Abstract:
An inspection apparatus includes a wafer stage for carrying a wafer, an illumination module which irradiates an inspection beam on the wafer carried on the wafer stage,a detection module which detects scattering rays or reflection rays from the wafer on the wafer stage and outputs an image signal, a coordinates control module which stores information about the arrangement of individual inspection areas on the wafer, and an imperfect area recognition module which recognizes, on the basis of the inspection area arrangement information stored in the coordinates control module, an imperfect inspection area interfering with a wafer edge.
Abstract:
A tongue-lid pack has an outer box (2) whose upper end is open, an inner pack (6) contained in the outer box (2) and having filter cigarettes, and a tongue lid (16) for opening/closing the open end of the outer box (2). A front wall (20) of the outer box (2) has a depression (21) that accepts a tip end portion (26) of a tongue (22) of the tongue lid (16) when the tongue (22) is superimposed upon the front wall (20), and the tip end portion (26) sinks in the front wall (20).
Abstract:
A target tubular member with flange, such as a bumper stay, has a flange having an outer diameter larger than the diameter of an axial section and is formed by electromagnetic forming without excessive expansion. The tubular member with flange includes an axial member made of a tubular aluminum alloy extrudate and a flange member joined to an end of the axial member. The axial member has an end flange being integrated at its end and having an area smaller than that of the flange member. The flange member has a hole, and a cylindrical hole flange at the edge of the hole. The axial member fits in the hole of the flange member, the end flange is in intimate contact with the flange member, and the outer periphery of a small-diameter portion of the axial member is in intimate contact with the inner periphery of the hole flange. The hole flange is held between the end flange and a protrusion. The tubular member with flange may be produced by inserting an untreated pipe into the hole of the flange member and expanding the untreated pipe by electromagnetic forming.
Abstract:
A semiconductor device (100) comprises a first resin substrate (101) on which a first semiconductor chip (125) is mounted a surface thereof; a second resin substrate (111) on which a second semiconductor chip (131) is mounted on a surface thereof; and a resin base material (109), joined to a front surface of the first resin substrate (101) and to a back surface of the second resin substrate (111), so that these surfaces are electrically connected. The resin base material (109) is disposed in a circumference of the first resin substrate (101) in the surface of the first resin substrate (101). Further, the first semiconductor chip (125) is disposed in a space section provided among the first resin substrate (101), the second resin substrate (111) and the resin base material (109) in the surface of the first resin substrate (101).
Abstract:
A thermal transfer recording material contains at least one colorant represented by the following general formula (II), wherein R21 and R22 each represent a substituted or unsubstituted aliphatic group; R23 represents a substituent; n represents an integer of 0 to 4; when n is 2 or more, R23 is the same or different each other; R25 and R26 represent alkyl groups respectively; and at least one of R25 and R26 represents a secondary alkyl group.
Abstract translation:热转印记录材料包含至少一种由以下通式(II)表示的着色剂,其中R 21和R 22各自表示取代或未取代的脂族基团; R 23表示取代基; n表示0〜4的整数, 当n为2以上时,R 23相同或不同; R 25和R 26分别代表烷基; 并且R 25和R 26中的至少一个表示仲烷基。
Abstract:
A tongue-lid pack has an outer box (2) whose upper end is open, an inner pack (6) contained in the outer box (2) and having filter cigarettes, and a tongue lid (16) for opening/closing the open end of the outer box (2). A front wall (20) of the outer box (2) has a depression (21) that accepts a tip end portion (26) of a tongue (22) of the tongue lid (16) when the tongue (22) is superimposed upon the front wall (20), and the tip end portion (26) sinks in the front wall (20).
Abstract:
A hardware/software co-verification method that achieves fast simulation execution by implementing a C-based native code simulation without degrading the accuracy of timing verification. This method is a method for co-verifying hardware and software, by using a host CPU, for a semiconductor device on which at least one target CPU and one OS are mounted wherein, first, a timed software component described in a C-based language or constructed from binary code native to the host CPU and a hardware component described in the C-based language are input as verification models, necessary compiling is performed, and the compiled components are linked together. Next, a testbench is input and compiled. Then, the components and the testbench are linked together, after which simulation is performed and the result of the simulation is output.
Abstract:
When the thickness of the panel at an X axis end of the useful portion is expressed by Tx (mm), the thickness thereof at a Y axis end is expressed by Ty (mm), the thickness thereof at the center is expressed by Tc (mm) and an outer dimension of the panel along the diagonal axis direction is expressed by D (mm), 0.8≦(100×Tc/D)2×(Tx/Ty)≦2.2 and 0.012≦Tc/D≦0.019 are satisfied. Accordingly, the stress generated in a short side and that generated in a long side in a sealing portion in an exhausting process are substantially equalized. As a result, cracking of the panel can be reduced in the exhausting process even when the panel is made thinner. Therefore, it is possible to provide a cathode ray tube that is easy to manufacture and has a lighter and less expensive panel.
Abstract:
A microreactor comprises a reaction chamber, into which prescribed materials are introduced, a production chamber, and a channel for connecting the reaction chamber and the production chamber together. A plurality of temperature adjusting devices (e.g., Peltier elements), each of which can be independently controlled in temperature, are arranged at prescribed positions with prescribed distances therebetween on a substrate in proximity to the reaction chamber, the production chamber, or the channel. Herein, the reaction chamber causes reaction of the materials in response to differences of boiling points, differences of state changes, or difference of solubility, thus producing a new substance, which is transmitted from the reaction chamber to the production chamber via the channel while being adequately controlled in temperature.
Abstract:
A direct-injection spark-ignition engine includes a spark plug provided approximately at the center of the ceiling of a combustion chamber, and an injector having at its downstream end a nozzle which is located in an upper peripheral area of the combustion chamber, in which multiple openings are formed in the nozzle of the injector. Fuel is injected from the nozzle of the injector directly toward the proximity of an electrode of the spark plug. The directions of axis lines of the individual openings are set such that central points of fuel jets spewed out of the individual openings do not lie on the spark plug but are distributed around the electrode, slightly separated therefrom.