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    • 4. 发明申请
    • Cooling assembly comprising micro-jets
    • 包括微型喷射器的冷却组件
    • US20060164805A1
    • 2006-07-27
    • US10545987
    • 2004-02-09
    • Erwin MeindersCeline Nicole
    • Erwin MeindersCeline Nicole
    • H05K7/20
    • H01L23/4735H01L2924/0002H01L2924/00
    • The present invention relates to a cooling assembly (100) for cooling a heat source (2), in particular electronic components 7, with a coolant (C). To achieve a high coolant efficiency enabling the cooling of high heat fluxes, and in order to avoid the occurrence of free circulation areas in the cooling channel, but obtaining a microscopic transport of cooling through the cooling channel, a cooling assembly is proposed according to the present invention comprising: a plurality of micro jets (1) adapted to eject the coolant (C) onto the heat source (2) in response to a control signal, and a controller (15) adapted to control the ejection of the coolant (C) from the micro jets (1) in a sweep mode in which the micro jets (1) eject the coolant (C) subsequently. Preferably, the micro jets are arranged forming an array and are forced by forcing means (13, 14) to induce velocity perturbations of the coolant.
    • 本发明涉及一种用于用冷却剂(C)冷却热源(2),特别是电子部件7的冷却组件(100)。 为了实现高冷却效率,能够冷却高热通量,并且为了避免在冷却通道中产生自由循环区域,但是通过冷却通道获得微小的冷却输送,根据 本发明包括:多个适于将冷却剂(C)响应于控制信号喷射到热源(2)上的微型喷嘴(1),以及适于控制冷却剂(C ),其中微型喷嘴(1)随后喷射冷却剂(C)的扫射模式。 优选地,微型射流被布置成形成阵列并且被强制装置(13,14)强迫以引起冷却剂的速度扰动。
    • 7. 发明申请
    • Server for routing connection to client device
    • 用于将连接路由到客户端设备的服务器
    • US20060146655A1
    • 2006-07-06
    • US10562899
    • 2004-06-30
    • Erwin Meinders
    • Erwin Meinders
    • G11B11/00
    • G11B7/263G11B7/261G11B9/14G11B9/1409G11B9/1472
    • The present invention relates to a device and a corresponding method for making a master record carrier (60) for use in making a stamper (64) for making replicated read-only optical record carriers (90). Rather than using irradiation with photons or electrons, it is proposed to make use of thermal-mechanical deformation of a thin organic layer in the record carrier. Therefore, the device according to the invention comprises: a recording head (1) for recording information in an information layer (62) of a master record carrier (60), said recording head (1) including a heatable tip (2) which can be displaced in at least one direction, a displacement means (3, 5, 6, 9) for displacing said tip (2) in the at least one direction, a heating means (7) for heating said tip (2) and a control unit (8) for controlling said heating means and said displacement means such that for recording a mark said tip is heated and displaced to be in contact with said information layer causing an indentation therein.
    • 本发明涉及一种用于制造用于制造用于制造复制的只读光学记录载体(90)的压模(64)的主记录载体(60)的装置和相应方法。 不是使用光子或电子的照射,而是建议利用记录载体中薄的有机层的热机械变形。 因此,根据本发明的装置包括:用于在主记录载体(60)的信息层(62)中记录信息的记录头(1),所述记录头(1)包括可加热尖端(2) 在至少一个方向上移位位移装置(3,5,6,9),用于在至少一个方向上移动所述尖端(2);加热装置(7),用于加热所述尖端(2)和控制 用于控制所述加热装置和所述位移装置的单元(8),使得用于记录标记,所述尖端被加热和移位以与所述信息层接触,从而在其中形成凹陷。
    • 9. 发明申请
    • Additional data channel in pregroove
    • pregroove中的附加数据通道
    • US20060114765A1
    • 2006-06-01
    • US10540703
    • 2003-12-04
    • Erwin MEINDERS
    • Erwin MEINDERS
    • G11B7/00G11B5/09
    • G11B7/00745G11B7/007G11B27/24G11B27/3027
    • A record carrier is described for recording information by writing marks in a track. The record carrier has a pregroove (14) indicating the position of the track. The pregroove exhibits a wobble and in addition thereto a pregroove modulation (13) constituted by variations of a physical parameter related to the shape of the pregroove, e.g. width or depth. The marks are detectable during scanning the track via a beam of radiation by a first type of variations of the radiation, e.g. by changes of reflected radiation. The pregroove modulation (13) is also detectable by variations of said first type, whereas the wobble is detectable during said scanning by a second type of variations of the radiation.
    • 描述了通过在轨道中写入标记来记录信息的记录载体。 记录载体具有指示轨道的位置的预槽(14)。 预制槽表现出摆动,并且还包括由与预制槽的形状相关的物理参数的变化构成的预制槽调制(13)。 宽度或深度。 通过辐射的第一类型的变化,例如通过辐射束扫描轨道期间可以检测标记。 通过反射辐射的变化。 预调制调制(13)也可以通过所述第一类型的变化来检测,而在所述扫描期间可通过第二种类型的辐射变化来检测摆动。