摘要:
A sensor stem supporting a sensor element comprising a metal plate having a shape defined by press, the metal plate include a dent portion formed on a first surface of the metal plate, a step portion formed on a second surface of the metal plate facing the first surface, and a projection formed on the step portion for resistance welding. It is thus possible to obtain an excellent hermetic sealing of the sensor stem and a cap, which protects an oscillator, a circuit board and the like. The sensor stem can prevent a short circuit and can be lowered in height thereof.
摘要:
A sensor stem supporting a sensor element comprising a metal plate having a shape defined by press, the metal plate include a dent portion formed on a first surface of the metal plate, a step portion formed on a second surface of the metal plate facing the first surface, and a projection formed on the step portion for resistance welding. It is thus possible to obtain an excellent hermetic sealing of the sensor stem and a cap, which protects an oscillator, a circuit board and the like. The sensor stem can prevent a short circuit and can be lowered in height thereof.
摘要:
An angular rate sensor includes a tuning-fork oscillator, a support portion, an oscillation absorption portion and a mounting portion. The tuning-fork oscillator has a base and arm portions extending from the base. The support portion supports the base of the tuning-fork oscillator at a front face thereof. The oscillation absorption portion is provided on a back face of the support portion opposite to the front face. The mounting portion mounts the support portion through the oscillation absorption portion.
摘要:
An angular rate sensor includes a tuning-fork oscillator, a support portion, an oscillation absorption portion and a mounting portion. The tuning-fork oscillator has a base and arm portions extending from the base. The support portion supports the base of the tuning-fork oscillator at a front face thereof. The oscillation absorption portion is provided on a back face of the support portion opposite to the front face. The mounting portion mounts the support portion through the oscillation absorption portion.
摘要:
An angular velocity sensor includes: a package housing a vibrator to sense an angular velocity; a mounting portion mounting the package, the mounting portion having a first terminal for making a connection with the package; a second terminal for making an external connection, and a resin portion covering the first and second terminals so that a part of the first terminal and a part of the second terminal are exposed; and a cover having a joint portion made of a metal and covering the package, the cover being fixed to the mounting portion by joining the joint portion to a joint terminal made of a metal and provided to the mounting portion.
摘要:
An angular velocity sensor includes: a package housing a vibrator to sense an angular velocity; a mounting portion mounting the package, the mounting portion having a first terminal for making a connection with the package; a second terminal for making an external connection, and a resin portion covering the first and second terminals so that a part of the first terminal and a part of the second terminal are exposed; and a cover having a joint portion made of a metal and covering the package, the cover being fixed to the mounting portion by joining the joint portion to a joint terminal made of a metal and provided to the mounting portion.
摘要:
A method for controlling a ladle to pour molten metal into a mold. The method comprises producing a mathematical model describing a relationship between a measured electrical voltage supplied to a servomotor for tilting the ladle and a flow rate of the molten metal flowing out of the ladle when the ladle is tilted; solving an inverse problem of the mathematical model; estimating the flow rate of the molten metal using a state observer having an exponential damping that uses an extended Kalman filter, based on the measured electrical voltage and a weight of the molten metal poured into the mold; processing the flow rate of the molten metal and a target flow rate of the molten metal with a gain-scheduled PI controller; obtaining a target electrical voltage to be supplied to the servomotor; and controlling the servomotor based on the target electrical voltage.
摘要:
A non-aqueous electrolyte secondary battery, comprises positive and negative electrode plates, each comprising a current collector and a material mixture layer carried on each face thereof. A total thickness of the positive electrode material mixture layers on both faces of the current collector is 40 μm to 100 μm. The positive electrode plate has an electrode area of 520 cm2 to 800 cm2 per battery capacity of 1 Ah. The negative electrode material mixture layer comprises a graphitizable carbon material. A wide-range X-ray diffraction pattern of the graphitizable carbon material has a peak PX (101) attributed to a (101) crystal face at about 2θ=44 degrees, and a peak PX (100) attributed to a (100) crystal face at about 2θ=42 degrees. A ratio of an intensity IX (101) of PX (101) to an intensity IX (100) of PX(100) satisfies: 0
摘要:
A method of measuring precisely and highly accurately the distance between the surface at a predetermined position of a mold and a laser measuring instrument. The distance between the surface of a mold frame and the laser measuring instrument is measured by directing a laser beam to four positions on the surface of the mold frame, the positions on the surface of the mold frame are expressed by x-y coordinates while the distance between the surface of the mold frame and the laser measuring instrument is expressed by a z coordinate. An equation .DELTA.z=ax+by+c for correcting the measurement value of the distance between the surface of the mold frame and laser measuring instrument is determined by using the four measurement values and the maximum or minimum value of the these measurement values as the reference, and the distance between the position on the mold and the laser measuring instrument is measured. The correction values of the measurement positions are calculated from the equation .DELTA.z=ax+by+c and the coordinate values of the x-y coordinates of the measurement positions, and thse corrected values are added to the measurement values of the distance between the surface of the measurement portions of the mold and the laser measuring instrument.
摘要翻译:PCT No.PCT / JP95 / 01953 Sec。 371日期:1996年8月16日 102(e)日期1996年8月16日PCT提交1995年9月27日PCT公布。 公开号WO96 / 10726 日期1996年04月11日精度高精度地测量模具的预定位置的表面与激光测量仪器之间的距离的方法。 模具框架表面与激光测量仪器之间的距离通过将激光束引导到模具框架表面上的四个位置来测量,模具框架表面上的位置由xy坐标表示,而距离 模具框架的表面和激光测量仪器由az坐标表示。 通过使用四个测量值和这些测量值的最大值或最小值来确定用于校正模具框架的表面与激光测量仪器之间的距离的测量值的等式DELTA z = ax + by + c作为 参考,并测量模具上的位置与激光测量仪器之间的距离。 测量位置的校正值由等式DELTA z = ax + by + c和测量位置的xy坐标的坐标值计算,并且将这些校正值加到测量位置的表面之间的距离的测量值 模具和激光测量仪器的测量部分。
摘要:
A vehicle brake hydraulic pressure control unit includes a base body 1 incorporating therein a brake fluid flow path 1a and an electromagnetic valve 2 which is an assembled part assembled into a mounting hole portion 10A which is formed in the base body 1 in such a manner as to communicate with the flow path 1a. A hole wall of the mounting hole portion 10A has a plastically deformed portion 18 formed by pressing the hole wall in a downward direction of the mounting hole portion 10A. A locking groove 214 for the plastically deformed portion 18 to enter is formed on an outer circumferential surface of the electromagnetic valve 2. An outside diameter of the electromagnetic valve 2 at an upper side of the locking groove 214 is made smaller than an outside diameter of the electromagnetic valve 2 at a lower side of the locking groove 214.