A multi-functional coffee maker system

CN224735083UActive Publication Date: 2026-09-11宁波爱佳电器有限公司
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Patent Information

Application Number
CN202521779667.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-20
Publication Date
2026-09-11
Estimated Expiration
2035-08-20

AI Technical Summary

Technical Problem

并且,一般来说特定剂量包装和特定冲泡方式基本是固定的,为保证咖啡的冲泡口感,需要保证按照设定的冲泡温度、冲泡时间以及冲泡水量运行咖啡机,由于现有咖啡机无法对咖啡容器、原料容器进行自动识别,或者智能识别结构设计存在缺陷,导致冲泡时还需要根据使用场景的不同对咖啡机的使用参数进行设定,或者识别过程较为麻烦,导致咖啡冲泡使用不够便捷

Benefits of technology

1、通过对原料载具、咖啡容器进行选择性的识别,使得咖啡机的使用更加便捷,简化了操作步骤。并且还可根据不同原料载具与咖啡容器的组合,实现更多的冲泡组合方式,进一步扩展冲泡使用范围,占用的体积小,采用模块化设计,成本更低。

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Abstract

The utility model discloses a multifunctional coffee machine system, including the organism, is installed with water storage container, water pump, heating assembly and control unit on the organism, is equipped with the brewing room and container placement area on the organism, and the opening of brewing room is movably installed with the cover, is equipped with the replaceable raw material carrier in brewing room, is installed with first detection element on at least one raw material carrier, is equipped with first placement and second placement on the container placement area, is connected second detection element on second placement, is equipped with first response element, second response element respectively on the organism, first detection element and first response element cooperation, second detection element and second response element cooperation, control unit receives the response signal of first response element, second response element, and raw material carrier and / or coffee container are identified to control the working condition of water pump, heating assembly, and the use is more convenient, still can realize multiple combination mode.
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Description

Technical Field

[0001] This utility model relates to the field of coffee machine technology, and specifically to a multi-functional coffee machine system. Background Technology

[0002] A coffee machine generally consists of a main unit and a brewing unit. The main unit has a water tank, a water pump, and a heating element. It is also equipped with a drip pot, which can be placed under the brewing unit to collect coffee. Drip pots generally have a larger diameter and volume, and are generally suitable for brewing for multiple people. Some coffee machines also come with coffee cups, which are suitable for brewing for individual consumption. The types of coffee ingredients mainly include coffee powder and coffee capsules.

[0003] To accommodate both brewing methods and different coffee ingredients, coffee machines on the market require different ingredient containers for different coffee containers. This is achieved by incorporating different ingredient containers within the brewing unit, filling them with varying amounts of coffee ingredients, and placing the corresponding containers in the machine's designated area. This allows for greater flexibility in user coffee brewing scenarios. Furthermore, specific dosages and brewing methods are generally fixed. To ensure optimal coffee flavor, the machine must operate according to the set brewing temperature, time, and water volume. However, existing coffee machines often lack automatic recognition of coffee and ingredient containers, or their intelligent recognition mechanisms are flawed. This necessitates setting specific parameters based on the usage scenario, or the recognition process can be cumbersome, making coffee brewing less convenient.

[0004] Therefore, the purpose of this application is to provide a multi-functional coffee machine system that can solve at least one of the above problems. Utility Model Content

[0005] Based on the above analysis, this utility model proposes a multi-functional coffee machine system aimed at solving at least one of the above technical problems.

[0006] This utility model is mainly achieved through the following technical solutions: This utility model provides a multi-functional coffee machine system, including a machine body, on which a water storage container, a water pump, a heating component and a control unit are installed. The machine body is provided with a brewing chamber and a container placement area. A cover is movably installed at the opening of the brewing chamber. A raw material carrier is provided in the brewing chamber. At least two raw material carriers are replaceable. At least one raw material carrier is equipped with a first detection element. The container placement area is provided with a first placement position and a second placement position rotatably disposed on the first placement position for placing coffee containers. A second detection element is connected to the second placement position. The machine body is provided with a first sensing element that cooperates with the first detection element and a second sensing element that cooperates with the second detection element. The control unit is electrically connected to the first sensing element, the second sensing element, the water pump, and the heating component, respectively, and is used to identify at least one of the raw material carrier and the coffee container based on the sensing signals of the first sensing element and the second sensing element, and control the working status of the water pump and the heating component.

