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    • 13. 发明申请
    • PROJECTION APPARATUS AND LAMP MODULE
    • 投影设备和灯泡模块
    • US20080198336A1
    • 2008-08-21
    • US11943574
    • 2007-11-20
    • Te-Tang ChenShang-Hsuang WuNien-Hui Hsu
    • Te-Tang ChenShang-Hsuang WuNien-Hui Hsu
    • G03B21/16F21V29/02
    • G03B21/20G03B21/16G03B21/2013
    • A projection apparatus including a casing, a lamp module, an imaging system and an optical engine is provided. The lamp module is disposed in the casing and includes a frame, a first fan, a plurality of light sources and a wind guiding device. The first fan is disposed on the frame and provides a cooling airflow. The light sources provide a light beams. The wind guiding device is disposed between the first fan and the frame, and has a baffle disposed on a flowing path of the cooling airflow to divide the cooling airflow into a plurality of cooling sub-airflows for cooling the light sources respectively. The imaging system and the optical engine are received in the casing and disposed on the transmission path of the light beam, and the optical engine is positioned between the lamp module and the imaging system.
    • 提供一种包括壳体,灯模块,成像系统和光学引擎的投影设备。 灯模块设置在壳体中,并且包括框架,第一风扇,多个光源和导风装置。 第一个风扇设置在框架上并提供冷却气流。 光源提供光束。 导风装置设置在第一风扇和框架之间,并且具有设置在冷却气流的流动路径上的挡板,以将冷却气流分成多个冷却副气流,以分别冷却光源。 成像系统和光学引擎被容纳在壳体中并且设置在光束的传输路径上,并且光学引擎位于灯模块和成像系统之间。
    • 15. 发明授权
    • Projection cooling apparatus
    • 投影冷却装置
    • US07018049B2
    • 2006-03-28
    • US10657158
    • 2003-09-09
    • Shang-Hsuang WuNien-Hui HsuChing-Chung Nien
    • Shang-Hsuang WuNien-Hui HsuChing-Chung Nien
    • G03B21/16G03B21/18
    • G03B21/18
    • A projection cooling apparatus comprises a first cooling path and a second cooling path. The first cooling path includes a temperature sensor and an exhaust fan respectively installed in an inlet and an outlet of the first cooling path. The second cooling path includes a temperature sensor, a power supply unit, and a guiding fan. According to the detecting temperature resulted from the change of power supply and the environmental temperature, the temperature sensors of the first and second cooling path control the rotational speed of two sets of the fans to reach the best cooling effect, reduce the noises and extend the lifetime of the fan.
    • 投影冷却装置包括第一冷却路径和第二冷却路径。 第一冷却路径包括分别安装在第一冷却路径的入口和出口中的温度传感器和排气扇。 第二冷却路径包括温度传感器,电源单元和引导风扇。 根据电源变化和环境温度引起的检测温度,第一和第二冷却路径的温度传感器控制两组风扇的转速,达到最佳的散热效果,减少噪音,延长 风扇的寿命。
    • 16. 发明授权
    • Cooling apparatus for projector
    • 投影机冷却装置
    • US06846096B2
    • 2005-01-25
    • US10249121
    • 2003-03-18
    • Nien-Hui HsuShang-Hsuang Wu
    • Nien-Hui HsuShang-Hsuang Wu
    • G03B21/16F21V29/02
    • G03B21/16
    • The present invention discloses a partition is incorporated into the case of the projector so as to separate the optical system and the circuitry system. A circuitry fan is used to cool the circuitry system. The optical system is cooled by a suction fan. The cooling air is drawn in by the suction fan and directed to a lamp case through an air duct so as to cool a burner within the lamp case. The heat air is then directed to manifold duct. A first outlet of the manifold duct is directed through an exhausting duct to an exhausting fan. The other outlet of the manifold duct is directed to the circuitry fan. As a result, the heated air is discharged out of the case by those two cooling fans so as to evenly discharge the heated airflow from the lamp case, reducing the heat load of the fan and prolongs the lifespan of the fan.
    • 本发明公开了一种分隔件并入投影仪的壳体中,以分离光学系统和电路系统。 电路风扇用于冷却电路系统。 光学系统由吸风机冷却。 冷却空气被吸入风扇吸入并通过风道导向灯壳,以冷却灯壳内的燃烧器。 然后将热空气导向歧管管道。 歧管导管的第一个出口通过排气管道引导到排风扇。 歧管导管的另一个出口被引导到电路风扇。 结果,被加热的空气通过这两个冷却风扇从壳体排出,从而均匀地排出来自灯壳的加热空气流,减少了风扇的热负荷并延长了风扇的使用寿命。
    • 17. 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。
    • 18. 发明授权
    • Heat dissipation structure for optical engine
    • 光引擎散热结构
    • US07149041B2
    • 2006-12-12
    • US10907864
    • 2005-04-19
    • Nien-Hui HsuYu-Min KuoWen-Hsien SuShang-Hsuang Wu
    • Nien-Hui HsuYu-Min KuoWen-Hsien SuShang-Hsuang Wu
    • G02B7/02G03B21/16
    • G02B7/181G02B26/0833H04N5/7458
    • An optical engine includes a light source, an optical main body and a projection lens. The optical main body includes a reflective light valve, a case, a first heat-dissipating device and a heat-insulating device. The reflective light valve reflects the incident light beam to form an image light beam or a dumped light beam that is not projected into the projection lens. The case encloses the light paths of the incident light beam, the image light beam and the dumped light beam. An opening is on the case for the dumped light beam to be projected into. A first heat-dissipating device is fixed on the case and covers the opening for removing the heat generated by the dumped light beam. A heat-insulating device is disposed between the first heat-dissipating device and the case for preventing the heat conduction between the first heat-dissipating device and the case.
    • 光学引擎包括光源,光学主体和投影透镜。 光学主体包括反射光阀,壳体,第一散热装置和绝热装置。 反射光阀反射入射光束,形成未投影到投影透镜中的图像光束或倾倒光束。 壳体包围入射光束,图像光束和倾倒光束的光路。 在倾倒的光束投射的情况下有一个开口。 第一散热装置固定在壳体上并覆盖开口,用于去除由倾倒光束产生的热量。 在第一散热装置和壳体之间设置绝热装置,用于防止第一散热装置与壳体之间的热传导。