CN215773779U - Electronic component supporting box, intelligent protective gloves, system and related equipment - Google Patents
Electronic component supporting box, intelligent protective gloves, system and related equipment Download PDFInfo
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- CN215773779U CN215773779U CN202121449339.1U CN202121449339U CN215773779U CN 215773779 U CN215773779 U CN 215773779U CN 202121449339 U CN202121449339 U CN 202121449339U CN 215773779 U CN215773779 U CN 215773779U
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Abstract
The utility model discloses an electronic component supporting box, an intelligent protective glove, a system and related equipment, wherein the supporting box can comprise: the light-transmitting panel comprises an upper shell, a bottom shell detachably connected with the upper shell, and a supporting box base connected with the upper shell and/or the bottom shell; the edge of the end face of the upper shell is provided with a first closing part, and one side of the bottom shell connected with the upper shell is provided with a second closing part corresponding to the first closing part; the upper shell and the bottom shell are closed through the first closing part and the second closing part; the upper shell and the bottom shell form an accommodating cavity for accommodating electronic components; the upper surface of epitheca still is provided with first window, and the printing opacity panel is installed at first window department. The electronic components arranged in the supporting box can realize self functions, and the supporting box can play an effective role in protection, so that the dustproof and waterproof effects are achieved. And, can dismantle with the support box base through epitheca/drain pan and be connected, conveniently change the casing of whole electronic components outsourcing, the operation is very convenient, practices thrift a large amount of time.
Description
Technical Field
The utility model relates to the technical field of intelligent protection, in particular to an electronic component supporting box, an intelligent protective glove, an intelligent protective system and related equipment.
Background
The design concept of common anti-smashing gloves in the existing market is that materials such as thermoplastic resin and rubber are added to finger parts and back parts of common protective gloves to form anti-smashing strips or anti-smashing blocks. In the use, if the accident takes place, prevent pounding the strip or prevent pounding the piece and can play effectual cushioning effect to reduce the damage to the user. However, in the actual use process, because the safety consciousness of the user is weak or the personal habit is not good, and the use environment is complex and changeable, the protection function of the protective gloves is greatly reduced; in some special use environments, a user has to place a hand in a dangerous work environment, which is a dangerous and complex environment, and the existing protective gloves can only passively reduce the injury degree and cannot fundamentally prevent or reduce the probability of injury accidents.
SUMMERY OF THE UTILITY MODEL
The inventor discovers that intelligent gloves with active early warning functions also appear in anti-smashing gloves in the prior art, but dustproof and waterproof cannot be guaranteed in the construction process of a box body for containing electronic components, and potential safety hazards exist in a circuit board or a circuit of the intelligent protective gloves in the using process. Meanwhile, the existing electronic components can only be arranged on the intelligent protective gloves once, and if a certain electronic component is damaged or the gloves are worn, the whole intelligent protective gloves cannot be normally used, so that time and labor are wasted in the process of disassembly and assembly.
In view of the above, the present invention has been developed to provide an electronic component support box, a smart protective glove, a system and related devices that overcome or at least partially address the above-mentioned problems.
In a first aspect, an embodiment of the present invention provides an electronic component supporting box, which may include: the light-transmitting panel comprises an upper shell, a bottom shell detachably connected with the upper shell, a light-transmitting panel and a supporting box base connected with the upper shell and/or the bottom shell;
a first closing part is arranged at the edge of the end face of the upper shell, and a second closing part corresponding to the first closing part is arranged on the side, connected with the upper shell, of the bottom shell; the upper case and the bottom case are closed by the first closing part and the second closing part; the upper shell and the bottom shell form an accommodating cavity for accommodating electronic components;
the upper surface of epitheca still is provided with first window, the printing opacity panel install in first window.
Optionally, a step is arranged on the upper surface of the upper shell near the edge of the first window, and the light-transmitting panel is mounted on the step.
Optionally, at least one limiting portion is disposed on a side wall of the support box base, and at least one protruding portion corresponding to the limiting portion is disposed on an outer surface of a side wall of the upper shell and/or the bottom shell; or the like, or, alternatively,
the outer surface of the side wall of the supporting box base is provided with at least one bulge, and the side wall of the upper shell and/or the bottom shell is provided with at least one limiting part corresponding to the bulge;
the upper shell and/or the bottom shell and the supporting box base are clamped with the boss through the limiting parts.
Optionally, a wiring groove is further disposed on the upper surface of the bottom plate of the supporting box base.
Optionally, the upper surface of the bottom plate of the supporting box base is further provided with a limiting column matched with the wiring groove.
Optionally, the method may further include: a base connection plate; a second window is arranged on the bottom shell;
a third window and a fourth window are arranged on a bottom plate of the supporting box base, and the first connecting head of the base connecting plate is limited in the third window; the second connector of the base connecting plate is limited in the fourth window;
the electronic component contained in the supporting box can be connected with the base connecting plate through the second window and the third window.
Optionally, the lower surface of the bottom plate of the supporting box base is an arc surface.
