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    • 21. 发明授权
    • 생초 분쇄기
    • 新鲜草药粉碎机
    • KR101574162B1
    • 2015-12-03
    • KR1020130027740
    • 2013-03-15
    • 김상준
    • 김상준
    • B02C4/02B02C4/42
    • 본발명은생초분쇄기에관한것으로서, 호퍼를통해생초와함께투입된잡석및 모래가한 쌍의제1분쇄롤러사이를통과하면서파쇄되도록하는제1분쇄부; 상기제1분쇄부의수직방향하부에설치되어제1분쇄부을통과한생초가한 쌍의분쇄롤러사이에투입되어섬유질이분쇄되도록하는제2분쇄부; 및상기제2분쇄부의수직방향하부에설치되어제2분쇄부을통과한생초분쇄물이한 쌍의분쇄롤러사이에투입되어섬유질이미세하게분쇄되도록하는제3분쇄부;를포함하고, 상기제1분쇄부, 제2분쇄부, 제3분쇄부은각각독립된구동력이제공되어단계별생초의분쇄속도가개별제어되도록하는것을특징으로한다.
    • 23. 发明公开
    • 식물 추출물 및 천연 계면활성제를 함유하는 천연 샴푸 조성물
    • 包含植物提取物和天然表面活性剂的天然洗发剂组合物
    • KR1020150053308A
    • 2015-05-18
    • KR1020130134913
    • 2013-11-07
    • 유영순김상준김찬용
    • 유영순김상준김찬용김은지김지선김찬호조성휘
    • A61K8/97A61Q5/02A61Q5/00
    • A61K8/97A61Q5/00A61Q5/002A61Q5/02
    • 본발명은편백잎, 솔잎, 잣나무잎, 녹차잎및 병풀을전해환원수와혼합하여발효시켜발효추출물을수득하는단계; 상기발효추출물, 천연제올라이트및 전해환원수를혼합하여교반하는단계; 및여기에천연계면활성제를함유하는첨가제를넣고혼합하는단계를포함하는샴푸조성물의제조방법에관한것으로서, 본발명에따른샴푸조성물중의피톤치드성분및 정유성분이두피로침투하여치유효과를나타내고, 후각을통해긴장완화효과및 정서적안정효과를나타내며, 두피비듬원인균의생성및 번식을완화할수 있고, 화학성분이주성분으로함유되지않고천연계면활성제를사용하기때문에 2차적부작용을일으키지않고장기간동안사용가능하다.
    • 洗发剂组合物的制造方法技术领域本发明涉及洗发剂组合物的制造方法,其特征在于,包括以下步骤:通过电解还原水混合和发酵樟子松叶,松针,韩国坚果松叶,绿茶叶和积雪草叶来获得发酵提取物 ; 混合搅拌发酵提取物,天然沸石和电解还原水; 并将结果与​​含有天然表面活性剂的添加剂混合。 根据本发明的洗发剂组合物中含有的杀藻剂和香精油在注射到头皮中后显示出治疗效果,并且植物保护剂的气味显示出对神经紧张和情绪稳定性的作用,可以抑制糠醛马拉色氏菌的产生和繁殖, 并且由于使用天然表面活性剂代替化学品作为主要成分,不会引起二次副作用,并且长期使用是可能的。
    • 24. 发明公开
    • 레이저 광센서를 적용하여 광 출력을 조절하는 레이저장치
    • 能够控制施加激光束传感器的激光装置
    • KR1020150037693A
    • 2015-04-08
    • KR1020140131942
    • 2014-09-30
    • 김상준
    • 김상준
    • H01S3/101
    • H01S3/101H01S5/0652H01S5/06804
    • 레이저광센서를적용하여광 출력을조절하는레이저장치가제공된다. 레이저장치는, 가공재료에레이저광을조사하는레이저모듈, 레이저광이조사되는가공재료의조사지점에서방사되는적외선, 조사지점에서반사되는레이저광의반사광의광량, 및레이저광에서분기된분기광의광량중 적어도하나를측정하여센싱신호를출력하는센서부, 및센서부로부터센싱신호를입력받아조사지점의목표온도, 조사지점의반사광의목표광량, 및레이저광의분기광의목표광량중 적어도하나를추종하여레이저모듈의출력을조절하는제어모듈을포함한다.
