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    • 1. 发明授权
    • Linear guide device
    • 直线导轨装置
    • US07578620B2
    • 2009-08-25
    • US10557606
    • 2004-10-21
    • Soichiro KatoNobuhide KurachiMasaru AkiyamaJun Matsumoto
    • Soichiro KatoNobuhide KurachiMasaru AkiyamaJun Matsumoto
    • F16C29/06
    • F16C29/065F16C29/06F16C33/3706
    • A linear guide device has a retaining piece (15) between two adjacent rollers (9). The retaining piece (15) has a retaining piece body (16) having left side-face section and a right side-face section that are parallel to the end face sections of the rollers (9), a first arm section (19) extending from the left side-face section of the retaining piece body (16) toward the end face sections of the two adjacent rollers (9) and fitting in a first guide groove (22) formed in one wall surface section of a circulation path (21), and a second arm section (20) provided on the right side-face section of the retaining piece body (16) so as to be parallel to the first arm section (19) and fitting in a second guide groove (23) formed in the other wall surface section of the circulation path (21). The heights of the retaining piece body (16) and the arm sections (19, 20) satisfy the conditional expression of (H1−H2)/2
    • 线性引导装置在两个相邻的辊(9)之间具有保持件(15)。 保持片(15)具有保持件本体(16),其具有平行于辊(9)的端面部分的左侧面部分和右侧面部分,第一臂部分(19)延伸 从保持片本体(16)的左侧面部向两个相邻的辊(9)的端面部配合,嵌合在形成在循环路径(21)的一个壁面部的第一导向槽(22) )和第二臂部(20),其设置在所述保持片体(16)的右侧面部上,以与所述第一臂部(19)平行,并配合在形成的第二引导槽(23)中 在循环路径(21)的另一个壁表面部分中。 保持件本体(16)和臂部(19,20)的高度满足(H1-H2)/ 2 <(Dw-W)/ 2的条件表达式,其中H1是保持件体 (16),在与辊的轴向垂直的方向上; H2在垂直于辊的轴向的方向上H2臂部分(19,20)的高度; W在垂直于辊的轴向方向上的导槽(22,23)的宽度; Dw是辊(9)的直径。
    • 2. 发明申请
    • Linear guide device
    • 直线导轨装置
    • US20070071371A1
    • 2007-03-29
    • US10557606
    • 2004-10-21
    • Soichiro KatoNobuhide KurachiMasaru AkiyamaJun Matsumoto
    • Soichiro KatoNobuhide KurachiMasaru AkiyamaJun Matsumoto
    • F16C29/06
    • F16C29/065F16C29/06F16C33/3706
    • A linear guide device has a retaining piece (15) between two adjacent rollers (9). The retaining piece (15) has a retaining piece body (16) having left side-face section and a right side-face section that are parallel to the end face sections of the rollers (9), a first arm section (19) extending from the left side-face section of the retaining piece body (16) toward the end face sections of the two adjacent rollers (9) and fitting in a first guide groove (22) formed in one wall surface section of a circulation path (21), and a second arm section (20) provided on the right side-face section of the retaining piece body (16) so as to be parallel to the first arm section (19) and fitting in a second guide groove (23) formed in the other wall surface section of the circulation path (21). The heights of the retaining piece body (16) and the arm sections (19, 20) satisfy the conditional expression of (H1−H2)/2
    • 线性引导装置在两个相邻的辊(9)之间具有保持件(15)。 保持片(15)具有保持件本体(16),其具有平行于辊(9)的端面部分的左侧面部分和右侧面部分,第一臂部分(19)延伸 从保持片本体(16)的左侧面部向两个相邻的辊(9)的端面部配合,嵌合在形成在循环路径(21)的一个壁面部的第一导向槽(22) )和第二臂部(20),其设置在所述保持片体(16)的右侧面部上,以与所述第一臂部(19)平行,并配合在形成的第二引导槽(23)中 在循环路径(21)的另一个壁表面部分中。 保持件本体(16)和臂部(19,20)的高度满足(H 1 -H 2)/ 2 <(Dw-W)/ 2的条件表达式,其中H 1是 保持件本体(16)在与辊的轴向垂直的方向上; H2在垂直于辊的轴向的方向上H2臂部分(19,20)的高度; W在垂直于辊的轴向方向上的导槽(22,23)的宽度; Dw是辊(9)的直径。
