Assembly for cold and hot adjusting circulation of pet house and fish tank

By designing a compressor assembly that includes condenser, evaporator, and control components, the problems of low automation and cumbersome installation and maintenance in pet house and aquarium temperature control equipment have been solved, enabling automated adjustment and convenient maintenance of the ambient temperature in pet houses and aquariums.

CN224192741UActive Publication Date: 2026-05-05谢先平
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
谢先平
Filing Date
2025-05-15
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

Existing temperature control equipment for pet houses and aquariums suffers from limited adjustment range, low automation, high energy consumption, and poor safety. It is particularly unsuitable for spaces with limited space and is cumbersome to install and maintain.

Method used

A compressor assembly comprising a condenser, an evaporator, and a control unit has been designed. By circulating refrigerant between the condenser and the evaporator, the ambient temperature can be automatically raised or lowered. The assembly is compact and integrated, making it easy to install and maintain, and supports the temperature control requirements of pet houses and aquariums.

Benefits of technology

It enables automated temperature control of pet houses and aquariums, meeting the temperature control needs of different seasons. It is easy to install, simple to maintain, and highly adaptable.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an assembly for pet house and fish tank cold and hot adjusting circulation, which comprises an installation box body and a compressor assembly, the compressor assembly is installed on the installation box body, the compressor assembly comprises a condensation assembly, an evaporation assembly and a control assembly, the evaporation assembly is correspondingly installed on the condensation assembly, and the control assembly is installed on the installation box body. The control assembly is installed on the side portion of the evaporation assembly, an installation opening is formed in the side face of the installation box body, and the lower end of the condensation assembly is embedded in the installation opening. According to the assembly for cold and hot adjustment circulation of the pet house and the fish tank, the compressor assembly drives a refrigerant to circularly flow between the condenser and the evaporator, automatic rising and falling of the environment temperature are achieved, the temperature control requirements of the pet house and the fish tank in different seasons are met, and the condensation assembly, the evaporation assembly and the control assembly are compactly and integrally installed; installation and operation are convenient and maintenance is simple.
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Description

Technical Field

[0001] This utility model belongs to the field of environmental control equipment technology, specifically relating to a component for temperature and heat regulation and circulation in pet houses and fish tanks. Background Technology

[0002] As people's living standards continue to improve, more and more families are keeping pets or setting up aquariums to enrich their home environment. However, the ambient temperature of pet houses and aquariums has a significant impact on pet health and the stability of the aquatic ecosystem, especially in areas with significant temperature differences between winter and summer, where effective temperature regulation is essential. Currently, common temperature control methods rely on independent heaters, air coolers, or ice packs. These devices often have problems such as limited adjustment range, low automation, high energy consumption, or poor safety, and cannot meet the needs of long-term, constant environmental regulation.

[0003] While some existing heating and cooling devices have compressor refrigeration structures, most are large air conditioning systems with complex structures, making them unsuitable for pet houses or fish tanks with limited space. Furthermore, their installation and maintenance processes are cumbersome, hindering convenient use by home users.

[0004] Therefore, overcoming the shortcomings of the existing technology is an urgent problem to be solved in this technical field. Utility Model Content

[0005] In view of the technical problems mentioned in the background art, the purpose of this utility model is to provide a component for the temperature regulation and circulation of pet houses and fish tanks, so as to solve the technical problems mentioned in the background art.

[0006] To achieve the above objectives, the present invention provides the following technical solution: a component for regulating the temperature and humidity of a pet house and a fish tank, comprising a mounting box and a compressor assembly. The compressor assembly is mounted on the mounting box and includes a condenser assembly, an evaporator assembly, and a control assembly. The evaporator assembly is correspondingly mounted on the condenser assembly, and the control assembly is mounted on the side of the evaporator assembly. The side of the mounting box has an installation opening, and the lower end of the condenser assembly is embedded in the installation opening.

[0007] Furthermore, the condenser assembly is fixed to the mounting opening with adhesive, thereby mounting the compressor assembly on the mounting housing.

[0008] Furthermore, the condensation assembly includes a first fan housing, a condenser fan, and a condenser plate. The condenser fan is fitted into the first fan housing. The inner sides of the first fan housing are symmetrically provided with first fixing buckles, which are fastened and fixed to the edge of the condenser fan. The condenser plate is installed on the upper end of the first fan housing. The lower sides of the condenser plate are symmetrically provided with first mounting through plates, and the upper sides of the first fan housing are symmetrically provided with second mounting through plates. The first mounting through plates are correspondingly disposed on the second mounting through plates and are connected and fixed to the second mounting through plates by fasteners passing through the first mounting through plates.

