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    • 53. 发明申请
    • Orthogonal modulation device, method, program, recording medium, and modulation device
    • 正交调制装置,方法,程序,记录介质和调制装置
    • US20060133537A1
    • 2006-06-22
    • US10549629
    • 2004-03-22
    • Takashi Kato
    • Takashi Kato
    • H04L27/36
    • H04L27/364H04L2027/0016H04L2027/0018
    • It is possible to calibrate an I(Q) signal without interrupting the modulation operation of an orthogonal modulation device. The orthogonal modulation device includes: an adder for outputting a pseudo noise superimposed signal obtained by adding the I(Q) signal to a pseudo noise PN; a signal conversion section for mixing the pseudo noise superimposed signal with a local signal of a predetermined local frequency and outputting a converted signal; a phase shifted local signal multiplier for multiplying the local signal whose phase has been changed by a phase shifted device with the converted signal; a pseudo noise multiplier for multiplying the output of the phase shifted local signal multiplier with the pseudo noise; an integrator for integrating the output of the pseudo noise multiplier; and an error measurement section for measuring the error of the I(Q) signal according to the output of the integrator. Since an output of an IF signal output adder can be used as an IF signal, it is possible to perform calibration without interrupting the modulation operation.
    • 可以在不中断正交调制装置的调制操作的情况下校准I(Q)信号。 正交调制装置包括:加法器,用于输出通过将I(Q)信号加到伪噪声PN而获得的伪噪声叠加信号; 信号转换部分,用于将伪噪声叠加信号与预定局部频率的本地信号混合并输出转换的信号; 相移本地信号乘法器,用于将相位已经被相移装置改变的本地信号与转换后的信号相乘; 用于将相移本地信号乘法器的输出与伪噪声相乘的伪噪声乘法器; 用于对伪噪声乘法器的输出进行积分的积分器; 以及用于根据积分器的输出来测量I(Q)信号的误差的误差测量部分。 由于可以将IF信号输出加法器的输出用作IF信号,所以可以在不中断调制操作的情况下执行校准。
    • 54. 发明授权
    • Composite printer and scan image copying method
    • 复合打印机和扫描图像复印方法
    • US07059785B2
    • 2006-06-13
    • US10489244
    • 2002-09-12
    • Takashi KatoJunya Yada
    • Takashi KatoJunya Yada
    • B41J11/44
    • B41J3/44B41J11/0065H04N1/38H04N1/3875H04N1/393H04N2201/0091
    • It is an object of the present invention, when using image scanner(s) to capture image(s) of original(s) and using printer(s) to print same, to enable four-sided borderless copying such that margin(s) do not appear on printout(s). An image scanner might capture an image corresponding to scan region 263 which might be somewhat larger than original 262. Image processing circuitry might then enlarge an image corresponding to scan region 266 (arrow 279), converting it into enlarged image 271. Within enlarged image 271, the image of original 262 might have been enlarged so as to become image 273, which might be somewhat larger than printing paper 274. This enlarged original image 273 which would be present within enlarged image 271 might then be printed by a printer.
    • 本发明的目的在于,当使用图像扫描仪拍摄原稿的图像并使用打印机进行打印时,能够进行四边无边界复印, 不要出现在打印输出上。 图像扫描器可以捕获与扫描区域263相对应的图像,该扫描区域263可能略大于原来的262。 然后,图像处理电路可以放大对应于扫描区域266的图像(箭头279),将其转换成放大图像271。 在放大图像271内,原稿262的图像可能已经被放大,以便成为可能比打印纸274稍大的图像273。 然后可以通过打印机来打印放大图像271内的放大的原始图像273。
    • 55. 发明授权
    • Liquid crystal composition, liquid crystal display element, method for manufacturing same, and method for controlling same
    • 液晶组合物,液晶显示元件,其制造方法及其控制方法
    • US07041346B2
    • 2006-05-09
    • US10682195
    • 2003-10-10
    • Takashi KatoNorihiro Mizoshita
    • Takashi KatoNorihiro Mizoshita
    • C09K19/52C09K19/38C09K19/54
    • C09K19/54C09K2019/526Y10T428/10
    • A liquid crystal composition comprising a liquid crystal compound, a gelling agent comprising a hydrogen-bonded compound with polymerizable double bonds at both ends to form a gelatinizable mixture with the liquid crystal compound, and a photoinitiator causing a polymerization reaction of the hydrogen-bonded compound of the gelling agent is disclosed. Because the denatured liquid crystal composition, obtainable by photo polymerization of the non-denatured liquid crystal composition, has alignment direction self-control characteristics, the liquid crystal composition can be reversibly changed between the isotropic state and the aligned gelatinized state by controlling the temperature conditions not only in a non-denatured state but also in a denatured state. A liquid crystal display element using the liquid crystal composition, a method for manufacturing the same, and a method for controlling the same are also disclosed.