In a second aspect, an embodiment of the present invention provides a master, which may include: the electronic component support box comprises a main control circuit board, a power supply module electrically connected with the main control circuit board and the electronic component support box of the first aspect;
the main control circuit board and the power supply module are installed in the accommodating cavity.
Optionally, at least one LED lamp is mounted on the main control circuit board; the upper surface of epitheca is provided with the comb hole, the master controller can also include: and one end of the light guide sheet is abutted against the inner surface of the upper shell with the grate hole, and the other end of the light guide sheet is close to the LED lamp.
Optionally, at least one of the following may be included: the switch assembly and the charging assembly are arranged on the side wall of the upper shell or the bottom shell; the switch assembly is electrically connected with the main control circuit board; the charging assembly is electrically connected with the power supply module through the main control circuit board;
the switch assembly includes: a switch sealing ring embedded on the side wall of the upper shell and a switch embedded in the switch sealing ring; the switch is electrically connected with the main control circuit board;
the charging assembly includes: a charging assembly sealing ring embedded on the side wall of the upper shell and a charging connector embedded in the charging assembly sealing ring; the charging connector is electrically connected with the power module.
In a third aspect, an embodiment of the present invention provides a detection sensor, which may include: a sensor main board and the electronic component support box according to the first aspect; the sensor main board is arranged in the accommodating cavity.
In a fourth aspect, an embodiment of the present invention provides a smart protective glove, which may include: the gloves body with set up in prevent pounding the piece on the gloves body, can also include: a master as in the second aspect and at least one detection sensor as in the third aspect;
the main controller and the detection sensor are arranged on the anti-smashing piece;
and a signal connecting wire is arranged between the smashing prevention piece and the glove body, and the main controller is electrically connected with the detection sensor through the signal connecting wire.
Optionally, the support box base and the base connecting plate are respectively embedded into a through hole formed in the anti-smashing piece, one end of the support box base and the base connecting plate are abutted against the outer surface of the glove body, the base connecting plate is located below the support box base, and a first connecting head of the base connecting plate penetrates through a third window formed in the support box base and is electrically connected with a main control circuit board in the main controller and a sensor main board in the detection sensor;
the connecting end of the signal connecting wire is positioned above the supporting box base and is electrically connected with the second connector of the base connecting plate; the signal connecting wire extends to a position between the smashing prevention piece and the glove body through the wiring groove.
Optionally, the method may further include: a gasket located between the glove body and the support box base.
In a fifth aspect, an embodiment of the present invention provides an intelligent protection system, including: a server and at least one smart protective glove as described in the fourth aspect;
the intelligent protective gloves are characterized in that a communication module is arranged in the server, a corresponding communication module is arranged in a main controller of the intelligent protective gloves, and the server is in communication connection with the intelligent protective gloves.
The technical scheme provided by the embodiment of the utility model has the beneficial effects that at least:
the embodiment of the utility model provides an electronic component supporting box, an intelligent protective glove, a system and related equipment, wherein the supporting box can comprise: the light-transmitting panel comprises an upper shell, a bottom shell detachably connected with the upper shell, a light-transmitting panel and a supporting box base connected with the upper shell and/or the bottom shell; a first closing part is arranged at the edge of the end face of the upper shell, and a second closing part corresponding to the first closing part is arranged on the side, connected with the upper shell, of the bottom shell; the upper case and the bottom case are closed by the first closing part and the second closing part; the upper shell and the bottom shell form an accommodating cavity for accommodating electronic components; the upper surface of epitheca still is provided with first window, the printing opacity panel is installed first window department. Electronic components can install the intracavity that holds that forms at epitheca and drain pan, and epitheca and drain pan realize the sealed closure of epitheca and casing through first closed portion, second closed portion, through setting up the first window installation printing opacity panel of epitheca upper surface, realize that above-mentioned electronic components sees through the purpose that printing opacity panel gathered data. This support box can play effectual protection to it, reaches dustproof and waterproof's effect. Furthermore, the upper shell/bottom shell is detachably connected with the supporting box base, so that the shell for wrapping the whole electronic component can be conveniently replaced, a large amount of time can be saved, and the operation is very convenient.
Additional features and advantages of the utility model will be set forth in the description which follows, and in part will be obvious from the description, or may be learned by practice of the utility model. The objectives and other advantages of the utility model will be realized and attained by the structure particularly pointed out in the written description and drawings.
The technical solution of the present invention is further described in detail by the accompanying drawings and embodiments.
Drawings
The accompanying drawings, which are included to provide a further understanding of the utility model and are incorporated in and constitute a part of this specification, illustrate embodiments of the utility model and together with the description serve to explain the principles of the utility model and not to limit the utility model. In the drawings:
fig. 1 is a first exemplary electronic component supporting box provided in an embodiment of the present invention;
FIG. 2A is one of the schematic exploded views of FIG. 1;
FIG. 2B is a second schematic diagram of the exploded structure of FIG. 1;
fig. 3 is a second example of an electronic component holding box provided in the embodiment of the present invention;
FIGS. 4A and 4B are schematic views of the exploded structure of FIG. 3;
FIG. 5 is a diagram illustrating a structure of a master controller according to an embodiment of the present invention;
FIG. 6A is one of the exploded schematic views of the master provided in FIG. 5;
FIG. 6B is a second exploded view of the master provided in FIG. 5;
fig. 7 is a schematic structural view of a detection sensor provided in an embodiment of the present invention;
FIG. 8A is one of the exploded schematic views of the master provided in FIG. 7;
FIG. 8B is a second exploded view of the master provided in FIG. 7;
FIG. 9 is a schematic structural diagram of a pair of intelligent protective gloves provided in an embodiment of the utility model;
FIG. 10A is one of the exploded schematic views of FIG. 9;
fig. 10B is a second schematic exploded view of fig. 9.
