Automation device for heating boilers – adjustment and configuration

An efficient heating system is essential for keeping our homes toasty and comfortable during the cold months. The boiler, which heats water for the radiators or underfloor heating to distribute warmth throughout the house, is one of the system’s most important parts.

In the past, boiler systems needed to be manually adjusted and monitored to guarantee optimal performance. But as technology has developed, automation tools have gained popularity as a means of managing and controlling boilers. By automating the heating process, these devices provide comfort, energy savings, and convenience.

Homeowners can remotely monitor their heating system, set schedules, and control temperatures with an automation device for boilers. This degree of control not only improves comfort but also aids in energy efficiency, which may result in lower heating costs.

These automation devices can be difficult to adjust and configure at first, but with the right help, it can be simple. Knowing how to set up and configure the device correctly guarantees that it works effectively and efficiently, customized to your home’s unique requirements.

We’ll go into the specifics of heating boiler automation devices in this post, including how they operate, how to set them up and adjust for best results, and the advantages they provide for homeowners looking for a more practical and effective heating option.


This kind of system’s primary goal is to stop equipment from operating in an unconventional manner. For instance, the safety device will cut off its feed in the event of a gaseous fuel leak, preventing an explosive fire.

Be aware that if the temperature is raised above that point, the safety system will activate and either totally shut down the boiler or lessen the intensity of the gas combustion.

You can stop processes from developing that could endanger the operation of equipment by using alternative types of automation for gas boilers.

Varieties of automatic security systems

The most common systems found in gas-type heating equipment are the following ones:

  • Ionization sensor. The device turns off the gas supply when fading the burner flame.
  • Maximum level control device. The system signals an insufficient amount of liquid in the boiler.
  • Thermometer. Allows you to control the temperature of the coolant.
  • The traction sensor. The device is designed to control the level of traction in the firebox.
  • Gas pressure sensor. The device allows you to control the pressure of combustible gas in the supply pipe.

Boilers with automatic adjustment feature not only the sensors on this list but also computing processor algorithms that kick in when the operator takes obviously incorrect actions.

In the world of home heating and insulation, the need for efficient and convenient solutions is paramount. One such solution is the automation device for heating boilers, offering a blend of ease and effectiveness in adjusting and configuring heating systems. This device simplifies the process of managing boiler settings, allowing homeowners to regulate temperature, timing, and other parameters with minimal effort. By automating these tasks, users can optimize energy usage, enhance comfort, and potentially save on heating costs. From scheduling heating cycles to fine-tuning temperature levels, the automation device empowers users to tailor their heating systems to suit their needs and preferences effortlessly. With its user-friendly interface and intuitive controls, this technology represents a significant step forward in making home heating more convenient, efficient, and environmentally friendly.


Although the automation device for a gas boiler is not very complicated, it is not advised to attempt independent repair and installation of such systems due to the possibility of even a small error causing an emergency or premature operation.

Crucial! All that is required for the safe operation of gas heating installations is a basic understanding of how these components function.

The automation of a gas boiler’s safety typically consists of an executive device or sensitive element. The first group consists of different sensors that react to shifting circumstances. These gadgets have an electronic contact that closes in case of an emergency. An electromagnet receives electric current via wires and uses it to generate mechanical work.

Principle of operation

A boiler room’s worth of installed components could be part of the automation system for gas boiler safety. The more of these devices that are used, the better, but since modern equipment is so dependable and of excellent quality, duplicate systems are not necessary. It is also not advised to alter the design of thermal equipment in light of this feature.

Only with the ability to operate intricate technical equipment can you independently change an automatic system’s proper settings. You should be familiar with each element’s basic operating principle for this purpose. The most often seen individual safety system mechanisms, which operate as follows:

  1. Saog. The emergency gas shutdown system consists of a sensor, power supply, control and alarm circuit. The sensor is triggered when the MPC of combustible gas in the air is exceeded.
  2. Flame sensor. The flame sensor is the most important element of automation for use in gas boilers of heating. There are several types of devices that work from changes in temperature or lighting.

It should be noted that indirect sensors, which measure variations in pressure or carbon monoxide levels in chimney pipes, can be installed in gas boilers.

