CN107015339B - 用于扫描条码的图像扫描器的具有可构造的光学器件的附加装置 - Google Patents
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Abstract
本发明提供了一种用于扫描条码的图像扫描器的附加装置。该附加装置包括安装至图像扫描器上的标准范围透镜前部的壳体,以及透镜保持器。透镜保持器具有用于保持第一透镜的第一位置;具有第二位置,该第二位置是孔;以及具有用于保持第二透镜的第三位置。高密度透镜安装在第一位置中。扩展范围透镜安装在第三位置中。透镜保持器安装在壳体中,并且横向于图像扫描器的标准范围透镜的光轴。另外,透镜保持器在壳体内是可移动的,以交替地定位高密度透镜、孔和扩展范围透镜使其与图像扫描器的标准范围透镜的光轴对齐。
Description
技术领域
本发明涉及用于扫描条码的图像扫描器,以及特别地涉及具有用于各种解码应用的可构造的光学器件的附加装置。
背景技术
通常而言,当前存在三种类型的图像扫描器产品。其每一种专用于一类应用并且受在成像扫描器中所使用的透镜所限定。
例如,对于通用的应用,成像扫描器使用标准范围(SR)透镜。具有在近范围处聚焦的高密度透镜(HD)用于在近范围中的最佳性能以读取细间距高密度码。当存在扩展成像扫描器的工作范围的需求时,使用具有较长的焦距长度和较窄的视场的扩展范围(ER)透镜。
在每一个情形中,要求不同的扫描器。在一些应用中,需要在相同的工作区域内读取不同类型的条码,导致在一个位置处需要多个扫描器。
因此,对于具有多视场和多焦点能力的一体式扫描器、同时以最低的成本使用最小的部件存在需求。
发明内容
因此,在一个方面中,本发明包括用于扫描条码的图像扫描器的附加装置。图像扫描器设置有标准范围透镜,该标准范围透镜具有透镜前部和光轴。
在示例性实施例中,用于扫描条码的图像传感器的附加装置包括壳体和透镜保持器。该壳体安装至图像扫描器上的标准范围透镜前部。该透镜保持器设置有用于保持第一透镜的第一位置,具有孔的第二位置,以及用于保持第二透镜的第三位置。高密度透镜安装在第一位置中。扩展范围透镜安装在第三位置中。透镜保持器安装在壳体中并且横向于图像扫描器的光轴。另外,透镜保持器在壳体内是可移动的,以交替地定位高密度透镜、孔和扩展范围透镜使其与图像扫描器的标准范围透镜的光轴对齐。
在另一个示例性实施例中,附加装置进一步设置有安装至壳体的电机。该电机联接至透镜保持器。该电机被构造成在壳体内移动透镜保持器,以交替地定位高密度透镜、孔和扩展范围透镜使其与图像扫描器的标准范围透镜的光轴对齐。
在附加装置的另一个示例性实施例中,电机设置有螺纹轴。透镜保持器设置有螺纹容纳器。电机经由被容纳至螺纹容纳器中的螺纹轴而联接至透镜保持器。
在附加装置的又一个示例性实施例中,透镜保持器在壳体中是能够可旋转地移动的。
在附加装置的另一个示例性实施例中,透镜保持器在壳体内在平行于图像扫描器放置于其上的表面的方向上是可移动的。
在附加装置的另一个示例性实施例中,透镜保持器在壳体内在垂直于图像扫描器放置在其上的表面的方向上是可移动的。
在附加装置的另一个示例性实施例中,扩展范围透镜是伸缩式双胶合透镜(doublet lens)。
在附加装置的另一个示例性实施例中,高密度透镜是平凸透镜。
在附加装置的又一个示例性实施例中,扩展范围透镜和高密度透镜被模制至透镜保持器中。
在附加装置的另一个示例性实施例中,壳体设置有滑动销。透镜保持器设置有用于滑动销的容纳器。当滑动销容纳在容纳器中时,透镜保持器可移动地安装至壳体。
在附加装置的另一个示例性实施例中,与图像扫描器的标准范围透镜的光轴对齐的第一、第二和第三位置是预定位置。透镜保持器设置有用于壳体内的预定位置的机械止动件。
在附加装置的另一个示例性实施例中,电机是微型直流电机。
在附加装置的另一个示例性实施例中,电机设置有自锁定式螺纹驱动机构。
在另一个示例性实施例中,图像扫描器设置有激光瞄准器和照明器。激光瞄准器、照明器和标准范围透镜处于第一线性关系。附加装置进一步包括瞄准器透镜。透镜保持器设置有瞄准器透镜保持器。瞄准器透镜置于瞄准器透镜保持器中。瞄准器透镜保持器与第三位置处于第二线性关系。第一位置、第二位置和第三位置处于第三线性关系。第二线性关系垂直于第三线性关系。第二线性关系对应于第一线性关系,使得当第三位置与图像扫描器的光轴对齐时,瞄准器透镜与激光瞄准器对齐。
在另一个示例性实施例中,附加装置进一步包括照明器透镜。透镜保持器设置有照明器透镜保持器。照明器透镜置于照明器透镜保持器中。照明器透镜保持器与第三位置以及瞄准器透镜保持器处于第二线性关系。第二线性关系对应于第一线性关系,使得当第三位置与图像扫描器的光轴对齐时,瞄准器透镜与激光瞄准器对齐,并且照明器透镜与照明器对齐。
在附加装置的又一个示例性实施例中,提供第一位置以保持多于一个的透镜,并且高密度透镜由多于一个的透镜构成。
在附加装置的另一个示例性实施例中,提供第三位置以保持多于一个的透镜,并且扩展范围透镜由多于一个的透镜构成。
在附加装置的另一个示例性实施例中,第一位置、第二位置和第三位置适于额外地保持至少一个过滤器。
在附加装置的另一个示例性实施例中,至少一个过滤器从下述内容中选择:紫外光过滤器、近红外过滤器、偏振过滤器、具有优化的频谱和偏振的组合的过滤器。
在附加装置的另一个示例性实施例中,扩展范围透镜从下述内容中选择:液体透镜、液晶透镜以及伸缩式双胶合透镜。
在以下详细描述及其附图中,进一步解释了前述说明性概要、以及本发明的其他示例性目标和/或优点以及实现这些目标和/或有点的方式。
附图说明
图1示意性地描绘了能够用于本发明的通常一种类型的图像扫描器。
图2示意性地描绘了具有处于第一位置中的水平可移动透镜保持器的本发明的示例性实施例。
图3示意性地描绘了具有处于第二位置中的水平可移动透镜保持器的图2的示例性实施例的另一个位置。
图4示意性地描绘了具有处于第三位置中的水平可移动透镜保持器的图2的示例性实施例的另一个位置。
