidate color and acquires the value and chroma of the extracted pixel and sets the maximum value and the minimum value in the acquired value and chroma to a value threshold value and a chroma threshold value. The control unit 4 stores the determined hue threshold value, value threshold value and chroma threshold value in a memory unit 6a.