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    • 1. 发明授权
    • 히트 파이프를 이용한 에너지 절약형 제습장치
    • 使用热管的节能型减湿器
    • KR101231810B1
    • 2013-02-08
    • KR1020120148498
    • 2012-12-18
    • 온시스텍 주식회사
    • 장영우
    • F24F3/14F28D15/02
    • F28D15/02F24F3/1405F24F3/153F24F2003/1446F28D2021/0038
    • PURPOSE: An energy-saving type dehumidifier using a heat pipe is provided to serve as a heat pipe because the pressure of working fluid is controlled by an evaporating pressure control valve to condense the working fluid at the air temperature of an outlet of a main cooler. CONSTITUTION: A dehumidifier comprises a precooler(1), a main cooler(4), and a reheater(2). In the main cooler, a compressor, a condenser, and a first temperature type expansion valve are connected by turns. The main cooler secondarily cools air entered in a state of being primarily cooled by the precooler and removes moisture contained in the air. The reheater reheats the air with heat generated when working gas is condensed. First and second cooling coils(11,12) are installed in the precooler. The inlet of the first cooling coil is connected to the outlet of the compressor by the condenser and a second temperature type expansion valve. The outlet of the second cooling coil is connected to the inlet of the compressor.
    • 目的:提供使用热管的节能型除湿器作为热管,因为工作流体的压力由蒸发压力控制阀控制,以在主冷却器的出口的空气温度下冷凝工作流体 。 构成:除湿器包括预冷器(1),主冷却器(4)和再热器(2)。 在主冷却器中,轮流连接压缩机,冷凝器和第一温度型膨胀阀。 主冷却器二次冷却以预冷器主要冷却的状态进入的空气,并去除空气中含有的水分。 再加热器在工作气体冷凝时产生的热量再次加热空气。 第一和第二冷却盘管(11,12)安装在预冷器中。 第一冷却盘管的入口通过冷凝器和第二温度型膨胀阀连接到压缩机的出口。 第二冷却盘管的出口连接到压缩机的入口。
    • 2. 发明授权
    • 과실 수확기계의 수확량 증가를 위해 쉐이커 핑거에 부착되는 충격 완화 기구
    • 连接在SHAKER手指上的减震装置用于增加收割率
    • KR101628352B1
    • 2016-06-08
    • KR1020150085836
    • 2015-06-17
    • 온시스텍 주식회사
    • 장영우
    • A01D46/00
    • 본발명은케이스와상기케이스에형성되고과실수확기계의쉐이커핑거에끼울수 있도록구성되는관통홀및상기케이스외주면에형성되고, 충격을흡수하는재질로형성된돌기를포함하는것을특징으로하는과실수확기계의수확량증가를위해쉐이커핑거에부착되는충격완화기구에관한것이다. 본발명에따르면쉐이커핑거(Shaker Finger)에장착하여쉐이커핑거와과실의직접적인부딪힘으로인한충격으로과실이손상되거나, 덜익은과실이수확되는것을방지하는과실수확기계의수확량증가를위해쉐이커핑거에부착되는충격완화기구를제공할수 있다.
    • 本发明涉及一种连接在振动器手指上的减震装置,以增加果实收获机的产量。 所述减震装置包括:壳体; 通孔,其构造成形成在所述壳体中,并且配合到所述果实收获机的所述摇动指状件; 以及形成在所述壳体的外周面上并由吸收冲击的材料形成的突起。 根据本发明,提供了连接到摇动指状件以增加果实收获机的产量的减震装置,以防止由于振动器指状物和果实之间的直接碰撞引起的果实或未成熟果实的损坏 通过附接到摇动器手指收获。
    • 3. 发明授权
    • 멀티 오디오 방송 제공 시스템
    • 多媒体广播提供系统
    • KR101393692B1
    • 2014-05-13
    • KR1020130111709
    • 2013-09-17
    • 온시스텍 주식회사
    • 장영우
    • H04H20/61H04H20/47H04R3/00H04N7/18
    • H04H20/61H04H20/47H04N7/18H04R3/00
    • The present invention relates to a public address system and, more specifically, to a system for providing a multi-audio broadcast. The system for providing a multi-audio broadcast includes: an input-output unit including a plurality of audios or high-frequency terminals which are provided in each section; and a main terminal including an input unit which receives a first separate information by a user and receives a second separate information when a signal occurs in the high-frequency terminal provided in each section, a storage unit which stores information on a section where separate information has to be transmitted according to the position of the audio provided in each section, and information on a section where separate information has to be transmitted according to the position of the high-frequency terminal provided in each section, a control unit which extracts information on a section where the first or second separate information has to be transmitted by analyzing section information corresponding to the position of the audio or the high-frequency terminal stored in the storage unit when the first or second separate information is inputted to the input unit, an output unit which outputs the first or second separate information to an audio provided within the section corresponding to the section information extracted by the control unit, and a display unit which matches and displays the first or second separate information with the section information extracted by the control unit. According to the present invention, the system for providing a multi-audio broadcast can provide a separate broadcast according to the preference or need of a user in each section within a building, and can automatically output, to a screen of the main terminal, an image inputted to a CCTV provided in a section while providing a broadcast only in the section when an emergency occurs.
