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Acoustical Messages - Victron energy Phoenix 12/850 Gebruiksaanwijzing

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In the table below you can find out what kind of blinking sequence belongs to which error.
Red LED conditions :
= LED blinking
= LED ON
= LED OFF
Time period (1 second)
→ Overload, output in current limit
IN A 'BATTERY VOLTAGE TOO LOW OR TOO HIGH' ERROR, THE
INVERTER WILL AUTOMATICALLY RESTART WHEN THE BATTERY
VOLTAGE IS IN NORMAL SPECIFIED RANGE AGAIN.
IN AN 'OVERLOADED OR SHORTED OUTPUT' ERROR, THE INVERTER
WILL AUTOMATICALLY RESTART AFTER APPROX. 18 SECONDS
IN AN 'INVERTER TEMPERATURE TOO HIGH' ERROR, THE INVERTER
WILL AUTOMATICALLY RESTART WHEN THE TEMPERATURE HAS
FALLEN TO AN ACCEPTABLE LEVEL AGAIN.
WARNING
IN A 'TOO HIGH INPUT RIPPLE VOLTAGE' ERROR, THE INVERTER WILL
NOT AUTOMATICALLY RESTART BUT NEEDS TO BE RESET MANUALLY.
Manual reset is neccesary to notify the user that something is wrong with the
inverter's installation (too small battery, too long or thin DC wires etc.)
3.2
Acoustic messages
To warn you before the inverter might shut down, it is equipped with an acoustic alarm. This can
be very useful when you are, for example, working with a computer that runs from the inverter.
The inverter will warn you just before it is going to shut down, so you can save or
before you lose power.
There are three kinds of acoustic messages depending on the cause of possible inverter
shutdown. These messages are related to the red LED blinking sequences mentioned previously.
Message 1: One beep per second. The battery voltage has reached a too low or too high
level. If the battery voltage respectively decreases or increases any further, the
inverter shuts down.
Message 2: Two beeps per second. The inverter will shut down soon due to an
overloaded output. Note that with heavy overloads the alarm will not sound due to
rapid inverter shut down. Normally the inverter warns approx. 10 seconds before
shutdown.
Message 3: Three beeps per second. The inverter will shut down when it's temperature rises
another two degrees Celsius.
12
Type of error
Battery voltage too low or too high
(one blink per second)
Overloaded or shorted output
(two blinks per second)
Inverter temperature too high. Cooling down
(three blinks per second)
Too high input ripple voltage
(four blinks per second)
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