Clinical analyzer
    51.
    发明授权
    Clinical analyzer 失效
    临床分析仪

    公开(公告)号:US4482251A

    公开(公告)日:1984-11-13

    申请号:US312676

    申请日:1981-10-19

    Applicant: Richard Saylor

    Inventor: Richard Saylor

    CPC classification number: G01N21/253 G01N2201/0438 G01N2201/0484

    Abstract: A clinical analyzer that is microprocessor controlled is disclosed. A shuttle carries a plurality of cuvettes containing liquids to be spectrophotometrically analyzed by a single beam spectrophotometer. The shuttle moves the cuvettes past the spectrophotometer in a plurality of cycles to complete a given test. At the beginning of a test, spectrophotometer lamp energization is controlled to achieve a predetermined spectrophotometer output for a reference filter. The remaining filters are then positioned one-by-one, and amplifier gain is adjusted to achieve optimum spectrophotometer output for each filter. The gain associated with each filter is stored by the microprocessor, and thereafter during the test, when each filter is used, the stored gain associated with that microprocessor is utilized in the amplifier circuitry. Additionally, at the beginning of each cycle of shuttle movement, an air calibration reading is taken, to be used by the microprocessor in determining absorbance. This air-only reading, in combination with a reference reading taken with a water-filled cuvette at any convenient time, serves to provide for accurate calibration of the system, overcoming problems of drift.

    Abstract translation: 公开了一种微处理器控制的临床分析仪。 穿梭器携带多个含有液体的比色皿,以通过单光束分光光度计进行分光光度法分析。 梭子以多个周期移动比色皿通过分光光度计,以完成给定的测试。 在测试开始时,分光光度计灯通电被控制以实现用于参考滤波器的预定分光光度计输出。 然后将剩余的滤波器逐一放置,并调节放大器增益以实现每个滤波器的最佳分光光度计输出。 与每个滤波器相关联的增益由微处理器存储,然后在测试期间,当使用每个滤波器时,在该放大器电路中利用与该微处理器相关联的存储的增益。 另外,在穿梭运动的每个循环开始时,进行空气校准读数,由微处理器用于确定吸光度。 这种仅空读数,结合在任何方便的时间用含水比色杯读取的参考读数,用于提供系统的精确校准,克服漂移问题。

    이송중인 탄환의 자전과 공전을 이용한 탄환이미지 검사장치
    54.
    发明授权
    이송중인 탄환의 자전과 공전을 이용한 탄환이미지 검사장치 有权
    图像检测机器可以转移和转移主体的转移

    公开(公告)号:KR101638032B1

    公开(公告)日:2016-07-11

    申请号:KR1020150187040

    申请日:2015-12-28

    Inventor: 이동희

    Abstract: 이송중인탄환의자전과공전을이용한탄환이미지검사장치가개시된다. 본발명은수직회전하는이송궤도상에서공전이동하는탄환의바닥면을촬영한다음에특정지점에서추가로자전시켜측면전체를촬영하는이미지검사장치에관한것으로서수평회전축에의해외주면이수직방향으로회전하는원판형트레이휠(22)과그 외주면에다수개 설치되는트레이유닛(21)에각각탄환이실려이동하면서트레이휠(22)의공전궤도최정점에서탄환구동롤러(24)가트레이유닛(21)에접근하여탄환의탄피부분에접촉하며탄피외주면을통해탄환을회전시키는것이특징이다. 탄환은아이들롤러(21-1)와탄환롤러(24)의중간에서자전(rotation)하게되면서 360° 둘레면전체를탄환측면촬영모듈(40) 중일부카메라들에노출시키게되며그 이전과이후구간에서탄환바닥면촬영모듈(30) 및/또는탄환측면촬영모듈(40) 중나머지카메라들에바닥면과측면일부가노출될수 있다. 본발명은검사대상인탄환의모든부위를연속적으로빠르게포착할수 있을뿐 아니라카메라의촬영과및 이송장치의궤도를방해하지않으면서상기연속적으로포착된이미지정보에의해불량탄을즉시선별회수할수 있다.

    Abstract translation: 公开了一种通过使用转移的子弹的旋转和转动来检查子弹图像的装置。 本发明涉及一种能够拍摄子弹的地板表面的图像检查装置,在垂直旋转的转印轨道上旋转,然后通过在特定的点上附加旋转子弹来拍摄子弹的整个侧面。 子弹分别装载在盘托盘轮(22)上,其外表面通过水平旋转轴垂直旋转,并且多个托盘单元(21)安装在外表面上。 子弹操作辊(24)接近托盘轮(22)的旋转轨道的顶部处的托盘单元(21),并接触子弹的空盒,然后使子弹通过空盒的外表面旋转。 子弹在空转辊(21-1)和子弹辊(24)之间旋转,同时将整个360度圆周表面暴露于子弹侧摄影模块(40)的某些相机。 地板表面和侧面暴露于上一或下一部分中的子弹地板拍摄模块(30)和/或子弹侧拍摄模块的其余照相机。 本发明能够快速且连续地捕获作为检查对象的子弹的每个部分,并且通过连续拍摄的图像信息立即选择和收集有缺陷的子弹,而不中断传送装置的轨迹和通过 相机。

Patent Agency Ranking