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Industrial PC for PLC-Based Factory Automation Systems | 코어IPC

Industrial PC for PLC-Based Factory Automation Systems

Industry Overview

Modern manufacturing is undergoing a rapid transformation driven by Industry 4.0, smart factories, and digitalized production processes. Traditional automation systems that rely solely on standalone PLCs are increasingly being integrated with industrial computing platforms to support advanced visualization, data analytics, machine connectivity, edge intelligence, and centralized management.

Smart Factory Automation

Smart Factory Automation

As factories adopt technologies such as Industrial IoT (IIoT), 머신 비전, predictive maintenance, MES integration, and real-time production monitoring, the demand for a reliable industrial PC for PLC applications continues to grow.

A modern industrial computer serves as the intelligent control and communication hub within automated production environments. It complements PLC systems by providing enhanced computing power, extensive connectivity, flexible software deployment, and seamless integration with factory information systems.

Whether deployed in automotive manufacturing, electronics assembly, food processing, packaging machinery, pharmaceutical production, or logistics automation, industrial PCs have become a critical component of next-generation factory automation infrastructures.


Automation Challenges

Automation Challenges

Challenges

Although PLCs remain the backbone of industrial control systems, manufacturers often encounter several limitations when relying exclusively on PLC-based architectures.

Limited Data Processing Capabilities

Traditional PLCs are designed primarily for deterministic control tasks. They are not optimized for handling:

  • Large-scale production data
  • Machine vision workloads
  • Database management
  • AI-driven analytics
  • Industrial IoT applications

As factories generate increasing volumes of operational data, additional computing resources become necessary.

Complex Multi-System Integration

Modern factories often require integration among:

  • PLCs
  • SCADA systems
  • MES platforms
  • ERP systems
  • Edge computing devices
  • Cloud services

Establishing seamless communication between these systems can be challenging without a dedicated industrial computing platform.

Growing Connectivity Requirements

Industrial automation environments increasingly rely on:

  • EtherCAT
  • PROFINET
  • Modbus TCP
  • OPC UA
  • CAN Bus
  • Ethernet/IP

Traditional controllers may lack sufficient communication interfaces for managing multiple industrial networks simultaneously.

Harsh Industrial Environments

Factory floors expose equipment to:

  • High temperatures
  • Dust contamination
  • Vibration
  • Electrical noise
  • Continuous 24/7 operation

Commercial-grade computers are often unable to meet the reliability requirements of industrial deployments.

Scalability Challenges

As production lines evolve, manufacturers require scalable computing platforms capable of supporting:

  • Additional I/O modules
  • More connected machines
  • New software applications
  • Future AI and edge computing workloads

Conventional automation architectures may struggle to accommodate future expansion.


PLC + IPC Solution Architecture

PLC + IPC Solution Architecture

Solution Architecture

CoreIPC provides a comprehensive Industrial PC for PLC Automation Solution that combines industrial-grade computing hardware with leading industrial control platforms.

The architecture consists of five key layers.

Layer 1: Field Devices

This layer includes:

  • Sensors
  • Encoders
  • Industrial cameras
  • Barcode readers
  • Actuators
  • Servo drives
  • VFDs
  • Robotics systems

These devices collect production data and execute control commands.

Layer 2: PLC Control Layer

PLCs perform real-time control functions such as:

  • Motion control
  • Logic processing
  • Safety management
  • Equipment synchronization

Supported PLC ecosystems may include:

  • Siemens
  • Beckhoff
  • Mitsubishi
  • Omron
  • Schneider Electric
  • Allen-Bradley

Layer 3: CoreIPC Industrial Computing Layer

At the center of the architecture is a CoreIPC industrial computer or embedded computer.

The industrial PC performs:

  • HMI visualization
  • SCADA operation
  • Data acquisition
  • Edge analytics
  • Soft PLC deployment
  • Industrial gateway functions
  • Protocol conversion
  • Database management

Typical software environments include:

  • 윈도우 10 IoT
  • 윈도우 11 IoT
  • 리눅스
  • Ubuntu
  • Debian
  • Real-time Linux
  • CODESYS Runtime
  • TwinCAT 3

Layer 4: Manufacturing Management Systems

The industrial PC communicates with:

  • MES systems
  • Quality management systems
  • Production scheduling systems
  • Warehouse management systems
  • Traceability platforms

This enables real-time production visibility and operational optimization.

Layer 5: Enterprise & Cloud Layer

Factory data can be transmitted securely to:

  • ERP systems
  • Private clouds
  • Public clouds
  • AI analytics platforms
  • Remote monitoring centers

Supporting predictive maintenance and enterprise-wide decision making.


주요 특징

High-Performance Industrial Computing

CoreIPC systems support:

  • Intel® Core™ processors
  • Intel® Celeron® processors
  • Intel® Atom® processors
  • AMD Ryzen™ embedded processors

This enables significantly higher computing performance compared with traditional PLC-only architectures.

Soft PLC Compatibility

CoreIPC industrial computers can host popular soft PLC platforms including:

  • CODESYS
  • TwinCAT 3
  • OpenPLC
  • PLCnext Runtime

This allows manufacturers to combine control and computing capabilities on a unified platform.

Industrial Protocol Support

CoreIPC solutions support communication protocols such as:

  • EtherCAT
  • Modbus TCP
  • Modbus RTU
  • CAN Bus
  • OPC UA
  • MQTT
  • PROFINET
  • Ethernet/IP

Facilitating seamless connectivity across diverse industrial devices.

Flexible Expansion

Industrial applications often require customized I/O and communication interfaces.

CoreIPC platforms support:

  • PCIe expansion
  • M.2 expansion
  • Mini PCIe modules
  • GPIO interfaces
  • Digital I/O cards
  • Motion control cards
  • Frame grabber cards

Providing exceptional deployment flexibility.

