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    • 4. 发明申请
    • SMALL-SIZED PROJECTOR WITH HIGH HEAT DISSIPATING EFFICIENCY
    • 具有高散热效率的小尺寸投影机
    • US20100033690A1
    • 2010-02-11
    • US12334538
    • 2008-12-15
    • CHIEN-FU CHENYI-PING HSIEHTSUNG-JE CHIU
    • CHIEN-FU CHENYI-PING HSIEHTSUNG-JE CHIU
    • G03B21/16
    • G03B21/16
    • A projector includes a housing, a projection lens, a receiving member, an optical engine, a light source module, a heat sink, and a fan. The housing includes a bottom wall and four sidewalls, the bottom wall and the four sidewalls together define a receiving space. One of the sidewalls a number of first vents, the other three sidewalls define a number of second vents. The projection lens is located at an intersecting corner of the sidewalls. The receiving member includes a first receiving portion and a second receiving portion. The optical engine is received in the second receiving portion. The light source module is received in the first receiving portion. The heat sink is located at an intersecting corner of the sidewalls. The fan is located at an intersecting corner of the sidewalls.
    • 投影机包括壳体,投影透镜,接收构件,光学引擎,光源模块,散热器和风扇。 壳体包括底壁和四个侧壁,底壁和四个侧壁一起限定了容纳空间。 其中一个侧壁是多个第一通风口,其他三个侧壁限定了多个第二通风口。 投影透镜位于侧壁的相交角处。 接收构件包括第一接收部分和第二接收部分。 光引擎被接收在第二接收部分中。 光源模块被接收在第一接收部分中。 散热器位于侧壁的交叉角处。 风扇位于侧壁的交叉角处。
    • 6. 发明申请
    • PROJECTOR WITH COOLING CONFIGURATION
    • 投影机配有冷却配置
    • US20100045941A1
    • 2010-02-25
    • US12331441
    • 2008-12-10
    • CHIEN-FU CHEN
    • CHIEN-FU CHEN
    • G03B21/16
    • G03B21/16
    • A projector includes a casing, an optical engine, and a heat dissipating module. The casing includes a first sidewall, a front wall defining a hole, a second sidewall, and a rear wall connected in sequence. The optical engine includes a lens module substantially aligned with the hole defined by the front wall, a DMD, and an illuminator module. The illuminator module is arranged at a side of the lens module away from the second sidewall, and includes a housing having a side surface away from the lens module and at least one light source installed on the side surface. The heat dissipating module includes a first heat sink attached to the at least one light source, a blower, and an exhaust fan. The blower is for blowing air towards the first heat sink from an air inlet.
    • 投影仪包括壳体,光学引擎和散热模块。 壳体包括第一侧壁,限定孔的前壁,第二侧壁和依次连接的后壁。 光学引擎包括基本上与由前壁限定的孔对准的透镜模块,DMD和照明器模块。 照明器模块布置在远离第二侧壁的透镜模块的一侧,并且包括具有远离透镜模块的侧表面和安装在侧表面上的至少一个光源的壳体。 散热模块包括附接到至少一个光源的第一散热器,鼓风机和排风扇。 吹风机用于从空气入口朝向第一散热器吹送空气。
    • 7. 发明申请
    • LIGHT SOURCE MODULE AND PROJECTOR HAVING SAME
    • 光源模块和具有相同功能的投影机
    • US20100290011A1
    • 2010-11-18
    • US12557459
    • 2009-09-10
    • CHIEN-FU CHEN
    • CHIEN-FU CHEN
    • G03B21/16F21S4/00F21V9/00
    • G03B21/16
    • A light source module includes a first light source, a second light source, a third light source, and a first heat sink. The first heat sink includes a first base and a number of first fins. A bottom surface of the first base is attached to the first light source and the second light source. The first fins perpendicularly extend from a top surface of the first base away from the first light source and the second light source. Each first fin includes a first fin portion adjacent to the first light source and a second fin portion adjacent to the second light source, and defines a first slot for increasing the thermal resistance between the first fin portion and the second fin portion.
    • 光源模块包括第一光源,第二光源,第三光源和第一散热器。 第一散热器包括第一基座和多个第一鳍片。 第一基座的底面附接到第一光源和第二光源。 第一鳍从第一基底的顶表面垂直地延伸离开第一光源和第二光源。 每个第一鳍片包括与第一光源相邻的第一鳍片部分和与第二光源相邻的第二鳍片部分,并且限定用于增加第一鳍片部分和第二鳍片部分之间的热阻的第一狭缝。
    • 8. 发明申请
    • HEAT-DISSIPATING DEVICE AND METHOD FOR CONTROLLING FAN SPEED
    • 散热装置及其控制方法
    • US20100097025A1
    • 2010-04-22
    • US12411414
    • 2009-03-26
    • CHIEN-FU CHENWAN-NENG SU
    • CHIEN-FU CHENWAN-NENG SU
    • G05D23/20G05D23/00F28F13/12G05B5/00
    • G06F1/206H05K7/20209
    • A method for controlling fan speed is disclosed. Firstly, a number of temperature ranges are defined. Each temperature range is associated with a corresponding fan speed. Each two adjacent temperature ranges overlap. The temperature of an electronic system is measured and is compared with the defined temperature ranges to determine whether it enters into a new range. If the measured temperature exceeds any one of the limits of a temperature range associated with the current fan speed, it enters into a new temperature range. The fan speed is adjusted to which is associated with the new entered temperature range. The overlap of each two adjacent temperature ranges covers the fluctuation of the temperature of the electronic system caused solely by the adjustment of fan speed caused by the traversing of the measured temperature between the two adjacent temperature ranges.
    • 公开了一种用于控制风扇速度的方法。 首先定义了多个温度范围。 每个温度范围都与相应的风扇速度相关联。 每两个相邻的温度范围重叠。 测量电子系统的温度,并与定义的温度范围进行比较,以确定其是否进入新的范围。 如果测量的温度超过与当前风扇转速相关的温度范围的任何一个限值,它将进入一个新的温度范围。 风扇速度被调整到与新输入的温度范围相关联。 每个两个相邻温度范围的重叠仅仅由通过在两个相邻温度范围之间的测量温度的横移引起的风扇速度的调节而引起的电子系统的温度波动。