Food processor
By using magnetic fit and two-way communication pin connection in the food processor, the two-way communication between the power board and the battery control board is realized, which solves the problem of no communication between the battery pack and the body, ensures that the body can detect the battery status in real time, and improves the reliability of battery use and connection stability.
Patent Information
- Application Number
- CN202422178955.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-05
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-09-05
AI Technical Summary
In existing food processors, there is no communication function between the battery pack and the body, which makes the body unable to obtain the battery's low battery.
Magnetic cooperation and two-way communication pin connection are used to realize two-way communication between the power board and the battery control board, and connect the charging bag and the body through magnetic suction to ensure real-time transmission of power information.
The body can detect the state of the rechargeable battery in real time, and send out low-voltage signals in time when the battery is too low, improving the reliability of battery use and connection stability.
Smart Images

Figure CN223143356U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field related to food processing, in particular to a food processor for slicing and cutting food. Background Art
[0002] A food processor is a kitchen appliance that stirs and cuts food. Its basic structure consists of a body and a cooking cup set. A drive assembly is provided in the body, and a knife holder is provided in the cooking cup set. The knife rod is installed on the knife holder, and then the knife is installed on the knife rod. After assembly is completed, the knife is driven to rotate at high speed by the drive assembly.
[0003] A Chinese utility model patent with authorization announcement number CN219645588U discloses a wireless food processor, comprising: a main body, a battery compartment disposed in the main body; a battery pack, the battery pack being detachably disposed in the battery compartment, and the battery pack being provided with a bidirectional charging port. Although the rechargeable battery in this technical solution realizes the disassembly function, it cannot realize the communication function between the battery pack and the main body, resulting in the main body being unable to obtain the low battery condition, so it needs to be improved. Utility Model Content
[0004] The utility model aims to provide a food processor, which solves the problem that the battery pack and the body of the existing food processor have no communication function, resulting in the body being unable to detect the situation where the battery is low.
[0005] In order to solve the above technical problems, the utility model is realized by the following technical solutions:
[0006] The utility model discloses a food processor, comprising a body and a charging pack, wherein the charging pack is detachably mounted on the side of the body, a power board is arranged in the body, a first magnet, a two-way communication pin, a positive charging pin, and a negative charging pin are arranged on the side of the body, the two-way communication pin, the positive charging pin, and the negative charging pin are electrically connected to the power board, the charging pack comprises a shell, a battery control board, and a rechargeable battery, the battery control board and the rechargeable battery are placed in the shell, a second magnet, a communication interface, a Type-C charging port, a positive interface, and a negative interface are arranged on one side of the shell, the first magnet is magnetically matched with the second magnet, the rechargeable battery, the communication interface, the Type-C charging port, the positive interface, and the negative interface are electrically connected to the battery control board, the two-way communication pin is plugged into the communication interface to realize two-way communication between the power board and the battery control board, the negative charging pin is plugged into the negative interface, and the positive charging pin is plugged into the positive interface.
[0007] Preferably, for the convenience of disassembly, the food processor further includes a cooking cup set and a knife assembly. A driving assembly electrically connected to the power board is also provided inside the body. The knife assembly is detachably connected to the driving assembly and driven by the driving assembly to rotate. The entire knife assembly is placed inside the cooking cup set.
[0008] Preferably, for the convenience of feeding, the cooking cup set includes a cooking cup and a cup lid. The cup lid is covered on the cooking cup. A feeding channel is provided on the cup lid. The feeding channel communicates with the cooking cup. A pushing rod is movably installed in the feeding channel.
[0009] Preferably, for the convenience of disassembling the knife, the knife assembly includes a knife rod, a pentagram rotating seat, an upper positioning ring, a lower positioning ring and a combined knife. The knife rod is detachably inserted into a pentagram rotating seat. The pentagram rotating seat is detachably inserted into the output shaft of the driving assembly. The lower positioning ring and the upper positioning ring are detachably connected to the knife rod. A combined knife sleeved outside the knife rod is arranged between the lower positioning ring and the upper positioning ring. The combined knife includes a knife disc. Knife holes for shredding are arranged on the front surface of the knife disc. Knife heads for slicing are arranged on the back surface of the knife disc.