[0007] Since different raw material carriers require corresponding coffee containers, different brewing times and different amounts of water may be needed. By identifying the raw material carriers and coffee containers, the brewing time can be intelligently adjusted by controlling the heating state of the heating components, and the brewing water volume can be intelligently adjusted by controlling the start and stop status of the water pump. This makes the coffee machine more convenient to use, and allows for more brewing combinations with fewer installed detection components.

[0008] Furthermore, the first detection element and the second detection element are triggering parts, and the triggering parts include at least one of a magnet and a mechanical triggering part. The first sensing element and the second sensing element are at least one of a magnetic induction switch, a proximity switch, and an optocoupler switch.

[0009] Furthermore, a brewing head is installed on the cap, the brewing head is provided with several brewing channels, a liquid outlet is provided at the bottom of the brewing chamber, a liquid outlet valve is installed on the liquid outlet, and the coffee container includes a coffee pot and a coffee cup.

[0010] Furthermore, a movable coaster is rotatably mounted on the container placement area, and the second placement position is disposed on the movable coaster. The movable coaster can be unfolded relative to the body to cover the first placement position, or it can be folded relative to the body to be stored on the side wall of the container placement area.

[0011] Furthermore, the raw material carrier is a coffee powder container for containing coffee powder, the coffee container is a coffee pot placed in the first placement position, the coffee powder container is equipped with a first detection element, and the coffee powder container is also provided with filter holes.

[0012] Furthermore, the raw material carrier is a capsule container for containing a coffee capsule so that it abuts against the brewing head, the coffee container is a coffee cup placed in a second placement position relative to the machine body, a first detection element is installed on the capsule container, the brewing head is provided with a first piercing head that cooperates with the top of the coffee capsule, the brewing channel is provided on the first piercing head, the capsule container is provided with a second piercing head that cooperates with the bottom of the coffee capsule, and at least one of the bottom of the capsule container and the second piercing head is provided with a liquid outlet channel.

[0013] Furthermore, the raw material carrier is a coffee powder filter paper for holding coffee powder, and the coffee container is a coffee pot placed in the first placement position.

[0014] Furthermore, at least one of the movable coasters is fitted with a rotating plate at its hinged end to the body. The rotating plate has an arc-shaped groove on its side wall. A movable component that movably engages with the arc-shaped groove is slidably mounted on the body. The second detection element is mounted on the movable component and movably engages with the second sensing element. A first reset component is provided between the rotating plate and the body.

[0015] Furthermore, the container placement area is located below the brewing chamber, and the dispensing valve includes a first pressure-receiving part placed inside the brewing chamber and a second pressure-receiving part placed in the container placement area. One of the raw material carriers or coffee containers moves against the first or second pressure-receiving part to open the dispensing valve.

[0016] Furthermore, the raw material carrier includes a capsule container and a coffee powder container; When a coffee pot is placed in the first placement position, the top of the coffee pot moves against the second pressure-bearing part; when the second placement position is rotated to the first placement position and a coffee cup is placed in the second placement position, the bottom of the capsule container moves against the first pressure-bearing part.

[0017] Compared with the prior art, the multifunctional coffee machine system provided by this utility model has the following advantages: 1. By selectively identifying the raw material carriers and coffee containers, the coffee machine becomes more convenient to use and simplifies the operation steps. Furthermore, it allows for more brewing combinations based on different raw material carriers and coffee containers, further expanding its brewing range. It also occupies a small space, adopts a modular design, and has a lower cost.

[0018] 2. By setting magnets on the raw material carrier, the identification method becomes simpler, easier to implement, and more reliable.

[0019] It uses only one heating element, and the different pressure parts of the liquid outlet valve are connected to the raw material carrier and coffee container respectively. It is simple and easy to use, and can also ensure the safety and reliability of the coffee machine. Attached Figure Description

[0020] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0021] Figure 1 This is a schematic diagram of the structure of a multi-functional coffee machine system provided in an embodiment of the present invention; Figure 2 yes Figure 1 A schematic diagram of the structure of the container placement area when no coffee containers are placed there; Figure 3 yes Figure 2 A partial perspective structural diagram from another angle; Figure 4 This is an exploded view of the positioning base and the movable coaster; Figure 5 yes Figure 1 Cross-sectional view when the raw material carrier is a capsule container; Figure 6 yes Figure 1 Cross-sectional view when the raw material carrier is a coffee powder container; Figure 7 yes Figure 1 Cross-sectional view when the feed carrier is coffee powder filter paper; Figure 8 yes Figure 1 Cross-sectional view of the area without the raw material carrier placed inside; Figure 9 yes Figure 5 Schematic diagram of the structure of the raw material carrier; Figure 10 yes Figure 6 Schematic diagram of the structure of the raw material carrier; Figure 11 This is a structural principle block diagram of a multi-functional coffee machine system provided in an embodiment of this utility model.

