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    • 2. 发明申请
    • RECIPROCATING POWER GENERATING MODULE
    • 再生发电机组
    • US20110156501A1
    • 2011-06-30
    • US13042061
    • 2011-03-07
    • WEN-YANG PENGChung-Ping ChiangChan-Hsing Lo
    • WEN-YANG PENGChung-Ping ChiangChan-Hsing Lo
    • H02K35/02
    • H02K35/02
    • A reciprocating power generating module is disclosed, which comprises: a guide having a hollow space along the center axis thereof; an integrated magnet composed of a plurality of magnetic elements which are aligned one next to another in a manner such that poles of each of the magnetic elements are orientated to repel poles of its neighboring magnetic elements; and a coil composed of a plurality of at-least-two-phase windings which are wound around the guide and integrated one winding next to another; wherein the integrated magnet and the coil are arranged in a manner such that the coil is received in the hollow space inside the guide, and the shape of the inner surface of the guide directs the motion path of the integrated magnet.
    • 公开了一种往复式发电模块,其包括:具有沿其中心轴线的中空空间的引导件; 由多个磁性元件组成的集成磁体,它们以使得每个磁性元件的磁极定向以排斥其相邻磁性元件的极点的方式彼此相邻排列; 以及由多个至少两相绕组组成的线圈,所述至少两相绕组围绕所述引导件缠绕并且彼此相邻地集成一个绕组; 其中集成磁体和线圈以这样的方式布置,使得线圈被容纳在引导件内的中空空间中,并且引导件的内表面的形状引导集成磁体的运动路径。
    • 3. 发明申请
    • Impeller Structure and the Centrifugal Fan Device Using the Same
    • 叶轮结构和使用其的离心式风扇装置
    • US20080050228A1
    • 2008-02-28
    • US11533554
    • 2006-09-20
    • Jiing-Fu ChenTung-Chuan WuChan-Hsing LoChung-Ping ChiangYu-Liang ChungYann-Shuoh Sun
    • Jiing-Fu ChenTung-Chuan WuChan-Hsing LoChung-Ping ChiangYu-Liang ChungYann-Shuoh Sun
    • F03B3/16
    • F04D29/281F04D29/30
    • An impeller structure for a centrifugal fan device is disclosed, in which the impeller structure is primarily comprised of: a disc; and a plurality of blade structures, each being arranged on the disc; wherein, each blade structure further comprises: a first blade; and a second blade, arranged at a circumferential length away from a side of the first blade while radially overlapping with the radial of the first blade by a specific overlap area for forming a gap passage functioning as a nozzle. As a fluidic is flowing through and shooting out of the gap passage, not only the growth of the boundary layers on the suction surfaces of front blades are interrupted, but also as the fluidic with high kinetic energy is mixing with the low-kinetic fluidic flowing on the suction surfaces of rear blades, the thickness of the boundary layer is reduced while the separation point is delayed and thus separation can be prevented.
    • 公开了一种用于离心风扇装置的叶轮结构,其中叶轮结构主要包括:盘; 以及多个叶片结构,每个叶片结构布置在盘上; 其中,每个叶片结构还包括:第一叶片; 以及第二叶片,其布置成沿着所述第一叶片的一侧的周向长度,同时与所述第一叶片的径向径向重叠,具有特定的重叠区域,用于形成用作喷嘴的间隙通道。 当流体流过并从间隙通道中流出时,不仅前缘叶片的吸附表面上的边界层的生长被中断,而且具有高动能的流体与低动力流体流动混合 在后刀片的吸附面上,边界层的厚度减小,同时分离点延迟,从而可以防止分离。
    • 4. 发明申请
    • TRANSMISSION DEVICE FOR THIN AND BRITTLENESS SUBSTRATE
    • 用于薄和不牢固基板的传输装置
    • US20100116623A1
    • 2010-05-13
    • US12420553
    • 2009-04-08
    • Chen-Chung DuKang-Feng LeeMuh-Wang LiangChan-Hsing LoTung-Chuan Wu
    • Chen-Chung DuKang-Feng LeeMuh-Wang LiangChan-Hsing LoTung-Chuan Wu
    • B65G29/00
    • H01L21/67706B65G39/02
    • A transmission device for thin and brittleness substrate is disclosed, which comprises: a plurality of transportation rollers and a plurality of pinch rollers. Each transportation roller further comprises: a rigid spindle; and a plurality of elastic supporting wheels, mounted on the spindle. Each pinch roller comprises: a sleeve; a spindle, ensheathed in the sleeve; and a plurality of pressing wheels, mounted on the sleeve at positions corresponding to the supporting wheels. When the transportation rollers are driven to rotate, a substrate sandwiched between the supporting wheels and the pressing wheels will be push to move while subjecting to a friction originated from a sufficient holding force by the supporting wheels and the pressing wheels, and consequently, providing an improved buffering capability for deformation absorption that enables the transmission device to guide the thin substrate to move smoothly without causing buckling or scratching to the thin substrate.
