Home Energy & EV Charging
Solar-hydrogen hybrid systems for the household, paired with fast home EV charging — power that carries through the night and outlasts outages.
Learn more →Evctro designs and deploys solar-hydrogen power, AI-monitored infrastructure and electric mobility as one connected backbone — for homes, farms, hospitals, factories and the road.
Simplified system schematic — sun to storage to sector, monitored end to end
A single rooftop unit that generates electricity, usable heat and distilled water together: a PV/T collector feeds a wick-based evaporation chamber, PCM storage extends operating hours past sunset, and a multi-stage heat-pipe condenser recovers water in three cascading stages — the whole loop tuned continuously by an edge AI controller. The same distilled water and heat pathway is also Evctro's route to on-site hydrogen production.
We build energy systems that don't ask a sector to choose between solar and hydrogen, or between hardware and intelligence.
Evctro brings together power generation, storage, monitoring and mobility as one designed system, rather than separate products bolted together after the fact. Every deployment — a home, a farm, a clinic, a fleet — draws from the same underlying architecture: solar-hydrogen hybrid generation, AI and IoT oversight, and a digital twin that tracks performance in real time.
That approach lets us move a component proven in one sector — a fuel cell, a load-balancing model, a monitoring sensor — into another without starting from zero. It's also why carbon accounting and energy-efficiency reporting are built in from day one, not added later as an afterthought.
Solar and hydrogen paired for continuity — generation that doesn't stop when the sun does.
A single AIoT and digital-twin platform sits across every deployment, whatever the sector.
Designed around intermittent supply, rural distribution and dense urban retrofits alike.
Carbon credit and efficiency reporting are part of the system, giving every deployment a paper trail.
Each line is engineered to stand alone or to plug into the wider Evctro system — sharing power electronics, storage and the same monitoring layer.
Solar-hydrogen hybrid systems for the household, paired with fast home EV charging — power that carries through the night and outlasts outages.
Learn more →Solar-hydrogen hybrid systems built for irrigation pumps, cold storage and farm equipment on rural and off-grid connections.
Learn more →Photovoltaic-thermal tiles that generate electricity and usable heat from the same roof surface, in place of conventional roofing.
Learn more →A live digital replica of every site we power — sensors, inverters and storage watched and optimized continuously by AI.
Learn more →Connected monitoring and diagnostic devices, powered independent of grid reliability — built for clinics with intermittent supply.
Learn more →Measurement, verification and monetization of avoided emissions, plus efficiency audits for sites already up and running.
Learn more →Compact, solar-assisted electric pod vehicles for last-mile, campus and closed-loop urban mobility.
Learn more →The same seven modules, configured differently depending on who's drawing power from them.
Home energy, EV charging and PVT roof tiles for households seeking independence from grid outages.
HE-01 · PV-03 · AI-04Irrigation, cold storage and equipment power built around rural connections and seasonal demand.
AG-02 · CC-06AIoT diagnostic and monitoring devices with power continuity built in for clinics and outreach camps.
MD-05 · AI-04Load-balanced hybrid power plus digital-twin monitoring across production sites and facilities.
AI-04 · CC-06Public infrastructure, campus microgrids and civic mobility built to national clean-energy priorities.
PV-03 · AI-04 · CC-06POD e-mobility and EV charging infrastructure for campuses, fleets and last-mile networks.
EM-07 · HE-01Engineers and researchers across power electronics, EV hardware, applied AI and sustainable materials — the disciplines each Evctro module actually draws on.
A sample of the deployment formats Evctro works in. Replace this section with your own case studies and figures.
Sample content — swap in real project names, locations and figures before publishing.
Solar-hydrogen hybrid system delivering continuous household power and EV charging to a village cluster previously reliant on diesel backup.
Hybrid power for cold storage and irrigation pumps, cutting post-harvest spoilage across a multi-farm cooperative.
Grid-independent, AI-monitored diagnostic devices deployed across primary health centres with unreliable power supply.
Solar-assisted POD vehicles for last-mile transport across a university or corporate campus, paired with on-site charging.
Writing on solar-hydrogen hybrids, digital twins and energy policy. Sample entries — connect this section to your WordPress blog to pull in real posts.
A look at storage duration, degradation and cost over a ten-year system life.
6 min readHow photovoltaic-thermal tiles capture heat that standard panels waste.
4 min readWhat actually gets measured before an avoided-emissions claim can be sold.
7 min readThe sensor set that matters most once a fuel cell goes into daily service.
5 min read