중앙 원격 모니터링을 위한 의료용 통신장치
    21.
    发明公开
    중앙 원격 모니터링을 위한 의료용 통신장치 无效
    用于中枢远程监测患者的医疗通信设备

    公开(公告)号:KR1020120028626A

    公开(公告)日:2012-03-23

    申请号:KR1020100090593

    申请日:2010-09-15

    CPC classification number: A61B5/002 G06F19/3418

    Abstract: PURPOSE: A medical communication apparatus for a central remote monitoring system is provided to effectively control channels by enabling a user to control a channel establishment switch without changing system environment. CONSTITUTION: A converter(150) changes the frame format of a digital mode for a biometric signal collected by a PMS(Pertinent Monitoring System)(10) into an analog signal. A channel establishment switch(124) receives a selecting signal for a channel which establishes a transmission frequency band. A control unit(123) transmits channel information including the selecting signal to a PLL(Phase Locked Loop) unit(120a). A mixer(140) combines the analog signal with a local oscillation frequency.

    Abstract translation: 目的:提供一种用于中央远程监控系统的医疗通信设备,通过使用户能够在不改变系统环境的情况下控制信道建立交换机来有效地控制信道。 构成:A转换器(150)将由PMS(相关监视系统)(10)收集的生物特征信号的数字模式的帧格式改变为模拟信号。 信道建立交换机(124)接收建立发送频带的信道的选择信号。 控制单元(123)向PLL(锁相环)单元(120a)发送包括选择信号的信道信息。 混频器(140)将模拟信号与本地振荡频率组合。

    복합 생체신호 인식을 통한 건강관리시스템과 이를 이용한 건강관리방법
    22.
    发明公开
    복합 생체신호 인식을 통한 건강관리시스템과 이를 이용한 건강관리방법 无效
    基于实时生物信号识别和健康方法的健康系统

    公开(公告)号:KR1020110135702A

    公开(公告)日:2011-12-19

    申请号:KR1020100055574

    申请日:2010-06-11

    CPC classification number: G16H50/20 A61B5/7264 G06F19/00

    Abstract: PURPOSE: A healthcare system based on a real time bio-signal awareness and a healthcare method are provide to help a user to mange health management by receiving various bio signals in real time. CONSTITUTION: In a healthcare system based on a real time bio-signal awareness and a healthcare method, a receiver(100) receives cardiac information data from a bio signal measuring terminal(20). A data classification unit(210) classifies cardiac information from the cardiac information data. A storage unit(220) stores the cardiac information. A data analysis unit(230) analyzes the saved cardiac information. A control unit(240) transmits a analyzed result to an output terminal(40). A feedback unit(260) searches feedback information and transfers it to the output unit. The data analysis unit analyzes cardiac information through an HRV(Heart Rate Variability) analysis method.

    Abstract translation: 目的:基于实时生物信号意识和保健方法的医疗保健系统,旨在帮助用户通过实时接收各种生物信号来管理健康管理。 构成:在基于实时生物信号感知和保健方法的医疗保健系统中,接收器(100)从生物信号测量终端(20)接收心脏信息数据。 数据分类单元(210)将来自心脏信息数据的心脏信息进行分类。 存储单元(220)存储心脏信息。 数据分析单元(230)分析保存的心脏信息。 控制单元(240)将分析结果发送到输出端子(40)。 反馈单元(260)搜索反馈信息并将其传送到输出单元。 数据分析单元通过HRV(心率变异性)分析方法分析心脏信息。

    인체이식형 의료 장치를 위한 무선통신망에서의 통신 효율이 향상된 프레임 형성 방법
    23.
    发明公开
    인체이식형 의료 장치를 위한 무선통신망에서의 통신 효율이 향상된 프레임 형성 방법 失效
    用于植入医疗器械的无线通信中的帧数据形成方法

    公开(公告)号:KR1020110009405A

    公开(公告)日:2011-01-28

    申请号:KR1020090066790

    申请日:2009-07-22

    Abstract: PURPOSE: A frame forming method for increasing the communication efficiency of a wireless communication network is provided to request the retransmission of the payload when there is transmission error. CONSTITUTION: A PHY header part includes information about showing the entire size of a frame and information about confirming the beginning of the frame. The MAC header part includes the information about showing the type of a frame, the information about checking the order of a frame, the information about a flow control of the frame, flag information, and information about the size of a data block. Originator and receiver information is the information for connection between a receiver and an originator.

