Axioline F Series, Controllers - Programmable (PLC, PAC)

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Series
Communications
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Number of Outputs and Type
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Axioline F
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ImageProduct DetailPriceAvailabilityECAD ModelMounting TypeFeaturesMemory SizeSeriesNumber of Inputs and TypeNumber of Outputs and TypeDisplay TypeExpandableNumber of Characters Per RowCommunicationsVoltage - Supply
1188165
PLCNEXT TECHNOLOGY STARTER KIT I
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Quantity
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PCB Symbol, Footprint & 3D Model
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-
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Axioline F
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No Display
Non-Expandable
-
Ethernet
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1151412
PLCNEXT CONTROL FOR THE DIRECT C
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Quantity
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PCB Symbol, Footprint & 3D Model
DIN Rail
-
-
Axioline F
-
-
No Display
Non-Expandable
-
Ethernet, RJ45
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1069208
PLCNEXT CONTROL FOR THE DIRECT C
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Quantity
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PCB Symbol, Footprint & 3D Model
DIN Rail
-
-
Axioline F
-
-
No Display
Non-Expandable
-
Ethernet, RJ45
24VDC
1046568
PLCNEXT CONTROL STARTER KIT
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Starter Kit: Cables, Controller, I/O Module, License, Power Supply, Voltage Switch
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Axioline F
-
-
No Display
Non-Expandable
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About  Controllers - Programmable (PLC, PAC)

Programmable logic controllers (PLCs) are versatile automation control devices designed to receive input signals and generate output signals based on pre-programmed logic and control algorithms. These devices offer a high degree of flexibility, making them capable of performing a wide range of automation tasks, from simple logic and timing functions to advanced motion control of complex machinery like material handling robots. PLCs come in varying degrees of complexity, with some capable of supporting basic control functions while others can orchestrate complex movements and operations within industrial and commercial systems. These devices are typically designed as modular, extensible systems that can be customized and adapted to meet the specific needs and requirements of a given application. The input signals received by PLCs can come from various sources, including sensors, switches, and other control devices. These signals are then processed according to the pre-programmed logic and control algorithms within the device, generating corresponding output signals that can control actuators, motors, and other components within the system. PLCs are often programmed using specialized software, which allows users to create custom logic and control algorithms tailored to their specific application needs. This programming can be done offline and then uploaded to the PLC, allowing for more efficient and streamlined system setup and deployment. In addition to their flexibility, PLCs also offer high reliability and robustness, ensuring reliable performance even in harsh industrial environments. They are commonly used in a wide range of applications, including manufacturing, food processing, transportation, and building automation, among others. In summary, programmable logic controllers are highly adaptable automation control devices that provide precise input/output control and can be programmed to meet the specific needs of various industrial and commercial applications. Their modular and extensible design, coupled with their reliability and versatility, makes them a popular choice for controlling and automating numerous systems across different industries.