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    • 33. 发明申请
    • Gas-barriering coated film
    • 防气涂层膜
    • US20070003768A1
    • 2007-01-04
    • US11455244
    • 2006-06-19
    • Takeshi NomuraTakeshi Koyama
    • Takeshi NomuraTakeshi Koyama
    • B32B27/40
    • C08G18/7642C08G18/3206C08G18/5024Y10T428/31551Y10T428/31562Y10T428/31565Y10T428/31576Y10T428/31587Y10T428/31598
    • Provided is a gas-barriering coated film obtained by coating a gas barriering layer on at least one face of a flexible film or an inorganic-deposited polymer film, wherein the above gas-barriering layer is a polyurethane resin-cured material formed from a composition comprising an active hydrogen-containing compound (A) and an organic polyisocyanate compound (B), and 20% by weight or more of a skeletal structure represented by Formula (1) is contained in the above resin-cured material. The gas-barriering coated film of the present invention is excellent in various performances such as a layer-to-layer adhesive property, a gas barriering property at a high humidity, a bending resistance and a retort treating resistance in addition to a high gas barriering property, and therefore it is applied to various uses including packing materials for food and medicines to which a high gas barriering property is required.
    • 提供一种通过在柔性膜或无机沉积聚合物膜的至少一个表面上涂覆阻气层而获得的气体阻挡涂布膜,其中上述阻气层是由组合物形成的聚氨酯树脂固化材料 包含含活性氢的化合物(A)和有机多异氰酸酯化合物(B),并且在上述树脂固化材料中含有20重量%以上由式(1)表示的骨架结构。 本发明的阻气性涂膜除了高阻气性以外还具有各种性能,例如层间粘合性,高湿度下的阻气性,耐弯曲性和蒸煮处理电阻 属性,因此适用于需要高气体阻塞性的食品,药品的包装材料等各种用途。
    • 36. 发明授权
    • Adhesive composition and adhesive sheet
    • 粘合剂组合物和粘合片
    • US07108911B2
    • 2006-09-19
    • US10399744
    • 2001-10-19
    • Hidetoshi AbeTakeshi Koyama
    • Hidetoshi AbeTakeshi Koyama
    • B32B33/00
    • C08G18/4277C08G2170/40C08G2250/00C09J7/38C09J2475/00Y10T428/14Y10T428/1462Y10T428/23993Y10T428/24959Y10T428/2852Y10T428/2891Y10T428/2896
    • To provide an adhesive composition which can effectively improve the thermal-peeling-easy properties and the adhesion properties at low temperature at the same time. An adhesive composition comprising a crystalline polymer which comprises polyol units formed from a crystalline polyol as repeating units in the molecule, and a tackifying polymer compatible with said crystalline polymer at a temperature higher than the melting point of said crystalline polymer, wherein the tackifying polymer has an alkyl group with 4 to 8 carbon atoms and a carboxyl group in the molecule, a content of the monomeric units having the alkyl group with 4 to 8 carbon atoms (repeating units derived from a starting monomer having the alkyl group) is 60 to 99 mole % of the whole monomeric units of the tackifying polymer, and the alkyl group includes a butyl group.
