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    • 1. 发明授权
    • Web winding apparatus
    • 卷绕机
    • US4629139A
    • 1986-12-16
    • US711495
    • 1985-03-14
    • Akihiro SandaNobuyuki WatabeHiroki Sato
    • Akihiro SandaNobuyuki WatabeHiroki Sato
    • B26D7/32B65H16/10B65H18/08B65H18/10B65H35/02
    • B65H18/106B65H16/103B65H35/02B65H2301/4148B65H2301/41486B65H2301/5133
    • This invention depicts a web winding apparatus for winding belt-like materials (webs) such as plastic films, paper, thin metallic strips, which are slit to a predetermined width by a slitter. This web winding apparatus has at least one winder unit detachably mounted to a main body of winding apparatus. The or each of the winder units includes a support beam detachably mounted to the main body of winding apparatus, a plurality of pairs of arms provided on the support beam, for holding reels to wind slit webs from opposite sides and winding tension generators provided on the support beam corresponding in number to the reels, for giving a winding tension to the reels. A plurality of winder units are prepared in advance having the aforesaid arrangement, having various arm intervals arranged to accommodate to the widths of the slit, whereby winder units corresponding to the widths of webs are mounted to the winding apparatus. Since the arms secured to the winder unit are of stationary type, the winding quality of the product roll is satisfactory and a change in the width of web can be easily accommodated.
    • 本发明描述了一种卷绕卷绕装置,用于卷绕诸如塑料膜,纸,薄金属条的带状材料(网),其通过分切机切割成预定宽度。 卷筒卷绕装置具有可拆卸地安装到卷绕装置的主体上的至少一个络纱机。 卷绕单元中的每一个包括可拆卸地安装到卷绕装置的主体上的支撑梁,设置在支撑梁上的多对臂,用于保持卷轴从相对侧卷绕狭缝网,以及卷绕张力发生器 支撑梁对应于卷轴的数量,用于给卷轴施加卷绕张力。 预先制备多个卷绕单元,其具有上述布置,具有布置成适应狭缝宽度的各种臂间隔,由此将与幅材的宽度相对应的卷绕单元安装到卷绕装置。 由于固定在卷绕单元上的臂是静止型的,所以产品卷的卷绕质量是令人满意的,并且可以容易地适应卷材宽度的变化。
    • 2. 发明授权
    • Solid-state image pickup device and signal processing method therefor
    • 固态摄像装置及其信号处理方法
    • US09041827B2
    • 2015-05-26
    • US11655201
    • 2007-01-19
    • Hiroki SatoKeiji MabuchiNobuo NakamuraTetsuya Iizuka
    • Hiroki SatoKeiji MabuchiNobuo NakamuraTetsuya Iizuka
    • H04N5/228H04N5/335H04N3/14
    • H04N5/335
    • The invention makes it possible to perform effective A/D conversion on pixel signals read from a pixel array part, to achieve a reduction in power consumption and reductions in the size and the price of an image pickup device as well as simplification of the construction of the device, and to realize a high-quality image output. The device includes an pixel array part having a plurality of unit pixels, a CDS (correlated double sampling) circuit, and an A/D converter. A pixel signal read from a pixel array part via a signal line is subjected to CDS processing (noise elimination processing) in the CDS circuit, and then this pixel signal is inputted into the A/D converter which performs A/D conversion on the pixel signal. The A/D converter includes a ΔΣ modulator and a digital filter to perform highly accurate A/D conversion. The invention can also be applied to a construction in which an A/D converter is provided at the front stage of the CDS circuit.
    • 本发明使得可以对从像素阵列部分读取的像素信号进行有效的A / D转换,以实现图像拾取装置的功耗的降低和尺寸和价格的降低以及简化的 该设备,并实现高质量的图像输出。 该装置包括具有多个单位像素的像素阵列部分,CDS(相关双采样)电路和A / D转换器。 经由信号线从像素阵列部分读取的像素信号在CDS电路中进行CDS处理(噪声消除处理),然后将该像素信号输入到对像素进行A / D转换的A / D转换器 信号。 A / D转换器包括&Dgr& 调制器和数字滤波器,以执行高精度的A / D转换。 本发明也可以应用于在CDS电路的前级设置A / D转换器的结构。
    • 10. 发明申请
    • BIOLOGICAL LIGHT MEASUREMENT DEVICE
    • 生物光度测量装置
    • US20120245443A1
    • 2012-09-27
    • US13512020
    • 2010-11-11
    • Hirokazu AtsumoriHiroki SatoMasashi Kiguchi
    • Hirokazu AtsumoriHiroki SatoMasashi Kiguchi
    • A61B5/1455
    • A61B5/14551A61B5/16A61B5/165A61B5/6814
    • The mental state, such as mood or emotion, of an individual can be apprehended by a method using non-invasive biological light measurement technology. A biological light measurement device, which has an irradiation section, presents different tasks (at least a first task and a second task) to a subject, hemoglobin signals based on changes in the concentration of oxygenated hemoglobin and deoxygenated hemoglobin in the subject are calculated from the strength of light detected by a detection section, and a relative value using the hemoglobin signal at a predetermined measurement channel with respect to the first task, and the hemoglobin signal at a different predetermined measurement channel with respect to the second task is calculated.
    • 可以通过使用非侵入性生物光测量技术的方法来理解个体的精神状态,例如情绪或情绪。 具有照射部的生物体光测量装置向受试者呈现不同的任务(至少第一任务和第二任务),基于受试者中氧合血红蛋白和脱氧血红蛋白浓度的变化的血红蛋白信号从 计算由检测部检测到的光的强度,以及使用相对于第一任务的预定测量通道处的血红蛋白信号的相对值和相对于第二任务的不同预定测量通道的血红蛋白信号。