[0010] Preferably, an inner pentagonal groove for inserting the pentagram rotating seat is arranged inside the bottom of the knife rod. A gear is arranged at the top of the knife rod. Inner gear rings I meshing with the gear are arranged on both the lower positioning ring and the upper positioning ring.
[0011] Preferably, for improving the guiding effect during insertion, a hexagonal boss is arranged on the upper positioning ring. A hexagonal groove for inserting the hexagonal boss is arranged on the lower positioning ring. More than one positioning groove is annularly arranged in the hexagonal groove. A guiding rod inserted into the positioning groove is arranged on the hexagonal boss. A hexagonal positioning through hole facilitating the passing of the hexagonal boss is arranged on the knife disc.
[0012] Preferably, there are three negative charging pins, three positive charging pins, and four two-way communication pins. The negative charging pins, the positive charging pins, and the two-way communication pins are constituted by a 12-pin row pin.
[0013] Preferably, for realizing the detection of the power during charging, a power detection button is further arranged on one side of the housing facing the two-way communication pins. A charging indicator light electrically connected to the battery control board is arranged on one side of the housing away from the two-way communication pins.
[0014] The utility model has the following beneficial effects: Since the power supply board and the battery control board are connected by two-way communication, it can finally be realized that when the whole machine is working, the fuselage can detect the state of the rechargeable battery in real time. When the battery level of the rechargeable battery is too low, the low battery signal of the rechargeable battery can be communicated and sent to the power supply board, so that the fuselage can obtain the low battery information of the rechargeable battery in time. Moreover, in this structure, the charging pack and the fuselage are connected by a magnetic attraction method, which further improves the connectivity. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 is a schematic structural diagram of a food processor in Embodiment 1;
[0016] Figure 2 is a schematic structural diagram of a food processor without a charging pack installed in Embodiment 1;
[0017] Figure 3 is Figure 2 an enlarged view of part A;
[0018] Figure 4 is an exploded view of the fuselage without a cooking cup and a cutter head installed in Embodiment 1;
[0019] Figure 5 is a schematic structural diagram of the charging pack in Embodiment 1 Figure 1 ;
[0020] Figure 6 is a schematic structural diagram of the charging pack in Embodiment 1 Figure 2 ;
[0021] Figure 7 is an exploded structural schematic diagram of the charging pack in Embodiment 1;
[0022] Figure 8 is an exploded structural schematic diagram of the fuselage without a cooking cup and a cutter assembly installed in Embodiment 1;
[0023] Figure 9 is a schematic structural diagram of the cutter bar Figure 1 ;
[0024] Figure 10 is a schematic structural diagram of the cutter bar Figure 2 ;
[0025] Figure 11 is a schematic structural diagram of the lower positioning ring;
[0026] Figure 12 is a schematic structural diagram of the upper positioning ring Figure 1 ;
[0027] Figure 13 is a schematic structural diagram of the upper positioning ring Figure 2 ;
[0028] Figure 14 Structural schematic of a combined tool Figure 1 ;
[0029] Figure 15 Structural schematic of a combined tool Figure 2 。
[0030] Reference numerals in the drawings: body 1, charging pack 2, housing 201, battery control board 202, rechargeable battery 203, power board 3, magnet 1 4, two-way communication pin 5, positive charging pin 6, negative charging pin 7, magnet 2 8, communication interface 9, Type-C charging port 10, positive interface 11, negative interface 12, food processor set 13, food processor cup 131, cup lid 132, knife assembly 14, knife rod 141, five-pointed star rotating seat 142, upper positioning ring 143, lower positioning ring 144, combined tool 145, cutter head 1451, shredded knife hole 1452, slicing knife head 1453, inner five-pointed star groove 1411, gear 1412, inner gear ring 1 1413, lifting rod 1414, drive assembly 15, feeding channel 16, pushing rod 17, power detection button 18, charging indicator light 19, hexagonal boss 20, hexagonal groove 21, positioning groove 22, guide rod 23, hexagonal positioning through hole 24. Detailed implementation manners
