ABB UNITROL 1010 Indirect excitation system 10 ADC current

ABB UNITROL 1010 Indirect excitation system 10 ADC current

ABB UNITROL 1010 Indirect excitation system 10 ADC current

Brand ABB color standard Application Industrial height 128mm rated current 228mA
Protection Level IP45 Suitable for motor power 326KW Application Site Power Industry Material Code GJR2391500R1220 Power industry HIEE401782R0001 Part number UNITROL 1010
Applicable pipe 2 Whether imported is weighing 1.68 kg can be sold nationwide

ABB UNITROL 1010 Indirect excitation system 10 ADC current

Brand ABB color standard Application Industrial height 128mm rated current 228mA
Protection Level IP45 Suitable for motor power 326KW Application Site Power Industry Material Code GJR2391500R1220 Power industry HIEE401782R0001 Part number UNITROL 1010
Applicable pipe 2 Whether imported is weighing 1.68 kg can be sold nationwide

ABB UNITROL 1010 Indirect excitation system 10 ADC current

Outline of mechatronics
Mechatronics refers to the introduction of electronic technology in the mechanism’s primary function, power function, information processing function and control function, and the combination of mechanical devices with electronic design and software.
The development of mechatronics has become a new discipline with its own system, and with the continuous development of science and technology, it will be given new content. But its basic characteristics can be summarized as: Mechatronic integration is from the point of view of the system, the comprehensive use of mechanical technology, microelectronics technology, automatic control technology, computer technology, information technology, sensor measurement and control technology, power electronics technology, interface technology, information transformation technology and software programming technology and other group technologies, according to the functional objectives of the system and optimization of organizational objectives, reasonable configuration and layout of each functional unit. Systems engineering technology that realizes specific functional value and optimizes the entire system in the sense of multi-function, high quality, high reliability and low energy consumption. The resulting functional system becomes a mechatronics system or mechatronics product. Therefore, “mechatronics” covers both “technology” and “product”.
1. Mechatronics technology development
Mechatronics is a multidisciplinary integration of machinery, microelectronics, control, computer, information processing, etc. Its development and progress depend on the progress and development of related technologies, and its main development directions are digital, intelligent, modular, networked, humanized, miniaturized, integrated, with source and green.
(1) Digitalization
Microcontrollers and their development have laid the foundation for the digitization of electromechanical products, such as CNC machine tools and robots, which are constantly evolving; The rapid rise of computer network has paved the way for digital design and manufacturing, such as virtual design and computer integrated manufacturing. Digitalization requires that the software of mechatronics products have high reliability, easy operation, maintainability, self-diagnosis ability and friendly man-machine interface. The digital implementation will facilitate remote operation, diagnosis and repair.
(2) Intelligence
That is, mechanical and electrical products are required to have certain intelligence, so that it has the ability to think logically, judge reasoning, and make independent decisions similar to people. With the progress and development of artificial intelligence technologies such as fuzzy control, neural network, grey theory, wavelet theory, chaos and bifurcation, a broad world has been opened up for the development of mechatronics technology.
(3) Modularity
Because of the variety of mechatronics products and manufacturers, it is a complex and promising work to research and develop mechatronics product unit modules with standard mechanical interface, power interface and environmental interface. Such as the development of a set of deceleration, variable frequency speed regulation motor integrated power drive unit; Motor integrated control unit with functions of vision, image processing, recognition and ranging, etc. In this way, in product development and design, these standard modular units can be used to rapidly develop new products.
(4) Networking
Due to the popularity of the network, various remote control and monitoring technologies based on the network are in the ascendant. The remote control terminal equipment itself is a mechatronics product, fieldbus and local area network technology makes it possible to network household appliances, the use of home networks to connect a variety of household appliances into a computer-centered computer integrated household appliances system, so that people can fully enjoy the benefits of various high technologies at home, therefore, Electromechanical integration products should undoubtedly develop in the direction of networking. Bring endless knowledge and convenience to people.
(5) Humanization
The final use object of mechatronics products is people, how to give mechatronics products people’s intelligence, emotion and humanity is becoming more and more important, mechatronics products in addition to perfect performance, but also require in color, shape and other aspects of the environment coordination, the use of these products, for people is still an artistic enjoyment, For example, the highest state of household robots is man-machine integration.
(6) Miniaturization
Miniaturization is the inevitable development of fine processing technology, but also the need to improve efficiency. Micro Electronic Mechanical Systems (MEMS) are micro-devices or systems that can be mass-produced, integrating micro-mechanisms, micro-sensors, micro-actuators, signal processing and control circuits, until the interface, communication and power supply are equal to one. Since the first medical microprobe was developed by Stanford University in 1986 and the first micromotor was developed by the University of California, Berkeley in 1988, great progress has been made in MEMS process, materials and microscopic mechanism research at home and abroad, and various MEMS devices and systems have been developed. Such as a variety of micro sensors (pressure sensors, micro accelerometers, micro touch sensors), a variety of micro components (micro film, micro beam, micro probe, micro connecting rod, micro gear, micro bearing, micro pump, micro spring and micro robot, etc.).

ABB UNITROL 1010 Indirect excitation system 10 ADC current

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