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F8652X

Central module
In Stock

Product Information:

Central module

Interfaces:Two serial interfaces

RS 485 with electric isolation

Diagnostic: display Four digit

matrix display with selectable

information

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Technical specifications for F8652X

  • Manufacturer:
    HIMA
  • Product Category:
    DCS System
  • Spare Part Number:
    F 8652X
  • Estimated shipping dimensions:
    4x18.5x12.7cm
  • Weight:
    0.3 kg
  • Tariff Code:
    8537101190
  • Country of origin:
    Germany
  • Place of shipment:
    Xiamen, Fujian, China
  • Product Type:
    Central module
  • Microprocessors:
    INTEL 386EX, 32 bits
  • Clock frequency:
    25 MHz
  • Memory per microprocessor Operating System:
    Flash-EPROM 1 MB
  • Space requirement:
    8 SU
  • Operating data:
    5 V / 2 A
  • Shutdown on fault:
    Safety-related watchdog with output 24 V, loadable up to 500 mA, short-circuit proof
  • Construction:
    Two European standard PCBs, one PCB for the diagnostic display
  • Stock:
    30

Information

Overview Manuals Principle Applications & Functions

Features:

  • F 8652X Central module
  • Central module with two clock-synchronized microprocessors
  • Use in the PES H41q-MS, -HS, -HRS, Safety-related, applicable up to SIL 3 according to IEC 61508
The F8652X is a high-integrity safety system controller manufactured by HIMA. It is the "brain" of HIMA's H41q and H51q programmable electronic safety (PES) systems, which are critical for monitoring and controlling industrial processes where failures can lead to catastrophic events.

For serial interfaces, only bus station numbers 1 to 31 can be set. In Ethernet, bus station numbers can be set from 1 to 99. Therefore, in addition to switches S1-1/2/3/4/5, switches S1-6/7 must also be set. The number of communication partners in the network remains limited to 64. This enhanced bus station numbering feature is only available for the central module's operating system BS41q/51q V7.0-8 (05.31).

The F8652X HIMA Central module may still be available for purchase and support from Moore Automated Company beyond End-Of-Life (EOL) by the manufacturer (OEM).
HIMA F8652X Central module manual(Datasheets), Link Important Notice: Other accessories, manuals, cables, calibration data, software, etc. are not included with this equipment unless listed in the above stock item description. All prices are shown in USD.
The F8652X primarily operates based on secure communication processing and redundant network management mechanisms. As a communication processor in a safety control system, this module first receives data frames from safety controllers, engineering stations, or monitoring systems via its industrial communication interface. Subsequently, its internal dedicated processor performs protocol parsing, integrity verification, and time consistency verification on the data to ensure that the information meets functional safety communication requirements.
Applications using the F 8627X communication module:
– Connecting the central module to PADT (ELOP II TCP)
– Connecting to other communication partners on Ethernet (safeethernet, Modbus TCP)
Communication runs from the central module to the F 8627X communication module via the backplane bus, and from the F 8627X's Ethernet port to the Ethernet, and vice versa.

Ask our team:

  • What primary functional responsibility does F8652X assume within a safety-instrumented HIMax/HIMatrix automation ecosystem? F8652X operates as a high-performance communication processor designed to manage secure data exchange between the safety controller and higher-level industrial networks, enabling deterministic and fail-safe communication. Q2. How does F8652X architecturally guarantee deterministic and fault-tolerant data transmission? F8652X integrates redundant communication paths, watchdog supervision, and safety-certified firmware to ensure continuous data integrity even under fault or degraded network conditions. Q3. Why is the F8652X considered a critical component for safety-related networking and system integration? F8652X is engineered to meet stringent functional safety requirements, ensuring that communication between safety controllers, engineering stations, and supervisory systems remains predictable, validated, and secure. Q4. How does F8652X manage protocol handling and real-time communication workloads simultaneously? F8652X utilizes dedicated processing resources and optimized firmware stacks to process industrial Ethernet and fieldbus communication in parallel with safety-relevant data exchange without latency compromise. Q5. In what ways does F8652X contribute to high system availability in mission-critical applications? F8652X supports redundancy mechanisms, automatic fault detection, and seamless switchover capabilities that maintain uninterrupted communication during hardware or network disturbances. Q6. How does F8652X ensure cybersecurity and communication integrity within industrial environments? F8652X incorporates secure communication protocols, access control mechanisms, and diagnostic monitoring to protect safety networks from unauthorized access and data manipulation. Q7. What diagnostic and monitoring capabilities are embedded within F8652X for predictive maintenance? F8652X continuously supervises communication health, interface status, and performance metrics, enabling early detection of anomalies and facilitating proactive maintenance strategies. Q8. How does F8652X enable interoperability with distributed control and supervisory systems? F8652X provides standardized industrial communication interfaces that allow seamless integration with SCADA, DCS, and engineering workstations, ensuring transparent data exchange across plant hierarchies. Q9. Why is the modular integration of F8652X advantageous for scalable safety architectures? F8652X supports flexible system expansion by allowing additional communication capacity and network segmentation without disrupting existing safety functions. Q10. How does F8652X enhance lifecycle reliability and long-term operational stability? F8652X combines robust hardware design, safety-certified firmware, and comprehensive diagnostics to deliver dependable communication performance throughout the entire lifecycle of safety-critical installations.
    The F8652X is a high-performance communication processor designed to manage secure data exchange between safety controllers and upper-layer industrial networks, enabling deterministic and fault-tolerant communication.
  • How does the F8652X architecturally guarantee deterministic and fault-tolerant data transmission?
    The F8652X integrates redundant communication paths, watchdog monitoring, and security authentication firmware to ensure continuous data integrity even in the event of network failures or performance degradation.
  • Why is the F8652X considered a key component for safety-related network and system integration?
    The F8652X is designed to meet stringent functional safety requirements, ensuring predictability, verifiability, and security in communication between safety controllers, engineering stations, and monitoring systems.
  • What diagnostic and monitoring functions are built into the F8652X for predictive maintenance?
    The F8652X continuously monitors communication health, interface status, and performance metrics, enabling early detection of anomalies and the development of proactive maintenance strategies.
  • How does the F8652X improve lifecycle reliability and long-term operational stability?
    The F8652X combines robust hardware design, security-certified firmware, and comprehensive diagnostic capabilities to deliver reliable communication performance throughout the entire lifecycle of safety-critical equipment.
  • Why does the modular integration of the F8652X offer advantages for scalable security architectures?
    The F8652X supports flexible system expansion, allowing for increased communication capacity and network segmentation without disrupting existing security features.
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Moore Disclaimer: Moore Automated's sales automation equipment and related solutions are intended for industrial automation and business operational efficiency improvement purposes only. Product information, technical parameters, and application cases are for reference only and do not constitute an absolute guarantee of performance for any specific industry, scenario, or final application. Actual equipment performance may vary depending on factors such as the usage environment, system integration method, and maintenance conditions. Users should confirm compatibility and safety based on professional technical assessments. Moore Automated assumes no liability for any direct or indirect losses caused by improper use, modification, or failure to operate according to specifications, to the extent permitted by law.