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    • 2. 发明授权
    • Fungus polyose composition with immunity enhancing effect and application thereof
    • 具有免疫增强作用的真菌多糖组合物及其应用
    • US08617567B2
    • 2013-12-31
    • US12631868
    • 2009-12-07
    • Jian TangXiaofei XuWilliam MaZhen LuoWenjuan Fang
    • Jian TangXiaofei XuWilliam MaZhen LuoWenjuan Fang
    • A61K36/06A61K36/09C07H1/00
    • A61K36/07A61K36/062A61K36/076A61K2300/00
    • The present invention relates to a compound fungus polyose with the effect of enhancing immunity. The compound is prepared with raw material as follows: Lentinus edodes 8˜100, Poria cocos 15˜100, Dictyophora indusiata 10˜200, Tremella fuciformis 15˜80, Paecilomyces hepiali mycelium 2˜50. The present invention also relates to the use of compound fungus polyose in preparing health dietary supplements for enhancing immunity. The compound fungus polyose of present invention is characterized in that it uses the edible (medicinal) fungus rich in activity polyose as the main raw material and matches various kinds of polyose components, enhances body's immunity in multiple ways, and has beneficial health effects on those who are sub-health. The health dietary supplements prepared with compound fungus polyose of present invention as the main effective component has an evident effect on enhancing immunity and a satisfactory effect on the health of those who are sub-health.
    • 本发明涉及具有增强免疫力的复合真菌多糖。 化合物用原料如下制备:香菇8〜100,茯苓15〜100,印度Dictyophora indusiata 10〜200,银耳银耳15〜80,拟青霉菌丝菌丝2〜50。 本发明还涉及复合真菌多糖在制备健康膳食补充剂中用于增强免疫力的用途。 本发明的复合真菌多糖的特征在于,以活性多糖为主要原料的食用(药用)真菌,配合各种多糖成分,以多种方式增强机体的免疫力,对其有益健康效果 谁是亚健康。 用本发明复合真菌多糖制备的健康膳食补充剂作为主要有效成分对增强免疫力和对亚健康者的健康有良好的影响具有明显的效果。
    • 3. 发明申请
    • FUNGUS POLYOSE COMPOSITION WITH IMMUNITY ENHANCING EFFECT AND APPLICATION THEREOF
    • 具有免疫增强效果和应用的真菌聚酯组合物
    • US20110021770A1
    • 2011-01-27
    • US12631868
    • 2009-12-07
    • Jian TangXiaofei XuWilliam MaZhen LuoWenjuan Fang
    • Jian TangXiaofei XuWilliam MaZhen LuoWenjuan Fang
    • C07H1/00
    • A61K36/07A61K36/062A61K36/076A61K2300/00
    • The present invention relates to a compound fungus polyose with the effect of enhancing immunity. The compound is prepared with raw material as follows: Lentinus edodes 8˜100, Poria cocos 15˜100, Dictyophora indusiata 10˜200, Tremella fuciformis 15˜80, Paecilomyces hepiali mycelium 2˜50. The present invention also relates to the use of compound fungus polyose in preparing health dietary supplements for enhancing immunity. The compound fungus polyose of present invention is characterized in that it uses the edible (medicinal) fungus rich in activity polyose as the main raw material and matches various kinds of polyose components, enhances body's immunity in multiple ways, and has beneficial health effects on those who are sub-health. The health dietary supplements prepared with compound fungus polyose of present invention as the main effective component has an evident effect on enhancing immunity and a satisfactory effect on the health of those who are sub-health.
