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    • 4. 发明申请
    • Method for displaying pictures stored in mobile communication terminal
    • 用于显示存储在移动通信终端中的图像的方法
    • US20060035679A1
    • 2006-02-16
    • US11193392
    • 2005-08-01
    • Yong-Hee HanKi-Tae Kim
    • Yong-Hee HanKi-Tae Kim
    • H04B1/38
    • G06F3/04815G06F2203/04802H04B1/38H04M1/72544H04M2250/52
    • A method is provided for displaying pictures photographed by performing a camera function of a mobile communication terminal and stored in the mobile communication terminal. The method includes the steps of providing a three dimensional object including a plurality of substituting surfaces for substituting the stored pictures, bringing the three dimensional object to display the stored pictures, selecting a picture to be displayed among the stored pictures and substituting the picture for a substituting surface, according to an input of a predetermined movement key for front or rear movement of the stored pictures, and performing a preset animation display of the three dimensional object. The stored picture display operations of the mobile communication terminal are performed by using a three dimensional manner and through a proper animation, and the movement between the stored pictures is easier.
    • 提供了一种用于显示通过执行移动通信终端的相机功能并存储在移动通信终端中拍摄的图像的方法。 该方法包括以下步骤:提供包括多个替换表面的三维对象,用于代替所存储的图像,使三维对象显示所存储的图像,选择要存储的图像中要显示的图像,并将图像替换为 根据用于存储的图像的前后移动的预定移动键的输入来替换表面,并且执行三维对象的预设动画显示。 通过使用三维方式和通过适当的动画来执行移动通信终端的存储的图像显示操作,并且存储的图像之间的移动更容易。
    • 5. 发明授权
    • Infrared absorption layer structure and its formation method, and an uncooled infrared detector using this structure
    • 红外吸收层结构及其形成方法,以及使用该结构的非冷却红外探测器
    • US07268349B2
    • 2007-09-11
    • US10953696
    • 2004-09-29
    • Sung MoonHyun-Joon ShinYong-Hee Han
    • Sung MoonHyun-Joon ShinYong-Hee Han
    • G01J5/00
    • G01J5/10G01J5/0853
    • The present invention relates to uncooled infrared detector with infrared absorption structure in which the supporting layer, detection layer, protecting layer, and dielectric layer construct λ/4 resonating absorbtion structure as a single body. In order to enhance the characteristic of uncooled infrared detector, it is essential for the infrared absorption layer to absorb incident infrared with high efficiency. The present invention is characterized in that the infrared detector with unified absorption layer includes an infrared detection film, a device protecting layer, a supporting layer for thermally isolated structure, and a dielectric layer, etc. in its absorption structure. Due to this characteristic, highly efficient infrared absorption is possible with much less thermal mass than the absorption layer for the structure of existing metal/dielectric/metal structure and regardless of the distortion of floating structure caused by fabrication fault rather than air cavity λ/4 structure.
    • 本发明涉及具有红外吸收结构的非制冷红外探测器,其中支撑层,检测层,保护层和介电层构成了λ/ 4共振吸收结构作为单体。 为了提高非制冷红外探测器的特性,红外吸收层必须高效吸收入射红外线。 本发明的特征在于,具有统一吸收层的红外检测器在其吸收结构中包括红外检测膜,器件保护层,用于隔热结构的支撑层和介电层等。 由于这一特性,与现有金属/电介质/金属结构的结构的吸收层相比,无论由制造故障而不是空气腔λ/ 4引起的浮动结构的变形,热效应都比高效的红外吸收是可能的 结构体。
    • 6. 发明申请
    • Infrared absorption layer structure and its formation method, and an uncooled infrared detector using this structure
    • 红外吸收层结构及其形成方法,以及使用该结构的非冷却红外探测器
    • US20060060784A1
    • 2006-03-23
    • US10953696
    • 2004-09-29
    • Sung MoonHyun-Joon ShinYong-Hee Han
    • Sung MoonHyun-Joon ShinYong-Hee Han
    • G01J5/00
    • G01J5/10G01J5/0853
    • The present invention relates to uncooled infrared detector with infrared absorption structure in which the supporting layer, detection layer, protecting layer, and dielectric layer construct λ/4 resonating absorbtion structure as a single body. In order to enhance the characteristic of uncooled infrared detector, it is essential for the infrared absorption layer to absorb incident infrared with high efficiency. The present invention is characterized in that the infrared detector with unified absorption layer includes an infrared detection film, a device protecting layer, a supporting layer for thermally isolated structure, and a dielectric layer, etc. in its absorption structure. Due to this characteristic, highly efficient infrared absorption is possible with much less thermal mass than the absorption layer for the structure of existing metal/dielectric/metal structure and regardless of the distortion of floating structure caused by fabrication fault rather than air cavity λ/4 structure.