  1. Gas pressure sensor. The most important element of safety automation, which covers the supply of gas with a significant reduction in pressure in the network pipe. After the resumption of gas supply, the valve will need to be opened manually.
  1. Thermorelele.With excessive heating of the boiler, the gas supply is automatically shut off. In such systems, a complete overlap of the pipe can be used, as well as the settings that reduce the amount of fuel supplied to the furnace. In addition to electronic sensors, mechanical ones are used, in which various solid substances are used, which expanding the traction associated with the valve and thus block the gas supply.
  1. Fluid level control systems. As a rule, such systems use the “float”, which is strictly connected to the lever that controls the electronic relay. Contacts are opened when the “float” is below the level safe for the operation of the boiler and the valve blocks the gas supply.

It is impossible to light the firebox if the container is not filled with enough coolant before the heat equipment is launched.

The stated components of the automation of natural gas boiler safety can be altered in different ways, but the fundamental goal of these systems never changes. When the boiler switches to an unsafe mode of operation, the primary "mission" of this kind of device is to either completely stop or restrict the supply of explosive material into the furnace.

Setting and adjustment

Security system self-configure should only be done after considering the particulars of how each component of a gas boiler operates. The best course of action is to invite a trained expert. A qualified equipment installer will not only configure the system but also walk you through the process of configuring a gas boiler on your own. If you decide to handle this work alone, at your own risk and peril, you should be aware that the following regulations govern the primary components of gas boiler automation:

  • The value of the maximum heating temperature is set.
  • It is installed, in devices equipped with microprocessor control, the time of disconnecting the boiler.

Take note: The remaining security system configuration pieces are frequently immutable and are consistently “hidden” from thermal equipment owners. If one of these products fails, you will have to buy and install new sensors.

The longevity of these home appliances’ trouble-free operation as well as the security of people’s lives and property will depend on how well the automation of thermal equipment’s safety systems performs. Because of this, selecting automatic sensors needs to be done very carefully.

Even though the costs are higher, purchasing goods from well-known manufacturers is more profitable because these components have a longer lifespan and their equipment’s dependability is comparable to that of less expensive, artisan-made alternatives. The most well-known producers of this kind of machinery are:

  • Eurosit. Automation for boilers produced under these brand has European quality and reliability. If necessary, you can purchase both individual elements of such systems and ready -made complexes of protection of heating equipment.

  • Orion. Domestic manufacturer of high -quality equipment for automatic heat equipment systems. At the same time, the company"s products are in the budget price range. Orion security systems are installed, as a rule, in floor gas boilers that were produced in Russia.

  • Honeywell. American company that has been automatic systems of the highest class for more than 100 years. Various valves and relay sold under this brand, with proper operation, will last at least 10 years.

You can use any automation sample produced by these companies without any concerns. Having multiple levels of control over production and pre-sale preparation virtually eliminates the possibility of receiving faulty goods.

Automation Device Adjustment and Configuration
Thermostat Set desired temperature; adjust heating schedule

There are many advantages for homeowners who automate the operation of their heating boilers, including increased efficiency and convenience. These automation devices ensure optimal performance and minimize energy waste by precisely controlling the heating system through the use of cutting-edge technologies. These devices give users the ability to customize their heating preferences to fit their lifestyle and comfort requirements, whether it be through temperature settings or heating cycle scheduling.

The capacity of automation devices to optimize energy consumption is one of their main benefits for heating boilers. By optimizing heating schedules and modifying temperature settings according to occupancy patterns, these devices contribute to the reduction of energy waste, resulting in decreased utility costs and a smaller environmental effect. Smart features like sensor-based controls and remote access are also integrated to further improve efficiency by enabling users to monitor and control their heating system at any time and from any location.

Furthermore, by giving homeowners real-time insights into the operation of their heating system, automation devices increase homeowners’ peace of mind. By means of user-friendly interfaces and extensive data analytics, users can monitor energy consumption, detect possible problems, and obtain prompt notifications for upkeep or fixes. By taking preventative measures, you not only increase the heating system’s lifespan but also guarantee year-round comfort.

Moreover, plug-and-play compatibility and user-friendly interfaces have made the installation and configuration of automation devices for heating boilers easier. These devices can be easily retrofitted by homeowners with their current heating systems, negating the need for expensive renovations or highly skilled technical personnel. Households find it simpler to adopt energy-efficient habits and make the shift to sustainable living thanks to this accessibility.

In summary, home heating technology has advanced significantly with the introduction of automation devices for boilers, which provide homeowners with unmatched convenience, efficiency, and control. Households can benefit from customized comfort, lower energy costs, and a smaller environmental effect by utilizing automation, which will ultimately result in a more sustainable and comfortable living environment for future generations.

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