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Manipulator is now used as a industrial robots in use the control objectives often appear often in industrial automation Industrial automation technology has gradually matured as mature a technology line has been rapid development in industrial automation as a separate subject Manipulator application began to filter into welding logistics mechanical processing and other industries Especially at high or very low temperatures full of poisonous gases high radiation case robot in similar circumstances showed great use also brings great convenience to the staff Precisely because of this robot to get people s attention began to be a high degree of development Labor rates working conditions labor intensive aspects of promoting development Both at home and abroad to develop the PLC programmable logic controller is in various special circumstances and under special conditions set for mechanical devices Now turned on the development of the microelectronics automatic control technology and the rapid development of the trains the success of PLC hardware software and simulation control win big and successful development now continues to develop as a factory automation standards Because robots are good development of the technology makes a good optimization of productive capital and robot shows this unique advantages such as has good compatibility wide availability hardware is complete and programming that can be mastered in a short time so in the context of industrial PLC applications became ubiquitous Manipulator in many developed country agriculture and industry has been applied such as the use of mechanical harvesting large areas of farmland repeated operations on the high speed line that uses a robotic arm and so on Today the high level of automation combined with restrictions on the manipulator development level is slightly lower than the international The design is mainly arm welding machine by PLC Automation control This of design let designers on in school by learn of has a must of consolidation understand has some usually didn t opportunities awareness in world range within some leading level of knowledge has has must awareness hope designers can in yihou of design in the can success of using in this design in the proceeds of experience 1 2 manipulator in both at home and abroad of research profile automation mechanical arm research began Yu 20th century medium term after years with with computer and automation technology of development Makes mechanical arm on the Grand stage of industrial automation and shine gradually became an industrial evaluation standards and its importance can be seen Now original robotic arm spent most of mass production and use on the production line which is programmed robotic arm As the first generation of manipulator position control systems main features although not back several generations that can detect the external environment but can still successfully complete like welding painting delivery as well as for materials simple movements Second generation mechanical arms are equipped with sensors and manipulators have the environment there is a certain amount of sense when the mechanical arm is to use the program as a basis Difference is that the robot begand manipulator control mode and programmable controllers introduction 2 1 Select discussion with manipulator control 2 1 1 classification of control relays and discrete electronic circuit can control old industrial equipment but also more common Mainly these two relatively cheap and you can meet the old fashioned simple or simple industrial equipment So he can see them now however these two control modes relay and discrete electronic circuits are these fatal flaws 1 cannot adapt to the complex logic control 2 only for the current project the lack of compatibility and 3 not reforming the system with equipment improvements Spring for the development of China s modern industrial automation technology the substantial increase in the level of industrial automation completed the perfect relay of the computer too much In terms of controlling the computer showed his two great advantages 1 each of the hardware can be installed on one or more microprocessors 2 the official designer of the software writing content control is all about Now in several ways in the context of industrial automation can often be seen in three ways 1 Programmable Logical Controller referred to as IPC 2 Distributed Control System DCS for short and 3 the Programmable Logical Controller PLC for short 2 1 2 PLC and the IPC and DCS contrast contrast 1 each of the three technologies of origins and development requirements for fast data processing makes it invented the computer The men brought in terms of hardware there using a high level of standardization can use more compatibility tools is a rich software resources especially the need for immediacy in operational systems So the computer can effectively control is used to control and meet its speed on the virtual model real time and in computational requirements Distributed system started with a control system for industrial automatic instrument used to control whereas now it is successfully developed into industrial control computer used as a central collection and distribution system and transition of distributed control system in analogue handling loop control has begun to reflect the use of a huge advantage Though distributed system has great advantages in loop regulation but only as a means of continuous process control Optimization of PLC is the corresponding relay needs was born its main use in the work order control early primary is replaced relay this hulking system focused on the switch controlling the running order of functions Marked by the microprocessor in the early 1970 of the 20th century emerged micro electronics technology has developed rapidly people soon microelectronics processing technology will be used in the Programmable Logical Controller that is 