会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明授权
    • Magneto-optical recording medium
    • 磁光记录介质
    • US5514468A
    • 1996-05-07
    • US145173
    • 1993-11-03
    • Hideo KanekoKatsushi TokunagaYoshio TawaraYoshiaki ShimizuTadao Nomura
    • Hideo KanekoKatsushi TokunagaYoshio TawaraYoshiaki ShimizuTadao Nomura
    • G11B11/105B32B3/02B32B5/16G11B5/66
    • G11B11/10584G11B11/10593Y10S428/90Y10T428/26Y10T428/265
    • A magneto-optical recording medium having a layered structure consisting of a first dielectric layer, magnetic recording layer, second dielectric layer and reflecting layer successively formed on a transparent substrate plate can be imparted with improved performance relative to the recording sensitivity and the C/N ratio when the recording layer and the second dielectric layer each have such a thickness that the angle .delta. given by the equation .delta.=tan.sup.-1 (.epsilon./.theta.k), in which .epsilon. is the Kerr ellipticity of the regenerative light and .theta.k is the Kerr rotation angle, does not exceed 10.degree., the thickness of the recording layer being in the range from 8 nm to 13.5 nm and the thickness of the second dielectric layer satisfying the relationship given by the inequality0.06.ltoreq.nd/.lambda..ltoreq.0.14,in which d is the thickness of the second dielectric layer, .lambda. is the wavelength of the regenerative light for reading-out of the recorded signals and n is the refractive index of the material forming the second dielectric layer to the regenerative light of wavelength .lambda..
    • 具有由第一电介质层,磁记录层,第二电介质层和连续形成在透明基板上的反射层组成的层状结构的磁光记录介质可以相对于记录灵敏度和C / N 当记录层和第二介电层各自具有这样的厚度,即由等式delta = tan-1(epsilon /θk)给出的角度δ,其中ε是再生光的Kerr椭圆率和θk是 克尔旋转角不超过10°,记录层的厚度在8nm至13.5nm的范围内,第二介电层的厚度满足不等式0.06
    • 4. 发明授权
    • Liquid supply device and liquid jetting system
    • 液体供应装置和液体喷射系统
    • US08807717B2
    • 2014-08-19
    • US13225248
    • 2011-09-02
    • Taku IshizawaYoshiaki Shimizu
    • Taku IshizawaYoshiaki Shimizu
    • B41J2/175B41J2/17
    • B41J2/175B41J2/17523B41J2/17553B41J2/17596
    • A liquid supply device 10 is equipped with a liquid containing chamber 16, a transport tube 15 for sending the liquid inside the chamber 16 to a liquid jetting device 20, first and second members 171 and 172 sandwiching the tube 15, and a cam 173 that determines the position of the first member 171 relative to the second member 172. The tube 15 is equipped with an elastic portion 151 that elastically deforms and is flattened. In the first rotation position, the cam 173 arranges the first member 171 such that there is a space that allows the liquid to flow inside the part 151 between the first and second members 171, 172. In the second rotation position, the cam 173 arranges the first member 171 such that the elastic portion 151 is flattened by the first and second members 171, 172, and the liquid inside cannot flow.
    • 液体供应装置10配备有液体容纳室16,用于将腔室1​​6内的液体送到液体喷射装置20的输送管15,夹着管15的第一和第二构件171和172以及夹持管15的凸轮173 确定第一构件171相对于第二构件172的位置。管15配备有弹性变形并变平的弹性部151。 在第一旋转位置,凸轮173布置第一构件171,使得存在允许液体在第一和第二构件171,172之间的部分151内部流动的空间。在第二旋转位置,凸轮173布置 第一构件171使得弹性部分151被第一和第二构件171,172平坦化,并且内部的液体不能流动。
    • 6. 发明授权
    • Liquid accommodating container, tank unit, and liquid ejecting system
    • 液体容纳容器,罐单元和液体喷射系统
    • US08454139B2
    • 2013-06-04
    • US13183383
    • 2011-07-14
    • Taku IshizawaYoshiaki ShimizuYuki Takeda
    • Taku IshizawaYoshiaki ShimizuYuki Takeda
    • B41J2/175
    • B41J2/175B41J2/17509B41J2/17513B41J2/17523B41J2/17553
    • A liquid accommodating container in which in a use position, a port opened to the air is provided at a position that is closer to an air chamber uppermost surface and is included in a first corner portion, an air-side opening is provided at a position that is closer to an air chamber lowermost surface and is included in a second corner portion which is at a diagonal position to the first corner portion, and a liquid-side opening is provided at a position satisfying the following conditions (a) and (b), (a) a position closer to a liquid chamber lowermost surface with respect to the vertical direction in the use position and (b) a position which is included in the second corner portion that is at a position equivalent to a diagonal position to the first corner portion.
    • 一种液体容纳容器,在使用位置上,向空气开放的开口设置在更靠近空气室最上表面的位置并且包括在第一角部中的空气侧开口处, 更靠近空气室最下表面并且包括在与第一角部对角位置的第二角部,并且在满足以下条件(a)和(b)的位置处设置液体侧开口 ),(a)在使用位置中相对于垂直方向更靠近液体室最下表面的位置,以及(b)包括在第二拐角部分中的位置,该位置等于对角线位置的位置 第一角部分。
    • 9. 发明授权
    • Zoom lens
    • 变焦镜头
    • US08081392B2
    • 2011-12-20
    • US12954095
    • 2010-11-24
    • Atsujiro IshiiYoshiaki Shimizu
    • Atsujiro IshiiYoshiaki Shimizu
    • G02B15/15G02B15/14
    • G02B15/173
    • The invention relates to a new mechanism for permitting a zoom lens to focus on a short distance subject by moving a focusing lens group in an amount that varies in an optical axis direction depending on a zooming position. The zoom lens comprises, in order from its object side, a positive first lens group, a negative second lens group and a positive third lens group. Zooming is implemented while the space between adjoining lens groups is varied, and focusing on a short distance subject is implemented by moving the negative second lens group in an amount that varies in the optical axis direction depending on a zooming position. The negative second lens group comprises a negative front unit G2F and a negative rear unit G2R. The space between the negative front unit G2F and the negative rear unit G2R is varied depending on a subject distance but that space remains constant wherever the zooming position lies.
    • 本发明涉及一种新的机构,用于允许变焦镜头通过沿着在光轴方向上变化的量根据变焦位置移动聚焦透镜组来聚焦在短距离物体上。 变焦透镜从其物体侧依次包括正的第一透镜组,负的第二透镜组和正的第三透镜组。 在相邻透镜组之间的空间变化的同时进行变焦,并且通过使负的第二透镜组以在光轴方向上变化的量根据变焦位置的移动来实现对短距离被摄体的聚焦。 负第二透镜组包括负前单元G2F和负后单元G2R。 负前置单元G2F和负侧后置单元G2R之间的空间根据被摄体距离而变化,但是在缩放位置所在的位置保持恒定。