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    • 3. 发明授权
    • Imaging lens, manufacturing method thereof, and compound lens
    • 成像透镜及其制造方法和复合透镜
    • US08000040B2
    • 2011-08-16
    • US12058796
    • 2008-03-31
    • Satoru OtaYutaka UetaYouhei NakagawaYuma Aoi
    • Satoru OtaYutaka UetaYouhei NakagawaYuma Aoi
    • G02B9/00G02B13/00G02B9/12G02B9/04
    • G02B7/022G02B7/021G02B7/025G02B13/006Y10S359/90
    • In an imaging lens, one compound lens and two single lenses are arranged in a lens barrel. On the light output side of the lens barrel, a filter is arranged with a distance from lens barrel. With a further distance from the filter, an imaging element is arranged. In the compound lens, a resin lens is bonded to a base member lens, having an output surface center of the resin lens displaced by a prescribed amount relative to an output surface center of the base member lens, so that a transmission decentration amount attributed to the base member lens, not including the resin lens, and the single lenses is cancelled by a transmission decentration amount by the resin lens when taken as a whole lens system. Thus, the imaging lens capable of suppressing reduction in resolving power due to transmission decentration of the lenses is obtained.
    • 在成像透镜中,一个复合透镜和两个单个透镜布置在镜筒中。 在镜筒的光输出侧,布置与透镜镜筒相距一定距离的过滤器。 与滤光器进一步距离,配置成像元件。 在复合透镜中,将树脂透镜接合到基部构件透镜,其具有相对于基底构件透镜的输出表面中心偏移规定量的树脂透镜的输出表面中心,从而导致由于 当采用整个透镜系统时,不包括树脂透镜的基底成员透镜和单个透镜被树脂透镜的透射偏移量抵消。 因此,可以获得能够抑制由于透镜的透射偏心引起的分辨率降低的成像透镜。
    • 4. 发明申请
    • IMAGING LENS, MANUFACTURING METHOD THEREOF, AND COMPOUND LENS
    • 成像镜片及其制造方法和化合物镜片
    • US20080239512A1
    • 2008-10-02
    • US12058796
    • 2008-03-31
    • Satoru OtaYutaka UetaYouhei NakagawaYuma Aoi
    • Satoru OtaYutaka UetaYouhei NakagawaYuma Aoi
    • G02B11/02B29D11/00
    • G02B7/022G02B7/021G02B7/025G02B13/006Y10S359/90
    • In an imaging lens, one compound lens and two single lenses are arranged in a lens barrel. On the light output side of the lens barrel, a filter is arranged with a distance from lens barrel. With a further distance from the filter, an imaging element is arranged. In the compound lens, a resin lens is bonded to a base member lens, having an output surface center of the resin lens displaced by a prescribed amount relative to an output surface center of the base member lens, so that a transmission decentration amount attributed to the base member lens, not including the resin lens, and the single lenses is cancelled by a transmission decentration amount by the resin lens when taken as a whole lens system. Thus, the imaging lens capable of suppressing reduction in resolving power due to transmission decentration of the lenses is obtained.
    • 在成像透镜中,一个复合透镜和两个单个透镜布置在镜筒中。 在镜筒的光输出侧,布置与透镜镜筒相距一定距离的过滤器。 与滤光器进一步距离,配置成像元件。 在复合透镜中,将树脂透镜接合到基部构件透镜,其具有相对于基底构件透镜的输出表面中心偏移规定量的树脂透镜的输出表面中心,从而导致由于 当采用整个透镜系统时,不包括树脂透镜的基底成员透镜和单个透镜被树脂透镜的透射偏移量抵消。 因此,可以获得能够抑制由于透镜的透射偏心引起的分辨率降低的成像透镜。
    • 6. 发明授权
    • Dielectric filter and process for producing same
    • 介质过滤器及其制造方法
    • US06294968B1
    • 2001-09-25
    • US09658988
    • 2000-09-11
    • Atsushi ItoSatoru Ota
    • Atsushi ItoSatoru Ota
    • H01P120
    • H01P1/2053Y10T29/49016Y10T29/4902
    • A dielectric filter including at least three coaxial dielectric resonators of predetermined size which are bonded as arranged side by side. The resonators serving respectively as an input stage and an output stage are each formed with an external connection electrode positioned on the peripheral surface other than the adjoining surface in proximity to an exposed end face and insulated from an outer conductor layer. An inner conductor layer of the resonator serving as an intermediate stage is removed over only a suitable region from an exposed end face thereof so as to approximately match the resonance frequency of the intermediate-stage resonator to the resonance frequency of the input-stage and the output-stage resonators. The dielectric filter may include at least three coaxial dielectric resonators which are bonded as arranged side by side. An interstage coupling window is formed in each of the adjoining surfaces of the adjacent resonators, approximately at an axial midportion thereof by removing an outer conductor layer. An external connection electrode, insulated from the layer, is formed on each of the resonators serving as an input stage and an output stage approximately at an axial midportion of the outer peripheral surface other than the adjoining surface.