软件开发中心公共区域管理办法软件开发中心公共区域管理办法 第一章第一章 总则总则 第一条 为规范软件开发中心办公人员日常工作行为 创造良好的办 公环境 落实各项安全措施 特制订本制度 第二条 本中心分三个区域 具体管理职责如下 行政部 负责整体区域的日常管理 环境维护 安全以及办公区域设 备设施使用 维护工作等 开发部 负责开放办公区域日常业务管理 环境维护 设备设施使用 维护及安全等 战略发展部 展示大厅日常业务使用 环境维护 设备设施维护及安 全 第二章第二章 行为规范行为规范 第三条 工作人员上班时仪表整洁 举止得当 佩挂好工作牌 工 作牌必须佩挂在胸前 严禁随意挂在胳膊或放在办公抽屉等处 第四条 办公区域应保持安静 整洁 严禁吸烟 吸烟可到消防通道 吸烟处 用餐在公司统一指定区域 第五条 工作时间内严禁在走廊大声喧哗 奔跑 需在个人工作区域 内进行谈话的 不应影响他人办公 应尽量压低谈话声音和缩短谈话时间 Manipulator is now used as a industrial robots in use the control objectives often appear often in industrial automation Industrial automation technology has gradually matured as mature a technology line has been rapid development in industrial automation as a separate subject Manipulator application began to filter into welding logistics mechanical processing and other industries Especially at high or very low temperatures full of poisonous gases high radiation case robot in similar circumstances showed great use also brings great convenience to the staff Precisely because of this robot to get people s attention began to be a high degree of development Labor rates working conditions labor intensive aspects of promoting development Both at home and abroad to develop the PLC programmable logic controller is in various special circumstances and under special conditions set for mechanical devices Now turned on the development of the microelectronics automatic control technology and the rapid development of the trains the success of PLC hardware software and simulation control win big and successful development now continues to develop as a factory automation standards Because robots are good development of the technology makes a good optimization of productive capital and robot shows this unique advantages such as has good compatibility wide availability hardware is complete and programming that can be mastered in a short time so in the context of industrial PLC applications became ubiquitous Manipulator in many developed country agriculture and industry has been applied such as the use of mechanical harvesting large areas of farmland repeated operations on the high speed line that uses a robotic arm and so on Today the high level of automation combined with restrictions on the manipulator development level is slightly lower than the international The design is mainly arm welding machine by PLC Automation control This of design let designers on in school by learn of has a must of consolidation understand has some usually didn t opportunities awareness in world range within some leading level of knowledge has has must awareness hope designers can in yihou of design in the can success of using in this design in the proceeds of experience 1 2 manipulator in both at home and abroad of research profile automation mechanical arm research began Yu 20th century medium term after years with with computer and automation technology of development Makes mechanical arm on the Grand stage of industrial automation and shine gradually became an industrial evaluation standards and its importance can be seen Now original robotic arm spent most of mass production and use on the production line which is programmed robotic arm As the first generation of manipulator position control systems main features although not back several generations that can detect the external environment but can still successfully complete like welding painting delivery as well as for materials simple movements Second generation mechanical arms are equipped with sensors and manipulators have the environment there is a certain amount of sense when the mechanical arm is to use the program as a basis Difference is that the robot begand manipulator control mode and programmable controllers introduction 2 1 Select discussion with manipulator control 2 1 1 classification of control relays and discrete electronic circuit can control old industrial equipment but also more common Mainly these two relatively cheap and you can meet the old fashioned simple or simple industrial equipment So he can see them now however these two control modes relay and discrete electronic circuits are these fatal flaws 1 cannot adapt to the complex logic control 2 only for the current project the lack of compatibility and 3 not reforming the system with equipment improvements Spring for the development of China s modern industrial automation technology the substantial increase in the level of industrial automation completed the perfect relay of the computer too much In terms of controlling the computer showed his two great advantages 1 each of the hardware can be installed on one or more microprocessors 2 the official designer of the software writing content control is all about Now in several ways in the context of industrial automation can often be seen in three ways 1 Programmable Logical Controller referred to as IPC 2 Distributed Control System DCS for short and 3 the Programmable Logical Controller PLC for short 2 1 2 PLC and the IPC and DCS contrast contrast 1 each of the three technologies of origins and development requirements for fast data processing makes it invented the computer The men brought in terms of hardware there using a high level of standardization can use more compatibility tools is a rich software resources especially the need for immediacy in operational systems So the computer can effectively control is used to control and meet its speed on the virtual model real time and in computational requirements Distributed system started with a control system for industrial automatic instrument used to control whereas now it is successfully developed into industrial control computer used as a central collection and distribution system and transition of distributed control system in analogue handling loop control has begun to reflect the use of a huge advantage Though distributed system has great advantages in loop regulation but only as a means of continuous process control Optimization of PLC is the corresponding relay needs was born its main use in the work order control early primary