图5示意性地描绘了具有处于第一位置中的竖直可移动透镜保持器以及可选的附件的本发明的另一个示例性实施例。
图6示意性地描绘了具有处于第二位置中的竖直可移动透镜保持器的图5的示例性实施例的另一个位置。
图7示意性地描绘了具有处于第三位置中的竖直可移动透镜保持器的图5的示例性实施例的另一个位置。
图8在展开视图中示意性地描绘了具有能够可旋转地移动的透镜保持器的本发明另一个示例性实施例。
具体实施方式
本发明包括用于扫描条码的图像扫描器的附加装置。参照图1,用于本发明的典型的图像扫描器(10)设置有标准范围透镜(11),该标准范围透镜具有透镜前部(12)和光轴(13),该光轴由从标准范围透镜(11)延伸的箭头描绘。图像扫描器(10)还可以设置有激光瞄准器(14)和照明器(15)。在前述附图中,如在图1所描绘的图像扫描器(10)被用作附加装置的基础,尽管其他图像扫描器构造是可能的。
用于图像扫描器的附加装置的示例性实施例被描绘在图2至图4中。附加装置(20)包括壳体(22)。壳体(22)安装至图像扫描器(10)上的标准范围透镜前部(在这个图中未示出)。附加装置(20)进一步包括透镜保持器(24),该透镜保持器具有用于保持第一透镜的第一位置(25),具有孔的第二位置(26),以及具有用于保持第二透镜的第三位置(27)。高密度透镜(28)安装在第一位置(25)中。扩展范围透镜(29)安装在第三位置(27)中。透镜保持器(24)安装在壳体(22)中,横向于图像扫描器(10)的光轴(23)。透镜保持器(24)在壳体(22)内是可移动的以交替地定位高密度透镜(28)、孔(26)和扩展范围透镜(29)使其与图像扫描器(10)的标准范围透镜(11)的光轴(13)对齐,在下文中其由在透镜位置上的十字准线(crosshairs)所描绘。在本发明的图2中,高密度透镜(28)被定位并且与标准范围透镜(11)的光轴(13)对齐。图3描绘了具有孔的第二位置(26),该第二位置与标准范围透镜(11)的光轴(13)对齐。图4描绘了与标准范围透镜(11)的光轴(13)对齐的扩展范围透镜(29)。
在同样在图2至图4中描绘的另一个示例性实施例中,附加装置(20)设置有安装至壳体(22)的电机(31)。电机(31)例如可以是微型直流电机。电机(31)能够交替地定位高密度透镜(28)、孔(26)和扩展范围透镜(29)使其与标准范围透镜(11)的光轴(13)对齐,如在图2、图3和图4中相应地所描绘的。
在另一个示例性实施例中,电机(31)设置有螺纹轴(32),并且壳体(22)设置有螺纹容纳器(33)。以此方式,电机(31)能够使这些位置与标准透镜(11)的光轴(13)交替地对齐。优选地,电机(31)设置有自锁定式螺纹机构,该机构允许当使用图像扫描器(10)时精确地保持透镜保持器(24)的位置。
另外,壳体(22)可以设置有滑动销(34),该滑动销容纳在透镜保持器(24)上的容纳器(35)中。该滑动销辅助移动透镜保持器(24),并且有助于保持透镜保持器(24)关于标准范围透镜(11)的光轴(13)对齐。
在图2至图4中描绘的实施例中,透镜保持器(24)在壳体(22)内在水平方向上是可移动的,即,在平行于图像扫描器(10)可以放置于其上的表面(未示出)的方向上是可移动的。
图5、图6和图7描绘了本发明的附加装置(20)的另一个示例性实施例,在这里,透镜保持器(24)在壳体(22)内在竖直于图像扫描器(10)可以放置于其上的表面的方向上是可移动的。图5至图7的实施例通常具有如结合图2至图4描述的所有相同特征。图5是图像扫描器和附加装置的透视图,其示出了与标准范围透镜(在本图中不可见)的光轴(在这个图中未示出)对齐的高密度透镜(28)。图6描绘了本发明的图像扫描器和附加装置的另一个视图,其示出了与图像扫描器(10)的标准范围透镜(11)的光轴(13)对齐的孔(26)。图7与图6的角度类似,但是描绘了与图像扫描器(10)的标准范围透镜(11)的光轴(13)对齐的扩展范围透镜(29)。
在如图5至图7中所示的另一个示例性实施例中,附加装置(20)设置有瞄准器透镜(39),该瞄准器透镜经由瞄准器透镜保持器(40)安装在透镜保持器(24)中。特别地如在图7中所示,仅当扩展范围透镜(29)与标准范围透镜(11)的光轴(13)对齐时,瞄准器透镜(39)被定位在图像扫描器(10)的瞄准器(14)的前方。
在图5至图7中所描绘的另一个示例性实施例中,可选地,除了瞄准器透镜(39)之外,附加装置(20)可以设置有照明器透镜(41),该照明器透镜经由照明器透镜保持器(42)安装在透镜保持器(24)中。与瞄准器透镜(39)一样,仅当扩展范围透镜(29)与标准范围透镜(11)的光轴(13)对齐时,照明器透镜(41)与照明器(15)对齐。
瞄准器透镜(39)、照明器透镜(41)和扩展范围透镜(29)通常彼此成直线,形成线性布置,该线性布置对应于标准范围透镜(11)、瞄准器(14)和照明器(15)的线性布置。
在在图8中所描述的另一个示例性实施例中,附加装置(20)是能够可旋转地移动的。如在图中所示,附加装置(20)具有壳体(22)和透镜保持器(24)。具有螺纹轴(32)的电机(31)安装在壳体(22)上并且可旋转地移动透镜保持器(24)。壳体(22)具有开口(21),该开口对应于图像扫描器上的标准范围透镜。在本附图中没有示出图像扫描器。透镜保持器(24)经由安装销(50)安装至壳体(22)。透镜保持器(24)具有用于保持高密度透镜(28)、扩展范围透镜(29)和孔(26)的位置。电机轴(32)联接至透镜保持器(24),使得透镜能够在壳体中在开口(21)的前方旋转,并且因此与在图像扫描器上的标准范围透镜的光轴对齐。
透镜保持器(24)优选地设置有运动限制器(23),该运动限制器还可以作用为机械止动件。
