• Siemens 6AG1134-4MB02-2AB0 Analog Input Module
  • Siemens 6AG1134-4MB02-2AB0 Analog Input Module
  • Siemens 6AG1134-4MB02-2AB0 Analog Input Module
  • Siemens 6AG1134-4MB02-2AB0 Analog Input Module
Product Overview The Siemens 6AG1134-4MB02-2AB0 is a SIPLUS ET 200S Analog Input Module designed for distributed industrial automation and process-control applications. It provides an interface between ……
Siemens 6AG1134-4MB02-2AB0 Analog Input Module
  • Siemens
  • 6AG1134-4MB02-2AB0
  • Analog Input ModuleAnalog Input Module
  • Germany
  • 15 × 81 × 52 mm
  • 0.045 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
  • 6

Our advantage

Siemens 6AG1134-4MB02-2AB0 Analog Input 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 6AG1134-4MB02-2AB0 Analog Input 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 6AG1134-4MB02-2AB0 Analog Input Module

24-hour service

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

Siemens 6AG1134-4MB02-2AB0 Analog Input Module

Price advantage

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


Company Information
E-mail [email protected]
Mobile +8615980777398
Whatsapp +8615980777398
WeChat 15980777398

Product Overview

The Siemens 6AG1134-4MB02-2AB0 is a SIPLUS ET 200S Analog Input Module designed for distributed industrial automation and process-control applications. It provides an interface between field-level analog instrumentation and a Siemens ET 200S control system, allowing continuously variable process signals to be acquired and processed by the PLC.

The module is particularly useful when sensors or transmitters provide analog measurement signals representing variables such as pressure, temperature, flow, level, position, or other process conditions. Once acquired, these signals can be processed by the PLC program, displayed through an HMI or SCADA system, or used as feedback for automatic control functions.

The specified physical dimensions of the 6AG1134-4MB02-2AB0 are 15 × 81 × 52 mm, with a specified weight of 0.045 kg. Its compact form factor makes it suitable for distributed I/O installations where cabinet space and installation density are important considerations.

As a SIPLUS product, the module is intended for demanding industrial environments and incorporates enhanced environmental protection compared with standard automation modules. Correct application still requires verification of the complete electrical, mechanical, environmental, and software configuration.


Product Identification

Parameter Specification
Manufacturer Siemens
Product Family SIPLUS ET 200S
Model 6AG1134-4MB02-2AB0
Product Type Analog Input Module
Application Distributed Industrial I/O
System SIMATIC ET 200S
Module Width 15 mm
Dimensions 15 × 81 × 52 mm
Weight 0.045 kg
Installation ET 200S Distributed I/O Station
Main Function Analog Signal Acquisition
Environmental Design SIPLUS Industrial Design
Signal Processing Analog-to-Digital Conversion

Technical Specifications

Technical Item Specification
Manufacturer Siemens
Model 6AG1134-4MB02-2AB0
Series SIPLUS ET 200S
Product Category Analog Input Module
Number of Channels Application-dependent configuration
Signal Type Analog
Dimensions 15 × 81 × 52 mm
Weight 0.045 kg
Installation System ET 200S
Mounting Distributed I/O Station
Application PLC / Process Automation
Environmental Design SIPLUS
Configuration Hardware and software dependent
Maintenance Wiring, signal, diagnostic and configuration inspection

Exact electrical input characteristics, channel configuration, signal ranges, resolution, diagnostic functions, and compatible terminal modules should be verified against the engineering documentation for the specific 6AG1134-4MB02-2AB0 installation.


What Is the Siemens 6AG1134-4MB02-2AB0?

The 6AG1134-4MB02-2AB0 is an analog input module used to connect field instrumentation to a Siemens distributed I/O architecture.

A conventional digital input generally provides information such as:

ON / OFF

An analog input instead allows the PLC to monitor a continuously varying value.

For example:

Sensor

Transmitter

Analog Signal

6AG1134-4MB02-2AB0

ET 200S Station

PLC CPU

Control Logic

HMI / SCADA

This arrangement allows the automation system to respond to real-time process measurements.


Role in Industrial Automation

Analog inputs are fundamental to many industrial control systems because most physical process variables are continuously variable.