[0009] Furthermore, the evaporation assembly includes a second fan housing, an evaporation fan, and an evaporation plate. The evaporation fan is fitted into the second fan housing. The inner sides of the second fan housing are symmetrically provided with second fixing buckles, which are fastened and fixed to the edges of the evaporation fan. The evaporation plate is installed at the lower end of the second fan housing. The upper sides of the evaporation plate are symmetrically provided with first connecting through plates, and the lower sides of the second fan housing are symmetrically provided with second connecting through plates. The first connecting through plates are correspondingly disposed on the second connecting through plates and are connected and fixed to the second connecting through plates by fasteners passing through the first connecting through plates.

[0010] Furthermore, the control component includes a circuit board housing and a control circuit board. The side of the second fan housing is provided with a plurality of fixing blocks, and the side of the circuit board housing is provided with a plurality of fixing posts. The plurality of fixing posts correspond one-to-one with the plurality of fixing blocks, and are connected and fixed by fasteners passing through the fixing blocks and fixing posts, thereby allowing the circuit board housing to be installed on the side of the second fan housing.

[0011] Furthermore, the inside of the circuit board housing is recessed with a mounting groove, and the inner side of the mounting groove is provided with several mounting clips. The control circuit board is embedded in the mounting groove, and at the same time, the several mounting clips fasten and fix the control circuit board.

[0012] The present invention has the following advantages: The compressor assembly is installed on the mounting box. The compressor assembly includes a condenser assembly, an evaporator assembly, and a control assembly. The evaporator assembly is installed on the condenser assembly, and the control assembly is installed on the side of the evaporator assembly. The component of the present invention for regulating the temperature and humidity of pet houses and fish tanks uses the compressor assembly to drive the refrigerant to circulate between the condenser and the evaporator, thereby realizing the automatic rise and fall of the ambient temperature and meeting the temperature control needs of pet houses and fish tanks in different seasons. The condenser assembly, evaporator assembly, and control assembly are compactly integrated and installed, making installation and operation convenient and maintenance simple. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the overall three-dimensional structure of this utility model.

[0014] Figure 2 This is an exploded view of the mounting box and compressor assembly of this utility model.

[0015] Figure 3 This is an exploded structural diagram of the condenser assembly of this utility model.

[0016] Figure 4 This is an exploded structural diagram of the evaporation component of this utility model.

[0017] Figure 5 This is an exploded view of the control component of this utility model.

[0018] Reference numerals: Mounting housing 10; Compressor assembly 20; Condensing assembly 30; Evaporating assembly 40; Control assembly 50; Mounting opening 11; First fan housing 31; Condensing fan 32; Condensing plate 33; First fixing clip 311; First mounting through plate 331; Second mounting through plate 312; Second fan housing 41; Evaporating fan 42; Evaporating plate 43; Second fixing clip 411; First connecting through plate 431; Second connecting through plate 412; Circuit board housing 51; Control circuit board 52; Fixing through block 413; Fixing through column 511; Mounting groove 512; Mounting clip 513. Detailed Implementation

[0019] like Figures 1 to 5 As shown, a component for regulating the temperature and humidity of a pet house or aquarium includes a mounting housing 10 and a compressor assembly 20. The compressor assembly 20 is mounted on the mounting housing 10. In use, after the compressor assembly 20 is started, it generates a cold or heat source through a refrigeration cycle process involving compression, condensation, throttling, and evaporation. This allows the refrigerant to flow continuously between the condenser and the evaporator, thereby exchanging heat with the water inside or connected to the mounting housing 10 and regulating the temperature of the pet house or aquarium.

[0020] In practical implementation, the compressor assembly 20 includes a condenser assembly 30, an evaporator assembly 40, and a control assembly 50. The evaporator assembly 40 is mounted on the condenser assembly 30, and the control assembly 50 is mounted on the side of the evaporator assembly 40 for controlling the start-up, shutdown, and heating / cooling switching operations of the compressor system. The mounting housing 10 has a mounting opening 11 on its side. The lower end of the condenser assembly 30 is embedded in the mounting opening 11, and the condenser assembly 30 is fixed to the mounting opening 11 with adhesive, thus mounting the compressor assembly 20 on the mounting housing 10. During use, when the system is powered on and started, the control assembly 50 drives the compressor to work. The refrigerant circulates between the condenser assembly 30 and the evaporator assembly 40. The condenser assembly 30 releases heat, and the evaporator assembly 40 absorbs heat, creating a heat exchange effect. By cooperating with the water circulation module or air circulation module inside the mounting housing 10, the heating or cooling of the environment inside the pet house or fish tank can be regulated to achieve constant temperature control.

