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    • 1. 发明授权
    • Zirconium oxide dental implant with internal thread and polygonal tapering section, and the mold for molding the same
    • 氧化锆牙科植入物具有内螺纹和多边形锥形截面,模具用于成型
    • US08397791B2
    • 2013-03-19
    • US13116496
    • 2011-05-26
    • Min-Wen WangChia-Wei Yu
    • Min-Wen WangChia-Wei Yu
    • B22D17/00B29C45/00B29D1/00
    • A61C8/0012A61C8/0018A61C8/0068A61C8/0069A61C13/20
    • A mold for molding a green body for manufacturing a zirconium oxide dental implant includes a first molding part and a second molding part. The first and second molding parts each has a first imprinting inner surface and two none-thread inner surfaces for forming the external of the green body with two external thread sections and two none-thread sections. The mold may also include a driving mechanism, a polygonal conical slider and a screw thread forming rod. The polygonal conical slider can be driven for axially sliding into the mold cavity without rotation. The screw thread forming rod is coaxially and slidably penetrated the polygonal conical slider and driven by the driving mechanism for screwing into the mold cavity and unscrewing out of the mold cavity thereby forming the inner of the green body with an internal thread and a polygonal tapering section.
    • 用于模制用于制造氧化锆牙科植入物的生坯的模具包括第一模制部件和第二模制部件。 第一和第二成型部件具有第一压印内表面和两个非螺纹内表面,用于形成具有两个外螺纹部分和两个非螺纹部分的生坯体的外部。 模具还可以包括驱动机构,多边形锥形滑块和螺纹形成杆。 可以驱动多边形锥形滑块以便轴向滑动到模腔中而不旋转。 螺纹形成杆同轴且可滑动地穿过多边形锥形滑块并由驱动机构驱动,用于旋入模腔并从模腔中旋出,从而用内螺纹和多边形锥形部分形成生坯体的内部 。
    • 2. 发明申请
    • ZIRCONIUM OXIDE DENTAL IMPLANT WITH INTERNAL THREAD AND POLYGONAL TAPERING SECTION, AND THE MOLD FOR MOLDING THE SAME
    • 具有内螺纹和多边形切割部分的氧化锆氧化物牙植入体,以及用于模制其的模具
    • US20120301849A1
    • 2012-11-29
    • US13116496
    • 2011-05-26
    • Min-Wen WANGChia-Wei Yu
    • Min-Wen WANGChia-Wei Yu
    • A61C8/00B29C43/42A61C13/00
    • A61C8/0012A61C8/0018A61C8/0068A61C8/0069A61C13/20
    • A zirconium oxide dental implant is manufactured by injecting a zirconium oxide paste in a mold for obtaining a green body and sintering the green body to be the zirconium oxide dental implant. The green body is formed integrally with a first external thread section, a first none-thread section, a second external thread section, second none-thread section, wherein the first external thread section and the second external thread section are formed on the peripheral of the green body and divided by the first none-thread section and the second none-thread section. The mold may include at least a first molding part and a second molding part. The first molding part has a first imprinting inner surface for forming the first external thread section of the green body, and two none-thread inner surfaces for forming a half portion of the first none-thread section and the second none-thread section of the green body respectively. The second molding part has a second imprinting inner surface for forming the second external thread section of the green body, and two none-thread inner surfaces for forming a half portion of the first none-thread section and the second none-thread section of the green body respectively. Preferably, the mold may further include a driving mechanism, a polygonal conical slider and a screw thread forming rod for forming a internal thread and a polygonal tapering section in the green body. The polygonal conical slider is driven for axially sliding into the mold cavity without performing rotation. The screw thread forming rod is coaxially and slidably penetrated the polygonal conical slider and driven by the driving mechanism for screwing into the mold cavity and unscrewing out of the mold cavity.