[0022] The attached figures are labeled as follows: 1. Body, 1a. Brewing chamber, 1b. Container placement area, 1c. First placement position, 1d. Second placement position, 2. Water storage container, 3. Water pump, 4. Heating assembly, 5. Control unit, 6. Cover, 7. Raw material carrier, 7a. Filter hole, 7b. Liquid outlet channel, 7c. Liquid passage hole, 71. Second piercing head, 72. First cover plate, 72a. Through hole, 73. Protruding edge, 8. First detection element, 9. Coffee container, 10. Second detection element, 11. First sensor Components, 12, second sensing element, 13, brewing head, 131, first puncture head, 14, dispensing valve, 14a, first pressure receiving part, 14b, second pressure receiving part, 15, rotating plate, 15a, arc-shaped slide, 151, connecting part, 16, moving part, 161, first protrusion, 17, first reset part, 18, movable coaster, 19, brewing funnel, 191, supporting protrusion, 20, positioning seat, 20a, guide groove, 21, coffee powder, 22, coffee capsule. Detailed Implementation

[0023] To enable those skilled in the art to better understand this utility model and to more clearly define the scope of protection claimed by this utility model, the present utility model is described in detail below with reference to certain specific embodiments. It should be noted that the following are only some specific embodiments of the present utility model, and the specific and direct descriptions of related structures are merely for the convenience of understanding the present utility model; the specific features do not necessarily or directly limit the scope of implementation of the present utility model. Conventional choices and substitutions made by those skilled in the art under the guidance of the present utility model should all be considered within the scope of protection claimed by this utility model.

[0024] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.

[0025] Example 1 As shown in Figures 1-2, 4-5, and 8, this utility model provides a multi-functional coffee machine system, including a body 1. The body 1 is equipped with a water storage container 2, a water pump 3, a heating element 4, and a control unit 5. The body 1 has a brewing chamber 1a and a container placement area 1b. A cap 6 is movably installed at the top opening of the brewing chamber 1a. A brewing head 13 is installed on the cap 6, and the brewing head 13 has several brewing channels communicating with the brewing chamber 1a. A liquid outlet is located at the bottom of the brewing chamber 1a, and a liquid outlet valve 14 is installed on the outlet. The water storage container 2 is sequentially connected to the water pump 3, the heating element 4, the brewing head 13, and the brewing chamber 1a. The body 1 has a cavity, within which a brewing funnel 19, which mates with the cap 6, is installed to form the brewing chamber 1a. The liquid outlet valve 14 is installed on the bottom of the brewing funnel 19 and passes through the cavity into the container placement area 1b.

[0026] like Figure 5-8 As shown, the brewing chamber 1a is equipped with a raw material carrier 7, which is positioned opposite the brewing head 13, for holding coffee raw materials and at least partially separating them from the brewing chamber 1a. At least two raw material carriers 7 can be replaced, and there are three such carriers. Different raw material carriers 7 can correspond to different coffee containers 9, or they can correspond to the same coffee container 9. At least one raw material carrier 7 is equipped with a first detection element 8. When more than one raw material carrier 7 is equipped with a first detection element 8, the positions of the first detection elements 8 must be different to facilitate correct identification by different first detection elements 8.

[0027] like Figure 1-2 As shown in Figures 5 and 11, the container placement area 1b is provided with a first placement position 1c and a second placement position 1d rotatably disposed on the first placement position 1c. The first placement position 1c and the second placement position 1d are used to place coffee containers 9. There are two coffee containers 9, including a coffee pot and a coffee cup. The first placement position 1c is located below the dispensing valve 14, and the heating component 4 is located below the first placement position 1c. The second placement position 1d is connected to a second detection element 10.