    • 本发明涉及一种公共广播系统,更具体地说,涉及一种用于提供多音频广播的系统。 用于提供多音频广播的系统包括:包括设置在每个部分中的多个音频或高频终端的输入 - 输出单元; 以及主终端,其包括:输入单元,其在用户接收第一分离信息时接收第二分离信息,当在每个区段中提供的高频终端中发生信号时,存储单元,存储关于单独信息的部分的信息 必须根据每个部分中提供的音频的位置发送信息,以及关于根据每个部分中提供的高频终端的位置必须发送分离信息的部分的信息,提取关于 当将第一或第二分离信息输入到输入单元时,通过分析对应于存储在存储单元中的音频或高频终端的位置的部分信息来发送第一或第二分离信息的部分, 输出单元,其将第一或第二分离信息输出到在区域对角中提供的音频 指定由控制单元提取的区段信息,以及显示单元,其与由控制单元提取的区段信息匹配并显示第一或第二单独信息。 根据本发明,用于提供多音频广播的系统可以根据建筑物内的每个部分中的用户的偏好或需要提供单独的广播,并且可以自动输出到主终端的屏幕 图像输入到一部分中提供的CCTV,同时仅在发生紧急情况的该部分中提供广播。
    • 4. 发明授权
    • 실시간 층간소음 제거 시스템
    • 省略
    • KR101373076B1
    • 2014-03-12
    • KR1020130111711
    • 2013-09-17
    • 온시스텍 주식회사
    • 장영우
    • G10K11/178G10K11/175
    • G10K11/178G10K2210/12G10K2210/3026
    • According to the features of the present invention, the present invention relates to a real-time interlayer noise removal system comprises: one or more sound input units to which identification numbers are respectively allocated according to installed locations, and which receive sound generated from the ceiling; a main server which includes a main DB for storing one or more reference waveform data respectively stored for each frequency of sound generated from the ceiling, one or more offset waveform data offsetting the sound corresponding to the reference waveform data, and location information according to the identification numbers of the sound input units, a sound analysis unit for analyzing sound received from the sound input units to generate waveform data, a sound detection unit for comparing the waveform data with pre-stored one or more reference waveform data to detect reference waveform data having a higher concordance rate, and a communication unit for receiving sound inputted from the sound input units and transmitting, to one or more sound generating units, offset waveform data corresponding to the reference waveform data detected by the sound detection unit; and the one or more sound generating units which include a sound converting unit for converting, into sound, offset waveform data transmitted from the communication unit and outputting the sound, and which are installed near each of the sound input units, and installed to generate sound towards the ceiling. Accordingly, the real-time interlayer noise removal system can receive sound through sound input units installed on the ceiling when an interlayer noise occurs, can compare the sound with pre-stored reference waveform data, and can output, through the sound generating units, offset waveform corresponding to the matched reference waveform data, thereby removing the interlayer noise. [Reference numerals] (100) Sound input unit; (200) Main server; (210) Main DB; (220) Sound analysis unit; (230) Sound detection unit; (240) Data generation unit; (250) Communication unit; (300) Sound generation unit; (310) Sound conversion unit
    • 根据本发明的特征,本发明涉及一种实时层间噪声去除系统,包括:一个或多个声音输入单元,根据安装位置分别分配识别号,并接收从天花板产生的声音的声音输入单元 ; 主服务器,包括:主DB,用于存储针对从天花板产生的每个声音的频率分别存储的一个或多个参考波形数据,一个或多个偏移与参考波形数据对应的声音的偏移波形数据,以及根据 声音输入单元的识别号码,用于分析从声音输入单元接收的声音以产生波形数据的声音分析单元,用于将波形数据与预先存储的一个或多个参考波形数据进行比较的声音检测单元,以检测参考波形数据 具有较高的一致率;以及通信单元,用于接收从声音输入单元输入的声音,并向一个或多个声音发生单元发送与由声音检测单元检测到的参考波形数据相对应的偏移波形数据; 以及一个或多个声音产生单元,其包括声音转换单元,用于将从通信单元发送的声音偏移波形数据输出并输出声音,并且安装在每个声音输入单元附近并被安装以产生声音 朝向天花板 因此,当发生层间噪声时,实时层间噪声去除系统可以通过安装在天花板上的声音输入单元接收声音,可以将声音与预先存储的参考波形数据进行比较,并且可以通过声音发生单元输出偏移 波形对应于匹配的参考波形数据,从而消除层间噪声。 (附图标记)(100)声音输入单元; (200)主服务器; (210)主DB; (220)声音分析单元; (230)声音检测单元; (240)数据生成单元; (250)通讯单元; (300)发声单元; (310)声音转换单元
    • 7. 发明授权
    • 디스플레이장치 및 음성출력장치를 제어하는 전관방송시스템
