Technological heat pump
A single-unit heat pump with integrated connections and protection features addresses installation complexity and weather sensitivity, enabling efficient heating and cooling in compact indoor spaces.
Patent Information
- Application Number
- PCT/TR2025/050894
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2025-08-05
- Publication Date
- 2026-03-05
AI Technical Summary
Existing heat pumps have complex installation structures, require multiple units, are space-consuming, and are affected by outdoor weather conditions, making them unsuitable for single flats and balconies.
A single-unit heat pump design with a ventilation connection, water connection, energy connection, and air intake grid, housed within a skeleton structure covered by a channeled protection sheet, allowing for easy installation and operation indoors, independent of weather conditions.
The design enables efficient heating and cooling with reduced installation time, space requirements, and safety risks, suitable for individual flats and balconies, while maintaining high efficiency.
Smart Images

Figure TR2025050894_05032026_PF_FP_ABST
Abstract
Description
[0001] TECHNOLOGICAL HEAT PUMP
[0002] FIELD OF THE INVENTION
[0003] The present invention relates to a technological heat pump consisting of at least two sections having different functions and being connected to each other, a skeleton structure covered with channeled protection sheet designed to keep these sections flat and to connect various parts, and plurality of feet used to fix this structure, which can provide heating, cooling & domestic hot water, and which can be installed indoors without difficulty in compliance with occupational health and safety criteria.
[0004] PRIOR ART
[0005] Heat pumps can be used for heating, cooling and hot water production. Heat pumps operate using electrical energy and typically capture heat from air, water or underground sources and transport it indoors.
[0006] A heat pump is a device that extracts energy from a low-temperature source and transfers it to a higher-temperature environment. It works entirely with electrical energy.
[0007] Heat pumps consist of 2 units: indoor and outdoor units. The outdoor unit is mounted outside the room and consists of parts such as the compressor, fan, etc. The indoor unit consists of parts such as thermostat, fan, filters, etc. Or it consists of a single unit as a monoblock, but in this case, domestic hot water cannot be produced. A boiler must be added.
[0008] Heat pumps are similar in structure to boilers and heat water using only electricity and air energy without using natural gas, distributing hot water to radiators or underfloor heating to heat the space.
[0009] Since heat pumps consist of two different units, their cost is high and installation time is long. Since the outdoor units of heat pumps operate in outdoor conditions and the outdoor unit must be mounted on the ground, they can be affected by natural events such as rain, snow, etc.
[0010] Since the outdoor unit has many components, it has a complex installation structure and occupies a lot of space. Therefore, there is no heat pump available for a single flat.
[0011] Its heat capacity is low in line with the outdoor conditions.
[0012] As a result, all abovementioned problems have made it necessary to make an improvement in the relevant technical field.
[0013] OBJECT OF THE INVENTION
[0014] The present invention aims to eliminate the abovementioned problems and to make a development in the relevant technical field.
[0015] The object of the present invention is to create a heat pump with a single unit, which is not affected by weather conditions as there is no external unit, is easy to install with the help of its uncomplicated installation structure, can be put into operation in a short time, can be applied to a single flat, does not take up much space, and has high efficiency.
[0016] The object of the present invention is to create a heat pump with only an indoor unit, which does not have a complex installation structure and can be used in individual flats and balconies with its geometric structure and single unit advantage. It can be installed on a terrace or balcony.
[0017] The purpose of the invention is to create a heat pump that can be used in individual apartments and on balconies, thanks to its simple assembly structure, geometric design, and single-unit advantage, by obtaining a heat pump with only one unit.
[0018] The object of the present invention is to prevent the use of multiple units, long assembly times and complex assembly structures.
