Description
The
HIMA F35 is a high-reliability safety controller module designed to meet the stringent demands of industrial automation and safety-critical systems. As a key component of HIMA’s safety instrumented systems, the
HIMA F35 is engineered to deliver precise control, robust diagnostics, and seamless integration with existing industrial setups. This module serves as a vital link in ensuring the safe operation of machinery, processes, and facilities across various industries.
The HIMA F35 is built to handle complex safety logic, monitor critical parameters, and execute protective actions to prevent accidents or equipment damage. Its core functions include real-time data processing, fault detection, and fail-safe switching, making it an ideal choice for applications where safety and reliability are non-negotiable. With a focus on ease of use and compatibility, the HIMA F35 simplifies system design while enhancing overall operational safety.
Parameter |
Specification |
Voltage Supply |
24V DC ±15% |
Power Consumption |
≤10W |
Processor Type |
32-bit RISC CPU |
Memory Capacity |
512 MB Flash, 256 MB RAM |
Input/Output Channels |
Scalable via modular expansion |
Communication Interfaces |
Ethernet (10/100 Mbps), Profibus DP |
Safety Integrity Level |
SIL 3 (IEC 61508/61511 certified) |
Operating Temperature |
-20°C to +60°C |
Compliance Standards |
IEC 61508, IEC 61511, ISO 13849 |

HIMA F35
The HIMA F35 stands out for its advanced safety features and rugged design. It incorporates a triple modular redundancy (TMR) architecture, which ensures high fault tolerance by verifying data across three independent channels, reducing the risk of single-point failures. The module also offers comprehensive self-diagnostics, achieving a diagnostic coverage rate of over 99%, which minimizes downtime and enhances system availability.
One of its key strengths is its flexibility in configuration. The HIMA F35 supports multiple programming languages, including Ladder Diagram (LD), Structured Text (ST), and Function Block Diagram (FBD), allowing engineers to use familiar tools for system setup. Additionally, its hot-swappable design enables maintenance without shutting down the entire system, a critical feature for industries requiring continuous operation.
The HIMA F35 is widely used in industries such as chemical processing, oil and gas, power generation, and manufacturing, where safety systems are essential to prevent catastrophic failures. It is suitable for applications like emergency shutdown systems (ESD), fire and gas detection systems, and machine safety controls.
In a recent case, a chemical plant in Germany integrated the HIMA F35 into its production line to replace an older safety controller. The module’s seamless compatibility with existing sensors and actuators reduced integration time by 30%. Its real-time diagnostics helped the plant identify a potential valve failure before it escalated, avoiding an estimated €500,000 in downtime costs.
When compared to similar safety controller modules on the market, the HIMA F35 distinguishes itself through its combination of high SIL 3 certification, extensive diagnostic capabilities, and user-friendly programming environment. Unlike some alternatives, it offers native support for both legacy and modern communication protocols, ensuring compatibility with diverse industrial networks. Its robust TMR architecture also provides a higher level of fault tolerance, making it a preferred choice for applications with strict safety requirements.

HIMA F35
When selecting the HIMA F35, consider the following factors:
- System Compatibility: Ensure the module is compatible with your existing HIMA safety system or planned architecture, including communication protocols and power requirements.
- Environmental Conditions: Verify that the operating temperature, humidity, and vibration specifications match your installation environment, especially for harsh industrial settings.
- Scalability Needs: Assess whether the module’s expandable I/O capabilities align with your current and future system requirements, such as the number of sensors and actuators to be connected.
- Certification Requirements: Confirm that the SIL 3 certification meets the safety standards of your industry or region to avoid compliance issues.
- Installation: Always power down the system before installing or removing the HIMA F35 to prevent electrical surges and ensure safety. Use anti-static wrist straps to avoid damaging internal components.
- Software Configuration: Validate all safety logic and configurations through HIMA’s approved tools to ensure compliance with safety standards. Regularly back up project files to prevent data loss.
- Maintenance: Conduct periodic diagnostic checks using the module’s built-in monitoring tools. Replace batteries (if applicable) according to the manufacturer’s guidelines to maintain memory integrity.
- Firmware Updates: Only use firmware versions approved by HIMA and test updates in a controlled environment before deploying them in live systems to avoid compatibility issues.
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