Allicdata Part #: | 052-0542-0001-ND |
Manufacturer Part#: |
052-0542-0001 |
Price: | $ 23.36 |
Product Category: | Uncategorized |
Manufacturer: | TE Connectivity Deutsch Connectors |
Short Description: | 052-0542-0001=STR PLUG, HEX NUT, |
More Detail: | N/A |
DataSheet: | 052-0542-0001 Datasheet/PDF |
Quantity: | 1000 |
100 +: | $ 21.23670 |
Series: | * |
Part Status: | Active |
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052-0542-0001, also known as Node ID, is a self-certifying digital signature scheme specifically designed to generate a pseudorandom-number generator (PRNG) that is used in generating a digital signature. This digital signature scheme is commonly used in applications that require digital authentication for data transmission. Node ID is different from other public key cryptography mechanisms in that it produces digital signature of a secure protocol that is able to verify the identity of the signer without relying on any external validation.
Node ID is an efficient way to provide digital authentication, since it generates a digital signature without relying on the physical remote digital signature algorithm (RDP) which can be vulnerable due to external exposure and malicious manipulation. Node ID is also cost effective when compared to more complex authentication systems such as Kerberos or PGP. Node ID is devised to support communications that are able to verify the authenticity of the data being transmitted, as well as the identity of the signer.
The working principle of Node ID is based on the use of a pseudorandom-number generator (PRNG) to generate a digital signature. A PRNG is an algorithm that creates pseudorandom numbers which are both unpredictable and indistinguishable from a real random number generator. The PRNG is used to generate a series of pseudorandom numbers, called “entropy”. These entropy numbers form the basis of the digital signature, and the entropy provided by the PRNG is used to securely sign the data being transmitted.
When a user wishes to transmit a digital signature, the Node ID system first collects information concerning the signer and the digital data that they wish to sign. The user then provides the Node ID system with the data, and the entropy that they have collected. The system then uses a hash function and the entropy to compute the digital signature. Once the signature is computed, the user can verify that the signature is valid, by comparing the signature with the hash value of the data. The user can then safely transmit the digital data and signature.
Node ID is increasingly being used for applications that are sensitive to user authentication. It is often used for applications that need optimum security, such as online banking, electronic medical records access, and secure messaging. The advantages of using Node ID are its low cost, its fast authentication times, and its secure authentication and verification performance.
In summary, Node ID is a self-certifying digital signature scheme, commonly used in applications that require secure authentication for data transmission. It uses a PRNG to generate a digital signature which is verified by comparing the hash value of the data. Node ID is cost-effective, secure, and offers fast authentication times. It is increasingly being used for secure applications, such as online banking and secure messaging.
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