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    • 1. 发明专利
    • EYEBALL OBSERVATION DEVICE
    • JP2006223516A
    • 2006-08-31
    • JP2005040162
    • 2005-02-17
    • MATSUSHITA ELECTRIC IND CO LTD
    • SUZUKI TAKUYA
    • A61B3/11
    • PROBLEM TO BE SOLVED: To fix a pupil diameter without taking time in the case of successively irradiating an eyeball with the light of mutually different light emission wavelength bands. SOLUTION: An eyeball observation device comprises: a plurality of light sources 106 having the plurality of light sources of the mutually different light emission wavelength bands to the eyeball; a light source switching means 105 for successively switching the light sources by controlling the ON and OFF of the light sources; a light source current control means 104 for controlling the current of the respective light sources; and a pupil diameter adjusting means 101 for outputting the current value of the light source to the light source current control means 104 so as to fix the pupil diameter when the light source switching means 105 switches the light source which is ON. The pupil diameter adjusting means 101 can fix the pupil diameter even in the case that the light source switching means 105 successively switches the light sources by selecting and outputting the current of the respective light sources so as to fix illuminance. COPYRIGHT: (C)2006,JPO&NCIPI
    • 2. 发明专利
    • Damper driving apparatus
    • 阻尼器驱动装置
    • JPS59167314A
    • 1984-09-20
    • JP4022183
    • 1983-03-10
    • Matsushita Electric Ind Co Ltd
    • MAKISAWA YOSHIAKISUZUKI TAKUYA
    • B60H1/00F24F13/15
    • B60H1/00857
    • PURPOSE:To obtain a small-sized and lightweight damper driving apparatus by selectively connecting a driving source onto a plurality of output shafts through a reduction gear and allowing the revolution of an output shaft to be locked at a fixed position, in the damper driving apparatus for a car air conditioner. CONSTITUTION:A revolution shaft 23 is revolved by a driving motor 16 through the first worm 17 and a worm wheel 18. A switching lever 39 is engaged with the outer-peripheral notched part 38a of an external sun gear 27 by the conduction of a solenoid 40, and the revolution of the third worm 20 is suppressed. The revolution of the shaft 23 turns a mix damper 1 at a necessary position through an intenal sun gear 24, planetary gears 28 and 29, second worm gear 19, second worm wheel 21, lever 44, link 49, and a lever 50. When the conduction of solenoid 40 is suspended, the lever 39 is engaged with the notched part 38b of the worm 19, and the revolution is suppressed, and mode dampers 3-5 are turned at the respective positions by the shaft 23. Therefore, operation is performed by only one driving source, and the apparatus can be made lightweight and small- sized.
    • 目的:为了获得小型轻量级的阻尼器驱动装置,通过选择性地将驱动源通过减速齿轮连接到多个输出轴上,并允许输出轴的转动锁定在固定位置,在阻尼器驱动装置 用于汽车空调。 构成:旋转轴23通过第一蜗杆17和蜗轮18由驱动电机16旋转。切换杆39通过螺线管的导通与外部太阳齿轮27的外周切口部38a接合 40,并且第三蜗杆20的旋转被抑制。 轴23的转动通过内部太阳齿轮24,行星齿轮28和29,第二蜗轮19,第二蜗轮21,杆44,连杆49和杠杆50将混合风门1转动到必要位置。当 螺线管40的传导悬挂,杆39与蜗杆19的切口部分38b接合,并且旋转被抑制,并且模式阻尼器3-5在轴23的各个位置处转动。因此,操作是 仅由一个驱动源执行,并且该设备可以制造得轻巧且小型化。
    • 6. 发明专利
    • Light source device
    • 光源设备
    • JP2007292577A
    • 2007-11-08
    • JP2006120254
    • 2006-04-25
    • Matsushita Electric Ind Co Ltd松下電器産業株式会社
    • SUZUKI TAKUYA
    • G01J1/00G01N21/84
    • PROBLEM TO BE SOLVED: To secure luminous energy allowing precise detection by an optical sensor, without lowering substantially the luminous energy.
