Description
Product Overview
The HIMA F35 is a programmable safety controller from HIMA’s HIMatrix family, designed for safety-related automation and process protection applications. It is intended to execute safety logic and process discrete or analog signals where dependable fault detection and deterministic control are required. The F35 platform is used in applications such as machinery protection, burner management, process safety, and other industrial systems where the control architecture must meet stringent functional-safety requirements.
The compact controller architecture is suitable for distributed safety applications where cabinet space and I/O flexibility are important. When maintaining an existing HIMA installation, the exact hardware version, firmware, I/O configuration, and safety application should be checked before substitution. Personally, I would treat the F35 as a safety-critical asset and require configuration verification and documented testing before returning a replacement unit to service.
Technical Specifications — F35
| Parameter | Value |
|---|---|
| Product Model | F35 |
| Manufacturer | HIMA |
| Product Family | HIMatrix |
| Product Type | Safety Controller / Remote I/O Controller |
| Safety Function | Programmable safety control |
| Power | 24 VDC system supply |
| Communication / Protocol | Ethernet-based industrial communication; configuration dependent |
| Operating Temperature | Typically 0°C to +60°C |
| Mounting | DIN rail / control cabinet |
| Dimensions (HxWxD) | Approximately 100 × 160 × 120 mm; verify hardware revision |
| Weight | Approximately 1 kg; verify supplied configuration |
| Typical Interfaces | Ethernet, serial/system interfaces, digital and application-specific I/O |
| Safety Level | Application-dependent; verify current certification |
| Compliance | IEC 61508 / IEC 61511 application framework; verify exact hardware certification |

HIMA F35
Key Features and Benefits — F35
- Designed for safety-related industrial automation applications.
- Supports deterministic execution of safety control logic.
- Suitable for process protection and machine safety architectures.
- Compact form factor for distributed control cabinets.
- Provides communication and I/O capabilities for integrated safety systems.
- Appropriate as an MRO spare when the installed safety application specifically requires the same hardware configuration.
- Supports maintenance strategies based on dedicated, traceable safety-system spares.
Related Models
HIMA F30: HIMatrix safety controller designed for compact safety automation applications with configurable I/O and communication functions.
HIMA F60: HIMatrix controller intended for larger or more demanding safety-system configurations.
HIMA F35 03: Hardware variant within the F35 family; exact I/O and communication configuration should be checked against the installed unit.
HIMatrix F-series: Modular safety-control platform used across process, machinery, transportation, and energy applications.
Installation and Maintenance — F35
Before installation, verify the complete model designation, hardware revision, firmware, application program, safety configuration, and I/O assignment. Follow the plant’s functional-safety procedure and apply appropriate ESD protection when handling the controller.
After replacement, perform the required diagnostic, communication, I/O, and safety-function checks before commissioning. Configuration changes should be controlled and documented under the site’s safety-management process. For a safety-critical controller, simply confirming that the CPU powers up is not sufficient; the complete safety function must be validated.
Product Warranty — F35
Warranty terms depend on the supplier and product condition. For new, refurbished, or repaired inventory, confirm warranty duration, test records, firmware status, serial-number traceability, and return conditions. A documented functional test is strongly recommended for safety-system spares.
The HIMA F35 is best maintained as a configuration-controlled safety asset rather than a generic PLC spare. Matching the hardware, firmware, application program, and certified safety configuration is essential before returning the controller to operational service.
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