Examples include:

  • Temperature
  • Pressure
  • Flow
  • Liquid level
  • Position
  • Speed
  • Force
  • Machine feedback
  • Process concentration
  • Equipment condition

The analog input module provides the electrical interface between these measurements and the digital control system.


How the Analog Input System Works

A typical analog measurement process consists of several stages.

1. Physical Measurement

A sensor detects a physical variable.

For example, a pressure sensor detects pressure inside a process vessel.

2. Signal Generation

The sensor or transmitter produces an electrical analog signal proportional to the measured variable.

3. Signal Acquisition

The analog input module receives the electrical signal.

4. Analog-to-Digital Conversion

The module converts the analog measurement into digital data suitable for PLC processing.

5. PLC Processing

The CPU processes the measurement according to the application program.

6. Engineering Scaling

The PLC converts the raw measurement into a meaningful engineering value.

7. Control or Monitoring

The resulting value can be used by:

  • PID control
  • Alarm logic
  • HMI displays
  • SCADA systems
  • Data logging
  • Production monitoring

Installation Guide

1. Confirm the Exact Product

Before installation, verify the complete ordering number:

Siemens 6AG1134-4MB02-2AB0

Do not rely solely on the external appearance of the module. Similar ET 200S modules can have comparable dimensions while supporting different electrical functions.


2. Verify System Compatibility

Confirm that the module is intended for the planned ET 200S station.

Review:

  • Interface module
  • Terminal module
  • Module position
  • PLC hardware configuration
  • Field-device type
  • Signal characteristics
  • Power arrangement
  • Environmental conditions

3. Inspect the Module

Before installation, visually inspect the module.

Look for:

  • Damaged housing
  • Cracks
  • Bent contacts
  • Corrosion
  • Contamination
  • Abnormal discoloration
  • Mechanical deformation

Do not install a module with obvious physical damage.


4. Check the Installation Space

The specified module dimensions are:

15 × 81 × 52 mm

Allow sufficient space for:

  • Adjacent modules
  • Wiring
  • Terminal access
  • Maintenance
  • Ventilation
  • Inspection

The compact 15 mm width allows high-density installation, but wiring clearance should not be overlooked.


5. Identify the Field Signal

Before connecting the field device, determine the signal type being supplied.

Confirm:

  • Voltage or current signal
  • Signal range
  • Polarity
  • Reference connection
  • Transmitter power requirements
  • Shielding requirements

The field signal must match the actual electrical characteristics supported by the configured module.


6. Isolate the System

Before installing or removing the module:

  1. Stop the process.
  2. Place the equipment into a safe state.
  3. Shut down the relevant control system.
  4. Isolate electrical power.
  5. Apply appropriate lockout/tagout procedures.
  6. Verify that hazardous voltage has been removed.

7. Install the Module

Install the module into the designated ET 200S position.

Verify:

  • Correct orientation
  • Correct station position
  • Proper engagement
  • Secure installation
  • No mechanical interference

Never force the module into the station.


8. Check the Terminal Module

The analog input module works as part of the ET 200S distributed I/O architecture.

Before connecting field wiring, verify that the associated terminal module is the correct type for the application.

Check:

  • Terminal compatibility
  • Terminal condition
  • Wiring arrangement
  • Channel identification

9. Connect Field Wiring

Connect the analog field signals according to the approved electrical drawing.

Pay attention to:

  • Channel assignment
  • Polarity
  • Signal reference
  • Cable shielding
  • Grounding
  • Terminal identification

Record the wiring before commissioning.


10. Separate Signal and Power Wiring

Analog signal cables should be routed away from high-energy electrical conductors wherever possible.

Avoid unnecessary parallel routing with:

  • Motor cables
  • VFD output cables
  • Contactor wiring
  • High-current power cables
  • Switching circuits

This can reduce electromagnetic interference.


11. Verify Shielding

Follow the plant’s approved instrumentation grounding and shielding strategy.

Incorrect shield connections can result in:

  • Noise
  • Measurement offset
  • Unstable values
  • Ground loops

Shielding should be implemented consistently throughout the signal path.


Configuration and Commissioning

Step 1 – Configure the Hardware

Add the appropriate module to the ET 200S hardware configuration.

Verify:

  • Module identification
  • Station position
  • Interface configuration
  • Terminal configuration

Step 2 – Configure Analog Channels

Configure each channel according to the connected instrumentation.

