• Siemens 6AG1326-2BF41-2AY0 SIPLUS S7-300 Fail-Safe Digital Output Module
  • Siemens 6AG1326-2BF41-2AY0 SIPLUS S7-300 Fail-Safe Digital Output Module
  • Siemens 6AG1326-2BF41-2AY0 SIPLUS S7-300 Fail-Safe Digital Output Module
  • Siemens 6AG1326-2BF41-2AY0 SIPLUS S7-300 Fail-Safe Digital Output Module
Product Overview The Siemens 6AG1326-2BF41-2AY0 SIPLUS S7-300 Fail-Safe Digital Output Module is used in safety-oriented S7-300 control architectures to transfer digital commands from the control system……
Siemens 6AG1326-2BF41-2AY0 SIPLUS S7-300 Fail-Safe Digital Output Module
  • Siemens
  • 6AG1326-2BF41-2AY0
  • Digital Output Module
  • Germany
  • 80 × 125 × 120 mm
  • 0.486 kg
  • Xiamen, China
  • New & In Stock
  • T/T, PayPal, Western Union
  • 1 Year
  • 1-3 Working Days
  • DHL, UPS, TNT, FedEx and EMS.
  • 24-Hour Service
  • COO
  • 14

Our advantage

Siemens 6AG1326-2BF41-2AY0 SIPLUS S7-300 Fail-Safe Digital Output Module

Global Logistics

We have a 10-year logistics and express cooperation agreement, so our products can be shipped to any place in the world.

Siemens 6AG1326-2BF41-2AY0 SIPLUS S7-300 Fail-Safe Digital Output Module

Brand new and original

Our products are imported in bulk from the place of origin. Because of the cooperative relationship, our products are all original and 100% new.

Siemens 6AG1326-2BF41-2AY0 SIPLUS S7-300 Fail-Safe Digital Output Module

24-hour service

We provide 7*24 hours service to our customers. We will be there whenever you need us.

Siemens 6AG1326-2BF41-2AY0 SIPLUS S7-300 Fail-Safe Digital Output Module

Price advantage

All our products are priced very favorably because we have our own warehouse and supply.


Company Information
E-mail [email protected]
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Product Overview

The Siemens 6AG1326-2BF41-2AY0 SIPLUS S7-300 Fail-Safe Digital Output Module is used in safety-oriented S7-300 control architectures to transfer digital commands from the control system to field devices. Typical loads include contactors, solenoid valves, shutdown devices, and other actuators that need to respond to safety logic.

In a fail-safe automation system, output signals are more than simple switching commands. The control architecture must be able to place connected equipment into an appropriate state when a hazardous condition or defined fault occurs. This module forms the output-side interface for that process, linking the S7-300 safety controller with the equipment performing the physical safety action.

The SIPLUS version is intended for industrial installations where environmental conditions can be more demanding than those of conventional automation applications. It can therefore be considered when maintaining or expanding existing SIPLUS S7-300 safety systems.


Technical Specifications

Parameter Specification
Manufacturer Siemens
Model 6AG1326-2BF41-2AY0
Product Family SIPLUS S7-300
Product Type Fail-Safe Digital Output Module
I/O Type Digital Output
Application Safety-Related Automation
System Platform S7-300
Dimensions 80 × 125 × 120 mm
Weight 0.486 kg

Main Features

  • SIPLUS S7-300 system integration
  • Fail-safe digital output functionality
  • Suitable for safety-related actuator control
  • Interfaces PLC safety logic with field equipment
  • Supports discrete shutdown and protective functions
  • Suitable for machinery and process automation
  • Designed for integration into S7-300 control cabinets
  • Appropriate for demanding industrial environments
  • Can be used in established safety I/O architectures
  • Supports maintenance and replacement of existing systems

Working Principle

The module sits between the fail-safe control logic and the field actuators.

Safety Logic → S7-300 Controller → Fail-Safe Output Module → Actuator → Machine or Process

During normal operation, the control system determines the required output state based on field signals and programmed logic. The module then transfers the corresponding digital command to the connected actuator.

