WO2025002341A1 - Procédé de commande de blancheur, système de commande de blancheur, blancheur et dispositif de commande - Google Patents
Procédé de commande de blancheur, système de commande de blancheur, blancheur et dispositif de commande Download PDFInfo
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- WO2025002341A1 WO2025002341A1 PCT/CN2024/102334 CN2024102334W WO2025002341A1 WO 2025002341 A1 WO2025002341 A1 WO 2025002341A1 CN 2024102334 W CN2024102334 W CN 2024102334W WO 2025002341 A1 WO2025002341 A1 WO 2025002341A1
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- control device
- wireless communicator
- blanching machine
- pairing
- frequency band
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- G—PHYSICS
- G08—SIGNALLING
- G08C—TRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
- G08C17/00—Arrangements for transmitting signals characterised by the use of a wireless electrical link
- G08C17/02—Arrangements for transmitting signals characterised by the use of a wireless electrical link using a radio link
Definitions
- the present application relates to the technical field of blanching machines, and in particular to a blanching machine control method, a blanching machine control system, a blanching machine and a control device.
- the present application provides a blanching machine control method, a blanching machine control system, a blanching machine and a control device to solve the above technical problems.
- a first aspect of the present application provides a control method for a blanching machine, the control method for a blanching machine being applied to a blanching machine control system, the system comprising a blanching machine, a wireless communicator and a control device, the control device being independently provided from the blanching machine, the control method for a blanching machine comprising: the wireless communicator and the control device both responding to a pairing signal and entering a pairing mode; the control device communicating and interacting with the wireless communicator to complete a pairing connection, and controlling the blanching machine through the wireless communicator.
- a second aspect of the present application provides a control method for a blanching machine, wherein the control method for a blanching machine is applied to a blanching machine, wherein the blanching machine and the wireless communicator are pluggable connected, or the wireless communicator is integrated inside the blanching machine;
- the control method for the blanching machine comprises: the wireless communicator enters a pairing mode in response to a pairing signal; and the blanching machine communicates and interacts with a control device in the pairing mode through the wireless communicator to complete the pairing connection, and is controlled by the control device.
- a third aspect of the present application provides a control method for a blanching machine, the control method for the blanching machine being applied to a control device, the control device and the wireless communicator being pluggable connected or being independently arranged; the control method for the blanching machine comprising: the control device entering a pairing mode in response to a pairing signal; the control device performing wireless communication interaction with the wireless communicator in the pairing mode to complete the pairing connection, so as to control the blanching machine through the wireless communicator when the blanching machine and the wireless communicator are pluggable connected or the wireless communicator is integrated inside the blanching machine.
- a fourth aspect of the present application provides a blanching machine control system, the system comprising a blanching machine, a wireless communicator and a control device, the control device being independently arranged from the blanching machine, the wireless communicator and the control device both being used to enter a pairing mode in response to a pairing signal; the control device being used to communicate and interact with the wireless communicator to complete a pairing connection, and to control the blanching machine through the wireless communicator.
- a blanching machine wherein the wireless communicator and the blanching machine are pluggably connected or the wireless communicator is integrated inside the blanching machine, and the wireless communicator is used to enter a pairing mode in response to a pairing signal; the blanching machine communicates and interacts with a control device in the pairing mode through the wireless communicator to complete the pairing connection, and is controlled by the control device.
- a sixth aspect of the present application provides a control device, wherein the control device and the wireless communicator are pluggable and connected or are independently arranged; the control device is used to enter a pairing mode in response to a pairing signal, and to perform pairing with the wireless communicator in the pairing mode.
- the wireless communication device and the heat blanching machine are connected to each other through wireless communication, so that when the heat blanching machine and the wireless communication device are pluggable, or when the wireless communication device is integrated into the heat blanching machine, the heat blanching machine can be controlled by the wireless communication device.
- the control device can only control the blanching machine.
- the control device is independently arranged from the blanching machine, and both the blanching machine and the control device enter the pairing mode in response to the pairing signal.
- the control device communicates and interacts with the wireless communicator to complete the pairing connection, and controls the blanching machine through the wireless communicator.
