The instrument and meter industry is showing a mainstream trend of high-tech development
2024-03-22 From: Harbin Tianlong Instrument Manufacturing Co., Ltd Browsing times:144
Preface: Technology is the main productive force, and it is no exception in the instrument and meter industry. In order for instrument and meter enterprises to achieve great development and improve their technological level, researching and developing high-tech products has become a natural choice.
100% of China's scientific research advanced instruments rely on imports, and the import export deficit reached a new high in 2010. These all indicate that China still mainly relies on imports in advanced instrument and meter products. There is a high demand for instruments and meters in our country, and there is still a gap in the technical level of domestic instrument and meter enterprises compared to foreign countries. Therefore, some opportunities have been lost. To seize these opportunities, seize the market, and improve technical level is the key. The high-tech development of the instrument and meter industry has become the mainstream.
In the past two decades, high-tech fields such as microelectronics, computer technology, precision machinery technology, high sealing technology, special processing technology, integration technology, thin film technology, network technology, nanotechnology, laser technology, superconductivity technology, and biotechnology have achieved rapid development worldwide. This background and situation constantly put forward higher, updated, and more requirements for instruments and meters, such as faster speed, higher sensitivity, better stability, less sample size, detection of micro damage or even non-destructive, remote sensing remote control with longer distance, more convenient use, lower cost, and no pollution. At the same time, it also provides a strong driving force for the development of the instrument and meter technology industry, and has become the material, knowledge, and technical foundation for the further development of instruments and meters.
It should be pointed out that in the past decade, due to the emergence of a large number of contemporary scientific and technological achievements, including research on precision machinery in nanotechnology, modern chemical research at the molecular level, biological research at the genetic level, new sensor technology and intelligent technology research, as well as research on high-precision and high-performance special functional materials and network technology promotion and application, the field of instruments and meters has undergone fundamental changes. These new achievements have not only become the soil, foundation, support, and driving force for the survival and development of modern instruments and their industries, but are also rapidly changing the working principles and essential characteristics of instruments, and enabling them to possess and possess numerous, new, and ultra-high functions that traditional instruments cannot achieve. It can be said that modern instrument products have become typical high-tech products. At present, it has not only completely broken through the traditional framework of light, machinery, and electricity, but is rapidly developing towards computerization, networking, intelligence, and multifunctionality. Moreover, due to the extensive use of high-tech research results, interdisciplinary comprehensive design, high-precision manufacturing technology, and strict scientific practical applications, it is also moving towards a faster, more sensitive, more reliable, and simpler direction of obtaining all information of the analyzed, detected, and controlled objects.
With the emergence of fieldbus, there has been a significant turning point and rare opportunity in the development of process measurement and control instruments. At present, fieldbus has become a hot topic in automation technology. Fieldbus is a fully digital, bidirectional, and multi station communication system used between on-site intelligent instruments and control rooms. Its emergence is not only the result of the actual needs of users and technological competition among manufacturers, but also the product of the combination of computer technology, communication technology, and control technology in the field of industrial control. The emergence of fieldbus has contributed to the updating and upgrading of instruments and products, as well as achieving further high precision and performance? Especially multi parameter online real-time measurement and automatic measurement and control? High stability, high reliability, high adaptability, multifunctionality, and low consumption provide tremendous momentum and development space.
From the above analysis, it can be seen that high-tech is not only the main feature of modern instruments and meters, but also the necessary path to revitalize the instrument and meter industry, and it is also the mainstream of the development of instruments and meters and their industries in the new century. Preface: Technology is the main productive force, and it is no exception in the instrument and meter industry. In order for instrument and meter enterprises to achieve great development and improve their technological level, researching and developing high-tech products has become a natural choice.
100% of China's scientific research advanced instruments rely on imports, and the import export deficit reached a new high in 2010. These all indicate that China still mainly relies on imports in advanced instrument and meter products. There is a high demand for instruments and meters in our country, and there is still a gap in the technical level of domestic instrument and meter enterprises compared to foreign countries. Therefore, some opportunities have been lost. To seize these opportunities, seize the market, and improve technical level is the key. The high-tech development of the instrument and meter industry has become the mainstream.
In the past two decades, high-tech fields such as microelectronics, computer technology, precision machinery technology, high sealing technology, special processing technology, integration technology, thin film technology, network technology, nanotechnology, laser technology, superconductivity technology, and biotechnology have achieved rapid development worldwide. This background and situation constantly put forward higher, updated, and more requirements for instruments and meters, such as faster speed, higher sensitivity, better stability, less sample size, detection of micro damage or even non-destructive, remote sensing and remote control with longer distance, more convenient use, lower cost, and no pollution. At the same time, it also provides a strong driving force for the development of the instrument and meter technology industry, and has become the material, knowledge, and technical foundation for the further development of instruments and meters.
It should be pointed out that in the past decade, due to the emergence of a large number of contemporary scientific and technological achievements, including research on precision machinery in nanotechnology, modern chemical research at the molecular level, biological research at the genetic level, new sensor technology and intelligent technology research, as well as research on high-precision and high-performance special functional materials and network technology promotion and application, the field of instruments and meters has undergone fundamental changes. These new achievements have not only become the soil, foundation, support, and driving force for the survival and development of modern instruments and their industries, but are also rapidly changing the working principles and essential characteristics of instruments, and enabling them to possess and possess numerous, new, and ultra-high functions that traditional instruments cannot achieve. It can be said that modern instrument products have become a typical high-tech product of ******. At present, it has not only completely broken through the traditional framework of light, machinery, and electricity, but is rapidly developing towards computerization, networking, intelligence, and multifunctionality. Moreover, due to the extensive use of high-tech research results, interdisciplinary comprehensive design, high-precision manufacturing technology, and strict scientific practical applications, it is also moving towards a faster, more sensitive, more reliable, and simpler direction of obtaining all information of the analyzed, detected, and controlled objects.
With the emergence of fieldbus, there has been a significant turning point and rare opportunity in the development of process measurement and control instruments. At present, fieldbus has become a hot topic in national automation technology. Fieldbus is a fully digital, bidirectional, and multi station communication system used between on-site intelligent instruments and control rooms. Its emergence is not only the result of the actual needs of users and technological competition among manufacturers, but also the product of the combination of computer technology, communication technology, and control technology in the field of industrial control. The emergence of fieldbus has contributed to the updating and upgrading of instruments and products, as well as achieving further high precision and performance? Especially multi parameter online real-time measurement and automatic measurement and control? High stability, high reliability, high adaptability, multifunctionality, and low consumption provide tremendous momentum and development space.
From the above analysis, it can be seen that high-tech is not only the main feature of modern instruments and meters, but also the necessary path to revitalize the instrument and meter industry, and it is also the mainstream of the development of instruments and meters and their industries in the new century.
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