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    • 83. 发明授权
    • CNT 압력센서 제조방법
    • 碳纳米管压力传感器的制造方法
    • KR101306294B1
    • 2013-09-09
    • KR1020120024622
    • 2012-03-09
    • 주식회사 오토산업
    • 민남기김시동최우석
    • G01L9/00B81C1/00
    • PURPOSE: A Carbon nanotube (CNT) pressure sensor manufacturing method is provided to simply manufacture a subminiature pressure sensor for high pressures having high sensitivity properties, in which the dependence on temperatures is low, at low costs. CONSTITUTION: A CNT pressure sensor manufacturing method includes the following steps of: polishing the top of a stainless steel diaphragm (200); forming an insulating layer (300) on the top of the polished diaphragm; forming a conductive layer on the top of the insulating layer; patterning an electrode (500) on the conductive layer; forming an electrode by etching the conductive layer except for the portion in which the electrode is patterned; forming a CNT layer by coating a CNT on the top of the insulating layer in which the electrode is formed; forming a pressure gauge (700) by patterning the pressure gauge on the CNT layer formed on the top of the insulating layer. [Reference numerals] (110) Polish the upper part of a stainless steel diaphragm; (120) Form an insulating layer on the upper part of the stainless steel diaphragm; (130) Form a conductive layer on the upper part of the insulating layer; (140) Perform patterning an electrode on the conductive layer and form the electrode by removing the conductive layer except for the area of the conductive layer where the electrode is patterned; (150) Form a CNT layer by coating CNT on the upper part of the conductive layer where the electrode is formed; (160) Perform patterning a pressure gauge on the CNT layer formed on the upper part of the insulating layer and form the pressure gauge by removing the CNT layer except for the area where the pressure gauge is patterned; (AA) Start; (BB) End
    • 目的:提供碳纳米管(CNT)压力传感器制造方法,以低成本简单地制造具有高灵敏度特性的高压超低压传感器,其中温度依赖性低。 构成:CNT压力传感器制造方法包括以下步骤:抛光不锈钢隔膜(200)的顶部; 在抛光的隔膜的顶部上形成绝缘层(300); 在绝缘层的顶部形成导电层; 在导电层上形成电极(500); 通过蚀刻除了电极被图案化的部分之外的导电层形成电极; 通过在形成有电极的绝缘层的顶部涂覆CNT形成CNT层; 通过对形成在绝缘层顶部的CNT层上的压力表进行图案化而形成压力计(700)。 (附图标记)(110)抛光不锈钢隔膜的上部; (120)在不锈钢隔膜的上部形成绝缘层; (130)在绝缘层的上部形成导电层; (140)通过除去电极被图案化的导电层的区域之外的除去导电层,在导电层上进行图案化电极并形成电极; (150)通过在形成电极的导电层的上部涂覆CNT形成CNT层; (160)在形成在绝缘层上部的CNT层上进行图案化压力计,除去压力计图案区域以外除去CNT层,形成压力表; (AA)开始; (BB)结束
    • 84. 发明公开
    • 이미지센서 출력신호를 이용한 휘도 히스토그램 패턴 추출 장치
    • 使用CMOS图像传感器的光强度组织图形发生装置
    • KR1020130012847A
    • 2013-02-05
    • KR1020110074260
    • 2011-07-26
    • 주식회사 오토산업
    • 최정필김시동나창영
    • B60S1/08G01J3/50
    • B60S1/0833G01J3/501Y10S318/02
    • PURPOSE: A luminance histogram pattern generating apparatus using a CMOS image sensor is provided to reduce a data capacity outputted from an image sensor of a rain sensor. CONSTITUTION: A luminance histogram pattern generating apparatus using a CMOS image sensor comprises a lighting part(110), a light receiving part(120), an image sensor(130), and a counter part(150). The lighting part irradiates light to a window. The light receiving part receives the light reflected by the window. The image sensor detects images