- the control device is allowed to control different blanching machines, and multiple blanching machines can be purchased, but only one control device is required, which provides conditions for reducing costs. At the same time, it can avoid the existence of the connection line between the control device and the blanching machine to limit the activity of the blanching machine.
- FIG1 is a schematic diagram of a first module of a blanching machine control system provided in some embodiments of the present application.
- FIG2 is a schematic diagram of the structure of a control device provided in some embodiments of the present application.
- FIG3 is a schematic diagram of a second module of a blanching machine control system provided in some embodiments of the present application.
- FIG4 is a schematic flow chart of a control method for a blanching machine applied to a blanching machine control system provided in some embodiments of the present application;
- FIG5 is a simplified schematic diagram of the communication and interaction between the blanching machine and the control device provided in some embodiments of the present application;
- FIG6 is a schematic diagram of a flow chart of communication and interaction between a blanching machine and a control device provided in some embodiments of the present application;
- FIG7 is a schematic diagram of a flow chart of a control device provided in some embodiments of the present application controlling different types of blanching machines;
- FIG8 is a schematic diagram of a flow chart of a control device provided in some embodiments of the present application for obtaining parameters of blanching machines of different models;
- FIG9 is a schematic flow chart of a control method for a blanching machine provided in some embodiments of the present application.
- FIG. 10 is a flow chart of a control method for a blanching machine applied to a control device provided in some embodiments of the present application.
- connection should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a direct connection, an indirect connection through an intermediate medium, or the internal connection of two components; it can be a communication connection; it can be an electrical connection.
- connection should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a direct connection, an indirect connection through an intermediate medium, or the internal connection of two components; it can be a communication connection; it can be an electrical connection.
- Figure 1 is a schematic diagram of a first module of a blanching machine control system provided in some embodiments of the present application
- Figure 2 is a schematic diagram of the structure of a control device provided in some embodiments of the present application.
- the blanching machine control system 100 includes a blanching machine 10, a wireless communicator 11, and a control device 20.
- the control device 20 is independently provided from the blanching machine 10.
- the wireless communicator 11 and the control device 20 are both used to enter a pairing mode in response to a pairing signal.
- the control device 20 is used to communicate with the wireless communicator 11. 11 communicates and interacts to complete the pairing connection, and the blanching machine 10 is controlled by the wireless communicator 11.
- the control device 20 can only control the blanching machine 10.
- the control device 20 is independently provided from the blanching machine 10, and both the blanching machine 10 and the control device 20 enter the pairing mode in response to the pairing signal.
- the control device 20 is used to communicate and interact with the wireless communicator 11 to complete the pairing connection, and control the blanching machine 10 through the wireless communicator 11.
- the control device 20 is allowed to control different blanching machines 10, and multiple blanching machines 10 can be purchased, but only one control device 20 is required, which provides conditions for reducing costs.
- connection line between the control device 20 and the blanching machine 10 can be avoided to limit the activity of the blanching machine 10, which can improve the convenience of operating the blanching machine 10, provide a better user experience, and allow the control device 20 to be placed more freely.
- the hot stamping machine 10 can be used to print patterns, words, etc., and specifically, can be used to print patterns, words, etc. on clothes. It should be noted that patterns and words can also be printed on other items.
- the clothes mentioned here include at least one of clothes, pants, socks, hats, scarves and aprons. Other items can also be items made of natural fibers or chemical fibers such as tablecloths, bed sheets and quilt covers.
- the hot stamping machine can also print patterns and words on items of other materials.
- control device 20 can be a device integrating a display screen, a processor and an input module.
- the input module can be any one or more of a mouse, a keyboard key, a button and a voice collector.
- the processor can be a single-chip microcomputer, a central processing unit (CPU), a general processor, a digital signal processor (DSP), an application-specific integrated circuit (ASIC), a field programmable gate array (FPGA) or other programmable logic devices, transistor logic devices, hardware components or any combination thereof.
