Main control module, drying control module, main control components and garment processing equipment
Through the design of the main control module, the same main control module can be used for both single-wash washing machines and washer-dryer combos, solving the high cost problem caused by different circuit boards required for different devices, and enabling large-scale procurement and cost reduction.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- QINGDAO HAIER DRUM WASHING MACHINE CO LTD
- Filing Date
- 2025-07-17
- Publication Date
- 2026-07-17
AI Technical Summary
Existing washer-dryer combos and washing machines that only require washing require different types of main control circuit boards, resulting in small purchase volumes and high costs, which affects manufacturers, the market, and consumers.
A main control module is provided, comprising a main circuit board and a drying connection circuit board, which can be detachably connected through the limiting groove of the mounting bracket. It can control both single washing operation and washing and drying operations of a washer-dryer combo, and the same main control module can be purchased uniformly.
This allows for the large-scale procurement of the same main control module, whether producing single-wash washing machines or washer-dryer combos, thereby reducing production costs.
Smart Images

Figure CN224513859U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of clothing processing technology, specifically providing a main control module, a drying control module, a main control component, and clothing processing equipment. Background Technology
[0002] With the development of technology and the upgrading of user needs, washing machines are becoming more and more diversified. Washer-dryer combos and washing machines that only wash are two common types of clothing processing equipment, which can meet different market demands respectively. The two complement each other and coexist. In the production of clothing processing equipment, it is necessary to take into account both washer-dryer combos and washing machines that only wash.
[0003] Existing washer-dryer combos and washing machines that only require washing each have their own corresponding main control circuit boards. Different types of main control circuit boards need to be purchased in batches for both, resulting in a small purchase quantity for each type. Since the cost per unit decreases as the purchase quantity increases, the small purchase quantity leads to a higher cost for the main control circuit boards, which in turn leads to a higher cost for the entire garment processing equipment. This has multiple adverse effects on manufacturers, the market, and consumers. Utility Model Content
[0004] The present invention aims to solve the above-mentioned technical problems, namely, how to reduce the production costs of single-wash washing machines and washer-dryer combos when they coexist in the market.
[0005] In a first aspect, the present invention provides a main control module, the main control module comprising: a main circuit board configured to generate washing action control signals and drying control commands; a drying connection circuit board connected to the main circuit board; and a mounting bracket including a first limiting groove, the drying connection circuit board being disposed within the first limiting groove, the first limiting groove being adapted to be detachably connected to the drying circuit board, so that the drying connection circuit board is electrically connected to the drying circuit board, and the main circuit board is able to send the drying control commands to the drying circuit board.
[0006] With the above technical solution, since the main circuit board can generate washing action control signals, it can control the garment processing equipment to perform a single washing operation. Therefore, when the garment processing equipment is a single-wash washing machine, only a separate main control module is needed. Furthermore, since the main circuit board has a pre-installed drying connection circuit board, and the mounting bracket has a first limiting groove, which provides protection for the drying connection circuit board and facilitates detachable connection with it, the drying circuit board and the drying connection circuit board can be electrically connected to jointly control the garment processing equipment to perform washing and drying operations. Therefore, when the garment processing equipment is a washer-dryer combo, both the main control module and the drying circuit board are needed. Through this structural setup, the same main control module needs to be purchased regardless of whether a single-wash washing machine or a washer-dryer combo is being produced. The drying circuit board is then purchased based on the production volume of the washer-dryer combo, thus enabling large-scale procurement of the main control module. This eliminates the need to design and purchase two different main control modules for single-wash washing machines and washer-dryer combos, effectively reducing the production costs of both types of machines.
[0007] In a specific embodiment of the above-mentioned main control module, a first partition is provided in the first limiting groove. The first partition divides the internal space of the first limiting groove into multiple drying ports. The multiple drying ports are respectively adapted to be detachably connected to the drying circuit board, the fan and the heating device of the drying system of the clothing processing equipment, so that the drying connection circuit board is electrically connected to the drying circuit board, the fan and the heating device respectively, and the main circuit board can send the drying control command to the drying circuit board and receive the feedback signal from the fan and the heating device.
