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    • 3. 发明授权
    • Cooling device for electronic apparatus
    • 电子设备冷却装置
    • US07420807B2
    • 2008-09-02
    • US10524770
    • 2003-08-18
    • Kazuyuki MikuboSakae KitajoYasuhiro SasakiAtsushi OchiMitsuru Yamamoto
    • Kazuyuki MikuboSakae KitajoYasuhiro SasakiAtsushi OchiMitsuru Yamamoto
    • H05K7/20
    • H01L23/473G06F1/20H01L23/467H01L2924/0002H01L2924/00
    • The present invention provides a cooling apparatus which is easy to build and to fix it to electronic devices, superior in thermal conduction and heat dissipation, and possible to make thin the total configuration of the apparatus. The liquid cooling unit 9 and the air cooling unit 12 are formed in a unit. A heat absorption surface 19 of the liquid cooling unit 9 is contacted or bonded to the heat generation component such as the CPU and the heat generator, which have the largest power consumption and also locally generate heat within a small area in the box 2. In the liquid cooling unit 9, a liquid cooling pump 14 composed of an electromagnetic pump is arranged for circulating the coolant in the flow path 10. The heat generated by the heat generation components such as CPU 6, heat generator 7, and the like is thermally diffused with heat conduction into the whole liquid cooling unit 9 by circulating the coolant with the liquid cooling pump 14.
    • 本发明提供了一种易于构建并将其固定在电子设备上的散热装置,其热传导和散热优良,并且可以使装置的总体构型变薄。 液体冷却单元9和空气冷却单元12形成为一个单元。 液体冷却单元9的吸热表面19接触或结合到具有最大功率消耗的CPU和热发生器等发热组件,并且还在箱体2的小区域内局部地产生热量。 在液体冷却单元9中,布置有由电磁泵组成的液体冷却泵14,用于使冷却剂在流路10中循环。 由CPU 6,发热体7等发热部件产生的热量,通过使冷却液与液体冷却泵14循环,热传导到整个液体冷却单元9。
    • 5. 发明申请
    • Cooling device for electronic apparatus
    • 电子设备冷却装置
    • US20050231914A1
    • 2005-10-20
    • US10524770
    • 2003-08-18
    • Kazuyuki MikuboSakae KitajoYasuhiro SasakiAtsushi OchiMitsuru Yamamoto
    • Kazuyuki MikuboSakae KitajoYasuhiro SasakiAtsushi OchiMitsuru Yamamoto
    • G06F1/20H01L23/467H01L23/473H05K7/20
    • H01L23/473G06F1/20H01L23/467H01L2924/0002H01L2924/00
    • The present invention provides a cooling apparatus which is easy to build and to fix it to electronic devices, superior in thermal conduction and heat dissipation, and possible to make thin the total configuration of the apparatus. The liquid cooling unit 9 and the air cooling unit 12 are formed in a unit. A heat absorption surface 19 of the liquid cooling unit 9 is contacted or bonded to the heat generation component such as the CPU and the heat generator, which have the largest power consumption and also locally generate heat within a small area in the box 2. In the liquid cooling unit 9, a liquid cooling pump 14 composed of an electromagnetic pump is arranged for circulating the coolant in the flow path 10. The heat generated by the heat generation components such as CPU 6, heat generator 7, and the like is thermally diffused with heat conduction into the whole liquid cooling unit 9 by circulating the coolant with the liquid cooling pump 14.
    • 本发明提供了一种易于构建并将其固定在电子设备上的散热装置,其热传导和散热优良,并且可以使装置的总体构型变薄。 液体冷却单元9和空气冷却单元12形成为一个单元。 液体冷却单元9的吸热表面19接触或结合到功率消耗最大的诸如CPU和发热体的发热组件,并且还在箱2中的小区域内局部产生热量。 液体冷却单元9,由电磁泵构成的液体冷却泵14布置成使冷却剂在流路10中循环。由诸如CPU 6,发热体7等的发热组件产生的热量是热的 通过使液体冷却泵14循环冷却剂,将热传导到整个液体冷却单元9中。
    • 6. 发明授权
    • Multicolor image forming material
    • 多色成像材料
    • US06699634B2
    • 2004-03-02
    • US10455626
    • 2003-06-06
    • Mitsuru Yamamoto
    • Mitsuru Yamamoto
    • G03F734
    • B41M5/52B41M5/345B41M5/392B41M5/395B41M5/5254B41M5/529Y10S430/165
    • A multicolor image forming material comprising: an image-receiving sheet comprising an image-receiving layer; and at least four thermal transfer sheets differing in color each comprising a support, a light-to-heat conversion layer and an image-forming layer, wherein the image forming material is used for recording a multicolor image by superposing the image-forming layer of each thermal transfer sheet and the image-receiving layer to face each other, irradiating laser light and transferring a region irradiated with the laser light of the image-forming layer onto the image-receiving layer, and at least one layer selected from the image-receiving layer and the image-forming layers comprises, as a fluorine-containing surfactant, a copolymer (I) comprising following repeating units (A), (B) and (C) as defined herein.
