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易卖工控网(www.ymgk.com)提供”UHAIR-0020使用方式使用方法哪里办理”,产品详情:品牌/厂家:ABB、型号:UHAIR-0020、成色:全新、货期:现货 1天内发货、保修:180天,更多产品详情就上易卖工控网。

UHAIR-0020超过14000台)为设计基础。速度快——操作周期时间短该机器人专为包装应用0化设计,配以ABB0有的运动控制功能,大大缩短了包装周期时间。精度0——零件生产质量稳定该机器人具有极0的精度,再加上ABB卓越的传送带跟踪性能,不论是固定位置操作,还是运动中操作,其拾放精度均为0流。功能强——适用范围广该机器人专为包装应用0化设计UHAIR-0020使用方式使用方法哪里办理 UHAIR-0020,UHAIR-0020,UHAIR-0020UHAIR-0020使用方式使用方法哪里办理 UHAIR-0020,UHAIR-0020,UHAIR-0020UHAIR-0020使用方式使用方法哪里办理 UHAIR-0020,UHAIR-0020,UHAIR-0020UHAIR-0020使用方式使用方法哪里办理 UHAIR-0020,UHAIR-0020,UHAIR-0020UHAIR-0020使用方式使用方法哪里办理 UHAIR-0020,UHAIR-0020,UHAIR-0020UHAIR-0020使用方式使用方法哪里办理 UHAIR-0020,UHAIR-0020,UHAIR-0020

体积小、速度快、有效载荷0达30kg。坚固耐用——适合恶劣生产环境适于恶劣环境应用,防护等级达到IP 67。通用性佳——柔性化集成和生产该机器人重量轻、0度低,便于集成在紧凑型包装机械中。专门根据包装应用进行过0化,是机器人自动化的必然选择。配有全套辅助设备(从集成式空气与信号系统至抓料器),可配套使用ABB包装软件PickMasterTM,机械方面集成简单,编程更是十分方便。
In 1974, ABB (then known as Asea) introduced the IRB 6, the first fully electric robot. Today, ABB has nearly 30 models of robots that meet the production needs of a wide range of industries, supported by powerful system integration capabilities and a global sales and service network in 53 countries.近日,ABB与可持续能源解决方案的0导者Aker Solutions公司签订了0份供货协议,将为挪威的北极光(Northern Lights)项目提供主要的电气、自动化和安全系统。Aker Solutions公司是该项目的设计、采购和施工(EPC)总承包商。该项目是由挪威国家石油公司Equinor、壳牌和道达尔能源合资建设的0个工业碳捕集和储存项目,旨在开发0种开放且灵活的基础设施来安全存储欧洲工业所排放的二氧化碳。项目0期计划于2024年年中完成,届时将可实现每年0久封存150万吨二氧化碳,项目二期储存能力将扩展至每年500万吨以上。ABB自动化、电气和数字化解决方案将成为北极光项目的重要组成部分,帮助新的碳捕集终端实现远程操作,并确保设施0效运营。借助ABB行业00的分布式控制系统ABB Ability™ 系统800xA,运营人员将能够更清晰地掌握北极光储存设施的运营状况。ABB系统提供的实时和历史数据分析能力能够即时呈现工厂的运营数据和KPI,从而帮助运营人员做出更准确、更明智的决策,并选择0佳的资产和过程性能0化方案。ABB不仅是分布式控制系统的市场0导者,也是我们长期信赖的合作伙伴,对我们在陆上、海上和海底项目的业务及专长有着全面的了解。这是我们选择供应商的关键考量。我们必须将重要的远程运营委托给在可靠性和性能0化方面都具备丰富成功经验的合作伙伴,为这项重要发展计划奠定坚实的基础。

全球要在2030年达到17亿吨1二氧化碳捕集,在2050年前实现净零排放,鉴于目前无法遏制工业碳排放,工业碳捕集和封存能力无疑至关重要。北极光是0项意义重大的发展计划,不仅有助于重新平衡碳循环,而且展示了创新精神。我们很0兴能够参与这0鼓舞人心的项目,为实现更安全、智能和可持续的未来作出贡献。专用运输船将捕获并液化处理的二氧化碳从排放地运输到挪威西部的北极光Øygarden储存设施,并通过Equinor位于约7公里外的Sture终端设施进行远程操控。为了实现远程运营,ABB将在北极光存储设施建立0个0进的扩展操作员工作站,该工作站将与Sture的中央控制室协同工作,通过无缝通信大幅缩短响应时间,提供24/7远程操作。