[0028] The machine body 1 is provided with a first sensing element 11 and a second sensing element 12. The first detection element 8 cooperates with the first sensing element 11 to identify the raw material carrier 7. The second detection element 10 cooperates with the second sensing element 12 to identify the coffee container 9.

[0029] The control unit 5 is electrically connected to the first sensing element 11, the second sensing element 12, the water pump 3, and the heating assembly 4, respectively. It is used to identify at least one of the raw material carrier 7 and the coffee container 9 based on the sensing signals from the first sensing element 11 and the second sensing element 12, and to control the working state of the water pump 3 and the heating assembly 4, thereby adjusting the brewing water volume and heating time (and / or heating temperature). In this embodiment, the first detection element 8 is a trigger unit, specifically a magnet, and the first sensing element 11 is a magnetic induction switch, specifically a Hall switch. The non-contact sensing method simplifies the structural design. The second detection element 10 is a trigger unit, specifically a mechanical trigger unit, and the second sensing element 12 is an optocoupler switch. It is understood that the first detection element 8 and the first sensing element 11 can also be configured as a mechanical trigger unit and a proximity switch, or a mechanical trigger unit and an optocoupler switch in combination. It is also possible that the second detection element 10 and the second sensing element 12 can be configured as a mechanical trigger unit and a proximity switch, or a magnet and a Hall switch in combination. By identifying the raw material carrier 7 and coffee container 9, the system automatically adapts to different brewing modes, ensuring the taste of the brewed coffee and simplifying the operation.

[0030] A movable coaster 18 is rotatably mounted on the container placement area 1b. The second placement position 1d is set on the surface of the movable coaster 18. The movable coaster 18 can be unfolded relative to the body 1 to be placed above the first placement position 1c in a horizontal state, or it can be folded relative to the body 1 to be stored on the side wall of the container placement area 1b in a vertical or inclined state.

[0031] The first placement position 1c and the second placement position 1d can only be used individually and cannot be used simultaneously. Due to the structural design and height limitations of the coffee cup and coffee pot, the coffee pot can only be placed on the first placement position 1c and the coffee cup can be placed on the second placement position 1d. The control unit 5 identifies the coffee powder container through a magnet. The capsule container and coffee powder filter paper are distinguished by the identification of the coffee container through the control unit 5, thus avoiding misplacement. At the same time, the raw material carrier 7 and the coffee container 9 must be correctly matched to complete the brewing operation.

[0032] like Figure 5-7 As shown, the raw material carrier 7 is a coffee powder container for holding coffee powder 21, which is arranged opposite to the cap 6. The coffee container 9 is a coffee pot placed on the first placement position 1c. The first detection element 8 is installed on the side wall of the coffee powder container. The side wall of the coffee powder container is also provided with a filter hole 7a for filtering impurities. At the same time, the brewing coffee liquid flows from the coffee powder container into the brewing chamber 1a.

[0033] like Figure 5 As shown, the raw material carrier 7 is a capsule container for holding a coffee capsule 22 so that it abuts against the brewing head 13. The coffee container 9 is a coffee cup placed on the second placement position 1d that is unfolded relative to the body 1. A first detection element 8 is installed on the side wall of the capsule container. The brewing head 13 is provided with a first piercing head 131 that cooperates with the top of the coffee capsule 22 and is at least partially placed in the brewing chamber 1a. A brewing channel is provided on the first piercing head 131. A second piercing head 71 that cooperates with the bottom of the coffee capsule is provided inside the capsule container. At least one of the bottom of the capsule container and the second piercing head 71 is provided with a liquid outlet channel 7b. Figure 6 , 7 As shown, the raw material carrier 7 is a coffee filter paper for holding coffee powder 21, and the coffee filter paper is located at the bottom of the brewing funnel 19. The coffee container 9 is a coffee pot placed on the first placement position 1c.

[0034] like Figure 5-10As shown, a first cover plate 72 is movably provided at the top opening of the coffee powder container, opposite to the brewing head 13. The first cover plate 72 has a through hole 72a for the first piercing head 131 to pass through. When brewing with hot water, the coffee powder is confined in the coffee powder container. The first cover plate 72 of the coffee powder container creates pressure inside the container. When the coffee powder is placed on the coffee powder filter paper, it floats up and down in the brewing funnel 19 during the brewing process. Due to the obstruction of the coffee powder filter paper, the brewing speed is slower than that inside the coffee powder container.

