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Alpha direct Balance base station

  • Device overview
  • Electric connection
  • Commissioning mode
  • Montage
  • Maintenance
  • Dismantling

Alpha direct Balance Switch NFC base station

  • Device overview
  • Register description
  • Automatic hydraulic balancing
  • Electric connection
  • Maintenance
  • Dismantling
  • LED signaling

FAQ: Alpha direct Balance / Balance Switch / Modbus

  • Is the OEM Alpha direct Balance System compatible with other thermostat components with their own controls?
  • Can any thermostats be used with the base station?
  • Does the OEM Alpha direct base station need to be calibrated?
  • Is the base station capable of cooling?
  • Do circuit control valves or other balancing devices need to be fitted to the distribution network?
  • Can a boiler be controlled?
  • Can the OEM Alpha direct Balance open the thermostat valve periodically during the summer to stop it from getting stuck?
  • Are flow indicators still required for the OEM Alpha direct Balance System?

FAQ: Alpha Direct base stations

  • Does the Alpha direct Balance base station replace conventional, manual hydraulic balancing?

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  • Alpha direct base station
  • AD_Automatisierter hydraulischer Abgleich
  • How it works

How it works

The integrated control system enables automated hydraulic balancing based on a temperature-based method. The system is designed to control thermally actuated valves which regulate the flow in surface heating systems (e.g. underfloor heating). It is particularly suitable for systems with several individual zones and slow-responding heat transfer elements. The aim of automated load balancing is to distribute the heat generator’s available heat output efficiently amongst several heating circuits that are active simultaneously, thereby ensuring that the connected rooms are supplied in line with demand without limiting instantaneous flow rates. Optimisation is achieved by coordinating the timing of the valve openings.

The heating requirements of the various circuits are picked up by the algorithm, which distributes the opening times of the thermal actuators evenly over a fixed period of time. Thus, even in hydraulically unbalanced systems, all circuits are supplied with sufficient heat. If possible, the circuits are not supplied with heat at the same time. This mode of operation is used only for inertial heating systems such as surface.


Note: A connected controller with a cycle time longer than 30 minutes cannot be taken into account when calculating the load distribution. Assigned outputs are switched directly to the controller output. Indication takes place in the switched-on state by a flashing input LED.


The prerequisite for automatic balancing is that the technical conditions (e.g. flow temperature, pump pressure, pipe routing, valve settings) allow all rooms to be heated evenly and correctly.
In heating systems with strong deviations from the mentioned conditions or in case of poor implementation (e. g. kinked pipe, pump pressure not constant) the following measures may be necessary:

  1. Gradually increase the flow rate via the presettable valve / screwed return connection of the problematic area.
  2. If the valve to this room is already set to full flow, gradually throttle the valves of the other rooms.
  3. If the first two measures are not sufficient, increase the pump pressure at the heating circuit circulating pump.
  4. As a last measure, increase the flow temperature of the heating circuits.

Video: How automatic hydronic balancing works

Updated on September 4, 2026
Applying for government grantsA practical guide for technicians: Hydraulic balancing using automated systems

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