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    • 1. 发明授权
    • Thermoplastic resin porous membrane having an increased strength factor
    • 具有增加强度因子的热塑性树脂多孔膜
    • US4613441A
    • 1986-09-23
    • US486915
    • 1983-04-20
    • Mitsuo KohnoShigeki KatayamaKazuo Matsuda
    • Mitsuo KohnoShigeki KatayamaKazuo Matsuda
    • B29C59/00B01D67/00B01D69/02B29C55/00B29C67/20C08J5/18C08J5/22C08J9/00H01M2/14B01D13/04
    • B01D67/0027B01D69/02H01M2/14
    • A porous membrane formed of a thermoplastic resin having a critical surface tension of not higher than 35 dyn/cm and having a three-dimensional network structure is provided. Communicating pores having a porosity of at least 60% and an average pore diameter of 0.1 to 2.0 microns are formed in the porous membrane. The strength factor F defined by the following formula is at least 1 as measured in any direction: F=A/[B(1-.alpha.)], wherein A is the tensile strength at break of the membrane, B is the tensile strength at break of a non-porous film formed of the same resin and .alpha. is the porosity fraction of the membrane. The thickness of the porous membrane is 5 to 500 microns. The porous membrane is prepared by a process wherein a porous membrane formed of a thermoplastic resin having a critical surface tension of not higher than 35 dyn/cm and having a three-dimensional network structure including communicating pores having an average pore diameter of 0.05 to 1 micron with a porosity of 30 to 70%, is subjected to a space drawing operation in at least one direction at a temperature between 50.degree. C. lower than the melting or softening point of the thermoplastic resin and 5.degree. C. lower than the melting or softening point of the thermoplastic resin.
    • 提供了具有临界表面张力不高于35dyn / cm并具有三维网状结构的由热塑性树脂形成的多孔膜。 在多孔膜中形成孔隙率为至少60%,平均孔径为0.1〜2.0微米的孔。 由以下公式定义的强度因子F至少为1,如在任何方向测量的:F = A / [B(1-α)],其中A是膜断裂时的拉伸强度,B是在 由相同树脂和α形成的无孔膜的断裂是膜的孔隙率分数。 多孔膜的厚度为5至500微米。 多孔膜通过以下方法制备,其中由具有临界表面张力不高于35dyn / cm的热塑性树脂形成的多孔膜,并且具有包括平均孔径为0.05至1的连通孔的三维网状结构 微孔,孔隙率为30〜70%,在比热塑性树脂的熔点或软化点低50℃以下的温度下,在至少一个方向进行空间拉伸操作,低于熔融 或软化点。
    • 2. 发明申请
    • PROTECTIVE-CONTROL MEASURING SYSTEM AND DEVICE AND DATA TRANSMISSION METHOD
    • 保护控制测量系统和设备和数据传输方法
    • US20120019355A1
    • 2012-01-26
    • US13145120
    • 2009-12-28
    • Shigeki KatayamaKatsuhiko SekiguchiKazuto FukushimaTsutomu Matsumoto
    • Shigeki KatayamaKatsuhiko SekiguchiKazuto FukushimaTsutomu Matsumoto
    • H04L9/32
    • H04L9/0897H04L9/088H04L9/16H04L9/3228H04L9/3242H04L2209/12
    • According to one embodiment, when sending a transmission target main data 21, an authentication-tag generator unit 13 generates an authentication tag 23 by using a main data 21 and a key data 22 stored in a key-data storage unit 12. A transmitter/receiver unit 14 adds the authentication tag 23 to the main data 32 sends as a transmission data. When receiving the received data 24a, the transmitter/receiver unit 14 divides the received data into a main data 21a and an authentication tag 23a. The authentication-tag generator unit 13 generates an authentication tag 23b for comparison. A received-data authentication unit 15 determines whether or not those the received authentication tag 23a and the authentication tag for comparison 23b match with each other. A different key data is used every time upon the authentication-tag generation and use time of each key data during a set period is restricted.