[0035] The brewing funnel 19, coffee powder container, and capsule container are positioned by engaging with the sealing cap 6. A support platform is provided on the inner top wall of the brewing funnel 19. The tops of the coffee powder container and capsule container have protruding edges 73 that abut against the support platform, with a liquid passage hole 7c on the protruding edge 73. The bottom of the brewing funnel 19 has several spaced-apart support ridges 191 that abut against the bottom of the raw material carrier 7, surrounding the outer side of the liquid outlet. The outer wall of the coffee powder container has an installation channel penetrating the protruding edge 73, with a magnet installed at the bottom of the installation channel. This allows some water to enter the coffee powder container and flow through the filter hole 7a and the channel between the support ridges 191 to the liquid outlet, or water to enter the capsule container and flow through the liquid outlet channel 7b to the liquid outlet. Some hot water entering the protruding edge 73 flows through the liquid passage hole 7c into the channel between the support ridges 191 and into the liquid outlet.

[0036] In this embodiment, magnets are installed on the convex edges 73 of the coffee powder container and the capsule container, and when the two are placed in the brewing chamber 1a, there is a height difference between the corresponding magnets in the vertical direction, so that the Hall switch with the height difference on the control unit 5 can correctly identify the raw material carrier 7.

[0037] The bottom of the coffee powder container and the capsule container is equipped with an annular baffle. The coffee powder container is used to hold a large amount of coffee powder, and its bottom diameter is larger than that of the capsule container. The bottom of the coffee powder container is located in the middle of the support ridge 191, and the bottom of the capsule container is located at the outer end of the support ridge 192.

[0038] like Figure 3-6 As shown, at least one of the hinged ends of the movable coaster 18 is equipped with a rotating plate 15, which is provided with an arc-shaped groove 15a. A movable part 16 that is slidably installed on the body 1 and is movably engaged with the arc-shaped groove 15a is provided. A second detection element 10 is installed on the movable part 16 and is movably engaged with the second sensing element 12. A first reset part 17 is provided between the rotating plate 15 and the body 1.

[0039] In this embodiment, a positioning seat 20 is installed inside the body 1, and a second sensing element 12 is installed on the positioning seat 20. The bottom of the positioning seat 20 has an opening, and a guide groove 20a is provided on the side wall of the opening. The movable member 16 is slidably disposed on the positioning seat 20, and a first protrusion 161 is slidably disposed on the guide groove 20a. The first protrusion 161 is movably engaged with the arc-shaped sliding groove 15a. A connecting part 151 is provided on the side wall of the rotating plate 15. One end of the first reset member 17 is disposed on the connecting part 151, and the other end is installed on the positioning seat 20. When the second detection element 10 is a mechanical trigger, it can be set as part of the movable member 16. In another embodiment, when the second detection element 10 is a magnet or other electronic sensing structure, it is installed on the movable member 16.

[0040] like Figure 5-8 As shown, the container placement area 1b is located below the brewing chamber 1a. The dispensing valve 14 includes a first pressure-receiving part 14a placed in the brewing chamber 1a and a second pressure-receiving part 14b placed in the container placement area 1b. The first pressure-receiving part 14a is hinged to the brewing funnel 19. One of the raw material carrier 7 and the coffee container 9 moves against the first pressure-receiving part 14a or the second pressure-receiving part 14b to open the dispensing valve 14. The specific structure and working principle of the coffee pot and the dispensing valve 14 have been disclosed in CN 219629358 U and will not be described in detail here.

[0041] The bottom of the coffee powder container is curved to avoid the first pressure-bearing part 14a. The capsule container is movably fitted between the brewing head 13 and the first pressure-bearing part 14a; when the coffee pot is placed on the first placement position 1c, the top of the coffee pot moves against the second pressure-bearing part 14b; when the movable coaster 18 rotates to the second placement position 1d above the first placement position 1c, and a coffee cup is placed on the second placement position 1d, the bottom of the capsule container moves against the first pressure-bearing part 14a. This ensures that the raw material carrier 7 must match the corresponding coffee container 9 to open the dispensing valve 14, avoiding mismatched dispensing. Furthermore, the dispensing valve 14 can be opened from both inside and outside the machine body 1, improving its practicality and convenience.

