Smart apartments & houses
Lighting scenes, comfortable temperatures, automated curtains, and practical home routines. We select and integrate ready-made devices that suit your home and budget.
CUSTOM AUTOMATION & INTEGRATION
From apartment lighting and home climate control to fully custom automation. We connect proven devices, engineer custom hardware when needed, and build systems around the way you live and work.
ENGINEERED IN ARMENIA. BUILT AROUND YOU.
01 / BEYOND THE OFF-THE-SHELF
We automate apartments and houses: lighting, heating, cooling, ventilation, curtains, security, and everyday routines. We also build custom electronics and integrations for requirements that ready-made products cannot cover.
Lighting scenes, comfortable temperatures, automated curtains, and practical home routines. We select and integrate ready-made devices that suit your home and budget.
When your project needs more, we design the electronics, write the firmware, and build control logic around your requirements, with local operation and considered fallback behavior.
Control your garage, lighting, ventilation, heating, and cooling online from anywhere. Use your phone to check sensors, change settings, and receive notifications. Remote access needs an internet connection at home and on your device.
WHY WIRED
For a new build or renovation, wired automation gives everyday controls a dependable foundation. Wireless devices remain useful where running a cable is impractical.
WIRED / LOCAL CONTROLLER
One suitably sized controller can connect multiple sensors, wall switches and lighting circuits through appropriate inputs, relays and drivers. Its programmed routines can run directly on the controller.
WIRELESS / ZIGBEE
A Zigbee network needs a coordinator, often built into a hub. Many routines run on the hub or automation server; supported direct bindings can keep simple device-to-device controls working without it.
WIRED / LOCAL CONTROLLER
With logic stored on the controller, the connected switches and sensors can keep their core routines working without internet or a separate hub. Remote access still needs connectivity.
WIRELESS / ZIGBEE
Zigbee itself works locally and does not require internet. Offline behaviour depends on the chosen hub and integrations: cloud-based functions may stop when internet or a provider service is unavailable.
WIRED / LOCAL CONTROLLER
A direct wired signal avoids radio interference and mesh routing. Proper cabling and local logic help switches, sensors and lights respond consistently.
WIRELESS / ZIGBEE
A well-designed Zigbee mesh can respond quickly. Interference, weak coverage or routing problems can still cause delays, missed events or devices going offline.
WIRED / LOCAL CONTROLLER
Cable-powered sensors and switches need no individual battery replacements. Fewer battery-dependent inputs mean fewer routines interrupted by a flat battery.
WIRELESS / ZIGBEE
Battery-powered devices need monitoring and replacement batteries. If a required sensor goes flat, routines relying on its signal may fail; that does not mean the entire Zigbee network stops. Mains-powered Zigbee devices avoid this battery issue.
WIRED / LOCAL CONTROLLER
Documented wiring and accessible terminals make faults easier to trace, with no radio pairing for directly wired inputs. Wiring, power supplies and controllers still need inspection and occasional service.
WIRELESS / ZIGBEE
Some installations need coverage tuning, firmware updates, compatibility checks or occasional device re-pairing. Reliable operation depends on device choice, setup and ongoing support.
WIRED / LOCAL CONTROLLER
Best planned while walls are open: cabling adds installation work and upfront cost. A controller or power failure can affect everything connected to it, so manual overrides, separate zones and backup power should be considered.
WIRELESS / ZIGBEE
Useful for finished rooms, rentals and adding a sensor without opening walls. A hybrid system can combine wired everyday controls with carefully chosen wireless devices.
Our approach: wire the essential routines where practical, keep their logic local, and add wireless where it makes sense. The result depends on the design, equipment and installation—not just the connection type.
SMART GARAGE AUTOMATION
Arrive, park, work, leave. Your gate, garage door, sensors, lights, security, and backup power work together around your routine. Explore what a garage built around you can do.