[0008] When the above technical solution is adopted, the first partition divides the internal space of the first limiting groove into multiple drying ports, so that the drying circuit board, fan and heating device can be connected to the corresponding drying ports respectively, avoiding incorrect connection position, achieving the purpose of foolproofing, and ensuring the normal use of the main control module.
[0009] In a specific implementation of the above-mentioned main control module, a buckle is provided on the side wall of the first limiting groove, and the buckle is adapted to engage with the locking groove of the terminal inserted into the first limiting groove.
[0010] When the above technical solution is adopted, the terminal can be fixed to the first limiting groove by the snap-fit and locking slot. At the same time, according to the position of the snap-fit and locking slot, the incorrect installation direction of the terminal can be avoided, thus achieving the purpose of foolproof and ensuring the normal use of the main control module.
[0011] In a specific implementation of the above-mentioned main control module, a limiting plate is provided on the side wall of the first limiting groove, and a limiting notch is provided on the limiting plate. The limiting notch is adapted to allow the protruding structure of the terminal inserted in the first limiting groove to be movably disposed therein.
[0012] When the above technical solution is adopted, the terminal can be limited by the movable connection between the protruding structure and the limiting notch, making it convenient to insert the terminal into the first limiting groove. At the same time, according to the position of the protruding structure and the limiting notch, the incorrect installation direction of the terminal can be avoided, achieving the purpose of foolproofing and ensuring the normal use of the main control module.
[0013] In a specific implementation of the above main control module, the mounting bracket further includes a first wiring groove connected to the first limiting groove and a first pressure arm connected to the first wiring groove. The first wiring groove and the first pressure arm form a first wire harness arrangement area, which is suitable for arranging wire harnesses connected to the first limiting groove.
[0014] When the above technical solution is adopted, the arrangement of the wire harness can be made orderly by setting the first wiring channel and the first pressure arm, so as to avoid the wire harness being arranged in a messy manner and prevent the wire harness from being damaged due to excessive bending.
[0015] In a specific embodiment of the above-mentioned main control module, a communication connection circuit board is also connected to the main circuit board, and the mounting bracket further includes a second limiting groove. The communication connection circuit board is disposed in the second limiting groove. The second limiting groove is adapted to be detachably connected to the sensor of the drying system of the clothing processing equipment, so that the communication connection circuit board is electrically connected to the sensor and sends the feedback signal of the sensor to the main circuit board.
[0016] When the above technical solution is adopted, the second limiting groove provides protection for the communication connection circuit board and guides the electrical connection between the sensor and the communication connection circuit board.
[0017] In a specific embodiment of the above-mentioned main control module, the main control module further includes a main housing, the main circuit board and the mounting bracket are disposed in the main housing; the main housing is provided with an angle; and / or the mounting bracket is provided with multiple locking feet, the main housing is provided with multiple locking slots, and the locking feet engage with the locking slots.
[0018] With the above technical solution, the main housing provides protection for the main control module. The angled design on the main housing prevents mistaken installation of the main control module and adapts to the shape of the garment processing equipment's casing. The mounting bracket engages with the main housing via clips, facilitating its installation and removal.
[0019] In a second aspect, the present invention also provides a drying control module, the drying control module including a drying circuit board adapted to be connected to a main control module, the drying circuit board being used to receive the drying control command and generate a drying action control signal according to the drying control command.
[0020] When the above technical solution is adopted, after the drying control module is connected to the main control module, they can jointly control the washer-dryer to perform washing and drying operations.
[0021] In a specific implementation of the above-mentioned main control module, the drying circuit board is provided with multiple interfaces and heat dissipation fins. The multiple interfaces are electrically connected to the drying connection circuit board, the fan and heating device of the drying system of the clothing processing equipment, respectively, so that the drying circuit board can receive the drying control command issued by the main circuit board and send the drying action control signal to the fan and the heating device. The interface is located on the outer periphery of the heat dissipation fins.
