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    • 1. 发明授权
    • Light-screening film paint for lamps, and light-screening film for lamps
and producing method thereof
    • 灯用遮光膜漆,灯用遮光膜及其制造方法
    • US6015592A
    • 2000-01-18
    • US150340
    • 1998-09-10
    • Tatsuo MifuneKazunori SakamotoTsumoru OhataMasaru Watanabe
    • Tatsuo MifuneKazunori SakamotoTsumoru OhataMasaru Watanabe
    • H01J9/20H01J61/35B05D3/02B05D3/00
    • H01J9/20H01J61/35
    • When in use a highly luminous automobile discharge lamp will experience a temperature rise to about 700.degree. C. at the lamp glass surface. As such, the light-screening film formed on the lamp will also be exposed to a temperature of 700.degree. C.; the temperature of the glass surface of a lamp rises and, accordingly, that of the light-screening film formed thereon also rises. Especially with a highly luminous automobile discharge lamp, the temperature of the lamp glass surface rises to about 700.degree. C. during the lighting. Necessarily, the light-screening film on the glass surface is also exposed to a temperature of 700.degree. C. As such, a light-screening film material free of discoloration or peeling even after exposure to a temperature of 700.degree. C. has been desired. There is disclosed a light-screening film paint for lamps containing (1) at least one compound of either manganese oxide or an iron oxide compound doped with a metallic manganese and having the formula (Fe.sub.x Mn.sub.1-x).sub.2 O.sub.3 where 0.95>x>0.70; and (2) powder glass containing at least one of silica, zinc oxide, boron oxide and aluminum oxide. A light-screening film is produced by applying the paint to the surface of a lamp, followed by the firing at a temperature of not higher than 1,200.degree. C.
    • 使用时,高度发光的汽车放电灯将在灯玻璃表面经历温度升高至约700℃。 因此,形成在灯上的遮光膜也将暴露于700℃的温度; 灯的玻璃表面的温度升高,因此形成在其上的遮光膜的温度也上升。 特别是使用高度发光的汽车放电灯,照明期间灯玻璃表面的温度升高至约700℃。 玻璃表面的遮光膜也必须暴露在700℃的温度。因此,即使在暴露于700℃的温度之后也不需要变色或剥离的遮光膜材料 。 公开了一种用于灯的遮光膜涂料,其包含(1)掺杂有金属锰的氧化锰或氧化铁化合物的至少一种化合物,并具有式(FexMn1-x)2O3,其中0.95> x> 0.70; 和(2)含有二氧化硅,氧化锌,氧化硼和氧化铝中的至少一种的粉末玻璃。 通过将涂料涂布在灯的表面上,然后在不高于1200℃的温度下进行烧制来制造遮光膜。
    • 6. 发明申请
    • Transfer Unit
    • 转运单位
    • US20080089768A1
    • 2008-04-17
    • US11571698
    • 2005-06-22
    • Kazunori SakamotoKenji Kobayashi
    • Kazunori SakamotoKenji Kobayashi
    • B65G47/91
    • B25J9/023B25J15/0616B25J17/0208H01L21/6838
    • A transfer unit 10 is structured including a supporting plate 11 having a supporting face 20A for a semiconductor wafer W, an arm plate 30 for supporting the supporting plate 11 and a parallelism adjuster 14 provided between the supporting plate and the arm plate 13. The supporting plate is arranged to be able to intake/discharge the air from the supporting face. Owing to the reaction when the supporting plate comes close to the semiconductor wafer W in the blowing state of the air, the supporting plate is maintained to be parallel with respect to the wafer. After coming close to the wafer in the state that the parallelism is maintained, the wafer is sucked and transferred.