ABB不仅提供岸电解决方案,还将通过电力过程管理系统以及整合0低压配电盘和变压器来部署主电气系统,为整个项目提供电力支持。7月7日-7月10日,ABB亮相0届厦门国际红电新型电网设备展览会,带来全球00的数字化配电解决方案。此次展会聚焦构建我国电力电气行业供给侧、需求侧的紧密循环平台,联合供应链上下游共同打造新型电力系统,助力实现“双碳”目标。



ABB展示了00的中低压配电产品及系统解决方案,携ABB UniGear ZS1 500mm柜宽中压空气0缘金属封闭数字化开关柜、PrimeGear ZX0环保气体0缘开关设备、NeoGear™叠层母排方案低压开关柜、iVD4®中压智能化解决方案等创新产品及解决方案,呈现出ABB为实现中国“碳中和”目标提供的00技术支撑。实现“双碳”目标,需要构建以新能源为主体的新型电力系统,通过ABB ZEE600智慧能源管理中台的多策略精准调0创新解决方案,实现“源-网-荷-储”柔性精准调控,打造绿色低碳、坚强可靠、智能0效、安全舒适的智慧园区,通过AI大数据分析0化及精准调控管理,可实现清洁能源0大化就地消纳,提0能源使用效率,助力实现碳减排目标。ABB UniGear ZS1 500mm宽开关柜,中压空气0缘开关成套电力物联网解决方案,柜宽仅500mm, 带可抽出式断路器,占地面积减少25%,实现双台预拼出厂,提0现场安装效率。运用ABB Ability™ 云技术,全生命周期内“呵护”设备健康,实现从被动运维和预防性检测到预测性维护的跨越式转变。


ABB PrimeGear ZX0是ABB在数字经济和双碳时代,基于成熟技术所推出的契合现代绿色发展理念的10/24kV环保型数字化气体0缘开关设备。该产品继承了现有GIS产品的0点,在环保,安全,可靠,小型化和智能化等方面都实现了新的突破。该产品可广泛适用于居民配电, 轨道交通,商业建筑,工业,0速公路,桥梁隧道等0域。ABB NeoGear™低压开关柜是ABB集团革命性的创新成果。0新款NeoGear™开关柜采用创新的四极叠层母排方案,结合ABB Ability™平台的连接性和数字化能力,可减少25%的占用空间,减少20%的发热量,降低30%的运维成本。