[0021] In practical implementation, the condensing assembly 30 includes a first fan housing 31, a condensing fan 32, and a condensing plate 33. The condensing fan 32 is fitted into the first fan housing 31. The inner sides of the first fan housing 31 are symmetrically provided with first fixing buckles 311, which are fastened to the edges of the condensing fan 32. The condensing plate 33 is installed on the upper end of the first fan housing 31. The lower sides of the condensing plate 33 are symmetrically provided with first mounting through plates 331. The upper two sides of 1 are symmetrically provided with second mounting plates 312, and the first mounting plate 331 is correspondingly disposed on the second mounting plate 312. It is connected and fixed to the second mounting plate 312 by fasteners passing through the first mounting plate 331. When in use, after the condenser fan 32 is started, it draws in the outside air. The air flows through the surface of the condenser plate 33 and carries away the heat, so that the refrigerant completes the phase change condensation process from high temperature and high pressure gas to medium temperature liquid in the condenser plate 33, thereby realizing the release of heat and providing conditions for the subsequent evaporation heat absorption process.

[0022] In practical implementation, the evaporation assembly 40 includes a second fan housing 41, an evaporation fan 42, and an evaporation plate 43. The evaporation fan 42 is fitted into the second fan housing 41. Symmetrically protruding second fixing buckles 411 are provided on both inner sides of the second fan housing 41, and the two second fixing buckles 411 are fastened to the edges of the evaporation fan 42. The evaporation plate 43 is installed at the lower end of the second fan housing 41, and symmetrically provided first connecting plates 431 are provided on both upper sides of the evaporation plate 43. The lower two sides of the fan housing 41 are symmetrically provided with second connecting plates 412, and the first connecting plate 431 is correspondingly disposed on the second connecting plate 412 and is connected and fixed to the second connecting plate 412 by fasteners passing through the first connecting plate 431. In use, the evaporator fan 42 operates to draw in air and guide it across the surface of the evaporator plate 43. The refrigerant flowing inside the evaporator plate 43 absorbs heat from the air during this process, completing the evaporation process from low-temperature, low-pressure liquid to gas, thereby cooling the air. The cooled air can be transported to the area around the pet house or fish tank through subsequent pipes or ventilation structures to achieve the purpose of ambient temperature regulation.

[0023] In practical implementation, the control component 50 includes a circuit board housing 51 and a control circuit board 52. The second fan housing 41 has several fixing blocks 413 on its side, and the circuit board housing 51 has several fixing posts 511 on its side. Each fixing post 511 corresponds to one fixing block 413, and fasteners pass through the fixing blocks 413 and connect to the fixing posts 511, thus allowing the circuit board housing 51 to be installed on the side of the second fan housing 41. The circuit board housing 51 has a recessed mounting groove 512, and several mounting clips 513 are provided on the inner side of the mounting groove 512. The control circuit board 52 is embedded in the mounting groove 512, and the mounting clips 513 secure the control circuit board 52. In use, the control circuit board 52 receives user input or system signals and controls the operating status of various parts of the compressor component 20, including the start / stop control of the condenser fan 32 and the evaporator fan 42, and the switching logic of the refrigerant circulation. Through the intelligent management of the control component 50, the entire heating and cooling cycle system can be automatically adjusted according to the set temperature to achieve constant temperature control of the internal environment of the pet house or aquarium, thereby improving the comfort and survival stability of pets or aquatic creatures.

[0024] In practical implementation, the compressor assembly 20 is a detachable structure. Users can remove it entirely from the mounting housing 10 according to their actual needs. After removal, external pipes can be connected through the pre-set installation opening 11 on the side of the housing 10 to achieve connectivity with other cold and heat source systems. The installation opening 11 has a standard-sized interface for connecting to a flexible or rigid conduit, which can be further connected to external electronic cooling and heating equipment, such as heat pump air conditioners or semiconductor refrigeration devices. Remote intelligent temperature adjustment of the pet house or aquarium environment can be achieved through the temperature control function of the external device. This system has a flexible structure, allowing for flexible switching between local compressor cooling and external cooling modes according to environmental conditions or user needs, enhancing the practicality and adaptability of the device.

