Skip to Content
Engineering-led integration

Integrated energy,
engineered to operate.

Energy, critical-power, electrical and control solutions built around real operating needs. We begin with what must operate, how it should be protected and what the user needs to see.

Integrated energy and control installation
Who we are

Engineering the complete operating system

WDQ Energy Co. is an engineering-led provider of integrated energy, electrical, critical-power and control systems. Architecture, equipment selection, interfaces, delivery and support are guided by the real operating duty.

01

Understand the need

Identify loads, operating priorities, continuity needs and site constraints.

02

Select the architecture

Define how power, protection, control and information work together.

03

Coordinate the interfaces

Align equipment, panels, cables, controls and specialist inputs.

04

Deliver and support

Install, test, document and maintain the completed system.

Products and services

Every category shown with its own image and full scope

Open any card to see what the solution helps with, what WDQ provides, typical uses and the engineering difference.

Solar PV Systems
Energy systems

Solar PV Systems

Generate usable energy from available roof, land or parking space.

View engineering scope

What it helps with

  • Lower daytime dependence on purchased electricity.
  • Use suitable site space for on-site generation.
  • Support defined energy and operating priorities.

WDQ provides

  • Site, demand and usable-space assessment.
  • Array, inverter, protection and connection design.
  • Equipment supply, installation, testing and monitoring.

Typical uses

HomesFarmsSolar PumpingCommercial BuildingsParking Areas

Engineering differenceThe array, inverter, protection and connection are selected around the site and load.

Battery Energy Storage Systems
Energy systems

Battery Energy Storage Systems

Store energy and support selected loads according to a defined operating plan.

View engineering scope

Storage can shift solar energy, hold a planned reserve or support defined essential loads when the approved architecture allows.

What it helps with

  • Use stored energy after solar production falls.
  • Support selected loads during defined supply events.
  • Coordinate grid and generator use around a plan.

WDQ provides

  • Load profile and backup-duty assessment.
  • Battery, power-conversion and control architecture.
  • Safe integration, monitoring, testing and lifecycle support.

Typical uses

HomesWorkplacesCold RoomsOperational Sites

Engineering differenceCapacity and power are sized separately from the actual load, required duration and operating duty. A battery energy storage system is not a UPS; continuity and transfer performance depend on the selected topology and defined loads.

Hybrid Power Systems
Energy systems

Hybrid Power Systems

Coordinate solar, battery, grid and available backup sources as one operating system.

View engineering scope

Source priorities, reserve limits and the loads that may be reduced are defined before equipment is selected.

What it helps with

  • Support selected loads when one source is unavailable.
  • Use solar and stored energy more effectively.
  • Limit unnecessary generator running where conditions allow.

WDQ provides

  • Source, load and continuity assessment.
  • Coordinated controls, protection and changeover logic.
  • Integration, operating tests and clear user handover.

Typical uses

FarmsWater SystemsWorkplacesRemote Facilities

Engineering differenceEach source is assigned a clear role, priority and limit before the system is configured.

Solar-Diesel Generator Systems
Solar-diesel power

Solar-Diesel Generator Systems

Combine solar generation with diesel backup through coordinated control, protected transfer and defined generator operation.

View engineering scope

A standard ATS provides non-parallel transfer. Parallel operation is used only with approved synchronising control. The controller exchanges commands and status; it does not carry electrical power.

What it helps with

  • Reduce daytime generator fuel use where solar and load conditions allow.
  • Maintain selected loads when solar energy is insufficient or unavailable.
  • Automate generator start, stop, transfer and load management.

WDQ provides

  • Load, solar-resource and generator-duty assessment.
  • PV, generator, ATS/AMF or approved synchronising-control architecture.
  • Protection, controls, commissioning, monitoring and operating setup.

Typical uses

FarmsWater SystemsRemote FacilitiesWorkshops

Engineering differenceSolar contribution, generator loading limits, transfer conditions and load priorities are engineered together - not configured as separate equipment packages.

Uninterruptible Power Supply Systems
Critical power

Uninterruptible Power Supply Systems

Keep sensitive electrical equipment powered through supply disturbances.

