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    • 2. 发明申请
    • Cooling apparatus with a mesh structure
    • 具有网状结构的冷却装置
    • US20060093474A1
    • 2006-05-04
    • US11019176
    • 2004-12-23
    • Jin-Shu HuangShang-Hsuang WuNien-Hui Hsu
    • Jin-Shu HuangShang-Hsuang WuNien-Hui Hsu
    • F04D29/56
    • F04D29/4206
    • A cooling apparatus with a mesh structure for cooling a lampwick of a projector. The cooling apparatus includes a blower, an adjustable air duct disposed at an outlet of the blower. The adjustable air duct further includes an air duct portion, a guiding portion, and a mesh structure. The blower blows cooling air to the air duct that is directly formed on the blower or installed on the blower with a separate air duct. The guiding portion is configured at an outlet of the air duct. The mesh structure couples to the guiding portion to move a lower portion of the guiding portion by gravity so that most part of the cooling air is blown to the lampwick through an upper portion of the guiding portion.
    • 一种具有用于冷却投影仪的灯泡的网状结构的冷却装置。 冷却装置包括鼓风机,设置在鼓风机出口处的可调风道。 可调节风道还包括空气管道部分,引导部分和网状结构。 吹风机将冷却空气吹送到直接形成在鼓风机上的空气管道上,或者用单独的风道将风机安装在鼓风机上。 引导部分配置在风道的出口处。 网格结构与引导部分相连,通过重力移动引导部分的下部,使得大部分冷却空气通过导引部分的上部被吹送到灯泡。
    • 3. 发明授权
    • Cooling apparatus with a mesh structure
    • 具有网状结构的冷却装置
    • US07179048B2
    • 2007-02-20
    • US11019176
    • 2004-12-23
    • Jin-Shu HuangShang-Hsuang WuNien-Hui Hsu
    • Jin-Shu HuangShang-Hsuang WuNien-Hui Hsu
    • F04D29/46
    • F04D29/4206
    • A cooling apparatus with a mesh structure for cooling a lampwick of a projector. The cooling apparatus includes a blower, an adjustable air duct disposed at an outlet of the blower. The adjustable air duct further includes an air duct portion, a guiding portion, and a mesh structure. The blower blows cooling air to the air duct that is directly formed on the blower or installed on the blower with a separate air duct. The guiding portion is configured at an outlet of the air duct. The mesh structure couples to the guiding portion to move a lower portion of the guiding portion by gravity so that most part of the cooling air is blown to the lampwick through an upper portion of the guiding portion.
    • 一种具有用于冷却投影仪的灯泡的网状结构的冷却装置。 冷却装置包括鼓风机,设置在鼓风机出口处的可调风道。 可调节风道还包括空气管道部分,引导部分和网状结构。 吹风机将冷却空气吹送到直接形成在鼓风机上的空气管道上,或者用单独的风道将风机安装在鼓风机上。 引导部分配置在风道的出口处。 网格结构与引导部分相连,通过重力移动引导部分的下部,使冷却空气的大部分通过引导部分的上部被吹向灯泡。
    • 7. 发明申请
    • Projecting device
    • 投影设备
    • US20080304020A1
    • 2008-12-11
    • US12075851
    • 2008-03-14
    • Nien-Hui HsuShang-Hsuang WuPel-Yu Wu
    • Nien-Hui HsuShang-Hsuang WuPel-Yu Wu
    • G03B21/16
    • G03B21/16
    • A projecting device includes a casing, an optical engine, and a heat-dissipating mechanism. The casing includes a lower casing body and an upper casing body covering the lower casing body. The optical engine is disposed in the casing, and includes a light source module. The heat-dissipating mechanism includes a first blower disposed uprightly in the casing and adjacent to one side of the light source module for driving airflow to cool the light source module and the casing. The first blower has a thickness greater than one half of a length thereof and greater than one half of a width thereof. With the arrangement of the first blower, a sufficient amount of airflow is provided to the system to improve the heat-dissipating effect and to enhance system reliability.
