Edgeless, self-aligned, differential oxidation enhanced and
difusion-controlled minimum-geometry antifuse and method of fabrication
    2.
    发明授权
    Edgeless, self-aligned, differential oxidation enhanced and difusion-controlled minimum-geometry antifuse and method of fabrication 失效
    无边界,自对准,差分氧化增强和扩散控制的最小几何反熔丝和制造方法

    公开(公告)号:US5619063A

    公开(公告)日:1997-04-08

    申请号:US646382

    申请日:1995-12-12

    CPC classification number: H01L23/5252 H01L2924/0002

    Abstract: The present invention is directed to an antifuse structure and fabrication process wherein the bottom oxide of the ONO antifuse material layer is grown over a small area of N- diffusion surrounded by an N+ diffusion area where the N- diffusion could be patterned as N- "islands" or as N- "stripes", or the like, with the active N- area controlled by the formation and drive-in of the N+ diffusion layer. In this way, the bottom oxide layer of the ONO antifuse material layer is thinner at its center (above the N- region) than at its edges because oxide grows slower on the less doped N- region at the center of the antifuse than at the more heavily doped N+ regions at the edges of the antifuse. Forcing the center of the antifuse material layer to be thinner causes the antifuse to preferentially break down at its center and away from its edges. The opening in the antifuse cell opening mask is wider than the width of the N- diffusion area so that both N- and N+ areas are exposed in the antifuse cell opening step. Since the N+ diffusion can be very accurately dimensionally controlled with known techniques, it is thus possible to reduce the dimension of the active N- diffusion down to 0.2 .mu.m or below, comparing favorably with the linear dimension of 1.0 .mu.m used in currently available state-of-the-art manufacturing processes for antifuses. This represents a factor of 25 reduction in the active antifuse area, which in turn can dramatically reduce the defect density of antifuses over current technology and/or dramatically increase the number of antifuses that may be disposed in a given area of silicon.

    Abstract translation: 本发明涉及一种反熔丝结构和制造工艺,其中ONO反熔丝层的底部氧化物生长在由N +扩散区域包围的N-扩散区域的小面积上,其中N-扩散区可以被图案化为N-“ 岛“或N”条纹“等,其中活性N区由N +扩散层的形成和驱入控制。 以这种方式,ONO反熔丝材料层的底部氧化物层在其中心(在N-区域之上)比在其边缘处更薄,因为在反熔丝的中心处的较少掺杂的N-区域上的氧化物比在 在反熔丝边缘处的更重掺杂的N +区域。 强制反熔丝材料层的中心较薄会导致反熔丝在其中心处优先分解并远离其边缘。 反熔丝电池开口掩模中的开口宽于N-扩散区域的宽度,使得在反熔丝电池打开步骤中都露出N和N +区域。 由于N +扩散可以用已知的技术进行精确的尺寸控制,因此可以将活性N-扩散的尺寸减小到0.2μm或更低,与当前可用的1.0μm的线性尺寸相比有利 最先进的反熔丝制造工艺。 这表示主动反熔丝区域减少了25倍,这反过来可以显着地减少反熔丝超过现有技术的缺陷密度和/或显着增加可以在硅的给定区域中排列的反熔丝的数量。

    INTERACTIVE PRECISION HEALTH CARE SYSTEM RELATED TO HIGH BLOOD SUGAR

    公开(公告)号:US20190198145A1

    公开(公告)日:2019-06-27

    申请号:US15870244

    申请日:2018-01-12

    CPC classification number: G16H20/10 G16H15/00

    Abstract: An interactive precision health care system related to high blood sugar includes an examination module generating an examination report, a database and a processing module. The database stores the examination report, a characteristic information, and a health care information. The characteristic information has a first range. The processing module receives and compares the examination report with the characteristic information. When a pre-meal blood sugar level falls within the first range, the processing module generates a dietary supplement product list including a product information and a time schedule of taking medicine. The processing module controls a delivery module to proceed with delivery. The processing module controls a reminding module to send out a message of taking medicine to obtain a new examination report. The processing module modifies the dietary supplement product list. The processing module controls the delivery module to proceed with delivery based on the modified dietary supplement product list.

    METHOD OF MAKING LONGAN SEED EXTRACT
    4.
    发明申请

    公开(公告)号:US20150079205A1

    公开(公告)日:2015-03-19

    申请号:US14327423

    申请日:2014-07-09

    CPC classification number: A61K36/77 Y02A50/473

    Abstract: A method of making longan seed extract is provided with choosing an extraction solvent; heating the extraction solvent to a first predetermined temperature; adding pulverized longan seed to the extraction solvent to prepare a solution; maintaining the solution at a second temperature for a predetermined period of time to obtain an extracted substance; filtering the extracted substance; and drying and cooling the filtered extracted substance to produce an extract.

    METHOD OF MAKING LONGAN SEED EXTRACT
    5.
    发明申请
    METHOD OF MAKING LONGAN SEED EXTRACT 有权
    制作龙眼提取物的方法

    公开(公告)号:US20150079204A1

    公开(公告)日:2015-03-19

    申请号:US14327393

    申请日:2014-07-09

    CPC classification number: A61K36/77 Y02A50/473

    Abstract: A method of making longan seed extract is provided with choosing an extraction solvent; heating the extraction solvent to a first predetermined temperature; adding pulverized longan seed to the extraction solvent to prepare a solution; maintaining the solution at a second temperature for a predetermined period of time to obtain an extracted substance; filtering the extracted substance; and drying and cooling the filtered extracted substance to produce an extract.

    Abstract translation: 提供龙眼种子提取物的方法,选择提取溶剂; 将提取溶剂加热至第一预定温度; 将粉碎的龙眼种子加入萃取溶剂中以制备溶液; 将溶液保持在第二温度预定的时间段以获得提取的物质; 过滤提取的物质; 并干燥并冷却经过滤的提取物质以产生提取物。

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