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    • 4. 发明授权
    • Method for fabricating a field emission display
    • 制造场致发射显示器的方法
    • US6121066A
    • 2000-09-19
    • US648844
    • 1996-05-15
    • Byeong Kwon JuMyung Hwan OhYun Hi Lee
    • Byeong Kwon JuMyung Hwan OhYun Hi Lee
    • H01J9/02H01L21/00
    • H01J9/025
    • A field emission display and a method for fabricating the same are disclosed. The method includes the steps of: forming a silicon mold; growing a diamond on the silicon mold, to form a diamond tip; forming a conductive layer on the diamond tip; bonding a first substrate to the conductive layer; removing the silicon mold; forming a gate insulating layer and gate electrode on the diamond tip; and etching the gate electrode and gate insulating layer to expose an electron emission portion of the tip, and thereby form a gate hole. By doing so, the operation voltage is reduced, compared with the diode-type display, and high-responsibility field emission display can be realized by applying (-) or (+) voltage to the gate electrode.
    • 公开了一种场致发射显示器及其制造方法。 该方法包括以下步骤:形成硅模具; 在硅模上生长金刚石,形成金刚石尖端; 在金刚石尖端上形成导电层; 将第一衬底接合到所述导电层; 去除硅模具; 在金刚石尖端上形成栅极绝缘层和栅电极; 并且蚀刻栅电极和栅极绝缘层以暴露尖端的电子发射部分,从而形成栅极孔。 通过这样做,与二极管型显示器相比,操作电压降低,并且可以通过向栅电极施加( - )或(+)电压来实现高责任场发射显示。
    • 8. 发明授权
    • Method for electrostatic thermal bonding of a pair of glass substrates by utilizing a silicon thin film
    • 利用硅薄膜对一对玻璃基板进行静电热粘结的方法
    • US06197139B1
    • 2001-03-06
    • US09226949
    • 1999-01-08
    • Byeong-Kwon JuMyung-Hwan OhWoo-Beom Choi
    • Byeong-Kwon JuMyung-Hwan OhWoo-Beom Choi
    • B32B1700
    • C03C27/08
    • An electrostatic thermal bonding method for bonding a pair of glass substrates, is capable of solving the problems such as a contamination of a device and incomplete vacuum packaging due to gas generated during the bonding of glass substrates utilizing a conventional epoxy or frit. The electrostatic thermal bonding method uses a silicon-glass bonding mechanism. First, a silicon thin film is deposited on a metal thin film formed on a side of one glass substrate, and the two glass substrates are brought face to face with each other by bringing the silicon thin film into contact with the surface of the other glass substrate. A predetermined direct current voltage is applied between the metal thin film and the other glass substrate under a predetermined temperature, thereby the bonding between glass substrates is performed. In the glass-glass bonding method utilizing the silicon thin film, the direct current voltage in the range of 0 to 1000V is applied under a bonding temperature between 100 to 500° C. and the elements are combined between a surface of the glass and a surface of the silicon thin film. Therefore, such a bonding results in an improved bonding strength and an improved vacuum packaging.
    • 用于粘合一对玻璃基板的静电热粘合方法能够解决由于利用常规环氧树脂或玻璃料的玻璃基板的接合期间产生的气体而导致的装置污染和不完全的真空包装等问题。 静电热粘合方法使用硅玻璃接合机构。 首先,将硅薄膜沉积在形成在一个玻璃基板一侧的金属薄膜上,并且通过使硅薄膜与另一个玻璃的表面接触来使两个玻璃基板彼此面对 基质。 在预定温度下在金属薄膜和另一玻璃基板之间施加预定的直流电压,从而进行玻璃基板之间的接合。 在利用硅薄膜的玻璃玻璃接合方法中,在100〜500℃的接合温度下施加0〜1000V范围内的直流电压,在玻璃的表面和 表面的硅薄膜。 因此,这种接合导致改善的接合强度和改进的真空包装。
    • 10. 发明授权
    • Circuit for driving alternating current thin film electroluminescence
device using relative potential difference
    • 使用相对电位差驱动交流薄膜电致发光器件的电路
    • US5627556A
    • 1997-05-06
    • US326548
    • 1994-10-20
    • Yong-Moo KwonMyung Hwan Oh
    • Yong-Moo KwonMyung Hwan Oh
    • G09G3/30
    • G09G3/30G09G2310/0267G09G2310/0275
    • A circuit for driving an AC TFEL device which is a complete solid luminescence element, capable of generating positive and negative AC voltages from a single DC voltage by utilizing a relative potential difference and thereby providing a compact voltage supply unit required for driving the AC TFEL device. A circuit is also provided which is constructed to reduce the number of operating voltages required in the refresh drive method and the scan inversion symmetric drive method upon driving the matrix of the AC TFEL device by using a relative potential generating circuit. By employing such a circuit, it is possible to simply provide a voltage supply circuit required in a portable display system using the AC TFEL device and supply a voltage required for the refresh driving and the scanning sequence inversion driving by using only one clock control signal.
    • 用于驱动作为完整的固体发光元件的AC TFEL器件的电路,其能够通过利用相对电位差从单个DC电压产生正和负的AC电压,从而提供用于驱动AC TFEL器件所需的紧凑的电压供应单元 。 还提供一种电路,其被构造为通过使用相对电位发生电路来驱动AC TFEL器件的矩阵来减少刷新驱动方法和扫描反转对称驱动方法中所需的工作电压的数量。 通过采用这种电路,可以简单地提供使用AC TFEL装置的便携式显示系统所需的电压供给电路,并且仅使用一个时钟控制信号来提供刷新驱动和扫描顺序反转驱动所需的电压。