1 is an electronic component supporting box; 2 is a master controller; 3 is a detection sensor; 4 is a glove body; 5 is an anti-smashing piece; 6 is a signal connecting line; 7 is a gasket;
11, an upper shell; 12 is a bottom shell; 13 is a first sealing ring; 14 is a light-transmitting panel; 15 is a supporting box base; 16 is a base connecting plate; 17 is a second sealing ring; 18 is a cement; 19 is a containing cavity; 21 is a main control circuit board; 22 is a power supply module; 23 is an LED lamp; 24 is a light guide plate; 25 is a switch assembly; 31 is a sensor main board; 51 is a through hole; 61 is a connecting end;
111 is a first closure; 112 is a first window; 113 is a step; 114 is a first clamping part; 115 is a convex part; 116 is a grid hole; 121 is a second closure; 122 is a second window; 123 is a second clamping part; 124 is a convex part; 141 panel glue; 151 is a limiting part; 152 is a wiring channel; 153 is a limit column; 154 is a third window; 155 is a fourth window; 161 is a first connector; 162 is a second connector; 211 is a main control panel connector; 311 is a sensor mainboard connector; 251 is a switch sealing ring; 252 is a switch; 261 is a charging assembly sealing ring; 262 is a charging connector.
Detailed Description
Exemplary embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. While exemplary embodiments of the present disclosure are shown in the drawings, it should be understood that the present disclosure may be embodied in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the disclosure to those skilled in the art.
In the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplicity of description, but do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
In the description of the present invention, it should be noted that, unless otherwise explicitly specified or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, e.g., as meaning either a fixed connection, a removable connection, or an integral connection; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meanings of the above terms in the present invention can be understood in specific cases to those skilled in the art.
Example 1
Embodiment 1 of the present invention provides an electronic component supporting box, and as shown in fig. 1 to 4B, the supporting box may include: an upper shell 11, a bottom shell 12 detachably connected with the upper shell 11, a light-transmitting panel 14, and a supporting box base 15 connected with the upper shell 11 and/or the bottom shell 12; a first closing part 111 is arranged at the edge of the end face of the upper shell 11, and a second closing part 121 corresponding to the first closing part 111 is arranged on the side, connected with the upper shell 11, of the bottom shell 12; the upper case 11 and the bottom case 12 are closed by the first closing part 111 and the second closing part 121; the upper surface of the upper case 11 is further provided with a first window 112, and the translucent panel 14 is mounted to the first window 112.
In order to make the sealing of the upper and bottom shells better, a first sealing ring 13 may also be provided between the first closing part and the second closing part. It should be noted that, in the embodiment of the present invention, the first closing portion may be a groove, and the corresponding second closing portion may be a protrusion; or the first closed part is a protrusion, and the corresponding second closed part is a groove. Of course, both the first closing portion and the second closing portion may be grooves or planes, and the first sealing ring is embedded into the first closing portion and the second closing portion to close the supporting box.
It should be further noted that the light-transmitting panel in this embodiment may be composed of a plurality of panels, and may be a common light-transmitting panel, or a refractive panel, such as an acrylic panel that transmits laser light. It should be further noted that fig. 1 and fig. 3 provided in the drawings of the embodiments of the present invention are two different types of electronic component supporting boxes in the embodiments, but the overall structures of the electronic component supporting boxes are similar, and two specific different embodiments designed by the inventor based on the same inventive concept result in different uses and use scenarios of the two supporting boxes, and those skilled in the art can understand that the embodiments may further modify the supporting boxes to adapt to uses of different electronic components.
According to the support box provided by the embodiment of the utility model, the electronic component can be arranged in the accommodating cavity formed by the upper shell and the bottom shell, the upper shell and the bottom shell are sealed and closed through the first closing part, the second closing part and the first sealing ring, and the light-transmitting panel is arranged on the first window arranged on the upper surface of the upper shell, so that the purpose that the electronic component acquires data through the light-transmitting panel or transmits the LED warning lamp is achieved. This electronic components supports box can play effectual protection to it, reaches dustproof and waterproof's effect. Furthermore, the upper shell/bottom shell is detachably connected with the supporting box base, so that the shell for wrapping the whole electronic component can be conveniently replaced, a large amount of time can be saved, and the operation is very convenient.