    • 一种多色图像形成材料,包括:图像接收片,其包括图像接收层; 以及至少四个不同颜色的热转印片,每个热转印片包括支撑体,光热转换层和图像形成层,其中图像形成材料用于通过将图像形成层 每个热转印片和图像接收层彼此面对,照射激光并将图像形成层的激光照射的区域转印到图像接收层上,以及从图像接收层中选择的至少一个层, 接收层和图像形成层包含作为含氟表面活性剂的包含如本文所定义的以下重复单元(A),(B)和(C)的共聚物(I)。
    • 9. 发明授权
    • Node device used in network system for packet communication, network
system using such node devices, and communication method used therein
    • 在网络系统中使用的用于分组通信的节点设备,使用这种节点设备的网络系统及其中使用的通信方法
    • US5848059A
    • 1998-12-08
    • US677425
    • 1996-07-02
    • Mitsuru Yamamoto
    • Mitsuru Yamamoto
    • H04B10/27H04B10/272H04B10/275H04B10/291H04J14/00H04J14/02H04L12/28H04L12/42H04L12/70
    • H04L12/42H04J14/0227H04J14/0241H04L12/2852H04J14/0283
    • A node device for performing packet communication using a transmission line composed of a plurality of channels is connectable to a network having a plurality of node devices, each of the plurality of node devices connecting the transmission line to a sub-transmission line. The node device a has packet processor for processing a packet, first, second, and third devices for outputting a packet, a memory device and a transmitter. The first device corresponds to each of the plurality of channels and outputs a packet input on a predetermined one of the plurality of channels to a side of the sub-transmission line or a side of the transmission line. The second device corresponds to each of the plurality of channels and outputs a packet transmitted through the sub-transmission line to the transmission line side or the packet processor side. The third device outputs a packet supplied thereto from the packet processor to the sub-transmission line side. The memory device corresponds to each of first and second devices, and temporarily stores a packet output from each of the first and second devices. The transmitter transmits outputs from the memory device in channels different from each other.
    • 用于使用由多个信道组成的传输线执行分组通信的节点设备可连接到具有多个节点设备的网络,所述多个节点设备中的每一个将传输线路连接到子传输线路。 节点设备a具有用于处理分组的分组处理器,用于输出分组的第一,第二和第三设备,存储设备和发射机。 第一设备对应于多个信道中的每一个,并将在多个信道中的预定一个信道上输入的分组输出到子传输线的一侧或传输线的一侧。 第二设备对应于多个信道中的每一个,并将通过子传输线路传输的分组输出到传输线路侧或分组处理器侧。 第三设备将从分组处理器提供的分组输出到子传输线侧。 存储装置对应于第一和第二装置中的每一个,并临时存储从第一和第二装置中的每一个输出的分组。 发射机以不同的通道传输来自存储装置的输出。
    • 10. 发明授权
    • Network system connecting node devices with plural channels, node device
used therein, and transmission control method therefor
    • 连接具有多个信道的节点设备的网络系统,其中使用的节点设备及其传输控制方法
    • US5828669A
    • 1998-10-27
    • US636332
    • 1996-04-23
    • Mitsuru Yamamoto
    • Mitsuru Yamamoto
    • H04J14/00H04B10/27H04B10/275H04B10/291H04J14/02H04L12/42H04L12/70H04Q11/00H04J14/04
    • H04J14/0227H04J14/0241H04Q11/0005H04Q11/0062H04J14/0283H04Q11/0066H04Q11/0071H04Q2011/0009H04Q2011/0011H04Q2011/0015H04Q2011/0018H04Q2011/0039H04Q2011/0052H04Q2011/0086H04Q2011/0092
    • A network system for effecting signal transmission by connecting node devices with at least plural N channels is disclosed. It includes a first node device constituting at least a node device and having: N fixed-channel reception units for receiving the N channels; N buffers for temporarily storing signals received by the N fixed-channel reception units, wherein a buffer of the N buffers divides the received signals into first signals with designation of a channel for transmission and second signals without designation of a channel for transmission and further divides the first signals in respective designate channels; transmission units for transmitting the first and second signals released from the N buffers in the N channels; an end detection unit for detecting an end of reading of the first and second signals to be transmitted by channels currently capable of transmission; a channel variation control unit for controlling the transmission unit to vary the channels capable of transmitting released signals from the N buffers, in response to a detection of the end of reading by the end detection unit such that the released signals from two or more of the N buffers are not simultaneously supplied to a same channel; and a buffer control unit for controlling the N buffers, in synchronization with a variation of the channels capable of transmitting the released signals from the N buffers, to read the first and second signals be based on the variation of the channels.
    • 公开了一种通过连接具有至少多个N个信道的节点设备来实现信号传输的网络系统。 它包括构成至少一个节点设备的第一节点设备,并具有:用于接收N个信道的N个固定信道接收单元; N个缓冲器,用于临时存储由N个固定信道接收单元接收的信号,其中N个缓冲器的缓冲器将接收到的信号分为第一个信号,指定用于传输的信道和第二个信号,而不指定用于传输的信道,并进一步划分 各个指定通道中的第一个信号; 发送单元,用于发送在N个信道中从N个缓冲器释放的第一和第二信号; 结束检测单元,用于检测当前能够传输的信道要发送的第一和第二信号的读取结束; 响应于所述结束检测单元的读取结束的检测使得所述发送单元中的两个或更多个的释放信号被发送,所述信道变化控制单元用于控制所述发送单元改变能够从所述N个缓冲器发送释放信号的信道, N个缓冲器不能同时提供给同一个通道; 以及缓冲器控制单元,用于与能够从N个缓冲器发送释放的信号的信道的变化同步地控制N个缓冲器,以基于信道的变化来读取第一和第二信号。