[0022] With the above technical solution, the three interfaces share a single heat sink fin, which can effectively save space while meeting heat dissipation requirements.
[0023] In a specific implementation of the above main control module, the drying control module further includes a drying housing, and the drying circuit board is disposed inside the drying housing.
[0024] When the above technical solution is adopted, the drying shell can provide protection for the drying circuit board.
[0025] In a third aspect, the present invention also provides a main control component, which includes a main control module and a drying control module.
[0026] When adopting the above technical solution, the main control component can be directly purchased when producing washer-dryer combos. The main control component can be used to control the washing and drying operations of the washer-dryer combo.
[0027] In a fourth aspect, the present invention also provides a garment processing device, which includes a main control module or a main control component.
[0028] When the above technical solution is adopted, the garment processing equipment includes a main control module when it is a single-wash washing machine, and a washer-dryer combo when it is a washer-dryer combo. The garment processing equipment includes a main control component, namely a main control module and a drying control module. This means that the same main control module needs to be purchased when producing both single-wash washing machines and washer-dryer combos. The drying circuit board is then purchased according to the production volume of the washer-dryer combo, thereby achieving large-scale procurement of the main control module. It also eliminates the need to design and purchase two different main control modules for single-wash washing machines and washer-dryer combos, effectively reducing the production costs of both types of machines.
[0029] Compared to existing technologies, the advantages of the main control module provided by this utility model are as follows: Since the main circuit board can generate washing action control signals, it can control the garment processing equipment to perform a single washing operation. Therefore, when the garment processing equipment is a single-wash washing machine, only a separate main control module is needed. Furthermore, since the main circuit board has a pre-installed drying connection circuit board, and the mounting bracket has a first limiting groove, which provides protection for the drying connection circuit board and facilitates detachable connection with it, the drying circuit board and the drying connection circuit board can be electrically connected to jointly control the garment processing equipment to perform washing and drying operations. Therefore, when the garment processing equipment is a washer-dryer combo, both the main control module and the drying circuit board are needed. Through this structural design, the same main control module needs to be purchased regardless of whether a single-wash washing machine or a washer-dryer combo is being produced. The drying circuit board is then purchased based on the production volume of the washer-dryer combo, thus enabling large-scale procurement of the main control module. This eliminates the need to design and purchase two different main control modules for single-wash washing machines and washer-dryer combos, effectively reducing the production costs of both types of machines. Attached Figure Description
[0030] The preferred embodiments of this utility model are described below with reference to the accompanying drawings, in which:
[0031] Figure 1 This is a schematic diagram of the main control module of this utility model without the first top shell;
[0032] Figure 2 This is a schematic diagram of the drying control module of this utility model without the second top shell;
[0033] Figure 3 yes Figure 1 A magnified schematic diagram of part A;
[0034] Figure 4 This is a schematic diagram of the overall structure of the main control module of this utility model;
[0035] Figure 5This is a schematic diagram of the overall structure of the drying control module of this utility model;
[0036] Figure 6 This is a schematic diagram of the overall structure of the main control component of this utility model.
[0037] Figure label:
[0038] 100-Main control module, 200-Drying control module, 110-Main circuit board, 120-Drying connection circuit board, 130-Mounting bracket, 140-Communication connection circuit board, 150-Main housing, 131-First limiting groove, 1311-Drying socket, 132-First partition, 133-Snap fastener, 134-Limiting plate, 1341-Limiting notch, 135-First wiring groove, 136-First pressure arm, 137-Second limiting groove, 1371-Communication socket, 138-Second partition, 139-Clamping foot, 151-Angle, 152-First bottom shell, 153-First top shell, 154-Second wiring groove, 155-Second pressure arm, 210-Drying circuit board, 220-Drying housing, 211-Interface, 212-Heat dissipation fins, 221-Second bottom shell, 222-Second top shell. Detailed Implementation
[0039] Some embodiments of the present invention will now be described with reference to the accompanying drawings. Those skilled in the art should understand that these embodiments are merely illustrative of the technical principles of the present invention and are not intended to limit the scope of protection of the present invention. Those skilled in the art can make adjustments as needed to adapt to specific application scenarios.
