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Comparison Hansa OKC 900 UBH black vs Hansa OTP 616 WH white

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Hansa OKC 900 UBH black
Hansa OTP 616 WH white
Hansa OKC 900 UBH blackHansa OTP 616 WH white
from $510.20 up to $545.20
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Product typetraditional (wall)built-in (in cabinet)
Designangledwith sliding panel
Specs
Modesextraction / recirculationextraction / recirculation
Motor power266 W330 W
Flow of air (extraction)722 m³/h280 m³/h
Minimum noise level55 dB43 dB
Number of speeds43
Number of motors11
Filtration
Grease filtermetalmetal
Ability to install carbon filter
Carbon filter modelKF 17203
Features
LightingLED lamp
halogen lamps /2x20 W/
Controlstouch controlspush-buttons
More specs
Height (min)57 cm
Height (max)96 cm17 cm
Width90 cm60 cm
Depth46 cm
30 cm /with panel extended: 48 cm/
Color
Added to E-Catalogoctober 2016august 2015

Product type

Traditional (wall). Free-standing (non-embedded) wall-mounted units. The most common type of modern hoods: hobs are often placed near the walls, and it also makes sense to install the hood there.

— Wall/built-in. This type includes exclusively visor hoods(see below), which can be installed both as wall-mounted and built-in.

Built-in (in cabinet). Hoods mounted in a kitchen cabinet; only the duct panel remains outside. It can be fully built-in or have a sliding panel; see "Design" for details. Nevertheless, the built-in hood is almost entirely hidden inside the cabinet, making it easier to fit into the overall kitchen design than a stand-alone one.

Island (ceiling). Hoods mounted on the ceiling. The advantage of such devices is that they can be installed anywhere in the kitchen, not necessarily against the wall. If the hob is placed not against the wall but in the middle of the kitchen, such a hood can be indispensable.

— Suspended (ceiling). Hood models that are as similar as possible to island hoods differ in the type of installation — they use special cables that hold the device under the ceiling (something similar to hanging chandeliers). And, due to the distance from the wall (ceiling), such hoods work on the principle of recirculation, air extraction is not typical for them.

...Built-in (ceiling). A type of built-in hood mounted on the ceiling — usually between the suspended and the main ceiling. Such models are distinguished by their large size and high performance; they are intended not so much for the "maintenance" of individual cooking hobs but for general ventilation of the premises. Also, note that the installation of such hoods has to be planned already at the stage of the initial design of the premises.

— Corner (wall). Hoods designed for installation in a corner. In some cases, it is this installation of the cooker (and hood) that is the best option. In general, such devices are similar to the wall-mounted ones described above.

— Downdraft (built into tabletop). A variety of built-in hoods designed to be built into the countertop. Usually, they are equipped with a retractable air intake, which, when opened, moves upwards, and when not in use, it is hidden inside the countertop and does not interfere with its use.

Design

Dome. Hood with a round or rectangular air duct; in the lower part turning into a conical or trapezoidal body. Usually, it has a discreet design with a minimum number of decorative elements. Exceptions to this rule apply to country style, shown separately.

T-shaped. Outwardly, it resembles a dome hood, but instead of a conical or trapezoidal body, the air duct ends with a flat rectangular air intake. In cross-section, the system resembles the letter "T" for which it got its name.

Angled. In such hoods, the air intake panel is installed at an angle to the duct. This design is purely aesthetic and does not affect functionality.

Vertical panel. A special type of wall-mounted hood that is as close as possible to angled models, except that when not in use, the front panel is parallel to the wall and not at an angle.

Cylindrical. Classic cylindrical hoods.

Rectangular. Hoods of an even geometric shape of a solid design and do not have a division into a duct and a body (as is done in T-shaped models).

With glass. The main distinguishing feature of all such hoods is the presence of a glass plate in the design as an additional decorative...element. The very appearance of the hood can be anything: dome with glass, T-shaped with glass, angled with glass, cylindrical with glass.

Visor. Extractor hood designed for installation under a kitchen cabinet. At the same time, the air duct is hidden inside, and outside there is only a flat air intake resembling a visor (hence the name). Glass is often used in the design of the visor.

Sliding panel. As the name implies, these hoods are equipped with a retractable air intake panel. During operation, the panel opens — thus increasing the effective suction area. The hood itself is usually built into a cabinet or table (see "Product type"). But this type can be implemented in two ways. Sliding hoods with open panel when closed have a front panel that stands out and is visible under the cabinet. Sliding hoods with hidden panel are not visible when closed, and the opening mechanism is designed in such a way that the panel extends slightly at an angle.

Fully built-in. Hoods that are built-in in the full sense of the word: the device is almost entirely hidden in a hanging cabinet or ceiling; only the air intake panel is outside. Such an installation is known by a minimum of visible details and allows you not to worry about how the hood will fit into the kitchen interior.

Modern (unusual design). Hoods with a hi-tech look — using polished metal, glass and a minimum of decorative elements. Most modern style hoods have a specific design that does not fit into any of the options described above; Therefore, they are separated into a separate category. However, the design of such devices may vary; there are both absolutely minimalistic and rather pretentious, original design.