Your phone or an in-car GPS device with a SIM card can trigger arrival. The parking gate opens first, followed by the garage door and welcoming lights.
A laser sensor detects the car leaving its space. The doorway sensor confirms it has cleared the entrance before the door closes and the departure routine opens the parking gate.
An outdoor keypad opens the garage when your phone or remote is unavailable. Access feedback makes it clear when the entry has been accepted.
Our modified UPS wakes only when the door needs to move, then switches off. Saving charge between uses can extend backup availability for days, depending on the battery and usage.
Combine automatic arming, unexpected door-opening detection, and fire or smoke sensors. Receive phone alerts, activate an alarm, or choose another response for your installation.
Human-presence sensors and recognized devices help the system know when the garage is empty. Once presence clears, automatic closing takes care of the door.
The doorway sensor blocks closing while a person or car is in the entrance. If an obstruction appears during closing, the door reverses and reopens.
Interactive demonstration · illustrative timing
Another sensor, a different arrival trigger, custom lighting, or existing equipment? We tailor the system to your garage and add the behavior you need.
Backup duration depends on battery condition, standby consumption, and door usage. Sensors and responses are selected for your installation.
SMART HOME LIGHTING
A hallway that notices you, measures the light, and understands which doors are open. From a gentle night path to shelf lighting and connected rooms, your home chooses the right light for the moment.
Home exampleInspired by our own home automation
Presence does not have to mean every light turns on. In bright conditions, night lights and closed-shelf ambience stay off. Decorative lighting can follow its own presence-based scene.
When you enter a dim hallway that is not very dark, shelf ambience comes on. That choice stays stable for the presence session, even if the measured light changes.
In very dark conditions, low wall and floor guidance comes on with presence while the main backlight is off. Closed shelves remain dark, and the decorative strip uses only its warm end pixels.
Each shelf has its own door sensor. With someone in the hallway, opening a door lights the matching compartment and the surrounding ambience. An open door alone cannot leave the lights on.
Outdoor motion and the entry-door sensor bring on the entrance light. The hallway welcome routine can also enable its backlight when arrival conditions are met.
The office uses the hallway’s light reading together with its own presence sensor. In the other direction, several lit rooms with open doors can request the hallway’s main lights.
Presence keeps useful light on while you are there. When you leave, shelf lighting and decorative effects switch off; main lighting follows its absence delay. Even an open cupboard cannot keep shelf lights running.
Optional additions can combine time, presence, light levels, and compatible dimmable fixtures. This example shows a tailored bedtime scene, rather than an existing routine in our home.
Interactive demonstration · illustrative layout and timing
We adapt the sensors, light levels, delays, and room connections to your home. Add dim-to-warm scenes, schedules, a guest mode, or a whole-home bedtime routine on request.
The first seven scenarios illustrate configured behavior from our home. “Your own routine” shows optional additions. Sensor thresholds, delays, and responses are tailored to each installation.
SMART HOME VENTILATION
Room temperatures, personal thermostat settings, and CO₂ readings work together. Motorized air dampers direct fresh air where it is needed, while compatible heating and cooling help each room move toward its own target.
Design exampleDesigned around your home
Set a temperature on each room thermostat. The controller compares actual readings with those targets and coordinates dampers with compatible heating or cooling.
A CO₂ sensor in each room helps identify ventilation demand. The system increases airflow to the room that needs it, even when its temperature is already comfortable.
Temperature and CO₂ are separate demands. Reaching a temperature target does not switch off the fresh air a room still needs.
With compatible heating, a room below its target can request warmth. The controller respects the central system mode and available capacity.
A night schedule can use bedroom targets and a quieter fan profile. Air-quality demand can still override quiet mode when configured.
Fallback behavior is designed for the installed equipment: detect stale readings, notify the owner, and use a defined airflow profile until reliable data returns.
