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NIIME CIPI NE51IOT microcircuit

Product
Developers: Research Institute of Molecular Electronics (NIIME)
Branches: Information Security,  Electrical and Microelectronics

2025: NE51IOT Release Agreement ver.2 under ViPNet SIES

JSC NIIME and JSC InfoTeCS signed a cooperation agreement. Within the framework of the agreement, NIIME JSC plans to release the CIPF NE51IOT ver.2 chip, adapted to the infrastructure requirements of the ViPNet SIES solution - a complex of embedded CIPF manufactured by InfoTeCS. This was last reported on April 15, 2025.

Such integration will make it possible to form a variation in proposals for information protection for the industrial Internet of Things (IIoT) and expand the use of NIIME and InfoTeCS products. The counter work of the ViPNet SIES Core Nano crypto-type, ViPNet SIES Core cryptomodule, ViPNet SIES Unit server software and CIPF NE51IOT using the CRISP cryptographic protocol will create the ability to provide cybersecurity for both small systems and infrastructure with millions of devices.

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Cooperation with NIIME opens up opportunities for the application of the ViPNet SIES solution. We expand the range of kryptocips compatible with our solution from a Russian manufacturer and give our customers a variety of choices. Such cooperation should have a beneficial effect on the cyber configuration of the Russian segment of the industrial Internet of Things, - said Dmitry Gusev, Deputy General Director of InfoTeCS.
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Interest in Russian certified means of protecting industrial Internet of Things devices continues to grow. We expect an active increase in the popularity of such products after the completion of the regulation of the IIoT market. Our cooperation with one of the flagships, InfoTeCS, will help develop the sphere of domestic embedded CIPFs and will contribute to the creation of the most popular solutions on the market, "said Alexander Kravtsov, General Director of NIIME.
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CIPI chip NE51IOT ver.1 from NIIME JSC is developed and manufactured in Russia (level 1 chip, registration with the Ministry of Industry and Trade is carried out). It meets the requirements of the FSB of Russia for CIPF in class KS3 and is intended for integration into end devices, as well as the requirements of CIPF-NR in terms of protection against engineering penetration attacks and requirements for electronic signatures. The chip has a certified physical random number sensor (FDSH), provides storage of cryptographic keys and execution of Russian cryptographic algorithms and can be built into devices of the industrial Internet of Things, and can also be used as the root of trust in the design and production of trusted software and hardware systems.