这款开关柜还具有“更0级别”的安全设计,全0缘设计确保所有带电部件的安全防护,使用的母线组件比传统开关设备减少92%,电气接头减少90%。在降低成本、提0运维效率的基础上让开关设备更加安全,成为电力、食品饮料、数据中心等行业的理想选择。此外,iVD4®中压智能化解决方案也在展会中亮相,它实现了VD4真空断路器与传感器、监测单元的深度融合,0体化解决方案即装即用,帮助客户更加顺利直观地实现对开关设备状态的感知,精准评价体系提供针对性运维建议,为客户带来更0质、更可靠、更安全的智慧配电运行和管理体验。0电流型
电路拓扑结构在低压变频器的直流环节由于采用了电感元件而得名。输入侧采用可控硅移相控制整流,控制电动机的电流,输出侧为强迫换流方式,控制电动机的频率和相位。能够实现电机的四象限运行。
0电压型
前段引入降压变压器,将电网降压,然后连接低压变频器。低压变频器输入侧可采用可控硅移相控制整流,也可以采用二管三相桥直接整流,中间直流部分采用电容平波并储能。逆变或变流电路常采用 IGBT元件,通过SPWM变换,即可得到频率和幅度都可变的交流电,再经升压变压器变换成电机所需要的电压等级。需要指出的是,在变流电路至升压变压器之间还需要置入正弦波滤波器(F),否则升压变压器会因输入谐波或dv/dt过大而发热,或破坏绕组的0缘。该正弦波滤波器成本很0,0般相当于低压变频器的1/3到1/2的价格。
00变频
00变频器无需升降压变压器,功率器件在电网与电动机之间直接构建变换器。由于功率器件耐压问题难于解决,目前直接的做法是采用器件串联的办法来提0电压等级,其缺点是需要解决器件均压和缓冲难题,技术复杂,难度大。但这种变频器由于没有升降压变压器,故其效率较0低0方式的0,而且结构比较紧凑。
11矢量控制的0压变频器也已经在应用。
国外现状
国外各大的变频器生产商,均形成了系列化的产品,其控制系统也已实现全数字化。几乎所有的产品均具有矢量控制功能,完善的工艺水平也是国外的特点。在发达国家,只要有电机的场合,就会同时有变频器的存在。其现阶段发展情况主要表现如下:
① 技术开发起步早,并具有相当大的产业化规模。
② 能够提供特大功率的变频器,已超过10000KW。
③ 变频调速产品的技术标准比较完备。
④ 与变频器相关的配套产业及行业初具规模。
⑤ 能够生产变频器中的功率器件,如IGBT、IGCT、SGCT等。
⑥ 0压变频器在各个行业中被广泛应用,并取得了显著的经济效益。
⑦ 产品国际化,当地化加剧。
⑧ 新技术,新工艺层出不穷,并被大量的、快速的应用于产品中。
未来态势
交流变频调速技术是强弱电混合,机电0体的综合技术,既要处理巨大电能的转换(整流、逆变),又要处理信息的收集、变换和传输,因此它必定会分成功率和控制两大部分。前者要解决与0压大电流有关的技术问题,后者要解决的软硬件控制问题。因此,未来0压变频调速技术也将在这两方面得到发展,其主要表现为:
① 0压变频器将朝着大功率,小型化,轻型化的方向发展。
② 0压变频器将向着直接器件0压和多重叠加(器件串联和单元串联)两个方向发展。
③ 更0电压、更大电流的新型电力半导体器件将应用在0压变频器中。
④ 现阶段,IGBT、IGCT、SGCT仍将扮演着主要的角色,SCR、GTO将会退出变频器市场。
⑤无速度传感器的矢量控制、磁通控制和直接转矩控制等技术的应用将趋于成熟。
⑥ 全面实现数字化和自动化:参数自设定技术;过程自0化技术;故障自诊断技术。
⑦ 应用32位MCU、DSP及ASIC等器件,实现变频器的0精度,多功能。
⑧ 相关配套行业正朝着化,规模化发展,社会分工将更加明显。随着技术研究的进0步深入,在理论上和功能上国产0压变频器已经可以与进口变频器相比肩,但是受工艺技术的限制,与进口产品的差距还是比较明显。这些状况主要表现在如下几个方面:
① 国外各大的产品正加紧占0国内市场,并加快了本地化的步伐。
② 具有研发能力和产业化规模的逐年增加。
③ 国产0压变频器的功率也越做越大,目前国内的应用做到了20000KW。
④ 国内0压变频器的技术标准还有待规范。
⑤ 与0压变频器相配套的产业很不发达。
⑥ 生产工艺0般,可以满足变频器产品的技术要求,价格相对低廉。
⑦ 变频器中使用的功率半导体关键器件完全依赖进口,而且相当长时间内还会依赖进口。
⑧ 与发达国家的技术差距在缩小,具有自主知识产权的产品正应用在国民经济中。
⑨ 已经研制出具有瞬时掉电再恢复、故障再恢复等功能的变频器。
⑩ 部分厂家已经开发出四象限运行的0压变频器。随着现代电力电子技术及计算机控制技术的迅速发展,促进了电气传动的技术革命。交流调速取代直流调速,计算机数字控制取代模拟控制已成为发展趋势。交流电机变频调速是当今节约电能,改善生产工艺流程,提0产品质量,以及改善运行环境的0种主要手段。变频调速以其率,0功率因数,以及0异的调速和启制动性能等诸多0点而被国内外公认为有发展前途的调速方式。
以前的0压变频器,由可控硅整流,可控硅逆变等器件构成,缺点很多,谐波大,对电网和电机都有影响。发展起来的0些新型器件将改变这0现状,如IGBT、IGCT、SGCT等等。由它们构成的0压变频器,性能0异,可以实现PWM逆变,甚至是PWM整流。不仅具有谐波小,功率因数也有很大程度的提0。
行业特点变频器是0种使电动机变速运行进而达到节能效果的设备,习惯上把额定电压在3kV到10kV之间的电动机称为0压电机,因此0般把针对3kV至10kV0电压环境下运行的电动机而开发的变频器称为0压变频器。与低压变频器相比,0压变频器适用于大功率风电、水泵的变频调速,可以收到显著的节能效果。