在图1至图8中的任意前述实施例中,与标准范围透镜的光轴对齐的透镜和孔的位置可以被视为预定位置。在任意前述实施例中的透镜保持器可以设置有用于这些预定位置的机械止动件。虽然没有在图2至图7中被描绘,但是在图8中的运动限制器(23)可以作用为机械止动件,并且透镜保持器(24)可以设置有一个或多个机械止动件。
图8进一步描绘了待保持在透镜保持器(24)中的额外的扩展范围透镜(43)。在图2至图8中所描绘的任意前述实施例中,透镜保持器位置可以适于保持多于一个的透镜或其他光学部件,诸如,紫外光过滤器、近红外过滤器、偏振过滤器、以及具有优化的频谱和偏振的组合的过滤器。
额外地,在任意前述实施例中,高密度透镜优选是平凸透镜,但是可以由多于一个的透镜构成。高密度透镜可以被模制至透镜保持器中。
另外,在任意前述实施例中,扩展范围透镜优选地是伸缩式双胶合透镜。额外地,扩展范围透镜可以是液体透镜,液晶透镜,或伸缩式双胶合透镜。扩展范围透镜可以被模制至透镜保持器中。
为了补充本公开内容,通过参考将下列共同转让的专利、专利申请公开以及专利申请完整地并入本申请:
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美国专利申请公开序列号 2014/0282210;
美国专利申请公开序列号 2014/0284384;
美国专利申请公开序列号 2014/0288933;
美国专利申请公开序列号 2014/0297058;
美国专利申请公开序列号 2014/0299665;
美国专利申请公开序列号 2014/0312121;
美国专利申请公开序列号 2014/0319220;
美国专利申请公开序列号 2014/0319221;
美国专利申请公开序列号 2014/0326787;
美国专利申请公开序列号 2014/0332590;
美国专利申请公开序列号 2014/0344943;
美国专利申请公开序列号 2014/0346233;
美国专利申请公开序列号 2014/0351317;
美国专利申请公开序列号 2014/0353373;
美国专利申请公开序列号 2014/0361073;
美国专利申请公开序列号 2014/0361082;
美国专利申请公开序列号 2014/0362184;
美国专利申请公开序列号 2014/0363015;
美国专利申请公开序列号 2014/0369511;
美国专利申请公开序列号 2014/0374483;
美国专利申请公开序列号 2014/0374485;
美国专利申请公开序列号 2015/0001301;
美国专利申请公开序列号 2015/0001304;
美国专利申请公开序列号 2015/0003673;
美国专利申请公开序列号 2015/0009338;
美国专利申请公开序列号 2015/0009610;
美国专利申请公开序列号 2015/0014416;
美国专利申请公开序列号 2015/0021397;
美国专利申请公开序列号 2015/0028102;
美国专利申请公开序列号 2015/0028103;
美国专利申请公开序列号 2015/0028104;
美国专利申请公开序列号 2015/0029002;
美国专利申请公开序列号 2015/0032709;
美国专利申请公开序列号 2015/0039309;
美国专利申请公开序列号 2015/0039878;
美国专利申请公开序列号 2015/0040378;
美国专利申请公开序列号 2015/0048168;
美国专利申请公开序列号 2015/0049347;
美国专利申请公开序列号 2015/0051992;
美国专利申请公开序列号 2015/0053766;
美国专利申请公开序列号 2015/0053768;
美国专利申请公开序列号 2015/0053769;
美国专利申请公开序列号 2015/0060544;
美国专利申请公开序列号 2015/0062366;
美国专利申请公开序列号 2015/0063215;
美国专利申请公开序列号 2015/0063676;
美国专利申请公开序列号 2015/0069130;
美国专利申请公开序列号 2015/0071819;
美国专利申请公开序列号 2015/0083800;
美国专利申请公开序列号 2015/0086114;
美国专利申请公开序列号 2015/0088522;
美国专利申请公开序列号 2015/0096872;
美国专利申请公开序列号 2015/0099557;
美国专利申请公开序列号 2015/0100196;
美国专利申请公开序列号 2015/0102109;
美国专利申请公开序列号 2015/0115035;
美国专利申请公开序列号 2015/0127791;
美国专利申请公开序列号 2015/0128116;
美国专利申请公开序列号 2015/0129659;
美国专利申请公开序列号 2015/0133047;
美国专利申请公开序列号 2015/0134470;
美国专利申请公开序列号 2015/0136851;
美国专利申请公开序列号 2015/0136854;
美国专利申请公开序列号 2015/0142492;
美国专利申请公开序列号 2015/0144692;
美国专利申请公开序列号 2015/0144698;
美国专利申请公开序列号 2015/0144701;
美国专利申请公开序列号 2015/0149946;
美国专利申请公开序列号 2015/0161429;
美国专利申请公开序列号 2015/0169925;
美国专利申请公开序列号 2015/0169929;
美国专利申请公开序列号 2015/0178523;
美国专利申请公开序列号 2015/0178534;
美国专利申请公开序列号 2015/0178535;
美国专利申请公开序列号 2015/0178536;
美国专利申请公开序列号 2015/0178537;
美国专利申请公开序列号 2015/0181093;
美国专利申请公开序列号 2015/0181109;