Country. Country-style hoods usually have light, soft body colours (white, beige, light grey) and structural elements decorated in wood, bronze and other similar materials. By design, such devices are usually similar to domed ones. Note that with similar performance, country hoods are noticeably more expensive than conventional style models. In addition, they are quite demanding on the environment: the whole kitchen must be made in a similar style. otherwise, it is likely that the device simply does not fit into the interior.

Motor power

The power of the hood at maximum speed.

The more powerful the device, the more performant it is, usually. However, there is no rigid dependence here, and hoods of the same power may differ in actual performance. So it is worth evaluating power consumption in terms of power first of all: the lower this indicator, the more economical the device. And when evaluating performance, you need to look not so much at power as at the directly claimed flow of the air (see below).

Flow of air (extraction)

The performance of the hood in extraction mode at maximum speed shows the real possibilities for air purification. Since this parameter is several times less than the motor performance (maximum performance), not all manufacturers indicate this value, trying to present large and beautiful numbers. A similar situation can be observed among other devices. For example, in vacuum cleaners, the total power is many times greater than the suction power; in acoustics, mediocre brands prefer to list peak power instead of nominal power. Therefore, motor performance and extraction performance can not be compared. However, high-performance motors will also give high performance in extraction mode. And it may well be that the conditional Bosch with an extraction performance of 300 m³/h will be better than another hood with a maximum motor performance of 500 m³/h.

Minimum noise level

The volume at which the device operates in the quietest mode. Usually (but not necessarily) it is the minimum power mode.

The decibels in which the noise level is measured are non-linear units, so it is easiest to use comparison tables to estimate a specific value. Here is the simplest table for minimum noise in modern hoods:

— 20 dB. Almost inaudible. The volume of a whisper at a distance of 1 m, the sound background in an open field on a calm day.
— 30 dB. The whisper, the ticking of the clock. The maximum noise level allowed for residential premises at night.
— 40 dB. The volume of normal human speech. The maximum permissible sound background (permanent) for living quarters during the day.
— 50 dB. Conversation of several people in medium tones.
— 60 dB. Loud talk.
— 65 – 68 dB — background noise on a city street, a vacuum cleaner engine at a distance of 2 – 3 m. The highest noise level among modern hoods is typical for powerful performant models.

When choosing according to this indicator, note that, other things being equal, a quieter device will, accordingly, cost more.

Number of speeds

The number of speeds at which the hood can operate.

The more speeds, the more accurately you can adjust the device's operating mode to a specific situation. At the same time, the vast majority of modern hoods have only three speeds which are enough for most occasions.

Carbon filter model

The model of the carbon filter compatible with the hood. For more information about such a filter, see "Ability to install carbon filter". Here we note that the carbon filter is not always supplied in a kit, and its service life is limited, periodic replacement is required. Anyway, the data on the filter model makes it much easier to find.

Lighting

Lighting method provided as standard in the hood.

— Incandescent lamp. The simplest and most affordable of modern lighting sources. The main advantage of incandescent lamps is their low cost. In addition, they give a fairly eye-pleasing light in warm colours. On the other hand, such lamps are the most energy-intensive. Besides, they get very hot during operation.

— Halogen lamp. An improved version of the incandescent lamps described above. They are distinguished by higher brightness at lower power consumption while also having a spectrum of luminescence that is pleasing to the eye. At the same time, halogen lamps are still inferior in terms of efficiency to fluorescent and LED lamps.

— Fluorescent lamp. Also known as "fluorescent light bulbs" or "energy-saving light bulbs". One of the advantages of such lamps is just low power consumption — many times lower than that of incandescent lamps (although higher than that of LEDs). The light from fluorescent lamps is white, rather cold; this can be both an advantage and a disadvantage, depending on personal preferences and interior features. But of the unambiguous shortcomings, it is worth noting that most of these lamps contain mercury vapour in the flask; because of this, failed light bulbs must be disposed of according to special rules, and a broken lamp can become a source of health problems.

Light-emitting diodes (LED). The most advanced of mod...ern lighting sources. LEDs are highly energy-efficient. They are more economical than incandescent lamps, and they practically do not heat up during operation. The light from such sources is neutral white, which is quite suitable for most cases. The disadvantage of LEDs is a rather high price.

Note that many modern hoods allow you to replace a regular light source — for example, a halogen lamp can be changed to a fluorescent or LED lamp with the same base.

Controls

The control method provided in the hood.

Push-buttons. The most popular control method in modern hoods can be provided in devices of any functionality and price category — from low-cost models, where buttons directly control the motor, to high-end solutions with advanced electronic circuits.

Rotary knobs. Control with rotary knobs, sometimes supplemented by buttons or touch sensors. A rather specific option found mainly in high-end hoods, where rotary knobs are part of the design.

Slider. Control using the lever moved on the special panel. Usually, only power is regulated in this way: the farther the slider is from the neutral position, the more air the hood draws. A fairly universal control method, found in hoods of all price categories.

Touch controls. Control using touch panels is considered a sign of expensive high-end hoods. It is because it makes sense to use such panels mainly with advanced control electronics and they are poorly suited for low-cost devices. From a practical point of view, the touch controls are remarkable for their ease of use and ease of cleaning: a light touch is enough to give a command, and the panel itself has no slots or protrusions, making it easy to clean dirt.
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