Abstract:
A position detector includes a pair of magnetic sensors spaced from each other and a magnetic force generator movable relative to the pair of magnetic sensors. The length of the magnetic force generator along the space between the magnetic sensors is equal to or larger than a length of a space between the magnetic sensors. Preferably, the length of the magnetic force generator along the space between the magnetic sensors is equal to or larger than a sum of the length of the space between the magnetic sensors and an allowable moving distance of the magnetic force generator.
Abstract:
A plurality of variables representing the characteristics of a knock is obtained from an output signal of a sensor. The variables include a peak value of the knock frequency component in the output signal of the sensor and a waveform correlation coefficient representing the correlation between the waveform of the output signal and an ideal knock waveform, which is the waveform specific to a knock. The peak value and the waveform correlation coefficient are normalized, and a detection distribution is created using the obtained normalized data values. A correlation coefficient for knock determination representing the correlation between the detection distribution and an ideal knock distribution is calculated. The correlation coefficient for knock determination is compared with a predetermined knock determination threshold value, and the knock determination threshold value is corrected in accordance with the comparison result. As a result, the accuracy and the reliability of knock determination are improved.
Abstract:
Image data of various kinds of components and component text data required for mounting of components, e.g., shapes, dimensions, packing forms, colors, and the like of the components are stored in a storage medium in a manner to be read out as part of a component electrical catalog. The storage medium is used to make a search for components on a screen and automatically read out necessary component text data. The component electronic catalog can be used not only to search for components on a screen, similar to a conventional component electronic catalog, but to automatically read out component text data so as to automatically form mounting data for components to be mounted which are selected through the screen search.
Abstract:
The state of charging and discharging of a secondary cell circuit varies with battery deterioration and with the margin for charging and discharging. The state of charging and discharging is detected accurately without coming into contact with any unit cells, and maintenance and inspection can be performed efficiently. Charging and discharging characteristics of the battery are held in a memory, and charging current and discharging current are controlled by comparing measured voltage and current values with the charging and discharging characteristics held in the memory. Furthermore, battery information relating to each unit cell is transmitted by radio signals and the substance of this information is displayed at the driver's seat.
Abstract:
Graphic data for forming a light-shielding pattern and graphic data for forming a semitransparent pattern are stored in first and second memories, respectively. A synthesis circuit converts the graphic data stored in the first and second memories into bit patterns and writes them in a third memory. A line width determination circuit determines, as a halftone region, a region having the number of continuous bits at the same level, which number is a predetermined number or less, in the bit patterns stored in the third memory. A pattern data generation circuit generates pattern data constituted by the signal levels of a light-transmitting region and a light-shielding region on the basis of an output signal from the synthesis circuit. A pattern data correction circuit corrects the signal level of the pattern data corresponding to the halftone region designated by the line width determination circuit to a signal level corresponding to a semitransparent film in accordance with the transmittance of the semitransparent film. A comparator compares the corrected pattern data output from the pattern data correction circuit with a signal output from a line sensor and corresponding to a halftone type phase shift mask to be inspected, thereby inspecting the patterns.
Abstract:
According to a method of repairing a pattern using a photomask pattern repair device of the present invention, a reference point is set within a reference point confirmation scanning area on a pattern member and near a pattern repair range on the pattern member, and a protection film is formed by a material other than that of an underlying member, so as to cover the reference point confirmation scanning area. A through hole is then formed so as to penetrate only the protection film. The scanning area is scanned with a charged particle beam to cause a secondary ion to be emitted from the underlying member only through the through hole. The secondary ion is detected to confirm a reference position corresponding to the through hole. When a variation in the orbit of the charged particle beam is detected from the confirmed reference position, the position of the charged particle beam is corrected in accordance with an amount of drift of the variation.
Abstract:
A solid-state image pickup device which is configured not to require transfer of signal charges between pixels performs TDI. An output control section 5 sequentially assigns a pixel signal output processing period to each pixel array group 10 in the order of the vertical direction at an interval of one horizontal processing period H obtained by dividing one frame period T into three. The one frame period T is a period when each pixel array 100 is moved in the vertical direction. An adder 50 sums up a pixel signal held in a signal holding portion 41_X, and a pixel signals held in a signal holding portion 41_R, 41_G, 41_B corresponding to the pixel signal under the control of the output control section 5, and outputs the summation result to an A/D converter 60.
Abstract:
A transmission line includes two tapered lines having a tapered planar shape and arranged in parallel, opposite lines provided in opposition to the narrower width sides of the two tapered lines, and a bonding wire for connecting the narrower width sides of the two tapered lines and the opposite lines, wherein the width between two outer edges on the narrower width sides of the two tapered lines arranged in parallel is greater than the width between outer edges on the opposite side of the opposite lines in opposition to the narrower width sides of the two tapered lines.
Abstract:
A solid-state image pickup device which is configured not to require transfer of signal charges between pixels performs TDI. An output control section 5 sequentially assigns a pixel signal output processing period to each pixel array group 10 in the order of the vertical direction at an interval of one horizontal processing period H obtained by dividing one frame period T into three. The one frame period T is a period when each pixel array 100 is moved in the vertical direction. An adder 50 sums up a pixel signal held in a signal holding portion 41_X, and a pixel signals held in a signal holding portion 41_R, 41_G, 41_B corresponding to the pixel signal under the control of the output control section 5, and outputs the summation result to an A/D converter 60.
Abstract:
A printing device using a print head ejecting ink from a plurality of nozzles to print ink dots of a plurality of dot diameters, includes a print-characteristic acquisition unit obtaining print characteristic information on dot diameters of ink dots to be printed per each predetermined portion of the plurality of nozzles, a distribution ratio determination unit determining a distribution ratio for distributing image data to the predetermined portions of the plurality of nozzles based on the information, a dot print position determination unit quantizing the image data to determine a dot print position based on the image data and sizes and an array of thresholds; and a plurality of masks based on dot distribution order determined according to the distribution ratio, distributing printing of each of the ink dots of the plurality of dot diameters to the dot print position determined by the dot print position determination unit.