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Comparison Electrolux LKK 664200 X stainless steel vs Electrolux LKK 660200 X stainless steel

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Electrolux LKK 664200 X stainless steel
Electrolux LKK 660200 X stainless steel
Electrolux LKK 664200 X stainless steelElectrolux LKK 660200 X stainless steel
Outdated ProductOutdated Product
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Hob typegasgas
Burner controlsrotary knobsrotary knobs
Oven
Oven typeelectricelectric
Oven capacity58 L58 L
Minimum temperature50 °C
Max. temperature250 °C
Power2.5 kW
Features
thermostat
timer
convection
electric grill
steam cooking
oven lighting
thermostat
timer
convection
electric grill
steam cooking /SteamBake/
oven lighting
Number of cooking modes9
Oven cleaningcatalytictraditional
Guidesframeframe
Number of glass in door22
Hob
Hob materialstainless steelstainless steel
Number of gas burners44
Turbo burners1
Burner gratescast ironcast iron
More features
Gas controlhobhob
Auto ignitionhob
Display
Lidglassglass
More specs
Energy classA
Connected load2.5 kW2.5 kW
Dimensions (HxWxD)85.7x60x60 cm85.7x60x60 cm
Country of originRomaniaRomania
Color
Added to E-Catalogseptember 2023july 2023

Minimum temperature

The lowest temperature the oven can provide. Usually, it is in the range of +30 to +50 ˚C. So, for example, the minimum heating temperature at +30 ˚C allows you to defrost products. Models with a minimum of 40 ˚C and 50 ˚C allow you to heat ready meals, heat tableware (before serving), dry rusk, etc.

Max. temperature

The highest temperature that the oven can reach during normal operation. The minimum value in modern models is 230 °C. However, even this low temperature is considered sufficient for most simple dishes. The average indicator can be called 240 – 250 °C. Such heating is provided by most modern ovens. And the most advanced models can heat up to 300 °C or more. Such capabilities will be useful for some specific recipes that require high temperatures.

Power

Rated power of the oven installed in the stove. Specified only for electric ovens (see above). When determining this parameter, the power of all heaters and other devices installed in the oven (grill, convector, motorized spit, etc.) is taken into account; in other words, this item indicates the maximum power consumption.

This data is useful primarily for assessing electricity consumption, as well as the connected load during operation. But only ovens with similar functionality can be compared with each other in terms of power — for example, two models with convection. Otherwise, the comparison may be incorrect.

Number of cooking modes

It is the number of cooking modes provided in the design of the oven. This item shows the typical cooking modes — for example, “heating”, “heating + convection”, etc. Accordingly, this parameter is highly dependent on additional equipment. However, even in similar models, the number of modes may be different. In general, the more there are, the more opportunities for cooking, and the easier it will be to choose the optimal mode for a specific situation.

Oven cleaning

It is the method of cleaning the inner surface provided in the design of the oven. In addition to traditional and more advanced steam cleaning, there are catalytic and pyrolytic cleaning. More about them:

— Traditional. This option assumes the absence of any devices that facilitate cleaning: you have to wash the oven manually, using ordinary detergents and cleaning products. Such a procedure can be quite troublesome and time-consuming, but such ovens are much cheaper than similar models with more advanced types of cleaning.

— Pyrolytic. Cleaning with high temperature. Dirt on the interior surfaces of the oven is burned to ash, which can then be easily removed without using detergents. At the same time, pyrolytic cleaning equally effectively handles all types of dirt, both new and old. The disadvantages of such a system are the duration of cleaning (sometimes up to several hours), high cost, and significant consumption of resources (electricity or gas, depending on the type of oven). In addition, during the operation of the cleaning system, unpleasant odours often arise, generated by the combustion of contaminants in the oven.

— Catalytic. Ovens with this type of cleaning have a special coating on the inner surface that breaks down grease on the oven walls. Fat disintegration is accelerated at high temperatures; the oven is thus self-cleaning t...o a certain extent. However, the efficiency of catalytic cleaning is lower than that of pyrolytic cleaning. It is unable to cope with the entire amount of fat on the walls. Therefore, such an oven should be washed from time to time. On the other hand, ovens with catalytic cleaning are cheaper than ones with pyrolytic cleaning. And the cleaning itself does not require additional electricity/gas costs, nor is time-consuming (except for washing/wiping).

— Steam cleaning. Cleaning the oven with heated steam. A certain volume of water is poured into a baking sheet or another container, the container is placed in the oven and the cleaning mode is turned on. Due to heating, the water evaporates, and the heated steam softens the dirt on the walls and partially disintegrates the fat. After the end of the programme, it is enough to wipe the oven with a damp cloth. Such a cleaning requires less time and resources than pyrolysis and often turns out to be more effective than catalytic — steam can soften even old dried-up contaminants. At the same time, these ovens are relatively inexpensive. At the same time, this mode does not guarantee to cope with any contamination. It is possible that after the end of the steam cleaning, the oven will have to be washed traditionally.

Turbo burners

The number of gas burners in which the flame is located not in one, as in standard burners, but in two (or three) rows — in other words, in the form of two (three) rings, one inside the other. Such burners have more power than traditional single-row ones and heat the bottom of the pan more evenly, which can be especially useful when frying. On the other hand, the need for such a heating mode arises quite rarely, and much more gas is consumed than during the operation of a classic burner. As a result, even in advanced stoves, the number of turbo burners rarely exceeds 1.

Auto ignition

The type of auto-ignition provided in the stove.

Auto-ignition systems are used only for gas burners and ovens. They work based on an electric spark, from which the gas ignites, and greatly simplifies the ignition of the stove, eliminating the need for matches, lighters and other sources of fire. Auto ignition can be provided for a hob(hob), for an oven, or both. In all these cases, it is assumed that the ignition is activated automatically when the knob is turned. There is also another option for electric ignition — a special button. Such systems are somewhat simpler and cheaper, while they usually cover all gas heaters available in the stove (therefore, the location is not indicated for push-button electric ignition).

Anyway, the stove requires mains for this function to work.

Energy class

The energy class describes the overall efficiency of the cooker in terms of energy consumption. Note that we are not talking about actual consumption (see "Connected load" for details), but about the efficiency of the stove, about the efficiency of using the energy that it consumes.

This indicator is especially important for models with at least one electric burner or electric oven/grill. But, if we are talking about a purely gas stove, you can not pay much attention to the energy consumption class. Electricity in such models is spent only on additional functions like auto-ignition or oven lighting,

Initially, the classes were marked in Latin letters from A(the most economical) and then alphabetically in order of decreasing efficiency — B, C, D ... Later, improved classes A+, A++ appeared; the more pluses, the higher the efficiency. Today, energy consumption in class A can be called medium, and in a lower class — high. The maximum indicator found in modern stoves is A++; if we are talking about a model with an electric burner, such a stove is usually expensive, but it pays off by saving electricity during use.
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