Welcome to the Industrial Automation website!

NameDescriptionContent
XING-Automation
E-mail  
Password  
  
Forgot password?
  Register
当前位置:
  • HIMA HISafe-PLC - - PLC, Safety, SIL3, Process Control, Modular, Industrial Automation
    ❤ Add to collection
  • HIMA HISafe-PLC - - PLC, Safety, SIL3, Process Control, Modular, Industrial Automation

    110V-380V
    5W-130W
    1A-30A
    1 year
    30
    United States, France, Japan, Viet Nam, Australia, Russia, Germany, Italy, Arabia
    Introducing the HIMA HISafe-PLC, a cutting-edge programmable logic controller designed for the power industry, petrochemical sector, and general automation applications. With its advanced features and robust design, the HISafe-PLC is the perfect solution for ensuring safety and efficiency in critical industrial processes.

    Key Features:
    1) SIL 3 certified safety controller: The HISafe-PLC is certified up to Safety Integrity Level 3, ensuring the highest level of safety performance in industrial applications.
    2) Dual-redundant architecture: The controller features a dual-redundant architecture, providing high availability and reliability in safety-critical systems.
    3) Integrated safety functions: The HISafe-PLC comes equipped with a wide range of integrated safety functions, including emergency stop, safety interlocks, and safety monitoring.
    4) Scalable design: With its modular and scalable design, the HISafe-PLC can easily adapt to different application requirements and expand as needed.
    5) User-friendly programming: The controller offers intuitive programming tools and a user-friendly interface, making it easy to configure and maintain.
    6) High-speed processing: The HISafe-PLC features high-speed processing capabilities, ensuring fast and accurate response times in critical situations.
    7) Remote monitoring and diagnostics: The controller allows for remote monitoring and diagnostics, enabling operators to quickly identify and address any issues.
    8) Wide temperature range: The HISafe-PLC is designed to operate in a wide temperature range, making it suitable for use in harsh industrial environments.

    Typical Usage Scenarios:
    1) Power industry: The HISafe-PLC is ideal for applications in power plants, substations, and distribution networks, where safety and reliability are paramount.
    2) Petrochemical sector: The controller is well-suited for use in petrochemical plants, refineries, and chemical processing facilities, where process safety is critical.
    3) General automation: The HISafe-PLC can be used in various automation applications, such as manufacturing processes, material handling systems, and building automation.

    Basic Advantages:
    1) Enhanced safety: The SIL 3 certification and integrated safety functions ensure the highest level of safety for personnel and equipment.
    2) Reliability: The dual-redundant architecture and high-speed processing capabilities guarantee reliable operation in critical industrial processes.
    3) Flexibility: The modular and scalable design allows for easy customization and expansion to meet specific application requirements.
    4) Ease of use: The user-friendly programming tools and remote monitoring capabilities make it simple to configure and maintain the controller.

    Related Models in the HISafe Series:
    1) HIMA HISafe-PLC-EH
    2) HIMA HISafe-PLC-EX
    3) HIMA HISafe-PLC-HD
    4) HIMA HISafe-PLC-LT
    5) HIMA HISafe-PLC-MB
    6) HIMA HISafe-PLC-PC
    7) HIMA HISafe-PLC-RS
    8) HIMA HISafe-PLC-SI
    9) HIMA HISafe-PLC-TS
    10) HIMA HISafe-PLC-VC
    • ¥11716.00
      ¥12233.00
    • Satisfaction:

      Sales: 0

      Review: 0

    Weight:69.000KG
    • Quantity:
    • (Inventory: 1)
Description
Introducing the HIMA HISafe-PLC, a cutting-edge programmable logic controller designed for the power industry, petrochemical sector, and general automation applications. With its advanced features and robust design, the HISafe-PLC is the perfect solution for ensuring safety and efficiency in critical industrial processes.