[0042] In this embodiment, there are two control units 5. The control board of one control unit 5 is located outside the brewing chamber 1a. Two Hall switches are installed vertically at intervals on the control board, which cooperate with the magnets on the coffee powder container or capsule container. The control board of the other control unit 5 is installed on the positioning seat 20 inside the machine body 1. An optocoupler switch is installed on the control board. By moving the movable part 16 to block or move away from the transmitter of the optocoupler switch, the raw material carrier 7 and the coffee container 9 can be identified respectively.

[0043] like Figure 5-7As shown, when the coffee cup is placed on the second placement position 1d, the movable coaster 18 flips downwards, and the rotating plate 15 drives the movable part 16 to move upwards and away from the control unit 5 within the positioning seat 20, causing the optocoupler switch to disconnect. The control unit 5 identifies the coffee container 9 as an open coffee cup based on this signal. When the raw material carrier 7 is a capsule container, the Hall switch senses the magnet at the corresponding position, and the control unit 5 identifies the raw material carrier 7 as a capsule container. The system operates in single-cup mode. When the cap 6 is closed, it presses down on the capsule container, causing it to touch the first pressure part 14a and open the liquid outlet valve 14. The first piercing head 131 is inserted into the top of the coffee capsule, and the second piercing head 71 is inserted into the bottom of the coffee capsule. The control unit 5 controls the water pump 3 and the heating component 4 to work, brewing the coffee capsule. The coffee liquid flows out from the liquid outlet channel 7b and enters the liquid outlet. The heating component 4 heats to the set temperature, and the water pump 3 automatically stops when it pumps water to the set amount.

[0044] When the coffee cup is removed, the movable coaster 18 is reset by the action of the first reset member 17. The rotating plate 15 drives the movable member 16 to move downward within the positioning seat 20, so that the optocoupler switch is connected. Based on the sensing signal, the control unit 5 determines whether to run in the fast multi-cup mode or the regular multi-cup mode according to whether the magnet is recognized.

[0045] When the coffee pot is placed on the first placement position 1c, the movable coaster 18 is stored between the side wall of the coffee pot and the container placement area 1b. The control unit 5 identifies the coffee container 9 as a coffee pot with a lid based on the signal connected by the optocoupler switch. When the raw material carrier 7 is coffee powder filter paper, the first sensing element 11 cannot sense the magnet, and the system operates according to the fast multi-cup mode. The top of the coffee pot presses upward against the second pressure part 14b to open the liquid outlet valve 14. The control unit 5 controls the water pump 3 and the heating element 4 to work to brew the coffee powder. The coffee liquid flows from the coffee powder filter paper into the liquid outlet. The heating element 4 heats to the set temperature and set time. The water pump 3 automatically stops when it pumps water to the set amount.

[0046] When the coffee pot is placed on the first placement position 1c, the control unit 5 identifies the coffee container 9 as a coffee pot with a lid based on the signal connected by the optocoupler switch. When the raw material carrier 7 is a coffee powder container, the Hall switch senses the magnet at the corresponding position, and the control unit 5 identifies the raw material carrier 7 as a coffee powder container. The system operates according to the conventional multi-cup mode. When the lid 6 is closed, the first piercing head 131 passes through the through hole 72a of the first lid 72 and inserts into the coffee powder container. The top of the coffee pot drives the opening of the liquid outlet valve 14. The control unit 5 controls the water pump 3 and the heating component 4 to work and brew the coffee powder. The coffee liquid flows out from the filter hole 7a and enters the liquid outlet. The heating component 4 heats to the set temperature and set time. The water pump 3 automatically stops when it pumps water to the set water volume.

[0047] The above description is merely a preferred embodiment of this utility model. The protection scope of this utility model is not limited to the above embodiments. All technical solutions falling within the scope of this utility model's concept are protected. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principle of this utility model should also be considered within the protection scope of this utility model.