    Abstract translation: 目的:提供一种用于提高无线通信网络的通信效率的帧形成方法,以便在存在传输错误时请求有效载荷的重传。 构成:PHY标头部分包括关于显示帧的整个大小的信息以及关于确认帧的开始的信息。 MAC头部分包括关于显示帧的类型的信息,关于检查帧的顺序的信息,关于帧的流控制的信息,标志信息以及关于数据块的大小的信息。 发起者和接收者信息是接收者和发起者之间的连接信息。

    파이프라인 구조 병렬 순환 중복 검사 장치 및 방법
    24.
    发明授权
    파이프라인 구조 병렬 순환 중복 검사 장치 및 방법 失效
    파이프라인구조병렬순환중복검사장치및방법

    公开(公告)号:KR100731985B1

    公开(公告)日:2007-06-25

    申请号:KR1020050133449

    申请日:2005-12-29

    Abstract: A device and a method for pipelined parallel CRC are provided to detect an error from received data in a fast data communication system with improved speed by designing an input data logic part of a CRC logic in a pipeline structure based on algorithms, which lower a logic level of each step under the logic level of a feedback part and optimize size of a register inserted in division. A data XOR logic(200) uses w-bit parallel data as input. A CRC code XOR logic(230) uses n-bit CRC code feedback as the input. An XOR array(250) outputs an n-bit CRC code result by performing XOR operation of output of the data XOR logic and the CRC code XOR logic. A CRC register(240) feeds back the stored n-bit CRC code and stores the n-bit CRC code output from the XOR array as the new n-bit CRC code. The data XOR logic includes a plurality of divided data XOR logics(220a-220k) divided to lower the logic level of the divided data XOR logic under the logic level of the CRC code XOR logic, and the plurality of divided registers(210a-210k) inputting/outputting the data of the divided data XOR logics.

    Abstract translation: 通过基于算法设计流水线结构中的CRC逻辑的输入数据逻辑部分,提供了流水线并行CRC的设备和方法,用于以快速数据通信系统中的接收数据检测来自接收数据的错误, 在反馈部分的逻辑电平之下的每个步骤的电平以及优化插入在除法中的寄存器的大小。 数据异或逻辑(200)使用w位并行数据作为输入。 CRC码XOR逻辑(230)使用n位CRC码反馈作为输入。 XOR阵列(250)通过对数据XOR逻辑和CRC码XOR逻辑的输出执行XOR操作来输出n位CRC码结果。 CRC寄存器(240)反馈存储的n位CRC码,并存储从XOR阵列输出的n位CRC码作为新的n位CRC码。 数据XOR逻辑包括多个分割数据XOR逻辑(220a-220k),被划分为在CRC代码XOR逻辑的逻辑电平下将分割数据XOR逻辑的逻辑电平降低,并且多个分割寄存器(210a-210k )输入/输出分割数据XOR逻辑的数据。

    CMOS 회로가 집적된 나노와이어 센서 칩의 제조 방법
    25.
    发明公开
    CMOS 회로가 집적된 나노와이어 센서 칩의 제조 방법 有权
    纳米线传感器芯片与CMOS电路集成的制造方法

    公开(公告)号:KR1020170078186A

    公开(公告)日:2017-07-07

    申请号:KR1020150188462

    申请日:2015-12-29

    Abstract: 본발명의일실시예는, 나노와이어센서의제조공정과 CMOS 회로의제조공정을통합하여, 하나의기판상에나노와이어센서및 CMOS 회로를동시에집적함으로써, 제조공정이간단하고, 잡음성능이개선되며, 신뢰성이향상되는 CMOS 회로가집적된나노와이어센서칩의제조방법에관한것이다.