[0040] It should be noted that in the description of this utility model, terms such as "center," "upper," "lower," "left," "right," "front," "rear," "top," "bottom," "vertical," "horizontal," "inner," and "outer," which indicate direction or positional relationships, are based on the direction or positional relationships shown in the accompanying drawings. These are used merely for ease of description and do not indicate or imply that the relevant device or component must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. Furthermore, in the description of this utility model, unless otherwise stated, "a plurality of" means two or more.
[0041] Furthermore, it should be noted that in the description of this utility model, ordinal numbers such as "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. In addition, in the description of this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can also refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0042] First refer to Figure 1 and Figure 2 This utility model provides a main control module 100, which includes a main circuit board 110, a drying connection circuit board 120, and a mounting bracket 130. The main circuit board 110 is configured to generate washing action control signals and drying control commands. The drying connection circuit board 120 is connected to the main circuit board 110. The mounting bracket 130 includes a first limiting groove 131, in which the drying connection circuit board 120 is disposed. The first limiting groove 131 is adapted to be detachably connected to the drying circuit board 210, so that the drying connection circuit board 120 is electrically connected to the drying circuit board 210, and the main circuit board 110 can send drying control commands to the drying circuit board 210. Based on the above structural configuration, since the main circuit board 110 can generate washing action control signals, it can control the garment processing equipment to perform a single washing operation. Therefore, in the case of a single-wash washing machine, only the main control module 100 needs to be equipped. Furthermore, since the main circuit board 110 has a pre-installed drying connection circuit board 120, and the mounting bracket 130 has a first limiting groove 131, the first limiting groove 131 can provide protection for the drying connection circuit board 120 and facilitate detachable connection with the drying circuit board 210, allowing the drying circuit board 210 and the drying connection circuit board 120 to be electrically connected, thus enabling them to work together... The garment handling equipment controls the washing and drying operations. Therefore, in the case of a washer-dryer combo, only the main control module 100 and the drying circuit board 210 need to be equipped. With the above structural setup, the same main control module 100 needs to be purchased whether producing a single-wash washing machine or a washer-dryer combo. The drying circuit board 210 is then purchased according to the production volume of the washer-dryer combo. This enables the bulk purchase of the main control module 100 and eliminates the need to design and purchase two different main control modules 100 for single-wash washing machines and washer-dryer combos. This effectively reduces the production costs of both single-wash washing machines and washer-dryer combos.
[0043] It should be noted that the drying circuit board 210 and the drying connection circuit board 120 can be connected via a first wire harness. The first wire harness has first terminals at both ends, and one of the first terminals at one end of the first wire harness is inserted into the first limiting groove 131 and electrically connected to the drying connection circuit board 120. This first wire harness connection allows for more flexible installation of the drying circuit board 210, enabling its position to be arranged as needed. Alternatively, the drying circuit board 210 can be directly inserted into the first limiting groove 131 and electrically connected to the drying connection circuit board 120; those skilled in the art can adjust this as needed.
[0044] It should also be noted that the drying connection circuit board 120 can be soldered and fixed to the main circuit board 110 and electrically connected to the main circuit board 110.
[0045] Then refer to Figures 1-3 In one or more embodiments, a first partition 132 is provided within the first limiting groove 131. The first partition 132 divides the internal space of the first limiting groove 131 into multiple drying ports 1311. These multiple drying ports 1311 are respectively adapted to be detachably connected to the drying circuit board 210, the fan of the drying system of the clothing processing equipment, and the heating device. This allows the drying connection circuit board 120 to be electrically connected to the drying circuit board 210, the fan, and the heating device, and enables the main circuit board 110 to send drying control commands to the drying circuit board 210 via the drying connection circuit board 120, and to receive feedback signals from the fan and the heating device. Based on the above structural configuration, the first partition 132 divides the internal space of the first limiting groove 131 into multiple drying ports 1311, allowing the drying circuit board 210, the fan, and the heating device to be connected to their respective drying ports 1311, preventing incorrect connection positions, achieving foolproof design, and ensuring the normal operation of the main control module 100.
