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[第7讲]用监视与接受管理器监控数据
[第7讲]用监视与接受管理器监控数据。查看更多
  1. 2009/11/16
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[第6讲]仿真调试和在线调试切换
[第6讲]仿真调试和在线调试切换。查看更多
  1. 2009/11/16
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[第5讲]并联加触点
[第5讲]并联加触点。查看更多
  1. 2009/11/16
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[第4讲]设置通讯参数
[第4讲]设置通讯参数。查看更多
  1. 2009/11/16
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[第3讲]新建工程PLC配置
[第3讲]新建工程PLC配置。查看更多
  1. 2009/11/16
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[第2讲]安装目标
[第2讲]安装目标。查看更多
  1. 2009/11/16
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[第1讲]软件安装
[第1讲]软件安装。查看更多
  1. 2009/11/16
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水下鳐鱼Aqua_ray
“水下鳐鱼”是一种远程控制的水力驱动鱼,它的形状和运动都以鳐鱼为模板。 “水下鳐鱼”的中央驱动和控制单元采取了Festo公司特有的流体肌肉形式,并结合了射线效应——一种基于鱼鳍的功能解剖的设计。这使得模仿自然的鱼鳍推进近乎完美。由于“水下鳐鱼”能够任意移动,可以作为一水压滑翔机或者振翅驱动,节约了大量能源。“水下鳐鱼”的形状和运动的方式让它可广泛用于海洋学领域而不破坏自然环境。Aqua_ray is a remote-controlled fish driven by water hydraulics, the shape and movements of which have been based on the model of a manta ray.The central drive and control unit of Aqua_ray takes the form of a fluidic muscle from Festo, in combination with the Fin Ray Effect®. The Fin Ray Effect® is a design based on the functional anatomy of a fish’s fin. This makes it possible to imitate the fin propulsion of the natural role model almost perfectly. As the Aqua_ray can be manoeuvred extremely well, and can be operated both as a hydrostatic glider and with an active wing beat, substantial energy savings can be achieved. Thanks to its shape and its means of locomotion, the Aqua_ray can be used in wide ranging areas of oceanography without disrupting the natural environment.
  1. 2009/11/12
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如何下载IPPC系列的产品驱动
该视频介绍如何从 ADVANTECH 的官方网站上下载自己所需要的驱动程序
  1. 2009/11/10
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气动手臂AirArm
通过分析龙虾和蝗虫的腿以及人类手指的形态得到了气动手臂的灵感。它是一个带有外部骨架的两节式桥臂,由气动肌腱驱动。智能控制技术使气动手臂能赶上水滴的速度。 气动手臂在技术上的意图是能够在指定半球状运行范围内延伸到尽可能多的区域。 选择一般技术实践的常规原理,使带气动肌腱的两节式伸缩系统同时反向运行。 AirArm is biologically inspired by analyses of lobsters’ and grasshoppers’ legs and by human pointing gestures. It is a two-segmented arm with an external skeleton powered by pneumatic muscles. Intelligent control technology enables AirArm to catch drops of water. The technical purpose of AirArm is to reach as many points as possible within a hemispherical operating range defined from a specified point in space. A two-segmented flexing system with muscles operating together in contrary motion was chosen as the general principle for technical realisation.
  1. 2009/11/9
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