NFC paired remote controller
The NFC pairing remote control's magnetic switch and NFC reader module design solves the remote control's waterproof and safety issues, achieves wireless startup and authentication, and ensures the remote control's waterproof and safety.
Patent Information
- Application Number
- CN202422667778.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-04
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-11-04
AI Technical Summary
The key switches of existing industrial remote controls lack waterproof properties, causing water to corrode internal circuits and damage the remote control, while failing to prevent unauthorized use.
It adopts NFC pairing remote control design, realizes wireless contactless start through magnetic switch and NFC reading module, and combines identity information storage card and sealing structure to ensure the waterproofness and safety of the remote control.
The remote control is well sealed and waterproof, which increases its service life. It also ensures that only authorized personnel can use it through identity verification, records the user's identity and time, and improves security.
Smart Images

Figure CN223379169U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of remote controllers, and in particular to an NFC pairing remote controller. Background Art
[0002] In the prior art, an industrial remote control is a device used to remotely control industrial equipment and machinery. It typically consists of a handheld controller and a receiver. The handheld controller typically has control elements such as buttons and switches, which transmit commands to the receiver via wireless signals, thereby controlling the equipment.
[0003] In order to prevent others from using the remote control, traditional industrial remote controls often have a key switch on the remote control. The remote control can only be started by using the key. However, the key switch is not waterproof. Once water enters the key switch, the internal circuit will be damaged, causing failure or loss of control. At the same time, the remote control cannot waterproof the key switch, causing water to flow into the interior of the housing through the keyhole, causing the internal motherboard to be corroded by water and causing damage to the remote control. Summary of the Invention
[0004] According to an embodiment of the present invention, an NFC pairing remote control is provided, comprising:
[0005] A housing, wherein a mounting slot is provided on the housing;
[0006] A mainboard module is fixed in the housing;
[0007] The startup module is inserted into the installation slot and drives the mainboard module to conduct;
[0008] The pairing module is set in the starting module, the pairing module stores the pairing information, the starting module is inserted into the installation slot, and the pairing module is driven close to the mainboard module. The pairing module matches the mainboard module and the operator.
[0009] Furthermore, the mainboard module includes: a mainboard, a magnetic switch and an NFC reader module;
[0010] The mainboard, magnetic control switch and NFC reading module are installed in the housing, and the magnetic control switch and NFC reading module are both arranged adjacent to the mounting slot;
[0011] The magnetic switch and NFC reader module are both electrically connected to the main board;
[0012] The starting module is inserted into the installation slot to drive the magnetic control switch to close.
[0013] Furthermore, the starting module comprises: a mounting shell, a starting plate and a magnet block;
[0014] The mounting shell is fixed in the mounting slot;
[0015] The starting plate is inserted and fixed in the installation shell through a fixing mechanism;
[0016] The magnet block is fixed on the starting plate, and the magnet block drives the magnetic control switch to close.
[0017] Furthermore, a positioning plate is provided on the inner wall of the mounting shell or the mounting groove, and a positioning groove is provided on the starting plate, and the positioning groove and the positioning plate cooperate with each other.
[0018] Furthermore, the fixing mechanism comprises:
[0019] A mounting plate, the mounting plate is fixed on the outer side of the starting plate;
[0020] A pair of clips are fixed on both ends of the mounting plate respectively;
[0021] A pair of card slots are respectively provided on the left and right inner walls of the installation shell, and the pair of card slots are respectively matched with the pair of buckles.
[0022] Furthermore, the pairing module includes: a storage card, the storage card is fixed on the starting module, and the storage card stores the identity information of the operator.
[0023] Furthermore, the housing comprises: an upper housing, a lower housing and a sealing gasket;
[0024] The upper shell and the lower shell are fixedly connected;
[0025] The sealing gasket is arranged between the upper shell and the lower shell to seal the upper shell and the lower shell;
[0026] The mainboard module is fixed in the closed cavity formed by the upper shell and the lower shell;
[0027] The mounting groove is arranged on the outer surface of the lower shell.