[0046] The feedback signal from the fan may include at least one of real-time speed, operating current, abnormal signal, and motor temperature, and may also include other signals. The feedback signal from the heating device may include at least one of real-time temperature at the heating device, operating current, abnormal signal, and current on / off signal, and may also include other signals. After receiving the feedback signals from the fan and heating device, the main circuit board 110 can determine whether to adjust the drying control command based on the feedback signals to improve the drying effect.
[0047] It should be noted that the first partition 132 has a first notch for the drying connection circuit board 120 to pass through, so that each drying port 1311 contains a portion of the drying connection circuit board 120. The lengths of the drying ports 1311 can be the same or different, and the specific lengths can be adjusted as needed.
[0048] It should also be noted that the fan and heating device can be connected to the drying connection circuit board 120 via the second wire harness and the third wire harness respectively. The second wire harness has a second terminal at both ends, and the third wire harness has a third terminal at both ends. The second terminal at one end of the second wire harness and the third terminal at one end of the third wire harness are inserted into the drying socket 1311 and electrically connected to the drying connection circuit board 120.
[0049] Continue reading Figures 1-3 In one or more embodiments, a buckle 133 is provided on the side wall of the first limiting groove 131. The buckle 133 is adapted to engage with the locking groove of the terminal inserted into the first limiting groove 131. Based on the above structural configuration, the terminal can be fixed to the first limiting groove 131 by engaging the buckle 133 with the locking groove. At the same time, according to the position of the buckle 133 and the locking groove, the incorrect installation direction of the terminal can be avoided, achieving the purpose of foolproofing and ensuring the normal use of the main control module 100.
[0050] It should be noted that when a first partition 132 is provided in the first limiting groove 131, a buckle 133 is provided on the side wall of the first limiting groove 131 at each drying port 1311 so as to engage with the terminal in each drying port 1311.
[0051] It should also be noted that the terminal inserted into the first limiting groove 131 may include at least one of the first terminal, the second terminal and the third terminal; the side wall of the terminal is provided with a locking groove, which is configured to engage with the buckle 133.
[0052] Continue reading Figures 1-3 In one or more embodiments, a limiting plate 134 is provided on the side wall of the first limiting groove 131, and a limiting notch 1341 is provided on the limiting plate 134. The limiting notch 1341 is adapted to allow the protruding structure of the terminal inserted into the first limiting groove 131 to be movably disposed therein. Based on the above structural configuration, the terminal can be limited by the movable connection between the protruding structure and the limiting notch 1341, making it convenient to insert the terminal into the first limiting groove 131. At the same time, according to the position of the protruding structure and the limiting notch 1341, the incorrect installation direction of the terminal can be avoided, achieving the purpose of foolproofing and ensuring the normal use of the main control module 100.
[0053] It should be noted that when a first partition plate 132 is provided in the first limiting groove 131, a limiting plate 134 is provided on the side wall of the first limiting groove 131 at each drying port 1311, and a limiting notch 1341 is provided on the limiting plate 134 so that the protruding structure of each terminal can be movably provided therein.
[0054] It should also be noted that the terminal inserted into the first limiting groove 131 may include at least one of the first terminal, the second terminal and the third terminal; the side wall of the terminal is provided with a protruding structure, and one or more protruding structures may be provided, which may be spherical protrusions or strip protrusions, as long as the protruding structure can be movably connected with the limiting notch 1341.
[0055] Continue reading Figure 1 In one or more embodiments, the mounting bracket 130 further includes a first wiring groove 135 connected to the first limiting groove 131 and a first pressure arm 136 connected to the first wiring groove 135. The first wiring groove 135 and the first pressure arm 136 enclose a first wire harness arrangement area, which is suitable for arranging wire harnesses connected to the first limiting groove 131. Based on the above structural configuration, the arrangement of the first wiring groove 135 and the first pressure arm 136 can organize the wire harness, avoid messy wire harness arrangement, and prevent damage caused by excessive bending of the wire harness.