    • 提供能够同时有效地提高低温下的热剥离容易性和粘合性的粘合剂组合物。 一种包含结晶聚合物的粘合剂组合物,其包含由分子中作为重复单元的结晶多元醇形成的多元醇单元,以及在高于所述结晶聚合物的熔点的温度下与所述结晶聚合物相容的增粘聚合物,其中所述增粘聚合物具有 分子中具有4〜8个碳原子的烷基和羧基,具有4〜8个碳原子的烷基的单体单元(来自具有烷基的起始单体的重复单元)的含量为60〜99 %的增粘聚合物的全部单体单元,烷基包括丁基。
    • 37. 发明授权
    • Optical apparatus operable in static and dynamic image taking modes
    • 光学设备可在静态和动态图像拍摄模式下操作
    • US07098955B2
    • 2006-08-29
    • US09978048
    • 2001-10-17
    • Takeshi KoyamaKoji Hoshi
    • Takeshi KoyamaKoji Hoshi
    • H04N5/238
    • H04N5/238
    • An optical apparatus includes a photographic optical unit including a movable optical component for varying a focal length, a light amount adjusting unit disposed in an optical path of the photographic optical unit, the light amount adjusting unit varying an aperture to adjust an amount of light and changing an F-number by varying the aperture, an image pickup device for picking up an optical image formed by the photographic optical unit, a mode switching member for selecting a dynamic image taking mode and a static image taking mode, and a controller. The controller sets different values of the F-number of the light amount adjusting unit in accordance with a state selected by the mode switching member, or varies a moving range of the movable optical component in accordance with a state selected by the mode switching member.
    • 一种光学装置,包括:照相光学单元,包括用于改变焦距的可移动光学部件;设置在摄影光学单元的光路中的光量调节单元,光量调节单元改变光圈以调节光量; 通过改变光圈来改变F数,用于拾取由照相光学单元形成的光学图像的图像拾取装置,用于选择动态图像拍摄模式和静态图像拍摄模式的模式切换部件以及控制器。 控制器根据由模式切换部件选择的状态来设定光量调节部的F数的不同值,或者根据模式切换部件选择的状态改变可动光学部件的移动范围。
    • 40. 发明授权
    • Automatic gain control method and its system
    • 自动增益控制方法及其系统
    • US06771719B1
    • 2004-08-03
    • US09510236
    • 2000-02-22
    • Takeshi KoyamaTakashi SekiNoboru Taga
    • Takeshi KoyamaTakashi SekiNoboru Taga
    • H04L2708
    • H03G3/3068
    • The automatic gain control method with little being influenced of the unnecessary electric wave, even if strong unnecessary electric wave is near the frequency of input signal, is offered by carrying out change of the delay point level. The automatic gain control system with a scale of few circuit, having low noise property and high adjacent disturbance oppression property, is offered. When the IF AGC signal 112 is smaller than delay point level, the output agcerr of the signal level detector 614 is provided to the 1st loop filter 105. Since the IF AGC signal 112 provided to the IF AGC amplifier 608 is value responding to signal level of IF signal, output is fed back to this amplifier, and control of IF gain is performed automatically. On the other hand, when output of the 2nd loop filter 106 is “0”, output rfzero of the 2nd comparator 108 is set to 1, and “0” is provided to the 2nd loop filter 106. When the output of the 2nd loop filter 106 is not “0”, it is set to “0”, fixed value-rfdump is provided to the 2nd loop filter 106, and the output of the 2nd comparator 108 is converged when output of this loop filter became “0.” For this reason, the RFAGC signal 113 provided to the RF AGC amplifier 602 is set to “0”, and gain of the RF AGC amplifier 602 is fixed to maximum value.
    • 即使强制不必要的电波接近输入信号的频率,也不受不必要的电波影响的自动增益控制方式是通过延迟点电平的变化来提供的。自动增益控制系统的尺寸为 提供具有低噪声特性和高相邻扰动压迫特性的电路,当IF AGC信号112小于延迟点电平时,信号电平检测器614的输出agcerr被提供给第一环路滤波器105.由于 提供给IF AGC放大器608的IF AGC信号112是响应于IF信号的信号电平的值,输出被反馈到该放大器,并且自动执行IF增益的控制。另一方面,当输出第二环路滤波器 106是“0”时,第二比较器108的输出rfzero被设置为1,并且向第二环路滤波器106提供“0”。当第二环路滤波器106的输出不是“0”时,它被设置为 “0”,固定值-rfdump 被提供给第二环路滤波器106,并且当该环路滤波器的输出变为“0”时,第二比较器108的输出被会聚。因此,提供给RF AGC放大器602的RFAGC信号113被设置为“0 “,并且RF AGC放大器602的增益被固定为最大值。