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    • 3. 发明公开
    • Method and apparatus for notifying machine operators of the necessity for preventive maintenance
    • DEVICE AND METHOD FOR A机的领导者有关预防性维护的需要通知
    • EP1136201A2
    • 2001-09-26
    • EP01104049.0
    • 2001-02-20
    • Gerber Technology, Inc.
    • Vivirito, Joseph R.Gates, John H.Kuchta, Richard
    • B26D5/00
    • B26F1/3813B26D5/00B26D5/005G05B23/0283G05B2219/32234
    • In an apparatus for notifying (30) machine operators of the necessity for preventive maintenance, predetermined difficulty factors corresponding to the severity of particular machine operating conditions are stored in the memory of a controller. Maximum acceptable values are also stored in the controller's memory. Sensors, detect any one of a number of different machine operating parameters (18) and the duration (20) for which the machine functions under a particular operating condition. These parameters are quantified (24) with respect to one of the difficulty factors most closely related to the operating condition (22). The quantified parameters (24) are accumulated (26) and compared (28) with the appropriate maximum value. When the accumulated quantified parameters (26) reach the maximum value, an operator is alerted (30) to the fact that maintenance is needed.
    • 在用于必要性预防性维护的通知(30)机械操作员,设备对应于特定的机器操作条件的苛刻程度预定难度因子存储在控制器的存储器中。 因此最大可接受值被存储在控制器的存储器中。 传感器检测多个不同的机器操作参数(18)和持续时间(20)中的任何一个对于一个特定的操作条件下其中机器的功能。 这些参数被量化(24)相对于所述困难因素最密切相关的操作条件(22)中的一个。 量化参数(24)被积累(26)和比较(28)与适当的最大值。 当累积的量化参数(26)到达在操作者在维修factthat的最大值被提醒(30)是必要的。
    • 4. 发明公开
    • KNIFE SENSOR APPARATUS FOR CUTTING SHEET MATERIAL
    • MESSERSENSORVORRICHTUNG ZUM SCHNEIDEN EINES BLATTMATERIALS
    • EP3046738A1
    • 2016-07-27
    • EP14780721.8
    • 2014-09-19
    • Gerber Technology, Inc.
    • STEIN, Darryl, C.
    • B26D5/00B26F1/38G05B19/416
    • B23Q15/28B23Q17/0985B26D1/10B26D5/00B26D5/005B26D5/32B26F1/382G05B19/404G05B2219/50289Y10T83/141
    • A computer-controlled machine and variations thereof are disclosed for cutting shapes of material with a cutting tool, including a sensor for sensing or estimating a knife offset during cutting to provide feedback for reducing cut shape error caused by the knife being offset from its ideal position. An exemplary embodiment includes a proximity sensor, a knife, such as a reciprocating knife, and circuitry and/or computer readable instructions for separating the output signal of the proximity sensor into a tangent signal corresponding to the tangent offset and a normal signal corresponding to a normal offset. The reciprocating knife can include a temperature sensor which is positioned to measure the temperature of the reciprocating knife near the point of contact between the knife and the material being cut. The temperature sensor is preferably a non-contact temperature sensor such as an infrared thermometer which operates under the principle of measuring thermal radiation emitted from an object.
    • 公开了一种计算机控制的机器及其变型,用于利用切割工具切割材料的形状,包括用于在切割期间感测或估计刀偏移的传感器,以提供用于减少刀从其理想位置偏移引起的切割形状误差的反馈 。 示例性实施例包括接近传感器,诸如往复刀的刀,以及用于将接近传感器的输出信号分离成对应于切线偏移的切线信号和对应于正切信号的正常信号的电路和/或计算机可读指令 正常偏移。 往复刀可以包括温度传感器,其被定位成在刀和被切割的材料之间的接触点附近测量往复刀的温度。 温度传感器优选为非接触式温度传感器,例如红外温度计,其工作原理是测量从物体发射的热辐射。
    • 10. 发明公开
    • Method and apparatus for printing on a continuously moving sheet of work material
    • 材料的连续幅材上的方法和设备用于打印
    • EP0992352A1
    • 2000-04-12
    • EP99119633.8
    • 1999-10-04
    • Gerber Technology, Inc.
    • Plumley, Bruce A.Stein, Darryl Colburn
    • B41J19/14B41J19/20
    • B41J25/001B41J3/28B41J11/008B41J11/42B41J19/142B41J19/16B41J19/202
    • In an apparatus (10, 110, 210, 310) for printing on a continuously moving sheet of work material (15, 115, 215, 315), a frame (12, 112) is provided and defines a work supporting surface (14, 114, 214) over which a sheet of work material is advanced in a first coordinate direction longitudinally of itself. An elongated support (16, 116, 216, 316) is mounted to the frame (12, 112) and extends transversely across the work supporting surface (14, 114, 214). A print head (28, 128, 228, 328) is mounted to the elongated support (16, 116, 216, 316) and is movable across the support, as well as between a forward and rearward position. During operation, as the work material (15, 115, 215, 315) is continuously advanced through the apparatus (10, 110, 210, 310), the print head (28, 128, 228, 328) traverses the support (16, 116, 216, 316) and simultaneously moves between the forward and rearward positions, such that the print head has a component of speed in the first coordinate direction approximately equal to the rate at which the work material is advanced. This causes the print head (28, 128, 228, 328) to print successive lineal portions of a graphic oriented approximately perpendicular to the first coordinate direction while the work material (15, 115, 215, 315) is continuously advanced.
    • 在用于在加工材料的连续移动的片材(15,115,215,315)中,提供了一个框架(12,112)和定义打印工件支撑表面的装置(10,110,210,310)(14, 114,214)在其上工作的材料片在第一坐标方向上纵向的本身前进。 细长的支承件(16,116,216,316)被安装到所述框架(12,112)和整个工作支撑面(14,114,214)横向延伸。 的打印头(28,128,228,328)被安装到所述细长支撑(16,116,216,316),并且是在支撑可动,以及一个向前和向后位置之间移动。 在操作期间,作为加工材料(15,115,215,315)被连续地通过装置(10,110,210,310)前进时,所述打印头(28,128,228,328)横越所述支撑件(16, 116,216,316),并同时在向前和向后位置之间移动时,检查做了打印头具有的速度的部件在所述第一坐标方向上大致等于在哪个加工材料前进的速率。 这使得打印头(28,128,228,328),同时加工材料(15,115,215,315)被连续地推进到打印大约取向垂直于所述第一方向的坐标的图形的连续直线部分。