[0028] Furthermore, a plurality of button holes are opened on the surface of the upper shell, and the plurality of button holes correspond to the plurality of control buttons of the mainboard module respectively. A sealing sleeve is provided on the outer surface of the upper shell, and the sealing sleeve seals the plurality of button holes.
[0029] Furthermore, the sealing sleeve is a rubber sleeve, which is bonded to the outer surface of the upper shell.
[0030] According to the NFC pairing remote control of the embodiment of the present invention, wireless contactless startup can be achieved through the startup module, thereby achieving good airtightness and waterproofness, and improving service life and safety; the pairing module is used to pair the holder with the remote control, so that the remote control can only be used by a designated person who is authorized to use it, and the user's identity information and usage time can be recorded, thereby improving safety.
[0031] It is to be understood that both the foregoing general description and the following detailed description are exemplary, and are intended to provide further explanation of the technology as claimed. BRIEF DESCRIPTION OF THE DRAWINGS
[0032] Figure 1 This is a schematic diagram of the three-dimensional structure of the NFC pairing remote control according to an embodiment of the present utility model;
[0033] Figure 2 Schematic cross-sectional view of an NFC pairing remote control according to an embodiment of the present utility model;
[0034] Figure 3 This is a schematic diagram of the mainboard module of the NFC pairing remote control according to an embodiment of the present utility model;
[0035] Figure 4 This is a schematic diagram of the installation case of the NFC pairing remote control according to an embodiment of the present utility model;
[0036] Figure 5 Schematic diagram of a starter panel for NFC remote control pairing according to an embodiment of the present invention;
[0037] Figure 6 Schematic diagram of NFC pairing of remote controls according to an embodiment of the present invention. DETAILED DESCRIPTION
[0038] The preferred embodiments of the present invention will be described in detail below with reference to the accompanying drawings to further illustrate the present invention.
[0039] First, combine Figures 1 to 6 The NFC remote control pairing according to the embodiment of the present invention is described, which is used for waterproof pairing of industrial remote controls and has a wide range of application scenarios.
[0040] like Figures 1 to 6 As shown, the NFC pairing remote control of the embodiment of the present invention includes: a shell, a mainboard module, a starting module and a pairing module.
[0041] Specifically, if Figures 1 to 6 As shown, in this embodiment, a mounting slot 5 is defined in the housing; the mainboard module is fixed within the housing; a startup module is inserted into the mounting slot 5, driving the mainboard module to conduct electricity; and a pairing module is disposed within the startup module, matching the mainboard module with the operator. When the startup module is inserted into the mounting slot 5, it drives the pairing module toward the mainboard module, achieving pairing with the mainboard module. The mounting slot 5 is disconnected from the interior of the housing through the peripheral device, ensuring a waterproof seal. The pluggable startup and pairing modules facilitate ease of use and maintenance. Only when the startup module is inserted into the mounting slot can the mainboard module be conducted, preventing accidental activation when not in use and improving safety.
[0042] Specifically, if Figures 1 to 6 As shown, in this embodiment, the mainboard module includes: mainboard 3, magnetic switch 614, and NFC reader module 616. Mainboard 3, magnetic switch 614, and NFC reader module 616 are installed in a housing, with both located adjacent to mounting slot 5. Both magnetic switch 614 and NFC reader module 616 are electrically connected to mainboard 3. The activation module is inserted into mounting slot 5 and activates the magnetic switch 614 to close. The NFC reader module 616 allows the remote control to quickly and securely communicate and exchange data with the pairing module using NFC technology. This contactless interaction not only enhances the user experience but also adds safety and convenience. The magnetic switch 614 and NFC reader module 616 work in tandem. Insertion of the activation module activates the magnetic switch 614, thereby energizing the mainboard 3 module. This ensures remote control security (preventing unauthorized activation) and improves operational convenience.
