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    • 22. 发明授权
    • Direct memory access control system with byte/word control of data bus
    • 直接存储器访问控制系统,具有数据总线的字节/字控制
    • US4271466A
    • 1981-06-02
    • US962647
    • 1978-11-21
    • Mitsuru YamamotoJun AraiTakao IsogawaIsamu Hasebe
    • Mitsuru YamamotoJun AraiTakao IsogawaIsamu Hasebe
    • G06F13/28G06F13/00
    • G06F13/28
    • A direct memory access control (DMAC) system, in a data processing system, includes at least a central processing unit and a memory, the memory being capable of storing and providing data in any one of several predetermined formats. A plurality of input/output control ports, each connecting a respective input/output device to a common data bus, control data transfer in either direction between the device and the memory. A direct memory access control unit is connected to the common data bus for receiving an access request signal from any of the plurality of input/output control ports, and is connected to the memory for providing thereto, in response to the access request signal, instructions at least as to the size and desired format of the data transfer. A bus switching unit connects the common data bus to the memory, and is connected to the direct memory access control unit for receiving the instructions. The bus switching unit is responsive to the direct memory access control unit for interfacing the memory to the common data bus in such a manner as to cause the data transfer to be of the desired format.
    • 数据处理系统中的直接存储器访问控制(DMAC)系统至少包括中央处理单元和存储器,该存储器能够存储和提供数种预定格式的任何一种。 多个输入/输出控制端口,每个输入/输出控制端口将相应的输入/输出设备连接到公共数据总线,在设备和存储器之间的任一方向上控制数据传输。 直接存储器访问控制单元连接到公共数据总线,用于从多个输入/输出控制端口中的任何一个接收访问请求信号,并且连接到存储器以响应于访问请求信号提供指令 至少对于数据传输的大小和期望的格式。 总线切换单元将公共数据总线连接到存储器,并且连接到用于接收指令的直接存储器访问控制单元。 总线切换单元响应于直接存储器访问控制单元,用于将存储器与公用数据总线接口,以使得数据传输成为期望的格式。
    • 23. 发明授权
    • Liquid-cooled heat radiator
    • 液冷散热器
    • US08081460B2
    • 2011-12-20
    • US12087879
    • 2007-01-23
    • Tomotaka IshidaMitsuru YamamotoSakae KitajoKazuhiro Kumakura
    • Tomotaka IshidaMitsuru YamamotoSakae KitajoKazuhiro Kumakura
    • H05K7/20
    • H01L23/473G06F1/20G06F2200/201H01L2924/0002H05K7/20272H01L2924/00
    • A liquid-cooled heat radiator 1 includes a heat radiation base 2 having a cooling-liquid channel 5, and an expansion tank 7 provided on the heat radiation base 2. The expansion tank 7 has a tank body 26 having an expanded portion 27, which expands upward and opens downward, and a bottom plate 28 joined to the lower end of the tank body 26 to thereby close a bottom opening of the expanded portion 27. A through-hole 29 is formed in the top wall of the expanded portion 27 of the tank body 26 and serves as a communication section for establishing communication between the interior and the exterior of the cooling-liquid channel 5. A hydrogen-permeable member 31 is fixedly fitted into the through-hole 29 so as to stop the through-hole 29. The hydrogen-permeable member 31 satisfies the relation B≧50 A, where A and B are water-vapor permeability and hydrogen permeability, respectively, of the hydrogen-permeable member 31. The hydrogen-permeable member 31 is formed from a single material selected from the group consisting of ethylene-propylene rubber, butyl rubber, fluorine-containing rubber, nitrile-butadiene rubber, and silicone rubber. The liquid-cooled heat radiator 1 can be free from an increase in pressure in the cooling-liquid channel 5.
