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    • 2. 发明申请
    • Cooling fan and dynamic pressure bearing structure
    • 冷却风扇和动压轴承结构
    • US20080278911A1
    • 2008-11-13
    • US11798193
    • 2007-05-11
    • Wen-Pin ChenSheng-Pin SuZhen-Yu LeeMeng-Jia TsaiMei-Lin Lai
    • Wen-Pin ChenSheng-Pin SuZhen-Yu LeeMeng-Jia TsaiMei-Lin Lai
    • B23P17/00
    • F04D29/057F04D25/062F04D25/0626F16C17/107F16C33/103F16C33/107
    • A cooling fan and dynamic pressure bearing structure is disclosed. The cooling fan includes a base portion, a bearing portion, a dynamic pressure bearing, a coil assembly, and an impeller assembly. The dynamic pressure bearing is received in the bearing portion. A plurality of pressure collecting grooves is arranged in an inner surface of a shaft hole of the dynamic pressure bearing at intervals for receiving lubricating oil. Each pressure collecting groove has two slanted grooves extending slantways which connect with each other at one end to form a connecting point. A transverse groove extends from the connecting point backward the direction of the two slanted grooves. Based on the special design of the pressure collecting groove, the present invention increases the area that creates pressure to increase the intensity of the pressure and decrease the number of pressure collecting grooves to reduce processing loads and production costs.
    • 公开了一种冷却风扇和动压轴承结构。 冷却风扇包括基座部分,轴承部分,动压轴承,线圈组件和叶轮组件。 动压轴承容纳在轴承部分。 多个压力收集槽设置在动压轴承的轴孔的内表面中,以间隔接收润滑油。 每个压力收集槽具有两个倾斜槽,该倾斜槽在一端彼此连接以形成连接点。 横向槽从连接点向后延伸到两个倾斜槽的方向。 基于压力收集槽的特殊设计,本发明增加了产生压力以增加压力强度并减少压力收集槽的数量以减少加工负载和生产成本的面积。
    • 3. 发明申请
    • Non-intrusive laser irradiation device
    • 非侵入式激光照射装置
    • US20060212100A1
    • 2006-09-21
    • US11079227
    • 2005-03-15
    • Daniel WuSheng-Pin Su
    • Daniel WuSheng-Pin Su
    • A61N5/06
    • A61N5/0619A61N2005/0644A61N2005/0651A61N2005/0659A61N2005/067
    • A non-intrusive laser irradiation device has a shell body, a circuit board, at least two laser components, a switch and a light guiding pipe. The circuit is disposed in the shell body. The laser components are arranged in the shell body. One end of each laser component protrudes out of the shell body, and the other end is electrically connected to the circuit board. One end of the switch is disposed on the shell body, and the other end is electrically connected to the circuit board. The light guiding pipe is sleeved onto the front end of the laser components. Infrared pulse lights with a wavelength of 800-900 nm generated by the laser components are used to cure ache and stimulate the proliferation of marrow cells. The light guiding pipe collects the laser light energy to irradiate directly acupuncture points to achieve the effect of acupuncture and moxibustion.
    • 非侵入式激光照射装置具有壳体,电路板,至少两个激光部件,开关和导光管。 电路设置在壳体内。 激光组件布置在壳体中。 每个激光组件的一端从壳体突出,另一端电连接到电路板。 开关的一端设置在壳体上,另一端电连接到电路板。 导光管套在激光组件的前端。 激光成分产生的波长为800-900nm的红外脉冲光被用于治疗疼痛并刺激骨髓细胞的增殖。 导光管收集激光照射直接照射穴位,达到针灸效果。
    • 4. 发明申请
    • TOUCHING DEVICE, LASER SOURCE MODULE, AND LASER SOURCE STRUCTURE THEREOF
    • 触摸装置,激光源模块及其激光源结构
    • US20120001871A1
    • 2012-01-05
    • US12747163
    • 2009-07-10
    • Heng-Yao ChangSheng-Pin Su
    • Heng-Yao ChangSheng-Pin Su
    • G06F3/042
    • G06F3/0421
    • A touch device, a laser source module, and a laser source structure are disclosed in this invention. The touch device includes a touching area having a first edge and a second edge, the first edge is adjacent to the second edge; two reflective lens arrays and two laser source modules which are all disposed at the first edge and the second edge respectively, wherein each laser source module includes a laser diode and a diffractive optical element assembled in front of the laser diode for separating a laser beam projected from the laser diode to a plurality of laser beams with equal magnitude, the laser beams are distributed in a parallel arrangement over the touching area by the reflective lens array; and two receiving devices disposed at the corresponding edges of the first edge and the second edge respectively. The receiving device includes a plurality of sensing units, wherein each sensing unit receives one of the laser beams respectively, and each sensing unit outputs one digital signal.
