F8652E HIMA Safety system module

For serial interface only bus stop number. 1 ~ 31 can be set in Ethernet, bus station number. The value ranges from 1 to 99. Therefore, in addition to S1-1/2/3/4/5, the S1-6/7 switch must also be set.
The number of communication partners in the network is still limited to 64 with this enhanced bus stop setup. Applications using communication module f8627x only from the central module of operating system BS41q/51g V7.0-8(05.31) :
Connect the central module to a PADT (ELOPII TCP)
Connect to other communication partners within Ethernet (Secure Ethernet, Modbus TCP)
Communication runs from the central module through the backplane bus to the communication module F8627X, from the Ethernet port of the F8627X to the Ethernet, and vice versa.
Central module features:
Self-study: From operating system BS41q/51q V7.0-8(05.31)
ELOPII TCP: From operating system BS41/51g V7.0-8(05.31)

 

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Description

For serial interface only bus stop number. 1 ~ 31 can be set in Ethernet, bus station number. The value ranges from 1 to 99. Therefore, in addition to S1-1/2/3/4/5, the S1-6/7 switch must also be set.
The number of communication partners in the network is still limited to 64 with this enhanced bus stop setup. Applications using communication module f8627x only from the central module of operating system BS41q/51g V7.0-8(05.31) :
Connect the central module to a PADT (ELOPII TCP)
Connect to other communication partners within Ethernet (Secure Ethernet, Modbus TCP)
Communication runs from the central module through the backplane bus to the communication module F8627X, from the Ethernet port of the F8627X to the Ethernet, and vice versa.
Central module features:
Self-study: From operating system BS41q/51q V7.0-8(05.31)
ELOPII TCP: From operating system BS41/51g V7.0-8(05.31)


Batu Station details: ELOP II TCP, operating system and application loading (self-learning), etc. These core modules correspond to the data sheets of the F8627X as well as the operating system manuals and the H41g/H51
Safety manual for H41q/H51q. Is a kind of computer hardware equipment used to protect and manage the encryption used by the strong authentication system, and at the same time provide related cryptography operation, hardware security module is generally connected to the computer or network server through the form of expansion card or external equipment. HSM provides tamper evidence/proof and tamper evidence prevention functions. The former is designed so that the act of tamper will leave traces, while the latter is designed so that the act of tamper will cause HSM to destroy protected information such as keys. [11 Each HSM includes one or more secure coprocessors to prevent computation or bus detection, and many HSM systems provide a reliable secret backup mechanism that allows confidential data to be securely processed or transferred via smart cards or other devices, as the HSM is often part of a critical infrastructure such as a public Key Infrastructure (PKI) or online banking. It is common to use multiple HSMS at the same time to achieve high availability, some have dual power supplies, no downtime replacement accessories such as cooling fans, and other designs to ensure high availability requirements in environments such as data centers, and a small number of HSMS allow users to run specially developed modules on their internal processors.
In some cases, this design is quite practical, such as the user can run some special algorithms or business logic in this secure and controlled environment, even if the attacker obtains full control of the computer, the program stored in the HSM(connected to the computer) cannot be extracted or modified. General HSM allows users to develop such specialized programs using programming languages such as, NET, Java, etc. It is worth noting that there is isolation between the user-defined process seats and the HSM’s own process seats, so that the existence of the process seats does not affect the security of the HSM itself, taking into account the critical role that the hardware security module (HSM) plays in the security of applications and infrastructure. Such cryptographic modules are usually certified by Common riteria, FIPS 140 and other internationally recognized certifications, which will provide users with product design and implementation guarantees, while ensuring that the corresponding cryptographic algorithms work correctly as expected. FIPS 140 security certification is the highest certification level of Leve 4(overall). Only a very small number of HSMS have successfully passed this Level of certification, with the majority of devices at Level 3.

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