D+H CPS-M CONTROL SYSTEMS
CPS-M control systems built around the project.
CPS-M is D+H’s modular control platform for complex smoke-control, natural-ventilation and facade-automation applications. EBSA uses it where the project needs a control architecture that goes beyond a predefined compact panel.
Each EBSA CPS-M system is engineered around the required sequence of operation, actuator loads, groups and zones, interfaces, monitoring and building integration, then documented, manufactured, configured and commissioned as one coordinated project solution.
Built around the project, not adapted to it.
PROJECT-ENGINEERED
Control architecture developed from the project’s required operation
LOCAL ENGINEERING
Panel architecture, documentation and system coordination developed by EBSA
D+H-AUTHORISED MANUFACTURE
CPS-M control panels manufactured locally in Australia by EBSA
CONFIGURED + COMMISSIONED
The project intent carried through configuration, interface testing and commissioning
WHEN CPS-M IS THE RIGHT ARCHITECTURE
Use CPS-M when project complexity requires a higher-capability control system.
CPS-M earns its place when the required sequence of operation, zoning, actuator load, networking, monitoring or building interfaces demand a more flexible architecture than a compact controller can provide.
01
MULTIPLE GROUPS + ZONES
Coordinate larger numbers of operable elements across defined control areas and operating modes.
02
COMPLEX OPERATING SEQUENCES
Configure project-specific priorities, inputs, outputs and operating relationships around the required building strategy.
03
NETWORKED CONTROL PANELS
Coordinate multiple CPS-M controllers and related system components where the project requires a distributed architecture.
04
DIGITAL DRIVE COMMUNICATION
Use compatible D+H ACB drives where bidirectional controller-to-drive communication adds project value.
05
BUILDING INTERFACES
Coordinate fire-system, BMS, mechanical and other third-party interfaces through the selected control architecture.
Simpler projects should remain on simpler D+H control pathways. CPS-M is the high-capability option when the project requirements justify it.
PROJECT-ENGINEERED ARCHITECTURE
The sequence of operation drives the panel architecture.
The starting point is not a standard panel size or a predefined number of groups. EBSA begins with how the building needs to operate, then develops the CPS-M architecture around the openings, actuator loads, zones, operating modes, interfaces and monitoring required by the project.
PROJECT REQUIREMENTS
OPENINGS + ACTUATOR LOADS
GROUPS + ZONES
FIRE + VENTILATION MODES
INTERFACES + MONITORING
CPS-M ARCHITECTURE
SHOP DRAWINGS + DOCUMENTATION
PANEL MANUFACTURE
CONFIGURATION
COMMISSIONING
We don’t force the project into a predefined control architecture. We engineer the control architecture around the project.
The finished panel is the physical result of the engineering process, not the starting point for it.
COMPLETE SYSTEM RESPONSIBILITY
One organisation understands the system from operable element to building interface.
CPS-M sits inside a larger operable-facade system. Reliable project delivery depends on the opening element, actuator, field wiring, control hardware, software and logic, sensors, building interfaces and commissioning all being coordinated around the same operating intent.
OPERABLE ELEMENT
ACTUATOR
FIELD WIRING
CPS-M PANEL
SOFTWARE + LOGIC
SENSORS + OPERATOR INPUTS
BMS / MECHANICAL / FIRE INTERFACES
COMMISSIONING
SERVICE + SUPPORT
OPENING + ACTUATION
Select the operable element, actuator type, load and movement strategy around the facade application.
POWER + FIELD WIRING
Coordinate panel loads, distribution, field cabling and terminations with the actuator architecture.
CONTROLS + LOGIC
Configure the required control functions, priorities, monitoring and operating relationships within the selected CPS-M architecture.
BUILDING INTERFACES
Coordinate the facade-control system with the fire strategy, BMS, mechanical systems and other project interfaces where required.
EBSA treats CPS-M as a complete facade-control system rather than panel supply in isolation.
MODULAR CONTROL ARCHITECTURE
Build the control system from the functions the project actually needs.
The D+H CPS-M platform combines modular power, actuator, input/output and network functions within a common control architecture. EBSA selects and configures the required functions around the project loads, groups, interfaces and operating modes rather than forcing the project into a fixed panel layout.
MODULAR ACTUATOR CONTROL
Build the connected drive architecture around the required actuator groups and project loads.
CONFIGURABLE INPUTS + OUTPUTS
Use configurable control points to support the project’s required commands, status, monitoring and interface functions.
ADCOMNET NETWORKING
Network CPS-M controllers and related D+H components where the project requires coordinated multi-panel operation.
SCS CONFIGURATION
Configure the selected CPS-M functions using the D+H software environment as part of project engineering and commissioning.
24 V + APPLICABLE 230 V ARCHITECTURES
CPS-M can support 24 V DC drives and, in applicable configurations, 230 V AC drive control within the modular system architecture.
The modular platform provides the building blocks. EBSA determines how those building blocks should be assembled and configured for the project.
COMMUNICATION + INTEGRATION
Use digital communication where it adds project value.
CPS-M can combine controller networking, compatible digital-drive communication, configurable inputs and outputs, and gateway-based building interfaces within one project architecture.
ACB DRIVE COMMUNICATION
With compatible D+H ACB drives, bidirectional communication between the controller and drive can support defined positioning, operating information and system diagnostics.
ADCOMNET
Use the D+H AdComNet network to coordinate CPS-M controllers and related system components across larger or distributed control architectures.
BUILDING-SYSTEM GATEWAYS
Where required by the selected architecture, gateway pathways can connect the facade-control system to building networks using protocols such as Modbus, BACnet or KNX.