    • 根据一个实施例,当发送发送目标主数据21时,认证标签发生器单元13通过使用存储在密钥数据存储单元12中的主数据21和密钥数据22生成认证标签23.发送器/ 接收机单元14将认证标签23添加到作为发送数据发送的主数据32。 发送接收单元14在接收到接收到的数据24a时,将接收到的数据分割为主数据21a和认证标签23a。 认证标签生成单元13生成用于比较的认证标签23b。 接收数据认证单元15确定接收到的认证标签23a和用于比较的认证标签23b是否彼此匹配。 每次在认证标签生成时,使用不同的密钥数据,并且在设定的时间段内的每个密钥数据的使用时间被限制。
    • 5. 发明授权
    • Color image processor
    • 彩色图像处理器
    • US06906827B1
    • 2005-06-14
    • US09610662
    • 2000-07-05
    • Shigeki Katayama
    • Shigeki Katayama
    • B41J5/30B41J2/525G06F15/00G06K1/00H04N1/40H04N1/46H04N1/60
    • H04N1/6072H04N1/6022
    • In a color image processor for converting a RGB input image data into a CMYK image output data, it is determined whether a data format of the input image data is a non-picture image format or a picture image format. For the input image data of the non-picture image format, a color conversion is performed with values of C, M and Y colors made minimum and a value of K color made maximum, when values of all of the R, G and B colors are minimum, and, for the input image data of the picture image format, a color conversion is performed with the values of the C, M and Y colors set to temporary values slightly smaller than the maximum values thereof when values of all of the R, G and B colors are minimum. Final C, M, Y and K colors are obtained by performing the Black-Generation and Under-Color-Removal processing for the temporary values.
    • 在用于将RGB输入图像数据转换为CMYK图像输出数据的彩色图像处理器中,确定输入图像数据的数据格式是非图像图像格式还是图像图像格式。 对于非图像图像格式的输入图像数据,当所有R,G和B颜色的值都以C,M和Y颜色的值为最小并且K颜色的值为最大时,执行颜色转换 对于图像图像格式的输入图像数据,当将C,M和Y颜色的值设置为略小于其最大值的临时值时,执行颜色转换,当R的全部值 ,G和B颜色最小。 通过对临时值进行黑色和黑色去除处理来获得最终C,M,Y和K颜色。
    • 8. 发明申请
    • MEASURING DEVICE, PROTECTION RELAY, AND PROGRAM PRODUCT
    • 测量设备,保护继电器和程序产品
    • US20120065907A1
    • 2012-03-15
    • US13231008
    • 2011-09-13
    • Yasuyuki KozakaiKotaro IseShigeki Katayama
    • Yasuyuki KozakaiKotaro IseShigeki Katayama
    • G01R15/00
    • G01R19/2513H02H7/263H02H7/267H04J3/0667
    • According to one embodiment, a measuring device includes a clock output unit, a receiving unit, an adjusting unit, a generating unit, and a transmitting unit. The clock output unit generates a clock, counts the clock, and outputs a count value. The receiving unit receives a first message including time information. The adjusting unit adjusts time at which acquires a physical amount on the basis of the time information included in the first message and the count value output from the clock output unit when the first message is received. The generating unit generates a second message including a value of the physical amount acquired at the adjusted time. The transmitting unit transmits the second message to a device, which is a transmission source of the first message.
    • 根据一个实施例,测量装置包括时钟输出单元,接收单元,调整单元,生成单元和发送单元。 时钟输出单元产生时钟,对时钟进行计数,并输出计数值。 接收单元接收包括时间信息的第一消息。 当接收到第一消息时,调整单元调整基于包括在第一消息中的时间信息获取物理量的时间和从时钟输出单元输出的计数值。 生成单元生成包括在调整时间获取的物理量的值的第二消息。 发送单元将第二消息发送到作为第一消息的发送源的设备。
    • 10. 发明授权
    • Measuring device, protection relay, and program product
    • 测量装置,保护继电器和程序产品
    • US09476922B2
    • 2016-10-25
    • US13231008
    • 2011-09-13
    • Yasuyuki KozakaiKotaro IseShigeki Katayama
    • Yasuyuki KozakaiKotaro IseShigeki Katayama
    • G01R19/25H02H7/26
    • G01R19/2513H02H7/263H02H7/267H04J3/0667
    • According to one embodiment, a measuring device includes a clock output unit, a receiving unit, an adjusting unit, a generating unit, and a transmitting unit. The clock output unit generates a clock, counts the clock, and outputs a count value. The receiving unit receives a first message including time information. The adjusting unit adjusts time at which acquires a physical amount on the basis of the time information included in the first message and the count value output from the clock output unit when the first message is received. The generating unit generates a second message including a value of the physical amount acquired at the adjusted time. The transmitting unit transmits the second message to a device, which is a transmission source of the first message.
    • 根据一个实施例,测量装置包括时钟输出单元,接收单元,调整单元,生成单元和发送单元。 时钟输出单元产生时钟,对时钟进行计数,并输出计数值。 接收单元接收包括时间信息的第一消息。 当接收到第一消息时,调整单元调整基于包括在第一消息中的时间信息获取物理量的时间和从时钟输出单元输出的计数值。 生成单元生成包括在调整时间获取的物理量的值的第二消息。 发送单元将第二消息发送到作为第一消息的发送源的设备。