[0031] To make the objectives, technical solutions and advantages of the embodiments of the present utility model clearer, the technical solutions in the embodiments of the present utility model will be clearly and completely described below in conjunction with the embodiments of the present utility model. Obviously, the described embodiments are part of the embodiments of the present utility model, rather than all of the embodiments. Based on the embodiments in the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model. Embodiment
[0032] Please refer to Figures 1 - 15 as shown, a food processor disclosed in this embodiment includes a body 1 (such as Figure 4As shown, in this embodiment, the fuselage 1 includes a cooperating outer cover and a base, as well as a charging pack 2. The charging pack 2 is detachably mounted on the side of the fuselage 1. A power board 3 is provided inside the fuselage 1. On the side of the fuselage 1, there are a magnet one 4, a two-way communication pin 5, a positive charging pin 6, and a negative charging pin 7. The two-way communication pin 5, the positive charging pin 6, and the negative charging pin 7 are electrically connected to the power board 3. The charging pack 2 includes a housing 201 (in this embodiment, the housing 201 includes a cooperating upper cover and a lower cover), a battery control board 202, and a rechargeable battery 203. The battery control board 202 and the rechargeable battery 203 are placed inside the housing 201. On one side of the housing 201, there are a magnet two 8, a communication interface 9, a Type-C charging port 10, a positive interface 11, and a negative interface 12. The magnet one 4 and the magnet two 8 are magnetically engaged. The rechargeable battery 203, the communication interface 9, the Type-C charging port 10, the positive interface 11, and the negative interface 12 are electrically connected to the battery control board 202. The two-way communication pin 5 is plugged into the communication interface 9 to achieve two-way communication between the power board 3 and the battery control board 202. The negative charging pin 7 is plugged into the negative interface 12, and the positive charging pin 6 is plugged into the positive interface 11.
[0033] Preferably, for convenient disassembly, the food processor further includes a cooking cup set 13 and a knife assembly 14. A drive assembly 15 electrically connected to the power board 3 is also provided inside the fuselage 1. The knife assembly 14 is detachably connected to the drive assembly 15 and is driven by the drive assembly 15 to rotate. The entire knife assembly 14 is placed inside the cooking cup set 13. For convenient feeding, the cooking cup set 13 includes a cooking cup 131 and a cup cover 132. The cup cover 132 covers the cooking cup 131. An inlet channel 16 is provided on the cup cover 132. The inlet channel 16 communicates with the cooking cup 131. A pusher rod 17 is movably installed inside the inlet channel 16. It should be noted that the cooking cup set 13 and the pusher rod 17 can adopt corresponding mechanisms in existing food processors such as meat grinders. Since those skilled in the art clearly know how to implement them, they will not be elaborated here.
[0034] Preferably, for the convenience of disassembling the tool, the tool assembly 14 includes a tool bar 141, a pentagram rotating seat 142, an upper positioning ring 143, a lower positioning ring 144 and a combined tool 145. The tool bar 141 is detachably inserted into a pentagram rotating seat 142, and the pentagram rotating seat 142 is detachably inserted into the output shaft of the driving assembly 15. The lower positioning ring 144 and the upper positioning ring 143 are detachably connected to the tool bar 141. A combined tool 145 sleeved outside the tool bar 141 is arranged between the lower positioning ring 144 and the upper positioning ring 143. The combined tool 145 includes a tool disc 1451. A wire cutting hole 1452 for wire cutting is arranged on the front surface of the tool disc 1451, and a slicing cutter head 1453 for slicing is arranged on the back surface of the tool disc 1451. When the front surface of the tool disc 1451 in this structure is used, the wire cutting hole 1452 is used to cut food into wires. When the back surface of the tool disc 1451 is used, the slicing cutter head 1453 is used to slice food, further reducing the number of tool components and facilitating storage. When in use, the lower positioning ring 144 is first sleeved outside the tool bar 141, and the lower positioning ring 144 is positioned by the step above the tool bar 141. Then the tool disc 1451 is sleeved outside the tool bar 141, and then the upper positioning ring 143 is sleeved on. The lifting rod 1414 inserted above the tool bar 141 is inserted into the central positioning hole of the cup cover 132 for positioning, so as to fix and limit the combined tool 145, and it is convenient to disassemble and clean the combined tool 145 later.