STATUS + DIAGNOSTICS
Use available system information to support commissioning, fault identification, monitoring and ongoing service.
Communication technology is selected for the outcome the project needs, not added simply because the platform can support it.
COORDINATED OPERATING MODES
Coordinate daily ventilation and smoke-control priorities within one project strategy.
CPS-M can be used where the same operable facade serves both normal ventilation and smoke-control functions, or where a complex project requires coordinated control across separate operating areas. EBSA defines how normal commands, environmental inputs and building-system interfaces operate in day-to-day mode and how the required smoke-control sequence takes priority when initiated.
NORMAL VENTILATION
Operate selected groups for the project’s day-to-day natural-ventilation strategy.
WEATHER + ENVIRONMENTAL INPUTS
Coordinate applicable rain, wind, temperature, air-quality or other project inputs with normal ventilation operation.
SMOKE-CONTROL PRIORITY
Execute the required smoke-control response and override normal ventilation commands as defined by the project sequence.
RESET + RESTORE
Return the system to normal operation through the project-defined reset and restore process.
The operating sequence is engineered from the project requirements and carried through configuration and commissioning.
ENGINEERED + MANUFACTURED IN AUSTRALIA
Engineering, panel manufacture and configuration stay connected.
EBSA is authorised by D+H to manufacture CPS-M control panels locally in Australia. This allows the team developing the project architecture and documentation to stay connected to panel manufacture, configuration, interface testing and commissioning.
PROJECT ENGINEERING
Develop the panel architecture around the required operation, loads, groups, zones and interfaces.
PROJECT-SPECIFIC DOCUMENTATION
Produce EBSA shop drawings and system documentation that carry the control intent into coordination and construction.
LOCAL PANEL MANUFACTURE
Build the CPS-M panel in Australia using the selected D+H modular control platform and project-specific architecture.
CONFIGURATION + COMMISSIONING
Carry the intended sequence through software configuration, interface testing and site commissioning.
The value of local manufacture is not simply where the enclosure is assembled. It is that the project team understands why the system is built the way it is and carries that intent into the operating building.
FROM DESIGN INPUT TO HANDOVER
Carry the control intent through design, construction and commissioning.
A project-engineered control system needs project-engineered documentation and delivery. EBSA develops the CPS-M architecture into coordinated shop drawings, panel documentation, field-wiring requirements and interface information, then carries that information through manufacture, installation support, configuration and commissioning.
SHOP DRAWINGS
Document the project-specific panel architecture, actuator grouping and coordinated system arrangement for construction.
INTERFACE COORDINATION
Define the required connection points and responsibilities between the facade-control system and other building systems.
FIELD CABLING + TERMINATION
Coordinate field wiring and panel terminations with the actuator and control architecture.
CONFIGURATION + FUNCTIONAL TESTING
Configure the required operating sequence and test the system and interfaces during commissioning.
DESIGN INPUT
SYSTEM ARCHITECTURE
SHOP DRAWINGS
PANEL MANUFACTURE
FIELD WIRING + INSTALLATION
CONFIGURATION
INTERFACE TESTING
COMMISSIONING
HANDOVER
SERVICE + SUPPORT
The documentation, panel and commissioned system should all describe the same control architecture.
PROJECT-ENGINEERED IN PRACTICE
CPS-M architecture proven on complex operable facades.
FEATURED PROJECT
ATLASSIAN CENTRAL — SYDNEY
CPS-M control architecture across a multi-level operable facade.
EBSA’s Atlassian Central scope uses CPS-M control systems across the building’s habitat zones, coordinating facade actuation, networked controls and building-system interfaces within a major project architecture. The project demonstrates the role of CPS-M where the control system must scale across multiple levels, zones and interfaces rather than operate as a standalone panel.
MARVEL STADIUM — MELBOURNE
CPS-M control for operable louvres, natural ventilation and smoke-control operation.
EBSA’s Marvel Stadium works include LF550 louvre automation and CPS-M controls supporting day-to-day ventilation and smoke-control operation. The project provides direct technical proof of CPS-M panel hardware, modular controls, field wiring and battery-backed control architecture in an operating commercial facility.
FIRST BUILDING, BRADFIELD CITY CENTRE — SYDNEY
Louvre automation and CPS-M controls integrated with the wider building systems.
EBSA delivered LF550 frameless glass louvres, CDC actuators and CPS-M controls for First Building at Bradfield City Centre, demonstrating the connection between operable facade hardware, digital actuation, project controls and building integration.
TECHNICAL RESOURCES
CPS-M information for project teams and specifiers.
CPS-M SYSTEM OVERVIEW
Understand where the modular CPS-M architecture fits within the broader D+H control range.
WINDOW CONTROL SYSTEM SELECTION GUIDE
Compare typical control architectures from compact ventilation and smoke-control panels through to project-engineered CPS-M systems.
BMS WINDOW CONTROL GUIDE
Understand low-level interfaces, networked communication, gateways, status and building-system coordination.
ELECTRICAL + CABLING REQUIREMENTS
Coordinate actuator loads, power, field wiring and installation planning with the selected control architecture.
COMMISSIONING + FUNCTIONAL TESTING
Carry the required sequence of operation into interface testing, commissioning and handover.
CAD + BIM / PRODUCT DATA
Access controlled CPS-M technical data, drawings and BIM resources as they are approved for publication.
PROJECT-ENGINEERED CONTROLS
Bring the operating strategy to EBSA before the panel architecture is fixed.
For projects with multiple zones, complex interfaces, digital drives or combined smoke and natural-ventilation requirements, EBSA can develop the CPS-M architecture from the required sequence of operation through to local manufacture, configuration and commissioning.