Our advantage
Global Logistics
We have a 10-year logistics and express cooperation agreement, so our products can be shipped to any place in the world.
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.
24-hour service
We provide 7*24 hours service to our customers. We will be there whenever you need us.
Price advantage
All our products are priced very favorably because we have our own warehouse and supply.
| Company Information | |||
| [email protected] | |||
| Mobile | +8615980777398 | ||
| +8615980777398 | |||
| 15980777398 |

The Siemens 6AG1052-1FB08-7BA0 Logic Module is a compact programmable control device designed for implementing logic functions in industrial automation and electrical control applications. It provides a practical solution for applications that require localized programmable control without necessarily requiring the full hardware structure of a larger PLC system.
With listed dimensions of 71.5 × 90 × 60 mm and a weight of 0.25 kg, the 6AG1052-1FB08-7BA0 is suitable for compact control cabinets, machine control panels, equipment automation assemblies, and distributed control installations where available space must be used efficiently.
Logic modules are commonly used to replace or simplify conventional combinations of relays, timers, switches, and other discrete control elements. By implementing control logic electronically, the system can provide structured sequencing, condition monitoring, switching decisions, timing functions, and equipment interlocking.
The exact input/output configuration, electrical ratings, communication capabilities, memory characteristics, programming functions, and environmental specifications should be confirmed against the applicable configuration of the 6AG1052-1FB08-7BA0 before engineering or installation.
| Parameter | Specification |
|---|---|
| Manufacturer | Siemens |
| Model | 6AG1052-1FB08-7BA0 |
| Product Type | Logic Module |
| Primary Function | Programmable logic and localized automation control |
| Dimensions | 71.5 × 90 × 60 mm |
| Weight | 0.25 kg |
| Installation | Industrial control cabinet / automation equipment |
| Application | Machine control, sequencing, monitoring and equipment automation |
| Control Method | Programmable logic-based control |
| System Integration | Siemens industrial automation architecture, subject to configuration |
| Physical Design | Compact control module |
The dimensions and weight above are the product information supplied for this article. Exact electrical and functional characteristics should be verified for the installed hardware before connecting field equipment.
The 6AG1052-1FB08-7BA0 is a Siemens Logic Module intended to provide programmable control functionality in industrial automation environments.
A logic module evaluates defined conditions and performs programmed actions according to the control sequence. Instead of using a large number of individual hardwired components, a programmable logic device can consolidate multiple control functions into one compact electronic unit.
A simplified automation sequence can be represented as:
Field Inputs → Logic Processing → Control Decision → Output Command → Machine Response
Inputs can represent equipment states, operator commands, sensor conditions, or other control signals. The logic function evaluates these conditions and determines whether the associated output or control action should occur.
This architecture is particularly useful when a machine or subsystem contains repetitive and clearly defined logical operations.
The operating principle of a programmable logic module is based on evaluating input conditions and executing programmed control instructions.
A typical control sequence may include:
This type of control makes it possible to create repeatable machine sequences while reducing the amount of physical relay wiring.
The exact programming environment and available logic functions for the 6AG1052-1FB08-7BA0 should be confirmed for the specific hardware configuration.
Compact logic controllers are useful when automation functions need to be handled locally.
A larger industrial system may contain:
Within this architecture, a logic module can provide localized control for a specific machine, utility system, or equipment group.
The control structure can be organized as:
Sensors and Switches → Logic Module → Local Equipment
while higher-level systems can supervise the overall operation.
This separation can make the automation system easier to organize and can reduce the need to route every simple control signal through a central controller.
The Siemens 6AG1052-1FB08-7BA0 can be considered for machine-control architectures where programmed logical sequences are required.
Typical operations can include:
The actual application must be matched to the module’s confirmed capabilities.
Conveyor systems frequently require logical coordination between motors, sensors, and machine sections.
A logic-based control architecture can coordinate conditions such as:
Local control logic can also be useful for pumps and utility equipment.
A programmed sequence may evaluate equipment availability, operating conditions, start commands, and fault signals before permitting operation.
Packaging machinery often requires repeated control sequences involving multiple machine states. A programmable logic device can help organize these operations where the hardware is suitable for the application.
Material-handling systems can use localized logic for equipment sequencing, sensor-based switching, and coordination between machine sections.
One of the main benefits of programmable logic is that control behavior can be changed through configuration rather than extensive rewiring.
For example, a machine-start sequence could operate as follows:
Start Command
↓
Check Permissive Conditions
↓
Confirm Required Equipment Status
↓
Execute Programmed Logic
↓
Activate Control Output
↓
Monitor Equipment Response
↓
Continue or Stop Sequence
This approach provides a structured method for implementing repeatable automation sequences.
For safety-related functions, dedicated safety hardware and the overall safety architecture must be used where required. A general-purpose logic module should not automatically be treated as a safety controller.
The 6AG1052-1FB08-7BA0 has listed dimensions of:
71.5 × 90 × 60 mm
and a listed weight of:
0.25 kg
These values should be included when planning the control cabinet layout.
Before installation, engineers should evaluate:
The compact size can be advantageous in installations where several automation components must share limited cabinet space.
The logic module should be installed according to the electrical requirements of the actual device configuration.
Important considerations include:
The correct supply voltage and connection arrangement must be confirmed before energizing the device.
Field input devices must be electrically compatible with the module’s actual input configuration.
Typical field devices may include:
The actual supported input characteristics should be verified before connection.
Logic outputs may control external devices such as:
The connected load must remain within the confirmed electrical capabilities of the output circuit.
Proper grounding and cable routing can help reduce electrical interference and improve signal reliability.