Design demonstration · illustrative readings, thresholds, and timing
Add room thermostats, CO₂ sensors, motorized dampers, quiet schedules, humidity control, or a connection to your existing HVAC system. We design the control logic around the equipment you have.
Ventilation alone cannot guarantee a room temperature. Room targets depend on outdoor conditions, insulation, system capacity, and compatible heating or cooling. Airflow limits and CO₂ thresholds are configured for the installed system.
SMART HOME CLIMATE & HEATING
Choose a temperature for each room, or one target for your whole home. Room sensors, radiator valves, floor-heating circuits, your boiler, and compatible air conditioners work together to maintain it automatically.
Design exampleDesigned for your heating and cooling
Keep the bedroom cooler and the living room warmer. Every room sensor is compared with its own target, and each radiator or floor-heating valve responds independently.
Set one whole-home temperature. Cooler rooms keep heating while warmer rooms pause, so the system brings every room toward the same target without giving every valve the same command.
Choose the room comfort you want. The controller combines room demands and sends the boiler a supported heating request, so you do not need to keep adjusting the boiler to compensate for a cold or warm room.
Radiators and floor heating respond at different speeds. Separate valves let the controller adapt each circuit, with floor limits and a suitable water-temperature arrangement for the installation.
Compatible AC units can use the same room sensors and temperature targets. Cooling runs where needed, with mode coordination so heating and cooling do not fight each other in the same room.
Use a whole-home schedule or room-specific routines. An away profile can reduce demand, then restore your preferred room settings when the schedule or an approved arrival trigger calls for it.
Design demonstration · temperatures and timings are illustrative
We can integrate compatible gas boilers, radiator actuators, floor-heating manifolds, room thermostats, and AC units. Add schedules, window-open rules, guest settings, or phone control around your routine.
A shared target means each room is regulated toward the same temperature, within a configured tolerance. Results depend on insulation, sensor placement, and heating or cooling capacity. Boiler protections, circulation requirements, and equipment operating limits remain active.
02 / WHAT WE CAN BUILD
From familiar home comforts to unusual technical challenges. These examples show what we can build with ready-made devices, custom engineering, or a combination of both.
AIR & COMFORT
Connect CO₂, occupancy, dampers, and fans. Give each room the airflow it needs, with quiet hours and local control.
WATER & PUMPS
Bring tank levels, pressure, valves, and pumps into one coordinated system. Add leak detection and dry-run protection to the design.
LEGACY INTEGRATION
A custom gateway can translate between existing equipment and modern controls. Keep useful hardware and make its data accessible.
ENERGY & LOADS
Coordinate metering, EV charging, and flexible loads. Define what can pause and what needs to keep running when capacity is limited.
GROWING & IRRIGATION
Build irrigation and greenhouse controls around soil moisture, temperature, and your growing schedule—not a fixed timer alone.
BUSINESS MONITORING
Connect cold rooms, server spaces, and technical equipment to a monitoring system with useful alerts and a history of what happened.
HOME LIGHTING
Automate apartment or house lighting with dimming, motion sensors, schedules, and one-touch scenes for mornings, evenings, and leaving home. Keep familiar wall switches alongside app or voice control.
HOME CLIMATE
Bring heating, air conditioning, and ventilation into coordinated home control. Set room temperatures, occupancy schedules, and window-open rules using compatible equipment and sensors.
ILLUSTRATIVE USE CASES — EACH PROJECT IS ENGINEERED INDIVIDUALLY
03 / FROM “WHAT IF” TO WORKING
We map the equipment, the constraints, and what success should look like. No shopping list before we understand the job.
We plan and configure the right devices for your home or business. When standard products are not enough, we prototype and develop custom hardware and software.
Installation, real-world commissioning, clear documentation, and a support plan tailored to the project.
OPEN TECHNOLOGY. CUSTOM THINKING.
04 / LET’S MAKE IT HAPPEN
That’s our favorite kind of question. Tell us what you want to automate or connect—even if you’re not sure how it could work yet.