    • 投影装置包括壳体,光学引擎和散热机构。 壳体包括下壳体和覆盖下壳体的上壳体。 光引擎设置在壳体中,并且包括光源模块。 散热机构包括:第一鼓风机,其竖立地设置在壳体中并且邻近光源模块的一侧,用于驱动气流以冷却光源模块和壳体。 第一鼓风机的厚度大于其长度的一半并且大于其宽度的一半。 利用第一鼓风机的布置,向系统提供足够的气流以改善散热效果并提高系统的可靠性。
    • 8. 发明授权
    • Cooling apparatus for projector casing
    • 投影机外壳冷却装置
    • US06742899B1
    • 2004-06-01
    • US10249474
    • 2003-04-14
    • Shang-Hsuang WuNien-Hui Hsu
    • Shang-Hsuang WuNien-Hui Hsu
    • G03B2116
    • G03B21/16
    • The present invention comprises a lamp holder with a lamp inside a casing; at least one guiding surface at the lower edge proximate one side of the lamp holder; a ventilation outlet disposed on the lamp holder at a position corresponding to one side of the guiding surface proximate the casing; an upper sheet at the top of the lamp holder keeping a specific distance from the casing to define an upper air duct; a lower sheet at the bottom of the lamp holder keeping a specific distance from the casing to define a lower air duct and connecting to the guiding surface. A fan proximate one side of the guiding surface for blowing the air through the lamp holder and the upper and lower air ducts, then discharge the hot air from the ventilation outlet for the heat dispersion. Therefore, this invention reducing the temperature of the lamp which near the casing.
    • 本发明包括一个在灯壳内部具有灯的灯座; 在靠近灯座的一侧的下边缘处的至少一个引导表面; 通风出口,其布置在所述灯座上的与所述引导表面的靠近所述壳体的一侧相对应的位置; 在灯座顶部的上片与壳体保持一定距离,以限定上部空气管道; 在灯座底部保持与壳体相距一定距离的下片,以限定下风道并连接到引导表面。 靠近引导表面一侧的风扇,用于吹出空气通过灯座和上,下风道,然后从通风出口排出热空气用于散热。 因此,本发明降低了套管附近的灯的温度。
    • 9. 发明授权
    • Cooling device for projector
    • 投影机冷却装置
    • US06739831B2
    • 2004-05-25
    • US10064187
    • 2002-06-20
    • Nien-Hui HsuBor-Bin ChouShang-Hsuang Wu
    • Nien-Hui HsuBor-Bin ChouShang-Hsuang Wu
    • F04D1312
    • F04D29/545
    • A cooling device for projector, comprising a light source, an exhaust fan, an air directing fan, an air duct, air inlet windows, an optical engine, a circuit board, a light cut, and a power supply to constitute a projector device with high brightness and high contrast. The projector includes a design that directs hot air flow directly into fan blades of an exhaust fan, thereby effectively reducing adverse effects and solving problems of conventional technology, such as failure to direct hot air flow into the fan blades of the exhaust fan, resulting in excessively high average temperature in the fan hub area that is in alignment with the hot air current, and high working temperature of motor bearings, control circuits, rotors and stators in the fan hub, so that the fan hub can be operating under lower temperatures, thereby enhancing normal performance, effective working life and reliability of the fan and the projector.
    • 一种用于投影仪的冷却装置,包括光源,排风扇,导风扇,风道,进气窗,光学引擎,电路板,光切割和电源,以构成具有 高亮度和高对比度。 该投影机具有将热风直接引导到排风扇的风扇叶片中的设计,从而有效地减少不利影响并解决常规技术的问题,例如不能将热风引导到排风扇的风扇叶片中,导致 与风扇对准的风扇轮毂区域中的平均温度过高,风扇轮毂中的电动机轴承,控制回路,转子和定子的工作温度高,从而风扇轮毂可以在较低温度下运行, 从而提高风扇和投影机的正常性能,有效的工作寿命和可靠性。
    • 10. 发明授权
    • Projecting device having a heat-dissipating mechanism
    • 具有散热机构的投射装置
    • US07942532B2
    • 2011-05-17
    • US12075851
    • 2008-03-14
    • Nien-Hui HsuShang-Hsuang WuPel-Yu Wu
    • Nien-Hui HsuShang-Hsuang WuPel-Yu Wu
    • G03B21/26
    • G03B21/16
    • A projecting device includes a casing, an optical engine, and a heat-dissipating mechanism. The casing includes a lower casing body and an upper casing body covering the lower casing body. The optical engine is disposed in the casing, and includes a light source module. The heat-dissipating mechanism includes a first blower disposed uprightly in the casing and adjacent to one side of the light source module for driving airflow to cool the light source module and the casing. The first blower has a thickness greater than one half of a length thereof and greater than one half of a width thereof. With the arrangement of the first blower, a sufficient amount of airflow is provided to the system to improve the heat-dissipating effect and to enhance system reliability.
    • 投影装置包括壳体,光学引擎和散热机构。 壳体包括下壳体和覆盖下壳体的上壳体。 光引擎设置在壳体中,并且包括光源模块。 散热机构包括:第一鼓风机,其竖立地设置在壳体中并且邻近光源模块的一侧,用于驱动气流以冷却光源模块和壳体。 第一鼓风机的厚度大于其长度的一半并且大于其宽度的一半。 利用第一鼓风机的布置,向系统提供足够的气流以改善散热效果并提高系统的可靠性。