View engineering scope

What it helps with

  • Bridge short interruptions without equipment shutdown.
  • Condition incoming power for sensitive loads.
  • Maintain a controlled service and bypass path.

WDQ provides

  • Load criticality and required-runtime assessment.
  • UPS, battery and controlled-bypass selection.
  • Installation coordination, commissioning and maintenance planning.

Typical uses

Data & IT EquipmentControl SystemsSecurity SystemsEssential Electronics

Engineering differenceTopology, runtime, redundancy and bypass are matched to the consequence of interruption.

Central Battery & Emergency Lighting
Emergency systems

Central Battery & Emergency Lighting

Power and supervise emergency lighting and exit signs from a central system.

View engineering scope

What it helps with

  • Keep escape routes visible during a supply loss.
  • Supervise emergency circuits and supported devices.
  • Centralise testing, alarms and battery maintenance.

WDQ provides

  • Emergency-lighting load and duration assessment.
  • Central power unit, distribution and circuit design.
  • Installation, functional testing and system handover.

Typical uses

Commercial BuildingsWarehousesWorkplacesPublic Areas

Engineering differenceThe system is designed around escape routes, operating duration and supervised emergency-lighting circuits, not general backup power.

Electrical Distribution Systems
Electrical systems

Electrical Distribution Systems

Distribute power safely from the available sources to the facility loads.

View engineering scope

A clear distribution path makes power easier to isolate, measure, maintain and extend within the approved design.

What it helps with

  • Deliver the right supply to each connected duty.
  • Separate general, essential and sensitive loads.
  • Create clear, maintainable paths from source to load.

WDQ provides

  • Load assessment and distribution architecture.
  • Switchboard, feeder and cable-containment coordination.
  • Protection, labelling, testing and documentation.

Typical uses

Commercial BuildingsWorkshopsWarehousesFarms

Engineering differenceEvery feeder and distribution point is coordinated with its connected duty, protection and access needs.

LV Panels & Assemblies
Electrical systems

LV Panels & Assemblies

Provide the right low-voltage panel, protection and metering arrangement for each electrical duty.

View engineering scope

Engineered by WDQ and assembled through approved panel-building partners.

What it helps with

  • Protect and isolate incoming and outgoing circuits.
  • Organise distribution, control and source functions.
  • Make electrical status and energy use visible.

WDQ provides

  • Duty-specific panel architecture and component selection.
  • Protection, metering, control and internal arrangement.
  • Partner assembly oversight, inspection and testing.

Typical uses

Main DistributionSub-distributionFinal DistributionControl Applications

Engineering differenceThe panel is defined by its duty and interfaces, not selected as a generic enclosure.

MCC, VFD & Motor Control
Motor-driven systems

MCC, VFD & Motor Control

Start, protect and control motors according to the equipment and process duty.

View engineering scope

A motor control centre groups motor feeders; variable-frequency drives regulate motor speed when the duty requires it.

What it helps with

  • Manage electrical and mechanical stress during starting.
  • Match pump or fan speed to demand.
  • Provide motor protection, status and alarms.

WDQ provides

  • Motor, driven-load and source assessment.
  • MCC, starter, drive and control selection.
  • Wiring, integration, setup and functional testing.

Typical uses

PumpsFansConveyorsRefrigeration

Engineering differenceThe control method is selected from the motor, driven equipment and process requirement, not from motor rating alone.

PLC, HMI & Automation
Control & automation

PLC, HMI & Automation

Turn operating requirements into controlled sequences, interlocks, alarms and operator information.

View engineering scope

What it helps with

  • Run repeatable operating sequences.
  • Block unsafe or conflicting actions.
  • Present clear status, alarms and operator controls.

WDQ provides

  • Functional description and signal definition.
  • Control panels, PLC logic and HMI development.
  • Field integration, testing and user handover.

Typical uses

Water SystemsProduction EquipmentBuilding ServicesSite Utilities

Engineering differenceThe PLC runs the control logic; the HMI gives operators clear status and commands. Automation begins with the required sequence and safe responses, then hardware and software are built around them.

Solar Pumping Systems
Water & agriculture

Solar Pumping Systems

Use solar energy to move water according to the required flow, head and operating schedule.

