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    • 6. 发明授权
    • Coating zone with inclined guide rails
    • 涂层带倾斜导轨
    • US08544409B2
    • 2013-10-01
    • US12666632
    • 2008-06-23
    • Frank HerreJuergen HaasMichael BaumannMarcus FreyHans VettersJan Grigoleit
    • Frank HerreJuergen HaasMichael BaumannMarcus FreyHans VettersJan Grigoleit
    • B05C5/02B05C15/00
    • B05B13/0452B05B13/0431B05B16/40B05B16/60
    • A coating zone comprises a conveyor for transporting an application object. At least one guide rail extends through the coating zone adjacent the conveyor, arranged above the conveyor at a height at least at the level of the top of the object. At least one robot may move along the conveyor on the guide rail, the robot having a first axis for joint rotation of at least one moving member of the robot in relation to a main body guided along the guide rail. A load-bearing structure supports the at least one guide rail, the load-bearing structure including at least one load-bearing pillar extending substantially vertically downwards from the level of the guide rail. The guide rail and the main body of the robot are arranged in such a way that the first axis of the robot is inclined relative to a vertical plane parallel to the conveying direction.
    • 涂覆区域包括用于输送应用物体的输送机。 至少一个导轨延伸穿过邻近输送机的涂覆区域,其布置在输送机上方至少在物体顶部的高度处的高度。 至少一个机器人可以沿着导轨上的输送机移动,机器人具有用于相对于沿导轨引导的主体的机器人的至少一个移动部件的关节旋转的第一轴线。 承载结构支撑至少一个导轨,所述承载结构包括至少一个从所述导轨的高度垂直向下延伸的承载支柱。 导轨和机器人的主体以使机器人的第一轴相对于平行于传送方向的垂直平面倾斜的方式布置。
    • 8. 发明授权
    • Combined adder and logic unit
    • 组合加法器和逻辑单元
    • US5944772A
    • 1999-08-31
    • US970076
    • 1997-11-13
    • Juergen HaasWilhelm HallerUlrich KrauchThomas LudwigHolger Wetter
    • Juergen HaasWilhelm HallerUlrich KrauchThomas LudwigHolger Wetter
    • G06F7/50G06F7/575
    • G06F7/575G06F7/507G06F7/508
    • A combined adder and logic unit having a reduced operation delay of arithmetic and logic operations, and providing an improved fan in and reduced wiring delays and capacity if implemented in the arithmetic and logic section of a microprocessor chip. The unit comprises a carry network (30) connected to operand inputs for generating carry-out signals of the byte positions (By0-By7) and further comprises a pre-sum logic (32) having a bit function generator (42) and a sum generator (45, 46, 48). Said bit function generator derives from the operands Ai and Bi bit functions Gi, Pi which are provided as logic function output and as input to said sum generator for producing preliminary arithmetic functions (SUM0, SUM1) to anticipate carry-in signals of one or zero. A result selector (70) is controlled by a byte position carry-out signal (Cy55) from the carry network means and by operation control signals to select from the output of said pre-sum logic one of the arithmetic functions (SUM0, SUM1) or one of the logic functions as result of the unit operation.
    • 组合加法器和逻辑单元具有减小的运算和逻辑运算的运算延迟,并且如果在微处理器芯片的算术和逻辑部分中实现,则提供改进的风扇并降低布线延迟和容量。 该单元包括连接到操作数输入的进位网络(30),用于产生字节位置(By0-By7)的进位信号,并且还包括具有位函数发生器(42)的和和逻辑(32)和总和 发电机(45,46,48)。 所述比特函数发生器从作为逻辑功能输出提供的操作数Ai和Bi比特函数Gi,Pi导出,并作为用于产生预计算函数(SUM0,SUM1)的所述和发生器的输入,以预期一或零的进位信号 。 结果选择器(70)由来自携带网络装置的字节位置执行输出信号(Cy55)和操作控制信号控制,以从所述算术功能(SUM0,SUM1)之一的所述并行逻辑逻辑的输出中进行选择, 或作为单元操作的结果的逻辑功能之一。
    • 9. 发明授权
    • Selective gas sensor
    • 选择性气体传感器
    • US5143696A
    • 1992-09-01
    • US605511
    • 1990-10-30
    • Juergen HaasCarsten Plog
    • Juergen HaasCarsten Plog
    • G01N27/22
    • G01N27/225G01N27/221
    • A sensor for selective determination of gases includes an electric capacitor having a gas permeable zeolite layer between 2 and 500 micrometer thick and being composed of a dielectric crystalline structure with a crystal size from 0.1 micrometer to 80 micrometer and having primary pores resulting in an internal surface from 100 to 1500 m.sup.2 /g, the diameter of the pores being between 0.1 and 1.5 nm which corresponds at least in order to magnitude to the kinetic diameter of the molecules of the gas to be detected, so that these molecules penetrate deep into the layer and its pores thereby changing the dielectric constant of the layer.
    • 用于选择性测定气体的传感器包括具有2至500微米厚的气体可渗透沸石层的电容器,并且由具有0.1微米至80微米的晶体尺寸的介电晶体结构构成,并具有导致内表面的初级孔 从100至1500m2 / g,孔的直径在0.1和1.5nm之间,其至少对应于待检测气体的分子的动力学直径的大小,使得这些分子深入层 和其孔隙从而改变该层的介电常数。