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HR Series Turbine control systems SD Series remote I/O ABB

From: | Author:kongjiang | Time :2025-06-11 | 500 Browse: | 🔊 Click to read aloud ❚❚ | Share:

Comprehensive I/O product portfolio

S+ I/O, available for local and remote mounting, provides a wide variety of input/output and signal conditioning capabilities. In combination, these rack and DIN I/O modules can be combined to form the optimal automation solution.

HR Series controllers can communicate with up to 64 rack I/O modules locally with additional remote rack I/O modules connected via the RIO22 module. Use of rack sequence of events (SOE) I/O modules provides one millisecond timestamp resolution across the entire rack system.

HR Series I/O module types include: 

 • Analog input (ASI, FEC) 

 • Analog output (ASO) 

 • Control input/output (CIS, QRS) 

 • Digital input (DSI) 

 • Digital output (DSO) 

 • Pulse input (DSM) 

 • SOE digital input (SED)

Turbine control

In addition to traditional signal-type I/O, HR Series provides for integrated turbine control via a series of turbine control-specific modules, including:

• Hydraulic servo module (HSS) 

 • Turbine protection module (TPS)

 • Turbine auto synchronization module (TAS) 

 • Condition monitoring module (CMM)

These unique modules make it possible to provide a fully integrated single-vendor solution for all aspects of turbine automation. HR Series turbine modules are based on proven technology that controls steam turbines, gas turbines and hydroelectric turbines in more than 15 different countries around the world, and have been tested, accepted, and used by several major global turbine manufacturers as part of their standard offering. The combination of HR Series controllers and turbine I/O results in a powerful governor control system solution.

SD Series remote I/O option

HR Series remote I/O capabilities are further expanded with use of the SD Series DIN rail mounted I/O products. Compatible with all HR Series controllers, BRC300 / 400 / 410, SD Series I/O connects directly to the controller via the HN800 I/O network without the need for an intermediate interface or gateway.  SD Series I/O is configured using standard function blocks and includes traditional analog and digital I/O as well as integration with intelligent field devices via PROFIBUS DP and HART. 24 VDC power requirements, low module power consumption, and a module temperature rating of 70 DEGC (ambient) makes SD Series I/O the optimal choice for remote I/O applications. G3 coating makes SD Series I/O suitable for use in corrosive environments without requiring costly sealed cabinets or purging systems.

 HR Series Integrating field devices seamlessly


Proactive maintenance through system visibility of device performance — 08 SD Series HART Analog I/O

Device integration capability

In today’s power generation and process industries, only about 10% of field instruments have a digital pathway back to the control system. This reduces smart devices to under utilized assets where the existing diagnostic and connection information residing in the field instruments is not utilized in system operations.

The HR Series seamlessly integrates intelligent field devices and protocols using PROFIBUS DP, HART, and Modbus TCP and RTU. This provides access to a wide range of intelligent field devices from both ABB and other third-party vendors including transmitters, actuators, motor control centers (MCC) and flame scanners. Each device’s resident information can then be used in control strategies and higher level applications. In addition to producing tighter and more reliable process control solutions, these solutions lower installation costs by reducing wiring and system footprint.

Intelligent Hart I/O

HR Series controllers seamlessly integrate HART field devices  through a variety of SD Series HART analog input and output modules. Besides the 4-20 mA primary variable, all secondary, tertiary and quaternary variables in a HART device can be accessed by Function Code control applications in the HR Series controller. Data can be calculated, used as part of a control strategy, or for display and alarm purposes at the system's HMI console.

SD Series HART I/O features include: 

 •  Each channel’s secondary/tertiary/quaternary   variables are available for use in control   applications

 •  Update rate of secondary/tertiary/quaternary   variables is less than one second (AI05 and   AO05)

 HR-Series  Securing your control investments

Protecting the integrity and confidentiality   of system data

The process and power industries face intensifying cyber security risks. In order to increase stability, security and robustness in its solutions, ABB has established an independent Device Security Assurance Center (DSAC) where cyber security robustness is tested as part of the product development process. The DSAC test facility uses state-of-the-art open source, commercial and proprietary robustness and vulnerability analysis tools. All Symphony Plus Ethernet-based devices - including HR Series products such as the BRC410, ICI800, ENM01   and IEB800 - are continually tested at the DSAC center in different configurations and with an explicit focus on operational performance. This ensures that all Symphony Plus products are robust, secure and of the highest quality.

Seamless upgrade path protects investments

True to ABB’s ‘Evolution without obsolescence’ commitment, HR Series products provide backward compatibility to previous generation Network 90, INFI 90, INFI 90 Open and Harmony hardware and software, including support for existing function code executions, custom user programs, and all foreign device interfaces. ABB's 'Evolution without obsolescence' ensures the protection of installed investments while providing the most predictable, cost-effective, risk-averse, and seamless way of introducing new functions and technology into a running plant.

Specifically, HR Series products: 

 • Replace previous generation rack products   on a form/fit/function basis 

 • Preserve installed I/O through simultaneous   connection to HR Series I/O, previous   generation rack and block I/O, SD Series I/O   and S800 I/O 

 • Use the same field-proven INFI 90 function   code algorithms as previous generation   controllers (ie, MFCxx and MFPxx controllers) 

 • Enhance existing Composer engineering tools   with device management capabilities

Further, HR Series and SD Series control networks, INFI-Net and PN800 (INFI-Net over Ethernet) respectively can be connected via a self-configuring INFI-Net to Ethernet bridge (IEB800 module). This allows for the easy expansion of existing INFI-Net communication networks with INFI-Net on Ethernet technology and SD Series DIN rail mounted products. Additionally, resident data from either network is available for use in control applications or for display in applications connected to the other.