View engineering scope

Also available: grid or generator support, AC VFD systems, duty/standby control, level and pressure sensing, and remote alarms.

What it helps with

  • Pump water during available solar hours.
  • Reduce dependence on grid or diesel for daytime pumping.
  • Coordinate irrigation, tank storage and water demand.

WDQ provides

  • Flow, head, well and operating-duty assessment.
  • PV array, Solar Pump Drive and motor-protection design.
  • Installation, controls, sensors, testing and monitoring.

Typical uses

WellsIrrigationWater StorageGreenhousesLivestock Facilities

Engineering differenceThe PV array and Solar Pump Drive are sized from the required water duty, total dynamic head and operating schedule - not from motor power alone.

Monitoring, EMS & SCADA
Control & monitoring

Monitoring, EMS & SCADA

Turn system and energy data into clear status, alarms, trends and reports.

View engineering scope

An EMS focuses on energy use; SCADA brings broader equipment status and control into one view.

What it helps with

  • See equipment condition and active alarms.
  • Compare energy use and operating trends.
  • Support decisions with recorded information.

WDQ provides

  • Meters, gateways and signal architecture.
  • Clear screens, alarm priorities, trends and reports.
  • Local and remote monitoring, integration and commissioning.

Typical uses

Energy SystemsWater SystemsElectrical RoomsMulti-equipment Sites

Engineering differenceOnly useful data is collected, with alarm priorities and views designed around real operator decisions.

EV Charging & Load Management
Process & infrastructure

EV Charging & Load Management

Add vehicle charging without losing control of the site available capacity.

View engineering scope

Dynamic load management adjusts charging demand so the site remains within its available electrical capacity.

What it helps with

  • Add charging where electrical capacity is limited.
  • Share available power across multiple chargers.
  • Avoid unmanaged charging peaks.

WDQ provides

  • Site-capacity and charging-demand assessment.
  • Charger, distribution, protection and connection design.
  • Load controls, installation, setup and testing.

Typical uses

HomesWorkplacesParking AreasVehicle Fleets

Engineering differenceCharger quantity and speed are planned against real parking patterns, dwell time and available site power.

Power Quality & Metering
Electrical insight

Power Quality & Metering

Measure electrical conditions before selecting the correction.

View engineering scope

Power quality describes how consistently voltage and current support connected equipment; metering records conditions over a representative operating period.

What it helps with

  • Identify the cause of trips, heating or unstable performance.
  • Separate visible symptoms from underlying electrical conditions.
  • Verify that corrective work performs as intended.

WDQ provides

  • Temporary and permanent electrical metering.
  • Power-quality, thermal and operating assessment.
  • Targeted correction design and post-work verification.

Typical uses

BuildingsWorkshopsMotor LoadsSensitive Equipment

Engineering differenceCorrective equipment is selected after representative measurement, not from assumptions or a single meter reading.

Engineering & Detailed Design
Engineering & delivery

Engineering & Detailed Design

Turn site information and operating needs into a coordinated technical direction.

View engineering scope

Equipment selection follows the approved duty, environment, interfaces and maintainability needs.

What we do

  • Confirm loads, operating priorities, site conditions and system boundaries.
  • Develop the system architecture and select suitable equipment.
  • Coordinate drawings, calculations, schedules and technical interfaces.

What the client receives

  • System architecture.
  • Coordinated drawings and schedules.
  • Defined scope and interfaces.

Typical uses

EnergyElectricalCritical PowerControl

Engineering differenceThe design basis is agreed before equipment commitments are made, keeping decisions traceable to the operating need.

Supply & Installation
Engineering & delivery

Supply & Installation

Deliver and install the approved equipment without losing the design intent.

View engineering scope

From incoming equipment checks to final field connections, procurement and installation are coordinated against the approved technical documents.

What we do

  • Procure approved equipment and coordinate specialist suppliers.
  • Plan access, routing, mounting, containment and terminations.
  • Install, label and inspect equipment against the approved documents.

What the client receives

  • Installed equipment that matches the approved scope.
  • Organised cables, containment, terminations and interfaces.
  • Inspection records and a clear route to commissioning.