随着节能环保需求的增加以及装备升级改造步伐的加快,中国0压变频器行业呈现稳步增长态势,市场规模从2005年的11亿元增至2011年的63亿元,年复合增长率达到35.4%;在变频器中的比重也从2006年的12.9%增至2011年的22.8%。2012年随着下业变频化率的提升,0压变频器市场增长速度有望达到34.92%。中国0压变频器行要有以下几个运行特点1.使用方法:
• 将 ACS 800、电机和相连设备正确接地,以便在任何情况下都能确保工作人员 的安全,并减少电磁辐射和干扰。 
• 确信接地导线的截面积足够大,以满足安全规范的要求。
• 多台 ACS 800 的接地端子不能串联连接。 
• 在符合欧洲 CE 标准和其它0些必须要减少 EMC 辐射的安装地点,电缆入口应 保持 360 度0频接地,以抑制电磁干扰。此外,电缆屏蔽层必须与保护接地线 (PE) 相连接,以符合安全规范。 • 在浮地或0接地电阻 (>30Ohms)的电力系统中 , 不要安装带有 EMC 滤波器 (可选件为 +E202 或 +E200 ) 的变频器。
2.只有具备资格的电气工程师才允许安装和维护传动单元。
• 禁止带电安装或维修传动单元、电机电缆或电机。在切断输入电源之后,应至 少等待 5 分钟,待中间电路电容放电完毕后再进行操作。 还应使用万用表 (阻抗至少为 1 兆欧)测量以确定 1. 传动输入相 U1,V1,W1 与柜架间的电压接近 0V. 2. 端子 UDC+ 和 UDC- 与柜架间的电压接近 0V. 
• 禁止在传动单元或外部控制电路带电时操作控制电缆。即使 ACS 800 主电源断 电,其内部仍可能存在由外部控制电路引入的危险电压。 
• 所有的0缘测试必须在断开电缆连接的情况下进行。 
• 重新连接电机电缆时 , 应确保相序正确。注意 : 
• 不管电机是否运行,只要 ACS 800 传动的输入电源接通,电机电缆端子都会存 在危险的0电压。 
• 制动控制端子 (UDC+, UDC-, R+ 和 R- 端子 ) 带有危险直流0电压 ( 大于 500 V)。 
• 继电器输出端子 RO1 ~ RO3 在接通 115 V 或 220 V (230 V) 电压时,带有危险 0电压。此款CPU型号PM3328B-6-1-3-E用作控制器、I/O系统和专用模块,旨在满足灵活的工业解决方案的需求。除此之外,它还配备32KB的用户内存、4K I/O、8个机架和0.22msec/K的逻辑执行。它与以太网、各种总线模块和控制等0级模块兼容。该模块采用单0整体结构设计,非常适合数千种应用,如复杂的运动控制、采矿、水处理、电梯控制、0速包装、注塑、材料处理、食品加工、连续排放监测等。通过只配置所需的系统,可以节省关键空间并降低成本。此外,他还可以适应广泛的应用,例如:数字接口(用于按钮、开关、接近传感器、继电器、接触器和许多其他设备)、模拟模块(对于流量、温度或压力应用具有不同的分辨率),PM3328B-6-1-3-E直接连接接线或远程终端以及本地或远程I/O系统。
The CPU Model 350, acts as a controller, I/O system, and speciality module designed to meet the demands of flexible industrial solutions. Among other things, it comes with 32Kbytes user memory, 4K I/O, 8 Racks and a logic execution of 0.22msec/K. It is compatible with advanced modules such as Ethernet, various bus modules, and control. Designed in a single overall architecture, the system is well suited for thousands of applications, such as complex motion control, mining, water treatment, elevator control, high-speed packaging, injection molding, material handling, food processing, continuous emission monitoring and many more. By configuring just the system you need, you save critical space and reduce cost. Furthermore, IC693CPU350 can also be adapted to a wide range of applications such as: digital interfaces (for push buttons, switches, proximity sensors, relays, contactors and many other devices), analog modules (with varying degrees of resolution for flow, temperature or pressure applications), direct connect wiring or remote termination and local or remote I/O systems.1.冗余热备控制系统的功能 Schneider PLC冗余热备控制系统具有以下功能: ① 应用程序内存空间 ② 系统寄

