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
    • 34. 发明公开
    • 색 합성 및 고효율의 집광 특성을 갖는 LED 집광렌즈
    • 用于具有颜色合成和光收集的LED照明器的光收集镜头
    • KR1020090118514A
    • 2009-11-18
    • KR1020080044343
    • 2008-05-14
    • 주식회사 세코닉스
    • 김진호최무길전상천김동환
    • G02B3/06G02B3/00
    • G02B3/06G02B3/08G02B6/0073G02B7/02G02B7/32
    • PURPOSE: A light collecting lens used for LED illuminator with color synthesizing and light collecting is provided to increase the transmittance ratio of the light source by forming a hole extended to the LED lighting part. CONSTITUTION: An LED lighting part(10) generates the light source required for the illumination. The condensing lens part(20) of the concave lens shape organizes the hole which perpendicularly passes through the center of the condensing lens part. The LED lighting part and condensing lens part are combined in the adhesive member. The condensing lens part includes the body portion, and the front surface(22) and settling portion(23). The surface of the hall of the condensing lens part includes the first face(25) and the second back side(26). The front surface of the condensing lens part has the curvature of 0-200mm.
    • 目的:提供一种用于具有彩色合成和聚光的LED照明器的聚光透镜,通过形成延伸到LED照明部分的孔来增加光源的透光率。 构成:LED照明部件(10)产生照明所需的光源。 凹透镜形状的聚光透镜部(20)组织垂直通过聚光透镜部的中心的孔。 LED照明部分和聚光透镜部分组合在粘合部件中。 聚光透镜部分包括主体部分,以及前表面(22)和沉降部分(23)。 聚光透镜部分的霍尔表面包括第一面(25)和第二背面(26)。 聚光透镜部分的前表面具有0-200mm的曲率。
    • 35. 发明公开
    • 초소형 고해상도 촬상 렌즈 조립체
    • 高分辨率镜头总成
    • KR1020090055115A
    • 2009-06-02
    • KR1020070121873
    • 2007-11-28
    • 주식회사 세코닉스
    • 최순철
    • G02B9/60G02B9/10G02B13/18G02B1/00
    • A high resolution subminiature lens assembly is provided to improve the performance of a peripheral unit by reducing the length of a lens at the high resolution. A lens assembly includes a first lens(L1), a second lens(L2), a third lens(L3), a fourth lens(L4) and a fifth lens(L5) successively which are arranged from the rear to the front of an iris diaphragm of the object side. The first lens has a positive refractive power. The second lens has a negative refractive power. At least one side of the third lens is aspherical. The third lens has the positive refractive power. The fourth lens has the negative refractive power and the aspherical surface. The fifth lens has the positive refractive power and the aspherical surface. One of the third to fifth lenses is comprised of a plastic lens.
    • 提供高分辨率超小型透镜组件,以通过以高分辨率减小透镜的长度来改善外围单元的性能。 透镜组件包括从第一透镜(L1),第二透镜(L2),第三透镜​​(L3),第四透镜(L4)和第五透镜(L5) 物体侧的虹膜光阑。 第一透镜具有正的屈光力。 第二透镜具有负折光力。 第三透镜的至少一侧是非球面的。 第三透镜具有正屈光力。 第四透镜具有负折光力和非球面。 第五透镜具有正折射光焦度和非球面。 第三至第五透镜中的一个由塑料透镜构成。
    • 36. 发明公开
    • 광학렌즈 및 이를 이용한 광학모듈
    • 光学透镜和光学模块利用镜头
    • KR1020070065705A
    • 2007-06-25
    • KR1020050126418
    • 2005-12-20
    • 주식회사 세코닉스
    • 함형석
    • G02B1/10G02B3/00C09B23/04
    • G02B1/10C09B23/04G02B3/00
    • An optical lens and an optical module using the same are provided to make products small and lightweight, to reduce the number of parts, and to improve productivity by reducing work processes which are increased in installing a color filter. An optical lens has an infrared ray absorption layer(132a) formed by spreading an infrared ray absorption coloring matter over the entire thickness of the optical lens. The infrared ray absorption coloring matter is one or at least two of cyanine, naphthalocyanine, and 2:1 metal complex coloring matters. An optical module(100) comprises an image sensor(122); plural lenses(132,134,136) aligned at regular intervals on the same line in front of the image sensor without installing a color filter between the image sensor and the lens, to control a path of the light incident to the image sensor; and a holder(110) containing and supporting the image sensor and plural lenses.