[0019] BRIEF DESCRIPTION OF THE INVENTION
[0020] The present invention relates to a technological heat pump so as to fulfil all aims mentioned above and will be obtained from the following detailed description. The present invention is characterized by comprising; first section in said heat pump, a ventilation connection positioned on at least one of the side surfaces of said heat pump, with at least two flow areas, which allows the creation of a clean air corridor within the system, first ventilation outlet located in the ventilation connection, which allows the air in the heat pump to be expelled to create a clean air corridor, second ventilation outlet, located in said ventilation connection, provides air inlet to the heat pump to create a clean air corridor, second section in said heat pump, water connection located on any surface of the heat pump, which enables the heating and use of mains water, second outlet in said water connection, which allows the heated water in the system to be used, second inlet, located in said water connection, allows mains water to enter the system to be heated and used, energy connection located on any surface of said heat pump, heating / cooling connection where there are at least two heating-cooling lines positioned on any surface of the heat pump, enabling the circulation of heating-cooling water in the heating and / or floor heating or fan-coil cooling installation, thus bringing the indoor temperature to the desired temperature and keeping it stable, third outlet used in the heating system in said heating I cooling connection, third inlet used in the heating system in said heating I cooling connection, air intake grid located on the rear surface of the heat pump, which provides fresh air intake in the first section, skeleton structure that allows the heat pump to stand upright and to connect various parts, channeled protection sheet configured around the outer perimeter of the said skeleton structure, at least four feet, positioned on at least one surface of the heat pump, enabling the heat pump to be fixed to the position where it will operate by being detachable.
[0021] A preferred embodiment of the invention comprises at least two different sections positioned independently of each other, the first section and the second section, which are positioned within a single unit and are connected and linked without difficulty, eliminating occupational health and safety risks and external environmental negativities.
[0022] A preferred embodiment of the invention comprises a heating / connection that can be connected to the existing heater installation and / or floor heating installation located on any surface of the heat pump.
[0023] A preferred embodiment of the invention comprises a fan that provides cooling of the space on any surface of the heat pump. BRIEF DESCRIPTION OF DRAWINGS
[0024] Figure 1 shows a perspective view of the heat pump.
[0025] Figure 2a shows front view of the heat pump.
[0026] Figure 2b shows the right view of the heat pump.
[0027] Figure 2c shows the front view of the heat pump with the cover.
[0028] DESCRIPTION OF THE REFERENCE NUMBERS IN FIGURES
[0029] A. Technological Heat Pump
[0030] 1. First section
[0031] 11. Ventilation connection
[0032] 111. Ventilation first outlet
[0033] 112. Ventilation second outlet
[0034] 2 Second section
[0035] 21. Water connection
[0036] 211. Second outlet
[0037] 212. Second inlet
[0038] 22. Energy connection
[0039] 23. Heating I cooling connection
[0040] 231. Third outlet
[0041] 232. Third inlet
[0042] 3. Air intake grid
[0043] 4. Skeleton structure
[0044] 5. Channeled protection sheet
[0045] 6. Feet 7. Fan
[0046] DETAILED DESCRIPTION OF THE INVENTION
[0047] In this detailed description, the technological heat pump (A) of the present invention is described by means of examples only for clarifying the subject matter such that no limiting effect is created.
[0048] The present invention relates to a technological heat pump (A), which consists of at least two sections with different functions and located in independent positions, and can heat the water in its reservoir and transfer it under pressure to the installation specially prepared for the system, thus providing hot water for domestic use.
[0049] The present invention is a technological heat pump (A), and as seen in Figure 1 , the heat pump (A) is used for indoor heating or cooling, consisting of a single unit with ease of installation, in accordance with occupational health and safety.
[0050] As seen in Figure 1 , the technological heat pump (A) consists of the first section (1 ), the second section (2), the channeled protection sheet (5), the foot (6), and the fan (7) elements.
[0051] As seen in Figure 2a, Figure 2b and Figure 2c, it consists of the following elements: ventilation connection (11 ), ventilation first outlet (111 ), ventilation second outlet (112), water connection (21 ), second outlet (211 ), second inlet (212), energy connection (22), heating I cooling connection (23), third outlet (231 ), third inlet (232), air intake grid (3), skeleton structure (4), channeled protection sheet (5), and foot (6).
[0052] As shown in Figure 1 , Figure 2a, Figure 2b, and Figure 2c, the heat pump (A) consists of one unit. This unit can be positioned vertically. There is a skeleton structure (4) surrounding the heat pump (A) with one unit.
[0053] As can be seen in all shapes, this skeleton structure (4) is divided into two parts. These sections are section one (1 ) and section two (2). The outside of the skeleton structure (4) is covered with a channeled protection sheet (5). The channeled protection sheet (5) is used to prevent the equipment inside the heat pump (A) from being affected by the external environment. The foot (6) is used to secure the heat pump (A) in place in the area where it will be located. The first section (1 ) contains parts related to the air flow provided from the external environment and parts necessary for heating the stored water. The second section (2) is used to position the hot water tank to which the heating fluid is sent under pressure.