In an alternative embodiment, as shown in fig. 2A, the upper surface of the upper case 11 is provided with a step 113 near the edge of the first window 112, and the light-transmitting panel 14 is mounted on the step 113. Above-mentioned halfpace in this embodiment can the ready-to-mount printing opacity panel, certainly also can set up the one deck protection shield on the printing opacity panel, opens the protection shield when using, closes it again after using the completion to reach the purpose of protection printing opacity panel.
In another alternative embodiment, referring to fig. 2A and 2B and fig. 4A and 4B, a first clamping portion 114 is disposed on the inner surface of the upper shell 11, and a corresponding second clamping portion 123 is disposed on the inner surface of the bottom shell 12; the first and second catching portions 114 and 123 are detachably connected. Preferably, the first clamping portion and the second clamping portion in the embodiment are uniformly arranged on the upper shell and the bottom shell, so that the upper shell and the bottom shell are more stably connected, and the upper shell and the bottom shell are convenient to detach and buckle. Of course, in this embodiment, the upper shell may form an indent forming cavity as in the accompanying drawings, or may form a cavity as in the bottom shell, the upper shell and the bottom shell form an accommodating cavity together, and corresponding rib plates or ribs are provided on the inner surfaces of the upper shell and the bottom shell, and the rib plates or ribs may not only serve as mounting positions for mounting electronic components, thereby facilitating the mounting of the electronic components, but also enhancing the strength of the upper shell and the bottom shell.
In another optional embodiment, after the electronic component is damaged in the prior art, the electronic component needs to be replaced in time, but a certain time is required for disassembling and assembling the supporting box, and for industries with higher requirements on working efficiency or safety production, the supporting box is often required to be replaced and used immediately.
In the embodiment, a main control unit (main controller) or a detection unit (detection sensor) containing electronic components is integrally replaced conveniently. Referring to fig. 1 to 4B, at least one position-limiting portion 151 is disposed on a sidewall of the supporting box base 15, and at least one protrusion 115 or 124 corresponding to the position-limiting portion 151 is disposed on an outer surface of a sidewall of the upper case 11 and/or the bottom case 12; the upper shell 11 and/or the bottom shell 12 and the support box base 15 are clamped with the boss 115 or the boss 124 through the limiting part 151. Referring to fig. 2A and 2B, the position-limiting portion may be a through hole provided on the side wall, or referring to fig. 4A and 4B, the position-limiting portion may be a circular groove provided on the side wall; the limiting parts can be arranged on the symmetrical side walls of the supporting box base, can also be arranged on the side walls around the supporting box base, and can be arranged in pairs or independently. Because the supporting box base in this embodiment has tension and flexibility in both the horizontal and vertical directions, when the housing surrounded by the upper shell and the bottom shell is installed, the supporting box can be partially deformed to be clamped on the base. The limiting part of the embodiment is only required to be correspondingly arranged with the boss on the upper shell or the bottom shell to complete clamping, and the specific structure and the specific position of the limiting part are not limited.
Furthermore, the limiting portion and the protruding portion in this embodiment not only have a connection/clamping function, but also can position the housing (the upper housing and the bottom housing) on the supporting box base. It should be further noted that, the protruding portions in this embodiment may be disposed on the outer surface of the side wall of the upper casing, or may be disposed on the outer surface of the side wall of the bottom casing, and the position and the number of the protruding portions may be set according to different structures and different shapes of the upper casing and the bottom casing. Of course, the positions of the limiting portion and the protruding portion may also be correspondingly disposed on the housing (the upper shell, the bottom shell) and the supporting box base, that is, the outer surface of the sidewall of the supporting box base is provided with at least one protruding portion, and the sidewall of the upper shell and/or the bottom shell is provided with at least one limiting portion corresponding to the protruding portion, which is not particularly limited in this embodiment.
In an optional embodiment, although there are multiple wireless communication modes in the prior art, for an intelligent protection device with higher response sensitivity and anti-interference requirements, wired data transmission is used between electronic components more stably, and the reliability is higher. Therefore, as shown in fig. 2A, 2B and 4A, the bottom plate of the support box base 15 can be further provided with a wiring groove 152, which can facilitate wiring when the devices using the support box are connected by signal connection lines.
In another alternative embodiment, in order to fix the arranged connection ends of the signal connection lines on the electronic component supporting box, the upper surface of the bottom plate of the supporting box base 15 in this embodiment is further provided with a limiting column 153 matched with the wiring groove 152. For example, the signal connection line may be a Flexible Circuit board (FPC for short), and the connection end of the FPC signal connection line may be perforated (a limiting mounting hole), so that the signal connection line and the limiting column may be positioned and clamped together when the signal connection line is mounted conveniently. Because in the operation process, for example operate the following intelligent protective gloves of well, the flexible circuit board in this embodiment is very yielding, can have the effect of dragging to the connector, connects unstablely in order to prevent the link, and this embodiment is fixed through the spacing mounting hole of spacing post and FPC link, has solved the problem of circuit disconnection in the use.
In another alternative embodiment, the inventor aims to achieve the purposes of quickly replacing the shells (the upper shell and the bottom shell) for containing the electronic components and ensuring effective communication of circuits in the process of replacing the electronic components. As also shown in fig. 2A and 2B and fig. 4A and 4B, the electronic component holding box may further include: a base connection plate 16; the purpose of the base connection board is to indirectly connect together different electronic components, such as the main controller and the detection sensor in the smart protective glove mentioned below.