[0056] The first wiring groove 135 is arranged on the outer periphery of the first limiting groove 131 to facilitate the arrangement of the wire harness.
[0057] Continue reading Figure 1 In one or more embodiments, a communication connection circuit board 140 is also connected to the main circuit board 110. The mounting bracket 130 further includes a second limiting groove 137. The communication connection circuit board 140 is disposed within the second limiting groove 137. The second limiting groove 137 is adapted to be detachably connected to a sensor of the drying system of the clothing processing equipment, so that the communication connection circuit board 140 is electrically connected to the sensor and the sensor's feedback signal is sent to the main circuit board 110 through the communication connection circuit board 140. Based on the above structural configuration, the second limiting groove 137 provides protection for the communication connection circuit board 140 and guides the electrical connection between the sensor and the communication connection circuit board 140.
[0058] The sensor in the drying system of the clothing processing equipment can be at least one of the following: a humidity sensor for detecting the humidity of the clothes, a water level sensor for detecting the water level in the condensate collection box, and a temperature sensor for detecting the temperature inside the drum; or it can be other sensors.
[0059] It should be noted that after receiving the feedback signal from the sensor, the main circuit board 110 can determine whether to adjust the drying control command based on the feedback signal in order to improve the drying effect.
[0060] It should also be noted that the communication connection circuit board 140 can be soldered and fixed to the main circuit board 110 and electrically connected to the main circuit board 110.
[0061] Possibly, a second partition 138 is provided within the second limiting groove 137, dividing the internal space of the second limiting groove 137 into multiple communication ports 1371. Each sensor is detachably connected to its corresponding communication port 1371. A second notch is provided on the second partition 138 for a communication connection circuit board 140 to pass through, so that a portion of the communication connection circuit board 140 is arranged within each communication port 1371. The lengths of the various communication ports 1371 can be the same or different, and the specific length can be adjusted as needed.
[0062] See below. Figure 1 and Figure 4 In one or more embodiments, the main control module 100 further includes a main housing 150, with the main circuit board 110 and mounting bracket 130 disposed within the main housing 150. Based on the above structural configuration, the main housing 150 is used to provide protection for the main control module 100.
[0063] Possibly, the main housing 150 includes a first bottom housing 152 and a first top housing 153, with the first top housing 153 snapped onto the first bottom housing 152, and the main circuit board 110 disposed between the first top housing 153 and the first bottom housing 152. The first top housing 153 may be provided with a first heat dissipation hole.
[0064] Possibly, a second wiring groove 154 is provided on the first bottom shell 152, and a second pressure arm 155 is provided on the side wall of the second wiring groove 154. The second pressure arm 155 and the second wiring groove 154 surround to form a second wire harness arrangement area, which is suitable for arranging wire harnesses connected to the main circuit board 110.
[0065] Optionally, the main housing 150 is provided with an angled corner 151. Based on the above structural configuration, the angled corner 151 on the main housing 150 can prevent fooling when installing the main control module 100 and can be adapted to the shape of the housing of the garment processing equipment.
[0066] The oblique angle 151 refers to the oblique surface formed at the connection of two adjacent right-angled sides on the main housing 150. The angle between the oblique surface and the two perpendicular sides is not equal. By using the two unequal angles, the uniqueness of the installation of the main housing 150 can be achieved, avoiding the incorrect installation direction of the main housing 150 and achieving the effect of foolproof installation.
[0067] Optionally, the mounting bracket 130 is provided with multiple locking feet 139, and the main housing 150 is provided with multiple locking slots, with the locking feet 139 engaging with the locking slots. Based on the above structural configuration, the mounting bracket 130 is engaged with the main housing 150 through the locking feet 139, which facilitates the assembly and disassembly of the mounting bracket 130.