from the light received by the light receiving part, and output video signals through an output terminal. The counter part selectively processes some required information among digital image output signals outputted by the output terminal of the image sensor, and classifies the processed information according to predetermined luminance sections. [Reference numerals] (110) Lighting part; (120) Light receiving part; (130) Image sensor; (140) Decoder; (151) Counter 0; (152) Buffer 0; (153) Horizontal line counter; (161) Lighting control unit; (162) Count control unit; (163) Sensor control unit; (164) Histogram extracting unit; (165) Sensing unit; (AA) Counter(2n_1); (BB) Buffer(2n_1)
    • 目的:提供使用CMOS图像传感器的亮度直方图模式生成装置,以减少从雨量传感器的图像传感器输出的数据容量。 构成:使用CMOS图像传感器的亮度直方图模式生成装置包括发光部(110),受光部(120),图像传感器(130)和对置部(150)。 照明部分将光照射到窗户。 光接收部分接收由窗口反射的光。 图像传感器从受光部接收到的光检测图像,并通过输出端子输出视频信号。 计数部件选择性地处理由图像传感器的输出端子输出的数字图像输出信号中的一些所需信息,并根据预定的亮度部分对处理的信息进行分类。 (附图标记)(110)照明部; (120)受光部; (130)图像传感器; (140)解码器 (151)计数器0; (152)缓冲区0; (153)水平线计数器 (161)照明控制单元; (162)计数控制单元; (163)传感器控制单元; (164)直方图提取单元; (165)感应单元; (AA)计数器(2n_1); (BB)缓冲区(2n_1)
    • 89. 发明授权
    • 에어필터 케이스
    • 空气滤清器盒
    • KR100788481B1
    • 2007-12-24
    • KR1020050097439
    • 2005-10-17
    • 주식회사 오토산업
    • 최은기노학철
    • B01D46/00
    • 본 발명은 에어필터 케이스에 관한 것으로, 내부가 상, 하로 관통된 프레임과, 상기 프레임 내부 하측면에 형성되어 에어필터를 장착하며 상기 에어필터에 의해 여과된 공기를 배출하는 에어필터 장착부와, 상기 프레임 내부 상측면에 형성되어 상기 에어필터 장착부에 장착되는 에어필터의 이탈을 막아주는 에어필터 이탈 방지부와, 상기 프레임 일측면에 부착되어 에어필터의 교환시기를 검출하는 검출센서를 포함한다.
      에어필터, 케이스, 검출센서
    • 空气过滤器壳体技术领域本发明涉及一种空气过滤器壳体,其包括:框架,其具有上部和下部;空气过滤器安装部,其形成在框架的下部内侧表面上以安装空气过滤器并排出由空气过滤器过滤的空气; 形成在框架内侧和用于防止空气过滤器的分离的空气过滤器防脱部被安装在空气过滤器安装部,安装于所述框架的一个侧面包括一检测传感器,用于检测的时间来更换空气过滤器。
    • 90. 发明公开
    • 적외선 감지 소자, 그의 제조 방법 및 그의 패키지
    • 红外传感器装置,其制造方法和红外传感器封装
    • KR1020070113411A
    • 2007-11-29
    • KR1020060046224
    • 2006-05-23
    • 주식회사 오토산업
    • 이성현김시동남기호최우석최진하
    • H01L31/09H01L31/101H01L21/60
    • H01L31/09H01L31/03044H01L31/0312H01L31/047H01L31/18
    • An infrared sensing device is provided to reduce a fabricating cost and reduce a device size by fabricating an infrared sensing device by a simple MEMS process. A substrate(100) is prepared which has a through hole(110). An insulation layer(120) is formed on the substrate wherein a partial region of the insulation layer is floating over the through hole. A pair of electrode lines(131,132) are separated from each other in an insulation layer region corresponding to the upper part of the through hole, extended to the insulation layer region on the substrate. An infrared sensing layer(140) is formed in the insulation layer region on the through hole, partially surrounding the pair of separated electrode lines. An infrared filter(180) is attached to the lower part of the substrate. The through hole can have a shape that is reduced in width as it goes from the lower part of the substrate to the upper part of the substrate, having an inclined inner wall.
    • 提供一种红外感测装置以通过简单的MEMS工艺制造红外感测装置来减少制造成本并减小装置尺寸。 准备具有通孔(110)的基板(100)。 在衬底上形成绝缘层(120),其中绝缘层的部分区域在通孔上方浮动。 一对电极线(131,132)在对应于通孔的上部的绝缘层区域彼此分离,延伸到基板上的绝缘层区域。 在通孔的绝缘层区域中形成有一部分围绕该对分离的电极线的红外线检测层(140)。 红外滤光片(180)附着在基片的下部。 通孔可以具有从基板的下部到基板的上部的宽度减小的形状,具有倾斜的内壁。