    • 转印单元10被构造成包括具有用于半导体晶片W的支撑面20A的支撑板11,用于支撑支撑板11的臂板30和设置在支撑板和臂板13之间的平行度调节器14。 支撑板布置成能够从支撑面吸入/排出空气。 由于当支撑板在空气的吹送状态下靠近半导体晶片W时的反应,支撑板保持相对于晶片平行。 在保持平行度的状态下接近晶片之后,晶片被吸入和转移。
    • 7. 发明授权
    • Method of molding resin to protect a resolver winding
    • 树脂模塑方法保护旋转变压器绕组
    • US07347963B2
    • 2008-03-25
    • US10826135
    • 2004-04-16
    • Shinichi NamikiKazunori Sakamoto
    • Shinichi NamikiKazunori Sakamoto
    • H02K15/00H02K15/12
    • H02K15/12H01F41/127H02K3/522H02K24/00Y10T29/49009Y10T29/49011Y10T29/49012
    • At least a winding of a stator stack 2 is molded by injecting a fused resin molding material into a space formed between a top mold and a bottom mold member. When the stator stack 2 of the resolver, which is annular and includes a coiled winding 7, is sandwiched between the top mold member 10 and bottom mold member 20, a movable disc 12 is urged by a spring device 13, into close engagement with the bottom mold member 20. While the movable disc 12 is closely engaged with the bottom mold member 20, the stack 2 of the resolver is sandwiched between the bottom mold member 20 and the top mold member 10. This method prevents the generation of gaps between the stator stack 2 and mold 10, 20 due to unevenness of the thickness in the stator stack 2.
    • 通过将熔融树脂成型材料注射到形成在顶模和底模构件之间的空间中,至少形成定子叠层2的绕组。 当环形且包括线圈绕组7的旋转变压器的定子叠层2被夹在顶模构件10和底模构件20之间时,可移动盘12被弹簧装置13推动,以与 底部模具20。 当可移动盘12与底部模具20紧密接合时,旋转变压器的叠层2夹在底部模具20和顶部模具10之间。 这种方法防止了由于定子叠层2中的厚度不均匀而导致定子叠层2和模具10,20之间的间隙的产生。
    • 9. 发明授权
    • Acceleration detecting device
    • 加速度检测装置
    • US6093898A
    • 2000-07-25
    • US210992
    • 1998-12-15
    • Kazunori SakamotoTateki KawamuraTsutomu TakeuchiKoichi Fujita
    • Kazunori SakamotoTateki KawamuraTsutomu TakeuchiKoichi Fujita
    • G01P15/00B60R21/16G01P15/04G01P15/135H01H35/14
    • H01H35/14G01P15/04G01P15/135
    • An acceleration detecting device includes a housing, a weight pivotally mounted inside the housing for rotating along a locus in response to an applied acceleration, a spring provided between the housing and the weight to apply a biasing force to the weight against the applied acceleration, and a contact assembly located outside the locus of the weight. The contact assembly is adapted to be electrically closed by the rotation of the weight. An arc-shaped circumference of the weight maintains the same distance between the weight and the contact assembly during the rotation of the weight. When an excessive acceleration is applied to the device, the weight rotates from an initial position against the biasing force of the spring to electrically close the contact assembly. The weight is returned to the initial position by the biasing force of the spring to electrically open the contact assembly when the excess acceleration is no longer present. Because the spring which applies the biasing force is separated from the contact assembly, the biasing force is reliably maintained for a longer period. Further, the weight can rotate without any interference to the contact assembly because the arc-shaped outer circumference of the weight maintains the contact assembly spaced from the locus of the weight.
    • 一种加速度检测装置,包括壳体,枢转地安装在壳体内的重物,用于响应于施加的加速度沿着轨迹旋转;弹簧,设置在壳体和重物之间,以抵抗施加的加速度向重物施加偏置力;以及 位于重量轨迹外的接触组件。 接触组件适于通过重物的旋转而电闭合。 在重量的旋转期间,重物的弧形圆周保持重量和接触组件之间的相同距离。 当对装置施加过大的加速度时,重量将克服弹簧的偏压力从初始位置旋转以电闭合接触组件。 当超过加速度不再存在时,重物通过弹簧的偏置力返回到初始位置,以电接触组件。 由于施加偏压力的弹簧与接触组件分离,因此可靠地保持偏压力较长的时间。 此外,由于重物的弧形外周保持接触组件与重物的轨迹间隔开,所以重量可以旋转而不会对接触组件产生任何干扰。