Abstract:
A single pole female connector has: a mounting base portion in which is formed a terminal insertion hole into which a male terminal can be inserted; an extending portion extending outwardly from the mounting base portion; and a terminal contacting portion which extends from a peripheral edge of the mounting base portion in a direction substantially orthogonal to a plate portion, and which is formed so as to be able to nip the male terminal. The extending portion is electrically connected by being reflow soldered to a land at a reverse surface of the substrate. It is difficult for cream solder to enter into a male terminal insertion path at an inner side of the female connector.
Abstract:
A tablet cassette in which the tablet is not discharged during an operation to mount and dismount the tablet cassette is provided. In a tablet cassette 1 for containing a number of tablets T, the tablet cassette 1 incorporates a rotor 6 having pocket portions 7 for holding the tablets T. When the tablet cassette 1 is mounted on a mount base 2, rotation of the rotor 6 causes the tablets T held in the pocket portions 7 to be discharged though a discharge port 8. The tablet cassette 1 comprises a press member 16 which is pressed when the tablet cassette 1 is mounted on the mount base 2 and a rotor reversing member 19 for reversing the rotor 6 by a predetermined quantity in conjunction with press of the press member 16.
Abstract:
Methods for casting an austenitic stainless steel thin strip casting through a continuous caster, e.g., a twin-drum type caster, in which the mold walls move synchronous with the casting to obtain a casting, wherein defects, e.g., salt-and-pepper unevenly glossy defects, on a steel sheet formed after cold rolling or cold forming are prevented. In particular, casting an austenitic stainless steel thin strip casting by regulating a pressing force P of mold wall faces against the casting in the range from more than 1.0 to less than 2.5 t/m, and preferably from more than 1.1 to not more than 1.6 t/m. The continuous caster used may be a twin-drum type continuous caster, with a drum radius R(m) and a pressing force P(t/m) of mold wall faces satisfying the relation 0.5≦(√{square root over (R)})×P≦2.0, and preferably 0.8≦(√{square root over (R)})×P≦1.2.
Abstract translation:通过连续铸造机铸造奥氏体不锈钢薄带铸造方法,例如双辊式铸造机,其中模具壁与铸件同步移动以获得铸件,其中缺陷例如盐和胡椒不均匀 防止了在冷轧或冷成型后形成的钢板上的光泽缺陷。 特别地,通过将模具壁面的压力P调节在大于1.0至小于2.5t / m 2,优选大于1.1至不大于1.6的范围内,铸造奥氏体不锈钢薄带铸件 t / m。 所使用的连续脚轮可以是双鼓式连续脚轮,其鼓半径R(m)和模具壁面的按压力P(t / m)满足关系0.5 <=(√{平方根超过(R )xP <= 2.0,优选0.8 <=(√{平方根超过(R)xP <= 1.2。
Abstract:
A tungsten silicide (WSi) film is formed of tungsten hexafluoride (WF6) and dichlorosilane (SiCl2) as main raw material on a polysilicon film by the CVD method. At the final stage of this film forming process, supply of tungsten hexafluoride is terminated to relax internal stresses. As a result, on the tungsten silicide film, an Si-rich tungsten silicide film containing chlorine ions in a high concentration is formed. Then, before coating a chemical amplification photoresist, these films along with a silicon substrate are soaked in an etching liquid containing hydrogen peroxide to remove the Si-rich tungsten silicide film so that generation of ammonia chloride, which suppresses an alkali developing action, can be controlled. Thus the tungsten silicide film can be patterned by photolithography without pattern defects.
Abstract:
A substrate storing container includes: a container body for storing semiconductor wafers; a door that is fitted to the front of the container body; and a locking mechanism locking the door. The locking mechanism includes: a rotary driver that is supported by the door and operated from a cover plate side; and a locking bar that vertically slides as the rotary driver rotates to bring the distal end into, and out of, a locking hollow of the container body. The rotary driver is separated into first and second rotary drivers. The first and second rotary drivers are formed with first and second cam portions, respectively. The first and second cam portions are made to support the proximal end of the locking bar therebetween so that the locking bar can sway in the thickness direction of the door.
Abstract:
When a lid (20) is attached to a substrate removal/insertion opening (2) in a container body (1), a placement piece forcible displacement means (22) forcibly moves a substrate placement piece (4), which is provided in a region in the vicinity of the substrate removal/insertion opening (2), to a displacement position which does not overlap with a disc-shaped substrate (W). Thus, even if the disc-shaped substrate (W) is increased in diameter, there is no risk of the stored disc-shaped substrate (W) coming into contact with the substrate placement piece (4) due to factors such as vibration or impact, thus the disc-shaped substrate (W) can be stored more safely.
Abstract:
A brittle material substrate cutting method and cutting apparatus are provided, which prevent cut faces of a brittle material substrate from contacting each other after the cutting in a break step of continuously cutting the brittle material substrate, so that a damage or contamination on the brittle material substrate due to the contact can be prevented.
Abstract:
A first high speed transmission line board (1) having a stripline structure is composed of a first elastomer sheet (1A) that has a fixed dielectric constant, plural first elastomer strips (1B) that are conductive, arrayed at two edges of the first elastomer sheet (1A), and plural first high speed transmission lines (1C) formed in a pattern connecting two ends of the first elastomer strips (1B). A first surface layer board (2) is composed of a second elastomer sheet (2A) that is nonconductive, and plural second elastomer strips (2B) that are conductive, arrayed similarly to the first elastomer strips (1B), at two edges of the second elastomer sheet (2A). A multilayer board is configured by laminating the first surface layer board (2) on the first high speed transmission line board (1), and external connecting terminals are in pressurized contact with the plural second elastomer strips (2B), so that the plural first high speed transmission lines (1C) are connected.
Abstract:
A tablet cassette in which a tablet is not discharged during a mounting or dismounting operation of the tablet cassette. The tablet cassette (1) incorporates a rotor (6) having pocket portions (7) for holding tablets (T). When the tablet cassette 1 is mounted on a mount base (2), rotation of the rotor (6) causes the tablets (T) held in the pocket portions (7) to be discharged though a discharge port (8). The tablet cassette (1) includes a press member (16) which is pressed when the tablet cassette (1) is mounted on the mount base (2) and a rotor reversing member (19) for reversing the rotor (6) by a predetermined quantity in conjunction with pressing of the press member (16).
Abstract:
A first high speed transmission line board (1) having a stripline structure is composed of a first elastomer sheet (1A) that has a fixed dielectric constant, plural first elastomer strips (1B) that are conductive, arrayed at two edges of the first elastomer sheet (1A), and plural first high speed transmission lines (1C) formed in a pattern connecting two ends of the first elastomer strips (1B). A first surface layer board (2) is composed of a second elastomer sheet (2A) that is nonconductive, and plural second elastomer strips (2B) that are conductive, arrayed similarly to the first elastomer strips (1B), at two edges of the second elastomer sheet (2A). A multilayer board is configured by laminating the first surface layer board (2) on the first high speed transmission line board (1), and external connecting terminals are in pressurized contact with the plural second elastomer strips (2B), so that the plural first high speed transmission lines (1C) are connected.