Fronius Ohmpilot Instructions De Service page 88

Permet de régler en continu l'excédent de puissance de l'installation photovoltaïque dans une phase comprise entre 0 et 100 % (ou entre 0 et 3 kw) à l'aide d'une modulation en largeur d'impulsions
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(3)
(4)
(5)
(6)
NOTE!
Relay contacts can oxidize.
The voltage must be at least 15 V and the current at least 2 mA, so that the relay conta-
cts do not oxidise.
(7)
(8)
(9)
(10)
The Fronius Smart Meter records the current power at the feed-in point and transfers the
data to the inverter. By controlling the Ohmpilot, the inverter adjusts any surplus energy
that is available to zero. In detail, this takes place by continuously adjusting the heating
element connected to the Ohmpilot and by targeted switching on of the heat pump.
For activation, the heat pump must have a control input (e.g. SG Ready or grid operator
release). For example, the heat pump can be switched from operating state 2 (normal
operation) to operating state 3 (increased operation) as a result of activation of heat
pump input 2 by the relay. The heat pump can also be switched from operating state 1
(blocked time set by grid operator) to operating state 2 (normal operation) as a result of
activation of heat pump input 1 by the relay.
A description and list of SG Ready heat pumps can be found at:
pumpe.de/normen-technik/sg-ready/sg-ready-datenbank/
Relatively small surpluses are consumed using the heating element in a continuously va-
riable manner. From a certain surplus power, it makes sense to activate the heat pump,
as it is more efficient (e.g. COP (Coefficient of Performance) for hot water preparation up
to 53 °C = 2.5).
The optimal switching thresholds depend on:
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If no temperature sensor is fitted, the heat pump must be used to ensure the minimum
temperature is met. As an alternative, the Ohmpilot can also ensure the minimum tempe-
rature by activating the heat pump. This may result in electricity being sourced from the
grid. The maximum temperature must be set on the heating element thermostat and on
the heat pump. If the heating element does not have a thermostat, the Ohmpilot can also
carry out this task as an alternative (see chapter
This function can also be combined with a 3-phase heating element.
88
OUTPUT up to 3 kW variable, max. 13 A resistive load, spring balancer 1.5 - 2.5
mm²
Hot water boiler
Temperature sensor PT1000
Heat pump with SG Ready control input
Heating element (max. 3 kW)
Residual current circuit breaker
Automatic circuit breaker max. B16A
Ferrite (included in scope of supply)
Heat pump COP. The higher the temperature to which the hot water is heated, the
lower the COP.
The electrical heat pump output.
Feed-in tariff and the costs for purchasing electricity.
Reduction of the heat pump's start-up cycles = increase in service life of the heat
pump.
Thermal losses from the heat pump and the pipes.
http://www.waerme-
Optional settings
on page 108).

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