Key Features:
1) SIL 3 certified safety controller: The HISafe-PLC is certified up to Safety Integrity Level 3, ensuring the highest level of safety performance in industrial applications.
2) Dual-redundant architecture: The controller features a dual-redundant architecture, providing high availability and reliability in safety-critical systems.
3) Integrated safety functions: The HISafe-PLC comes equipped with a wide range of integrated safety functions, including emergency stop, safety interlocks, and safety monitoring.
4) Scalable design: With its modular and scalable design, the HISafe-PLC can easily adapt to different application requirements and expand as needed.
5) User-friendly programming: The controller offers intuitive programming tools and a user-friendly interface, making it easy to configure and maintain.
6) High-speed processing: The HISafe-PLC features high-speed processing capabilities, ensuring fast and accurate response times in critical situations.
7) Remote monitoring and diagnostics: The controller allows for remote monitoring and diagnostics, enabling operators to quickly identify and address any issues.
8) Wide temperature range: The HISafe-PLC is designed to operate in a wide temperature range, making it suitable for use in harsh industrial environments.

Typical Usage Scenarios:
1) Power industry: The HISafe-PLC is ideal for applications in power plants, substations, and distribution networks, where safety and reliability are paramount.
2) Petrochemical sector: The controller is well-suited for use in petrochemical plants, refineries, and chemical processing facilities, where process safety is critical.
3) General automation: The HISafe-PLC can be used in various automation applications, such as manufacturing processes, material handling systems, and building automation.

Basic Advantages:
1) Enhanced safety: The SIL 3 certification and integrated safety functions ensure the highest level of safety for personnel and equipment.
2) Reliability: The dual-redundant architecture and high-speed processing capabilities guarantee reliable operation in critical industrial processes.
3) Flexibility: The modular and scalable design allows for easy customization and expansion to meet specific application requirements.
4) Ease of use: The user-friendly programming tools and remote monitoring capabilities make it simple to configure and maintain the controller.

Related Models in the HISafe Series:
1) HIMA HISafe-PLC-EH
2) HIMA HISafe-PLC-EX
3) HIMA HISafe-PLC-HD
4) HIMA HISafe-PLC-LT
5) HIMA HISafe-PLC-MB
6) HIMA HISafe-PLC-PC
7) HIMA HISafe-PLC-RS
8) HIMA HISafe-PLC-SI
9) HIMA HISafe-PLC-TS
10) HIMA HISafe-PLC-VC

HIMA HISafe-PLC - PLC, Safety, SIL3, Process Control, Modular, Industrial Automation

Introducing the HIMA HISafe-PLC, a cutting-edge programmable logic controller designed for the power industry, petrochemical sector, and general automation applications. With its advanced features and robust design, the HISafe-PLC is the perfect solution for ensuring safety and efficiency in critical industrial processes. Key Features: 1) SIL 3 certified safety controller: The HISafe-PLC is certified up to Safety Integrity Level 3, ensuring the highest level of safety performance in industrial applications. 2) Dual-redundant architecture: The controller features a dual-redundant architecture, providing high availability and reliability in safety-critical systems. 3) Integrated safety functions: The HISafe-PLC comes equipped with a wide range of integrated safety functions, including emergency stop, safety interlocks, and safety monitoring. 4) Scalable design: With its modular and scalable design, the HISafe-PLC can easily adapt to different application requirements and expand as needed. 5) User-friendly programming: The controller offers intuitive programming tools and a user-friendly interface, making it easy to configure and maintain. 6) High-speed processing: The HISafe-PLC features high-speed processing capabilities, ensuring fast and accurate response times in critical situations. 7) Remote monitoring and diagnostics: The controller allows for remote monitoring and diagnostics, enabling operators to quickly identify and address any issues. 8) Wide temperature range: The HISafe-PLC is designed to operate in a wide temperature range, making it suitable for use in harsh industrial environments. Typical Usage Scenarios: 1) Power industry: The HISafe-PLC is ideal for applications in power plants, substations, and distribution networks, where safety and reliability are paramount. 2) Petrochemical sector: The controller is well-suited for use in petrochemical plants, refineries, and chemical processing facilities, where process safety is critical. 3) General automation: The HISafe-PLC can be used in various automation applications, such as manufacturing processes, material handling systems, and building automation. Basic Advantages: 1) Enhanced safety: The SIL 3 certification and integrated safety functions ensure the highest level of safety for personnel and equipment. 2) Reliability: The dual-redundant architecture and high-speed processing capabilities guarantee reliable operation in critical industrial processes. 3) Flexibility: The modular and scalable design allows for easy customization and expansion to meet specific application requirements. 4) Ease of use: The user-friendly programming tools and remote monitoring capabilities make it simple to configure and maintain the controller. Related Models in the HISafe Series: 1) HIMA HISafe-PLC-EH 2) HIMA HISafe-PLC-EX 3) HIMA HISafe-PLC-HD 4) HIMA HISafe-PLC-LT 5) HIMA HISafe-PLC-MB 6) HIMA HISafe-PLC-PC 7) HIMA HISafe-PLC-RS 8) HIMA HISafe-PLC-SI 9) HIMA HISafe-PLC-TS 10) HIMA HISafe-PLC-VC

