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    • 1. 发明申请
    • HEAT-DISSIPATING DEVICE AND HEAT-DISSIPATING SYSTEM
    • 散热装置和散热系统
    • US20130112377A1
    • 2013-05-09
    • US13430617
    • 2012-03-26
    • Kai-Shing YangChi-Chuan WangKuo-Hsiang Chien
    • Kai-Shing YangChi-Chuan WangKuo-Hsiang Chien
    • F28F1/10F28F13/12
    • H01L23/427H01L2924/0002H05K7/20263H01L2924/00
    • A heat-dissipating device and a heat-dissipating system are provided. The heat-dissipating system includes a driver, a heat-exchanger and a heat-dissipating device. The heat-exchanger is communicated to the driver and includes a body, a hydrophobic membrane and a cover. The body has an inlet, an outlet and a channel. Both ends of the channel exposed on a body's surface are respectively communicated to the inlet and the outlet, the inlet and outlet are communicated respectively to the driver and heat-exchanger. The membrane is disposed on the body's surface and covers the channel. The cover combines with the body and has a chamber and an exhaust port. The membrane separates the channel from the chamber communicated to the exhaust port communicated to the heat-exchanger. The driver drives a working fluid to the heat-dissipating device, and the fluid further goes to the heat-exchanger from the heat-dissipating device and then back to the driver.
    • 提供散热装置和散热系统。 散热系统包括驱动器,热交换器和散热装置。 热交换器被传送到驱动器并且包括主体,疏水膜和盖。 身体有一个入口,一个出口和一个通道。 暴露在身体表面的通道的两端分别连通到入口和出口,入口和出口分别连接到驱动器和热交换器。 膜被设置在身体的表面并覆盖通道。 盖子与身体结合,并具有腔室和排气口。 膜将通道与通向与热交换器连通的排气口的室隔开。 驱动器将工作流体驱动到散热装置,并且流体进一步从散热装置进入热交换器,然后返回到驱动器。
    • 2. 发明授权
    • Two-stage expansion cooling system and evaporator thereof
    • 两级膨胀冷却系统及其蒸发器
    • US08191385B2
    • 2012-06-05
    • US12342117
    • 2008-12-23
    • Chung-Szu WeiJane-Sunn LiawChi-Chuan WangKai-Shing Yang
    • Chung-Szu WeiJane-Sunn LiawChi-Chuan WangKai-Shing Yang
    • F25B39/02
    • F25B39/02F25B41/067F28D1/0383F28F13/08
    • An evaporator, applicable to a two-stage expansion cooling system, is used for receiving a high-pressure liquid working fluid. The evaporator includes a thermal-conductive block having a channel system. The channel system includes a high-pressure channel, a low-pressure channel, and a second stage expansion channel. The second stage expansion channel has an input end and an output end. The input end is communicated with the high-pressure channel. The output end is communicated with the low-pressure channel, and has a cross-sectional area smaller than that of the low-pressure channel. The high-pressure liquid working fluid flows into the thermal-conductive block from the high-pressure channel, and then enters the second stage expansion channel through the input end. A part of the high-pressure liquid working fluid flowing out of the output end expands into a saturated low-pressure liquid working fluid and enters the low-pressure channel.
    • 适用于两级膨胀冷却系统的蒸发器用于接收高压液体工作流体。 蒸发器包括具有通道系统的导热块。 通道系统包括高压通道,低压通道和第二级膨胀通道。 第二级扩展通道具有输入端和输出端。 输入端与高压通道连通。 输出端与低压通道连通,横截面积小于低压通道。 高压液体工作流体从高压通道流入导热块,然后通过输入端进入第二级膨胀通道。 从输出端流出的部分高压液体工作流体膨胀成饱和的低压液体工作流体并进入低压通道。
    • 3. 发明申请
    • TWO-STAGE EXPANSION COOLING SYSTEM AND EVAPORATOR THEREOF
    • 两级膨胀冷却系统及其蒸发器
    • US20100071405A1
    • 2010-03-25
    • US12342117
    • 2008-12-23
    • Chung-Szu WeiJane-Sunn LiawChi-Chuan WangKai-Shing Yang
    • Chung-Szu WeiJane-Sunn LiawChi-Chuan WangKai-Shing Yang
    • F25B1/00F25B39/02
    • F25B39/02F25B41/067F28D1/0383F28F13/08
    • An evaporator, applicable to a two-stage expansion cooling system, is used for receiving a high-pressure liquid working fluid. The evaporator includes a thermal-conductive block having a channel system. The channel system includes a high-pressure channel, a low-pressure channel, and a second stage expansion channel. The second stage expansion channel has an input end and an output end. The input end is communicated with the high-pressure channel. The output end is communicated with the low-pressure channel, and has a cross-sectional area smaller than that of the low-pressure channel. The high-pressure liquid working fluid flows into the thermal-conductive block from the high-pressure channel, and then enters the second stage expansion channel through the input end. A part of the high-pressure liquid working fluid flowing out of the output end expands into a saturated low-pressure liquid working fluid and enters the low-pressure channel.