[0043] Further, if Figures 1 to 6 As shown, in this embodiment, the starting module includes: a mounting shell 611, a starting plate 612 and a magnet block 613; the mounting shell 611 is fixed in the mounting slot 5; the starting plate 612 is fixed in the mounting shell 611 by a fixing mechanism; the magnet block 613 is fixed on the starting plate 612, and the magnet block 613 drives the magnetic control switch 614 to close. Specifically, the magnetically controlled switch 614 adopts a reed switch magnetically controlled switch 614. The reed switch magnetically controlled switch 614 is an electric switch operated by a magnetic field. The structure of the reed switch is generally composed of two soft magnetic metal reeds sealed in a glass tube. The gap between the two reeds is very small. When an external magnetic field approaches, the two reeds are magnetized to produce magnetic fields of different polarities. When the magnetic field strength is sufficient, the two reeds will be attracted together, so that the switch is turned on; when the external magnetic field moves away, the reeds gradually demagnetize and disconnect, and the switch is disconnected. By inserting the starting plate 612 into the mounting shell 611, the magnet block 613 is close to the reed switch magnetically controlled switch 614, so that the two groups of metal reeds in the reed switch magnetically controlled switch 614 are closed, and then the industrial remote control is started, realizing wireless and contactless starting, thereby achieving good sealing and waterproof properties, and improving the service life of the industrial remote control.
[0044] Further, if Figures 1 to 6As shown, in this embodiment, a positioning plate 617 is provided on the inner wall of the mounting shell 611 or the mounting groove 5 , and a positioning groove 618 is provided on the starting plate 612 , and the positioning groove 618 cooperates with the positioning plate 617 . Specifically, the positioning plate 617 is inserted into the positioning slot 618. By setting the positioning plate 617 at different positions of the mounting shell 611 or the mounting slot 5, only the positioning slot 618 at the corresponding position on the starting plate 612 can be inserted. Only when the positioning plate 617 and the positioning slot 618 on the mounting shell 611 and the positioning slot 618 are at the same position, the starting plate 612 can be inserted into the mounting shell 611 of the industrial remote control. Multiple positioning plates can also be set in the mounting slot or on the mounting shell and combined arbitrarily to achieve flexibility and scalability. This physical method can effectively prevent incorrect insertion and increase the connection strength between the starting plate and the mounting slot, making the entire structure more stable and not easy to loosen or fall off. Multiple sets of mounting shells 611 and starting plates 612 can be set in different colors and shapes to distinguish them, further preventing incorrect insertion. By matching the appearance color and shape, visualization is achieved, which can also help users quickly find the industrial remote control that matches their identity card. Security is improved through dual pairing of NFC and mechanical key.
[0045] Further, if Figures 1 to 6 As shown, in this embodiment, the fixing mechanism includes: a mounting plate 711, which is fixed to the outside of the starting plate 612; a pair of clips 712, which are respectively fixed at both ends of the mounting plate 711; and a pair of slots 713, which are respectively opened on the left and right inner walls of the mounting shell 611, and the pair of slots 713 cooperate with the pair of clips 712. Specifically, the buckle 712 has a certain elasticity, and the buckle 712 is engaged in the slot 713. After the starting plate 612 is inserted into the mounting shell 611, the buckle 712 is also engaged in the slot 713, thereby fixing the starting plate 612 to prevent the starting plate 612 from falling off when the industrial remote control is in use, causing the reed switch magnetic control switch 614 to be turned off, and then causing the industrial remote control to be turned off and unusable. To facilitate the buckle 712 to disengage from the slot 713, the slot 713 is provided with an oblique groove near the opening to adapt to the upper end of the buckle 712. By pulling the mounting plate 711 with force, the buckle 712 can be disengaged from the slot 713, and the starting plate 612 can be pulled out of the mounting shell 611.