    • 省略
    • KR101393693B1
    • 2014-05-13
    • KR1020130111717
    • 2013-09-17
    • 온시스텍 주식회사
    • 장영우
    • H04H20/61H04H20/47
    • H04H20/61H04H20/47
    • The present invention relates to a public address system for controlling a display device and an audio output device which controls a plurality of display devices and a plurality of speaker devices which output image information or audio information inputted to a display or a speaker located at a corresponding output area information according to preset output information through a main server. According to the present invention, abnormalities are determined by comparing the input information inputted through a CCTV or a microphone and abnormal information stored in a main DB when fire occurs inside of a building or a school, and the abnormal information is outputted regardless of conditions of the display device or the speaker.
    • 本发明涉及一种用于控制显示设备的公共广播系统和控制多个显示设备的音频输出设备和输出到位于相应的显示器或扬声器的图像信息或音频信息的多个扬声器设备 通过主服务器根据预设的输出信息输出区域信息。 根据本发明,通过比较通过CCTV或麦克风输入的输入信息和在建筑物或学校内发生火灾时存储在主DB中的异常信息来确定异常,并且异常信息被输出,而不管 显示装置或扬声器。
    • 8. 发明授权
    • 실시간 오디오 소리교정 시스템
    • 省略
    • KR101373077B1
    • 2014-03-12
    • KR1020130111714
    • 2013-09-17
    • 온시스텍 주식회사
    • 장영우
    • H04R29/00H03G5/24G10L21/0208G01R31/28
    • H04R29/007G01R31/2825G10L21/0208H03G5/24
    • According to the characteristic of the present invention, the prevent invention relates to a real-time audio sound correction system, comprising: a first sound input unit which receives sound from an external source or audio data which are previously stored in the form of recorded data; a sound generating unit which outputs the sound or audio data received by the first sound input unit; a second sound input unit which is formed in proximity to the sound generating unit and receives sound generated by the sound generation unit; and a main server including a first sound analysis unit which analyzes the sound or audio data received by the first sound input unit to create first waveform data, a second sound analysis unit which analyzes the sound received by the second sound input unit to create second waveform data, a correction information generating unit which removes the waveform of the second waveform data from the waveform of the first waveform data to create correction information, and an equalization unit which, when the correction information is generated by the correction information generating unit, regulates the output from the sound generating unit so that the waveform of the first waveform data coincides with the waveform of the second waveform data. According to the present invention, the real-time audio sound correction system store the sound from the first sound input unit as the first waveform and the sound from the second sound input unit installed in proximity to a speaker as the second waveform and equalizes the first waveform and the second waveform so that the sound from the first sound input unit and the output sound from a speaker coincide with each other. [Reference numerals] (100) First sound input unit; (150) Sound generating unit; (200) Second sound input unit; (300) Main server; (310) First sound analysis unit; (320) Second sound analysis unit; (330) Correction information generating unit; (340) Equalization unit