The 6AG1052-1FB08-7BA0 can form part of a larger industrial automation system.
A typical architecture may contain:
| Component | Typical Function |
|---|---|
| Sensors | Detect process or machine conditions |
| Logic Module | Executes programmed control logic |
| PLC | Coordinates broader automation functions |
| HMI | Provides operator control and visualization |
| Relays | Provide switching or interface functions |
| Contactors | Control electrical equipment |
| Drives | Control motor operation |
| Actuators | Perform physical actions |
| SCADA | Provides supervisory monitoring |
The exact role of the logic module depends on the control architecture and the functions required by the application.
A structured commissioning process helps prevent wiring and configuration problems from becoming operational faults.
Confirm the device identification:
Siemens 6AG1052-1FB08-7BA0
Do not rely only on physical appearance when identifying replacement equipment.
Check mounting, wiring, connectors, cabinet conditions, and surrounding equipment.
Confirm the supply arrangement before applying power.
Test connected switches and sensors individually where possible.
Confirm that the programmed sequence corresponds to the intended machine operation.
Operate output functions under controlled conditions and verify the response of connected equipment.
Check all required permissive and interlocking conditions before enabling automatic operation.
Perform a controlled operational test and confirm that the machine responds correctly at each stage.
Troubleshooting should begin with the complete control path rather than assuming that the logic module is defective.
The basic diagnostic path is:
Power → Input → Logic → Output → Field Device
Possible causes include:
The power and installation should be checked first.
If an expected input is not recognized, inspect:
A failed sensor can produce symptoms that resemble a controller problem.
If the logic appears correct but the equipment does not respond, inspect:
The fault may be located downstream from the logic module.
Unexpected operation can result from:
Reviewing the control sequence step by step is often more effective than replacing components immediately.
Preventive maintenance helps maintain stable operation of compact control equipment.
Recommended activities include:
Because logic modules are part of a larger control chain, preventive maintenance should also include connected sensors, relays, contactors, and actuators.
Control configuration is an important part of maintaining a programmable automation system.
Before replacing a logic module, maintenance personnel should determine whether the existing application configuration or program needs to be transferred to the replacement device.
Recommended practices include:
A replacement hardware unit alone does not necessarily reproduce the complete control behavior of the original installation.
When replacing the Siemens 6AG1052-1FB08-7BA0, the complete order number should be checked carefully.
Important information includes:
The listed physical specifications are:
Dimensions: 71.5 × 90 × 60 mm
Weight: 0.25 kg
These values can be used for cabinet planning and spare-parts logistics.
A visually similar Siemens logic module should not automatically be considered an interchangeable replacement. Functional compatibility must be confirmed before installation.
Compact control components can provide significant advantages when many devices must be installed inside one cabinet.
For the 6AG1052-1FB08-7BA0, the listed dimensions of 71.5 × 90 × 60 mm should be considered together with:
The module’s listed weight of 0.25 kg also provides a useful reference for handling and equipment-layout calculations.
A systematic troubleshooting method can reduce unnecessary component replacement.
When the machine does not operate as expected, engineers can divide the system into several stages:
Confirm that the required supply is present and stable.
Verify that switches and sensors provide the expected signals.
Determine whether the programmed conditions are being evaluated correctly.
Confirm that the required control outputs are being generated.
Check relays, contactors, drives, valves, motors, or other connected equipment.
Verify that the controlled equipment produces the expected physical result.
This approach helps distinguish between a logic-module fault and problems elsewhere in the automation system.
The Siemens 6AG1052-1FB08-7BA0 Logic Module offers several practical characteristics for compact industrial control applications:
The Siemens 6AG1052-1FB08-7BA0 is a Logic Module intended for programmable control and automation applications.
The listed dimensions are 71.5 × 90 × 60 mm.
The listed weight is 0.25 kg.
A logic module can execute programmed control sequences, switching logic, timing operations, equipment interlocks, and monitoring functions depending on its capabilities and configuration.
A logic module can be used in machine automation where the required application functions are compatible with the device’s actual specifications and configuration.
The complete model number, hardware configuration, power requirements, input/output characteristics, wiring arrangement, installation conditions, and application requirements should be verified.
Check the programmed logic, input conditions, interlocks, output wiring, external power, connected relay or contactor, and downstream equipment before determining whether the logic module itself has failed.
A similar-looking device should not automatically be considered compatible. The complete Siemens order number, hardware configuration, application requirements, and control program should be checked before replacement.
No. Only the product type, model number, dimensions, and weight supplied for this article are treated as confirmed product information. Exact electrical characteristics and configuration-dependent functions should be verified for the specific hardware.
The Siemens 6AG1052-1FB08-7BA0 Logic Module is a compact programmable control component designed for localized logic and automation functions. Its listed 71.5 × 90 × 60 mm dimensions and 0.25 kg weight make it suitable for applications where control functionality must fit within a compact industrial installation.
By implementing programmable logic, a logic module can simplify control sequences that would otherwise require extensive combinations of relays, timers, and hardwired control circuits. Potential applications include machine sequencing, equipment interlocking, conveyor control, pump automation, material handling, and other localized automation tasks.
For reliable operation, the 6AG1052-1FB08-7BA0 should be installed and commissioned as part of the complete control system rather than treated as an isolated component. Correct power, wiring, configuration, field devices, output equipment, and program management all contribute to dependable system performance.
When replacing or servicing the module, technicians should verify the complete Siemens model designation and the actual system configuration. Proper identification, systematic commissioning, configuration backup, and structured fault diagnosis can help maintain stable operation of the automation system.