    • 在本发明中公开了触摸装置,激光源模块和激光源结构。 触摸装置包括具有第一边缘和第二边缘的触摸区域,第一边缘与第二边缘相邻; 两个反射透镜阵列和两个激光源模块分别设置在第一边缘和第二边缘处,其中每个激光源模块包括激光二极管和组合在激光二极管前面的衍射光学元件,用于分离投影的激光束 从激光二极管到具有相等幅度的多个激光束,激光束通过反射透镜阵列以平行布置分布在触摸区域上; 以及分别设置在第一边缘和第二边缘的相应边缘处的两个接收装置。 接收装置包括多个感测单元,其中每个感测单元分别接收一个激光束,并且每个感测单元输出一个数字信号。
    • 5. 发明授权
    • Vacuum laser constant temperature device
    • 真空激光恒温装置
    • US07047757B2
    • 2006-05-23
    • US10846501
    • 2004-05-17
    • Sheng-Pin SuChun-Kun Yu
    • Sheng-Pin SuChun-Kun Yu
    • F25D23/12F25B21/02H01S3/04
    • H01S5/02F25B21/02F25B2321/0251H01S5/02407H01S5/02415H01S5/06837
    • A vacuum laser constant temperature device is adopted for a housing that has a heat dissipation module arranged therein. The device has a metallic partition adjacent to the heat dissipation module to enclose a airtight vacancy formed with the housing, a thermoelectric cooling chip with a heating portion connecting to a side of the metallic partition and a cooling portion, a semiconductor laser lighting module arranged in the airtight vacancy and connecting to the cooling portion of the thermoelectric cooling chip, and a heat insulation layer arranged both on an opposite side of the metallic partition and in the airtight vacancy. Heat generated by the semiconductor laser lighting module can be transferred to the heat dissipation module via the thermoelectric cooling chip and the metallic partition. The thermoelectric cooling chip makes an output power of the semiconductor laser lighting module keep constant within various environments without the condensation thereon.
    • 在其中布置有散热模块的壳体中采用真空激光恒温装置。 该装置具有与散热模块相邻的金属隔板,以封闭与壳体形成的气密空位;热电冷却芯片,具有连接到金属隔板侧面的加热部分和冷却部分;半导体激光照明模块, 密封空间并连接到热电冷却芯片的冷却部分,以及隔热层,其布置在金属隔板的相对侧并且处于气密空缺中。 半导体激光照明模块产生的热量可以通过热电冷却芯片和金属隔板传递到散热模块。 热电冷却芯片使得半导体激光照明模块的输出功率在各种环境中保持恒定,而不会在其上冷凝。
    • 6. 发明申请
    • Money checking apparatus
    • 货币检查装置
    • US20050259858A1
    • 2005-11-24
    • US10851109
    • 2004-05-24
    • Sheng-Pin SuChun-Kun YuDaniel Jih Wu
    • Sheng-Pin SuChun-Kun YuDaniel Jih Wu
    • G06K9/00G07D7/00G07D7/12
    • G07D7/12G07D7/121G07D7/128
    • A money checking apparatus has a U-shaped with having a cavity with a receiving space for receiving an object to be tested, an LCD monitor arranged atop the cavity for viewing a status of the object, and a first switch and a second switch being placed beside the receiving space and operated to turn on/off at least one infrared lamp and ultraviolet lamp. A CMOS sensor is arranged on an inner face beside the cavity and connected to the second switch and the LCD monitor, the CMOS sensor fetching the image reflected from the optical object and displaying the image on the LCD monitor. A processor is arranged in the base and connected to a power supply, the receiver, the first switch and the second switch. The money checking apparatus can be used to examine US dollars, euro bills, Chinese RMB bills and credit cards.