  • User name Member Level Quantity Specification Purchase Date
  • Satisfaction :
No evaluation information
  • ADLINK AmITX-SL-G Mini ITX Motherboard Deployment and SEMA Guide
  • ADLINK AmITX-AL-I Embedded Motherboard Deployment and SEMA Management Guide
  • ADLINK NuPRO-E315 PICMG 1.3 Industrial Motherboard Deployment Guide
  • ADLINK NuPRO-842 Pentium 4 Industrial Motherboard Deployment and Debugging Guide
  • ADLINK NuPRO-900A Dual Xeon ePCI-X Motherboard Deployment Guide
  • ADLINK cPCI-6910 Dual Core Xeon Single Board Computer Deployment Guide
  • ADLINK cPCI-6860A Dual Xeon Single Board Computer Deployment Guide
  • ADLINK CPCI-8168 Eight Axis Motion Control Card Deployment and HSL Integration Guide
  • ADLINK NuPRO-E340 Industrial Motherboard Debugging and BIOS Optimization Guide
  • ADLINK NuPRO-A40H Industrial Single Board Computer Hardware Deployment and BIOS Calibration Guide
  • ADLINK NuPRO-852 LGA775 Industrial Control Motherboard Maintenance Guide
  • ADLINK NuPRO-841 Industrial Motherboard Maintenance and Troubleshooting
  • ADLINK NuPRO-590 Series Socket7 Industrial Control Motherboard Maintenance Guide
  • Deployment and Troubleshooting of ADLINK MXE-5500 Series Industrial Control Computer
  • ADLINK MXE-200 Fanless Embedded Industrial Control Computer Deployment Guide
  • ADLINK cPCI-6770 Series CompactPCI Motherboard Maintenance Guide
  • ADLINK NuPRO-A301 Industrial Motherboard Troubleshooting Manual
  • ADLINK NuPRO-965 SHB Debugging and Maintenance Complete Manual
  • ADLINK NuPRO-935A Industrial Motherboard Debugging and Maintenance Guide
  • ADLINK NuPRO-865 Single Board Computer Hardware Troubleshooting Guide
  • ADLINK NuPRO-840 P4 Industrial SBC Architecture Maintenance
  • ADLINK NuPRO-770 Full length SBC Configuration and Maintenance
  • ADLINK NuPRO-595 Industrial Half length SBC Motherboard Configuration and Maintenance Guide
  • ADLINK cPCI-6840 Series Single Board Computer Installation, Configuration, and Maintenance Guide
  • Foxboro 43AP Pneumatic Controller Technical Specifications and Selection Guide
  • ADLINK cPCI-3720: 3U CompactPCI Low Power Pentium III CPU Module
  • ADLINK NuPRO-E47: PICMG 1.3 13th Generation Core Industrial SHB
  • ADLINK NuPRO-E43: PICMG 1.3 Core 7th Generation Industrial SHB
  • ADLINK NuPRO-780 PICMG Bus Core CPU Card
  • ADLINK cPCI-6965 6U CompactPCI Core Dual Core Single Board Computer
  • ADLINK USB/LPCI/LPCIe-3488A GPIB Interface Card Selection and Application Guide
  • Rittal SK 3241.700 Blue e+Cabinet Fan Filter Unit
  • ADLINK CPCI-8168 8-Axis Motion Control Card and HSL Network Integration Solution
  • ADLINK PCIe-PXIe-8638 High Speed PXIe Bus Expansion Scheme
  • ADLINK PCIe GIE7x Poe+Frame Grabber Hardware and Power Management Detailed Explanation
  • ADLINK PCIe-7396 Digital I/O Card Deployment Guide
  • ADLINK PCI-8164 Advanced Motion Control Card Deployment Guide
  • ADLINK PCI-8154 Motion Control Card Deployment Guide
  • ADLINK PCI-8134 Motion Control Card Deployment Guide
  • ADLINK NuPRO-E42 Industrial Control Motherboard Deployment Guide