In this embodiment, in order to physically connect electronic components contained in different support boxes, a second window 122 is disposed on the bottom case 12; a third window 154 is arranged on the bottom plate of the support box base 15, and the first connecting head 161 of the base connecting plate 16 is limited in the third window 154; the second connector 162 of the base connecting plate 16 is limited in the fourth window 155; the electronic component housed in the support case is connected to the first connection terminal 161 of the base connection plate 16 through the second window 122 and the third window 154. The plug-in type/butt type connection of the electronic element container can be completed by adding the module of the base connecting plate without opening the upper shell and the bottom shell.
It should be noted that, in the present embodiment, the first connector 161 is limited by the third window 154, and the second connector 162 is limited by the fourth window 155, and the limitation may be, as shown in fig. 2A and fig. 6A, passed through the third window/the fourth window; as shown in fig. 4A and 8A, the third window and the fourth window may abut against each other. The second connector in this embodiment is for connecting a plurality of base connection boards, for example, the base connection boards between the main controller and the detection sensor are connected through the FPC signal connection lines as mentioned below, and the fourth window is located on the upper portion of the support box base and fixed by the limiting posts, so as to prevent the FPC signal connection lines from being pulled and disconnected during the use of the glove.
In a more specific embodiment, referring to fig. 2A and 2B and fig. 4A and 4B, in order to ensure the sealing performance between the bottom shell and the supporting box base to achieve the dustproof and waterproof purpose after the housing (the top shell and the bottom shell), the supporting box base and the base connecting plate are assembled, the electronic component supporting box in this embodiment may further include: a second seal ring 17; when the second sealing ring is installed, the second sealing ring is positioned between the base and the support box base (namely, between the second window and the third window), and of course, a groove or a corresponding bulge and the like can be arranged on the outer surface of the base, so that the second sealing ring achieves a better sealing effect.
Simultaneously, in order to guarantee the stability between support box base and the base connecting plate, this electronic components supports box can also include: and the glue 18 for bonding the support box base 15 and the base connecting plate 16 is distributed around the window, so that the base and the connecting plate are stably connected. The adhesive tape may be a double-sided adhesive tape, and may also be fixed in other manners (for example, glue filling), which is not limited in this embodiment.
Alternatively, as shown in fig. 1 to 4B, the bottom plate of the support box base 15 has a curved lower surface. Above-mentioned support box base in this embodiment is installed on preventing the hand protector, and arc surface structure is for the shape of matching finger and back of the hand, and this arc surface is the hand bending dorsad, prevents the further extrusion to finger and back of the hand, wears more comfortablely.
Example 2
The inventor of this application discovers, after labour protection articles for use and intelligent protection technology combine, has produced the protective articles for use of intelligent protection, and the control treater of this protective articles for use is as the brain of product, and is very important to its protection in the use, in order to guarantee efficiency simultaneously, when charging to it, changing routine operations such as spare part, also need accomplish the portable dismouting as far as possible.
Based on the same inventive concept, an embodiment of the present invention further provides a master controller, and as shown in fig. 5, fig. 6A, and fig. 6B, the master controller may include: a main control circuit board 21, a power supply module 22 electrically connected to the main control circuit board 21, and the electronic component support box 1 provided in embodiment 1 above; an accommodating cavity 19 is formed between the upper shell 11 and the bottom shell 12; the main control circuit board 21 and the power supply module 22 are mounted in the accommodating cavity 19. The above-mentioned master controller that this embodiment provided, install electronic components after the chamber that holds of above-mentioned support box, not only the equipment is convenient, can be to electronic components effective protective action moreover.
It should be noted that, as shown in fig. 6A and 6B, in the assembly process, the main control board connector 211 of the main control circuit board 21 and the first connector 161 of the base connecting board 16 in the support box in this embodiment may be plugged together, or may be in contact with each other to achieve circuit communication, and the final effect of this embodiment is to achieve plug-in replacement of electronic components in the main control board and the outside, but the specific connection/communication manner between the circuit boards is not specifically limited.
In an alternative embodiment, also shown with reference to fig. 5, 6A and 6B, the main control circuit board 21 has at least one LED lamp 23 mounted thereon; the upper surface of the upper shell 11 is provided with a comb hole 116, and the main controller 2 may further include: and at least one light guide sheet 24, wherein one end of the light guide sheet 24 is abutted against the inner surface of the upper shell 11 with the grid holes 116, and the other end of the light guide sheet 24 is close to the LED lamp 23. The function of the LED lamp in the embodiment of the present invention may be used for displaying electric quantity, displaying a charging state, or displaying an early warning as a light, and the function of the LED lamp is not specifically limited in this embodiment.