Industrial Reliability

Industrial Reliability

Wide Operating Temperature Design

Industrial-grade designs support operation in demanding environments with:

  • Extended temperature tolerance
  • Shock resistance
  • Vibration resistance
  • EMI protection

Ensuring reliable operation on factory floors.

Edge Computing Capability

The industrial PC can process data locally to:

  • Reduce network traffic
  • Lower latency
  • Improve system responsiveness
  • Enhance cybersecurity

Supporting modern Industry 4.0 initiatives.

Long Lifecycle Availability

CoreIPC products offer:

  • Long-term supply availability
  • Stable hardware platforms
  • Consistent product revisions

Ideal for industrial automation projects with extended deployment cycles.


Recommended CoreIPC Products

산업용 마더보드

Recommended for machine builders and automation equipment manufacturers.

Applications:

  • PLC controller integration
  • Machine automation
  • Industrial gateways
  • HMI 시스템

Advantages:

  • Compact form factors
  • Flexible customization
  • Long-term availability

임베디드 보드

Ideal for embedded automation systems requiring space-efficient designs.

Applications:

  • Embedded control systems
  • Motion control platforms
  • Robotics controllers
  • Smart manufacturing equipment

Advantages:

  • Low power consumption
  • High reliability
  • Rich industrial interfaces

Fanless Industrial Computers

Designed for factory environments requiring maintenance-free operation.

Applications:

  • SCADA stations
  • Industrial edge computing
  • Soft PLC systems
  • Production monitoring

Advantages:

  • Silent operation
  • Dust-resistant design
  • High stability

Industrial AI Edge Computers

Suitable for advanced automation projects.

Applications:

  • Machine vision inspection
  • Predictive maintenance
  • AI quality control
  • Autonomous manufacturing systems

Advantages:

  • GPU acceleration
  • Real-time analytics
  • Edge AI processing

Benefits

Enhanced Production Efficiency

Industrial PCs enable:

  • Faster data processing
  • Improved machine coordination
  • Reduced downtime
  • Optimized workflows

Resulting in higher overall equipment effectiveness (OEE).

Simplified System Integration

A centralized industrial computing platform simplifies communication among:

  • PLCs
  • Sensors
  • MES systems
  • ERP systems
  • Cloud services

Reducing engineering complexity.

Greater Flexibility

Manufacturers can easily deploy:

  • New software applications
  • Additional communication protocols
  • Advanced analytics functions

Without replacing existing PLC infrastructure.

Reduced Total Cost of Ownership

By consolidating multiple functions into a single platform, organizations can reduce:

  • Hardware costs
  • Maintenance requirements
  • Energy consumption
  • System complexity

Future-Proof Automation Infrastructure

CoreIPC solutions provide a scalable foundation for:

  • 산업용 IoT
  • Smart factories
  • Edge computing
  • AI deployment

Ensuring long-term investment protection.


왜 CoreIPC인가?

CoreIPC specializes in industrial computing platforms designed for automation, 임베디드 컴퓨팅, and intelligent manufacturing applications.

Customers choose CoreIPC because of:

Extensive Industrial Experience

Years of expertise in:

  • Industrial motherboards
  • Embedded computing
  • Automation hardware
  • Edge computing platforms

Flexible OEM/ODM Services

Support for:

  • Customized interfaces
  • Specialized form factors
  • Industry-specific configurations
  • Private branding

Reliable Product Quality

All products are engineered for:

  • Continuous operation
  • Industrial environments
  • Long lifecycle deployment

Comprehensive Technical Support

CoreIPC provides:

  • Pre-sales consultation
  • Hardware customization
  • Software integration support
  • Long-term project assistance

Global Supply Capability

Supporting automation projects worldwide with stable product availability and responsive service.


FAQ

What is an industrial PC for PLC applications?

An industrial PC for PLC applications is a ruggedized computing platform that works alongside or replaces traditional PLC hardware to provide advanced computing, visualization, communication, and data processing capabilities.

Can an industrial PC replace a PLC?

In some applications, yes. Soft PLC platforms such as CODESYS and TwinCAT allow industrial PCs to perform PLC functions while providing additional computing power and flexibility.

Does CoreIPC support CODESYS?

예. CoreIPC industrial computers and embedded platforms can be configured to support CODESYS-based automation solutions.

Does CoreIPC support TwinCAT 3?

예. CoreIPC hardware can be deployed with TwinCAT 3 environments for industrial control and EtherCAT-based automation systems.

지원되는 운영 체제?

Depending on the hardware platform, CoreIPC solutions support:

  • 윈도우 10 IoT
  • 윈도우 11 IoT
  • 리눅스
  • Ubuntu
  • Debian
  • Real-time Linux

Can CoreIPC support EtherCAT communication?

예. CoreIPC industrial computers can support EtherCAT master and slave configurations depending on the software and hardware implementation.

Are fanless industrial PCs suitable for factory environments?

예. Fanless industrial PCs are widely used in factories because they offer improved reliability, lower maintenance requirements, and resistance to dust contamination.

Can CoreIPC provide customized industrial computers?

예. CoreIPC offers OEM and ODM services including custom motherboard design, interface customization, enclosure modifications, and project-specific hardware development.


문의하기

Looking for a reliable industrial PC for PLC automation projects?

CoreIPC provides industrial motherboards, embedded boards, fanless industrial computers, and customized automation computing solutions designed for smart factories and Industry 4.0 applications.

Whether you are building automated production equipment, deploying soft PLC systems, integrating MES platforms, or developing intelligent manufacturing solutions, our engineering team is ready to help.

Contact CoreIPC today to discuss your factory automation requirements and discover the ideal industrial computing platform for your project.

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