    • 适用于两级膨胀冷却系统的蒸发器用于接收高压液体工作流体。 蒸发器包括具有通道系统的导热块。 通道系统包括高压通道,低压通道和第二级膨胀通道。 第二级扩展通道具有输入端和输出端。 输入端与高压通道连通。 输出端与低压通道连通,横截面积小于低压通道。 高压液体工作流体从高压通道流入导热块,然后通过输入端进入第二级膨胀通道。 从输出端流出的部分高压液体工作流体膨胀成饱和的低压液体工作流体并进入低压通道。
    • 6. 发明授权
    • Video system with de-motion-blur processing
    • 具有去运动模糊处理的视频系统
    • US07262818B2
    • 2007-08-28
    • US10749564
    • 2004-01-02
    • Chun-Hsiung ChuangChien-Hsun ChengShih-Sung WenChi-Chuan Wang
    • Chun-Hsiung ChuangChien-Hsun ChengShih-Sung WenChi-Chuan Wang
    • H04N3/14G09G5/39G06F13/18G06K9/40
    • G06T5/003G06T5/50G06T2207/10016G06T2207/20201H04N7/0112H04N7/012
    • A video system that performs TV signal decoding, deinterlacing, and de-motion-blurring for progressive scan flat panel display is introduced. The system embeds a frame buffer and a scaler for conducting format and resolution conversions for display panels of different sizes. The output of the scaler is sent to a de-motion-blur processor for reducing the blurriness due to the motion of image objects and the slow response time of flat panel display devices. The de-motion-blur processor gets the motion and noise indication signal from scaler or the pre-frame-buffer video processor. Based on the motion and noise information and the information of temporal difference, the de-motion-blur processor performs over driving for the display panel interface and improves the rising and falling response time of the flat panel display. The decoding, deinterlacing, and de-motion-blur processing share the same frame buffer controller so the entire system can be optimized in cost and performance.
    • 介绍了对逐行扫描平板显示器执行电视信号解码,去隔行扫描和去运动模糊的视频系统。 该系统嵌入一个帧缓冲区和一个缩放器,用于对不同大小的显示面板进行格式和分辨率转换。 定标器的输出被发送到去运动模糊处理器,以减少由于图像对象的运动引起的模糊和平板显示设备的响应时间慢。 去运动模糊处理器从缩放器或预帧缓冲器视频处理器获取运动和噪声指示信号。 基于运动噪声信息和时间差异信息,去运动模糊处理器对显示面板接口执行过驱动,并且改善了平板显示器的上升和下降响应时间。 解码,去隔行和去运动模糊处理共享相同的帧缓冲控制器,从而可以在成本和性能上优化整个系统。
    • 7. 发明申请
    • HEAT EXCHANGER
    • 热交换器
    • US20120292004A1
    • 2012-11-22
    • US13112949
    • 2011-05-20
    • Ing-Youn ChenJhong-Syuan TsaiChi-Chuan Wang
    • Ing-Youn ChenJhong-Syuan TsaiChi-Chuan Wang
    • F28F9/02
    • F28F9/0273F24S10/742F24S80/30F28D1/05316Y02E10/44
    • A heat exchanger includes: an inlet header tube including opposite first and second ends and an inner space formed between the first and second ends; an outlet header tube parallel to the inlet header tube; a plurality of heat exchange tubes transversely extending between and fluidly connected to the inlet and outlet header tubes, each of the heat exchange tubes having a connecting end connected to the inlet header tube; and a baffle tube inserted into the inner space of the inlet header tube. The baffle tube has an open end proximate to the first end, a closed end proximate to the second end, and a plurality of orifices disposed between the open and closed ends to fluidly intercommunicate the inner space of the inlet header tube and the baffle tube. Each of the orifices is disposed in alignment with the connecting end of one of the heat exchange tubes.
    • 一种热交换器包括:入口集管,其包括相对的第一和第二端以及形成在第一和第二端之间的内部空间; 平行于入口集管的出口集管; 多个热交换管横向延伸并且与入口和出口总管流体连接,每个热交换管具有连接到入口集管的连接端; 以及插入到入口集管的内部空间中的挡板。 挡板管具有靠近第一端的开口端,靠近第二端的封闭端,以及设置在开放端和闭合端之间的多个孔,以使入口集管和挡板管的内部空间流体连通。 每个孔都设置成与一个热交换管的连接端对准。
    • 8. 发明申请
    • Video system with de-motion-blur processing
    • 具有去运动模糊处理的视频系统
    • US20050162566A1
    • 2005-07-28
    • US10749564
    • 2004-01-02
    • Chun-Hsiung ChuangChien-Hsun ChengShih-Sung WenChi-Chuan Wang
    • Chun-Hsiung ChuangChien-Hsun ChengShih-Sung WenChi-Chuan Wang
    • G06T5/00H04N5/44H04N9/12H04N5/66
    • G06T5/003G06T5/50G06T2207/10016G06T2207/20201H04N7/0112H04N7/012
    • A video system that performs TV signal decoding, deinterlacing, and de-motion-blurring for progressive scan flat panel display is introduced. The system embeds a frame buffer and a scaler for conducting format and resolution conversions for display panels of different sizes. The output of the scaler is sent to a de-motion-blur processor for reducing the blurriness due to the motion of image objects and the slow response time of flat panel display devices. The de-motion-blur processor gets the motion and noise indication signal from scaler or the pre-frame-buffer video processor. Based on the motion and noise information and the information of temporal difference, the de-motion-blur processor performs over driving for the display panel interface and improves the rising and falling response time of the flat panel display. The decoding, deinterlacing, and de-motion-blur processing share the same frame buffer controller so the entire system can be optimized in cost and performance.
    • 介绍了对逐行扫描平板显示器执行电视信号解码,去隔行扫描和去运动模糊的视频系统。 该系统嵌入一个帧缓冲区和一个缩放器,用于对不同大小的显示面板进行格式和分辨率转换。 定标器的输出被发送到去运动模糊处理器,以减少由于图像对象的运动引起的模糊和平板显示设备的响应时间慢。 去运动模糊处理器从缩放器或预帧缓冲器视频处理器获取运动和噪声指示信号。 基于运动噪声信息和时间差异信息,去运动模糊处理器对显示面板接口执行过驱动,并且改善了平板显示器的上升和下降响应时间。 解码,去隔行和去运动模糊处理共享相同的帧缓冲控制器,从而可以在成本和性能上优化整个系统。