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    • 1. 发明专利
    • Photoirradiation apparatus
    • 照相装置
    • JP2008123703A
    • 2008-05-29
    • JP2006302828
    • 2006-11-08
    • Matsushita Electric Works Ltd松下電工株式会社
    • IMAI JUNJIINOUE HIROSHIMAKINAGA HITOSHI
    • F21V29/00A61N5/06F21L4/00F21L4/02F21Y101/02H01L33/00
    • PROBLEM TO BE SOLVED: To provide a photoirradiation apparatus that can be used easily by a user by compatibly satisfying an increase in luminance and radiation of heat generated from a light-emitting element and miniaturizing the apparatus.
      SOLUTION: A cylindrical housing 10 functions as a gripping section where an outer-periphery surface is gripped partially by the user. An irradiation section is stored at the side of a front end 11 in the housing 10 and is composed of a first circuit board 20 where a plurality of light-emitting elements are packaged, and rays of light are applied from the front end 11 of the housing 10. A heat conduction section is attached to the first circuit board 20 and is extended in a sheet shape to the rear end side of the housing 10 instead of the gripping section in the housing 10, thus transmitting heat generated at the irradiation section. A heat radiation section is attached to the extension end side of the heat conduction section in the housing 10, thus radiating heat at the heat conduction section.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种光照射装置,其可以通过兼容地满足从发光元件产生的热的亮度和辐射的增加并且使装置的小型化而容易地由用户使用。 解决方案:圆柱形壳体10用作抓握部分,其中外周表面部分地被使用者抓住。 照射部存储在壳体10的前端部11的一侧,由包装了多个发光元件的第一电路基板20和从其前端11施加的光线 导热部分附接到第一电路板20,并且以片状延伸到壳体10的后端侧,而不是壳体10中的夹持部分,从而传递在照射部分处产生的热量。 在壳体10的导热部的延伸端侧附着有放热部,由此在导热部散热。 版权所有(C)2008,JPO&INPIT
    • 2. 发明专利
    • Fingerprint image input device
    • 指纹图像输入装置
    • JP2008059200A
    • 2008-03-13
    • JP2006234392
    • 2006-08-30
    • Matsushita Electric Works Ltd松下電工株式会社
    • IMAI JUNJIKOBAYASHI MITSURU
    • G06T1/00A61B5/117
    • G06K9/2036G06K9/0004H05K1/0284
    • PROBLEM TO BE SOLVED: To increase flexibility in arranging a light-emitting diode chip and to easily irradiate an appropriate position of a fingertip with light. SOLUTION: A board with an LED chip 3 mounted thereon is a three-dimensional circuit board 5. As compared to flat boards used in conventional cases, the location of the LED chip 3 is not restricted by the shape or dimension of the board and flexibility in arranging the LED chip 3 are increased. Also, it becomes easy to tilt the optical axis of the LED chip 3 relative to the optical axis of the light-receiving surface of a solid imaging element 1 and to easily irradiate an appropriate position of a fingertip with light. Further, the use of the three-dimensional circuit board 5 makes it possible to set the relative positions of the solid imaging element 1, a lens 2 and the LED chip 3 with high precision, consequently, the uniform light can be applied to the fingertip F and the accuracy in input of fingerprint image can be increased. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了增加布置发光二极管芯片的灵活性并且容易地用光照射指尖的适当位置。

      解决方案:安装有LED芯片3的电路板是三维电路板5.与常规情况下使用的平板相比,LED芯片3的位置不受其中的形状或尺寸的限制 板和布置LED芯片3的灵活性增加。 此外,容易使LED芯片3的光轴相对于固体成像元件1的受光面的光轴倾斜,并且容易地用光照射指尖的适当位置。 此外,通过使用三维电路基板5,能够高精度地设定固体摄像元件1,透镜2和LED芯片3的相对位置,能够将均匀的光线施加到指尖 F,可以提高指纹图像的输入精度。 版权所有(C)2008,JPO&INPIT

    • 3. 发明专利
    • Electrostatic atomization device
    • 静电成型装置
    • JP2007275796A
    • 2007-10-25
    • JP2006106734
    • 2006-04-07
    • Matsushita Electric Works Ltd松下電工株式会社
    • IMAI JUNJIYOSHIOKA KOICHIKOBAYASHI KENTARO
    • B05B5/057
    • PROBLEM TO BE SOLVED: To provide an electrostatic atomization device capable of surely holding a high voltage impressing plate in a positioned state, surely bringing the high voltage impressing plate into contact with a discharge electrode, and preventing the leakage of the heat of a cooling part of a Peltier module to the outside, thereby improving the cooling efficiency of the Peltier module.
