Coded safety switch

PSENcode

A guard is only as good as the difficulty of defeating it. PSENcode uses RFID coding so that a spare actuator will not fool the switch — and in the unique, fully coded version, only one single actuator is ever accepted, on the key lock principle.

RFID coded sensingEN 60947-5-3 guard monitoringIntegrated evaluationSeries connection to PL eIP67
PL eUp to, in series connection
RFIDCoding technology
IP67Protection type
Pilz PSENcode coded non-contact safety switches in narrow, compact and large designs
PSENcodeNarrow, compact and large designs shown
PL eEN ISO 13849-1, in series
3 designsNarrow, compact, large
Key lockUnique fully coded version
SDDSafety device diagnostics
Why it is specified

Coded sensing changes

The value is manipulation protection and openness — the switch resists defeat, and its standard interfaces let it drop into an existing installation.

Highest manipulation protection

The manufacturer states the highest level of manipulation protection through RFID technology, in narrow, compact or large designs.

Key lock principle

In the unique, fully coded version there is only one single actuator that the sensor accepts.

Open to other manufacturers

Integrated evaluation and standard interfaces mean PSENcode fits into an existing environment and can be used to upgrade a plant.

Diagnostics without callouts

Combined with safety device diagnostics, comprehensive diagnostic data helps avoid service callouts and reduce downtimes.

Applications

PSENcode is used

The manufacturer lists both safety gate monitoring and general position monitoring for this family.

Pilz PSENcode coded safety switch installed on a swing door guard
Guard monitoring

Swing and sliding gates

Guard position monitoring where the incentive to bypass the switch is real and coding is the appropriate answer.

ConfirmConfirm coding level and guard geometry.
Diagram of Pilz PSENcode high flexibility with multiple actuation directions
Mounting freedom

Multiple actuation directions

High flexibility in actuation direction lets the sensor suit the door approach rather than forcing the door to suit the sensor.

ConfirmConfirm the approach direction and alignment.
Pilz PSENcode coded safety switch range
Series wiring

Several guards on one input

Series connection with further sensors keeps the wiring and the controller inputs economical across a multi-guard machine.

ConfirmConfirm the number of devices in series.
Technical data

Selection parameters that matter

These are the values that decide the variant. Full specifications and dimensions belong to the selected order number in current manufacturer documentation.

Note the standard: PSENcode monitors guard position in accordance with EN 60947-5-3, which applies to non-contact devices.
FunctionMonitoring the position of guards in accordance with EN 60947-5-3, and general position monitoring
Coding technologyRFID
Coding versionsCoded, fully coded, and unique fully coded
Unique fully codedOnly one single actuator is accepted by the sensor — the key lock principle
DesignsNarrow, compact and large
EvaluationIntegrated evaluation with standard interfaces, open to products from other manufacturers
Series connectionWith further sensors such as PSENcode, PSENslock and PSENsgate, up to PL e of EN ISO 13849-1
DiagnosticsCan be combined with safety device diagnostics for comprehensive diagnostic data
Protection typeIP67
Series connection affects fault detection. The number of devices in series and the achievable performance level must be assessed together for the arrangement, not assumed from the single-device rating.
Models

Design and coding decisions

Two decisions define the order: the physical design that fits the guard, and the coding level the manipulation risk requires.

Design

Narrow, compact or large

Selected from the mounting face available on the guard and the frame.

Options
3 designs
Standard
EN 60947-5-3
Coding

Three coding levels

Coded, fully coded and unique fully coded, chosen from the manipulation risk under EN ISO 14119.

Levels
3
Highest
Unique fully coded
Series

Multi-device arrangements

Series connection with PSENcode, PSENslock and PSENsgate is supported up to PL e.

Partners
PSENslock, PSENsgate
Level
Up to PL e
Position use

General position monitoring

A version of the coded safety switch is offered for position monitoring rather than guard monitoring.

Use
Position
Confirm
Variant
Accessories

Actuators, mounting and diagnostics

The actuator and its mounting are as much a part of the specification as the sensor itself.

Actuator

Coded actuator

The actuator is matched to the coding level; in the unique fully coded version it is the only actuator the sensor will accept.

ConfirmConfirm coding level and spare-actuator policy.
Mounting

Mounting aids and brackets

Mounting accessories set the alignment between sensor and actuator and hold it over the life of the guard.

ConfirmConfirm mounting face and alignment tolerance.
Diagnostics

Safety device diagnostics

Provides device-level diagnostic data from a series arrangement rather than a single combined signal.

ConfirmConfirm the diagnostic route to the controller.
Before quotation

Application review

PSENcode is chosen when coding matters. If the guard has no realistic manipulation incentive, PSENmag may be the more economical answer.

Manipulation risk

  • Whether the guard is realistically likely to be bypassed
  • Why access is wanted mid-cycle, and how often
  • Required coding level under EN ISO 14119
  • Whether spare actuators can be controlled

Guard and mounting

  • Hinged, sliding, lift-off or flap guard
  • Approach direction and available mounting face
  • Alignment tolerance and any door sag
  • Which design — narrow, compact or large — fits

Electrical

  • Number of devices and whether series connection is planned
  • Existing safety controller and spare safe inputs
  • Whether safety device diagnostics will be used
  • Cable length and connection method

Environment and commercial

  • Cleaning regime and whether IP67 is sufficient
  • Temperature, vibration and contamination
  • Quantity per machine and total quantity
  • Whether this replaces an existing switch, and its part number
Related technologies

PSENcode sits in the architecture

The switch reports guard position with high manipulation resistance. If hazardous movement continues after the stop command, position monitoring alone is not enough and a locking device is required.

PSENmag where coding is not required
PSENmech for positive mechanical action
PSENmlock where run-down demands locking
PSENslock 2 for process guarding
PNOZ relay or PNOZmulti 2 for evaluation
Safety device diagnostics for series arrangements
Diagram of Pilz PSENcode actuation directions