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    • 6. 发明授权
    • Laser alignment and calibration system for scanning lasers
    • 用于扫描激光器的激光对准和校准系统
    • US09588252B2
    • 2017-03-07
    • US14510003
    • 2014-10-08
    • Z-Image, LLC
    • Theodore Bruce ZiemkowskiJohn BonvalletDevon ClarkPeeraya NilwongFrank KennedyPatrick Simons
    • G01J1/20G01V13/00G01V8/18
    • G01V13/00G01J1/0228G01J1/58G01J2001/0285G01S7/4972G01V8/18
    • A two dimensional scanning laser system may automatically detect a laser, then align and calibrate itself to scan over the sensor area. The system may have a laser with a controller that may cause the laser to be directed over two dimensions, as well as a sensor apparatus. The laser may be controlled with a mirror system that may pivot in two directions, thus allowing the laser to be scanned over a two dimensional area. The sensor may be a point sensor, where the laser may be positioned in a constant direction, as well as a larger area sensor where the laser may be moved across the sensor area to detect objects in a two or three dimensional space. An alignment and calibration sequence may cause the laser to scan across its operational area and detect the location of one or more sensors.
    • 二维扫描激光系统可以自动检测激光,然后对准和校准自身以扫描传感器区域。 该系统可以具有带有控制器的激光器,该控制器可以使激光器被引导到两个维度上,以及传感器装置。 可以用可以在两个方向上枢转的反射镜系统来控制激光器,从而允许在二维区域上扫描激光。 传感器可以是点传感器,其中激光器可以沿恒定方向定位,以及更大面积的传感器,其中激光器可以在传感器区域上移动以检测二维或三维空间中的物体。 对准和校准序列可能导致激光扫描其操作区域并检测一个或多个传感器的位置。
    • 8. 发明申请
    • Laser Sensor with Flourescent Loaded Transparent Plastic
    • 带荧光灯的透明塑料激光传感器
    • US20160370496A1
    • 2016-12-22
    • US14509998
    • 2014-10-08
    • Z-Image, LLC
    • Theodore Bruce ZiemkowskiJohn BonvalletDevon ClarkPeeraya NilwongFrank KennedyPatrick Simons
    • G01V13/00G01V8/12
    • G01V13/00G01V8/12
    • A sensor for a laser may contain an at least partially transparent plastic with a fluorescent material that receives laser light at one frequency and creates light inside the transparent plastic with a second, different frequency. The light at the second frequency may travel through the plastic to an electronic sensor mounted against the transparent plastic. The sensor may be several feet in length or longer and still detect a single impinging Class I or Class II laser beam. In systems where the position of the laser may be known, a set of linear gain coefficients may be determined to calibrate the electronic sensor, as the signal strength of a received signal may decay with the distance from the electronic sensor to the location where the laser beam impinges the plastic element.
    • 用于激光的传感器可以包含具有以一个频率接收激光的荧光材料的至少部分透明的塑料,并以第二个不同的频率在透明塑料内产生光。 第二个频率的光线可以穿过塑料到安装在透明塑料上的电子传感器。 传感器可能长度为几英尺或更长,并且仍然检测单个撞击的I类或II类激光束。 在可以知道激光器的位置的系统中,可以确定一组线性增益系数来校准电子传感器,因为接收信号的信号强度可以随着从电子传感器到激光器的位置的距离而衰减 梁撞击塑料元件。
    • 9. 发明申请
    • Laser Alignment and Calibration System for Scanning Lasers
    • 用于扫描激光器的激光对准和校准系统
    • US20160170084A1
    • 2016-06-16
    • US14510003
    • 2014-10-08
    • Z-IMAGE, LLC
    • Theodore Bruce ZiemkowskiJohn BonvalletDevon ClarkPeeraya NilwongFrank KennedyPatrick Simons
    • G01V13/00G01V8/18
    • G01V13/00G01J1/0228G01J1/58G01J2001/0285G01S7/4972G01V8/18
    • A two dimensional scanning laser system may automatically detect a laser, then align and calibrate itself to scan over the sensor area. The system may have a laser with a controller that may cause the laser to be directed over two dimensions, as well as a sensor apparatus. The laser may be controlled with a mirror system that may pivot in two directions, thus allowing the laser to be scanned over a two dimensional area. The sensor may be a point sensor, where the laser may be positioned in a constant direction, as well as a larger area sensor where the laser may be moved across the sensor area to detect objects in a two or three dimensional space. An alignment and calibration sequence may cause the laser to scan across its operational area and detect the location of one or more sensors.
    • 二维扫描激光系统可以自动检测激光,然后对准和校准自身以扫描传感器区域。 该系统可以具有带有控制器的激光器,该控制器可以使激光器被引导到两个维度上,以及传感器装置。 可以用可以在两个方向上枢转的反射镜系统来控制激光器,从而允许在二维区域上扫描激光。 传感器可以是点传感器,其中激光器可以沿恒定方向定位,以及更大面积的传感器,其中激光器可以在传感器区域上移动以检测二维或三维空间中的物体。 对准和校准序列可能导致激光扫描其操作区域并检测一个或多个传感器的位置。