    Abstract translation: 本发明的一个实施例中,通过集成在生产过程的生产步骤和纳米线传感器的CMOS电路和通过集成纳米线传感器,并在同一时间在一个衬底上的CMOS电路,和制造工艺被简化,从而提高噪声性能 并且提供一种制造纳米线传感器芯片的方法,所述纳米线传感器芯片与具有提高的可靠性的CMOS电路集成。

    네트워크 드라이브 타입의 규정 준수형 아카이빙 방법 및 시스템
    26.
    发明公开
    네트워크 드라이브 타입의 규정 준수형 아카이빙 방법 및 시스템 审中-实审
    网络驱动类型存档方法和系统符合规定

    公开(公告)号:KR1020160065347A

    公开(公告)日:2016-06-09

    申请号:KR1020140168835

    申请日:2014-11-28

    CPC classification number: G06F17/40 G06F17/30 Y02D70/00

    Abstract: 네트워크드라이브타입의규정준수형아카이빙방법및 시스템이제공된다. 본발명의실시예에따른아카이빙방법은, 파일리스트를표시하고, 사용자로부터파일리스트에나열된파일들중 적어도하나를선택받아, 아카이빙시스템에전송하여저장한다. 이에의해, 아카이빙작업에대한사용자편의성과아카이빙상태에대한사용자직관성을도모할수 있게된다.

    Abstract translation: 提供符合规定的网络驱动器类型归档方法及其系统。 根据本发明的实施例的归档方法显示文件列表,从用户接收文件列表中的文件中的至少一个,并将接收的文件列表发送到归档系统以存储文件。 由此,可以提高用户归档工作的便利性和用户对存档状态的直观性。

    스토리지 서버 환경에서 지역성 기반 SSD 캐시 모듈
    27.
    发明公开
    스토리지 서버 환경에서 지역성 기반 SSD 캐시 모듈 有权
    基于服务器环境的LOCALITY-AWARE SSD缓存模块

    公开(公告)号:KR1020150050764A

    公开(公告)日:2015-05-11

    申请号:KR1020130131411

    申请日:2013-10-31

    Abstract: 서버환경에서지역성기반 SSD 캐시모듈이제공된다. 본발명의실시예에따른 SSD 캐시모듈은, 서버시스템에서 SSD를 OS의캐시에서사용하는블록크기로구획하여 SSD 캐시로사용및 관리한다. 이에의해, SSD 캐시의성능을극대화할수 있다.

    Abstract translation: 提供了基于服务器环境的基于位置的SSD缓存模块。 根据本发明的实施例的SSD缓存模块将SSD与服务器系统内的OS的高速缓存中使用的块的大小相匹配,并将其用作SSD高速缓存。 因此,本发明可以使SSD缓存的功能最大化。

    모바일 기기에 착탈 가능한 요당 데이터 수집 모듈 및 그의 요당 센서 수집 방법
    28.
    发明公开
    모바일 기기에 착탈 가능한 요당 데이터 수집 모듈 및 그의 요당 센서 수집 방법 有权
    GLUCOSURIA数据收集模块可连接移动设备和GLUCOSURIA数据收集方法

    公开(公告)号:KR1020140103641A

    公开(公告)日:2014-08-27

    申请号:KR1020130017293

    申请日:2013-02-19

    CPC classification number: G01N33/493 H04Q9/00 H04Q2209/40

    Abstract: Provided are a urine glucose data collection module capable of being attached to a mobile device and a collection method for a urine glucose sensor thereof. The urine glucose data collection module, according to one embodiment of the present invention, comprises a wireless communications unit for wirelessly receiving urine glucose data from the urine glucose sensor; a coupling connector coupled with a cable terminal of the mobile device so as to enable communications with the mobile device; and a processor for transferring the urine glucose data received through the wireless communications unit to the mobile device through a coupling terminal. Thereby, the urine glucose data are collected in a timely manner without involving a medical team, a patient or a protector since the module coupled with the mobile device automatically collects the urine glucose data from the urine glucose sensor in a wireless manner.

