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    • 53. 发明授权
    • Tire vulcanizer
    • 轮胎硫化机
    • US08636491B2
    • 2014-01-28
    • US13391788
    • 2011-05-10
    • Hideki FukudaKunio MatsunagaJoji Yusa
    • Hideki FukudaKunio MatsunagaJoji Yusa
    • B29C33/24
    • B29D30/0601B29L2030/00
    • The tire vulcanizer is featured by including a slide back mechanism configured such that the upper metal mold separated and lifted from the lower metal mold installed to be fixed to a base is moved by an operation of a movable carriage so as to reciprocate between a vulcanization position at which the upper metal mold is pressed toward the lower metal mold, and a waiting position at which the green tire can be carried in the lower metal mold and at which the cured tire can be carried out from the lower metal mold, and is featured in that the upper metal mold is attached below, via a squeezing cylinder mechanism, to a beam integrated with a tie rod which is vertically moved by an operation of a lifting/lowering cylinder along a guide hole provided in the movable carriage.
    • 轮胎硫化机的特征在于包括滑动回转机构,该滑动机构被构造成使得通过可移动滑架的操作来移动由安装成固定到基座的下部金属模具分离和提升的上部金属模具,以便在硫化位置 上金属模具压向下金属模具,以及可以在下金属模具中承载生轮胎并且可以从下金属模具执行固化轮胎的等待位置,并且具有特征 其特征在于,上金属模具通过挤压缸机构附接到与通过提升/降低气缸的操作沿着设置在可移动滑架中的引导孔垂直移动的拉杆一体化的梁上。
    • 55. 发明申请
    • RECORDING DEVICE, TERMINAL DEVICE, AND CONTENT TRANSMISSION SYSTEM
    • 记录装置,终端装置和内容传输系统
    • US20130191626A1
    • 2013-07-25
    • US13514707
    • 2012-01-23
    • Yoshiki KunoHideki Fukuda
    • Yoshiki KunoHideki Fukuda
    • H04L9/00
    • H04L9/0897G06F21/6218H04L63/0428H04N5/765H04N5/913H04N21/2747H04N21/4334H04N21/4408H04N21/63345
    • A content transmission system transmits content, using a cloud computing system. A recording device records the content to a local storage or a cloud storage. When the local storage is selected as a recording destination, the recording device generates an encryption key, encrypts the content with the key, and generates management information associating the key with an address of the cloud storage. The recording device furthermore determines whether a portable recording medium is connected thereto. If connected, the recording device records the key and the management information to the portable recording medium. The terminal device first reads the key and the management information from the portable recording medium. The terminal device then accesses the cloud storage without performing user authentication, referring to the management information, and downloads the encrypted content from the cloud storage. Furthermore, the terminal device decrypts the content from the encrypted content, using the key.
    • 内容传输系统使用云计算系统传输内容。 记录设备将内容记录到本地存储或云存储。 当选择本地存储器作为记录目的地时,记录装置生成加密密钥,用密钥对内容进行加密,并生成将密钥与云存储的地址相关联的管理信息。 记录装置还确定便携式记录介质是否连接到其上。 如果连接,则记录装置将密钥和管理信息记录到便携式记录介质。 终端设备首先从便携式记录介质读取密钥和管理信息。 然后,终端设备访问云存储,而不执行用户认证,参考管理信息,并从云存储中下载加密的内容。 此外,终端设备使用密钥从加密的内容解密内容。
    • 56. 发明授权
    • Encoding device and dynamic image recording system using the encoding device
    • 使用编码装置的编码装置和动态图像记录系统
    • US08130838B2
    • 2012-03-06
    • US11909166
    • 2006-03-22
    • Hideki FukudaHiroki InagakiKazuhiko KounoMakoto Kawaharada
    • Hideki FukudaHiroki InagakiKazuhiko KounoMakoto Kawaharada
    • H04N7/12
    • H04N19/105H04N19/109H04N19/112H04N19/126H04N19/147H04N19/149H04N19/159H04N19/19H04N19/196H04N19/198H04N19/61
    • To encode a moving picture in real time in as high quality as possible, no matter whether a target bit rate for encoding the moving picture is high or low.An encoder performs motion compensated inter-picture predictive coding on moving picture data in a selected one of prediction modes. The encoder includes: a detecting section for detecting an accumulated error and a motion vector of a block, included in a picture to be encoded, by reference to a block in a reference picture to be used for each prediction mode; an estimating section for calculating an estimated value by adding a product of each accumulated error and a predetermined first coefficient and that of a predicted vector associated with each motion vector and a second coefficient; a determining section for selecting one of the prediction modes according to the estimated value; a coefficient updating section for updating a proportionality factor using at least a quantization scale used when the block to be encoded is quantized; and an encoding section for encoding the data of the block to be encoded in the prediction mode selected.