    • 提供了能够通过施加激光束传感器来控制光束功率的激光装置。 该激光装置包括:向工艺材料发射激光束的激光模块; 传感器部,其测量从其上照射激光束的处理材料的照射点发射的红外线中的至少一个,在照射点上反射的激光束的反射光量与分割量 从激光束分支的光,并输出感测信号; 以及控制模块,其从传感器部分接收感测信号,遵循照射点的目标温度,照射点的反射光的目标量和激光的分光的目标量中的至少一个 光束,并控制激光模块的输出。
    • 25. 发明公开
    • 발열 온도의 예측 제어 기능을 가지는 냉각 장치 및 그 동작 방법
    • 具有预测控制功能的冷却装置加热温度及其操作方法
    • KR1020140031592A
    • 2014-03-13
    • KR1020120098057
    • 2012-09-05
    • 김상준
    • 김상준
    • H05K7/20H01S5/024H01S3/04
    • The present invention relates to a cooling apparatus having a predictive control function of a heating temperature and an operation method thereof. The cooling apparatus according to the present invention includes a heating unit, a cooling unit, a current sensing unit, a voltage sensing unit, a temperature sensing unit, and a cooling control unit. The heating unit emits heat by operating when operation power is supplied. The cooling unit cools down the heating unit by responding to first and second cooling control signals. The current sensing unit senses current which is applied to the heating unit. The voltage sensing unit senses voltage which is applied to the heating unit. The temperature sensing unit senses the temperature of the heating unit. The cooling control unit outputs the first and the second cooling control signals by responding to a current sensing signal received from the current sensing unit and a voltage sensing signal received from the voltage sensing unit and selectively executes one between the output operation and output stopping operation of the first and the second cooling control signals by responding to a temperature sensing signal received from the temperature sensing unit. The cooling apparatus and the operation method thereof according to the present invention are able to suppress the dramatic temperature increase of the heating unit in an initial operation and operate stably without a distortion by making the heating unit reach a heat equilibrium state rapidly since the operation of a cooling system is controlled by sensing the temperature of the heating unit after operating the cooling system in advance by sensing current which is applied to the heating unit. [Reference numerals] (111) Heating unit; (112) Cooling unit; (121) Current sensor; (122) First amplifier; (123) First A/D converter; (131) Temperature sensor; (132) Second amplifier; (133) Second A/D converter; (140) Cooling control unit; (150) Input unit; (160) Main controller; (170) Power supply unit; (182) Third amplifier; (183) Third A/D converter
    • 本发明涉及具有加热温度的预测控制功能的冷却装置及其操作方法。 根据本发明的冷却装置包括加热单元,冷却单元,电流感测单元,电压感测单元,温度感测单元和冷却控制单元。 加热单元通过在运行电源时运行而发热。 冷却单元通过响应第一和第二冷却控制信号来冷却加热单元。 电流感测单元感测施加到加热单元的电流。 电压感测单元感测施加到加热单元的电压。 温度检测单元检测加热单元的温度。 冷却控制单元通过响应从电流检测单元接收的电流感测信号和从电压感测单元接收的电压感测信号来输出第一和第二冷却控制信号,并且选择性地执行在输出操作和输出停止操作 所述第一和第二冷却控制信号通过响应于从所述温度检测单元接收的温度感测信号。 根据本发明的冷却装置及其操作方法能够抑制加热单元在初始操作中的显着的温度升高,并且通过使加热单元从加热单元的操作迅速达到热平衡状态而稳定地运行而不发生变形 通过感测施加到加热单元的电流来预先操作冷却系统后,通过感测加热单元的温度来控制冷却系统。 (附图标记)(111)加热单元; (112)冷却单元; (121)电流传感器; (122)第一放大器; (123)第一A / D转换器; (131)温度传感器; (132)第二放大器; (133)第二A / D转换器; (140)冷却控制单元; (150)输入单元; (160)主控制器; (170)电源单元; (182)第三放大器; (183)第三A / D转换器
    • 26. 发明公开
    • 고체 레이저 장치 및 그의 구동방법
    • 固态激光器件及其驱动方法
    • KR1020130020529A
    • 2013-02-27
    • KR1020120022517
    • 2012-03-05
    • 김상준
    • 김상준
    • H01S3/09H01S3/042
