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BasedinWaterloo,Ontario,Canada,AEMKisaninnovativeproviderofhighspeedroboticssystemsfo...
Based in Waterloo, Ontario, Canada, AEMK is an innovative provider of highspeed robotics systems for a wide range of applications. The company was established to commercialize the results of five years of research at the University of Waterloo involving ultra high-speed robots. “We strive to provide customers with the most cost-effective robots possible with simple integration,low maintenance cost and outstanding customer service,” Amir Khajepour,AEMK President and University of Waterloo Professor, said.
The AEMK robots use tensioned cables instead of rigid links to reduce moving inertia and mechanical equipment cost compared to conventional pickand-place robots. It also means that very little maintenance is required to ensure high repeatability. Due to their cost-effectiveness, AEMK robots are used in many labor-intensive applications such as the food and packaging industry or automated warehousing with high capital cost barriers to incorporating automation equipment.
DeltaBot: the PC-based pick-and-place robot
The three- and four-axis models of these ultra high-speed robots are dubbed DeltaBot. They are capable of over 120 pick-and-place cycles per minute and have proven to be highly effective for high-speed assembly, automatic inspection and packaging applications.The DeltaBot uses passive cables to control
the movement of end effectors. This design permits the robot’s workspace to be easily scaled to adapt to any application. In addition, their straight-line design makes the robots ideally suited for use in the food industry with its strict hygiene regulations.
PC platform with scalable performance In order to boost control performance while reducing cost, the DeltaBot line is equipped with a Beckhoff control platform consisting of a CX1010 Embedded
PC, TwinCAT PLC automation software, EtherCAT I/O terminals as well as AX5000 Servo Drives. “The impressive price/performance ratio was the deciding factor in selecting the CX1010 as the DeltaBot’s control centerpiece.We wanted the smallest possible footprint for the controller that would also give us the most programming flexibility,” Khajepour said. “The basic DeltaBot configuration features the CX1010, however we can also easily
scale up in performance using the CX1020 or CX1030 for the robots with an integrated vision option.”
Embedded PC replaces two PC controllers
The previous DeltaBot controllers were all PC-based, but not as powerful or flexible. The Embedded PC from Beckhoff replaced an architecture that included two PCs; one served as the real-time robot controller, the other PC generated the robot’s path, ran the HMI and connected with vision systems or any other applications that were needed. “The major drawbacks of the previous system were unreliable communication and the difficulty of running at a consistent, low scan time,” Khajepour said. 展开
The AEMK robots use tensioned cables instead of rigid links to reduce moving inertia and mechanical equipment cost compared to conventional pickand-place robots. It also means that very little maintenance is required to ensure high repeatability. Due to their cost-effectiveness, AEMK robots are used in many labor-intensive applications such as the food and packaging industry or automated warehousing with high capital cost barriers to incorporating automation equipment.
DeltaBot: the PC-based pick-and-place robot
The three- and four-axis models of these ultra high-speed robots are dubbed DeltaBot. They are capable of over 120 pick-and-place cycles per minute and have proven to be highly effective for high-speed assembly, automatic inspection and packaging applications.The DeltaBot uses passive cables to control
the movement of end effectors. This design permits the robot’s workspace to be easily scaled to adapt to any application. In addition, their straight-line design makes the robots ideally suited for use in the food industry with its strict hygiene regulations.
PC platform with scalable performance In order to boost control performance while reducing cost, the DeltaBot line is equipped with a Beckhoff control platform consisting of a CX1010 Embedded
PC, TwinCAT PLC automation software, EtherCAT I/O terminals as well as AX5000 Servo Drives. “The impressive price/performance ratio was the deciding factor in selecting the CX1010 as the DeltaBot’s control centerpiece.We wanted the smallest possible footprint for the controller that would also give us the most programming flexibility,” Khajepour said. “The basic DeltaBot configuration features the CX1010, however we can also easily
scale up in performance using the CX1020 or CX1030 for the robots with an integrated vision option.”