      SOLUTION: The Peltier module 1 is housed in a bottomed cylindrical housing cylinder body 18 having an opening one side, the cooling part 2 of the Peltier module is brought into contact with the inner surface of the bottom part 18a of the housing cylinder body, the discharge electrode 4 is projected from an electrode inserting hole 22 formed on the bottom of the housing cylindrical body to arrange a discharge part 4a of the same in the outside, the high voltage impressing plate 14 on which a holding hole 14a is formed is arranged on the bottom part of the housing cylindrical body, the projected base part of the discharge electrode is held by the holding hole of the high voltage impressing plate to connect the high voltage impressing plate to electrically connected to the discharge electrode, a part of the high voltage impressing plate is supported by a support part 31 projected from the housing cylinder body and a heat insulating gap 32 is formed between the high voltage impressing plate and the bottom of the housing cylindrical body.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了提供一种能够可靠地将高压施加板保持在定位状态的静电雾化装置,确保使高压施加板与放电电极接触,并且防止热泄漏 Peltier模块的冷却部分到外部,从而提高了珀耳帖模块的冷却效率。 解决方案:珀耳帖模块1容纳在具有开口一侧的有底圆柱形壳体筒体18中,珀尔帖模块的冷却部分2与壳体筒体的底部18a的内表面接触 放电电极4从形成在壳体筒体的底部的电极插入孔22突出,以将外部的排出部4a布置在其上形成有保持孔14a的高压施加板14 布置在壳体圆筒体的底部,放电电极的突出的基部由高压施加板的保持孔保持,以将高压施加板连接到电连接到放电电极,一部分 高压施加板由从壳体筒体突出的支撑部31支撑,并且在高压施加p之间形成隔热间隙32 晚期和底部的圆柱体的外壳。 版权所有(C)2008,JPO&INPIT
    • 4. 发明专利
    • Method of manufacturing thermoelectric material
    • 制造热电材料的方法
    • JP2006269870A
    • 2006-10-05
    • JP2005087772
    • 2005-03-25
    • Matsushita Electric Works Ltd松下電工株式会社
    • WATANABE TOMOHARUYOSHIOKA KOICHIIMAI JUNJI
    • H01L35/34B22F3/14B22F9/08C22C1/04H01L35/16H02N11/00
    • PROBLEM TO BE SOLVED: To provide a manufacturing method employing a liquid quenching method which can acquire an N-type Bi
      2 Te
      3 -based thermoelectric material having an excellent performance index.
      SOLUTION: The method of manufacturing a thermoelectric material is provided with a thin-piece powder forming process of supplying a molten metal containing Bi and Te onto a rotating roll to form the metal into a thin-piece powder by the liquid quenching method; a preparatory molding process of pressing a dice in which the thin-piece powder is filled so that a surface (c) may be aligned substantially in parallel in a height direction in at least the center of a widthwise direction, in the axial direction same as the height direction of the dice at a temperature lower than a baking temperature of the thermoelectric material, to preparatorily mold the powder; and a hotpress process for applying hotpress to the preparatorily molded thin-piece powder, while pressing the powder in the axial direction same as the pressing direction in the preparatory molding process.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种采用液体淬火方法的制造方法,其可以获得具有优异性能的N型Bi 2 SB <3> 绩效指标。 解决方案:制造热电材料的方法设置有将含有Bi和Te的熔融金属供给到旋转辊上的薄片粉末形成方法,以通过液体淬火方法将金属形成为薄片状粉末 ; 压入其中填充有薄片粉末的骰子的预备模制过程,使得表面(c)可以在至少沿宽度方向的中心的高度方向上基本上平行排列,在轴向上与 在低于热电材料的烘烤温度的温度下,将模具的高度方向预先设定成粉末; 以及在预备模制过程中将压力施加到预备成型的薄片粉末的同时按照与按压方向相同的轴向的粉末的加热方法。 版权所有(C)2007,JPO&INPIT
    • 5. 发明专利
    • Method for producing fine crystal grain martensitic stainless steel
    • 生产精细晶粒马氏体不锈钢的方法
    • JP2005206865A
    • 2005-08-04
    • JP2004013533
    • 2004-01-21
    • Matsushita Electric Works Ltd松下電工株式会社
    • IMAI JUNJI
    • C22C1/02C21D8/00C21D9/38C22C38/00C22C38/22
    • PROBLEM TO BE SOLVED: To provide a method for producing a fine crystal grain martensitic stainless steel suitable to a cutlery such as electric shaver, hair clippers, a mechanical parts such as gear, and a sliding member.