In a more specific embodiment, as also shown with reference to fig. 5, 6A and 6B, the master may further comprise at least one of: a switch assembly 25 and a charging assembly 26 disposed on a sidewall of the upper case 11 or the bottom case 12; the switch assembly 25 and the charging assembly 26 are respectively electrically connected with the main control circuit board 21;
the switch assembly 25 includes: a switch packing 251 embedded on a sidewall of the upper case 11 and a switch 252 embedded in the switch packing 251; the switch 252 is electrically connected with the main control circuit board 21;
the charging assembly 26 includes: a charging assembly sealing ring 261 embedded on a sidewall of the upper case 11 and a charging connector 262 embedded in the charging assembly sealing ring 261; the charging connector 262 is electrically connected to the main control circuit board 21.
The switch assembly in the embodiment of the utility model is used as a control assembly of the main controller, and can be opened and closed at any time according to the requirements of workers, and meanwhile, the main controller in the embodiment is provided with a power supply module which is charged through a charging connector on the side wall to provide power for the main controller. When each component in this embodiment is communicated with the outside, a sealing structure is used to seal preset openings (such as a switch opening and a charging opening), windows and the like, and the strict sealing requirement of the master controller is met.
In a more specific embodiment, different types of sensors, such as an acceleration sensor, a gyroscope sensor, and the like, may be mounted on the main control circuit board for the purpose of detecting and detecting signals. Certainly, the main control circuit board in this embodiment may implement data processing and data analysis to achieve the purpose of warning/early warning, for example, in a patent with a publication number of CN109243140A entitled "a hand protection method, device and related protective gloves", the main control circuit board in this embodiment may be used as an evaluation module and a prompt module thereof.
Example 3
The inventor aims at the current situation that the sensor in the prior art is easy to damage, knock and be fragile, and installs the sensor mainboard in the electronic component supporting box, based on the same inventive concept, the embodiment of the utility model further provides a detection sensor, and referring to fig. 7, 8A and 8B, the detection sensor can comprise: the sensor main board 31 and the electronic component support case 1 in embodiment 1; an accommodating cavity 19 is formed between the upper shell 11 and the bottom shell 12; the sensor main board 31 is installed in the accommodation chamber 19.
It should be noted that the sensor motherboard in this embodiment may be a motherboard of a distance measuring sensor (such as an infrared distance measuring sensor, a laser distance measuring sensor, etc.), and may be capable of detecting a distance from the detection sensor to the target and a change value of the distance. Of course, the sensor motherboard in this embodiment may also be other sensor motherboards, such as an acceleration sensor, a decibel meter sensor, and the like, which is not specifically limited in this embodiment.
It should be noted that, as shown in fig. 8A and 8B, in the assembly process, the sensor main board connector 311 of the sensor main board 31 in the present embodiment and the first connector 161 of the base connection board 16 in the support box may be plugged together, or may be in abutting contact to realize circuit communication, and the final effect of the present embodiment is to realize the plug-in replacement of the electronic component in the detection sensor with the outside, but the specific connection/communication manner between the circuit boards is not particularly limited.
The light-transmitting panel of the above-mentioned detection sensor that provides in this embodiment can be customized according to the difference of sensor, for example the light-transmitting panel that laser rangefinder sensor used, when using this sensing detector in this embodiment, even this light-transmitting cover plate surface is pasted or is scattered some dust, water stain etc. also can not influence laser rangefinder sensor's sensitivity and accuracy.
In an alternative embodiment, as shown in fig. 8A and 8B, in order to make the light-transmitting panel 14 more stably mounted on the upper case 11, the light-transmitting panel 14 and the upper case 11 may be adhered together by a panel adhesive 141, which may be a double-sided adhesive, or may be fixed by other means (such as glue filling), and this embodiment is not limited in this respect.
The function of the detection sensor in this embodiment may refer to a detection module in a patent with a publication number of CN109243140A and an invention name of "a hand protection method, a hand protection device, and a related protection glove", and specifically refer to a distance detection unit, which is not described herein again.
Example 3
The inventor aims at the deficiency in the existing intelligent protective articles, and based on the improvement on the above-mentioned master controller, detection sensor and electronic components support box, this embodiment also provides an intelligent protective glove, as shown with reference to fig. 9 and fig. 10A, 10B, this intelligent protective glove can include: gloves body 4 and the anti-pound 5 of setting on gloves body 4 can also include: a master 2 in embodiment 2 and at least one detection sensor 3 in embodiment 3; the main controller 2 and the detection sensor 3 are arranged on the anti-smashing piece 5; a signal connecting wire 6 is arranged between the anti-smashing piece 5 and the glove body 4, and the main controller 2 and the detection sensor 3 are electrically connected through the signal connecting wire 6.
The intelligent protective gloves provided by the embodiment of the utility model solve the defects of passive protection in the prior art, early warning is carried out in advance so as to enable operators to know the surrounding environment more quickly and prepare protection in advance, and action adjustment/avoidance can be carried out in time according to prompt signals of different grades so as to enable hands to return to a safe area again, thereby greatly reducing the probability of injury when an accident occurs. Meanwhile, the positions of the detection sensors in the embodiment (the thumb, the index finger and the ring finger) can represent the detection direction of the hand, and the representativeness is stronger.