[0046] Further, if Figures 1 to 6As shown, in this embodiment, the pairing module includes a storage card 615, which is fixed to the start-up module and stores the operator's identity information. Specifically, the identity card 615 is fixedly mounted in the middle of the start-up board 612. The lower end of the remote control mainboard 3 is electrically connected to an NFC reader module 616 for reading the identity card 615. NFC uses electromagnetic induction coupling to transmit information. When two NFC-enabled devices are close together, they can establish a wireless connection, enabling contactless point-to-point data transmission between the devices. By entering the owner's information into the identity card 615, when the start-up board 612 is inserted into the mounting housing 611, the NFC reader module 616 reads the information on the identity card 615, thereby identifying whether the holder of the identity card 615 has the right to use the industrial remote control. This ensures that the industrial remote control can only be used by the authorized individual and can also record the user's identity information and usage time.
[0047] Further, if Figures 1 to 6 As shown, in this embodiment, the housing includes: an upper shell 2, a lower shell 1, and a sealing gasket; the upper shell 2 and the lower shell 1 are fixedly connected; the sealing gasket is disposed between the upper shell 2 and the lower shell 1 to seal the upper shell 2 and the lower shell 1; the mainboard 3 module is fixed within the sealed cavity formed by the upper shell 2 and the lower shell 1; and the mounting groove 5 is defined on the outer surface of the lower shell 1. Specifically, the upper shell 2 is fixedly mounted to the upper end of the lower shell 1, the remote control mainboard 3 is fixedly mounted inside the lower shell 1, a sealing gasket is disposed between the lower shell 1 and the upper shell 2, and the remote control mainboard 3 is located within the sealed cavity between the lower shell 1 and the upper shell 2. By positioning the remote control mainboard 3 within the sealed inner cavity of the lower shell 1 and the upper shell 2, the remote control mainboard 3 is protected from moisture damage.
[0048] Further, if Figures 1 to 6 As shown, in this embodiment, the upper housing 2 is provided with a plurality of button holes, each corresponding to a plurality of control buttons 31 on the mainboard 3 module. A sealing sleeve is provided on the outer surface of the upper housing 2 to seal the button holes. The sealing sleeve is a rubber sleeve bonded to the outer surface of the upper housing 2. Specifically, multiple sets of control buttons 31 are connected to the side of the remote control mainboard 3 facing the upper housing 2. A rubber sleeve 4 is bonded to the outer side of the upper housing 2, located at the control buttons 31. This rubber sleeve 4 prevents water from entering the interior of the industrial remote control through the control buttons 31 on the upper housing 2, further enhancing its waterproof performance.
[0049] Working principle: First, the user information of the industrial remote control is entered into the identity information storage card 615 in the matching launch board 612. When the launch board 612 is needed, the launch board 612 can be taken out from the launch board 612 storage cabinet through face recognition, and the industrial remote control that matches the launch board 612 can be quickly found by color and appearance. The taken launch board 612 is inserted into the industrial remote control installation shell 611. If the launch board 612 cannot be inserted into the installation shell 611 at this time, it means that the launch board 612 does not match the industrial remote control. Then, a new matching industrial remote control is found, and the launch board 612 is inserted into the installation shell 611. The limit plate 617 is inserted into the limit slot 6 18, the buckle 712 is inserted into the card slot 713. At this time, the magnet block 613 is close to the reed switch magnetic switch 614, so that the two sets of metal reeds in the reed switch magnetic switch 614 are closed, thereby starting the industrial remote control and realizing wireless contactless start-up and power-on. At this time, the NFC reading module 616 reads the identity information of the identity information storage card 615. When the information read by the NFC reading module 616 does not exist in the industrial remote control, the remote control cannot be used. When the industrial remote control has the identity information recorded, the person is authorized to use the industrial remote control, and the industrial remote control can be started and used. At the same time, the industrial remote control will record the user's identity information and the time of use.
[0050] After use, the mounting plate 711 is pulled hard so that the buckle 712 can be disengaged from the slot 713, and then the starting plate 612 can be pulled out from the mounting shell 611. The magnet block 613 is away from the reed switch magnetic control switch 614, so that the two sets of metal reeds in the reed switch magnetic control switch 614 are gradually demagnetized and disconnected, so that the industrial remote control is automatically turned off. Finally, the starting plate 612 is placed in the storage cabinet for storage to avoid loss. The above is the working process of the entire device.