If the safety system detects a defined hazardous condition, the configured safety logic can change the output state so that the associated actuator moves the equipment toward its predetermined safe condition.

This makes the module particularly relevant to functions such as equipment shutdown, protective interlocking, and controlled de-energization.


Role in the Safety I/O Architecture

System Element Function
Fail-Safe CPU Executes safety-related logic
Safety Input Module Receives signals from safety devices
6AG1326-2BF41-2AY0 Provides fail-safe digital outputs
Safety Relay / Contactor Performs electrical switching
Solenoid Valve Executes pneumatic or hydraulic action
Emergency Stop Device Initiates safety response
Engineering System Configures hardware and safety logic

The module is therefore located on the actuation side of the safety system, rather than on the sensor acquisition side.


Industrial Applications

Industry Typical Application
Factory Automation Machine shutdown functions
Automotive Manufacturing Production equipment protection
Packaging Safety actuator control
Material Handling Conveyor protection
Machine Building Interlock and shutdown circuits
Process Industry Discrete safety functions
Industrial Equipment Fail-safe actuator switching

System Integration

When integrating this module into an existing S7-300 installation, attention should be given to the complete safety architecture rather than the output module alone.

Important points include:

  • Verify the existing S7-300 hardware configuration.
  • Confirm the appropriate fail-safe CPU and I/O arrangement.
  • Check the electrical requirements of connected actuators.
  • Verify field wiring and terminal assignments.
  • Configure the module correctly within the engineering environment.
  • Confirm the intended safe state for each connected output.
  • Perform functional testing after commissioning or replacement.

For retrofit projects, the existing module configuration and safety program should be reviewed before replacing hardware.


Compatible System Components

Component Function
SIPLUS S7-300 Fail-Safe CPU Safety program execution
Fail-Safe Digital Input Module Acquisition of safety signals
Standard S7-300 I/O General control functions
Safety Sensors Detect machine or process conditions
Contactors Disconnect electrical loads
Solenoid Valves Control pneumatic/hydraulic equipment
Distributed I/O Remote field-level interfacing

Recommended Related Models

Model Product Type Application
Siemens 6AG1326-2BF41-2AY0 SIPLUS S7-300 Fail-Safe Digital Output Module Safety output control
Siemens 6AG1326-2BF41-2AB0 SIPLUS S7-300 Fail-Safe Digital Output Module Fail-safe actuator control
Siemens 6AG1326-2BF10-2AB0 SIPLUS S7-300 Fail-Safe Digital Output Module Safety digital output
Siemens 6AG1326-2BF10-2AY0 SIPLUS S7-300 Fail-Safe Digital Output Module Fail-safe output applications
Siemens 6AG1326-1BK02-2AY0 SIPLUS S7-300 Fail-Safe Digital Input Module Safety signal acquisition

Key Advantages

  • Provides a dedicated fail-safe output interface
  • Connects safety logic with physical actuators
  • Suitable for machine protection and shutdown functions
  • Integrates into S7-300-based safety architectures
  • Supports safety-related digital switching
  • Suitable for demanding industrial environments
  • Useful for S7-300 system maintenance and replacement
  • Supports structured separation between safety sensing and actuation

Technical FAQs

How does the 6AG1326-2BF41-2AY0 fit into an S7-300 safety system?

It operates on the output side of the safety architecture, receiving commands from the control system and passing the required digital states to connected safety-related actuators.

What happens to an output when the safety function is triggered?

The actual response depends on the configured safety logic and connected equipment. The system can command the affected output toward its defined safe state, such as removing an enable signal from a contactor or changing the state of a valve.

Is this module suitable for directly controlling high-power equipment?

The module should not be treated as a universal high-power switching device. The electrical characteristics of the output and the connected load must be evaluated, and an appropriate intermediate switching device may be required.

What should be investigated if a safety output does not switch as expected?

Check the safety program status, input conditions, module diagnostics, output wiring, actuator power supply, and the condition of the connected load. A fault can originate anywhere along the signal path rather than necessarily being caused by the output module itself.



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