    • 本发明涉及具有红外吸收结构的非制冷红外探测器,其中支撑层,检测层,保护层和介电层构成了λ/ 4共振吸收结构作为单体。 为了提高非制冷红外探测器的特性,红外吸收层必须高效吸收入射红外线。 本发明的特征在于,具有统一吸收层的红外检测器在其吸收结构中包括红外检测膜,器件保护层,用于隔热结构的支撑层和介电层等。 由于这一特性,与现有金属/电介质/金属结构的结构的吸收层相比,无论由制造故障而不是空气腔λ/ 4引起的浮动结构的变形,热效应都比高效的红外吸收是可能的 结构体。
    • 7. 发明申请
    • Oxide thin film for bolometer and infrared detector using the oxide thin film
    • 氧化薄膜用于测辐射热计和红外探测器使用氧化物薄膜
    • US20050167592A1
    • 2005-08-04
    • US10953700
    • 2004-09-29
    • Sung MoonHyun-Joon ShinYong-Hee Han
    • Sung MoonHyun-Joon ShinYong-Hee Han
    • G01J5/20H01C7/00H01C7/04H01C17/12H01L31/09G01J5/00
    • G01J5/046G01J5/20H01C7/006H01C7/047H01C17/12
    • The present invention relates to an oxide thin film for a bolometer-type uncooled infrared detector having high sensitivity. A vanadium tungsten oxide (V—W—Ox), i.e. a tungsten-doped vanadium oxide, is provided as an oxide film for a bolometer. An oxide for bolometer having characteristics of low resistance of 5 to 200 kΩ and variable TCR between −1.5 and −4.1%/° C. can be obtained by an oxidation of vanadium-tungsten metal film at a low temperature around 300° C., with changing a tungsten content and oxidation time. And a reproducible thin film can be fabricated by low price equipment for thin film deposition, without expensive ion beam or laser apparatus. Accordingly, an oxide for bolometer having characteristics of resistance lower than 100 kΩ and TCR higher than −3%/° C. can be obtained with reproducibility, whereby an uncooled-type infrared detector having high sensitivity can be fabricated.