    • 货币检查装置具有U形,具有具有用于接收待测试物体的接收空间的空腔,布置在空腔顶部以观察物体的状态的LCD监视器,以及放置第一开关和第二开关 在接收空间旁边,操作至少打开一个红外灯和紫外线灯。 CMOS传感器布置在腔体旁边的内表面,并连接到第二开关和LCD监视器,CMOS传感器从光学对象上取出反射的图像,并将图像显示在LCD监视器上。 处理器布置在基座中并连接到电源,接收器,第一开关和第二开关。 货币检查机构可用于检查美元,欧元,中国人民币账单和信用卡。
    • 7. 发明申请
    • High power semiconductor laser lighting device
    • 大功率半导体激光照明装置
    • US20050254537A1
    • 2005-11-17
    • US10846525
    • 2004-05-17
    • Sheng-Pin SuChun-Kun YuDaniel Wu
    • Sheng-Pin SuChun-Kun YuDaniel Wu
    • H01S3/04H01S5/022H01S5/024
    • H01S5/02415H01S5/02H01S5/02407H01S5/06837
    • A high power semiconductor laser lighting device has a housing, a fan module arranged in an exhaust hole in the housing, a base connected to the bottom wall of the housing and disposed on a side of the fan module, and a semiconductor laser constant-temperature module. The base has a driving unit with at least one high power electronic component connected to fins of the fan module. The semiconductor laser constant-temperature module has a metallic partition to enclose a vacuum formed in a front portion of the housing, and a heat insulation layer arranged in the vacuum. The metallic partition has a side connecting the heat dissipation plate and an opposite side connecting a heating portion of a thermoelectric cooling chip, which includes a cooling portion connecting to a semiconductor laser lighting module. The high power semiconductor laser lighting device to keep an output power thereof constant within various environments.
    • 大功率半导体激光照明装置具有壳体,布置在壳体中的排气孔中的风扇模块,连接到壳体的底壁并设置在风扇模块的一侧的基座,以及半导体激光器恒温 模块。 基座具有驱动单元,其具有连接到风扇模块的翅片的至少一个高功率电子部件。 半导体激光恒温模块具有用于封闭形成在壳体的前部中的真空的金属分隔件和布置在真空中的绝热层。 金属隔板具有连接散热板和连接热电冷却芯片的加热部分的相对侧,该热电冷却芯片包括连接到半导体激光照明模块的冷却部分。 大功率半导体激光照明装置,其输出功率在各种环境中保持恒定。
    • 10. 发明申请
    • HOLOGRAPHIC RECONSTRUCTING DEVICE AND APPLICATION ADAPTED TO PORTABLE ELECTRONIC PRODUCTS
    • 全息重建装置和适用于便携式电子产品的应用
    • US20140118807A1
    • 2014-05-01
    • US13988345
    • 2011-10-19
    • Sheng-Pin Su
    • Sheng-Pin Su
    • G03H1/22
    • G03H1/2202G03H1/268G03H2001/0426G03H2001/226G03H2222/12G03H2227/02G03H2227/06G03H2270/22
    • Disclosed are a holographic reconstructing device and its application for portable electronic products. The holographic reconstructing device includes a compound hologram (9), a hologram seat (91), and a rebuilding light source (12). The compound hologram (9) is a flat-disk contour and disposed on the hologram seat (91). The rebuilding light source (12) is an LED and disposed under the hologram seat (91). The LED takes advantage of a small magnitude, less electricity consumption, simplified components, and a narrow bandwidth to definite a rebuilt image. The application of the flat-disk compound hologram is in a smooth-lying placement while reconstructing, which preferably occupies less space and facilitates user's observation as the rebuilt image is placed on the top of the compound hologram. The embedding of the holographic reconstructing device into the products would not affect the dimension of the products, thereby exhibiting realistic images on an individual space and forming a strong visual, clear impression, and a newly entertaining effect.
    • 公开了全息重建装置及其在便携式电子产品中的应用。 全息重建装置包括复合全息图(9),全息图座(91)和重建光源(12)。 复合全息图(9)是平盘轮廓并且设置在全息图座(91)上。 重建光源(12)是LED并且设置在全息图座(91)的下方。 LED利用小幅度,更少的电力消耗,简化的组件和窄带宽来确定重建的图像。 平板复合全息图的应用在重建时处于平滑位置,优选地占据较少的空间,并且当重建的图像被放置在复合全息图的顶部时便于用户的观察。 将全息重建装置嵌入到产品中不会影响产品的尺寸,从而在单个空间上呈现逼真的图像,形成强烈的视觉,清晰的印象和新的娱乐效果。