A Functional Safety Communication Standard Built for CAN Networks
CANopen Safety is a functional safety protocol designed to transmit safety-relevant data over CAN-based networks. It is widely used in industrial and mobile equipment where robust communication, deterministic performance, and fault detection are essential.
At Encoder Products Company, we’re expanding our safety roadmap to include CANopen Safety options—because functional safety depends on trustworthy motion feedback and reliable safety communication.
What Is CANopen Safety?
CANopen Safety (defined in EN 50325-5) is a safety extension to CANopen that enables safety-related communication between devices (such as sensors, controllers, and drives) on a CAN network.
It adds safety mechanisms that help a system:
- Detect errors and data corruption
- Identify missing, delayed, or repeated messages
- Maintain safe behavior during faults or communication issues
In short: CANopen Safety helps safety systems trust the data they receive—and react appropriately when they can’t.
Why CANopen Safety Matters in Functional Safety
Functional safety is about reducing risk when things go wrong: component failures, wiring issues, noisy environments, unexpected behavior, or communication faults.
CANopen Safety supports functional safety designs by helping ensure:
- The right device is communicating
- The message is complete and unaltered
- The message arrives within the expected timing
- Faults are detected and handled predictably
This is especially important for safety functions that rely on accurate motion data, such as safe speed monitoring or safe position monitoring.
CANopen vs CANopen Safety

Standard CANopen is used for control and automation communication. It is not inherently safety-rated.

CANopen Safety adds protocol-level safeguards that make safety communication possible, such as:
- Additional message integrity checks
- Sequence monitoring (to detect repeats/out-of-order messages)
- Timing supervision (to detect delays/missing data)
- Independent handling of safety-relevant communication
This separation helps support safety architectures where safety data must be validated and monitored continuously.
Where CANopen Safety Is Commonly Used
CANopen Safety is a strong fit anywhere CAN networks are already established and reliability is critical, including:
- Mobile equipment (construction, agriculture, utility vehicles)
- Material handling (conveyance, lifting, automated transport)
- Industrial automation (packaging, processing, assembly)
- Harsh environments with vibration, dust, temperature swings, and electrical noise
CANopen Safety and Motion Feedback
Motion feedback devices—such as encoders—are often key inputs to safety systems. They can support safety-related functions by providing motion data used to evaluate system state (for example: speed, direction, position, or movement presence).
When motion feedback is integrated into a CANopen Safety architecture, it supports a system approach where:
- Motion data can be monitored as safety-relevant information
- Communication faults can be detected faster
- Safety controllers can respond predictably to invalid or missing data
Note: Supported safety functions, architecture options, and certifications depend on the final device design and system implementation.
Planning for CANopen Safety
If CANopen Safety is on your roadmap, early planning helps avoid redesign later. Helpful questions to evaluate now:
- What safety functions will the system require (safe speed, safe position, safe stop, etc.)?
- What safety controller or safety PLC will be used?
- What is the target safety level and compliance requirement?
- What environment will devices face (shock, vibration, moisture, washdown, EMI)?
- What diagnostics and fault responses are required?
CANopen Safety FAQ
What standard defines CANopen Safety?
CANopen Safety is defined in EN 50325-5, which specifies safety-related communication on CAN-based networks.
Is CANopen Safety the same as “safety over CAN”?
It’s a formal, standardized approach to safety-related communication, using CANopen as the foundation and adding safeguards for message integrity and fault detection.
Does CANopen Safety replace standard CANopen Communication?
No. CANopen Safety is typically used for safety-relevant communication, while standard CANopen may still handle non-safety control data, depending on the system design.
Is CANopen Safety only for industrial machines?
No—CANopen Safety is also common in mobile and off-highway equipment because CAN networks are widely used and perform well in harsh conditions.
When should I start planning CANopen safety into a design?
As early as possible. Functional safety architecture affects device selection, network strategy, diagnostics, validation, and documentation.
Are CANopen Safety Encoders available from BEPC today?
Yes! You can find our CANopen Safety encoder product here.



