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    • 4. 发明申请
    • Ribbon identification
    • 丝带识别
    • US20070003350A1
    • 2007-01-04
    • US11510407
    • 2006-08-25
    • Daniel BatemanConnie BowenKevin MooreCharles RansonDennis White
    • Daniel BatemanConnie BowenKevin MooreCharles RansonDennis White
    • B41J33/00
    • B65H75/182B41J31/16B41J35/36
    • A ribbon identification system detects a digitally encoded tract comprised of radially printed bands of dark and light areas positioned on a ribbon spool that fits on a media printing device. Each type and length of ribbon to be used is associated with a specific and unique digitally encoded tract. When the ribbon spool is positioned correctly on the printing device, the digitally encoded tract is detected, and the control program of the printing device sets the parameters associated with that ribbon automatically ensuring proper printing. Through the digitally encoded tract, the ribbon spool is uniquely identified so that once it has been determined by the printing device's control program that the ribbon has been depleted, that ribbon spool, if reinstalled on the same printing device at a later time, will be recognized as a depleted ribbon, and the printing device will not function.
    • 色带识别系统检测由位于配合在介质打印装置上的色带卷轴上的深色和浅色区域的径向印刷带组成的数字编码道。 要使用的每种类型和长度的色带与特定和独特的数字编码道相关联。 当色带卷轴正确地放置在打印设备上时,检测到数字编码的区段,并且打印设备的控制程序设置与该色带相关联的参数,自动确保正确的打印。 通过数字编码的通道,色带卷轴被唯一地识别,使得一旦由打印设备的控制程序确定色带已经耗尽,则如果在稍后的时间重新安装在同一打印设备上的色带卷轴将是 被识别为耗尽的色带,并且打印设备将不起作用。
    • 5. 发明授权
    • Method and apparatus for electrical, mechanical and thermal isolation of superconductive magnets
    • 用于超导磁体的电气,机械和热隔离的方法和装置
    • US08279030B2
    • 2012-10-02
    • US12567765
    • 2009-09-26
    • Devlin BakerDaniel Bateman
    • Devlin BakerDaniel Bateman
    • H01F6/00
    • H01F6/06H01F5/06H01F6/04H01F27/2885H01F27/306
    • A method and apparatus of electrical, mechanical and thermal isolation of superconductive magnet coils includes a superconductive magnet for environments wherein large differences of electrical potential between the interior superconductive winding and the exterior of the device, on the order of 103to 106 Volts may exist. The methods and apparatus also includes insulation, cooling, and structural elements such that the interior of the device is capable of maintaining cryogenic temperatures needed for superconductivity, even in the presence of high heat flux incident on the overall winding housing. Finally, a device includes structural elements for support against gravity and other forces exerted on the assembly that include expansion jointing and stabilization to minimize warping or bending of the assembly due to temperature gradients. These supports include accoutrements for supplying electrical power, cryogenic coolant, and other supply leads to the magnet head, while also being isolated from thermal and electrical effects.
    • 超导磁体线圈的电气,机械和热隔离的方法和装置包括用于环境的超导磁体,其中内部超导绕组和器件的外部之间的电位差可能存在约103至106伏。 所述方法和装置还包括绝缘,冷却和结构元件,使得即使在入射到整个绕组壳体上的高热通量的存在下,器件的内部也能够保持超导性所需的低温。 最后,设备包括用于抵抗重力和施加在组件上的其他力的结构元件,其包括膨胀接合和稳定性,以最小化由于温度梯度而导致的组件翘曲或弯曲。 这些支撑件包括用于提供电力,低温冷却剂和其他供应引线到磁头的配件,同时也与热和电效应隔离。
    • 7. 发明申请
    • Method and Apparatus for Electrical, Mechanical and Thermal Isolation of Superconductive Magnets
    • 超导磁体电气,机械和热隔离的方法和装置
    • US20100085137A1
    • 2010-04-08
    • US12567765
    • 2009-09-26
    • Devlin BakerDaniel Bateman
    • Devlin BakerDaniel Bateman
    • H01F6/06
    • H01F6/06H01F5/06H01F6/04H01F27/2885H01F27/306
    • A method and apparatus of electrical, mechanical and thermal isolation of superconductive magnet coils includes a superconductive magnet for environments wherein large differences of electrical potential between the interior superconductive winding and the exterior of the device, on the order of 103to 106 Volts may exist. The methods and apparatus also includes insulation, cooling, and structural elements such that the interior of the device is capable of maintaining cryogenic temperatures needed for superconductivity, even in the presence of high heat flux incident on the overall winding housing. Finally, a device includes structural elements for support against gravity and other forces exerted on the assembly that include expansion jointing and stabilization to minimize warping or bending of the assembly due to temperature gradients. These supports include accoutrements for supplying electrical power, cryogenic coolant, and other supply leads to the magnet head, while also being isolated from thermal and electrical effects.
    • 超导磁体线圈的电气,机械和热隔离的方法和装置包括用于环境的超导磁体,其中内部超导绕组和器件的外部之间的电位差可能存在大约103至106伏。 所述方法和装置还包括绝缘,冷却和结构元件,使得即使在入射到整个绕组壳体上的高热通量的存在下,器件的内部也能够保持超导性所需的低温。 最后,设备包括用于抵抗重力和施加在组件上的其他力的结构元件,其包括膨胀接合和稳定性,以最小化由于温度梯度而导致的组件翘曲或弯曲。 这些支撑件包括用于提供电力,低温冷却剂和其他供应引线到磁头的配件,同时也与热和电效应隔离。
    • 8. 发明申请
    • Ribbon identification
    • 丝带识别
    • US20060239742A1
    • 2006-10-26
    • US11110138
    • 2005-04-20
    • Daniel BatemanConnie BowenKevin MooreCharles RansonDennis White
    • Daniel BatemanConnie BowenKevin MooreCharles RansonDennis White
    • B41J32/00
    • B65H75/182B41J31/16B41J35/36
    • A ribbon identification system detects a digitally encoded tract comprised of radially printed bands of dark and light areas positioned on a ribbon spool that fits on a media printing device. Each type and length of ribbon to be used is associated with a specific and unique digitally encoded tract. When the ribbon spool is positioned correctly on the printing device, the digitally encoded tract is detected, and the control program of the printing device sets the parameters associated with that ribbon automatically ensuring proper printing. Through the digitally encoded tract, the ribbon spool is uniquely identified so that once it has been determined by the printing device's control program that the ribbon has been depleted, that ribbon spool, if reinstalled on the same printing device at a later time, will be recognized as a depleted ribbon, and the printing device will not function.
    • 色带识别系统检测由位于配合在介质打印装置上的色带卷轴上的深色和浅色区域的径向印刷带组成的数字编码道。 要使用的每种类型和长度的色带与特定和独特的数字编码道相关联。 当色带卷轴正确地放置在打印设备上时,检测到数字编码的区段,并且打印设备的控制程序设置与该色带相关联的参数,自动确保正确的打印。 通过数字编码的通道,色带卷轴被唯一地识别,使得一旦由打印设备的控制程序确定色带已经耗尽,则如果在稍后的时间重新安装在同一打印设备上的色带卷轴将是 被识别为耗尽的色带,并且打印设备将不起作用。