    • 包含液晶化合物的液晶组合物,包含两端具有可聚合双键的氢键键合化合物以与液晶化合物形成可凝胶化混合物的胶凝剂和引起氢键化合物聚合反应的光引发剂 的胶凝剂。 由于通过非变性液晶组合物的光聚合而获得的变性液晶组合物具有取向方向自控特性,所以通过控制温度条件可以在各向同性状态和排列糊化状态之间可逆地改变液晶组合物 不仅在非变性状态,而且在变性状态。 还公开了使用该液晶组合物的液晶显示元件及其制造方法及其控制方法。
    • 59. 发明授权
    • Electronic apparatus
    • 电子仪器
    • US06980432B2
    • 2005-12-27
    • US10676325
    • 2003-09-30
    • Yoshihiro NatsumeYutaka ToyamaTakashi KatoNaohide Kohyama
    • Yoshihiro NatsumeYutaka ToyamaTakashi KatoNaohide Kohyama
    • G06F1/20H04H7/00H04H60/04H05K1/14H05K7/14H05K7/20
    • H04H60/04H05K1/14H05K7/1427H05K7/20136
    • There is provided an electronic apparatus that is free of the problems with the prior art and is capable of achieving higher efficiency of cooling the interior of the casing without sacrificing cost reduction and designing compact in size. A casing houses a plurality of circuit boards having electronic parts mounted thereon and at least one high load part that generates heat. The casing has exhaust ports formed therein for heat radiation and exhaust ports for heat radiation. The plurality of circuit boards are comprised of a first circuit board and a second circuit board. The first circuit board is disposed to extend substantially horizontally, and the second circuit board is disposed to extend substantially vertically with a horizontal gap provided between the first circuit board and the second circuit board. The at least one high load part is arranged below the horizontal gap, and the exhaust ports are arranged above the horizontal gap.
    • 提供了一种没有现有技术问题的电子设备,并且能够实现更高的冷却壳体内部的效率,而不牺牲成本降低和尺寸紧凑的设计。 壳体容纳多个安装有电子部件的电路板和至少一个产生热量的高负荷部件。 壳体具有形成在其中的用于散热的排气口和用于散热的排气口。 多个电路板包括第一电路板和第二电路板。 第一电路板被布置成基本上水平地延伸,并且第二电路板被设置成基本垂直地延伸,并且设置在第一电路板和第二电路板之间的水平间隙。 所述至少一个高负载部分布置在所述水平间隙的下方,并且所述排气口布置在所述水平间隙的上方。
    • 60. 发明申请
    • Hybrid printer and scan image copying method
    • 混合打印机和扫描图像复印方法
    • US20050244205A1
    • 2005-11-03
    • US11175211
    • 2005-07-07
    • Takashi KatoJunya Yada
    • Takashi KatoJunya Yada
    • H04N1/387B41J11/44
    • B41J3/44B41J11/0065H04N1/38H04N1/3875H04N1/393H04N2201/0091
    • It is an object of the present invention, when using image scanner(s) to capture image(s) of original(s) and using printer(s) to print same, to enable four-sided borderless copying such that margin(s) do not appear on printout(s). An image scanner might capture an image corresponding to scan region 263 which might be somewhat larger than original 262. Image processing circuitry might then enlarge an image corresponding to scan region 266 (arrow 279), converting it into enlarged image 271. Within enlarged image 271, the image of original 262 might have been enlarged so as to become image 273, which might be somewhat larger than printing paper 274. This enlarged original image 273 which would be present within enlarged image 271 might then be printed by a printer.
    • 本发明的目的在于,当使用图像扫描仪拍摄原稿的图像并使用打印机进行打印时,能够进行四边无边界复印, 不要出现在打印输出上。 图像扫描器可以捕获与扫描区域263相对应的图像,该扫描区域263可能略大于原来的262。 然后,图像处理电路可以放大对应于扫描区域266的图像(箭头279),将其转换成放大图像271。 在放大图像271内,原稿262的图像可能已经被放大,以便成为可能比打印纸274稍大的图像273。 然后可以通过打印机来打印放大图像271内的放大的原始图像273。