The module configuration must correspond to the actual field signal.

A mismatch can result in:

  • Incorrect readings
  • Diagnostic messages
  • Saturated values
  • Unexpected process behavior

Step 3 – Check PLC Addressing

Verify the process-image addresses assigned to the module.

Incorrect addressing can make a correctly installed module appear to produce no usable data.


Step 4 – Check Diagnostic Information

After system startup, review the available diagnostics.

Check for:

  • Module faults
  • Station faults
  • Channel faults
  • Configuration errors
  • Communication errors

Step 5 – Verify Raw Input Data

Observe the raw analog input value in the PLC.

Where practical, apply a known input signal and compare the PLC value against the expected result.


Step 6 – Verify Scaling

Convert the acquired raw data into the required engineering unit.

Typical units include:

  • °C
  • bar
  • psi
  • %
  • mm
  • rpm
  • m³/h

Verify that the scaling corresponds to the actual transmitter range.


Step 7 – Test Process Response

Change the input under controlled conditions.

Verify that:

  1. The field signal changes.
  2. The module detects the change.
  3. The PLC receives the corresponding data.
  4. The engineering value changes correctly.
  5. The HMI displays the correct value.
  6. Associated alarms and control functions respond correctly.

Troubleshooting Guide

Fault 1 – Module Is Not Recognized

Possible Causes

  • Incorrect hardware configuration
  • Incorrect module position
  • Poor module seating
  • Terminal-module problem
  • ET 200S communication issue
  • Power problem

Recommended Checks

Start with:

Hardware Configuration → Station → Interface Module → Terminal Module → Analog Input Module

Compare the physical installation with the software configuration.


Fault 2 – Analog Input Reads Zero

Possible causes include:

  • Open field circuit
  • Incorrect wiring
  • Missing transmitter power
  • Incorrect signal configuration
  • Failed sensor
  • Loose terminal
  • Incorrect channel assignment

Measure the actual field signal before replacing the module.


Fault 3 – Reading Is Too High

Check:

  • Input configuration
  • Transmitter range
  • Signal polarity
  • Wiring
  • Scaling
  • Grounding
  • Actual field signal

If the raw input is already high, investigate the field signal.

If the raw input is correct but the engineering value is high, investigate scaling.


Fault 4 – Reading Is Too Low

Possible causes include:

  • Weak field signal
  • Incorrect transmitter range
  • Wiring resistance
  • Poor connection
  • Incorrect scaling
  • Signal reference problem

Use an independent measurement where possible.


Fault 5 – Analog Value Fluctuates

Potential causes include:

  • Electromagnetic interference
  • Poor cable routing
  • Incorrect shielding
  • Ground loop
  • Loose terminal
  • Unstable transmitter
  • Damaged cable

First determine whether the physical process is actually fluctuating.


Fault 6 – Multiple Channels Have the Same Problem

When several inputs exhibit the same behavior, investigate common system elements.

Check:

  • Module configuration
  • Station power
  • Terminal module
  • Grounding
  • Shielding
  • Common signal reference
  • PLC configuration

Multiple simultaneous channel failures often indicate a common installation or configuration issue.


Fault 7 – One Channel Has an Abnormal Reading

If only one channel is affected, investigate:

  • Connected sensor
  • Transmitter
  • Signal cable
  • Terminal
  • Channel configuration
  • Individual channel status

Compare the affected channel against a known-good input where safe and practical.


Fault 8 – HMI Value Is Incorrect

If the raw PLC input is correct but the HMI display is wrong, check:

  • Scaling
  • PLC logic
  • HMI tag
  • Engineering units
  • Data type
  • Decimal formatting

The analog input module may be functioning correctly.


Fault 9 – Signal Becomes Unstable After Equipment Starts

If the analog signal becomes noisy when motors, drives, or other equipment starts, investigate electromagnetic interference.

Check:

  • Cable separation
  • Shielding
  • Grounding
  • VFD cable routing
  • Cabinet wiring

Fault 10 – Measurement Drifts

Potential causes include:

  • Sensor aging
  • Transmitter drift
  • Temperature changes
  • Calibration problems
  • Environmental effects
  • Wiring degradation

Compare the measurement with a calibrated reference instrument.