In a specific embodiment, referring to fig. 9, fig. 10A and fig. 10B, the supporting box base 15 and the base connecting plate 16 are respectively inserted into the through hole 51 provided in the anti-smashing piece 5, the bottom end of the supporting box base is abutted against the outer surface of the glove body 4, the base connecting plate 16 is located below the supporting box base 15, and as shown in fig. 2B and fig. 4B, the first connecting head 161 of the base connecting plate 16 penetrates through the third window 154 provided on the supporting box base 15, and is electrically connected with the main control circuit board 21 in the main control controller 2 and the sensor main board 31 in the detection sensor 3, for example, the above mentioned may be plugged together, or may be in abutting contact to realize circuit communication.
The connecting end 61 of the signal connecting wire 6 is located above the supporting box base 15, and is electrically connected to the second connector 162 of the base connecting plate 16, as shown in fig. 4A; the signal connecting line 6 extends between the anti-smashing piece 5 and the glove body 4 through the wiring groove 152. It should be further noted that, the signal connection line in this embodiment may be a Flexible Printed Circuit (FPC), the connection end 61 of the signal connection line is located between the supporting box base and the bottom shell, the wiring portion of the signal connection line is located at the bottom of the anti-smashing piece, and a portion of the signal connection line is flexibly deformed at the wiring groove.
In an alternative embodiment, referring to fig. 10B, the smart protective glove may further include: a gasket 7 located between the glove body 4 and the support box base 15. The main function of this gasket is cushioning effect, receives external striking or when extrudeing at above-mentioned master controller 2 and detection sensor 3, and this gasket can effectively cushion, plays the guard action to hand and electronic components.
In this embodiment, the glove body may be a knitted or sewn glove or a rubber glove, and the material of the glove body in the embodiment of the present invention is not particularly limited. The main materials of the anti-smashing piece can be as follows: thermoplastic resins, plastics, rubbers, and the like; the anti-smashing piece, the supporting box base and the like can be connected to the finger part and the back part of the glove body in sewing, sticking, ironing and other modes.
Based on the same inventive concept, the embodiment of the present invention further provides an intelligent protection system, which may include: the server and at least one intelligent protective glove;
the intelligent protective gloves are characterized in that a communication module is arranged in the server, a corresponding communication module is arranged in a main controller of the intelligent protective gloves, and the server is in communication connection with the intelligent protective gloves.
The server can collect and count the risk information, and then determines the result of the risk analysis by carrying out unified analysis and comprehensive judgment on the big data, thereby realizing the effect of differential processing on the risk information and providing a basis for realizing intelligent protection, intelligent management, special management and control and the like.
It will be apparent to those skilled in the art that various changes and modifications may be made in the present invention without departing from the spirit and scope of the utility model. The present disclosure is not limited to the precise structures that have been described above and shown in the drawings, and various modifications and changes may be made without departing from the scope thereof. The scope of the present disclosure is limited only by the appended claims. Thus, if such modifications and variations of the present invention fall within the scope of the claims of the present invention and their equivalents, the present invention is also intended to include such modifications and variations.
Claims (15)
1. An electronic component support box, comprising: an upper shell (11), a bottom shell (12) detachably connected with the upper shell (11), a light-transmitting panel (14) and a supporting box base (15) connected with the upper shell (11) and/or the bottom shell (12);
a first closing part (111) is arranged at the edge of the end face of the upper shell (11), and a second closing part (121) corresponding to the first closing part (111) is arranged on the side, connected with the upper shell (11), of the bottom shell (12); the upper shell (11) and the bottom shell (12) are closed by the first closing part (111) and the second closing part (121); the upper shell (11) and the bottom shell (12) enclose an accommodating cavity (19) for accommodating electronic components;
the upper surface of the upper shell (11) is further provided with a first window (112), and the light-transmitting panel (14) is installed on the first window (112).
2. The electronic component supporting box according to claim 1, wherein at least one limiting portion (151) is disposed on a side wall of the supporting box base (15), and at least one protrusion (115, 124) corresponding to the limiting portion (151) is disposed on an outer surface of a side wall of the upper shell (11) and/or the bottom shell (12); or the like, or, alternatively,
the outer surface of the side wall of the supporting box base (15) is provided with at least one boss, and the side wall of the upper shell (11) and/or the bottom shell (12) is provided with at least one limiting part corresponding to the boss;
the upper shell (11) and/or the bottom shell (12) and the supporting box base (15) are clamped with the protruding portions through the limiting portions.
3. The electronic components supporting box as claimed in claim 2, wherein the upper surface of the bottom plate of the supporting box base (15) is further provided with a wiring groove (152).
4. The electronic component supporting box as claimed in claim 3, wherein a limiting column (153) matched with the wiring groove (152) is further arranged on the upper surface of the bottom plate of the supporting box base (15).
5. The electronic component support cassette of claim 2, further comprising: a base connection plate (16); a second window (122) is arranged on the bottom shell (12);
a third window (154) and a fourth window (155) are arranged on the bottom plate of the supporting box base (15), and a first connecting head (161) of the base connecting plate (16) is limited in the third window (154); the second connector (162) of the base connecting plate (16) is limited in the fourth window (155);
the electronic components contained in the support box can be connected with the base connecting plate (16) through the second window (122) and the third window (154).