Typical uses

Equipment SupplyContainmentField InstallationInspection

Engineering differenceProcurement and site work remain tied to the design, so substitutions and interfaces are controlled before installation.

Testing & Commissioning
Engineering & delivery

Testing & Commissioning

Verify that equipment, interfaces and operating modes work as intended.

View engineering scope

Testing progresses from individual circuits and signals to complete operating scenarios, including defined transitions and safe responses.

What we do

  • Complete installation, continuity, insulation and loop checks.
  • Test source transfers, controls, interlocks, alarms and operating modes.
  • Commission the integrated system and record approved settings.

What the client receives

  • Functional test and commissioning records.
  • Verified operating sequences and alarm responses.
  • Settings, handover information and identified corrective actions.

Typical uses

ProtectionControlsSettingsSoftware & Communication

Engineering differenceWe test the interactions between equipment, not only whether each item powers on.

Maintenance & Lifecycle Support
Engineering & delivery

Maintenance & Lifecycle Support

Maintain performance through inspection, evidence, settings and corrective action.

View engineering scope

Findings are recorded so future service starts from evidence, not from memory.

What we do

  • Inspect, clean and measure equipment at planned intervals.
  • Review alarms, events, settings and condition trends.
  • Diagnose issues and coordinate corrective work.

What the client receives

  • Evidence-based maintenance findings.
  • Updated records, settings and software backups where applicable.
  • Clear priorities for corrective action and future service.

Typical uses

Thermal InspectionMeasurementsAlarm ReviewDiagnostics

Engineering differenceLifecycle support keeps the information needed to operate and maintain the system current, not just the equipment in service.

Engineering difference

Start with the load. Engineer the whole system.

WDQ defines equipment roles, priorities, limits, interfaces and safe responses before configuration and installation. The result is a coordinated operating system rather than a collection of disconnected products.

Energy architectureGeneration, storage, grid and backup sources each receive a defined role, priority and limit.
Protection and continuityTopology, runtime, transfer, redundancy and bypass follow the consequence of interruption.
Control and visibilitySequences, interlocks, alarms and screens are built around safe operator decisions.
Evidence-led verificationTesting proves interfaces and operating scenarios, not only whether equipment powers on.
Engineering and delivery

From verified information to lifecycle support

Engineering & Detailed Design
01

Engineering & Detailed Design

Confirm loads and boundaries, develop the system architecture, and coordinate drawings, calculations, schedules and interfaces.

Supply & Installation
02

Supply & Installation

Procure approved equipment and control routing, mounting, containment, terminations and field interfaces.

Testing & Commissioning
03

Testing & Commissioning

Check circuits and signals, then test transfers, controls, interlocks, alarms, operating modes and safe responses.

Maintenance & Lifecycle Support
04

Maintenance & Lifecycle Support

Use inspection, measurements, alarm review and diagnostics to keep records and system performance current.

Applications

From operating need to the right solution

Homes, farms, commercial spaces and operating sites have different loads, priorities and constraints. WDQ begins with the need, then defines the technical path.

Home

Home

Solar energy, selected backup and managed charging.

Farm or Water System

Farm or Water System

Solar pumping, irrigation control and remote visibility.

Commercial Building

Commercial Building

Distribution, continuity and energy management.

Workplace

Workplace

Solar, protected loads and managed charging.

Workshop or Warehouse

Workshop or Warehouse

Motor control, power quality and distribution.

Cold Room or Motor-driven Operation

Cold Room or Motor-driven Operation

Continuity, controls and operational alarms.

How to engage

Define the operating need before selecting equipment

01

Share the operating need

Describe the load, concern, desired outcome and available site information.

02

WDQ assesses the site and system

We review sources, interfaces, constraints and operating duty.

03

Define the technical direction

The architecture, equipment basis, interfaces and delivery scope are agreed.

Start with the operating need

Tell us what must operate.

Describe the load, concern, desired outcome and available site information. WDQ will assess the sources, interfaces, constraints and operating duty before defining the technical direction.

Websitewww.wdq-e.com
Before publishingReplace this note with the confirmed telephone number, email address and physical address.
Thank you. Your enquiry has been submitted to WDQ Energy.
WDQ Energy Co. - Energy · Critical Power · Electrical · Control