- the wireless communicator 11 may include any one or more of a WiFi module, a Bluetooth module, a radio frequency module, a Zigbee module, a GSM/3G/4G/5G module, a LoRa module and a NB-IoT/Cat-M module, and a main control module.
- the control device 20 includes a display screen 21, a temperature knob 221, a time knob 222, a mode button 23 and a power switch 24.
- the display screen 21 is used to display the preset temperature of the heating plate (not shown) and the duration of heating the material;
- the temperature knob 221 is used to set the preset temperature of the heating plate;
- the time knob 222 is used to set the duration of heating the material at the preset temperature of the heating plate;
- the mode button 23 is used to set the working mode of the heating plate (not shown) of the blanching machine 10 (for example, the first working mode is to work at 30°C to 100°C, and the second working mode is to work at 101°C to 200°C).
- the working mode can be selected according to the temperature that the materials of the thermal transfer paper are adapted to; the power switch 24 is used to control the hot blanching machine 10 to start, pause and end work. Anti-skid pads (not shown) are also provided around the bottom of the control device 20 to prevent the control device 20 from sliding against the desktop during use.
- FIG. 3 is a schematic diagram of a second module of a blanching machine control system provided in some embodiments of the present application.
- the control device 20 and the blanching machine 10 can communicate wirelessly via the wireless communicator 11.
- the control device 20 and the wireless communicator 11 can communicate via wireless LAN, infrared, Bluetooth and other communication methods, which are not limited here.
- the control device 20 is powered by an energy storage battery (not shown), and can implement human-computer interaction functions via knobs 22, buttons 23, display screen 21, etc., so that the user can adjust the processing state of the blanching machine 10 and change the configuration parameters of the blanching machine 10, etc., which helps the user to achieve precise control of the processing process.
- the knob of the control device 20 can adjust parameters such as the heating temperature and working time of the blanching machine 10, the button can adjust the power supply and/or working state (such as starting or stopping work, etc.), and pushing the button can adjust the power supply and/or working state (such as starting or stopping work, etc.).
- the gear and other parameters of the blanching machine 10 can be adjusted, and the display screen can display the adjustable gear, current working gear, heating temperature, heating time and other parameters of the blanching machine, which are not limited here.
- the blanching machine 10 can be independently arranged outside the workbench 30 and can be operated by hand.
- the blanching machine control system 100 also includes a workbench 30, and the blanching machine 10 can also be installed on the workbench 30.
- the blanching machine 10 can be controlled by the workbench 30 to meet various working scenarios.
- the control device 20 is independently arranged from the blanching machine 10, so that one control device 20 can control various types of blanching machines 10, thereby eliminating the need to arrange one control device 20 in each blanching machine 10, thereby further saving costs.
- the blanching machine 10 and the wireless communicator 11 are pluggable. In other embodiments, the wireless communicator 11 is integrated into the blanching machine 10.
- the control device 20 and the wireless communicator 11 may also be pluggable connected.
- the control device 20 and the wireless communicator 11 are independently provided.
- Figure 4 is a flow chart of a control method for a blanching machine applied to a blanching machine control system provided by some embodiments of the present application
- Figure 5 is a simplified schematic diagram of the communication and interaction between a blanching machine and a control device provided by some embodiments of the present application.
- the control method of the blanching machine 10 is not limited to the sequence of the steps in Figures 4 and 5, and can also be increased or decreased or adjusted in sequence according to actual needs, which is not limited here.
- the control method of the blanching machine is applied to the blanching machine control system 100. Accordingly, the control method of the blanching machine 10 can also be applied to the blanching machine 10.
- the control method of the blanching machine 10 can also be applied to the control device 20.
- the blanching machine 10 and/or the control device 20 are provided with a processor and a computer-readable storage medium.
- the computer-readable storage medium stores a computer program.
- the computer program is called by the processor to execute the following control method for a blanching machine applied to the blanching machine control system 100:
- S101 The wireless communicator 11 and the control device 20 both respond to a pairing signal and enter a pairing mode.
- the wireless communicator 11 and the control device 20 are pluggable connected, and the wireless communicator 11 and the control device 20 respectively generate corresponding pairing signals based on the connection operation, and respectively enter the pairing mode in response to the corresponding pairing signals.