  • ADLINK MXC-6600 Embedded Platform Deployment Guide
  • ADLINK MXC-6000 Industrial Control Computer Deployment and Optimization Guide
  • ADLINK MXC-2300 Embedded System Deployment Guide
  • ADLINK MCM-204 Edge DAQ Deployment Configuration Guide
  • ADLINK MCM-100/102 Deployment Calibration Guide
  • Deployment and Performance Optimization of ADLINK MXC-6400 Industrial Control Computer
  • Selection and Deployment of ADLINK Matrix Series Industrial Control Computers
  • российские промышленные новые машины.Наш отдел дебютировал в 2026 году в России Международная промышленная ярмарка INNOPROM
  • Deeply cultivating the Eurasian industrial market, linking new industrial opportunities between China and Russia
  • Deployment and troubleshooting of ADLINK GIE64+PoE acquisition card
  • Honeywell UMS Security System Troubleshooting Guide
  • Honeywell Expert Series C I/O Troubleshooting Guide
  • ADLINK EOS-1200 Vision System Deployment and Troubleshooting
  • ADLINK DLAP-5200 series AI engine deployment and optimization
  • ADLINK DLAP-4000 Deployment and BIOS Optimization
  • ADLINK Matrix MXC-2000 Deployment and Troubleshooting
  • ADLINK DAQe-2000 series acquisition card calibration and synchronization
  • ADLINK cPCI-6520 Core i7 Processor Blade Engineering Application Guide
  • ADLINK CM1-86DX3 PC/104 Embedded Single Board Computer Engineering Application Guide
  • Honeywell DC1000 Series PID Temperature Controller Engineering Application Guide
  • ALSTOM MiCOM C264 Substation Controller Engineering Application Guide
  • EMERSON AMS 2140 Practical Guide for On site Dynamic Balance and Vibration Analysis
  • ADLINK NuPRO-E320 motherboard deployment and tuning guide
  • ADLINK NuPRO-800 Dual PIII Industrial SBC Maintenance and Upgrade Guide
  • ADLINK NuPRO-598 SBC Maintenance Practical Guide
  • ADLINK MXC-6300 Fanless Embedded Industrial Control Computer Deployment Guide
  • ADLINK Express-BASE7 Carrier Board Quick Deployment and Debugging Guide
  • ADLINK DLAP-211 Edge AI Platform Selection and Deployment Guide
  • ADLINK 7230 Series Isolation DIO Card Selection and Engineering Application Guide
  • ADLINK cPCI-6965 SBC Embedded Installation and BIOS Tuning Guide
  • ADLINK 7200 Series High Speed DIO Card Practical Guide
  • ADLINK DLAP Series Edge AI Acceleration Platform Selection and Deployment Practical Guide
  • DEIF TCM-2 thyristor control module: Wind power cut in control engineering guide
  • DEIF MVR-200 Medium Voltage Relay: Installation and Wiring Engineering Guide
  • DEIF MDR-2 Differential Relay: Engineering Guide for Generator Differential Protection
  • DEIF Delomatic 3 AOM: Engineering Guide for Analog Output Modules
  • DEIF AGI 400 Graphic Interface: Ship and Industrial HMI Solution
  • DEIF BRW-1 Marine Instruments: Installation and Calibration Guide for Offshore Bridge Indicators
  • DEIF AGC 200 Controller: Quick Deployment and Configuration Guide for Generator Sets
  • DEIF AGC-2 Controller: The Ultimate Guide to Automatic Control and Protection of Generator Sets
  • ABB SPA-ZC400 Gateway: REM54x Access to IEC 61850 Ultimate Engineering Guide