Some manufacturers of integrated gate commutated thyristor IGCT (integrated gate commutated thyristor) are also called GCT (gate commutated thyristor), that is, gate commutated thyristor, which is a new power electronic device emerging in the late 1990s.

The integrated gate commutated thyristor IGCT combines the advantages of IGBT and GTO. Its capacity is equivalent to that of GTO, but its switching speed is 10 times faster than that of GTO. Moreover, it can eliminate the huge and complex buffer circuit of GTO application, but the driving power required is still large. At present, IGCT is in fierce competition with IGBT and other new devices, trying to eventually replace GTO in high-power applications. The industry believes that the high proportion of power electronic devices is one of the two characteristics of the new power system. For example, the internationally leading flexible DC transmission technology in the fields of new energy grid connection, offshore wind power transmission and UHV combines advanced technologies in power electronics, power system, communication principles and so on. Modular multilevel converter, DC circuit breaker and DC transformer based on power electronic technology are the key equipment to build DC power grid. Large capacity semiconductor devices are the core components of these key equipment. Low cost, low loss and high reliability of large capacity semiconductor devices are very important to improve the economy and safety of DC power grid equipment. Among high-power power electronic devices, IGBT (insulated gate bipolar transistor) is mainly used at present, while IGCT (integrated gate to gate commutated thyristor) is a more potential semiconductor device. The market is mainly occupied by foreign enterprises such as abb in Switzerland, Infineon in Germany, Ge in the United States, and there is a wide space for domestic substitution.



Among a shares, Perry (300831) is the main supplier of core components of converter valves, the main equipment of power transmission and transformation projects. The company actively promotes the research and development of new power electronic devices such as IGCT, and has formed a series of products through technical research; Times electric (688187) is the third enterprise in the world with the ability to independently produce IGCT, and it is also the only enterprise in China that has mastered the full set of technologies of thyristor, IGCT, IGBT and power components at the same time. The IGCT produced by it has been widely used in the field of rail transit, and it is carrying out IGCT application with domestic fan manufacturers. If you want to achieve better results, you still need to use tension sensors, Or use the air cylinder swing rod to track the midpoint of the position loop, so as to make integrated adjustment by synchronizing with the host. When it is necessary to speed up, directly adjust the given speed of the host, so that the winding speed can be synchronized automatically.



Now the technology of frequency converter is relatively mature. Those who use DC motor for speed regulation are often transformed from some old equipment, and the new production lines are basically AC. If the speed alone cannot be adjusted, the current setting value of A6 port of 590 can only be set higher. The winding system of slitting equipment uses Parker (formerly continental 590) DC governor, which does not use closed-loop tension control, but uses the open-loop tension module inside the governor. The essential control is to control the current. In addition, considering the use of taper in the winding process, the current setting should be gradually reduced according to a certain curve. Thyristor IGCT is a new type of power electronic device, It integrates the GCT chip and its gate driver in a low inductance way, integrates the advantages of the stable turning off ability of the transistor and the low on state loss of the thyristor. It has the characteristics of large current, high voltage, high switching frequency, high reliability, compact structure, low loss, low cost and high yield, so it has a wide application prospect. Therefore, it is necessary to conduct in-depth application research on IGCT devices and design a set of equipment that can test IGCT devices with high voltage and high current. Starting from IGCT devices, this paper introduces the structure, working principle, key technology of IGCT devices, and the ratio of IGCT to GTO and IGBT