美国专利申请序列号 13/367,978 ,其关于“a Laser Scanning ModuleEmploying an Elastomeric U-Hinge Based Laser Scanning Assembly”,2012年2月7日提交(Feng 等人);
美国专利申请序列号 29/458,405 ,其关于“an Electronic Device”,2013年6月19日提交 (Fitch 等人);
美国专利申请序列号 29/459,620 ,其关于“an Electronic DeviceEnclosure”, 2013年7月2日提交 (London 等人);
美国专利申请序列号 29/468,118 ,其关于“an Electronic Device Case”,2013年9月26日提交 (Oberpriller 等人);
美国专利申请序列号 14/150,393 ,其关于“Indicia-reader Having UnitaryConstruction Scanner”, 2014年1月8日提交 (Colavito 等人);
美国专利申请序列号 14/200,405 ,其关于“Indicia Reader,Size-LimitedApplications”,2014年3月7日提交filed March 7, 2014 (Feng 等人);
美国专利申请序列号 14/231,898 ,其关于“Hand-Mounted Indicia-ReadingDevice with Finger Motion Triggering”,2014年4月1日提交(Van Horn 等人);
美国专利申请序列号 29/486,759 ,其关于“an Imaging Terminal”, 2014年4月2日提交 (Oberpriller 等人);
美国专利申请序列号 14/257,364 ,其关于“Docking System and Method UsingNear Field Communication”,2014年4月21日提交 (Showering);
美国专利申请序列号 14/264,173 ,其关于“Autofocus Lens System ,IndiciaReaders”,2014年4月29日提交(Ackley 等人);
美国专利申请序列号 14/277,337 ,其关于“MULTIPURPOSE OPTICAL READER”,2014年5月14日提交 (Jovanovski 等人);
美国专利申请序列号 14/283,282 ,其关于“TERMINAL HAVING ILLUMINATIONAND FOCUS CONTROL”,2014年5月21日提交 (Liu 等人);
美国专利申请序列号 14/327,827 ,其关于“a MOBILE-PHONE ADAPTER ,ELECTRONIC TRANSACTIONS”, filed July 10, 2014 (Hejl);
美国专利申请序列号 14/334,934 ,其关于“a SYSTEM AND METHOD ,INDICIAVERIFICATION”, 2014年7月18日提交 (Hejl);
美国专利申请序列号 14/339,708 ,其关于“LASER SCANNING CODE SYMBOLREADING SYSTEM”, 2014年7月24日提交 (Xian 等人);
美国专利申请序列号 14/340,627 ,其关于“an AXIALLY REINFORCED FLEXIBLESCAN ELEMENT”, 2014年7月25日提交 (Rueblinger 等人);
美国专利申请序列号 14/446,391 ,其关于“MULTIFUNCTION POINT OF SALEAPPARATUS WITH OPTICAL SIGNATURE CAPTURE”,2014年7月30日提交 (Good 等人);
美国专利申请序列号 14/452,697 ,其关于“INTERACTIVE INDICIA READER”,2014年8月6日提交 (Todeschini);
美国专利申请序列号 14/453,019 ,其关于“DIMENSIONING SYSTEM WITH GUIDEDALIGNMENT”, 2014年8月6日提交 (Li 等人);
美国专利申请序列号 14/462,801 ,其关于“MOBILE COMPUTING DEVICE WITHDATA COGNITION SOFTWARE”,2014年8月19日(Todeschini 等人);
美国专利申请序列号 14/483,056 ,其关于“VARIABLE DEPTH OF FIELD BARCODESCANNER),2014年9月10日(McCloskey 等人);
美国专利申请序列号 14/513,808 ,其关于“IDENTIFYING INVENTORY ITEMS INA STORAGE FACILITY”,2014年10月14日提交(Singel 等人);
美国专利申请序列号 14/519,195 ,其关于“HANDHELD DIMENSIONING SYSTEMWITH FEEDBACK”,filed Oct. 21, 2014 (Laffargue 等人);
美国专利申请序列号 14/519,179 ,其关于“DIMENSIONING SYSTEM WITHMULTIPATH INTERFERENCE MITIGATION”,2014年10月21日提交(Thuries 等人);
美国专利申请序列号 14/519,211 ,其关于“SYSTEM AND METHOD ,DIMENSIONING”,2014年提交(Ackley 等人);
美国专利申请序列号 14/519,233 ,其关于“HANDHELD DIMENSIONER WITH DATA-QUALITY INDICATION”,2014年10月21日提交 (Laffargue 等人);
