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The possibility of increasing the verification interval has become a reality thanks to the recent testing conducted at the Federal State Unitary Enterprise “VNIIM” named after D.I. Mendeleev. The results of the tests, which involved the use of EMIS-BAR sensors, have confirmed the reliability of the metrological characteristics, paving the way for a longer verification interval.

For many industries and businesses, regular calibration and verification of measuring equipment is a crucial aspect of ensuring accurate and reliable measurements. However, this process can be time-consuming and costly, especially for equipment that requires frequent verification. That is why the news of a possible increase in the verification interval is met with great enthusiasm and interest.

The testing at VNIIM was conducted on various types of measuring equipment, including scales, thermometers, and pressure gauges. The equipment was subjected to rigorous testing using EMIS-BAR sensors, which are known for their high precision and sensitivity. These sensors are capable of detecting even the slightest changes in the metrological characteristics of the equipment, making them an ideal tool for testing.

The results of the testing were impressive, with the majority of the equipment showing stable and reliable metrological characteristics. This means that the equipment can maintain its accuracy and precision for a longer period, thus reducing the need for frequent verification. As a result, the verification interval can be extended, providing significant cost savings for businesses and industries.

One of the key factors that contribute to the reliability of metrological characteristics is the stability of the equipment’s components. The use of EMIS-BAR sensors allowed for a more accurate assessment of the stability of these components, ensuring that the equipment can maintain its accuracy over an extended period. This is a significant breakthrough in the field of metrology, as it opens up new possibilities for increasing the verification interval of various types of measuring equipment.

The testing at VNIIM has also demonstrated the effectiveness of EMIS-BAR sensors in detecting any potential issues with the equipment. This is crucial in ensuring the safety and reliability of the equipment, as any deviations in metrological characteristics can lead to inaccurate measurements and potentially hazardous situations. With the use of EMIS-BAR sensors, these issues can be detected and addressed promptly, ensuring the equipment’s continued reliability.

The news of a possible increase in the verification interval is not only beneficial for businesses and industries but also for the metrology community as a whole. It is a testament to the continuous efforts and advancements in the field of metrology, which aim to improve the accuracy and reliability of measuring equipment. This achievement would not have been possible without the dedication and expertise of the team at VNIIM, who have been at the forefront of metrology research and development for decades.

In conclusion, the recent testing at VNIIM has opened up new possibilities for increasing the verification interval of measuring equipment. The use of EMIS-BAR sensors has confirmed the reliability of metrological characteristics, paving the way for longer verification intervals and significant cost savings for businesses and industries. This achievement is a testament to the continuous advancements in the field of metrology, which aim to improve the accuracy and reliability of measuring equipment.

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