    • 为了以尽可能高的质量实时对运动图像进行编码,无论用于编码运动图像的目标比特率是高还是低。 编码器对所选择的预测模式中的运动图像数据执行运动补偿的图像间预测编码。 编码器包括:检测部分,用于通过参考要用于每个预测模式的参考图像中的块来检测包括在待编码的图像中的块的累积误差和运动矢量; 估计部分,用于通过将每个累积误差和预定第一系数的乘积与与每个运动矢量相关联的预测矢量与第二系数的乘积相加来计算估计值; 确定部分,用于根据估计值选择预测模式之一; 系数更新部分,用于当量化要被编码的块时使用至少一个量化尺度来更新比例因子; 以及编码部分,用于对所选择的预测模式中要编码的块的数据进行编码。
    • 57. 发明授权
    • Data processing device and data processing method
    • 数据处理装置和数据处理方法
    • US07929604B2
    • 2011-04-19
    • US10515555
    • 2003-08-01
    • Hiroki InagakiHideki FukudaSatoshi Kondo
    • Hiroki InagakiHideki FukudaSatoshi Kondo
    • H04N7/12
    • H04N19/112H04N19/114H04N19/136H04N19/157H04N19/172H04N19/176H04N19/61
    • A data processor is provided to compression-code moving picture data without decreasing coding efficiency even if the moving picture includes a picture with particularly violent motion. The moving picture is obtained by presenting a plurality of frame pictures, each consisting of two field pictures, one after another. The processor (100) includes a memory (101) for storing the moving picture data, a calculating section (108) for calculating a parameter, representing how much the moving picture has changed, based on the moving picture data of the two field pictures, a determining section (109) for determining, by the parameter calculated, on what picture unit the moving picture data is going to be compression-coded by the intra-picture coding method and the forward predictive coding method and adopting a picture structure defining the predetermined picture unit, and a processing section (102-107, 110) for compression-coding the moving picture data, stored in the memory, according to the picture structure adopted, thereby generating compressed data.
    • 提供数据处理器来压缩编码运动图像数据而不降低编码效率,即使运动图像包括具有特别剧烈运动的图像。 通过呈现多个帧图像来获得运动图像,每个帧图像彼此依次由两个场图像组成。 处理器(100)包括用于存储运动图像数据的存储器(101),用于基于两个场图像的运动图像数据计算表示运动图像已经改变多少的参数的计算部分(108) 确定部分(109),用于通过所计算的参数来确定运动图像数据将通过图像内编码方法和正向预测编码方法被压缩编码的图像单元,并采用限定预定的图像结构 图像单元和用于根据采用的图像结构对存储在存储器中的运动图像数据进行压缩编码的处理部分(102-107,110),从而产生压缩数据。
    • 58. 发明申请
    • ENCODING DEVICE AND DYNAMIC IMAGE RECORDING SYSTEM USING THE ENCODING DEVICE
    • 使用编码设备编码设备和动态图像记录系统
    • US20090052526A1
    • 2009-02-26
    • US11909166
    • 2006-03-22
    • Hideki FukudaHiroki InagakiKazuhiko KounoMakoto Kawaharada
    • Hideki FukudaHiroki InagakiKazuhiko KounoMakoto Kawaharada
    • H04N7/26
    • H04N19/105H04N19/109H04N19/112H04N19/126H04N19/147H04N19/149H04N19/159H04N19/19H04N19/196H04N19/198H04N19/61
    • To encode a moving picture in real time in as high quality as possible, no matter whether a target bit rate for encoding the moving picture is high or low.An encoder performs motion compensated inter-picture predictive coding on moving picture data in a selected one of prediction modes. The encoder includes: a detecting section for detecting an accumulated error and a motion vector of a block, included in a picture to be encoded, by reference to a block in a reference picture to be used for each prediction mode; an estimating section for calculating an estimated value by adding a product of each accumulated error and a predetermined first coefficient and that of a predicted vector associated with each motion vector and a second coefficient; a determining section for selecting one of the prediction modes according to the estimated value; a coefficient updating section for updating a proportionality factor using at least a quantization scale used when the block to be encoded is quantized; and an encoding section for encoding the data of the block to be encoded in the prediction mode selected.
    • 为了以尽可能高的质量实时对运动图像进行编码,无论用于编码运动图像的目标比特率是高还是低。 编码器对所选择的预测模式中的运动图像数据执行运动补偿的图像间预测编码。 编码器包括:检测部分,用于通过参考要用于每个预测模式的参考图像中的块来检测包括在待编码的图像中的块的累积误差和运动矢量; 估计部分,用于通过将每个累积误差和预定第一系数的乘积与与每个运动矢量相关联的预测矢量与第二系数的乘积相加来计算估计值; 确定部分,用于根据估计值选择预测模式之一; 系数更新部分,用于当量化要被编码的块时使用至少一个量化尺度来更新比例因子; 以及编码部分,用于对所选择的预测模式中要编码的块的数据进行编码。