[0068] See below. Figure 1 and Figure 2On the other hand, this utility model also provides a drying control module 200, which includes a drying circuit board 210. The drying circuit board 210 is adapted to be connected to the main control module 100. The drying circuit board 210 is used to receive drying control commands and generate drying action control signals according to the drying control commands. Based on the above structural configuration, after the drying control module 200 is connected to the main control module 100, it can jointly control the washer-dryer to perform washing and drying operations.
[0069] It should be noted that the drying action control signal can control the operation and shutdown of the fan and / or heating device.
[0070] Continue reading Figure 1 and Figure 2 In one or more embodiments, the drying circuit board 210 is provided with multiple interfaces 211 and heat dissipation fins 212. The multiple interfaces 211 are electrically connected to the drying connection circuit board 120, the fan and heating device of the drying system of the clothing processing equipment, so that the drying circuit board 210 can receive drying control commands issued by the main circuit board 110 and send drying action control signals to the fan and heating device. The interfaces 211 are located on the outer periphery of the heat dissipation fins 212. Based on the above structural configuration, the three interfaces 211 share one heat dissipation fin 212, which can effectively save space while meeting the heat dissipation requirements.
[0071] It should be noted that interface 211 has multiple pins, which are electrically connected to the drying circuit board 210. The first terminal of the other end of the first wire harness is inserted into interface 211 and electrically connected to the drying circuit board 210. The fan and heating device can also be detachably connected to interface 211 via wire harnesses with terminals, thereby achieving electrical connection with the drying circuit board 210.
[0072] See below. Figure 2 , Figures 4-6 In one or more embodiments, the drying control module 200 further includes a drying housing 220, and the drying circuit board 210 is disposed within the drying housing 220. Based on the above structural configuration, the drying housing 220 can provide protection for the drying circuit board 210.
[0073] Possibly, the drying housing 220 includes a second bottom housing 221 and a second top housing 222, with the second top housing 222 snapped into the second bottom housing 221. The drying circuit board 210 is disposed between the second top housing 222 and the second bottom housing 221. The second top housing 222 is provided with a second heat dissipation hole.
[0074] The drying housing 220 may be mounted outside the main housing 150; if the main housing 150 includes a first bottom housing 152 and a first top housing 153, the second bottom housing 221 may be bolted to the first top housing 153.
[0075] See below. Figure 6 On the other hand, this utility model also provides a main control component, which includes a main control module 100 and a drying control module 200. Based on the above structural configuration, when producing washer-dryer combos, the main control component can be directly purchased, and the washing and drying operations of the washer-dryer combo can be controlled through the main control component.
[0076] See below. Figure 4 and Figure 6 On the other hand, this utility model also provides a garment processing device, which includes a main control module 100 or a main control component. Based on the above structural configuration, when the garment processing device is a single-wash washing machine, the garment processing device includes a main control module 100; when the garment processing device is a washer-dryer combo, the garment processing device includes a main control component, namely, a main control module 100 and a drying control module 200. This means that regardless of whether a single-wash washing machine or a washer-dryer combo is being produced, the same main control module 100 needs to be purchased. The drying circuit board 210 is then purchased based on the production volume of the washer-dryer combo, thereby achieving large-scale procurement of the main control module 100. Furthermore, it eliminates the need to design and purchase two different main control modules 100 for single-wash washing machines and washer-dryer combos, effectively reducing the production costs of both types of machines simultaneously.
[0077] It should be noted that the above embodiments are only used to illustrate the principle of this utility model and are not intended to limit the scope of protection of this utility model. Without departing from the principle of this utility model, those skilled in the art can adjust the above embodiments so that this utility model can be applied to more specific application scenarios.
[0078] The technical solution of this utility model has been described in conjunction with the preferred embodiments shown in the accompanying drawings. However, it will be readily understood by those skilled in the art that the protection scope of this utility model is obviously not limited to these specific embodiments. Without departing from the principle of this utility model, those skilled in the art can make equivalent changes or substitutions to the relevant technical features, and the technical solutions after these changes or substitutions will all fall within the protection scope of this utility model.