    • 包括至少三个预定尺寸的同轴介质谐振器的介质滤波器,它们被并排设置。 分别用作输入级和输出级的谐振器各自形成有外部连接电极,该外部连接电极定位在靠近暴露端面的邻接表面的外围表面上并与外部导体层绝缘。 用作中间级的共振器的内部导体层仅从其暴露端面的适当区域去除,以便将中间级谐振器的谐振频率与输入级的谐振频率近似匹配, 输出级谐振器。 介质滤波器可以包括至少三个并联的同轴介质谐振器,它们并排布置。 通过去除外部导体层,在相邻谐振器的每个邻接表面中形成级间耦合窗,大致在其轴向中间部分。 与层相绝缘的外部连接电极形成在用作输入级的每个谐振器和大致在相邻表面之外的外周表面的轴向中间部分的输出级。
    • 7. 发明申请
    • Load Control Device and Method Thereof
    • 负载控制装置及其方法
    • US20090077233A1
    • 2009-03-19
    • US12298574
    • 2007-04-25
    • Ryosuke KurebayashiOsamu IshidaSatoru OtaTsunemasa HayashiKazuaki Obana
    • Ryosuke KurebayashiOsamu IshidaSatoru OtaTsunemasa HayashiKazuaki Obana
    • G06F15/173
    • H04L41/0896G06F9/4843H04L43/0894H04L43/16H04L47/10H04L47/193H04L47/27H04L47/39H04L67/32H04L69/16H04L69/165
    • The number of response-waiting requests which are already sent to a server (4) but to which a response is not yet returned from the server (4) is limited. To limit this number, received requests are temporarily accumulated in a buffer if the number of response-waiting requests has reached a threshold and, until the number of response-waiting requests falls below the threshold, requests are not sent from the buffer. The execution status of the server (4) is monitored, and the threshold is increased when the response time from the server (4) to a request is within an allowable range, and the threshold is decreased when the response time exceeds the allowable range. In addition, TCP connections between a load control device (3) and clients (1-1, 1-n) are aggregated so that the number of simultaneous connections of TCP connections between the server (4) and the load control device (3) becomes equal to or smaller than the threshold of the number of response-waiting requests.
    • 已经发送到服务器(4)但尚未从服务器(4)返回的响应的响应等待请求的数量受到限制。 为了限制该数量,如果响应等待请求的数量已达到阈值,则接收的请求被临时累积在缓冲器中,并且直到响应等待请求的数量低于阈值,则不从缓冲器发送请求。 监视服务器(4)的执行状态,并且当从服务器(4)到请求的响应时间在允许范围内时阈值增加,并且当响应时间超过允许范围时阈值减小。 此外,负载控制设备(3)和客户机(1-1,1-n)之间的TCP连接被聚合,使得服务器(4)和负载控制设备(3)之间的TCP连接的同时连接的数量 变得等于或小于响应等待请求数的阈值。
    • 10. 发明授权
    • Composite lens
    • 复合镜头
    • US07948690B2
    • 2011-05-24
    • US12393268
    • 2009-02-26
    • Ai TakumiSatoru OtaYutaka Ueta
    • Ai TakumiSatoru OtaYutaka Ueta
    • G02B3/08G02B9/00
    • G02B3/00
    • A composite lens of the present invention has a base lens and a resin lens placed on the base lens. The resin lens has, in an area outside an optically effective diameter, a first surface, a second surface that is adjacent to the first surface, and a third surface that is adjacent to the second surface in sequence from an optical axis to an outer circumference. The first surface has an inclined surface that becomes higher from the outer circumference toward the optical axis, and the inclined surface is connected to the second surface. The second surface has a plane that is substantially perpendicular to the optical axis, and the substantially perpendicular plane is connected to the first plane. The third surface has an inclined surface that becomes lower from an inner circumference toward the outer circumference.
    • 本发明的复合透镜具有放置在基底透镜上的基座透镜和树脂透镜。 树脂透镜在光学有效直径以外的区域具有第一表面,与第一表面相邻的第二表面,以及从光轴到外周依次邻接第二表面的第三表面 。 第一表面具有从外周朝向光轴变高的倾斜面,倾斜面与第二面连接。 第二表面具有基本上垂直于光轴的平面,并且基本上垂直的平面连接到第一平面。 第三表面具有从内周向外周变低的倾斜面。