The purpose of the system:
• Energy efficiency and realization of about 25% savings in electricity costs.
• Obtaining the ability to control and control all IR-based air conditioning and lighting systems.
• Controlling and turning off the projector system (very high time-based maintenance expenses - changing bulbs).
• Ability to implement information (usage of classrooms and workrooms, attendance, activity at unreasonable hours).
• Preservation of the air conditioning systems by controlled operation and savings on breakdowns!
• Prevention of electricity theft / electricity leakage.
• Connection to additional control systems (city lighting, water leakage, access control, etc.)
Contents of a controlled room (regardless of the WIFI provided by the guest):
• IR unit for the air conditioner that includes transmission + reception capabilities for receiving remote control indications and sending IR messages (activation, shutdown, temperature control).
• The IR unit transmits to the control system several communication options:
ZWAVE
Wi-Fi
RF(433Mhz)
• A unique remote that activates the IR control unit (to receive a true report) and prevent FALSE POSITIVE.
• Wireless presence sensor (to receive an indication of the presence of people in the space).
• Wireless consumption controller (installed in the power consumption socket of the air conditioner).
To receive a true indication of the condition of the air conditioner - even if on/off in a direct configuration (not through the control system), the controller communicates with Zwave technology to the control system.
• Lighting controller - enables control and control of the lighting system as part of the energy efficiency system - the controller communicates with Zwave technology to the control system.
• A digital circuit breaker (3 sessions) allows control and control of the lighting system as part of the energy efficiency system - the controller communicates with Zwave technology to the control system.
LAST MILE hardware solutions:

Controller DTGW
• Connected in an IP network to a router.
• Is an Access Point capable of receiving a direct WiFi connection to it as a GW as a private network.
• Manages RF lighting end units, dimmers and shutters at 230V and scrolling screens for projection screens in classrooms at 24V.
• Dimmer in the global Z-Wave protocol and standards for smart power management systems.
Produced in Israel and approved by the Ministry of Communications at the frequency 915Mhz-917Mhz.
• Controls through a connection to an IP adapter on KNX systems including lighting, dimmers, scroll screens, detectors and temperature switches.
• Manages the air conditioner units by two means of connection:
Control of VRF air conditioners through connection through Coolmaster.
Control of air conditioners supported by an IR remote control using an end unit (blue and white) that receives the ZWAVE/RF command and transmits IR to control the air conditioner.
It should be noted that our controller is the only one that knows how to give a command that will give the real answer for turning on or off when the air conditioner is in the opposite position.
• Each air conditioner control controller has a temperature sensor that can be used to perform temperature-based scenarios.
• Connects to existing / installed alarm systems and receives indications from the detectors to produce activation of systems according to predefined scenarios.
The best accessibility solution for intelligent control of any building, school office or campus.
The Z-Wave based controller uses Wi-Fi and Bluetooth to easily connect all the components of the smart space.
Its initial installation on any website is easy and intuitive and is performed using PC, iOS or Android devices. Preconfigured to support Z-Wave products and sensors, AV systems and HVAC systems, this central controller offers central control and logical connection of smart switches, smart blinds and screens, temperature sensors, hot water heaters, air conditioners (IR and VRF), smart locks and more.
Controlled glass breaker 3 buttons
The smart circuit breaker communicates with the Hub control system via autonomous wireless ZWAVE communication (the L3 button can also be designed as a general shutdown button including turning off the air conditioner -IR)

Wireless MOTION detector
Powered by battery (no need for infrastructure)
Communicates in a wireless ZWAVE communication configuration with a control system
IR air conditioner controller
A controller connected to the system in ZWAVE/RF/WIFI on a private network and transmits IR to the air conditioner according to a command from the control system and/or according to scenarios.
• The controller has all the IR protocols for the known air conditioners and protocols can be added as needed.
• The controller has a temperature sensor that can be used to manage the operation of the air conditioner according to a temperature range.
• The controller receives commands from the air conditioner's source remote control and translates them into real activity in the air conditioner's management system (in the cloud).

Power consumption meter
Reported consumption meter (communication - LAN, cellular or WIFI) measurement using a secondary current that allows consumption measurement in a single-phase/three-phase configuration, including systems over 250A.
The system complies with CE international standards as well as with the standards of the Ministry of Communications regarding RF transmissions and the Standards Institute regarding electrical safety standards.
Structure management board flap:

Scheduling management in the system:

Scenario management (rules engine)