The characteristic parameters of IGCT and the principle of gate drive circuit are compared. This paper extends the IGCT device to the whole IGCT module, and calculates and simulates the IGCT power phase unit module. The circuit principle of IGCT phase unit module is described as a whole. The influence of the clamping protection circuit in the phase unit module on the opening and closing process of the device is analyzed by simulation and calculation. The influence of stray inductance in phase unit circuit on device off overvoltage is analyzed, and the method of reducing stray inductance is proposed. This paper expounds the influence of anti parallel diode on IGCT devices, and puts forward that the reverse recovery characteristics of diode have a great influence on the turn-off overvoltage of IGCT. Based on the analysis of IGCT power phase unit module, we designed a set of IGCT power phase unit test platform. The platform is composed of power control cabinet and device test cabinet. The safety of test and the diversity of test functions are mainly considered in the design. The circuit of the test platform is simulated, which shows the rationality of the test circuit. According to the simulation and calculation, the selection of related devices and the production of the test platform are carried out. Finally, some preliminary pulse tests of IGCT phase units are carried out on the test experimental platform, and some test results are selected to analyze the measured waveform. The test results show that the design of the test experimental platform is effective and reasonable. It can complete the test of IGCT power phase units, assist the further research of IGCT devices, and lay a foundation for using IGCT devices to replace the existing IGBT devices of medium voltage variable frequency medium H-bridge units.



An ideal power device should have the following ideal static and dynamic characteristics: in the cut-off state, it can withstand high voltage; In the on state, it can withstand high current and has a very low voltage drop; When switching, it has fast opening / closing speed, can withstand high di/dt and dv/dt, and should also have full control function.



Since the advent of silicon thyristors in the 1950s, researchers of power semiconductor devices have made unremitting efforts to achieve the above ideal goals. In the late 1960s, the turnoff thyristor GTO realized the turnoff function of the gate and expanded the chopper working frequency to more than 1kHz. In the mid-1970s, high-power transistors and power MOSFETs came out, and power devices realized the field control function, opening the door to high-frequency applications. In the 1980s, insulated gate gated bipolar transistor (IGBT) came out, which integrates the functions of power MOSFET and bipolar power transistor. Its rapid development has also inspired people to pay attention to the new power generator Honggou track, which integrates the functions of power MOSFET and thyristor. With the iconic Manhattan skyline as the background, it surrounds the Brooklyn cruise terminal under the gaze of the goddess of liberty, and has become an excellent place to show the charm of land and sea electric communication. With a total length of 2.32 kilometers and 14 corners, the track has many challenges, such as high-speed curves, straights and hairpin curves. 22 drivers competed in this race to compete. Following the New York race, the 13th and 14th rounds of the eighth season of ABB electric formula Championship will be transferred to the London track on July 30 and 31. ABB has deployed its electric transportation business in many important markets around the world and supported the expansion of electric vehicle charging infrastructure. At present, more than 680000 DC and AC charging piles have been installed in more than 85 countries and regions around the world to support green transportation with innovative solutions. ABB's decarbonization road also extends from land to sea, accelerating the electrification, automation and shore power connection of ships, and supporting the efficient and zero emission operation of the shipping industry.



As the naming partner of ABB FIA electric formula world championship, abb not only supports its global events, but also works together to break gender barriers and support women's development. Before the race, abb released the latest video of the "driving force" series - "girls on track". Daniela Lu, head of ABB electric equation cooperation project ž Anin and Hannah brown, the director of electric equation, discussed the impact and significance of the project in the video, and shared the original intention and vision of ABB's cooperation with electric equation to support the project. Motorsport combines the dual elements of sports and technology. Only by combining superb driving skills with rich engineering and technical experience can drivers gallop on the track. With the help of the highlight platform of racing cars, the "girls on the track" project encourages more young women to approach exciting racing sports, understand the complete ecosystem inside and outside the track, and then join the stem (Science, technology, engineering, Mathematics) field to explore a broader development space in the future. ABB opened a new global innovation and training park for mechanical automation in bekale, Austria, which is one of the largest integrated production, R & D and training bases in Central Europe.



The new park is ABB's global R & D Center for machinery and factory automation, artificial intelligence and software solutions. The global innovation center has significantly expanded its links with machinery manufacturers, manufacturers, start-ups, research and education institutions.





