PORTABLE AIR CONDITIONER COMPRISING A TRANSPORT UNIT AND TRANSPORT UNIT
20230408114 ยท 2023-12-21
Inventors
Cpc classification
F24F13/28
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F1/0358
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F1/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F13/222
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F13/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F2130/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F13/0209
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F1/028
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F2013/228
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F13/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F2221/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
Example embodiments relate to a portable air conditioner including a transport unit. An interior space of the transport unit is adapted to be tempered by the air conditioner and can accommodate the air conditioner for transport. Furthermore, example embodiments relate to a transport unit.
Claims
1. A portable air conditioner for tempering air, comprising: a transport unit, wherein the air conditioner has at least one housing having an air inlet and an air outlet, wherein the air conditioner is configured so as to temper air conveyed from the air inlet to the air outlet, wherein the air outlet is adapted to be reversibly connected to the transport unit, wherein the transport unit is thermally insulated, wherein the transport unit encloses an interior space, wherein the interior space of the transport unit is adapted to be tempered by air tempered by the air conditioner, wherein the transport unit and the air conditioner are configured and adjusted to each other such that the air conditioner is adapted to be reversibly inserted into the transport unit, wherein the transport unit is a bag, and wherein the transport unit has a support structure in the form of a support.
2. The air conditioner comprising a transport unit according to claim 1, wherein the air inlet of the air conditioner is adapted to be reversibly connected to the transport unit, wherein the transport unit is adapted to be connected to two hoses for the supply and removal of air, and wherein at least one of the air inlet of the air conditioner or the air outlet of the air conditioner is adapted to be detachably connected to a hose.
3. The air conditioner comprising a transport unit according to claim 1, wherein the transport unit has a component, wherein the component serves as a lid, a side or a bottom, wherein the component comprises the interior space of the transport unit, wherein the component is configured to be at least partially double-walled, wherein the component has openings to the interior space of the transport unit, and wherein the component is adapted to be connected to a hose.
4. (canceled)
5. (canceled)
6. (canceled)
7. (canceled)
8. (canceled)
9. The air conditioner comprising a transport unit according to claim 2, wherein the transport unit has a component, wherein the component serves as a lid, a side or a bottom, wherein the component comprises the interior space of the transport unit, wherein the component is configured to be at least partially double-walled, wherein the component has openings to the interior space of the transport unit, and wherein the component is adapted to be connected to a hose.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0012] In detail, there are a plurality of possibilities for designing and further developing the air conditioner according to the invention and the transport unit according to the invention. For this purpose, in addition to the above explanations, reference is made to the description below of example embodiments in connection with the drawing, in which:
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DETAILED DESCRIPTION OF EXAMPLE EMBODIMENTS
[0023]
[0024] A hose (alternatively: tube) 100 is respectively connected to the one inlet 3 and the two outlets for guiding the air. This is done here via a magnetic connection. Magnetic and metallic rings are for example combined with each other. This type of contact is realized such that an additional component 101 is located between the input or output and the hose. This can be seen here for the air inlet 3, adjoined, for example, by a filter as an additional component 101 and then by a hose 100. Due to the magnetic connection, the contact can in particular be released without tools.
[0025] The air to be cooled usually contains moisture which settles on cool components of the air conditioner 1 as condensate. To ensure that the condensate can be easily removed, a condensate container 5 is provided which can be moved relative to the housing 2 of the air conditioner 1. In particular, part of the interior of the air conditioner 1 is thus made accessible such that moisture can also be reliably removed from locations in the housing 2. Alternatively, the condensate container 5 can be removed from the housing 2. In particular, the accessible components or parts of the air conditioner 1 are very relevant in that safe drying or cleaning can take place.
[0026] To simplify the transport of the air conditioner 1, a carrying handle 6 which can preferably be pivoted out or in is provided on the upper side. Above the carrying handle 6, there is a cover device 7, which is exemplarily designed as a seating surface. The cover device 7 is fixed by a magnet 8. On the side, there is a further magnet 8 which allows the cover device 7 to be fixed to the side. In one configuration, the entire side of the housing is configured to be magnetic.
[0027] In the illustrated example embodiment, a microphone 9 is arranged remotely from the air conditioner 1 to determine the volume in the environment. The measured signals are therefore transmitted to the control unit 10 either as raw signals or as signals processed with respect to the volume. The control unit 10 deduces therefrom whether it is, for example, night. Based on this determination of a statement about the ambient conditions, the control unit 10 controls the air conditioner 1 or individual components of the air conditioner 1 so that a desired noise condition is achieved. For example, if it is detected that the environment is rather quiet, the compressor output is for example reduced. The output and thus the noise level is thus adapted to the noise environment.
[0028] The air conditioner 1 requires electrical power for its tempering activity, which is available therefor via a power connection point 11. To enable the operation of further electrical devices, the power connection point 11 is continuously connected to an integrated socket as a power output unit 12, which is indicated here by the solid line. Thus, the air conditioner 1 receives the necessary electrical power and a voltage source is still available.
[0029] As already explained, the air conditioner 1 has a cooling air outlet 14 and a warm air outlet 13. They are both respectively connected via a connection component 15, 15 to one side 16, 16 of the housing 2 and to the air paths inside the housing 2. In a variant not shown here, the connection components 15, 15 each comprise a larger portion of the sides 16, 16, so that in one variant the air inlet 3 is also fastened via one of the connection components 15, 15. The connection components 15, 15 and the respective interfaces on the two sides 16, 16 are designed such that a reversible switching between the two sides 16, 16 is possible. A reversing of the air conditioner 1 and thus switching between heating and cooling is thus also possible without any problems.
[0030] The air conditioner 1 is a portable unit. It thus has a housing 2 which is self-contained and which also has such stability that it can stand securely without being fixed to a wall or roof. The weight is also such that it can be carried by a human being, for example. This mobile air conditioner 1 is further connected to a transport unit 17 via a hose 100. In particular, the cooling air outlet 14 is connected to the interior space 18 of the transport unit 17. This results in the air conditioner 1 cooling the transport unit 17 so that foodstuffs can be transported therein, for example. The interface of the transport unit 17 for contacting the hose 100 is preferably designed to be as simple as possible and allows a closure after the cooling process, so that the cool interior air cannot escape as far as possible. The transport unit 17 is dimensioned such that the air conditioner 1 can be accommodated and carried in the transport unit 17, for example. For this purpose, a support 17 of the support unit 17 designed as a bag is indicated here.
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[0035] In the configuration of
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[0037] Finally,
[0038] Thus, when moist objects are introduced into the drying chamber 200, they are dried by the air conditioner 1. A humidity sensor 202 which is connected to a mobile terminal 203 is located in the drying chamber 200. Furthermore, there is a circulating-air fan 204 and a condensate pump 205, which is connected to the waste-water tank 205 of the vehicle in which the arrangement is located. Furthermore, an interface 206 for electrical contact is located below the air conditioner 1. A molded part having an air duct 207 and a sound insulation 208 is present above the air conditioner 1.
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