    • 提供了一种光学透镜和使用该透镜的光学模块,以使产品小型化和轻量化,减少零件数量,并且通过减少安装滤色器时增加的工作流程来提高生产率。 光学透镜具有通过在光学透镜的整个厚度上扩散红外线吸收色素形成的红外线吸收层(132a)。 红外线吸收色素是花青,萘酞菁和2:1金属络合物着色剂中的一种或至少两种。 光学模块(100)包括图像传感器(122); 在图像传感器前面的同一行上以规则的间隔排列的多个透镜(132,134,136),而不在图像传感器和透镜之间安装滤色器,以控制入射到图像传感器的光的路径; 以及容纳和支撑图像传感器和多个透镜的保持器(110)。
    • 37. 发明授权
    • 화상표시장치의 광합성기
    • 화상표시장치의광합성기
    • KR100661469B1
    • 2006-12-27
    • KR1020060098724
    • 2006-10-11
    • 주식회사 세코닉스
    • 김진호전상천김미영
    • G02B27/10H04N5/74H04N9/31
    • A light compositing device for an image display device is provided to minimize light loss by compositing lights emitted from R, G, and B light sources with a dichroic mirror and guiding the composite light to a target position. A body(84) is formed in a rectangular tunnel shape having opened front and rear portions. At least one side plate is a dichroic mirror transmitting light emitted from a light source, and the rest plates are reflective mirrors reflecting the light. The light is guided by the dichroic mirror and the front opening. At least one dichroic mirror is disposed in the body at a certain slope to transmit the light entering the enclosure, thereby compositing the light.
    • 提供一种用于图像显示装置的光合成装置,用于通过用分色镜合成从R,G和B光源发射的光并将合成光引导至目标位置来使光损失最小化。 主体(84)形成为具有敞开的前部和后部的矩形隧道形状。 至少一个侧板是透射从光源发射的光的分色镜,并且其余的板是反射光的反射镜。 光线由分色镜和前部开口引导。 至少一个二向色镜以一定的斜率设置在主体中以传输进入外壳的光,从而合成光。
    • 40. 发明公开
    • 지문 인식 장치
    • 指纹识别装置
    • KR1020010019372A
    • 2001-03-15
    • KR1019990035729
    • 1999-08-26
    • 주식회사 세코닉스
    • 박원희최무길이종진함형석김형수
    • G06K9/00
    • PURPOSE: A fingerprint recognition device is provided to facilitate the assembly and to reduce the size of a total optical instrument compactly. CONSTITUTION: A fingerprint recognition device comprises a surface light emitting diode(202), a fingerprint area(210), a reflection prism(200), a sensor lens(260), and an image sensor(270). The surface light emitting diode(202) radiates the light on the fixed surface. The fingerprint area(210) is allocated on the fixed surface near to the incident side. The inner total reflection prism(200) seriously reflects the fingerprint image illuminated by the light. The sensor lens(260) collimate the fingerprint image reflected by the third reflection surface(240). The collimate fingerprint image is focused on the image sensor(270).
    • 目的:提供指纹识别装置,以便于组装和紧凑地缩小总体光学仪器的尺寸。 构成:指纹识别装置包括表面发光二极管(202),指纹区域(210),反射棱镜(200),传感器透镜(260)和图像传感器(270)。 表面发光二极管(202)将光照射在固定表面上。 指纹区域(210)被分配在靠近入射侧的固定表面上。 内部全反射棱镜(200)严重反映由光照射的指纹图像。 传感器透镜(260)对由第三反射面(240)反射的指纹图像进行准直。 准直指纹图像聚焦在图像传感器(270)上。