Fault 11 – Intermittent Signal Loss

Possible causes include:

  • Loose terminal
  • Damaged cable
  • Connector problem
  • Vibration
  • Poor shielding
  • Intermittent transmitter power

Inspect the physical signal path while monitoring the PLC input.


Fault Isolation Strategy

A structured diagnostic path is:

Process

Sensor

Transmitter

Field Wiring

Terminal Module

6AG1134-4MB02-2AB0

ET 200S Station

PLC CPU

Scaling

HMI / SCADA

This prevents unnecessary replacement of the analog module when the actual problem is located elsewhere.


Preventive Maintenance

Module Inspection

Periodically inspect the module for:

  • Mechanical damage
  • Corrosion
  • Contamination
  • Abnormal heating
  • Contact problems

Terminal Maintenance

Check:

  • Terminal tightness
  • Cable condition
  • Correct channel assignment
  • Shield connections
  • Mechanical stress

Cable Maintenance

Inspect analog cables for:

  • Abrasion
  • Cuts
  • Crushing
  • Excessive bending
  • Damaged shielding
  • Improper routing

Environmental Maintenance

Because the module belongs to the SIPLUS product family, environmental conditions remain an important consideration.

Review:

  • Temperature
  • Humidity
  • Condensation
  • Dust
  • Chemical exposure
  • Vibration

Enhanced module construction does not eliminate the need for suitable cabinet design and environmental management.


Configuration Maintenance

Maintain an updated record of:

  • PLC program
  • ET 200S hardware configuration
  • Module configuration
  • Input parameters
  • Scaling
  • Alarm limits

This is especially important before replacing an installed module.


Preventive Maintenance Checklist

Inspection Item Recommended Action
Module Housing Inspect for physical damage
Module Contacts Check condition
Terminal Module Inspect connections
Analog Wiring Check continuity and condition
Shielding Verify approved grounding
Power Check system supply
Configuration Verify module settings
Scaling Confirm engineering values
Diagnostics Review recurring faults
PLC Backup Maintain current project

Industrial Applications

Process Temperature Monitoring

The module can be incorporated into temperature-monitoring systems where compatible analog instrumentation provides continuous temperature data.


Pressure Measurement

Pressure transmitters can provide analog feedback for:

  • Pump systems
  • Compressors
  • Hydraulic equipment
  • Process vessels
  • Industrial machinery

Flow Monitoring

Analog flow signals can be used for:

  • Production monitoring
  • Process control
  • Flow alarms
  • Pump management

Level Measurement

Analog level instrumentation can support:

  • Tank monitoring
  • Vessel control
  • Pump protection
  • High-level alarms
  • Low-level alarms

Machine Position Feedback

Compatible analog position sensors can provide continuous feedback for machine-control applications.


Industrial Equipment Monitoring

Analog measurements can also be used for monitoring:

  • Machine condition
  • Process performance
  • Equipment operating parameters
  • Production variables

Replacement Procedure

1. Identify the Existing Module

Confirm the complete part number:

6AG1134-4MB02-2AB0

Record the module’s:

  • Station location
  • Position
  • Channel assignments
  • Signal configuration
  • Connected instruments

2. Back Up the Configuration

Save the current:

  • PLC program
  • Hardware configuration
  • ET 200S station configuration
  • Analog parameters
  • Scaling
  • Alarm settings

3. Document Field Wiring

Record each channel and its associated field device.

Document:

  • Terminal assignment
  • Signal polarity
  • Common/reference
  • Shield connection

4. Put the Process in a Safe State

Determine how loss of the analog inputs will affect the machine or process.

Place the equipment into a safe condition.


5. Isolate Power

Disconnect the relevant electrical power and verify safe conditions.


6. Remove the Existing Module

Remove the module using the approved ET 200S maintenance procedure.

Avoid disturbing adjacent wiring unnecessarily.


7. Inspect the Terminal Module

Before installing the replacement, inspect:

  • Terminal contacts
  • Wiring
  • Shielding
  • Mechanical condition
  • Adjacent modules

8. Install the Replacement Module

Install the replacement Siemens 6AG1134-4MB02-2AB0 in the correct station position.


9. Reconnect Field Wiring

Reconnect the analog channels according to the documented wiring.

Verify every connection before energizing the station.


10. Restore Configuration

Confirm that the software configuration corresponds to the installed module and station position.


