Hollysys Hiapac Hollias ® Programmable Automation Controller Oil & Gas Control Solution

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Product Description

Basic Info.

Model NO. HiaPAC
Adaptable Altitude -300 to 4,500 M
Channel Safety Fully Isolated Channels and Online Status Diagnost
Expansion & Protection Flexible Expansion and Power Failure Protection
High-Availability Architecture Dual-Frame Redundancy Design
Transport Package Wooden or Others
Origin China
HS Code 8471499100
Production Capacity 8, 000 Sets/Year

Product Description

Automation Controller Oil & Gas Control Solution

In oil & gas operations - from remote well startups to pipeline pressure control-industrial control systems are mission-critical. Yet, rising cybersecurity and industrial security threats, growing pressure on technology self-sufficiency, the emergence of edge nodes such as remote facilities and cross-border pipelines, and extreme environments (desert heat, polar cold, high-altitude) demand a new paradigm: advanced, secure, and ultra-resilient control solutions.

In response, the Programmable Automation Controller (HiaPAC) is introduced - a next-generation industrial control solution purpose-built for oil & gas applications. Developed on a proven platform and powered by cutting-edge intelligent control technologies, HiaPAC delivers unmatched security, intelligence, and reliability-redefining the future of intelligence in oil & gas.

Product Features

Self-Developed & Controllable

Built on an advanced architecture featuring Loongson processors, a proprietary microkernel OS, and embedded firmware, HiaPAC ensures complete control over core technologies vital to the oil & gas sector.

Diverse PID Functionality

Integrating robust and diverse PID functions including fuzzy logic and auto-tuning in Distributed Control System (DCS).

Designed for Harsh Environments

Supports -40°C to +75°C operation, altitudes from -300 m to 4,500 m, EMC Level 3 immunity, and G3 corrosion resistance.

Industrial Optical Bus

Combining industrial optical bus and software-defined I/O technologies, HiaPAC reduces copper cabling and lowers capital and operating expenditures.

High-Speed Controller Module

Controller Module

High-Availability Architecture

  • Dual-frame redundancy design
  • Master-slave hot standby + full data redundancy
  • Dual-network redundancy: SNET ensures zero communication interruption

High-Performance Core

  • Scheduling cycle ≤5 ms
  • 1 GHz CPU: Enhancing real-time control responsiveness

High-Performance I/O Module

Diverse Module Configurations

  • AI/AO modules: 8-channel HART communication
  • DI/DO modules: 16-channel relay-isolated I/O with overcurrent protection
  • Multifunction: AI/AO/DI/DO/TC/RTD hybrid signals

Channel Safety Technology

  • Fully isolated channels
  • Online status diagnostics
I/O Module

Application Scenarios

Application Scenarios

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Frequently Asked Questions

1. What is the operating temperature range for the HiaPAC?

HiaPAC is designed for extreme environments, supporting a wide operating temperature range from -40°C to +75°C.

2. Does the system support high-altitude installations?

Yes, the HiaPAC is adaptable to altitudes ranging from -300 meters up to 4,500 meters, making it suitable for both mining and high-plateau oil & gas facilities.

3. What kind of redundancy does the HiaPAC offer?

The system features a dual-frame redundancy design, including master-slave hot standby, full data redundancy, and dual-network redundancy (SNET) to ensure zero communication interruption.

4. How does the system handle corrosive environments?

The controller is built with G3 corrosion resistance and EMC Level 3 immunity, ensuring reliable performance in high-humidity and chemically corrosive field conditions.

5. What types of I/O signals are supported?

The high-performance I/O modules support AI, AO, DI, DO, TC, and RTD hybrid signals, including 8-channel HART communication and relay-isolated I/O with overcurrent protection.

6. How fast is the controller's computing capability?

HiaPAC features a 1 GHz CPU with an ultra-high-speed scheduling cycle of ≤5 ms, providing excellent real-time control responsiveness.

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