    • 公开了一种用于薄脆性基片的传动装置,包括:多个输送辊和多个夹送辊。 每个传送辊还包括:刚性主轴; 以及安装在主轴上的多个弹性支承轮。 每个夹送辊包括:套筒; 一个主轴,套在套筒中; 以及多个按压轮,其安装在所述套筒上对应于所述支撑轮的位置处。 当传送辊被驱动旋转时,夹在支撑轮和按压轮之间的基板将被推动移动,同时受到由支撑轮和按压轮产生的足够的夹持力的摩擦,因此, 改进了变形吸收的缓冲能力,使得传输装置能够引导薄衬底平稳移动,而不会对薄衬底造成翘曲或划伤。
    • 5. 发明申请
    • MINIATURE HEAT-DISSIPATING FAN DEVICE
    • 微型散热风扇装置
    • US20100303652A1
    • 2010-12-02
    • US12826173
    • 2010-06-29
    • Wen-Yang PengTung-Chuan WuChan-Hsing Lo
    • Wen-Yang PengTung-Chuan WuChan-Hsing Lo
    • F04D25/02
    • F04D25/0653F04D17/16H02K1/2793H02K3/26H02K9/06H02K21/24H02K2211/03
    • A miniature heat-dissipating fan device is disclosed, which comprises: a frame; a shaft, pivotally connected to the frame; at least a planar coil, each being received in the frame and formed in a wave winding manner; at least a permanent magnet, each being connected to the shaft while being positioned about parallel to the at least one planar coil for enabling the generation of an alternating multipolar magnetic field; a plurality of blades, being disposed at positions corresponding to the at least one permanent magnet while centering around the axis of the shaft in a centrifugal manner; and at least a magnetically permeable back iron, disposed at a side of the at least one planar coil and being structured with a geometrical shape matching to the wave winding planar coil; wherein the plural blades are integrated with the at least one permanent magnet for enabling the same to rotate with the at least one permanent magnet synchronously. In an exemplary embodiment of the invention, the planar coil is structured with at least a hollowed area, each having a Hall-effect sensor embedded therein. With the aforesaid device, not only it can be structured as a thin-type device with improved convection efficiency, but also the magnetic flux density is increased.
    • 公开了一种微型散热风扇装置,其包括:框架; 枢转地连接到框架的轴; 至少一个平面线圈,每个线圈被接收在框架中并以波浪形式形成; 至少一个永久磁体,每个永磁体连接到所述轴,同时被定位成与所述至少一个平面线圈平行,以便产生交替的多极磁场; 多个叶片,设置在与所述至少一个永磁体相对应的位置处,同时围绕所述轴的轴线以离心方式居中; 以及至少一个导磁背铁,设置在所述至少一个平面线圈的一侧并且被构造成具有与所述波浪绕组平面线圈匹配的几何形状; 其中所述多个叶片与所述至少一个永磁体集成,以使得所述永磁体能够与所述至少一个永磁体同步地旋转。 在本发明的示例性实施例中,平面线圈被构造成至少具有中空区域,每个具有嵌入其中的霍尔效应传感器。 利用上述装置,不仅可以构造为具有改善的对流效率的薄型装置,而且增加磁通密度。
    • 6. 发明申请
    • MINIATURE HEAT-DISSIPATING FAN DEVICE
    • 微型散热风扇装置
    • US20080277094A1
    • 2008-11-13
    • US11834162
    • 2007-08-06
    • Wen-Yang PengTung-Chuan WuChan-Hsing Lo
    • Wen-Yang PengTung-Chuan WuChan-Hsing Lo
    • F28F7/00H02K1/27H02K11/00
    • H02K21/24F04D25/0653H02K1/2793H02K3/26H02K9/06H02K2211/03
    • A miniature heat-dissipating fan device is disclosed, which comprises: a frame; a shaft, pivotally connected to the frame; at least a planar coil, each being received in the frame and formed in a wave winding manner; at least a permanent magnet, each being connected to the shaft while being positioned about parallel to the at least one planar coil for enabling the generation of an alternating multipolar magnetic field; a plurality of blades, being disposed at positions corresponding to the at least one permanent magnet while centering around the axis of the shaft in a centrifugal manner; and at least a magnetically permeable back iron, disposed at a side of the at least one planar coil and being structured with a geometrical shape matching to the wave winding planar coil; wherein the plural blades are integrated with the at least one permanent magnet for enabling the same to rotate with the at least one permanent magnet synchronously. In an exemplary embodiment of the invention, the planar coil is structured with at least a hollowed area, each having a Hall-effect sensor embedded therein. With the aforesaid device, not only it can be structured as a thin-type device with improved convection efficiency, but also the magnetic flux density is increased.
    • 公开了一种微型散热风扇装置,其包括:框架; 枢转地连接到框架的轴; 至少一个平面线圈,每个线圈被接收在框架中并以波浪形式形成; 至少一个永久磁体,每个永磁体连接到所述轴,同时被定位成与所述至少一个平面线圈平行,以便产生交替的多极磁场; 多个叶片,设置在与所述至少一个永磁体相对应的位置处,同时围绕所述轴的轴线以离心方式居中; 以及至少一个导磁背铁,设置在所述至少一个平面线圈的一侧并且被构造成具有与所述波浪绕组平面线圈匹配的几何形状; 其中所述多个叶片与所述至少一个永磁体集成,以使得所述永磁体能够与所述至少一个永磁体同步地旋转。 在本发明的示例性实施例中,平面线圈被构造成至少具有中空区域,每个具有嵌入其中的霍尔效应传感器。 利用上述装置,不仅可以构造为具有改善的对流效率的薄型装置,而且增加磁通密度。