[0054] As shown in Figure 2b and Figure 2c, the ventilation connection (11 ) on the side surface consists of two flow paths. This ventilation connection (11 ) may be located on the left or right side depending on the position, usage, and performance of the heat pump (A). One of the flow paths in this connection (11 ) is used as the ventilation first outlet (111 ), and the other is used as the ventilation second outlet (112). The purpose of the ventilation connection (11 ) is to create a fresh air corridor inside the heat pump (A). Air from the outside environment enters the heat pump (A) through the fluid inlet port. The dirty air inside the heat pump (A) is exhausted to the outside using the second ventilation outlet (112).
[0055] As can be seen in Figure 2b, there is an air intake grid (3) on the rear surface of the heat pump (A). This is the section where fresh air coming from the outside environment to the heat pump (A) passes. This air intake grid (3) is used in the first section (1 ) connected to the outside environment.
[0056] As can be seen in Figure 3, there is a power connection (22), a water connection (21 ) and a heating I cooling connection (23) on the rear surface of the heat pump (A).
[0057] The water connection (21 ) is the mains water supplied from the outside environment and has an inlet to the pump (A) for heating. This heated water is given for use using the second outlet (211 ). Mains water inlet is provided using the second inlet (212).
[0058] The heating I cooling connection (23) ensures that the hot water in the tank is sent under pressure to the existing or newly designed installation or underfloor heating system in the space. Water is supplied to the installation through the third inlet (232). Water exits the installation from the third outlet (231 ).
[0059] As can be seen in Figure 1 and Figure 2a, the heat pump (A) has a cooling system for the space it is located in, with its fan (7).
[0060] Since the technological heat pump (A) has a single unit, it can be placed indoors as well as on the balcony. The heat pump (A), which has a cooling and heating capacity of 150 m2, is an energy-efficient heat pump that reduces occupational health and safety risks and facilitates installation with its energy connection (22) and single-unit structure.
Claims
CLAIMS1. Technological heat pump (A), which consists of at least two sections with different functions and located in independent positions, and can heat the water in its reservoir and transfer it under pressure to the installation specially prepared for the system, thus providing hot water for domestic use, characterized by comprising;• First section (1 ) located in said heat pump (A),• Ventilation connection (11 ) positioned on at least one of the side surfaces of said heat pump (A), with at least two flow areas, which allows the creation of a clean air corridor within the system,• First ventilation outlet (111 ) located in said ventilation connection (11 ), which allows the air in the heat pump to be expelled to create a clean air corridor,• Second ventilation outlet (112), located in said ventilation connection (11 ), provides air inlet to the heat pump to create a clean air corridor,• Second section (2) located in said heat pump (A),• Water connection (21 ) located on any surface of said heat pump (A), which enables the heating and use of mains water,• Second outlet (211 ) in said water connection (21 ), which allows the heated water in the system to be used,• Second inlet (212), located in said water connection (21 ), allows mains water to enter the system to be heated and used,• Energy connection (22) located on any surface of said heat pump (A),• Heating / cooling connection (23) where there are at least two heatingcooling lines positioned on any surface of said heat pump (A), enabling the circulation of heating-cooling water in the heating and / or floor heating or fan-coil cooling installation, thus bringing the indoor temperature to the desired temperature and keeping it stable,• Third outlet (231 ) used in the heating system in said heating I cooling connection (23),• Third inlet (232) used in the heating system in said heating I cooling connection (23),• Air intake grid (3) located on the rear surface of said heat pump (A), which provides fresh air intake in the first section,• Skeleton structure (4) that allows said heat pump (A) to stand upright and to connect various parts,• Channeled protection sheet (5) configured around the outer perimeter of said skeleton structure (4),• At least four feet (6), positioned on at least one surface of the said heat pump (A), enabling the heat pump to be fixed to the position where it will operate by being detachable.
2. A technological heat pump (A) according to claim 1 , characterized by comprising at least two different sections positioned independently of each other, the first section (1) and the second section (2), which are positioned within a single unit and are connected and linked without difficulty, eliminating occupational health and safety risks and external environmental negativities.
3. A technological heat pump (A) according to claim 1 , characterized by comprising a heating / cooling connection (23) that can be connected to the existing heater installation and / or floor heating installation located on any surface of the heat pump.
4. A technological heat pump (A) according to claim 1 , characterized by comprising fan (7) on any surface of the heat pump (A) that cools the space.
Citation Information
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