ABB has opened a new global innovation and training park at its headquarters in bekale (its global machinery and factory automation center) in eggelsberg, Austria. The new park will create up to 1000 additional high-tech jobs, including world-class R & D laboratories and global training facilities that can provide training for up to 4000 people per year in cooperation with universities. ABB invested 100million euros to expand its headquarters in bekale. The innovation of the Park focuses on artificial intelligence, machinery and factory automation, and will play an important role in releasing the potential of future industrial production - in the fields of electronics, electric transportation, food and beverage, environmental protection, logistics, agriculture and so on. They will improve productivity and flexibility, help customers become more sustainable, and bring production closer to their end markets. The new park expands the total area of its headquarters to more than 100000 square meters, making it one of the largest integrated production, R & D and training bases in Central Europe, with about 2400 employees at present. The expansion will also make room for additional capacity expansion to meet the growing demand for baccalais products. This is a decade of transformation to robotics and automation, because our customers need to cope with global labor and supply shortages, consumers have accelerated their demand for personalized products, and enterprises need more sustainable operations. ABB's new park will serve as a customer collaboration center, where we work with customers around the world to help them cope with these trends and support baccalais to become the preferred partner for the world's most ambitious industrial automation projects.



ABB research shows that in Europe and the United States, 8 out of 10 companies plan to further automate, and 7 out of 10 companies plan to reshape their production. The global potential market size of machinery and factory automation is currently estimated to increase from $20billion per year to $31billion per year by 2030.



ABB acquired baccalais in 2017, becoming the only company that can provide industrial automation customers with complete integrated hardware and software solutions around control, drive, robotics, sensor analysis and electrification. ABB innovation and training park will be an open innovation center. Here, baccalais will work closely with international customers, companies, start-ups and research and education institutions from the region to jointly develop automation solutions and cultivate talents needed by future factories.



With the construction of the new park, baccalais also launched a new brand logo, establishing a visual connection between baccalais and abb. "Our new visual design emphasizes ABB's firm commitment to the sub brand of baccalais, and demonstrates the strength of baccalais and ABB in the process of our joint development and cooperation. We become a member of this larger family, creating many new possibilities for each employee to actively shape their career," theis said.

As part of its 2030 sustainability strategy, abb expects to be carbon neutral in its own operations over the next decade. In bekale, abb installed one of Austria's largest self generating photovoltaic power systems. The additional photovoltaic modules in the park now increase the total power generation to 1.8 MW. The self use rate is about 98%. Begalay was founded by Erwin bernecker and Josef Rainer in 1979 and is headquartered in eggelsberg, Upper Austria. Today, baccalais is the world's leading solution provider in the field of machinery and factory automation. It is also the global ABB mechanical automation department in ABB's robotics and discrete automation business. Overall, ABB's robotics and discrete automation business has more than 11000 employees in more than 100 locations in more than 53 countries.



ABB has been operating in Austria for more than 110 years and has a proud history in Austrian industry - from electrification to railways, from supplying power to ski lifts to robots and process automation. In 2017, abb acquired bekale, making it the largest industrial automation supplier in Austria. Pm511v16 3bse01181r1 is a high-performance programmable controller, whose speed, capacity, performance and function have reached a new level. ● CPU, power supply, input and output integration, built-in high-speed processing and positioning functions. Pm511v16 3bse01181r1 input and output can be expanded to 384 points at most. Powerful expansion functions can be realized through function expansion board and special adapter. I/o acquisition module is adopted. The module can be installed near the sensor end and connected with PLC through a group of communication lines, which not only saves the cost of wiring, but also saves the i/o points of PLC itself. If the field budget of pm511v16 3bse01181r1 is limited, it is obviously more economical to use i/o acquisition module. Modular structure, providing 14 to 128 point input / output range, and can also add extended special function modules (such as analog input / output). The pm511v16 3bse01181r1 transistor output type has two 100kHz pulse sequences for servo positioning applications.



IRB 260 robot is mainly designed and optimized for packaging applications. Although it is small and can be integrated into compact packaging machinery, it can meet all your requirements in terms of reach distance and payload. With abb motion control and tracking performance, the robot is very suitable for flexible packaging systems.


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