    • 液冷散热器1包括具有冷却液通道5的散热基座2和设置在散热基座2上的膨胀箱7.膨胀箱7具有一个具有膨胀部分27的罐体26, 向下方膨胀,向下方开口的底板28与罐体26的下端接合,从而封闭膨胀部27的底部开口。在扩孔部27的顶壁形成有通孔29, 罐本体26构成用于建立冷却液通道5的内部和外部之间的连通的连通部。通气部件31固定地配合在通孔29中,以便停止通孔 氢渗透性构件31满足B≥A≥AA的关系,其中A和B分别是透水性构件31的水蒸气渗透性和透氢性。透氢性构件31由单一的 材料sele 由乙烯 - 丙烯橡胶,丁基橡胶,含氟橡胶,丁腈橡胶和硅橡胶组成的组中。 液冷散热器1可以没有冷却液通道5中的压力增加。
    • 26. 发明申请
    • Cooler for electronic equipment
    • 冷却器用于电子设备
    • US20070006996A1
    • 2007-01-11
    • US10562362
    • 2004-06-25
    • Kazuyuki MikuboSakae KitajoAtsushi OchiMitsuru Yamamoto
    • Kazuyuki MikuboSakae KitajoAtsushi OchiMitsuru Yamamoto
    • F28D15/00
    • G06F1/203G06F2200/201
    • [Object] A cooling device for a thin electronic equipment having a larger heat radiation area and preventing leakage of refrigerant. [Means for Solving Problems] A cooling device includes first and second cooling panels (1, 2) wherein a passage (11, 21) is formed by bonding together a top heat radiation panel and a bottom heat radiation panel each having a groove therein, and a circulation pump (3) for circulating refrigerant within the passage (11, 21). In the top heat radiation panel of the second cooling panel (2) are formed an outlet port through which the refrigerant flows out from the passage (21) to the circulation pump (3) and an inlet port through which the refrigerant flows in from the circulation pump (3) to the passage (21). The circulation pump (3) is fixed onto the top heat radiation plate of the cooling panel (2) so that the suction port and discharge port are aligned with the outlet port and inlet port, respectively.
    • 用于薄型电子设备的冷却装置具有较大的散热面积并防止制冷剂泄漏。 解决问题的手段冷却装置包括第一和第二冷却板(1,2),其中通过将顶部散热板和每个在其中具有凹槽的底部散热板粘合在一起而形成通道(11,21) 以及用于使制冷剂在通道(11,21)内循环的循环泵(3)。 在第二冷却板(2)的顶部散热板中形成有一个出口,制冷剂通过该出口从通道(21)流出到循环泵(3)和制冷剂从其中流入的入口 循环泵(3)到通道(21)。 循环泵(3)固定在冷却板(2)的顶部散热板上,使得吸入口和排出口分别与出口和入口对准。
    • 29. 发明申请
    • Multi-color image forming method
    • US20060013632A1
    • 2006-01-19
    • US10498934
    • 2002-12-17
    • Akihiro ShimomuraMitsuru YamamotoShinichi Yoshinari
    • Akihiro ShimomuraMitsuru YamamotoShinichi Yoshinari
    • B41J2/315
    • B41M5/52B41M5/345B41M5/38207B41M5/38257
    • A multi-color image-forming process is provided, which comprises a step of transferring an image to an image-receiving sheet by irradiating a heat transfer sheet with laser light in a recording device provided with a recording drum to form the image on the image-receiving sheet, wherein (a) the heat trasfer sheet comprises a image forming layer having Rz of the surface of 0.5 to 2.5 μm, the image-receiving sheet comprises a image-receiving layer having Rz of the surface of 0.5 to 1.5 μm, the image-receiving sheet has a longitudinal thermal shrinkage of 1.0% or less, the image-receiving sheet has a crosswise thermal shrinkage of 1.0% or less, and the a multi-color image-forming process comprises a step of retransferring the image which has been transferred to the image-receiving sheet to a final image carrier, the retransferring is effected using a pair of heated rolls each having a diameter ranging from 50 mm to 350 mm wherein the temperature of the various rolls are set to from 80° C. to 250° C.; (b) wherein the multi-color image-forming process comprises a step of cleaning a surface of the heat transfer sheet and a surface of the image-receiving sheet by bringing the heat transfer sheet and the image-receiving sheet into contact with a pressure-sensitive adhesive roller having a pressure-sensitive adhesive material on a surface of the roll, the pressure-sensitive adhesive roller being provided either at a section where the heat transfer sheet is fed or transported, or at a section where the image-receiving sheet is fed or transported, the pressure-sensitive adhesive roller has a pressure-sensitive adhesive material having a hardness (JIS-A) of 15 to 90, the heat transfer sheet comprises a image-forming layer having a Smoothster value of 1.0 to 20 mmHg (0.13 to 2.7 kPa), and the image-receiving layer has a surface having a Smoothster value of 0.5 to 30 mmHg (0.07 to 4.0 kPa); or (c) both the longitudinal stiffness (Msr) and the crosswise stiffness (Tsr) of the image-receiving sheet are from 40 to 90 g, Msr/Tsr is from 0.75 to 1.20, the surface roughness of the aforesaid recording drum and image-receiving layer each are from 0.01 to 12 μm as calculated in terms of Rz, and the diameter of the aforesaid recording drum is 250 mm or more.