    • 通过在用于获得生坯体的模具中注入氧化锆糊料并将生坯体烧结成氧化锆牙科植入物来制造氧化锆牙科植入物。 生坯与第一外螺纹部,第一非螺纹部,第二外螺纹部,第二非螺纹部一体形成,其中第一外螺​​纹部和第二外螺纹部形成在外周 绿色体被第一非线段和第二非线段分隔。 模具可以包括至少第一模制部件和第二模制部件。 第一成型部件具有用于形成生坯的第一外螺纹部分的第一压印内表面和用于形成第一非螺纹部分的第二非螺纹部分和第二非螺纹部分的两个非螺纹内表面 绿体分别。 第二成型部具有用于形成生坯的第二外螺纹部的第二压印内表面和用于形成第一非螺纹部的一半部分和第二非螺纹部的第二非螺纹部的两个非螺纹内表面 绿体分别。 优选地,模具还可以包括驱动机构,多边形锥形滑块和用于在生坯中形成内螺纹和多边形锥形部分的螺纹形成杆。 驱动多边形锥形滑块以便轴向滑入模腔而不进行旋转。 螺纹形成杆同轴且可滑动地穿过多边形锥形滑块并由驱动机构驱动,用于旋入模腔并从模腔中旋出。
    • 5. 发明授权
    • 2D to 3D image conversion apparatus and method thereof
    • 2D到3D图像转换装置及其方法
    • US08842905B2
    • 2014-09-23
    • US13517750
    • 2012-06-14
    • Chun-Hsing HsiehHao-Ying ChengChia-Wei YuCheng-Hsin Chang
    • Chun-Hsing HsiehHao-Ying ChengChia-Wei YuCheng-Hsin Chang
    • G06K9/00H04N13/02
    • H04N13/261
    • A 2D to 3D image conversion apparatus includes a data queue, a conversion unit and an offset calculation unit. The data queue receives and temporarily stores an input data value corresponding to a current pixel. The conversion unit outputs a current offset table corresponding to a current depth parameter of the current pixel. The current offset table includes (m+1) reference offsets corresponding to the current pixel and neighboring m pixels. The offset calculation unit selects one of the reference offsets corresponding to the current pixel in the current offset table and multiple previous offset tables as a data offset corresponding to the current pixel. The data queue selects and outputs an output data value corresponding to the current pixel according to an integer part of the data offset and the input data value.
    • 2D至3D图像转换装置包括数据队列,转换单元和偏移计算单元。 数据队列接收并临时存储与当前像素对应的输入数据值。 转换单元输出与当前像素的当前深度参数对应的当前偏移表。 当前偏移表包括对应于当前像素和相邻m个像素的(m + 1)个参考偏移量。 偏移计算单元选择与当前偏移表中的当前像素和多个先前偏移表相对应的参考偏移中的一个作为与当前像素对应的数据偏移。 数据队列根据数据偏移量和输入数据值的整数部分选择并输出与当前像素对应的输出数据值。
    • 8. 发明授权
    • Video processing method and circuit using thereof
    • 视频处理方法及其使用电路
    • US08693809B2
    • 2014-04-08
    • US13223661
    • 2011-09-01
    • Chia-Wei YuChia-Yu Yang
    • Chia-Wei YuChia-Yu Yang
    • G06K9/32H04N7/01
    • H04N5/142H04N7/0117H04N7/0135
    • A video processing method enlarging and enhancing sharpness of input video data includes following steps. First, N sets of pixel row data of the input video data are respectively buffered in N linear buffers, N is a natural number. Next, I sets of enlarged pixel row data are generated by interpolation according to the buffered N sets of pixel row data in the N linear buffers and a currently inputted set of pixel row data, I is a natural number greater than N. Then, I sets of smoothed and enlarged pixel row data are generated according to the buffered N sets of pixel row data in the N linear buffers and the (N+1)th set of pixel row data. Thereafter, I sets of sharpness-enhanced pixel row data are obtained according to the I sets of enlarged pixel row data and the I sets of smoothed and enlarged pixel row data.
    • 扩大和提高输入视频数据的清晰度的视频处理方法包括以下步骤。 首先,输入视频数据的N组像素行数据分别缓冲在N个线性缓冲器中,N是自然数。 接下来,根据N个线性缓冲器中缓冲的N组像素行数据和当前输入的像素行数据集合,通过内插生成放大像素行数据集合,I是大于N的自然数。然后,I 根据N个线性缓冲器和第(N + 1)个像素行数据组中的缓冲的N组像素行数据来生成平滑和放大的像素行数据集合。 此后,根据I组放大像素行数据和I组平滑和放大的像素行数据,获得锐度增强像素行数据集。