    Abstract translation: 提供能够附着到移动装置的尿糖数据收集模块和其尿糖传感器的收集方法。 根据本发明的一个实施例的尿糖数据收集模块包括:无线通信单元,用于从尿糖传感器无线接收尿糖数据; 耦合连接器,与移动设备的电缆终端耦合,以便能够与移动设备进行通信; 以及处理器,用于通过耦合终端将通过无线通信单元接收的尿糖数据传送到移动设备。 因此,由于与移动装置连接的模块以无线方式从尿糖传感器自动收集尿糖数据,因此可以及时收集尿糖数据而不涉及医疗团队,患者或保护装置。

    가변적 CS 운용방법 및 이를 적용한 컴퓨팅 시스템
    29.
    发明公开
    가변적 CS 운용방법 및 이를 적용한 컴퓨팅 시스템 有权
    用于管理可变大小的方法和使用其的计算系统

    公开(公告)号:KR1020140030521A

    公开(公告)日:2014-03-12

    申请号:KR1020120096344

    申请日:2012-08-31

    CPC classification number: G06F3/061 G06F3/0683

    Abstract: Provided are a variable chunk size (CS) management method and a computing system applying the same. The variable CS management method according to an embodiment of the present invention includes the steps of: determining the storage performance; and setting the CS based on the storage performance measured in the prior step. The variable CS management method enhances the input/output performance of the storage, thereby boosting the processing speed of a computing system. [Reference numerals] (AA) Start; (S210) Reset?; (S220) Determine the storage I/O speed; (S230) High-speed I/O storage?; (S240) Set a basic CS as 64K; (S250) Execute an application?; (S260) Determine the I/O speed required by the application; (S270) Low speed?; (S280) Set a CS of the application as 16K; (S290) Set the basic CS as 16K

    Abstract translation: 提供了可变块大小(CS)管理方法和应用它的计算系统。 根据本发明的实施例的可变CS管理方法包括以下步骤:确定存储性能; 并基于在前一步骤中测量的存储性能来设置CS。 可变CS管理方法增强了存储器的输入/输出性能,从而提高了计算系统的处理速度。 (附图标记)(AA)开始; (S210)复位? (S220)确定存储I / O速度; (S230)高速I / O存储? (S240)将基本CS设置为64K; (S250)执行应用程序? (S260)确定应用程序所需的I / O速度; (S270)低速? (S280)将应用程序的CS设置为16K; (S290)将基本CS设置为16K

    바이오 레이더 기반 수면 무호흡 모니터링 시스템 및 방법
    30.
    发明公开
    바이오 레이더 기반 수면 무호흡 모니터링 시스템 및 방법 无效
    基于生物雷达监测睡眠APNEA的系统和方法

    公开(公告)号:KR1020140006256A

    公开(公告)日:2014-01-16

    申请号:KR1020120071171

    申请日:2012-06-29

    Abstract: The present invention relates to a system for monitoring sleep apnea based on bio radar and a method for the same. According to an embodiment of the present invention, the system operates a bio radar sensor when a user motion is detected from motion data generated by a motion detecting sensor and the sleep apnea of a user is monitored by using breathing data generated by the bio radar sensor. The sleep apnea of a user is monitored without sleep disturbances caused by discomfort or rejection by the user because the sleep apnea of the user is monitored during unconsciousness and with nonrestraint. The sleep apnea of the user can be conveniently and economically monitored by operating the radar sensor to monitor the sleep apnea automatically only when the user sleeps. [Reference numerals] (AA) Start; (BB) End; (S410) Generate motion data; (S420) Motion detected?; (S430) Generate breathing data; (S440) Monitoring of sleep apnea; (S450) Monitoring of sleep stage; (S460) Calculate sleeping hours; (S470) Display the number of sleep apnea, sleep stage, and sleeping hours

    Abstract translation: 本发明涉及一种用于监测基于生物雷达的睡眠呼吸暂停的系统及其方法。 根据本发明的实施例,当从运动检测传感器产生的运动数据检测到用户运动时,系统操作生物雷达传感器,并且通过使用由生物雷达传感器产生的呼吸数据来监视用户的睡眠呼吸暂停 。 对用户的睡眠呼吸暂停进行监测,不会由用户的不适或拒绝引起睡眠障碍,因为在无意识和无限制期间监视用户的睡眠呼吸暂停。 通过操作雷达传感器,只有当用户睡觉时,才能自动监视睡眠呼吸暂停,可以方便和经济地监控用户的睡眠呼吸暂停。 (附图标记)(AA)开始; (BB)结束; (S410)生成运动数据; (S420)运动检测? (S430)产生呼吸数据; (S440)睡眠呼吸暂停监测; (S450)睡眠阶段监测; (S460)计算睡眠时间; (S470)显示睡眠呼吸暂停,睡眠阶段和睡眠时间的数量

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