  • ABB REM 543/545 Terminal
  • Modular Architecture Analysis of DEIF PPU 300 Ship Generator Controller
  • DEIF DM-4 Marine&Offshore Ship Power Management System
  • Detailed Explanation of DEIF Delomatic Generator Control System Architecture
  • DEIF AGC-4 Mk II Generator Controller Depth Configuration Guide
  • DEIF AGC-4 Generator Controller Configuration and Debugging Guide
  • DEIF PPM Power Management System Operation and Troubleshooting
  • Installation and wiring of DEIF Multi line 2
  • Practical configuration and maintenance of Beckwith M-6280 capacitor bank controller
  • Beckwith M-3311 Transformer Protection Relay Setting and Engineering Application
  • Beckwith M-3311A Transformer Protection Relay Configuration and Optimization Guide
  • Beckwith M-3310 Transformer Protection Relay Complete Guide
  • Beckwith M-0359 synchronous inspection relay
  • Beckwith M-0293A Voltage Regulating Controller Replacement and Debugging Guide
  • Complete Guide to DEIF GPU-3 Generator Protection Unit
  • Installation and I/O configuration of DEIF PPM-3 power management module
  • Beckwith M-3520 Interconnection Protection Relay
  • Beckwith M-3430 Generator Protection Relay
  • Beckwith M-2293B adapter panel replacement GE regulator guide
  • Selection and Networking of Beckwith M-2001C Digital Voltage Regulating Controller
  • Beckwith M-2001B Digital Voltage Regulating Controller
  • Beckwith M-0388/M-0389 Synchronous Inspection Relay Application Guide
  • Beckwith M-0193B Synchronizer Debugging and System Integration Guide
  • Beckwith M-0115A Parallel Balance Module Debugging Guide
  • Beckwith M-0067E On Load Voltage Regulating Controller Selection and Debugging Guide
  • Debugging and Fault Handling of Beckwith M-4272 Digital Busbar Conversion System
  • Beckwith M-3311A Transformer Protection Relay Debugging Guide
  • Beckwith M-3425A Generator Protection Relay Debugging Guide
  • Setting and troubleshooting of Basler BE1-27/59 voltage relay
  • Debugging and troubleshooting of Basler AVC63-12/AVC125-10 voltage regulator
  • Basler L301kc Line Array Camera Technology and Troubleshooting
  • Selection and Debugging of Basler CBS 212A Current Boosting System
  • Selection and commissioning of Basler BE3-25 synchronous inspection relay
  • Basler BE1-32R/32O/U Direction Power Relay Setting and Testing Guide
  • Basler PRS 250 Synchronous Relay Maintenance and Replacement Guide
  • Basler piA2400-17gc Industrial Camera Replacement and Optimization Guide
  • Basler BE1-11g Generator Protection System
  • Basler VR63-4C/UL Voltage Regulator
  • Basler BE1-DFPR feeder protection relay
  • Basler CBS 310/320 Current Boosting System
  • Basler UFOV 250A/260A protection module
  • Basler MVC104/MVC108/MVC232 manual voltage control device
  • Basler XR2002/XR2002F Regulator
  • Basler DECS-400 excitation system
  • Basler DGC-2020 Generator Set Controller: Integrated Control and Debugging Guide
  • Basler MVC-300 Manual Voltage Controller: Characteristics and Engineering Applications
  • Basler MVC Series Manual Voltage Controller: Application and Selection