      SOLUTION: This producing method includes; a step for obtaining a cast block blank by ultra-rapidly cooling and solidifying molten metal of SUS420J2 (Japanese Industrial Standard) as the basic composition at ≥10°C/sec cooling rate; a step for obtaining a ferritic steel having ≤1μm average crystal grain diameter by applying a cold-rolling to this cast block blank; and a step for applying a quenching treatment after working the obtained ferritic steel into a prescribed shape.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种适用于电动剃须刀,剪发器,机械部件如齿轮和滑动部件的餐具的细晶粒马氏体不锈钢的制造方法。 解决方案:该制造方法包括: 以≥10℃/秒的冷却速度超临界冷却固化SUS420J2(日本工业标准)的熔融金属作为基本组成的步骤,获得铸块坯料; 通过对该铸块坯料进行冷轧获得具有≤1μm平均晶粒直径的铁素体钢的步骤; 以及在将所得到的铁素体钢加工成规定形状之后进行淬火处理的工序。 版权所有(C)2005,JPO&NCIPI
    • 6. 发明专利
    • Process for producing grain-refined martensitic stainless steel and cutting tool using the stainless steel
    • 使用不锈钢生产精制马氏体不锈钢和切割工具的方法
    • JP2003313612A
    • 2003-11-06
    • JP2002120014
    • 2002-04-23
    • Matsushita Electric Works Ltd松下電工株式会社
    • IMAI JUNJIHAMADA TADASHIFUJIMOTO SHINJI
    • B26B19/00B22D11/00B22D11/06B22D11/22C21D8/00C21D9/18C22C38/00C22C38/22C22C38/28
    • PROBLEM TO BE SOLVED: To provide a process for producing a grain-refined martensitic stainless steel which has high strength and high corrosion resistance and is suitably used for manufacturing electric razors, hair clippers, etc., requiring sharp cutting edges, and a cutting tool using this stainless steel. SOLUTION: A base material based on a composition of SUS420J2 is prepared, subjected to at least one process chosen from a high-density dislocation generation process and rapid solidification process, and further annealed to obtain a ferrite steel with fine metallic structure. Next, the ferrite steel is cold rolled, annealed, subjected to plastic working to yield a cutting tool of a predetermined shape, and further quenched to obtain the grain-refined martensitic stainless steel. By sharpening it through grinding/polishing, the cutting tool made of the grain-refined martensitic stainless steel can be obtained. COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供一种具有高强度和高耐腐蚀性的精制马氏体不锈钢的制造方法,适用于制造需要锋利的切削刃的电动剃须刀,剪发机等,以及 使用这种不锈钢的切削工具。 解决方案:制备基于SUS420J2的组成的基材,经受从高密度位错产生工艺和快速凝固过程中选择的至少一种工艺,并进一步退火以获得具有金属细结构的铁素体钢。 接着,对铁素体钢进行冷轧,退火,进行塑性加工,得到规定形状的切削工具,进一步淬火,得到精制马氏体系不锈钢。 通过磨削/研磨进行磨削,可以得到由精制马氏体系不锈钢制成的切削工具。 版权所有(C)2004,JPO