Claims
1. A master module (100), characterized by The main control module (100) includes: The main circuit board (110) is configured to generate washing action control signals and drying control commands. A drying connection circuit board (120) is connected to the main circuit board (110); Mounting bracket (130) includes a first limiting groove (131), and the drying connection circuit board (120) is disposed in the first limiting groove (131). The first limiting groove (131) is adapted to be detachably connected to the drying circuit board (210) so that the drying connection circuit board (120) is electrically connected to the drying circuit board (210) and the main circuit board (110) can send the drying control command to the drying circuit board (210).
2. The main control module (100) according to claim 1, characterized in that, The first limiting groove (131) is provided with a first partition (132), which divides the internal space of the first limiting groove (131) into a plurality of drying ports (1311). The plurality of drying ports (1311) are respectively adapted to be detachably connected to the drying circuit board (210), the fan and the heating device of the drying system of the clothing processing equipment, so that the drying connection circuit board (120) is electrically connected to the drying circuit board (210), the fan and the heating device respectively, and the main circuit board (110) can send the drying control command to the drying circuit board (210) and receive the feedback signal from the fan and the heating device.
3. The main control module (100) according to claim 1, characterized in that, The first limiting groove (131) has a buckle (133) on its side wall, the buckle (133) being adapted to engage with the locking groove of a terminal inserted into the first limiting groove (131); and / or A limiting plate (134) is provided on the side wall of the first limiting groove (131), and a limiting notch (1341) is provided on the limiting plate (134). The limiting notch (1341) is adapted to allow the protruding structure of the terminal inserted into the first limiting groove (131) to be movably disposed therein.
4. The main control module (100) according to claim 1, characterized in that, The mounting bracket (130) further includes a first wiring groove (135) connected to the first limiting groove (131) and a first pressure arm (136) connected to the first wiring groove (135). The first wiring groove (135) and the first pressure arm (136) form a first wire harness arrangement area, which is suitable for arranging wire harnesses connected to the first limiting groove (131).
5. The main control module (100) according to claim 1, characterized in that, The main circuit board (110) is also connected to a communication connection circuit board (140). The mounting bracket (130) also includes a second limiting groove (137). The communication connection circuit board (140) is disposed in the second limiting groove (137). The second limiting groove (137) is adapted to be detachably connected to the sensor of the drying system of the clothing processing equipment, so that the communication connection circuit board (140) is electrically connected to the sensor and sends the feedback signal of the sensor to the main circuit board (110).
6. The main control module (100) according to claim 1, characterized in that, The main control module (100) also includes a main housing (150), and the main circuit board (110) and the mounting bracket (130) are disposed inside the main housing (150); The main housing (150) is provided with an angled edge (151); and / or The mounting bracket (130) is provided with multiple locking feet (139), and the main housing (150) is provided with multiple locking slots, and the locking feet (139) engage with the locking slots.
7. A drying control module (200), characterized by The drying control module (200) includes a drying circuit board (210), which is adapted to be connected to the main control module (100) according to any one of claims 1 to 6. The drying circuit board (210) is used to receive the drying control command and generate a drying action control signal according to the drying control command.
8. The drying control module (200) according to claim 7, characterized in that, The drying circuit board (210) is provided with multiple interfaces (211) and heat dissipation fins (212). The multiple interfaces (211) are electrically connected to the drying connection circuit board (120), the fan and the heating device of the drying system of the clothing processing equipment, respectively, so that the drying circuit board (210) can receive the drying control command issued by the main circuit board (110) and send the drying action control signal to the fan and the heating device. The interfaces (211) are located on the outer periphery of the heat dissipation fins (212); and / or The drying control module (200) also includes a drying housing (220), and the drying circuit board (210) is disposed inside the drying housing (220).
9. A master control assembly, characterized by The main control component includes the main control module (100) according to any one of claims 1 to 6 and the drying control module (200) according to claim 7 or 8. 10.A laundry treating apparatus, characterized by, The garment processing device includes the main control module (100) according to any one of claims 1 to 6 or the main control component according to claim 9.