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Comparison Luxeon AVR-500D 0.5 kVA / 350 W vs Luxeon AVR-500 0.5 kVA / 350 W

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Luxeon AVR-500D 0.5 kVA / 350 W
Luxeon AVR-500 0.5 kVA / 350 W
Luxeon AVR-500D 0.5 kVA / 350 WLuxeon AVR-500 0.5 kVA / 350 W
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AVR typerelayrelay
Input voltage230V (1 phase)230V (1 phase)
Power350 W350 W
Power0.5 kVA0.5 kVA
Specs
Input voltage range140-260 V140-260 V
Output voltage accuracy (±)8 %
Voltmeterdigitalanalogue
Sockets
Grounded sockets11
Protection levels
Protection
overheating
short circuit
overload
over / under voltage
overheating
short circuit
overload
over / under voltage
General
Installation
floor
floor
Coolingpassivepassive
Carrying handle
Dimensions95x110x190 mm
Weight1.8 kg
Added to E-Catalogmarch 2014march 2014

Output voltage accuracy (±)

The largest deviation from the nominal output voltage (230 V or 400 V, depending on the number of phases), which the regulator allows when operating in the normal input voltage range (see above). The smaller this deviation, the more efficiently the device works, the more accurately it adapts to “changes in the situation” and the less voltage fluctuations the connected load is exposed to.

When choosing for this parameter, it is worth considering first of all how demanding the connected devices are for voltage stability. On the one hand, high stability is good for any device, on the other hand, it usually means a high price. Accordingly, it usually does not make sense to buy an advanced stabilizer for an unpretentious load like light bulbs and heaters, but for sensitive devices like audio systems or computers, it can be very useful.

Voltmeter

The type of voltmeter provided in the design of the stabilizer, or rather, the type of scale used by this device. By itself, this voltmeter allows you to monitor the voltage — usually both at the input and at the output — which makes it easier to monitor the operation of the stabilizer. For this, two separate scales are most often provided, but there are also "single" voltmeters, with a switch to select between input and output voltage. And according to the type of scales, there are such options:

— Analogue. Analogue voltmeters are equipped with a traditional type scale — with graduations and an arrow printed on it. They are simpler and cheaper than digital ones, but less accurate — even in the thinnest devices, the error of indications can be 5-10 V only because of the peculiarities of reading information from such a scale. And in some inexpensive models, analogue voltmeters play the role of general indicators rather than precision instruments. At the same time, for most everyday tasks, such accuracy is quite enough.

— Digital. In such voltmeters, the role of the scale is played by a digital indicator, on which voltage values can be displayed with an accuracy of up to a volt — this is the main advantage of this option over the analogue one. Of the shortcomings, it is worth noting the complexity and rather high cost of digital pointers. In addition, such high accuracy can be critical in the professional field, but in ev...eryday life it is not always required. Accordingly, in low-cost low-power stabilizers, a digital voltmeter is often more of a marketing ploy than a real need.
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Luxeon AVR-500 often compared