美国专利申请序列号 14/519,249 ,其关于“HANDHELD DIMENSIONING SYSTEMWITH MEASUREMENT-CONFORMANCE FEEDBACK”,2014年10月21日提交(Ackley 等人);
美国专利申请序列号 14/527,191 ,其关于“METHOD AND SYSTEM ,RECOGNIZINGSPEECH USING WILDCARDS IN AN EXPECTED RESPONSE”,2014年10月29日提交(Braho 等人);
美国专利申请序列号 14/529,563 ,其关于“ADAPTABLE INTERFACE ,A MOBILECOMPUTING DEVICE”,2014年10月31日提交(Schoon 等人);
美国专利申请序列号 14/529,857 ,其关于“BARCODE READER WITH SECURITYFEATURES”,2014年10月31日提交 (Todeschini 等人);
美国专利申请序列号 14/398,542 ,其关于“PORTABLE ELECTRONIC DEVICESHAVING A SEPARATE LOCATION TRIGGER UNIT ,USE IN CONTROLLING AN APPLICATIONUNIT”,2014年11月3日提交 (Bian 等人);
美国专利申请序列号 14/531,154 ,其关于“DIRECTING AN INSPECTOR THROUGHAN INSPECTION”,2014年11月3日提交 (Miller 等人);
美国专利申请序列号 14/533,319 ,其关于“BARCODE SCANNING SYSTEM USINGWEARABLE DEVICE WITH EMBEDDED CAMERA”,2014年11月5日提交(Todeschini);
美国专利申请序列号 14/535,764 ,其关于“CONCATENATED EXPECTED RESPONSES,SPEECH RECOGNITION”,2014年11月7日提交 (Braho 等人);
美国专利申请序列号 14/568,305 ,其关于“AUTO-CONTRAST VIEWFINDER ,ANINDICIA READER”,2014年12月12日提交 (Todeschini);
美国专利申请序列号 14/573,022 ,其关于“DYNAMIC DIAGNOSTIC INDICATORGENERATION”,2014年12月17日(Goldsmith);
美国专利申请序列号 14/578,627 ,其关于“SAFETY SYSTEM AND METHOD”,2014年12月22日提交 (Ackley 等人);
美国专利申请序列号 14/580,262 ,其关于“MEDIA GATE ,THERMAL TRANSFERPRINTERS”,2014年12月23日提交(Bowles);
美国专利申请序列号 14/590,024 ,其关于“SHELVING AND PACKAGE LOCATINGSYSTEMS ,DELIVERY VEHICLES”,2015年1月6日提交 (Payne);
美国专利申请序列号 14/596,757 ,其关于“SYSTEM AND METHOD ,DETECTINGBARCODE PRINTING ERRORS”,2015年1月14日提交 (Ackley);
美国专利申请序列号 14/416,147 ,其关于“OPTICAL READING APPARATUSHAVING VARIABLE SETTINGS”,2015年1月21日提交 (Chen 等人);
美国专利申请序列号 14/614,706 ,其关于“DEVICE ,SUPPORTING ANELECTRONIC TOOL ON A USER'S HAND”,2015年2月5日提交 (Oberpriller 等人);
美国专利申请序列号 14/614,796 ,其关于“CARGO APPORTIONMENTTECHNIQUES”,2015年2月5日提交 (Morton 等人);
美国专利申请序列号 29/516,892 ,其关于“TABLE COMPUTER”,2015年2月6日提交 (Bidwell 等人);
美国专利申请序列号 14/619,093 ,其关于“METHODS ,TRAINING A SPEECHRECOGNITION SYSTEM”2015年2月11日提交 (Pecorari);
美国专利申请序列号 14/628,708 ,其关于“DEVICE, SYSTEM, AND METHOD ,DETERMINING THE STATUS OF CHECKOUT LANES”,2015年2月23日提交 (Todeschini);
美国专利申请序列号 14/630,841 ,其关于“TERMINAL INCLUDING IMAGINGASSEMBLY”,2015年2月25日提交 (Gomez 等人);
美国专利申请序列号 14/635,346 ,其关于“SYSTEM AND METHOD ,RELIABLESTORE-AND-FORWARD DATA HANDLING BY ENCODED INFORMATION READING TERMINALS”,2015年3月2日提交 (Sevier);
美国专利申请序列号 29/519,017 ,其关于“SCANNER”,2015年3月2日提交 (Zhou等人);
美国专利申请序列号 14/405,278 ,其关于“DESIGN PATTERN ,SECURE STORE”,2015年3月9日提交 (Zhu 等人);
美国专利申请序列号 14/660,970 ,其关于“DECODABLE INDICIA READINGTERMINAL WITH COMBINED ILLUMINATION”,2015年3月18日提交 (Kearney 等人);