- a serial port may be provided on the control device 20 , and the wireless communicator 11 is connected to the control device 20 by being inserted into the serial port.
- the wireless communicator 11 and the control device 20 when the wireless communicator 11 and the control device 20 are independently provided, the wireless communicator 11 and the control device 20 respectively generate corresponding pairing signals based on starting the pairing operation, and respectively enter the pairing mode in response to the corresponding pairing signals.
- the pairing start operation may be a voice command input by the user to start the pairing, or a button pressed by the user to start the pairing.
- the wireless communicator 11 and the control device 20 may both be provided with a voice acquisition module or a key input module.
- the control device 20 communicates and interacts with the wireless communicator 11 to complete pairing and connection, and controls the blanching machine 10 through the wireless communicator 11.
- the wireless communicator 11 and the blanching machine 10 are pluggable, after the control device 20 is connected to the wireless communicator 11 to perform communication interaction and complete the pairing connection, the wireless communicator 11 is connected to the blanching machine 10, and the blanching machine 10 is controlled by the wireless communicator 11.
- the wireless communicator 11 is paired with the control device 20 while being inserted into the control device 20, the wireless communicator 11 is unplugged from the control device 20 and then inserted into the hot
- the control device 20 is connected to the blanching machine 10 , and at this time, the control device 20 can control the blanching machine 10 through the wireless communication device 11 .
- control device 20 and the wireless communicator 11 complete the pairing connection through wired communication, which can complete the pairing connection more stably and safely.
- the control device 20 controls the blanching machine 10 through the wireless communicator 11.
- the wireless communicator 11 when the wireless communicator 11 is inserted into the blanching machine 10, it performs wireless communication interaction with the control device 20 to complete the pairing connection. After the pairing connection is completed, the wireless communicator 11 continues to remain inserted into the blanching machine 10, and the control device 20 controls the blanching machine 10 through the wireless communicator 11.
- the control device 20 controls the blanching machine 10 through the wireless communicator 11.
- the control device 20 can only control the blanching machine 10.
- the control device 20 is independently provided from the blanching machine 10, and both the wireless communicator 11 and the control device 20 enter the pairing mode in response to the pairing signal.
- the control device 20 communicates and interacts with the wireless communicator 11 to complete the pairing connection, and controls the blanching machine 10 via the wireless communicator 11.
- control device 20 is allowed to control different blanching machines 10, and multiple blanching machines 10 can be purchased, but only one control device 20 is required, which provides conditions for reducing costs, and at the same time, it can avoid the existence of the connection line between the control device 20 and the blanching machine 10 to limit the activity of the blanching machine 10.
- the control device 20 can send control instructions to control the blanching machine 10.
- the control device 20 can control the start, stop, and shut down of the blanching machine 10 and control the working parameters of the blanching machine 10.
- the control device 20 can control the blanching machine 10 in a wireless communication manner.
- control device 20 communicates and interacts with the wireless communicator 11 to complete the pairing connection, including: the control device 20 and the wireless communicator 11 communicate and interact based on the same temporary frequency band and temporary address, obtain the same target frequency band and target address code, and complete the pairing connection.
- the control device 20 and the wireless communicator 11 are set to the same target frequency band but not to the same address, so that the communication anti-interference capability is stronger.
- the wireless communicator 11 and the control device 20 After the wireless communicator 11 and the control device 20 enter the pairing mode, they have the same temporary frequency band and temporary address and can communicate with each other.
- FIG6 is a schematic diagram of the flow chart of the communication interaction between the blanching machine and the control device provided in some embodiments of the present application.
- control device 20 communicates with the wireless communicator 11, and the control device 20 and the wireless communicator 11 are set to the same target frequency band and the same target address code for pairing and connection, including:
- control device 20 Under the same temporary frequency band and temporary address, the control device 20 sends its identification code to the wireless communicator 11.
- the identification code is unique, and a chip is provided in the control device 20, and the UID code of the chip can be used as the identification code.
