Tesla Energy Ecosystem
Nine products. One intelligent system.
Individually, each Tesla energy product is excellent hardware. Together — and only when they are engineered together — they become a system that decides, every second, where each kilowatt-hour should go.
Interactive diagram
Follow a kilowatt-hour from the sun to the road.
Select any stage to see what happens to the energy, what governs the decision and what it is worth.
Components
What each part of the ecosystem does.
Tesla Solar Panels
Low-profile monocrystalline modules with concealed mounting and integrated flashing.
Tesla Solar Roof
Photovoltaic glass tiles that replace the roof covering entirely.
Powerwall
13.5 kWh AC-coupled storage with seamless backup and daily optimisation.
Powerwall 3
Integrated solar inverter, 11.5 kW continuous output, DC-coupled generation.
Backup Gateway
Grid metering, islanding control and the intelligence behind every app figure.
Wall Connector
Up to 22 kW AC charging with power sharing across multiple units.
Universal Wall Connector
The same hardware with an integrated adapter for every EV brand.
Tesla App
One interface for generation, storage, consumption, charging and modes.
Tesla Energy Platform
Fleet-scale monitoring, dispatch and virtual power plant participation.
System behaviour
The intelligence is in the decisions, not the hardware.
These fifteen behaviours are what separate a collection of equipment from an energy ecosystem.
Energy flow
Generation is used first, stored second and exported last — the reverse of an unmanaged system.
Battery storage
Surplus is captured at zero marginal cost and released when energy is most expensive.
Backup systems
Loss of supply is detected and islanded in milliseconds, with no interruption to the property.
Smart charging
Vehicles absorb surplus generation and cheap tariff hours, never the evening peak.
Grid interaction
Import, export and network support are managed against price signals in real time.
Off-grid living
With adequate generation, storage and control, the grid becomes optional rather than essential.
Grid independence
A measurable score: the share of consumption served from your own assets.
Peak shaving
The highest fifteen-minute demand of the year sets your capacity charge. The battery flattens it.
Load shifting
Flexible loads — hot water, climate, pool, vehicle — move into the cheapest hours automatically.
Storm Watch
Severe weather alerts trigger a full pre-charge before the event arrives.
Power monitoring
Generation, storage, consumption and charging measured independently, second by second.
Mobile control
Modes, reserve levels and charging schedules changed from anywhere.
Energy analytics
Historical performance, tariff simulation and anomaly detection.
Automatic optimisation
The controller learns the household and re-plans every night.
Demand response
Aggregated batteries support the network during stress events and are paid for it.
Integration
Why the installer matters more than the hardware.
Tesla equipment is standardised. The engineering around it is not: the earthing arrangement, the protection scheme, the backup circuit schedule, the metering position, the load management strategy and the grid-code compliance path all determine whether the system delivers what it promised.
Design
Load profile analysis, yield modelling, single-line diagrams and protection studies before any purchase decision.
Install
Certified installation, photographic quality control, full testing and regulatory certification.
Operate
24/7 monitoring, automated alerting, annual inspection and guaranteed response times.
Let's engineer your energy system.
Send us a year of electricity bills and a photo of your roof. We return a full engineering proposal with modelled production, savings and payback.