Embedded PC replaces two PC controllers
The previous DeltaBot controllers were all PC-based, but not as powerful or flexible. The Embedded PC from Beckhoff replaced an architecture that included two PCs; one served as the real-time robot controller, the other PC generated the robot’s path, ran the HMI and connected with vision systems or any other applications that were needed. “The major drawbacks of the previous system were unreliable communication and the difficulty of running at a consistent, low scan time,” Khajepour said. 展开
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做fanjian
pre拿来度rdes自己有时讨厌myseld
Ganaiganhen什么是自己的脾气我可以吗?
pre拿来度rdes自己有时讨厌myseld
Ganaiganhen什么是自己的脾气我可以吗?
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在一些科幻电影中,人们将在未来拥有属于自己的与人类很有相似性的机器人。它们会帮忙做家务和一些繁重的工作。
一些科学家认为在未来会出现这样的机器人。然而,他们也觉得要几百年才能实现(这个愿望)。科学家现在正在努力研制这种和人类很相像并且能跟人类做同样的工作的机器人。日本的一些公司已经研制出了能走路和跳舞的机器人。这种机器人很有观赏价值。
但是机器人研究科学家James
White先生却不这么认为,他认为要让机器人做和人类一样的工作是很难的。就好像说,小孩子睡醒过来并且知道自己在哪里是很容易的。White
先生认为机器人是无法做到这一点的。但其他的科学家却不同意,他们认为在25
到50年后,机器人就能和人类进行对话了。
科学家们并不是仅仅将机器人做成人类的模样。例如,已经有一些机器人应用于工厂进行作业了。这些机器人看起来更像是人类的手臂,它们一遍一遍地重复着简单的工作,这些工作是人类厌烦并且不愿意去做的,但机器人却不会这样。
未来将会有更多的机器人,人类工作量也会逐渐减少。新的机器人将会有不同的形状,有的像人类,有的像蛇。每逢地震后,蛇形的机器人能够帮忙搜寻被掩埋的人。这一切可能无法在现在实现,但就像计算机,航空火箭和电牙刷,这些在一百年之前也是不可能。我们永远无法预测在未来会发生什么。
一些科学家认为在未来会出现这样的机器人。然而,他们也觉得要几百年才能实现(这个愿望)。科学家现在正在努力研制这种和人类很相像并且能跟人类做同样的工作的机器人。日本的一些公司已经研制出了能走路和跳舞的机器人。这种机器人很有观赏价值。
但是机器人研究科学家James
White先生却不这么认为,他认为要让机器人做和人类一样的工作是很难的。就好像说,小孩子睡醒过来并且知道自己在哪里是很容易的。White
先生认为机器人是无法做到这一点的。但其他的科学家却不同意,他们认为在25
到50年后,机器人就能和人类进行对话了。
科学家们并不是仅仅将机器人做成人类的模样。例如,已经有一些机器人应用于工厂进行作业了。这些机器人看起来更像是人类的手臂,它们一遍一遍地重复着简单的工作,这些工作是人类厌烦并且不愿意去做的,但机器人却不会这样。
未来将会有更多的机器人,人类工作量也会逐渐减少。新的机器人将会有不同的形状,有的像人类,有的像蛇。每逢地震后,蛇形的机器人能够帮忙搜寻被掩埋的人。这一切可能无法在现在实现,但就像计算机,航空火箭和电牙刷,这些在一百年之前也是不可能。我们永远无法预测在未来会发生什么。
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这有点问题啊,prefer应该是一个单词吧,
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有时候他更喜欢犯贱
讨厌我自己什么时候可以敢爱敢恨
我看了很久终于看出来了!!!
中英结合的
非一般人能看的懂阿
!!
一定要采纳啊!!
讨厌我自己什么时候可以敢爱敢恨
我看了很久终于看出来了!!!
中英结合的
非一般人能看的懂阿
!!
一定要采纳啊!!
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在有科幻电影,未来的人们有他们自己的机器人就像是人类。他们帮助做家务和不愉快的工作。
物下的人。这可能似乎不可能,但是电脑,太空火箭甚至电动牙刷似乎impossiblea
物下的人。这可能似乎不可能,但是电脑,太空火箭甚至电动牙刷似乎impossiblea
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