HIMA F 60 CPU 01 HIMatrix Safety Central Processing Unit Modules
HIMA F 60 CPU 01 HIMatrix Safety Central Processing Unit Modules
HIMA F 60 CPU 01 HIMatrix Safety Central Processing Unit Modules
/ 3

HIMA F 60 CPU 01 HIMatrix Safety Central Processing Unit Modules

  • Manufacturer: HIMA

  • Part Number: F60 CPU 01

  • Condition:New with Original Package

  • Product Type: Central Processing Unit Modules

  • Country of Origin: Germany

  • Payment:T/T, Western Union

  • Shipping port: Xiamen

  • Warranty: 12 months

HIMA F60 CPU 01 HIMatrix Central Processing Unit Module

The HIMA F60 CPU 01, also cataloged as the F60 CPU 01 Central Processing Unit Module, operates as a dedicated hardware component for central safety logic execution and real-time parameter monitoring within HIMatrix F60 Safety Controller platforms.

Hardware Specifications

Parameter Specification
Model F60 CPU 01
Brand HIMA
Origin Germany
Weight 1.2 kg
Dimensions Standard Chassis Frame
Operating Temp -20 deg C to +60 deg C
Power Consumption 24 V DC nominal
Series HIMatrix
Function Central Processing Unit (CPU) for Safety Controller
Safety Certification SIL 3 (IEC 61508 / 61511), PL e (EN ISO 13849-1), SIL 4 (EN 50126/28/29)
Communication Interfaces PROFIBUS DP, RS232, RS485, RS422, INTERBUS
Engineering Interface PADT (Programming and Diagnostic Tool)
System Status Indicators LEDs for system status and diagnostics
Mounting Type DIN rail or rack-mounted

Galvanic Isolation and SIL 3 Fail-Safe State Execution

Internal optocouplers maintain galvanic isolation between core microprocessor logic circuits and serial communication pathways, preventing field interference from disrupting safety processing loops. Self-testing diagnostic routines execute continuously to evaluate memory allocation, clock cycle timing, and bus synchronization. If an unrecoverable internal processing fault or bus corruption event occurs, the integrated watchdog circuits force the control loops directly into a fail-safe state. This deterministic safety behavior maintains compliance across SIL 3 (IEC 61508 / IEC 61511), PL e (EN ISO 13849-1), and railway SIL 4 (EN 50126/28/29) execution standards.

Frequently Asked Questions

Q: How does the CPU respond when an internal hardware self-test failure occurs?

A: Diagnostic routines halt instruction execution, trigger system status LEDs, and immediately force all managed output channels into a de-energized fail-safe state to maintain process safety.

Q: What mounting configurations does the hardware enclosure support?

A: The physical housing supports mounting directly on a standard 35 mm DIN rail or secured placement within a standard rack enclosure.

Q: How are programming parameters transferred to non-volatile memory?

A: Logic routines compiled in the PADT programming environment transfer through designated serial interfaces (RS232/RS485) or PROFIBUS DP nodes for secure execution in system flash memory.

Field Installation Guidelines

Disconnect main 24 V DC supply power before positioning the assembly onto the DIN rail or rack frame. Engage the rear mounting clip firmly onto the rail, confirming a rigid mechanical lock to ensure grounding continuity through the chassis attachment. Connect PROFIBUS DP and serial interface lines using double-shielded twisted-pair cables. Route signal cables in separated wire trays, keeping low-voltage serial connections well away from high-voltage AC distribution circuits to prevent inductive noise coupling. Terminate cable shielding at a dedicated terminal rail near the cabinet entry point using 360-degree clamps to prevent ground loops.

You may also like