- the wireless communicator 11 determines an N-bit random number based on the received signal of the identification code, generates a first address code based on the identification code and the N-bit random number, and sends the first address code to the control device 20.
- the wireless communicator 11 includes a counting module (not shown), and the counting module starts counting when the wireless communicator 11 is started.
- the wireless communicator 11 receives the reception signal of the identification code, it obtains the current count value in the counting module, determines the N-bit random number based on the count value, and arranges and combines the N-bit random number and the identification code to generate the first address code; wherein N is a positive integer, and the random number takes a value from 0 to 255.
- the probability that the count values in the counting module are the same when the wireless communicator 11 receives the identification code sent by the control device 20 is small, the probability that the N-bit random numbers in different wireless communicators 11 are the same is smaller, and the identification code is unique, the target address code generated based on the identification code and the N-bit random number is also unique, thereby greatly reducing the probability of the wireless communicator 11 being connected to the wrong wireless communicator 11.
- the control device 20 determines a first frequency band based on the received N-bit random number, and sends the received first address code and the determined first frequency band to the wireless communicator 11.
- the 3-bit random numbers are 1, 2, and 3, which are accumulated to 6, and the remainder after division by 40 is 6, and the remainder multiplied by 2 is 12. Since the wireless communicator is a 2.4G wireless communicator, 2400 is added to 12, so that the target frequency band is 2412Mhz.
- the frequency band used by the wireless communicator 11 is between 2400 and 2480 MHz, so the N-bit random number is accumulated and divided by 40. Since 2.4G communication needs to distinguish the frequency bands so as not to be interfered with, a difference of 2 MHz is generally required, so the remainder needs to be multiplied by 2. In other embodiments, N can take other values, and the frequency band used by the wireless communicator 11 can also be other frequency bands.
- S204 The wireless communicator 11 verifies whether the received first address code is the same as the generated first address code.
- S205 is executed: The wireless communicator 11 determines that the first address code is the target address code and the first frequency band is the target frequency band, and sends a confirmation signal to the control device 20 to obtain the same target frequency band and target address code.
- S206 is executed: The wireless communicator 11 waits for the control device 20 to send the first frequency band and the first address code again.
- the confirmation signal may be the target frequency band and the target address code.
- the control device 20 After step 203, the control device 20 starts timing. When the timing duration reaches the first preset duration, the control device 20 has not received the confirmation signal from the wireless communicator 11, and executes S207: the control device 20 sends the first frequency band and the first address code to the wireless communicator 11 again.
- step 204 may be executed.
- step 204 may be executed.
- the pairing connection may be continued by executing step 207.
- control device 20 receives the confirmation signal from the wireless communicator 11 within the first preset time period, the control device 20 and the wireless communicator 11 complete the pairing connection.
- the first preset time length may be, but is not limited to, 500 ms, and there is no restriction on the first preset time length here.
- step 205 the wireless communicator 11 starts timing. If the wireless communicator 11 receives the first frequency band and the first address code sent by the control device 20 within the second preset time period, step S208 is executed: the wireless communicator 11 sends the confirmation signal to the control device 20 again.
- step 207 the wireless communicator 11 needs to resend the confirmation signal to the control device 20 to ensure that the wireless communicator 11 and the control device 20 are paired and connected.
- the second preset time length may be, but is not limited to, 1 second, and there is no restriction on the second preset time length.
- control device 20 and the wireless communicator 11 obtain the same target frequency band and target address code
- S209 is executed: the control device 20 and the wireless communicator 11 are both set to the target frequency band and the target address code, and communicate based on the same target frequency band and the target address code to complete the pairing connection.
- the temporary addresses and temporary frequency bands of all the wireless communicators 11 and the control devices 20 are the same.
- the wireless communicator 11 receives the identification code of one of the control devices 20, the wireless communicator 11 generates a first address code based on the identification code and an N-bit random number.
- the control device 20 confirms whether the first address code is the target address code according to the identification code in the received first address code. After confirming that the received first address code is the target address code, the control device 20 determines the first frequency band based on the N-bit random number in the target address code.