    • 本发明涉及具有增强免疫力的复合真菌多糖。 化合物用原料制备如下:香菇8〜100,茯苓15〜100,印,ata 10〜200,银耳15〜80,拟青霉菌丝体2〜50。 本发明还涉及复合真菌多糖在制备健康膳食补充剂中用于增强免疫力的用途。 本发明的复合真菌多糖的特征在于,以活性多糖为主要原料的食用(药用)真菌,配合各种多糖成分,以多种方式增强机体的免疫力,对其有益健康效果 谁是亚健康。 用本发明复合真菌多糖制备的健康膳食补充剂作为主要有效成分对增强免疫力和对亚健康者的健康有良好的影响具有明显的效果。
    • 6. 发明授权
    • Method and apparatus for edge-endpoint-based VLSI design rule checking
    • 基于边缘端点的VLSI设计规则检查的方法和装置
    • US06324673B1
    • 2001-11-27
    • US09321591
    • 1999-05-28
    • Zhen LuoMargaret MartonosiPranav Ashar
    • Zhen LuoMargaret MartonosiPranav Ashar
    • G06F1750
    • G06F17/5081
    • The method and apparatus for performing design rule checking on Manhattan structures in VLSI circuit layouts. The method and apparatus provides an edge-endpoint-based technique for checking the geometry and spacing of the VLSI circuit layout. The edge-endpoint-based technique uses a scanline algorithm that detects errors between adjacent structures that do not simultaneously intersect the scanline. The method also provides efficient error compilation. The apparatus allows for the design rules to be changed as the VLSI circuit layout evolves. The apparatus can process the VLSI circuit layout with a single processor, and the apparatus provides for multiple processors to process slices of the VLSI circuit layout, thereby enhancing the speed of the design rule checking over traditional software-only techniques.
    • 在VLSI电路布局中对曼哈顿结构执行设计规则检查的方法和装置。 该方法和装置提供用于检查VLSI电路布局的几何形状和间距的基于边缘端点的技术。 基于边缘端点的技术使用扫描线算法来检测不同时与扫描线相交的相邻结构之间的错误。 该方法还提供了有效的错误编译。 该设备允许随着VLSI电路布局的发展而改变设计规则。 该设备可以使用单个处理器来处理VLSI电路布局,并且该设备提供多个处理器来处理VLSI电路布局的片段,从而提高设计规则检查传统的仅软件技术的速度。
    • 7. 发明申请
    • Asymmetric-Amplitude Dual-Polarity Charge Pump With Four-Phase Selectable Operation
    • 具有四相可选操作的非对称幅度双极性电荷泵
    • US20050024962A1
    • 2005-02-03
    • US10710062
    • 2004-06-16
    • Paul ChanZhen LuoShun WuJian Pan
    • Paul ChanZhen LuoShun WuJian Pan
    • G11C5/14H02M3/07G11C5/00
    • G11C5/145H02M3/07H02M2003/071
    • A symmetric dual-voltage charge pump and its control circuit generate bipolar output voltages. The charge pump converts a unipolar power source to a set of dual-voltage outputs of opposite polarity that are completely independent of each other. The charge pump includes two voltage-boosting transfer capacitors and two output capacitors. Two-phase operation generates an increased-magnitude output voltage of a negative polarity and another two phases of operation generate an increased output voltage of a positive polarity. The charge pump selectively charges one or both of the bipolar outputs with individual 2-phase charge cycles or with a sequence of charge cycles. When controlled by comparators with unequal reference voltages, the charge pump can force the bipolar outputs to unequal positive and negative voltages. Charge pumping is faster since only 2 phases are needed for charging either the positive or negative output.
    • 对称双电压电荷泵及其控制电路产生双极性输出电压。 电荷泵将单极电源转换为完全独立于相反极性的一组双电压输出。 电荷泵包括两个升压转换电容器和两个输出电容器。 两相操作产生负极性的增大幅度的输出电压,另外两相操作产生正极性增加的输出电压。 电荷泵选择性地用单独的2相充电循环或充电循环序列对一个或两个双极性输出进行充电。 当由具有不等参考电压的比较器控制时,电荷泵可以强制双极性输出不等的正和负电压。 电荷泵送速度更快,因为只需要2相来充电正极或负极输出。