Claims

1. A multi-functional coffee machine system, comprising a body (1), wherein a water storage container (2), a water pump (3), a heating component (4), and a control unit (5) are installed on the body (1), and the body (1) is provided with a brewing chamber (1a) and a container placement area (1b), wherein a lid (6) is movably installed at the opening of the brewing chamber (1a), characterized in that: The brewing chamber (1a) is provided with a raw material carrier (7), and at least two raw material carriers (7) are replaceable, with at least one raw material carrier (7) equipped with a first detection element (8). The container placement area (1b) is provided with a first placement position (1c) and a second placement position (1d) rotatably disposed on the first placement position (1c) for placing a coffee container (9). A second detection element (10) is connected to the second placement position (1d). The body (1) is provided with a first sensing element (11) that cooperates with the first detection element (8) and a second sensing element (12) that cooperates with the second detection element (10). The control unit (5) is electrically connected to the first sensing element (11), the second sensing element (12), the water pump (3), and the heating component (4) respectively, and is used to identify at least one of the raw material carrier (7) and the coffee container (9) according to the sensing signals of the first sensing element (11) and the second sensing element (12), and control the working status of the water pump (3) and the heating component (4).

2. The multi-functional coffee machine system as described in claim 1, characterized in that: The first detection element (8) and the second detection element (10) are triggering parts, and the triggering parts include at least one of a magnet and a mechanical triggering part. The first sensing element (11) and the second sensing element (12) are at least one of a magnetic induction switch, a proximity switch, and an optocoupler switch.

3. The multi-functional coffee maker system as claimed in claim 1, wherein: The cap (6) is equipped with a brewing head (13), which has several brewing channels. The bottom of the brewing chamber (1a) is provided with a liquid outlet, which is equipped with a liquid outlet valve (14). The coffee container (9) includes a coffee pot and a coffee cup.

4. The multi-functional coffee maker system according to claim 3, wherein: A movable coaster (18) is rotatably mounted on the container placement area (1b). The second placement position (1d) is located on the movable coaster (18). The movable coaster (18) can be unfolded relative to the body (1) to be placed above the first placement position (1c), or it can be folded relative to the body (1) to be stored on the side wall of the container placement area (1b).

5. The multi-functional coffee maker system according to claim 3, wherein: The raw material carrier (7) is a coffee powder container for holding coffee powder (21), the coffee container (9) is a coffee pot placed on the first placement position (1c), the coffee powder container is equipped with a first detection element (8), and the coffee powder container is also provided with a filter hole (7a).

6. The multi-functional coffee maker system according to claim 4, wherein: The raw material carrier (7) is a capsule container for holding a coffee capsule (22) so that it abuts against the brewing head (13). The coffee container (9) is a coffee cup placed on a second placement position (1d) that is unfolded relative to the body (1). A first detection element (8) is installed on the capsule container. The brewing head (13) is provided with a first piercing head (131) that cooperates with the top of the coffee capsule (22). The brewing channel is provided on the first piercing head (131). The capsule container is provided with a second piercing head (71) that cooperates with the bottom of the coffee capsule. At least one of the bottom of the capsule container and the second piercing head (71) is provided with a liquid outlet channel (7b).

7. The multi-functional coffee maker system according to claim 3, wherein: The raw material carrier (7) is a coffee powder filter paper for holding coffee powder (21), and the coffee container (9) is a coffee pot placed on the first placement position (1c).

8. The multi-functional coffee maker system of claim 4, wherein: At least one of the movable coasters (18) is fitted with a rotating plate (15) at the hinge end of the body (1). The rotating plate (15) has an arc-shaped groove (15a) on its side wall. A movable part (16) that is movably fitted with the arc-shaped groove (15a) is slidably mounted on the body (1). The second detection element (10) is mounted on the movable part (16) and movably fitted with the second sensing element (12). A first reset part (17) is provided between the rotating plate (15) and the body (1).

9. The multi-functional coffee maker system according to any one of claims 3-8, wherein: The container placement area (1b) is located below the brewing chamber (1a). The dispensing valve (14) includes a first pressure-receiving part (14a) placed in the brewing chamber (1a) and a second pressure-receiving part (14b) placed in the container placement area (1b). One of the raw material carrier (7) and the coffee container (9) moves against the first pressure-receiving part (14a) or the second pressure-receiving part (14b) to open the dispensing valve (14).

10. The multi-functional coffee maker system of claim 9, wherein: The raw material carrier (7) includes a capsule container and a coffee powder container; When a coffee pot is placed on the first placement position (1c), the top of the coffee pot moves against the second pressure part (14b); when the second placement position (1d) rotates to the first placement position (1c) and a coffee cup is placed on the second placement position (1d), the bottom of the capsule container moves against the first pressure part (14a).

Citation Information

Patent Citations

  • Coffee machine

    CN219629358U