[0025] In summary, the compressor assembly 20 is installed on the mounting housing 10. The compressor assembly 20 includes a condenser assembly 30, an evaporator assembly 40, and a control assembly 50. The evaporator assembly 40 is correspondingly installed on the condenser assembly 30, and the control assembly 50 is installed on the side of the evaporator assembly 40. The component of this utility model for regulating the temperature and humidity of pet houses and fish tanks uses the compressor assembly to drive the refrigerant to circulate between the condenser and the evaporator, thereby achieving automatic temperature rise and fall of the environment and meeting the temperature control needs of pet houses and fish tanks in different seasons. The condenser assembly, evaporator assembly, and control assembly are compactly integrated, making installation and operation convenient and maintenance simple.

Claims

1. A component for temperature and humidity regulation and circulation in pet houses and fish tanks, characterized in that, It includes a mounting housing (10) and a compressor assembly (20), which is mounted on the mounting housing (10). The compressor assembly (20) includes a condenser assembly (30), an evaporator assembly (40), and a control assembly (50). The evaporator assembly (40) is mounted on the condenser assembly (30), and the control assembly (50) is mounted on the side of the evaporator assembly (40). The mounting housing (10) has a mounting opening (11) on its side, and the lower end of the condenser assembly (30) is fitted into the mounting opening (11).

2. The component for temperature and humidity regulation and circulation in pet houses and fish tanks according to claim 1, characterized in that, The condenser assembly (30) is fixed to the mounting opening (11) by adhesive, thereby mounting the compressor assembly (20) on the mounting housing (10).

3. The component for temperature and humidity regulation and circulation in pet houses and fish tanks according to claim 1, characterized in that, The condensing assembly (30) includes a first fan housing (31), a condensing fan (32), and a condensing plate (33). The condensing fan (32) is installed in the first fan housing (31). The inner sides of the first fan housing (31) are symmetrically provided with first fixing buckles (311). The first fixing buckles (311) are fastened and fixed to the edge of the condensing fan (32). The condensing plate (33) is installed on the upper end of the first fan housing (31). The lower sides of the condensing plate (33) are symmetrically provided with first mounting through plates (331). The upper sides of the first fan housing (31) are symmetrically provided with second mounting through plates (312). The first mounting through plates (331) are correspondingly provided on the second mounting through plates (312) and are connected and fixed to the second mounting through plates (312) by fasteners passing through the first mounting through plates (331).

4. The component for temperature and humidity regulation and circulation in pet houses and fish tanks according to claim 1, characterized in that, The evaporation assembly (40) includes a second fan housing (41), an evaporation fan (42), and an evaporation plate (43). The evaporation fan (42) is installed in the second fan housing (41). The inner sides of the second fan housing (41) are symmetrically provided with second fixing buckles (411). The second fixing buckles (411) are fastened and fixed to the edge of the evaporation fan (42). The evaporation plate (43) is installed at the lower end of the second fan housing (41). The upper sides of the evaporation plate (43) are symmetrically provided with first connecting through plates (431). The lower sides of the second fan housing (41) are symmetrically provided with second connecting through plates (412). The first connecting through plates (431) are correspondingly provided on the second connecting through plates (412) and are connected and fixed to the second connecting through plates (412) by fasteners passing through the first connecting through plates (431).

5. The component for temperature and humidity regulation and circulation in pet houses and fish tanks according to claim 4, characterized in that, The control assembly (50) includes a circuit board housing (51) and a control circuit board (52). The side of the second fan housing (41) is provided with a plurality of fixing blocks (413) and the side of the circuit board housing (51) is provided with a plurality of fixing posts (511). The plurality of fixing posts (511) correspond one-to-one with the plurality of fixing blocks (413), and are connected and fixed to the fixing posts (511) by fasteners passing through the fixing blocks (413), thereby allowing the circuit board housing (51) to be installed on the side of the second fan housing (41).

6. The component for temperature and humidity regulation and circulation in pet houses and fish tanks according to claim 5, characterized in that, The circuit board housing (51) has an internal mounting groove (512) and an inner side of the mounting groove (512) with several mounting clips (513). The control circuit board (52) is embedded in the mounting groove (512) and the mounting clips (513) fasten the control circuit board (52) to fix it.