    • 根据本发明的特征,本发明涉及一种实时音频声音校正系统,包括:第一声音输入单元,其从外部源接收声音或音频数据,其以预先以记录数据的形式存储 ; 声音产生单元,其输出由第一声音输入单元接收的声音或音频数据; 第二声音输入单元,其形成在声音产生单元附近并接收由声音产生单元产生的声音; 以及主服务器,包括分析由第一声音输入单元接收的声音数据以产生第一波形数据的第一声音分析单元,分析由第二声音输入单元接收的声音以产生第二波形的第二声音分析单元 数据,校正信息生成单元,其从第一波形数据的波形中去除第二波形数据的波形以产生校正信息;以及均衡单元,当校正信息生成单元生成校正信息时, 从声音产生单元输出,使得第一波形数据的波形与第二波形数据的波形一致。 根据本发明,实时音频声音校正系统将来自第一声音输入单元的声音作为第一波形存储,并且将来自安装在扬声器附近的第二声音输入单元的声音作为第二波形存储,并将第一 波形和第二波形,使得来自第一声音输入单元的声音和来自扬声器的输出声音彼此重合。 (附图标记)(100)第一声音输入单元; (150)发声单元; (200)第二声输入单元; (300)主服务器; (310)第一声音分析单元; (320)第二声音分析单元; (330)校正信息生成单元; (340)均衡单位
    • 9. 发明授权
    • 소리를 이용한 실시간 공조기 관리 시스템
    • 省略
    • KR101373075B1
    • 2014-03-12
    • KR1020130111710
    • 2013-09-17
    • 온시스텍 주식회사
    • 장영우
    • G06Q50/10G08C17/02
    • G06Q50/10G08C17/02
    • The present invention relates to a real-time air conditioner management system using sound which includes: at least one air conditioner; a sound input unit whose identification number is designated by location of the air conditioner and which is formed in the vicinity of the air conditioner and receives sound generated in the air conditioner; a main server which comprises a main DB for storing general driving waveform storing sound generated in the air conditioner according to the intensity of wind, reference waveform data including at least one problem waveform and location information according to an identification number of the sound input unit, a sound analysis unit for generating waveform data by analyzing the sound received from the sound input unit, a sound detection unit for comparing the waveform data and the pre-stored reference waveform data and detecting reference waveform data which coincides the most with the waveform data, a situation transmission unit for generating problem occurrence information which corresponds to a problem occurrence waveform when the reference waveform data corresponds to the problem occurrence waveform, and a communication unit for transmitting problem occurrence information generated in the situation transmission unit and location information which corresponds to the problem occurrence information to a manager terminal; and the manager terminal which displays the problem occurrence information and location information transmitted from the communication unit of the main server. According to the above, the real-time air conditioner management system using sound which perfectly detects a problem by determining if a problem is occurred or not by comparing a waveform with predetermined problem occurrence waveforms not only with temperature and pressure but also with the waveform which is converted from the sound generated in the air conditioner. [Reference numerals] (100) Air conditioner; (110) Status measurement sensor; (120) Sound input unit; (200) Main server; (210) Main DB; (220) Sound analysis unit; (230) Sound detection unit; (240) Situation transmission unit; (250) Communication unit; (260) Control unit; (270) Abnormal information determination unit; (300) Manager terminal; (310) Output unit
    • 本发明涉及使用声音的实时空调管理系统,其包括:至少一个空调; 声音输入单元,其识别号由空调机的位置指定,并形成在空调附近,并接收在空调器中产生的声音; 一种主服务器,包括:主DB,用于存储根据风的强度存储在空调器中产生的声音的一般驱动波形,包括至少一个问题波形的参考波形数据和根据声音输入单元的识别号码的位置信息; 声音分析单元,用于通过分析从声音输入单元接收的声音来产生波形数据;声音检测单元,用于比较波形数据和预先存储的参考波形数据,并检测与波形数据最相符的参考波形数据; 用于当所述参考波形数据对应于所述问题发生波形时,产生与所述问题发生波形相对应的问题发生信息的情况发送单元,以及用于发送在所述情况发送单元中生成的问题发生信息的通信单元和对应于 问题出现 向管理终端提供信息; 以及显示从主服务器的通信单元发送的问题发生信息和位置信息的管理终端。 根据上述,通过将波形与预定的问题发生波形进行比较,通过将波形与预定的问题发生波形进行比较,可以通过将波形与预定的问题发生波形进行比较来确定是否发生问题,从而完全检测出问题的实时空调管理系统, 是从空调中产生的声音转换成的。 (附图标记)(100)空调; (110)状态测量传感器; (120)声音输入单元; (200)主服务器; (210)主DB; (220)声音分析单元; (230)声音检测单元; (240)情况传输单位; (250)通讯单元; (260)控制单元; (270)异常信息确定单元; (300)经理终端; (310)输出单元