- the wireless communicator 11 also needs to determine whether the received target address code is the target address code generated by the wireless communicator 11. If so, the subsequent pairing operation is performed to avoid pairing errors.
- the name of each wireless communicator 11 is different, and the identifier of each wireless communicator 11 is also different.
- the user can select the name of the wireless communicator 11 to be paired on the control device 20, and send the identification code of the control device 20 and the identifier of the wireless communicator 11 to be paired together.
- the wireless communicator 11 will generate a target address code based on the identification code and the N-bit random number when it recognizes its own identifier.
- Figure 7 is a schematic diagram of a flow chart of a control device provided in some embodiments of the present application controlling different types of blanching machines
- Figure 8 is a schematic diagram of a flow chart of a control device provided in some embodiments of the present application obtaining parameters in different types of blanching machines.
- the control method of the blanching machine 10 further includes:
- the control device 20 obtains the model of the blanching machine 10.
- the new model refers to a model different from the model currently stored in the control device 20 .
- S303 is executed: the control device 20 obtains the target parameter value corresponding to the model of the blanching machine 10 .
- the target parameter value is at least one.
- the target parameter value includes an applicable temperature range, a maximum processing time, and a gear parameter.
- control device 20 first obtains the limit parameters that need to be limited, such as the usable temperature range and the maximum processing time, and then obtains the gear parameters.
- the control method of the blanching machine 10 includes: S01 obtaining the blanching machine model; S02 obtaining the restriction parameter; S03 obtaining the gear parameter; S04 saving the parameter.
- the control device 20 updates its control parameter value to the target parameter value based on the target parameter value, and controls the blanching machine 10 of the corresponding model based on the updated control parameter value.
- the blanching machine 10 of the corresponding model is controlled to process the target material with the processing temperature and processing time corresponding to the processing gear.
- the usable temperature range of the first blanching machine is 100-205°C
- the usable temperature range of the second blanching machine is 100-180°C. Therefore, when the control device 20 is connected to the first blanching machine, it is necessary to update the control parameter value to an adjustable temperature range of 100-205°C; when the second blanching machine is connected, it is necessary to update the control parameter value to an adjustable temperature range of 100-180°C.
- the optimal processing temperature is 150 degrees and the optimal processing time is 30 seconds
- the optimal processing temperature of material A is 150 degrees and the optimal processing time is 40 seconds.
- control device 20 when the control device 20 is connected to the first blanching machine, it updates the control parameter value to a processing temperature of 150 degrees and a processing time of 30 seconds at the optimal gear, and when the second blanching machine is connected, it updates the control parameter value to a processing temperature of 150 degrees and a processing time of 40 seconds at the optimal gear.
- FIG. 9 is a schematic flow chart of a control method for a blanching machine provided in some embodiments of the present application.
- the control method of the blanching machine is applied to the blanching machine 10, the wireless communication device 11 and the blanching machine 10 are pluggable connected, or the wireless communication device 11 is integrated into the blanching machine 10; as shown in FIG9 , the control method of the blanching machine 10 includes:
- S401 The wireless communicator 11 enters a pairing mode in response to a pairing signal.
- the blanching machine 10 communicates and interacts with the control device 20 in pairing mode through the wireless communicator 11 to complete pairing connection, and is controlled by the control device 20.
- the blanching machine 10 is paired and connected with the control device 20 which is independently provided with the blanching machine 10, so that the production cost of the blanching machine 10 can be reduced, and the condition that the blanching machine 10 can be controlled by different control devices 20 is provided, so that a plurality of the blanching machines 10 can be purchased, but only one control device 20 is required, so as to provide the condition for reducing the cost, and at the same time, the existence of the connecting line between the control device 20 and the blanching machine 10 can be avoided to limit the activity of the blanching machine 10.
- the steps performed by the blanching machine 10 when the blanching machine control method is applied to the blanching machine 10 correspond to the steps performed by the blanching machine 10 when the blanching machine control method in the aforementioned embodiment is applied to the blanching machine control system 100, and are not described in detail here.
- FIG. 10 is a schematic flow chart of a control method for a blanching machine applied to a control device provided in some embodiments of the present application.