美国专利申请序列号 14/661,013 ,其关于“REPROGRAMMING SYSTEM AND METHOD,DEVICES INCLUDING PROGRAMMING SYMBOL”,2015年3月18日提交 (Soule 等人);
美国专利申请序列号 14/662,922 ,其关于“MULTIFUNCTION POINT OF SALESYSTEM”,2015年3月19日提交 (Van Horn 等人);
美国专利申请序列号 14/663,638 ,其关于“VEHICLE MOUNT COMPUTER WITHCONFIGURABLE IGNITION SWITCH BEHAVIOR”,2015年3月20日提交 (Davis 等人);
美国专利申请序列号 14/664,063 ,其关于“METHOD AND APPLICATION ,SCANNING A BARCODE WITH A SMART DEVICE WHILE CONTINUOUSLY RUNNING ANDDISPLAYING AN APPLICATION ON THE SMART DEVICE DISPLAY”,2015年3月20日提交(Todeschini);
美国专利申请序列号 14/669,280 ,其关于“TRANSFORMING COMPONENTS OF AWEB PAGE TO VOICE PROMPTS),2015年3月26日提交 (Funyak 等人”;
美国专利申请序列号 14/674,329 ,其关于“AIMER ,BARCODE SCANNING”,2015年3月31日提交 (Bidwell);
美国专利申请序列号 14/676,109 ,其关于“INDICIA READER”,2015年4月1日提交 (Huck);
美国专利申请序列号 14/676,327 ,其关于“DEVICE MANAGEMENT PROXY ,SECUREDEVICES”,2015年4月1日提交 (Yeakley 等人);
美国专利申请序列号 14/676,898 ,其关于“NAVIGATION SYSTEM CONFIGURED TOINTEGRATE MOTION SENSING DEVICE INPUTS”,2015年4月2日提交 (Showering);
美国专利申请序列号 14/679,275 ,其关于“DIMENSIONING SYSTEM CALIBRATIONSYSTEMS AND METHODS”,2015年4月6日提交 (Laffargue 等人);
美国专利申请序列号 29/523,098 ,其关于“HANDLE ,A TABLET COMPUTER”,2015年4月7日提交 (Bidwell 等人);
美国专利申请序列号 14/682,615 ,其关于“SYSTEM AND METHOD ,POWERMANAGEMENT OF MOBILE DEVICES”,2015年4月9日提交 (Murawski 等人);
美国专利申请序列号 14/686,822 ,其关于“MULTIPLE PLATFORM SUPPORTSYSTEM AND METHOD”,2015年4月15日提交 (Qu 等人);
美国专利申请序列号 14/687,289 ,其关于“SYSTEM ,COMMUNICATION VIA APERIPHERAL HUB”,2015年4月15日提交 (Kohtz 等人);
美国专利申请序列号 29/524,186 ,其关于“SCANNER”,2015年4月17日提交(Zhou 等人);
美国专利申请序列号 14/695,364 ,其关于“MEDICATION MANAGEMENT SYSTEM”,2015年4月24日提交 (Sewell 等人);
美国专利申请序列号 14/695,923 ,其关于“SECURE UNATTENDED NETWORKAUTHENTICATION”,2015年4月24日提交 (Kubler 等人);
美国专利申请序列号 29/525,068 ,其关于“TABLET COMPUTER WITH REMOVABLESCANNING DEVICE”,2015年4月27日提交 (Schulte 等人);
美国专利申请序列号 14/699,436 ,其关于“SYMBOL READING SYSTEM HAVINGPREDICTIVE DIAGNOSTICS”,2015年4月29日提交 (Nahill 等人);
美国专利申请序列号 14/702,110 ,其关于“SYSTEM AND METHOD ,REGULATINGBARCODE DATA INJECTION INTO A RUNNING APPLICATION ON A SMART DEVICE”,2015年5月1日提交 (Todeschini 等人);
美国专利申请序列号 14/702,979 ,其关于“TRACKING BATTERY CONDITIONS”,2015年5月4日提交 (Young 等人);
美国专利申请序列号 14/704,050 ,其关于“INTERMEDIATE LINEARPOSITIONING”,2015年5月5日提交 (Charpentier 等人);
美国专利申请序列号 14/705,012 ,其关于“HANDS-FREE HUMAN MACHINEINTERFACE RESPONSIVE TO A DRIVER OF A VEHICLE”,2015年5月6日提交 (Fitch 等人);
美国专利申请序列号 14/705,407 ,其关于“METHOD AND SYSTEM TO PROTECTSOFTWARE-BASED NETWORK-CONNECTED DEVICES FROM ADVANCED PERSISTENT THREAT”,2015年5月6日提交 (Hussey 等人);
