Combining the development of system theory and cybernetics, based on the development of on-line analysis and control of industrial automation measurement and control, in-situ analysis and control, high reliability, high performance, and high adaptability, innovative development of industrial automation instrumentation and control systems .
Combining the development of life sciences and human sciences, medical instruments are developed based on the development of health monitoring, early diagnosis and treatment, non-destructive diagnosis, non-invasive and low-impact medical treatment, and precise positioning of treatment technologies for medical diagnosis and treatment; In the field of application, development of various special, fast, automated detection and measurement technologies and special instrumentation.
Industrial automation instrumentation and measurement and control systems and scientific instruments occupy both half of the instrumentation and measurement and control in both the output value and the market, and are the two pillars of the measurement and control instrumentation system.
First, the trend of measurement and control instrumentation development:
Measurement and control instruments face constant improvement in product stability, reliability and adaptability;
Measurement and control instrumentation technology indicators and functions continue to increase;
Measurement and control instrumentation first adopted new scientific research results;
Measurement and control instrumentation high-tech high-volume;
Micro-miniaturization and intelligence of measurement and control instrumentation units have become increasingly evident;
Requires the measurement and control instrumentation unit to be used independently, embedded, and networked;
The scope of instrument measurement and control is extended to three-dimensional and globalized;
The monitoring and control function has been systematically and networked; a large number of portable, handheld and even personalized instruments have been developed.
Measurement and control instrumentation technology features are: with the enterprise information technology
Automation instrumentation technology includes information acquisition, processing, and applications. "Enterprise informatization" is actually the integration and integration of enterprise information. To do this, it is necessary to "simplify", "rule" and "abstract" information with automated and systematic information models in order to make the most effective use of information. This is a basic work in the field of automation instrumentation, and it is also an important means to unify information expression.
Second, measurement and control instrumentation This is the realization of automated instrumentation system can be fully interoperable.
Interoperability is hierarchical, and implementation requires a long process. In recent years, the publication of the IEC62424 standard, the expansion of the InTools tool software functions, and the introduction of interoperable standards for the control system and field instrumentation layer are an important landmark in the development.
Third, measurement and control instrumentation safety
The important development of functional safety in recent years is that a large number of measurement and control instruments and meters that have passed functional safety certification have been introduced to the market. In order to gain a favorable position in the competition, almost all instrument manufacturers will conduct functional safety research.
Fourth, system maintenance and instrument diagnosis
System maintenance and instrument diagnostics are increasingly concerned by users, manufacturers, and researchers.
It is divided into four levels: diagnosis of production processes, diagnosis of production equipment, diagnosis of automated control systems, and diagnosis of field instruments.
The diagnosis of production processes does not, in principle, belong to the category of automation instruments, but the exchange of diagnostic information involves automated instrumentation systems. For the monitoring of production equipment, diagnostic instrumentation systems have introduced new products. The diagnosis of the automatic control system is usually a module or a function of the equipment management software in the control system, which is responsible for the real-time diagnosis and predictive maintenance of the control system itself and the field instruments. Field instrumentation is difficult to diagnose. The maintenance period is determined by the loss of the smart meter or fixed time.
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Type |
BLDS-3060 |
BLDS-4080 |
BLDS-5080 |
BLDS-60100 |
BLDS-80100 |
Input power |
AC380V/50Hz; AC220V/50Hz |
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Track gauge(mm) |
3000 |
4035 |
5000 |
6000 |
8000 |
Effective cutting width(mm) |
2300 |
3300 |
4300 |
5300 |
7300 |
Machine width(mm) |
3500 |
4300 |
5500 |
6500 |
8500 |
Track length(mm) |
6000 |
8000 |
8000 |
10000 |
10000 |
Number of cutting torch(set) |
2 |
2 |
2 |
2 |
2 |
Lift(mm) |
200 |
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Cutting thickness(mm) |
1~30(According to the power supply size) |
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Cutting speed (mm/min) |
450~5000 |
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Idle speed(mm/min) |
0~8000 |
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Drive mode |
Bilateral drive |
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System |
Shanghai Jiaoda or Beijing Starfire |
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Operating accurancy |
±0.5mm |
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