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    • 4. 发明授权
    • Shoe
    • US07712231B2
    • 2010-05-11
    • US11505338
    • 2006-08-17
    • Ikuko UmezawaTetsuo YamaguchiKunio NiwaToshihiro HoriiKoichi Fujisawa
    • Ikuko UmezawaTetsuo YamaguchiKunio NiwaToshihiro HoriiKoichi Fujisawa
    • A43B13/12
    • A43B5/001A43B5/00A43B7/1445A43B13/125
    • A midsole of a shoe has a low elastic part 20, a high elastic part 22 and an inclined surface 24. The low elastic part 20 and the high elastic part 22 include air bubbles. An ethylene-vinyl acetate copolymer (EVA) is used as a base polymer in the low elastic part 20 and the high elastic part 22. The inclined surface 24 is inclined upward from the inside to the outside. The low elastic part 20 is located to the inside of the inclined surface 24. The high elastic part 22 is located to the outside of the inclined surface 24. An inner high elastic part 26 is located to the inside of a low elastic part 20. The thickness of the low elastic part 20 becomes gradually larger from the outside to the inside along the inclined surface 24. The thickness of the high elastic part 22 becomes gradually larger from the inside to the outside along the inclined surface 24. The width Wa of the inclined surface 24 in left and right direction is 5 mm or more and 100 mm or less.
    • 鞋的中底具有低弹性部分20,高弹性部分22和倾斜表面24.低弹性部分20和高弹性部分22包括气泡。 在低弹性部分20和高弹性部分22中使用乙烯 - 乙酸乙烯酯共聚物(EVA)作为基础聚合物。倾斜表面24从内向外倾斜。 低弹性部分20位于倾斜表面24的内侧。高弹性部分22位于倾斜表面24的外侧。内部高弹性部分26位于低弹性部分20的内侧。 低弹性部20的厚度沿着倾斜面24从外侧向内侧逐渐变大。高弹性部22的厚度沿着倾斜面24从内侧向外侧逐渐变大。宽度Wa 左右方向的倾斜面24为5mm以上且100mm以下。
    • 5. 发明申请
    • Shoe
    • US20070107258A1
    • 2007-05-17
    • US11505338
    • 2006-08-17
    • Ikuko UmezawaTetsuo YamaguchiKunio NiwaToshihiro HoriiKoichi Fujisawa
    • Ikuko UmezawaTetsuo YamaguchiKunio NiwaToshihiro HoriiKoichi Fujisawa
    • A43B13/18A43B13/12
    • A43B5/001A43B5/00A43B7/1445A43B13/125
    • A midsole of a shoe has a low elastic part 20, a high elastic part 22 and an inclined surface 24. The low elastic part 20 and the high elastic part 22 include air bubbles. An ethylene-vinyl acetate copolymer (EVA) is used as a base polymer in the low elastic part 20 and the high elastic part 22. The inclined surface 24 is inclined upward from the inside to the outside. The low elastic part 20 is located to the inside of the inclined surface 24. The high elastic part 22 is located to the outside of the inclined surface 24. An inner high elastic part 26 is located to the inside of a low elastic part 20. The thickness of the low elastic part 20 becomes gradually larger from the outside to the inside along the inclined surface 24. The thickness of the high elastic part 22 becomes gradually larger from the inside to the outside along the inclined surface 24. The width Wa of the inclined surface 24 in left and right direction is 5 mm or more and 100 mm or less.
    • 鞋的中底具有低弹性部分20,高弹性部分22和倾斜表面24。 低弹性部20和高弹性部22包括气泡。 在低弹性部分20和高弹性部分22中使用乙烯 - 乙酸乙烯酯共聚物(EVA)作为基础聚合物。 倾斜面24从内向外倾斜。 低弹性部20位于倾斜面24的内侧。 高弹性部22位于倾斜面24的外侧。 内部高弹性部26位于低弹性部20的内侧。 低弹性部20的厚度从倾斜面24的外侧向内侧逐渐变大。 高弹性部22的厚度沿着倾斜面24从内侧向外侧逐渐变大。 倾斜面24的左右方向的宽度Wa为5mm以上且100mm以下。
    • 8. 发明申请
    • Data processing apparatus for data transmission and reception and data transfer method for data transfer system including the data processing apparatus
    • 用于数据发送和接收的数据处理装置以及包括数据处理装置的数据传送系统的数据传送方法
    • US20080082704A1
    • 2008-04-03
    • US11905367
    • 2007-09-28
    • Shuuji TakahashiKunio Niwa
    • Shuuji TakahashiKunio Niwa
    • G06F13/12
    • G06F13/4213
    • A data transfer system includes a transceiver and a data processing apparatus coupled to the transceiver through a first line, a second line, and a third line. A data transfer method for the data transfer system includes, when data is transferred from the transceiver to the data processing apparatus, transmitting a first trigger signal from the data processing apparatus to the transceiver through the first line, transmitting a first clock signal from the transceiver to the data processing apparatus through the second line in response to the first trigger signal, and transmitting first transfer data from the transceiver to the data processing apparatus through the third line in synchronization with the first clock signal. On the other hand, the data transfer method includes, when data is transferred from the data processing apparatus to the transceiver, transmitting a second trigger signal from the data processing apparatus to the transceiver through the first line, transmitting a second clock signal from the transceiver to the data processing apparatus through the second line in response to the second trigger signal, and transmitting second transfer data from the data processing apparatus to the transceiver in synchronization with the second clock signal. According to such a data transfer method for the data transfer system, the handshake signal output side is not changed between the data transmission side and the data reception side and one signal line is used to transfer the handshake signal. Therefore, the data transfer can be performed by the data transfer system simpler than the conventional data transfer system.
    • 数据传输系统包括收发器和通过第一线,第二线和第三线耦合到收发器的数据处理装置。 数据传输系统的数据传输方法包括:当数据从收发器传送到数据处理装置时,通过第一行从数据处理装置向收发器发送第一触发信号,从收发器发送第一时钟信号 通过第二行响应于第一触发信号发送到数据处理装置,并且通过第三行与第一时钟信号同步地将第一传送数据从收发器发送到数据处理装置。 另一方面,数据传输方法包括:当数据从数据处理装置传送到收发器时,通过第一行从数据处理装置向收发器发送第二触发信号,从收发器发送第二时钟信号 响应于第二触发信号通过第二线路传送到数据处理装置,并且与第二时钟信号同步地将第二传送数据从数据处理装置发送到收发器。 根据这种用于数据传送系统的数据传输方法,握手信号输出侧在数据发送侧和数据接收侧之间不改变,并且一条信号线用于传送握手信号。 因此,数据传输可以通过比传统的数据传输系统简单的数据传输系统来执行。