美国专利申请序列号 14/707,037 ,其关于“SYSTEM AND METHOD ,DISPLAY OFINFORMATION USING A VEHICLE-MOUNT COMPUTER”,2015年5月8日提交 (Chamberlin);
美国专利申请序列号 14/707,123 ,其关于“APPLICATION INDEPENDENT DEX/UCSINTERFACE”,2015年5月8日提交 (Pape);
美国专利申请序列号 14/707,492 ,其关于“METHOD AND APPARATUS ,READINGOPTICAL INDICIA USING A PLURALITY OF DATA SOURCES”,2015年5月8日提交 (Smith 等人);
美国专利申请序列号 14/710,666 ,其关于“PRE-PAID USAGE SYSTEM ,ENCODEDINFORMATION READING TERMINALS”,2015年5月13日提交 (Smith);
美国专利申请序列号 29/526,918 ,其关于“CHARGING BASE”,2015年5月14日提交 (Fitch 等人);
美国专利申请序列号 14/715,672 ,其关于“AUGUMENTED REALITY ENABLEDHAZARD DISPLAY”,2015年5月19日提交 (Venkatesha 等人);
美国专利申请序列号 14/715,916 ,其关于“EVALUATING IMAGE VALUES”,2015年5月19日提交 (Ackley);
美国专利申请序列号 14/722,608 ,其关于“INTERACTIVE USER INTERFACE ,CAPTURING A DOCUMENT IN AN IMAGE SIGNAL”,2015年5月27日提交 (Showering 等人);
美国专利申请序列号 29/528,165 ,其关于“IN-COUNTER BARCODE SCANNER”,2015年5月27日提交 (Oberpriller 等人);
美国专利申请序列号 14/724,134 ,其关于“ELECTRONIC DEVICE WITH WIRELESSPATH SELECTION CAPABILITY”,2015年5月28日提交 (Wang 等人);
美国专利申请序列号 14/724,849 ,其关于“METHOD OF PROGRAMMING THEDEFAULT CABLE INTERFACE SOFTWARE IN AN INDICIA READING DEVICE”,2015年5月29日提交 (Barten);
美国专利申请序列号 14/724,908 ,其关于“IMAGING APPARATUS HAVINGIMAGING ASSEMBLY”,2015年5月29日提交 (Barber 等人);
美国专利申请序列号 14/725,352 ,其关于“APPARATUS AND METHODS ,MONITORING ONE OR MORE PORTABLE DATA TERMINALS”, (Caballero 等人);
美国专利申请序列号 29/528,590 ,其关于“ELECTRONIC DEVICE”,2015年5月29日提交 (Fitch 等人);
美国专利申请序列号 29/528,890 ,其关于“MOBILE COMPUTER HOUSING”,2015年6月2日提交 (Fitch 等人);
美国专利申请序列号 14/728,397 ,其关于“DEVICE MANAGEMENT USING VIRTUALINTERFACES CROSS-REFERENCE TO RELATED APPLICATIONS”,2015年6月2日提交(Caballero);
美国专利申请序列号 14/732,870 ,其关于“DATA COLLECTION MODULE ANDSYSTEM”,2015年6月8日提交 (Powilleit);
美国专利申请序列号 29/529,441 ,其关于“INDICIA READING DEVICE”,2015年6月8日提交 (Zhou 等人);
美国专利申请序列号 14/735,717 ,其关于“INDICIA-READING SYSTEMS HAVINGAN INTERFACE WITH A USER'S NERVOUS SYSTEM”,2015年6月10日提交 (Todeschini);
美国专利申请序列号 14/738,038 ,其关于“METHOD OF AND SYSTEM ,DETECTINGOBJECT WEIGHING INTERFERENCES”,2015年6月12日提交 (Amundsen 等人);
美国专利申请序列号 14/740,320 ,其关于“TACTILE SWITCH ,A MOBILEELECTRONIC DEVICE”,2015年6月16日提交 (Bandringa);
美国专利申请序列号 14/740,373 ,其关于“CALIBRATING A VOLUMEDIMENSIONER”,2015年6月16日提交 (Ackley 等人);
美国专利申请序列号 14/742,818 ,其关于“INDICIA READING SYSTEMEMPLOYING DIGITAL GAIN CONTROL”,2015年6月18日提交 (Xian 等人);
美国专利申请序列号 14/743,257 ,其关于“WIRELESS MESH POINT PORTABLEDATA TERMINAL”,2015年6月18日提交 (Wang 等人);
美国专利申请序列号 29/530,600 ,其关于“CYCLONE”,2015年6月18日提交(Vargo 等人);
美国专利申请序列号 14/744,633 ,其关于“IMAGING APPARATUS COMPRISINGIMAGE SENSOR ARRAY HAVING SHARED GLOBAL SHUTTER CIRCUITRY”,2015年6月19日提交(Wang);