      SOLUTION: The light source device includes a light source 101 for emitting visible light, a convergence part 102 for converging the light from the light source 101 to a light uniformizing part 103, the light uniformizing part 103 for uniformizing the light, a light acquisition part 104 for taking out one part of the light total-reflected inside the light uniformizing part 103, the optical sensor 105 for receiving the light taken out by the light acquisition part 104, and a light source luminous energy controller 106 for regulating the luminous energy of the light source 101 in response to an output from the optical sensor 105.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了确保能够通过光学传感器进行精确检测的光能,而不会显着降低发光能量。 解决方案:光源装置包括用于发射可见光的光源101,用于将来自光源101的光会聚到光均化部103的会聚部102,用于使光均匀化的光均匀化部103, 光采集部104,用于取出光均匀化部103内的全反射光的一部分,用于接收由光采集部104取出的光的光传感器105;以及光源用光调制器106, 响应于光学传感器105的输出,光源101的光能量。(C)2008年,JPO和INPIT
    • 7. 发明专利
    • Method for detecting foreign matter and apparatus for observing eyeball
    • 检测外来物质的方法和观察眼睛的装置
    • JP2006333902A
    • 2006-12-14
    • JP2005158726
    • 2005-05-31
    • Matsushita Electric Ind Co Ltd松下電器産業株式会社
    • SUZUKI TAKUYA
    • A61B3/14
    • PROBLEM TO BE SOLVED: To solve a problem that the eyelashes located in front of the eyeball are difficult to detect because of blurring while observing the eyeball. SOLUTION: An apparatus is provided which comprises an imaging means 101 for imaging the eyeball to acquire a first image 102 and a second image 103, a focusing means 104 for moving the imaging means 101 in the focal axis direction in order to focus the imaging means on the iris region, a foreign matter detection means 105 for detecting a foreign matter by calculating difference data which show the differences in relative positions of the iris and pupil regions with respect to the eyelashes located in front of the eyeball between the first and second images 102 and 103, and an observation means 112 for carrying out a desired observation of the first and second images when the foreign matter detection means 105 does not detect a foreign matter. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了解决在观察眼球时由于模糊而难以检测位于眼球前方的睫毛的问题。 解决方案:提供了一种装置,其包括用于对眼球成像以获取第一图像102和第二图像103的成像装置101,用于在焦点轴线方向上移动成像装置101以聚焦的聚焦装置104 虹膜区域上的成像装置,用于通过计算差异数据来检测异物的异物检测装置105,所述差异数据显示虹膜和瞳孔区域相对于位于眼球前方的睫毛之间的差异在第一 和第二图像102和103,以及观察装置112,用于当异物检测装置105不检测异物时,执行对第一和第二图像的所需观察。 版权所有(C)2007,JPO&INPIT
    • 8. 发明专利
    • DEVELOPING DEVICE
    • JPS57200066A
    • 1982-12-08
    • JP8512581
    • 1981-06-02
    • MATSUSHITA ELECTRIC IND CO LTD
    • SUZUKI TAKUYAOOTSUKI HISANORIINOUE TOSHITOKI
    • G03G15/09
    • PURPOSE:To make the developing motion of high reliability by a magnetic brush possible by providing an agitating, mixing amd conveying roll having a toner conveying part thereby reducing toner blocking phenomena and providing stable performance for agitating, mixing and replenishing the toner. CONSTITUTION:A toner conveying part 15 is secured on the outside circumferential part of an agitating, mixing and conveying roll 13. The part 15 has recesses with respect to a sleeve 10, retain a tonr 18 by each small amt. in said recesses and convey and move the toner in an arror E direction. When the roll 13 turns to the direction E, the toner 18 on the part 15 is attracted successively onto the sleeve 10 at the point F, whereby the toner is conveyed, and replenished. Thereafter, in a devloping area H, the developing motion is effected by a magnetic toner brush. The toner stripped after this is agitated and mixed by the roll 13 in the toner 18 layer, and is again conveyed and replenished onto the sleeve. Therefore, no toner blocking phenomena occur. The image plane of high quality is obtained.
    • 9. 发明专利
    • ELECTROSTATIC RECORDING BODY
    • JPS57100432A
    • 1982-06-22
    • JP17737480
    • 1980-12-16
    • MATSUSHITA ELECTRIC IND CO LTD
    • OOTSUKI HISANORISUZUKI TAKUYA
    • G03G5/02G03G5/10
    • PURPOSE:To obtain recording having particularly superior moisture resistance characteristics, high density and high resolving power, and make a low resistance layer stickable and formable on a drum-like substrate as well by sticking a slight amt. of a metal oxide semiconductor to form the low resistance layer. CONSTITUTION:A low resistance layer 2 of 10 -10 OMEGA surface specific resistance values and 3,000Angstrom thickness is stuck and formed on the outside circumferential surface of a substrate 1 of a drum shape consisting of ''Pyrex '' glass by sputtering using copper of >=99.9% purity in a vacuum chamber of 10 Torr oxygen pressure. A linear satd. polyester resin is coated on the layer 2 to form a dielectric layer 3 of 3-4mum thickness, whereby an electrostatic recording body 4 is obtd. The metal for forming the layer 2 may be Ni, Co, Fe, Cr, Zn, Al, Ti, Cd... etc., and may be formed by vacuum deposition or ion plating. The superior moisture resistance characteristics are probably contributed by the electron conductivity of the metal oxide semiconductor.