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    • 5. 发明授权
    • Camera capable of changing photographic screen size and method
    • 相机能够改变摄影画面尺寸和方法
    • US5708882A
    • 1998-01-13
    • US779119
    • 1997-01-06
    • Norikazu YokonumaKazuyuki KazamiHideo HibinoYouichi Yamazaki
    • Norikazu YokonumaKazuyuki KazamiHideo HibinoYouichi Yamazaki
    • G03B13/12G03B17/02G03B17/20G03B17/28G03B7/26G03B13/10
    • G03B17/20
    • A camera includes a display that displays in the viewfinder a photographic screen size even when the low consumption power supply mode is in use. The camera includes a power source, a controller, a film winding motor, a panorama frame driving motor, a CPU, an EEPROM, a viewfinder LCD and a timer. When the power switch is turned on, the CPU causes the panorama frame to move and changes the transmissivity of the viewfinder LCD to match the photographic screen size selected the largest number of times. When a new photographic screen size is selected using the photographic screen size switch, the number of times the photographic screen size has been selected is calculated and stored in the EEPROM. In addition, the time that has elapsed after the power switch has been turned on is measured by the timer, and when the time exceeds a predetermined value, the camera moves into the low consumption power supply mode with power still being supplied to the viewfinder LCD.
    • 相机包括即使在低功耗电源模式被使用时也在取景器中显示摄影画面尺寸的显示器。 相机包括电源,控制器,胶片卷绕电机,全景框驱动电机,CPU,EEPROM,取景器LCD和定时器。 当电源开关打开时,CPU会使全景图像移动,并更改取景器LCD的透射率,使其与选择的最大次数的拍摄尺寸相匹配。 当使用摄影画面尺寸开关选择新的摄影画面尺寸时,计算出拍摄画面尺寸已被选择的次数并存储在EEPROM中。 此外,通过定时器测量电源开关已经接通之后的时间,并且当时间超过预定值时,相机移动到低功耗电源模式,电源仍然被提供给取景器LCD 。
    • 6. 发明申请
    • LAMINATED CERAMIC CAPACITOR
    • 层压陶瓷电容器
    • US20100188797A1
    • 2010-07-29
    • US12670855
    • 2007-11-29
    • Youichi YamazakiHideyuki OsuzuYoshihiro FujiokaDaisuke Fukuda
    • Youichi YamazakiHideyuki OsuzuYoshihiro FujiokaDaisuke Fukuda
    • H01G4/12
    • H01G4/1227H01G4/30
    • A crystal constituting a dielectric porcelain, comprised of a first crystal group composed of crystal grains of 0.2 atomic % or less calcium concentration and a second crystal group composed of crystal grains of 0.4 atomic % or more calcium concentration, wherein the ratio of concentration of each of magnesium and a first rare earth element contained in a center portion to that contained in a surface layer portion of crystal grains constituting the first crystal group is greater than the corresponding concentration ratio of crystal grains constituting the second crystal group, and wherein on a polished surface resulting from polishing of the surface of the dielectric porcelain, when the area of crystal grains of the first crystal group is referred to as a and the area of crystal grains of the second crystal group referred to as b, the ratio of b/(a+b) is in the range of 0.5 to 0.8.
    • 构成电介质瓷的晶体,由由0.2质量%以下钙浓度的晶粒构成的第一晶体组和由钙浓度为0.4原子%以上的晶粒构成的第二晶体组成,其中, 的镁和包含在构成第一晶体组的晶粒的表层部分中的部分的中心部分的第一稀土元素大于构成第二晶体基团的晶粒的相应浓度比,并且其中在抛光 当第一晶体组的晶粒的面积被称为a,第二晶体组织的晶粒面积被称为b时,由电介质陶瓷的表面的抛光产生的表面,b /( a + b)在0.5〜0.8的范围内。
    • 8. 发明授权
    • Chip-type electronic component
    • 片式电子元器件
    • US07075775B2
    • 2006-07-11
    • US11140512
    • 2005-05-25
    • Youichi Yamazaki
    • Youichi Yamazaki
    • H01G4/228
    • H01G4/30H01C1/02H01C7/18H01G2/10
    • In a chip-type electronic component of the present invention, at least one surface of a ceramic body is a convexly curved surface. Specifically, at least one surface in a thickness direction of the ceramic body may be convexly curved, and the side surface of the ceramic body may be concavely curved. Alternatively, only one surface may be a convexly curved surface. This chip-type electronic component has a high visibility and a high mechanical strength, though it is small. Moreover, in a chip-type electronic component comprising a ceramic body that is formed by alternately laminating insulating layers and conductor layers, and a pair of external electrodes, the thickness in a laminate direction at the central part between external electrodes of the ceramic body is made greater than the thickness of the end surface. This prevents breakage of the external electrodes and also enlarges the ceramic body.