is replaced relay this hulking system focused on the switch controlling the running order of functions Marked by the microprocessor in the early 1970 of the 20th century emerged micro electronics technology has developed rapidly people soon microelectronics processing technology will be used in the Programmable Logical Controller that is 2 第六条 使用会议室或培训室 要先向区域负责人员报备 在使用完 毕后应恢复原状并做好清洁整理工作 第 7 条 下班前 办公室人员须各自整理好工作台面 最后下班人员 要关闭水 灯 空调 电脑 饮水机 门窗等 第八条 公司员工应在每天工作时间开始前和工作时间结束后做好个 人工作区内的卫生 个人办公台面整洁 显示器 键盘 鼠标 笔筒一个 文件框一个 私人物品 水杯等不得放置于工作台面上 保持整洁 卫 生 营造良好和谐的工作环境 第九条 要爱护办公用品 办公耗材使用中应厉行节约的原则 办公 室专用设备应按使用说明操作 办公设备 包括通讯 照明 影音 电脑 建筑等 损坏或发生故障时 员工应立即向行政部报修 不得随意拆卸 造成损坏 第十条 员工接待来宾和访客应举止大方 热情周到 及时联络相关 部门或人员 必要时应做好记录 第十一条 各部门负责人应认真配合公司管理制度 督促属下职员共 同遵照执行 第三章第三章 办公管理办公管理 第十二条 文印设备管理 1 文印室设备由行政部负责维护 员工应规范使用 保持文印室整 Manipulator is now used as a industrial robots in use the control objectives often appear often in industrial automation Industrial automation technology has gradually matured as mature a technology line has been rapid development in industrial automation as a separate subject Manipulator application began to filter into welding logistics mechanical processing and other industries Especially at high or very low temperatures full of poisonous gases high radiation case robot in similar circumstances showed great use also brings great convenience to the staff Precisely because of this robot to get people s attention began to be a high degree of development Labor rates working conditions labor intensive aspects of promoting development Both at home and abroad to develop the PLC programmable logic controller is in various special circumstances and under special conditions set for mechanical devices Now turned on the development of the microelectronics automatic control technology and the rapid development of the trains the success of PLC hardware software and simulation control win big and successful development now continues to develop as a factory automation standards Because robots are good development of the technology makes a good optimization of productive capital and robot shows this unique advantages such as has good compatibility wide availability hardware is complete and programming that can be mastered in a short time so in the context of industrial PLC applications became ubiquitous Manipulator in many developed country agriculture and industry has been applied such as the use of mechanical harvesting large areas of farmland repeated operations on the high speed line that uses a robotic arm and so on Today the high level of automation combined with restrictions on the manipulator development level is slightly lower than the international The design is mainly arm welding machine by PLC Automation control This of design let designers on in school by learn of has a must of consolidation understand has some usually didn t opportunities awareness in world range within some leading level of knowledge has has must awareness hope designers can in yihou of design in the can success of using in this design in the proceeds of experience 1 2 manipulator in both at home and abroad of research profile automation mechanical arm research began Yu 20th century medium term after years with with computer and automation technology of development Makes mechanical arm on the Grand stage of industrial automation and shine gradually became an industrial evaluation standards and its importance can be seen Now original robotic arm spent most of mass production and use on the production line which is programmed robotic arm As the first generation of manipulator position control systems main features although not back several generations that can detect the external environment but can still successfully complete like welding painting delivery as well as for materials simple movements Second generation mechanical arms are equipped with sensors and manipulators have the environment there is a certain amount of sense when the mechanical arm is to use the program as a basis Difference is that the robot begand manipulator control mode and programmable controllers introduction 2 1 Select discussion with manipulator control 2 1 1 classification of control relays and discrete electronic circuit can control old industrial equipment but also more common Mainly these two relatively cheap and you can meet the old fashioned simple or simple industrial equipment So he can see them now however these two control modes relay and discrete electronic circuits are these fatal flaws 1 cannot adapt to the complex logic control 2 only for the current project the lack of compatibility and 3 not reforming the system with equipment improvements Spring for the development of China s modern industrial automation technology the substantial increase in the level of industrial automation completed the perfect relay of the computer too much In terms of controlling the computer showed his two great advantages 1 each of the hardware can be installed on one or more microprocessors 2 the official designer of the software writing content control is all about Now in several ways in the context of industrial automation can often be seen in three ways 1 Programmable Logical Controller referred to as IPC 2 Distributed Control System DCS for short and 3 the Programmable Logical Controller PLC for short 2 1 2 PLC and the IPC and DCS contrast contrast 1 each of the three technologies of origins and development requirements for fast data processing makes it invented the computer The men brought in terms of hardware there using a high level of standardization can use more compatibility tools is a rich software resources especially the need for immediacy in operational systems So the computer can effectively control is used to control and meet its speed on the virtual model real time and in computational requirements Distributed system started with a control system for industrial automatic instrument used to control whereas now it is successfully develo
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