- the control method of the blanching machine 10 is applied to the control device 20; the control device 20 and the wireless communicator 11 are pluggable connected or independently provided; as shown in FIG10 , the control method of the blanching machine 10 includes:
- S501 The control device 20 enters a pairing mode in response to a pairing signal.
- the control device 20 communicates and interacts with the wireless communicator 11 in pairing mode to complete the pairing connection, so that when the blanching machine 10 and the wireless communicator 11 are pluggable connected, or the wireless communicator 11 is integrated into the blanching machine 10, the blanching machine 10 is controlled by the wireless communicator 11.
- the control device 20 is paired with the wireless communicator 11 in a pluggable connection or independently set up, and controls the blanching machine 10 through the wireless communicator 11.
- the ability to control different blanching machines 10 provides a condition, so that a plurality of the blanching machines 10 can be purchased, but only one control device 20 is required, thereby providing a condition for reducing costs.
- the existence of a connecting line between the control device 20 and the blanching machine 10 that limits the movement of the blanching machine 10 can be avoided.
- the steps executed by the control device 20 correspond to the steps executed by the control device when the control method of the blanching machine in the aforementioned embodiment is applied to the blanching machine control system 100, and will not be repeated here.
- the present application further provides a blanching machine 10, wherein the wireless communicator 11 and the blanching machine 10 are pluggable connected, or the wireless communicator 11 is integrated inside the blanching machine 10, and the wireless communicator 11 is used to enter a pairing mode in response to a pairing signal; the blanching machine 10 communicates and interacts with the control device 20 in the pairing mode through the wireless communicator 11 to complete the pairing connection, and is controlled by the control device 20.
- the wireless communicator 11 in the blanching machine 10 is paired and connected with the control device 20 which is independently provided with the blanching machine 10, so that the production cost of the blanching machine 10 can be reduced, and the condition that the blanching machine 10 can be controlled by different control devices 20 is provided, so that a plurality of the blanching machines 10 can be purchased, but only one control device 20 is required, so as to provide the condition for reducing the cost of the blanching machine control system, and at the same time, the existence of the connection line between the control device 20 and the blanching machine 10 can be avoided to limit the activity of the blanching machine 10.
- connection relationship and functions of the blanching machine 10 can be understood by referring to the corresponding embodiments described above, and will not be described in detail here.
- the present application further provides a control device 20, which is pluggable and connected to the wireless communicator 11 or independently provided.
- the control device 20 is used to enter a pairing mode in response to a pairing signal, and to communicate and interact with the wireless communicator 11 in the pairing mode to complete the pairing connection, so that when the blanching machine 10 and the wireless communicator 11 are pluggable and connected, or when the wireless communicator 11 is integrated into the blanching machine 10, the blanching machine 10 is controlled by the wireless communicator 11.
- the control device 20 is paired with the wireless communicator 11, and the control device 20 controls the blanching machine 10 through the wireless communicator 11. Therefore, it provides conditions for the control device 20 to control different blanching machines 10, and then multiple blanching machines 10 can be purchased, but only one control device 20 is required, which provides conditions for reducing costs and avoids the existence of a connection line between the control device 20 and the blanching machine 10 to limit the activity of the blanching machine 10.
- control device 20 The connection relationship and functions of the control device 20 may be understood by referring to the above embodiments, and will not be elaborated here.
- the present application also provides a computer-readable storage medium, in which a computer program is stored.
- the computer program is called by a processor to execute the control method of the blanching machine provided in any of the aforementioned embodiments.
- a person of ordinary skill in the art can understand that all or part of the steps in the various methods of the above embodiments can be completed by instructing related hardware through a program, and the program can be stored in a computer-readable memory, which can include: a flash drive, a read-only memory, a random access memory, a magnetic disk or an optical disk, etc.