    • 在本发明的芯片型电子部件中,陶瓷体的至少一个面是凸曲面。 具体而言,陶瓷体的厚度方向的至少一个面可以是凸曲面的,陶瓷体的侧面可以是凹曲的。 或者,只有一个表面可以是凸曲面。 该芯片型电子部件虽然体积小,但可视性高,机械强度高。 此外,在包含通过交替层叠绝缘层和导体层而形成的陶瓷体和一对外部电极的芯片型电子部件中,陶瓷体的外部电极之间的中央部的层叠方向的厚度为 制成大于端面厚度。 这防止了外部电极的破损,并且也扩大了陶瓷体。
    • 10. 发明授权
    • Film feeding device of a camera
    • 相机胶卷送料装置
    • US5655162A
    • 1997-08-05
    • US702051
    • 1996-08-23
    • Toshiyuki NakamuraYouichi Yamazaki
    • Toshiyuki NakamuraYouichi Yamazaki
    • G03B1/60G03B17/00G03B17/18G03B17/24G03B17/36G03B17/42G03B1/66G03B7/00
    • G03B17/425G03B17/18G03B17/36
    • A film feeding device of a camera includes a film feeding mechanism which has an initial winding mode to feed film mounted in the camera and wind a first frame to a shooting position, a first frame winding mode to wind the film by one frame subsequent to shooting, a manual rewinding mode to rewind the film into a film cartridge when a rewinding operation member is operated, and an automatic rewinding mode to rewind the film into the cartridge when the film is rewound through the final edge during rewinding of the film by one frame. A frame number counting mechanism counts a number of shootable frames remaining each time one frame is wound, and counts a number of frames remaining to be rewound each time one frame is rewound. An initial value setting mechanism sets a total number of frames of film as an initial value of the number of shootable frames remaining for the frame number counting mechanism subsequent to initial winding, and sets concurrently the number of frames already shot as the initial value of a number of frames remaining to be rewound for the frame number counting mechanism prior to rewinding. A display displays the frame number counted by the frame number counting mechanism. The initial value setting mechanism computes the number of frames already shot using different methods for the manual rewinding mode and for the automatic rewinding mode.
    • 照相机的胶片馈送装置包括胶片馈送机构,该胶片馈送机构具有初始卷绕模式,用于将安装在照相机中的胶片送入拍摄位置;将第一帧卷绕到拍摄位置;第一帧卷绕模式,在拍摄之后将胶片卷起一帧; 手动倒带模式,当操作倒带操作构件时,将胶卷倒回胶片暗盒中,以及自动重放模式,以便当胶片在胶片倒片期间重新卷绕一帧时将胶片重新卷绕到最终边缘时将胶卷倒回盒中 。 帧数计数机构对每次缠绕一帧时的可拍摄帧的数量进行计数,并且每次重新舍弃一帧时,对剩余的帧数进行计数。 初始值设定机构将初始卷绕之后的帧数计数机构剩余的可拍摄帧的数量的初始值设定为胶卷的总数,并且同时设置已经拍摄的帧数作为初始值 在倒带之前的帧数计数机构剩余的剩余帧数。 显示器显示由帧号计数机构计数的帧号。 初始值设置机构使用手动倒带模式和自动倒带模式的不同方法计算已经拍摄的帧数。