    • 6. 发明授权
    • Linear guide
    • 直线导轨
    • US07632017B2
    • 2009-12-15
    • US11080679
    • 2005-03-16
    • Masaru AkiyamaNobuhide KurachiJun MatsumotoToshio Yoshida
    • Masaru AkiyamaNobuhide KurachiJun MatsumotoToshio Yoshida
    • F16C29/08
    • F16C29/065
    • A slider has a slider main body which has a circulation sleeve whose inner portion forms a rolling element passage by being inserted into a hole penetrating in an axial direction, an end cap which has an outer peripheral track face of a direction changing passage in a curved shape for communicating a load track between two rolling element rolling grooves and the rolling element passage, and is fixed to an axial end portion of the slider main body, and an inner peripheral track member which has an inner peripheral track face of the direction changing passage, and is fitted to the end cap. An end portion of the circulation sleeve is provided with a plurality of positioning projected portions, and the end cap and the inner peripheral track member are provided with recess portions fitted with the positioning projected portions.
    • 滑块具有滑块主体,该滑块主体具有循环套筒,其内部部分通过插入沿轴向穿透的孔而形成滚动体通道,端盖具有方向改变通道的外周轨迹面 形状,用于在两个滚动元件滚动槽和滚动元件通道之间连通载荷轨道,并且固定到滑块主体的轴向端部;以及内周轨道构件,其具有方向改变通道的内周轨迹面 ,并安装在端盖上。 循环套管的端部设置有多个定位突出部分,并且端盖和内周轨道部件设置有与定位突出部分配合的凹部。
    • 7. 发明授权
    • Method and apparatus for determining acceptance/rejection of fine diameter wire bonding
    • 用于确定细直径引线接合的接受/排除的方法和装置
    • US09199337B2
    • 2015-12-01
    • US13635026
    • 2011-03-08
    • Jun Matsumoto
    • Jun Matsumoto
    • G06F19/00B23K31/12H01L21/66H01L23/00
    • B23K31/125B23K2101/40H01L22/12H01L24/45H01L24/48H01L24/78H01L24/85H01L2224/45015H01L2224/45144H01L2224/48091H01L2224/48463H01L2224/48472H01L2224/78263H01L2224/85205H01L2224/859H01L2924/12042H01L2924/00014H01L2924/00012H01L2924/00
    • Disclosed are a method and apparatus for determining acceptance/rejection of fine diameter wire bonding of semiconductor devices, LED devices, and the like, which has been impossible with conventional methods, such as the method by image processing, with high accuracy and with no contact. The apparatus includes a heating laser device 1 for spot-heating the bonding portion of a fine diameter wire; a two-wavelength infrared radiation thermometer 2 for measuring temperature at high speed on the basis of a minute amount of infrared rays radiated from the heated portion of the fine diameter wire with correction of the emissivity; and a correction computing and determining means 4 for correcting the result of measurement with the two-wavelength infrared radiation thermometer 2 to a temperature change with the reference heating power, and then determining acceptance/rejection of the bonding by comparing the corrected temperature change or a numerical value correlated to a bonding area obtained from that temperature change, with a temperature change indicated by an acceptable product as a comparison criterion that has been corrected to the reference heating power or a numerical value correlated to a bonding area obtained from that temperature change.
