
Lines and multiple stations
Where safety functions span several stations and I/O sits away from the panel, distributed control avoids long safe wiring runs.
PSS 4000 is not a larger safety controller — it is an automation system in which safety and standard control are engineered together. Control functions are distributed across equal controllers on the Multi-Master principle, synchronised over real-time Ethernet, and programmed from one software platform.
The difference from a small controller is architectural: control functions are distributed across equal nodes rather than centralised in one device.
The manufacturer positions PSS 4000 as merging safety and automation rather than adding safety to a separate PLC.
Several equal controllers are linked, and SafetyNET p exchanges data and states between them and synchronises them.
All network subscribers are programmed and configured centrally via the PAS4000 software platform.
High flexibility due to modular system design, and the system can be integrated into existing automation structures.
The system suits plant where safety functions and standard control span several stations rather than sitting on one machine.

Where safety functions span several stations and I/O sits away from the panel, distributed control avoids long safe wiring runs.

All network subscribers are programmed and configured centrally, so the project stays coherent as the plant grows.

PASvisu provides web-based visualisation so the state of the project can be monitored however large it is.
PSS 4000 is specified as a system. These are its defining architectural characteristics rather than a device data sheet.
| Concept | One system for the entire automation technology, merging safety and automation |
|---|---|
| Control distribution | Control functions distributed in accordance with the Multi-Master principle |
| Controller linking | Several equal controllers linked via real-time Ethernet SafetyNET p |
| Synchronisation | SafetyNET p exchanges data and states between the controllers and synchronises them |
| Safe communication | Safe communication via real-time Ethernet SafetyNET p |
| Engineering software | Simple programming and configuration using PAS4000 software |
| Visualisation | Web-based visualisation using PASvisu software |
| System design | High flexibility due to modular system design |
| Integration | Can be integrated into existing automation structures |
The system comprises control systems, I/O systems, the safe network and the software platform. Confirm the current module range against manufacturer documentation.
The controller elements of the system, applied as equal nodes under the Multi-Master principle.
I/O placed where the field devices are, rather than pulled back to a central panel.
Real-time Ethernet carrying safe communication, data exchange and synchronisation between controllers.
PAS4000 programs and configures all network subscribers centrally; PASvisu provides web-based visualisation.
On a system of this kind the software and the network are not accessories — they are how the architecture is defined.
Used to program and configure all network subscribers centrally, keeping one project across the plant.
Web-based visualisation of the control project, so the state of the plant is visible however large the project is.
The real-time Ethernet carrying safe communication between controllers, and synchronising their states.
The first decision is whether the application genuinely needs a distributed automation system rather than a configurable small controller.
This is the plant-scale option. Where the requirement is one machine with several interacting safety functions, PNOZmulti 2 usually remains the proportionate answer.