HR-Series Efficient engineering tools for design   and maintenance

Robust – efficient – comprehensive

S+ Engineering is the comprehensive engineering tool set for HR Series based systems.  The unified workbench offers all the necessary functionality needed to engineer, configure, administrate, secure, commission and maintain every component in your Symphony Plus Control System - from control and I/O, field instrumentation and electrical devices to network architecture, and operations, engineering, and advanced system applications.

S+ Engineering’s seamless tool integration, powerful workflow automation, multi-user and remote access capabilities and comprehensive bulk import/export functions improve overall engineering efficiency. Integrated version control, version comparison and rollback framework offer progress tracking and significantly reduce commissioning time. Using intelligent bulk interfaces, S+ Engineering allows for full control of engineering data consistency in each phase of the project life cycle.

Secure user management

The simple and intuitive workbench interface allows engineers to configure user information for the Windows and Engineering databases. It allows and secures the creation of user profiles along with their roles and project access permissions through Role Based Access Control (RBAC). Audit trail functionality tracks and archives user actions including system changes made at any engineering workstation onto a central database. These events can then be archived in the system’s historian for long term security audit purposes.

Integrated control engineering

S+ Engineering allows for easy reuse and upgrade of previous generation Symphony, INFI 90 OPEN, INFI 90, and Network 90 control applications. In addition, the extensive reuse concept of S+ Engineering allows users to optimize plant design with field-proven solutions based on ABB’s in-depth experience in the power and water industries.

S+ Engineering’s Automation Architect provides for visual creation, editing, monitoring and tuning of control logic. Rather than textually programming strategies, the Automation Architect represents pre-defined control strategies as function blocks.  By connecting function blocks, users are able to easily specify the signal flow of a control strategy and visually define the control strategy.  Monitoring and tuning capabilities provide the ability to troubleshoot and maintain an operational system using the same information used to create the system.  

In addition to function blocks, S+ Engineering supports batch or sequential programming via the Batch Data Manager (BDM).  BDM is a family of engineering tools used for creating, editing, managing, downloading, and debugging Batch 90, sequential, and user-defined function code configurations.

Reusable standard solutions

S+ Engineering improves the quality of control strategy software by minimizing the risk of errors of starting from scratch. S+ Engineering allows users to define and maintain their field proven control logic through the use of it Control Logic Templates (CLT) and Configurable Function Codes (CFC).  

CLTs are thought of as control strategy blueprints. Its linking functionality allows users to define logic that is controlled by the template or can be modified on each configured instance.   Any subsequent changes made to a template can be propagated to all linked instances.  

CFCs allow engineers to create specific control logic using standard Harmony function codes and then save it as a package which can then be used as a standard Harmony function code in control logic design. This simplifies the control logic design and documentation by eliminating the need to re-write the entire CFC logic contents in every instance it is used in the control scheme. The CFC can be represented by a custom shape, control logic, defined inputs, defined outputs, defined specifications and tag mapping. Black box options secure user intellectual investments in their control solutions.

Device management

HART and PROFIBUS devices are fully integrated with Symphony Plus, yielding benefits far beyond reduced footprint and cable costs. The engineering suite supports configuration, commissioning and maintenance of HART and PROFIBUS devices using device type manager (DTM) technology. For field devices that have conventional device description files (GSD), a basic PROFIBUS DTM is available to allow standardized configuration. HART devices are integrated, configured and parameterized via standard HART protocol without the need for additional tools by using a standard HART DTM. Individual DTMs can be accessed from the engineering tool’s multiple data views, such as the system or location overview and others.   S+ Engineering includes automatic net calculation and loading of process items by using the device specific channel configuration generated from the DTM.

On-line features allow for proactive device monitoring and notification of problems with quick access to device alerts and high priority conditions. A built-in web view provides a Device Status Dashboard, as well as an Event Viewer and Device Details pages, allow for quick drill-down to identify device root problems and corresponding resolution. This enables to users to take decisive action to increase plant reliability while lowering maintenance costs.


ABB 7625013-S  

ABB 500TTM02 1MB150021R01161HF930712X010

ABB 500CMP04 HE401314/0001 1MRB150051R1

ABB 500CSP04 HE401314/0002 1MRB150051R2

ABB 500PB101 1MRB178009R0001 1MRB200064/C

ABB 500CPU03 1HDF700003R5122

ABB 500TRM02 1MRB150011R0001

ABB 500TRM02 1MRB150011R1

ABB 500SCM01 1MRB150004R0001 1MRB200059/C

ABB 500SCM01 1MRE450004R1

ABB 500BOM01 1MRB150023R0002

ABB 500MTM02 1MRB150020R0712 1HDF 930512 X010

ABB 500MTM02 1MRK001967-AA 1HDF 930512 X010

ABB 500MTM02 1MRB150020R1102 1HDF 930512 X010

ABB 500AIM02 1MRB150022R001 1HDF 930412 X010

ABB 500AIM02 1MRB150022 R0002Y 1HDF 930412 X010

ABB 500AIM02 1MRB150022 R0002 1HDF 930412 X010

ABB 500PSM02 1MRB150015R1 AD-272.100.20-01 AZ:C

ABB 500PSM03a 1MRB 150038 R1 894-030375D 136-011100H

ABB 500PSM03 1MRB 150038 R1 894-030375D 136-011100H

ABB 500BIM01 1MRB160024R0002

ABB 500BIM01 1MRB150024R0002

ABB 500BIO01 1MRB150005R0001 1MRB200060/E

ABB MVME162-010A

ABB PPD113 B01-25-111000 3BHE023784R2530

ABB SC560

ABB SPASI23


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