[0051] Above, refer to Figures 1 to 6 The present invention describes an NFC pairing remote control according to an embodiment of the present invention. Through the starting module, wireless contactless starting can be achieved, thereby achieving good airtightness and waterproofness, improving service life and safety. The pairing module is used to pair the holder with the remote control, so that the remote control can only be used by a designated person with authorized use rights, and the user's identity information and usage time can be recorded to improve safety.
[0052] It should be noted that, in this specification, the terms "comprises," "includes," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a process, method, article, or apparatus comprising a series of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus. In the absence of further limitations, the elements defined by the phrase "comprising..." do not exclude the presence of other identical elements in the process, method, article, or apparatus comprising the elements.
[0053] Although the present invention has been described in detail through the above preferred embodiments, it should be understood that the above description should not be considered as limiting the present invention. After reading the above description, various modifications and alternatives to the present invention will be readily apparent to those skilled in the art. Therefore, the scope of protection of the present invention shall be defined by the appended claims.
Claims
1. An NFC pairing remote control, characterized in that: Include: A housing, wherein a mounting slot is provided on the housing; a mainboard module, the mainboard module being fixed in the housing; A startup module, which is inserted into the installation slot and drives the mainboard module to conduct; A pairing module is provided in the startup module, the pairing module stores pairing information, the startup module is inserted into the installation slot, and the pairing module is driven close to the mainboard module, and the pairing module matches the mainboard module and the operator.
2. The NFC remote control pairing device according to claim 1, wherein: The mainboard module includes: a mainboard, a magnetic control switch and an NFC reading module; The mainboard, the magnetic switch and the NFC reading module are installed in the housing, and the magnetic switch and the NFC reading module are both arranged adjacent to the installation slot; The magnetic control switch and the NFC reading module are both electrically connected to the mainboard; The starting module is inserted into the installation slot to drive the magnetic control switch to close.
3. The NFC pairing remote control according to claim 1 or 2, characterized in that: The starting module comprises: a mounting shell, a starting plate and a magnet block; The mounting shell is fixed in the mounting groove; The starting plate is inserted and fixed in the mounting shell by a fixing mechanism; The magnet block is fixed on the starting board, and the magnet block drives the mainboard module to conduct.
4. The NFC remote control pairing device according to claim 3, wherein: A positioning plate is provided on the inner wall of the installation shell or the installation groove, and a positioning groove is provided on the starting plate. The positioning groove and the positioning plate cooperate with each other.
5. The NFC remote control pairing device according to claim 3, wherein: The fixing mechanism comprises: a mounting plate fixed to the outer side of the starting plate; a pair of buckles, the pair of buckles being fixed to two ends of the mounting plate respectively; A pair of card slots are respectively provided on the left and right inner walls of the mounting shell, and the pair of card slots respectively cooperate with the pair of buckles.
6. The NFC remote control pairing device according to claim 1, wherein: The pairing module includes a storage card, which is fixed on the starting module and stores the identity information of the operator.
7. The NFC remote control pairing device according to claim 1, wherein: The housing comprises: an upper housing, a lower housing and a sealing gasket; The upper shell and the lower shell are fixedly connected; The sealing gasket is provided between the upper shell and the lower shell to seal the upper shell and the lower shell; The mainboard module is fixed in the closed cavity formed by the upper shell and the lower shell; The mounting groove is provided on the outer surface of the lower shell.
8. The NFC remote control pairing device according to claim 7, wherein: A plurality of key holes are provided on the surface of the upper shell, and the plurality of key holes correspond to the plurality of control keys of the mainboard module respectively. A sealing sleeve is provided on the outer surface of the upper shell, and the sealing sleeve seals the plurality of key holes.
9. The NFC remote control pairing device according to claim 8, wherein: The sealing sleeve is a rubber sleeve, and the rubber sleeve is bonded to the outer surface of the upper shell.