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    • 1. 发明授权
    • Ultraminiaturized reserve battery cell
    • 超小型储备电池
    • US06844108B1
    • 2005-01-18
    • US09744951
    • 1999-08-05
    • Won-Bae LeeHan ChungHo-Jun Lee
    • Won-Bae LeeHan ChungHo-Jun Lee
    • H01M4/02H01M6/12H01M6/38H01M6/30
    • H01M6/38H01M6/12
    • To compliment the drawback of the conventional large-size reserve battery cell inapplicable to a small electronic system, disclosed is a super-slim reserve battery cell sized merely several millimeters in its entirety including micro-size battery elements sized about several μm by using a micro-machining technology of processing mechanical structures in a super-slim size. The present invention realized electrolyte container and other battery elements by using materials such as silicon, nickel, copper, aluminum, etc. to form a membrane structure of relatively thinner thickness than the periphery in an electrolyte container contiguous with the battery cell that is broken only when activating the cell. Therefore, it is possible to activate the battery cell with less power while securing sufficient impact-resistant characteristics under normal circumstances.
    • 为了补充不适用于小型电子系统的常规大型储备电池的缺点,公开了一种超薄型储备电池,其整体尺寸仅为几毫米,包括通过使用微型尺寸的大小几毫米的微尺寸电池元件 以超薄的尺寸加工机械结构的加工技术。 本发明通过使用诸如硅,镍,铜,铝等的材料来实现电解液容器和其它电池元件,从而在仅与断电的电池单元相邻的电解质容器中形成比周边更薄的膜结构 激活细胞时。 因此,能够在一般情况下确保足够的抗冲击特性的同时,以较少的功率来激活电池单元。
    • 2. 发明授权
    • Gas sensor and fabrication method thereof
    • 气体传感器及其制造方法
    • US06997040B1
    • 2006-02-14
    • US10110209
    • 2000-10-17
    • Won-Bae LeeHo-Jun Lee
    • Won-Bae LeeHo-Jun Lee
    • G01N7/00
    • G01N27/12
    • A gas sensor includes a silicon substrate provided with a recess, an insulating layer, a first and a second conductive patterned layers and a detecting portion for sensing a gas which passes there through. In the gas sensor, the insulating layer is formed on a top portion of the silicon substrate which does not form the recess. The first and the second conductive patterned layers extend over the recess, thereby being apart from the silicon substrate physically. The detecting portion is formed on both portions of the first and the second conductive patterned layers.
    • 气体传感器包括设置有凹部的硅衬底,绝缘层,第一和第二导电图案化层以及用于感测通过其的气体的检测部分。 在气体传感器中,绝缘层形成在硅基板的不形成凹部的顶部上。 第一和第二导电图案层在凹部上延伸,从而物理上与硅衬底分开。 检测部分形成在第一和第二导电图案化层的两个部分上。
    • 3. 发明申请
    • PLANE HEATING ELEMENT USING CERAMIC GLASS
    • 使用陶瓷玻璃的平面加热元件
    • US20130175257A1
    • 2013-07-11
    • US13823295
    • 2011-09-08
    • Won-Bae LeeKi-Bum ParkSeong-Yong ParkJung-Woong LeeSang-Gil DoIn-Bum Jeong
    • Won-Bae LeeKi-Bum ParkSeong-Yong ParkJung-Woong LeeSang-Gil DoIn-Bum Jeong
    • H05B3/00
    • H05B3/0004H05B3/265H05B2203/002H05B2203/013
    • The present invention relates to a plane heating element which is supplied with power to generate heat. The plane heating element may include a support layer made of ceramic glass, a heat-generating layer which is formed by printing heat-generating paste on the upper surface of the support layer, and an insulating layer which is formed by applying insulating paste on the upper surface of the heat-generating layer. The heat generating paste may be dried and plasticized, and receives predetermined power to generate heat. The insulating paste may be dried and plasticized and may be configured to insulate the and prevent oxidation of the heat-generating layer. The present invention provides a strong adhesion with respect to a glass substrate and makes it possible to increase temperature up to a target level in a short time, and thus can be used as an effective printing method in various electric and electronic product fields.
    • 本发明涉及一种被供电以产生热量的平面加热元件。 平面加热元件可以包括由陶瓷玻璃制成的支撑层,通过在支撑层的上表面上印刷发热膏形成的发热层和通过在绝缘层上施加绝缘膏形成的绝缘层 发热层的上表面。 发热膏可以被干燥和塑化,并且接收预定的功率以产生热量。 绝缘膏可以被干燥和塑化,并且可以被配置为绝热并防止发热层的氧化。 本发明提供了对玻璃基板的强粘合性,并且能够在短时间内将温度升高到目标水平,因此可以用作各种电气和电子产品领域中的有效印刷方法。
    • 4. 发明申请
    • BRAKE PRESSURE CONTROL APPARATUS WHICH REGULATES DECELERATION RATE WHILE BRAKING ACCORDING TO BRAKE PRESSURE AND METHOD THEREOF
    • 制动压力控制装置,其根据制动压力调节制动器的减速度及其方法
    • US20110204710A1
    • 2011-08-25
    • US13127396
    • 2009-06-24
    • Won-Bae Lee
    • Won-Bae Lee
    • B60T8/34
    • B60T8/00B60T17/221B60T2230/04
    • Disclosed a brake pressure control apparatus including a cylinder of which an upper portion is formed with a connection port connected with a brake line and a lower surface is formed with an air inlet/outlet port; a piston which is supported by a first spring disposed at a bottom surface of the cylinder; an opening/closing plate which is fixed to an upper portion of the piston so as to divide an inner portion of the cylinder and in which a fluid passage is formed at a center portion thereof; an introduction control valve which is disposed at an upper portion of the fluid passage H formed at the opening/closing plate so as to control a flow of the brake fluid introduced into the cylinder according to a brake pressure; a fluid passage opening/closing unit which is disposed at an inner portion of the opening/closing plate, and comprises a permanent magnet provided at one side thereof, a movement spring provided at the other side thereof and an opening/closing member disposed between the permanent magnet and the movement spring so as to be intersected with the fluid passage, thereby opening and closing the fluid passage; a brake fluid outlet port which is formed at both sides of the fluid passage formed at the opening/closing plate so as to provide a passage through which the brake fluid in the cylinder is discharged; and an electromagnet which is disposed at an outer circumference of the cylinder so as to be corresponding to the permanent magnet of the fluid passage opening/closing unit and also connected with a vehicle speed sensor.
    • 本发明公开了一种制动压力控制装置,包括:缸体,其上部形成有与制动管线连接的连接端口,下表面形成有空气入口/出口; 活塞,其由设置在所述气缸的底面的第一弹簧支撑; 固定在所述活塞的上部,以便分隔所述气缸的内部并在其中心部分形成有流体通道的打开/关闭板; 引入控制阀,其设置在形成在开闭板上的流体通道H的上部,以根据制动压力控制引入到气缸中的制动流体的流动; 流体通道打开/关闭单元,设置在开/关板的内部,并且包括设置在其一侧的永磁体,设置在其另一侧的移动弹簧和设置在其间的开/关构件 永磁体和移动弹簧,以与流体通道相交,从而打开和关闭流体通道; 制动流体出口,其形成在形成在开闭板处的流体通道的两侧,以便提供通过该通道,使气缸中的制动流体通过该通道排出; 以及电磁铁,其设置在所述气缸的外周,以对应于所述流体通道打开/关闭单元的永磁体,并且还与车速传感器连接。