    • 本发明涉及一种具有高灵敏度的测辐射热计型非制冷红外探测器的氧化物薄膜。 提供钒钨氧化物(V-W-O x S),即钨掺杂的氧化钒作为辐射热计的氧化膜。 通过在约300℃的低温下氧化钒 - 钨金属膜可以获得具有5至200kOmega的低电阻特性和-1.5至-4.1%/℃之间的可变TCR的测辐射热计的氧化物, 改变钨含量和氧化时间。 并且可重现的薄膜可以通过低成本的薄膜沉积设备制造,而不需要昂贵的离子束或激光设备。 因此,可以以再现性获得具有低于100kOmega和TCR高于-3%/℃的特性的测辐射热计的氧化物,由此可以制造具有高灵敏度的非冷却型红外检测器。
    • 9. 发明授权
    • Oxide thin film for bolometer and infrared detector using the oxide thin film
    • 氧化薄膜用于测辐射热计和红外探测器使用氧化物薄膜
    • US07250604B2
    • 2007-07-31
    • US10953700
    • 2004-09-29
    • Sung MoonHyun-Joon ShinYong-Hee Han
    • Sung MoonHyun-Joon ShinYong-Hee Han
    • G01J5/00
    • G01J5/046G01J5/20H01C7/006H01C7/047H01C17/12
    • The present invention relates to an oxide thin film for a bolometer-type uncooled infrared detector having high sensitivity. An amorphous vanadium tungsten oxide (V—W—Ox), i.e. a tungsten-doped vanadium oxide, is provided as an oxide film for a bolometer application. An oxide for bolometer having characteristics of low resistance of 5 to 200 k Ω and variable TCR between −1.5 and −4.1%/° C. can be obtained by an oxidation of vanadium-tungsten metal film at a low temperature around 300° C., with changing a tungsten content and oxidation time. And a reproducible thin film can be fabricated by low price equipment for thin film deposition, without expensive ion beam or laser apparatus. Accordingly, an oxide for bolometer having characteristics of resistance lower than 100 kΩ and TCR higher than −3%/° C. can be obtained with reproducibility, whereby an uncooled-type infrared detector having high sensitivity can be fabricated.
    • 本发明涉及一种具有高灵敏度的测辐射热计型非制冷红外探测器的氧化物薄膜。 提供无定形钒氧化钨(V-W-O x S x),即掺杂钨的氧化钒作为测辐射热计应用的氧化膜。 通过在约300℃的低温下氧化钒 - 钨金属膜可以获得具有5至200kΩ低电阻特性和-1.5至-4.1%/℃之间的可变TCR的测辐射热计的氧化物。 ,改变钨含量和氧化时间。 并且可重现的薄膜可以通过低成本的薄膜沉积设备制造,而不需要昂贵的离子束或激光设备。 因此,可以以再现性获得具有低于100kOmega和TCR高于-3%/℃的特性的测辐射热计的氧化物,由此可以制造具有高灵敏度的非冷却型红外检测器。
    • 10. 发明申请
    • System and method for controlling coupling between communication terminals for audio-video communication
    • 用于控制用于音频 - 视频通信的通信终端之间的耦合的系统和方法
    • US20060140175A1
    • 2006-06-29
    • US11316998
    • 2005-12-27
    • Yong-Hee Han
    • Yong-Hee Han
    • H04L12/66H04L12/56
    • H04N7/141H04M2201/50H04W84/12H04W88/06
    • Provided are a system and method for controlling coupling between communication terminals for audio-video communication capable of performing the audio-video communication with a third external communication terminal by interworking a phone screen of a first communication terminal with a WiFi phone of a second communication terminal. The method includes the steps of: setting up, by a first communication terminal having a video communication function and a second communication terminal having an audio communication function, a coupling mode therebetween; and checking a coupling between the first communication terminal and the second communication terminal by means of a coupling identification code, and setting a speech path for transceiving video data to set up the coupling. Thereby, a plurality of WiFi phones are each coupled with one phone screen by predetermined rules, and any one of the WiFi phones can be used as an individual video phone. As such, a degree of application of the phone screen can be improved, and expensive devices mounted in the phone screen can be saved by the number of the coupled WiFi phones.
    • 提供了一种用于控制音频 - 视频通信的通信终端之间的耦合的系统和方法,其能够通过将第一通信终端的电话屏幕与第二通信终端的WiFi电话互通来执行与第三外部通信终端的音频 - 视频通信 。 该方法包括以下步骤:由具有视频通信功能的第一通信终端和具有音频通信功能的第二通信终端设置它们之间的耦合模式; 以及通过耦合识别码检查第一通信终端和第二通信终端之间的耦合,并且设置用于收发视频数据的语音路径以建立耦合。 因此,多个WiFi电话分别通过预定的规则与一个电话屏幕耦合,并且WiFi电话中的任何一个可以用作个人视频电话。 因此,可以提高电话屏幕的应用程度,并且通过耦合的WiFi电话的数量可以节省安装在电话屏幕中的昂贵的设备。