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- Mobile Radio Communication Systems (AREA)
Abstract
La présente demande concerne un procédé de commande de blancheur, un système de commande de blancheur, un blancheur et un dispositif de commande. Le procédé de commande de blancheur est appliqué au système de commande de blancheur. Le système comprend un blancheur, un dispositif de communication sans fil et un dispositif de commande. Le dispositif de commande est agencé indépendamment du blancheur. Le procédé de commande de blancheur comprend les étapes suivantes : le dispositif de communication sans fil et le dispositif de commande répondent tous deux à un signal d'appariement et entrent dans un mode d'appariement ; et le dispositif de commande est en interaction de communication avec le dispositif de communication sans fil pour achever la connexion d'appariement, et commande le blancheur au moyen du dispositif de communication sans fil. Par conséquent, le dispositif de commande est autorisé à commander différents blancheurs, et ainsi lorsqu'une pluralité de blancheurs sont achetés, seul un dispositif de commande doit être fourni, ce qui permet de réduire le coût ; de plus, la limitation au mouvement des blancheurs provoqué par l'existence de lignes de connexion entre le dispositif de commande et les blancheurs peut être évitée.
Applications Claiming Priority (4)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202321721178 | 2023-06-30 | ||
| CN202321721178.6 | 2023-06-30 | ||
| CN202410797910.0 | 2024-06-19 | ||
| CN202410797910.0A CN119229632A (zh) | 2023-06-30 | 2024-06-19 | 热烫机的控制方法、热烫机控制系统、热烫机及控制装置 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2025002341A1 true WO2025002341A1 (fr) | 2025-01-02 |
Family
ID=93937592
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/CN2024/102334 Pending WO2025002341A1 (fr) | 2023-06-30 | 2024-06-28 | Procédé de commande de blancheur, système de commande de blancheur, blancheur et dispositif de commande |
Country Status (1)
| Country | Link |
|---|---|
| WO (1) | WO2025002341A1 (fr) |
Citations (6)
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|---|---|---|---|---|
| WO2017065327A1 (fr) * | 2015-10-13 | 2017-04-20 | 주식회사 토이스미스 | Dispositif de connexion de communication sans fil communiquant avec un dispositif externe au moyen d'un bloc d'appariement |
| CN107484114A (zh) * | 2017-09-29 | 2017-12-15 | 歌尔股份有限公司 | 蓝牙设备的配对方法及系统 |
| CN107943529A (zh) * | 2017-10-20 | 2018-04-20 | 广州视源电子科技股份有限公司 | 设备配对方法、装置、可读存储介质及交互智能设备 |
| CN112486105A (zh) * | 2019-09-12 | 2021-03-12 | 深圳市云海物联科技有限公司 | 一种设备的控制方法及装置 |
| CN115052279A (zh) * | 2021-03-08 | 2022-09-13 | 广州视源电子科技股份有限公司 | 无线传屏器的配对方法和装置 |
| CN116133160A (zh) * | 2023-02-22 | 2023-05-16 | 珠海格力电器股份有限公司 | 智能设备的自动配对方法、装置、处理器和电子设备 |
-
2024
- 2024-06-28 WO PCT/CN2024/102334 patent/WO2025002341A1/fr active Pending
Patent Citations (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2017065327A1 (fr) * | 2015-10-13 | 2017-04-20 | 주식회사 토이스미스 | Dispositif de connexion de communication sans fil communiquant avec un dispositif externe au moyen d'un bloc d'appariement |
| CN107484114A (zh) * | 2017-09-29 | 2017-12-15 | 歌尔股份有限公司 | 蓝牙设备的配对方法及系统 |
| CN107943529A (zh) * | 2017-10-20 | 2018-04-20 | 广州视源电子科技股份有限公司 | 设备配对方法、装置、可读存储介质及交互智能设备 |
| CN112486105A (zh) * | 2019-09-12 | 2021-03-12 | 深圳市云海物联科技有限公司 | 一种设备的控制方法及装置 |
| CN115052279A (zh) * | 2021-03-08 | 2022-09-13 | 广州视源电子科技股份有限公司 | 无线传屏器的配对方法和装置 |
| CN116133160A (zh) * | 2023-02-22 | 2023-05-16 | 珠海格力电器股份有限公司 | 智能设备的自动配对方法、装置、处理器和电子设备 |
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