11. Restore Power

Restart the station according to the approved commissioning sequence.


12. Check Diagnostics

Verify:

  • Station status
  • Module recognition
  • Diagnostic status
  • Channel status
  • PLC communication

13. Test Analog Inputs

Apply normal process conditions or controlled test signals.

Verify the resulting PLC input values.


14. Verify Scaling and HMI

Confirm:

  • Correct engineering units
  • Correct scaling
  • Correct HMI values
  • Alarm operation
  • Control logic response

Technical Specifications Summary

Parameter Specification
Manufacturer Siemens
Model 6AG1134-4MB02-2AB0
Product Family SIPLUS ET 200S
Product Type Analog Input Module
Application Distributed I/O
Dimensions 15 × 81 × 52 mm
Weight 0.045 kg
Installation ET 200S System
Main Function Analog Signal Acquisition
Environmental Design SIPLUS
Configuration Hardware / Software Dependent
System Integration SIMATIC Distributed Automation

Key Advantages

  • Siemens SIPLUS industrial automation design
  • Compact 15 × 81 × 52 mm form factor
  • Low specified weight of 0.045 kg
  • Designed for ET 200S distributed I/O architectures
  • Provides an interface between analog field instrumentation and PLC control
  • Suitable for process monitoring and machine automation
  • Appropriate for high-density distributed control installations
  • SIPLUS design provides enhanced environmental suitability
  • Supports structured PLC-based diagnostics and maintenance

Technical FAQs

What is the Siemens 6AG1134-4MB02-2AB0?

The 6AG1134-4MB02-2AB0 is a Siemens SIPLUS ET 200S analog input module used to acquire analog signals from compatible industrial field devices.

What are the dimensions of the module?

The specified dimensions are 15 × 81 × 52 mm.

How much does the module weigh?

The specified weight is 0.045 kg, or approximately 45 grams.

What is the purpose of an analog input module?

It receives continuously varying electrical signals from field instruments and converts them into data that can be processed by the PLC.

What applications can use this type of module?

Typical applications include temperature, pressure, flow, level, position, and other continuous process measurements, provided the field signal is electrically compatible.

Why is correct scaling important?

Scaling converts the acquired PLC value into a meaningful engineering value. Incorrect scaling can make a correctly acquired signal appear incorrect to operators.

Why does an analog signal fluctuate?

Common causes include electrical interference, incorrect shielding, grounding problems, loose connections, unstable transmitters, and damaged cables.

What should I check if the module is not recognized?

Check the hardware configuration, station position, terminal-module arrangement, module seating, station power, and communication status.

What should I check if only one input is incorrect?

Start with the individual sensor, transmitter, wiring, terminal, and channel configuration before replacing the module.

What if several analog channels fail simultaneously?

Investigate common elements such as station power, terminal modules, grounding, shielding, configuration, and the module itself.

Can a physically similar Siemens analog module be used as a replacement?

Not automatically. Electrical characteristics, system compatibility, channel configuration, terminal arrangement, and software support must be verified.

Why should I check raw input values?

Raw values help distinguish an electrical acquisition problem from a PLC scaling or HMI display problem.


Conclusion

The Siemens 6AG1134-4MB02-2AB0 Analog Input Module is a compact SIPLUS ET 200S component designed to integrate analog field measurements into distributed Siemens automation systems. With specified dimensions of 15 × 81 × 52 mm and a weight of 0.045 kg, it is well suited to high-density industrial control installations.

The module’s practical value lies in its position between field instrumentation and the PLC application. Reliable operation therefore depends not only on the module itself but also on the sensor, transmitter, field wiring, terminal module, grounding, shielding, hardware configuration, PLC program, and engineering scaling.

For installation, technicians should first verify system compatibility and the exact signal requirements, then install the module safely, connect the field wiring correctly, configure the ET 200S station, and verify the resulting PLC data.

For troubleshooting, a systematic signal-path approach is recommended. Start with the field instrument and work toward the PLC and HMI rather than immediately replacing the module. This approach can identify wiring, transmitter, grounding, configuration, scaling, and communication problems while reducing unnecessary hardware replacement.

With proper installation, configuration, environmental management, and preventive maintenance, the 6AG1134-4MB02-2AB0 can serve as a reliable analog acquisition component in Siemens distributed industrial automation applications.



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