会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 61. 发明申请
    • Solid bio-material for a sensor that detects bio-electric signals through the use of the characteristics and functions of bio-epidermal tissues and epidermal tissues of living organisms and the methods for producing the same
    • 用于通过使用生物表皮组织和生物体的表皮组织的特征和功能检测生物电信号的传感器的固体生物材料及其生产方法
    • US20060029925A1
    • 2006-02-09
    • US10538591
    • 2003-12-09
    • Sang Lee
    • Sang Lee
    • C12Q1/00
    • G01N33/5082A61B5/04A61B2562/02G01N33/54366G01N33/574
    • The present invention discloses a solid bio-material for the detection of a bio-electromagnetic signal, which senses an information signal generated from living organisms and changes thereof by using fish scale, feathers of fowl and carapaces of tortoises among epidermal tissues of animals having the function of detecting, memorizing and transferring a weak information signal (bio-signal) of an electromagnetic field generated from bio-tissues, and a method for producing the same. The method for producing a solid bio-material for the detection of a bio-electromagnetic signal by using epidermal tissues of living organisms comprises the steps of: immersing the carcass of an animal with a developed epidermis such as fish, fowl, tortoises, etc. in a mixed solution of aromatics (fragrance), salt and water in the ratio of 1:2:300 for one week; separating the epidermis from the immersed living organism; washing the separated epidermis, soaking it in a mixed solution of potassium dichromate, vinegar and water in the ratio of 1:1:100 for 10 to 12 hours, applying a medium pressure thereto for 48 hours under an ambient temperature, and then drying it; applying heat of 40° C. and a cold air of −25° C. temperature in turn to the dried epidermis in a medium pressure state, two or three times in a period of 24 hours each; sterilizing the hot and cold treated epidermis by irradiating ultraviolet rays thereto with a 240 nm ultraviolet lamp for 30 minutes; generating static electricity by putting the sterilized epidermis in an electric cylinder and turning it at 500 RPM; applying pine nut oil to the outer surface of the electro statically processed epidermis; and cutting the epidermis into required sizes.
    • 本发明公开了一种用于检测生物电磁信号的固体生物材料,该生物电磁信号通过使用鱼鳞,动物的表皮组织中的鱼鳞,家禽和甲壳的羽毛来感测从活生物体产生的信息信号及其变化, 检测,存储和传送由生物组织产生的电磁场的弱信息信号(生物信号)的功能及其制造方法。 用于通过使用生物体的表皮组织检测生物电磁信号的固体生物材料的制造方法包括以下步骤:将具有开发的表皮如鱼,家禽,龟等的动物的尸体浸入 在芳香剂(香料),盐和水的混合溶液中以1:2:300的比例混合1周; 将表皮与沉浸的生物体分开; 洗涤分离的表皮,将其以重量比1:1:100的重铬酸钾,醋和水的混合溶液浸泡10至12小时,在环境温度下施加介质压力48小时,然后干燥 ; 在中等压力状态下将40℃的温度和-25℃的冷空气依次进行干燥的表皮,每次24小时的时间为两到三次; 用240nm紫外线灯照射紫外线30分钟,对经冷热处理的表皮进行灭菌; 通过将灭菌的表皮放入电动缸并以500RPM转动来产生静电; 将松果油应用于静电处理表皮的外表面; 并将表皮切割成所需尺寸。
    • 65. 发明申请
    • Semiconductor device and method for manufacturing the same
    • 半导体装置及其制造方法
    • US20060001112A1
    • 2006-01-05
    • US11219795
    • 2005-09-07
    • Sang Lee
    • Sang Lee
    • H01L29/78
    • H01L21/28123H01L21/28061H01L21/28247H01L2924/0002H01L2924/00
    • The present invention discloses method for manufacturing semiconductor device employing an EXTIGATE structure. In accordance with the method, a predetermined thickness of the device isolation film is etched to form a recess. The recess is then filled with a second nitride film. A stacked structure of a barrier metal film, a metal layer and a third nitride film on the second nitride film and the polysilicon film is formed on the entire surface and the etched via a photoetching process to form a gate electrode. An insulating film spacer is deposited on a sidewall of the gate electrode. The exposed portion of the polysilicon film using the third nitride film pattern and the insulating film spacer as a mask to form a polysilicon film pattern and an oxide film on a sidewall of the polysilicon film pattern.
    • 本发明公开了采用EXTIGATE结构制造半导体器件的方法。 根据该方法,对器件隔离膜的预定厚度进行蚀刻以形成凹陷。 然后用第二氮化物膜填充凹部。 在整个表面上形成第二氮化物膜和多晶硅膜上的阻挡金属膜,金属层和第三氮化物膜的堆叠结构,并通过光刻工艺蚀刻以形成栅电极。 绝缘膜间隔物沉积在栅电极的侧壁上。 使用第三氮化物膜图案和绝缘膜间隔物作为掩模的多晶硅膜的暴露部分在多晶硅膜图案的侧壁上形成多晶硅膜图案和氧化物膜。
    • 70. 发明申请
    • Nonvolatile memory device and method for fabricating the same
    • 非易失性存储器件及其制造方法
    • US20050247973A1
    • 2005-11-10
    • US11121866
    • 2005-05-03
    • Sang Lee
    • Sang Lee
    • H01L21/76H01L21/8247H01L27/115H01L29/423H01L29/788H01L29/792
    • H01L27/11521H01L27/115H01L29/42336H01L29/7885
    • A nonvolatile memory device and a method for fabricating the same is disclosed, in which a corner of a floating gate is rounded to reduce, minimize or prevent discharge of programmed electrons, and an overlap between the floating gate and a control gate increases to improve a coupling ratio and enable nonvolatile memory device operations at a low voltage. The nonvolatile memory device includes a device isolation layer in a field region on a semiconductor substrate, the device isolation having a trench; a tunnel oxide layer; a floating gate comprising a polysilicon pattern in an active region of the semiconductor substrate and a polysilicon spacer at the side of the polysilicon pattern and the inner sidewall of the trench; a gate dielectric layer on the floating gate; and a control gate on the gate dielectric layer overlapping with the floating gate.
    • 公开了一种非易失性存储器件及其制造方法,其中浮动栅极的角被倒圆以减少,最小化或防止编程电子的放电,并且浮置栅极和控制栅极之间的重叠增加以改善 耦合比,并使得非易失性存储器件在低电压下工作。 非易失性存储器件包括在半导体衬底上的场区中的器件隔离层,器件隔离具有沟槽; 隧道氧化层; 包括在所述半导体衬底的有源区域中的多晶硅图案的浮置栅极和在所述多晶硅图案侧和所述沟槽的内侧壁处的多晶硅间隔物; 浮栅上的栅介质层; 并且栅极电介质层上的与浮动栅极重叠的控制栅极。