[0035] It should be noted that the driving assembly 15 can adopt the corresponding mechanism in existing food processors such as meat grinders. Since those skilled in the art clearly know how to implement it, it will not be elaborated here.
[0036] Preferably, an inner pentagonal groove 1411 for inserting the pentagram rotating seat 142 is arranged inside the bottom of the tool bar 141. A gear 1412 is arranged at the top of the tool bar 141. Inner gear rings 1413 meshing with the gear 1412 are arranged on both the lower positioning ring 144 and the upper positioning ring 143. Through the cooperation of the gear 1412 and the inner gear ring 1413, when the tool bar 141 rotates with the driving assembly 15, the lower positioning ring 144 and the upper positioning ring 143 are synchronously driven to rotate, and finally the combined tool 145 is driven to rotate.
[0037] Preferably, in order to improve the guiding effect during insertion, a hexagonal boss 20 is provided on the upper positioning ring 143, a hexagonal groove 21 for inserting the hexagonal boss 20 is provided on the lower positioning ring 144, more than one positioning groove 22 is annularly provided in the hexagonal groove 21, a guiding rod 23 inserted into the positioning groove 22 is provided on the hexagonal boss 20, and a hexagonal positioning through hole 24 facilitating the passage of the hexagonal boss 20 is provided on the cutter head 1451. Through the above structural settings, effective fixation and limiting effects on the combined cutter 145 are achieved, and the guiding effect during the insertion of the upper positioning ring 143 and the lower positioning ring 144 is realized by the cooperation of the guiding rod 23 and the positioning groove 22.
[0038] Preferably, for the convenience of connection, there are three negative charging pins 7, three positive charging pins 6, and four two-way communication pins 5. The negative charging pins 7, positive charging pins 6, and two-way communication pins 5 are composed of a 12-pin row pin. This structure uses the row pin to facilitate connection when the charging pack 2 is inserted into the fuselage 1. Therefore, the communication interface 9, positive interface 11, and negative interface 12 adopt a 13-hole female row socket.
[0039] Preferably, in order to realize the detection of the battery level during charging, a battery level detection button 18 is further provided on one side of the housing 201 facing the two-way communication pin 5, and a charging indicator light 19 electrically connected to the battery control board 202 is provided on one side of the housing 201 away from the two-way communication pin 5. With the above structural settings, when the rechargeable battery 203 has no power and needs to be charged, the charging pack 2 is removed, and the rechargeable battery 203 is charged through the Type-C charging port 10 connected to the charging cable. During the charging process, the battery level detection button 18 can be pressed once, and then the charging indicator light 19 on the front (there are 4 charging indicator lights 19 in total, and all 4 lights being on indicates that the charging is completed. The fewer the number of lit charging indicator lights 19, the less charge is inside the rechargeable battery 203) can display the current battery level of the battery, facilitating the user to check the charging situation in a timely manner. Moreover, after the battery level detection button 18 is released, the charging indicator light 19 does not display the battery level after a certain period of time, further achieving an energy-saving effect.
[0040] In this embodiment, since the power supply board 3 and the battery control board 202 are connected through two-way communication, ultimately, when the whole machine is working, the fuselage 1 can be made to detect the state of the rechargeable battery 203 in real time. When the power of the rechargeable battery 203 is too low, the low battery level signal of the rechargeable battery 203 can be communicated and sent to the power supply board 3, enabling the fuselage 1 to obtain the low battery level information of the rechargeable battery 203 in a timely manner. Moreover, in this structure, the charging pack 2 and the fuselage 1 are connected by a magnetic attraction method, further improving the connectivity.
[0041] It should be noted that the specific models of the battery control board 202 and the power supply board 3, as well as the specific manner in which the battery control board 202 realizes two-way communication connection with the power supply board 3 and the specific way in which the battery control board 202 obtains the battery power of the rechargeable battery 203 belong to the conventional technologies in the art, and thus will not be described in detail.
[0042] The above are only the preferred embodiments of the present utility model and do not limit the present utility model. Any modification to the technical solutions recorded in the foregoing embodiments, any equivalent replacement of some technical features, and any modification, equivalent replacement, or improvement made are all within the protection scope of the present utility model.