6. The electronic component supporting box as claimed in any one of claims 1 to 5, wherein the lower surface of the bottom plate of the supporting box base (15) is an arc surface.
7. The electronic component supporting box as claimed in any one of claims 1 to 5, wherein a step (113) is provided on an upper surface of the upper case (11) near an edge of the first window (112), and the light-transmitting panel (14) is mounted on the step (113).
8. A master controller, comprising: a main control circuit board (21), a power supply module (22) electrically connected to the main control circuit board (21), and the electronic component supporting box (1) according to any one of claims 1 to 7;
an accommodating cavity (19) is formed between the upper shell (11) and the bottom shell (12); the main control circuit board (21) and the power supply module (22) are installed in the accommodating cavity (19).
9. The master controller according to claim 8, wherein the master control circuit board (21) has at least one LED lamp (23) mounted thereon; the upper surface of epitheca (11) is provided with comb hole (116), master controller (2) still include: and one end of the light guide sheet (24) abuts against the inner surface of the upper shell (11) with the grate holes (116), and the other end of the light guide sheet (24) is close to the LED lamp (23).
10. The master controller of claim 9, further comprising at least one of: the switch assembly (25) and the charging assembly (26) are arranged on the side wall of the upper shell (11) or the bottom shell (12); the switch assembly (25) is electrically connected with the main control circuit board (21); the charging assembly (26) is electrically connected with the power supply module (22) through the main control circuit board (21);
the switch assembly (25) comprises: a switch packing (251) embedded on a sidewall of the upper case (11) and a switch (252) embedded in the switch packing (251); the switch (252) is electrically connected with the main control circuit board (21);
the charging assembly (26) comprises: a charging assembly sealing ring (261) embedded on a side wall of the upper case (11) and a charging connector (262) embedded in the charging assembly sealing ring (261); the charging connector (262) is electrically connected with the power supply module (22).
11. A detection sensor, comprising: a sensor main board (31) and the electronic component support case (1) according to any one of claims 1 to 7; an accommodating cavity (19) is formed between the upper shell (11) and the bottom shell (12); the sensor main board (31) is installed in the accommodating cavity (19).
12. A smart protective glove, comprising: gloves body (4) with set up in prevent pounding piece (5) on gloves body (4), its characterized in that still includes: a master (2) according to any of claims 8-10 and at least one detection sensor (3) according to claim 11;
the main controller (2) and the detection sensor (3) are arranged on the anti-smashing piece (5);
a signal connecting line (6) is arranged between the smashing prevention piece (5) and the glove body (4), and the main controller (2) and the detection sensor (3) are electrically connected through the signal connecting line (6).
13. The intelligent protective glove according to claim 12, wherein the support box base (15) and the base connecting plate (16) are respectively embedded into a through hole (51) provided in the smash-proof piece (5), one end of the support box base abuts against the outer surface of the glove body (4), the base connecting plate (16) is located below the support box base (15), and a first connecting head (161) of the base connecting plate (16) penetrates through a third window (154) provided on the support box base (15) and is electrically connected with a main control circuit board (21) in the main controller (2) and a sensor main board (31) in the detection sensor (3);
the connecting end (61) of the signal connecting wire (6) is positioned above the supporting box base (15) and is electrically connected with the second connector (162) of the base connecting plate (16); the signal connecting wire (6) extends to a position between the smash-proof piece (5) and the glove body (4) through a wiring groove (152).
14. The intelligent protective glove of claim 13 further comprising: a gasket (7) located between the glove body (4) and the support box base (15).
15. An intelligent protection system, comprising: a server and at least one smart protective glove as claimed in any one of claims 12 to 14;
the intelligent protective gloves are characterized in that a communication module is arranged in the server, a corresponding communication module is arranged in a main controller of the intelligent protective gloves, and the server is in communication connection with the intelligent protective gloves.
Priority Applications (1)
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CN202121449339.1U CN215773779U (en) | 2021-06-28 | 2021-06-28 | Electronic component supporting box, intelligent protective gloves, system and related equipment |
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CN202121449339.1U CN215773779U (en) | 2021-06-28 | 2021-06-28 | Electronic component supporting box, intelligent protective gloves, system and related equipment |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114518131A (en) * | 2022-04-20 | 2022-05-20 | 广州市星康科技有限公司 | Dustproof shell for mounting lock joint type sensor |
WO2023274139A1 (en) * | 2021-06-28 | 2023-01-05 | 智甲科技(北京)有限公司 | Electronic accessory, intelligent wearing product and intelligent protection method |
-
2021
- 2021-06-28 CN CN202121449339.1U patent/CN215773779U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2023274139A1 (en) * | 2021-06-28 | 2023-01-05 | 智甲科技(北京)有限公司 | Electronic accessory, intelligent wearing product and intelligent protection method |
CN114518131A (en) * | 2022-04-20 | 2022-05-20 | 广州市星康科技有限公司 | Dustproof shell for mounting lock joint type sensor |
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