美国专利申请序列号 14/744,836 ,其关于“CLOUD-BASED SYSTEM ,READING OFDECODABLE INDICIA”,2015年6月19日提交 (Todeschini 等人);
美国专利申请序列号 14/745,006 ,其关于“SELECTIVE OUTPUT OF DECODEDMESSAGE DATA”,2015年6月19日提交 (Todeschini 等人);
美国专利申请序列号 14/747,197 ,其关于“OPTICAL PATTERN PROJECTOR”,2015年6月23日提交 (Thuries 等人);
美国专利申请序列号 14/747,490 ,其关于“DUAL-PROJECTOR THREE-DIMENSIONAL SCANNER”,2015年6月23日提交 (Jovanovski 等人); 以及
美国专利申请序列号 14/748,446 ,其关于“CORDLESS INDICIA READER WITH AMULTIFUNCTION COIL ,WIRELESS CHARGING AND EAS DEACTIVATION”,2015年6月24日提交(Xie 等人)。
在说明书和/或附图中,已经公开了本发明的典型实施例。本发明不限于这样的示例性实施例。术语“和/或”的使用包括一个或多个相关联的所列项目的任意和全部组合。附图是示意性的表示并且因此不必按照比例绘制。除非另外提及,已经以一般意义和描述性意义的方式使用特定术语,并且不是为了限制的目的。
Claims (13)
1.一种用于扫描条码的图像扫描器的附加装置,所述图像扫描器具有标准范围透镜,所述标准范围透镜具有透镜前部和光轴;所述附加装置包括:
壳体,所述壳体安装至所述图像扫描器上的标准范围透镜前部;
高密度透镜;
扩展范围透镜;
透镜保持器,所述透镜保持器具有用于保持高密度透镜的第一位置;具有第二位置,所述第二位置是孔;以及具有用于保持扩展范围透镜的第三位置;
所述透镜保持器安装在所述壳体中并且横向于所述图像扫描器的所述光轴;
所述透镜保持器在所述壳体内是可移动的,以交替地定位所述高密度透镜、所述孔以及所述扩展范围透镜使其与所述图像扫描器的所述标准范围透镜的所述光轴对齐,
其中,所述图像扫描器设置有激光瞄准器和照明器;所述激光瞄准器、所述照明器和所述标准范围透镜处于第一线性关系;
其中,所述附加装置进一步包括瞄准器透镜和照明器透镜,所述透镜保持器设置有瞄准器透镜保持器和照明器透镜保持器,其中所述瞄准器透镜经由瞄准器透镜保持器安装在所述透镜保持器中,并且所述照明器透镜经由照明器透镜保持器安装在所述透镜保持器中,使得所述瞄准器透镜保持器和所述照明器透镜保持器与所述第三位置处于第二线性关系;其中,当所述第三位置与所述图像扫描器的所述光轴对齐时,所述瞄准器透镜与所述激光瞄准器对齐,并且所述照明器透镜与所述照明器对齐。
2.根据权利要求1所述的附加装置,进一步包括电机,所述电机安装至所述壳体;所述电机联接至所述透镜保持器;所述电机被构造成在所述壳体内移动所述透镜保持器,以交替地定位所述高密度透镜、所述孔以及所述扩展范围透镜使其与所述图像扫描器的所述标准范围透镜的所述光轴对齐。
3.根据权利要求2所述的附加装置,其中,所述电机设置有螺纹轴;所述透镜保持器设置有螺纹容纳器;以及其中,所述电机经由容纳至所述螺纹容纳器中的螺纹轴而联接至所述透镜保持器。
4.根据权利要求2所述的附加装置,其中,所述透镜保持器在所述壳体内、在垂直于所述图像扫描器放置在其上的平面的方向上是可移动的。
5.根据权利要求1所述的附加装置,其中,所述扩展范围透镜是伸缩式双胶合透镜。
6.根据权利要求1所述的附加装置,其中,所述高密度透镜是平凸透镜。
7.根据权利要求1所述的附加装置,其中,所述扩展范围透镜和所述高密度透镜被模制至所述透镜保持器中。
8.根据权利要求1所述的附加装置,其中,所述壳体设置有滑动销;以及其中,所述透镜保持器设置有用于所述滑动销的容纳器;当所述滑动销容纳在所述容纳器中时,所述透镜保持器被可移动地安装至所述壳体。
9.根据权利要求1所述的附加装置,其中,与所述图像扫描器的所述标准范围透镜的所述光轴对齐的第一、第二和第三位置是预定位置;以及其中,所述透镜保持器设置有用于所述壳体内的所述预定位置的机械止动件。
10.根据权利要求2所述的附加装置,其中,所述电机是微型直流电机。
11.根据权利要求3所述的附加装置,其中,所述电机设置有自锁定式螺纹驱动机构。
12.根据权利要求1所述的附加装置,其中,所述第一位置、所述第二位置和所述第三位置处于第三线性关系;所述第二线性关系垂直于所述第三线性关系;所述第二线性关系对应于所述第一线性关系,使得当所述第三位置与所述图像扫描器的所述光轴对齐时,所述瞄准器透镜与所述激光瞄准器对齐。
13.根据权利要求12所述的附加装置,其中,所述第二线性关系对应于所述第一线性关系,使得当所述第三位置与所述图像扫描器的所述光轴对齐时,所述瞄准器透镜与所述激光瞄准器对齐,并且所述照明器透镜与所述照明器对齐。
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US9697401B2 (en) | 2017-07-04 |
CN107015339A (zh) | 2017-08-04 |
US10303909B2 (en) | 2019-05-28 |
US20170300727A1 (en) | 2017-10-19 |
EP3173835A1 (en) | 2017-05-31 |
US20170147844A1 (en) | 2017-05-25 |
EP3173835B1 (en) | 2019-04-17 |
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