    • H01S3/0912H01S3/042H01S3/09408H01S3/1124
    • PURPOSE: A solid state laser device and an actuating method thereof are provided to efficiently prevent the temperature of the laser device from being unnecessarily raised by an air-cooling system using a thermoelectric element. CONSTITUTION: A solid state laser device(1) outputs a pulsed laser light. The laser device includes a gain medium(100), a light pumping part(200), a reflector mirror(400), an output coupling mirror(500), and a Q-switch(300). The light pumping part injects excitation energy to the gain medium. The reflector mirror and the output coupling mirror resonate a laser light firstly generated from the gain medium. The Q-switch delays the resonance of the laser light. The Q-switch implements switching for outputting the pulsed laser light with a giant pulse shape. [Reference numerals] (100) Gain medium; (200) Light pumping part; (210) Controller; (300) Q-switch; (310) Q-switch drive; (400) Reflector mirror; (500) Output coupling mirror; (600) Cooling unit
    • 目的:提供固体激光装置及其致动方法,以有效地防止激光装置的温度由使用热电元件的空气冷却系统不必要地升高。 构成:固态激光装置(1)输出脉冲激光。 激光装置包括增益介质(100),光抽运部分(200),反射镜(400),输出耦合镜(500)和Q开关(300)。 光泵浦部分将激发能量注入增益介质。 反射镜和输出耦合镜谐振首先从增益介质产生的激光。 Q开关延迟了激光的共振。 Q开关实现用于输出具有巨脉冲形状的脉冲激光的切换。 (附图标记)(100)增益介质; (200)抽光部分; (210)控制器; (300)Q开关; (310)Q开关驱动; (400)反光镜; (500)输出耦合镜; (600)冷却单元
    • 28. 发明授权
    • 레이저 빔 강도의 선형 제어가 가능한 레이저 납땜 장치 및 레이저 용접 장치
    • 激光焊接设备和激光焊接设备,可以控制激光束线性的强度
    • KR101184338B1
    • 2012-09-20
    • KR1020110024493
    • 2011-03-18
    • 김상준
    • 김상준
    • B23K1/005B23K26/20B23K3/04H01S3/10
    • PURPOSE: A laser soldering apparatus and a laser welding apparatus are provided to precisely regulate heating temperature in soldering through linear control of laser beam intensity in a laser diode. CONSTITUTION: A laser soldering apparatus comprises a laser diode(130) which outputs a laser beam in response to an operating current based on a DC operating voltage applied to the anode, an optical fiber cable(160) which creates an optical path for leading the laser beam to a work piece, an analog signal generator(110) which outputs a linearly varying analog signal, a comparator(120) which compares the voltage of the analog signal with a feedback voltage and outputs a high- or low-level switching control voltage according to the comparison result, a switching element(140) which is connected between the cathode and control node of the laser diode and turned on or off in response to the switching control voltage, and a current detecting element(150) which includes a first terminal grounded and a second terminal connected to the control node and outputs a feedback voltage to the control node while the operating current is input through the control node. [Reference numerals] (111) Input part; (112) Digital program part; (113) D/A converter; (140) Switching element; (150) Current detecting element
    • 目的:提供激光焊接设备和激光焊接设备,通过在激光二极管中激光束强度的线性控制来精确调节焊接中的加热温度。 构成:激光焊接装置包括:激光二极管(130),其基于施加到阳极的DC工作电压响应于工作电流输出激光束;光纤电缆(160),其产生用于引导 激光束到工件,输出线性变化的模拟信号的模拟信号发生器(110),将模拟信号的电压与反馈电压进行比较的比较器(120),并输出高电平或低电平的开关控制 电压根据比较结果,连接在激光二极管的阴极和控制节点之间并响应于开关控制电压而导通或截止的开关元件(140),以及电流检测元件(150),其包括: 第一端子接地,第二端子连接到控制节点,并且在通过控制节点输入工作电流时向控制节点输出反馈电压。 (附图标记)(111)输入部; (112)数字节目部分; (113)D / A转换器; (140)开关元件; (150)电流检测元件