Claims
1. A food processor, comprising a body (1) and a charging pack (2), wherein the charging pack (2) is detachably mounted on the side of the body (1), and a power board (3) is arranged in the body (1), characterized in that: On the side of the fuselage (1), there are a first magnet (4), a two-way communication pin (5), a positive charging pin (6), and a negative charging pin (7). The two-way communication pin (5), the positive charging pin (6), and the negative charging pin (7) are electrically connected to the power board (3). The charging pack (2) includes a housing (201), a battery control board (202), and a rechargeable battery (203). The battery control board (202) and the rechargeable battery (203) are placed inside the housing (201). On one side of the housing (201), there are a second magnet (8), a communication interface (9), a Type-C charging port (10), a positive interface (11), and a negative interface (12). The first magnet (4) is magnetically engaged with the second magnet (8). The rechargeable battery (203), the communication interface (9), the Type-C charging port (10), the positive interface (11), and the negative interface (12) are electrically connected to the battery control board (202). The two-way communication pin (5) is plugged into the communication interface (9) to achieve two-way communication between the power board (3) and the battery control board (202). The negative charging pin (7) is plugged into the negative interface (12), and the positive charging pin (6) is plugged into the positive interface (11).
2. The food processor according to claim 1, wherein: The food processor further includes a cooking cup set (13) and a knife assembly (14). Inside the fuselage (1), there is also a drive assembly (15) electrically connected to the power board (3). The knife assembly (14) is detachably connected to the drive assembly (15) and is driven to rotate by the drive assembly (15). The entire knife assembly (14) is placed inside the cooking cup set (13).
3. The food processor according to claim 2, wherein: The cooking cup set (13) includes a cooking cup (131) and a cup lid (132). The cup lid (132) is covered on the cooking cup (131). On the cup lid (132), there is a feeding channel (16) that communicates with the cooking cup (131). A pusher rod (17) is movably installed inside the feeding channel (16).
4. The food processor according to claim 3, characterized in that: The knife assembly (14) includes a knife rod (141), a five-pointed star rotating seat (142), an upper positioning ring (143), a lower positioning ring (144), and a combined cutter (145). The knife rod (141) is detachably plugged onto a five-pointed star rotating seat (142). The five-pointed star rotating seat (142) is detachably plugged onto the output shaft of the drive assembly (15). The lower positioning ring (144) and the upper positioning ring (143) are detachably connected to the knife rod (141). Between the lower positioning ring (144) and the upper positioning ring (143), there is a combined cutter (145) sleeved outside the knife rod (141). The combined cutter (145) includes a cutter disc (1451). On the front of the cutter disc (1451), there are cutter holes (1452) for shredding, and on the back of the cutter disc (1451), there are cutter heads (1453) for slicing.
5. The food processor according to claim 4, characterized in that: An inner pentagonal groove (1411) inserted with a pentagram rotating base (142) is provided inside the bottom of the tool shank (141). A gear (1412) is provided at the top of the tool shank (141). Inner gear rings one (1413) meshing with the gear (1412) are provided on both the lower positioning ring (144) and the upper positioning ring (143).
6. The food processor according to claim 5, wherein: A hexagonal boss (20) is provided on the upper positioning ring (143). A hexagonal groove (21) for inserting the hexagonal boss (20) is provided on the lower positioning ring (144). More than one positioning groove (22) is annularly provided in the hexagonal groove (21). A guide rod (23) inserted into the positioning groove (22) is provided on the hexagonal boss (20). A hexagonal positioning through hole (24) facilitating the passing of the hexagonal boss (20) is provided on the tool disc (1451).
7. The food processor according to claim 1 or 2 or 3 or 4 or 5 or 6, characterized in that: There are three negative charging pins (7), three positive charging pins (6), and four two-way communication pins (5). The negative charging pins (7), positive charging pins (6), and two-way communication pins (5) are constituted by a 12-pin row pin.
8. The food processor according to claim 1 or 2 or 3 or 4 or 5 or 6, characterized in that: A power quantity detection button (18) is further provided on one side of the housing (201) facing the two-way communication pins (5). A charging indicator light (19) electrically connected to the battery control board (202) is provided on one side of the housing (201) away from the two-way communication pins (5).
Citation Information
Patent Citations
Wireless food processor
CN219645588U