    • 公开了一种用于确定半导体器件,LED器件等的细小直径引线接合的接受/拒绝的方法和装置,这已经不可能用常规方法,例如图像处理的方法,具有高精度和无接触 。 该装置包括用于对细径线的接合部进行点加热的加热用激光装置1, 基于从细径线的加热部分辐射的微量的红外线来测量高速度的温度的双波长红外辐射温度计2,校正发射率; 以及校正计算和确定装置4,用于使用双波长红外辐射温度计2将测量结果校正为具有参考加热功率的温度变化,然后通过比较校正的温度变化或确定温度变化来确定接合/拒绝 与由该温度变化获得的接合面积相关的数值,具有由可接受的产品表示的温度变化作为对已经被校正为参考加热功率的比较标准的数值或与由该温度变化获得的接合面积相关的数值。
    • 8. 发明授权
    • Decoding apparatus and method, encoding apparatus and method, and program
    • 解码装置和方法,编码装置和方法以及程序
    • US08972249B2
    • 2015-03-03
    • US13634658
    • 2011-03-15
    • Shiro SuzukiYuuki MatsumuraJun MatsumotoYuuji MaedaYasuhiro Toguri
    • Shiro SuzukiYuuki MatsumuraJun MatsumotoYuuji MaedaYasuhiro Toguri
    • G10L19/02G10L21/038
    • G10L21/038G10L19/0212
    • The present invention relates to a decoding apparatus, a decoding method, an encoding apparatus, an encoding method, and programs that can shorten the delay time caused by the band extension at the time of decoding, and restrain increases in resources on the decoding side.A higher frequency component generating unit (73) generates a pseudo higher frequency spectrum by using a lower frequency spectrum (SP-L) and a higher frequency envelope (ENV-H). A phase randomizing unit (74) randomizes the phase of the pseudo higher frequency spectrum, based on a random flag (RND). An inverse MDCT unit (75) denormalizes the lower frequency spectrum (SP-L) by using a lower frequency envelope (ENV-L), and combines the pseudo higher frequency spectrum supplied from the phase randomizing unit (74) with the denormalized lower frequency spectrum (SP-L). The combination result is used as the spectrum of the entire band. The present invention can be applied to a decoding apparatus that performs band extension decoding, for example.
    • 解码装置,解码方法,编码装置,编码方法和程序技术领域本发明涉及可以缩短在解码时由频带扩展引起的延迟时间的解码装置,解码方法,编码装置,编码方法和程序,并且抑制解码侧的资源增加。 较高频率分量产生单元(73)通过使用较低频谱(SP-L)和较高频率包络(ENV-H)产生伪较高频谱。 相位随机化单元(74)基于随机标记(RND)使伪较高频谱的相位随机化。 逆MDCT单元(75)通过使用较低频率包络(ENV-L)对较低频谱(SP-L)进行非归一化,并且将从相位随机化单元(74)提供的伪高频频谱与非归一化较低频率 光谱(SP-L)。 组合结果用作整个频带的频谱。 本发明可以应用于例如进行频带扩展解码的解码装置。
    • 9. 发明授权
    • Image forming apparatus
    • 图像形成装置
    • US08831453B2
    • 2014-09-09
    • US13473897
    • 2012-05-17
    • Jun Matsumoto
    • Jun Matsumoto
    • G03G15/16G03G15/01
    • G03G15/0189G03G15/161G03G2215/0177G03G2215/1657
    • The image forming apparatus includes an image bearing member that bears a toner image, an image forming unit, an intermediate transfer unit, a primary transfer member, a cleaning member movable between a contact position and a non-contact position, a voltage application unit, a control unit, a current detection unit, wherein the control unit moves the cleaning member at the non-contact position, determines a transfer voltage based on a current value detected by said current detection unit when a predetermined voltage is applied from said voltage application unit to said primary transfer member before an image formation and in a condition where said cleaning member is at the non-contact position, and applies the transfer voltage to the primary transfer member in the image formation.
    • 图像形成装置包括承载调色剂图像的图像承载部件,图像形成单元,中间转印单元,一次转印部件,可在接触位置和非接触位置之间移动的清洁部件,电压施加单元, 控制单元,电流检测单元,其中控制单元在非接触位置移动清洁构件,当从所述电压施加单元施加预定电压时,基于由所述电流检测单元检测到的电流值来确定转印电压 在图像形成之前并且在所述清洁部件处于非接触位置的状态下将所述一次转印部件施加到所述一次转印部件,并且在图像形成中将转印电压施加到一次转印部件。