Storage waistband
By installing a sensing module on the belt and using sensors and speakers to remind users of the objects they have taken, the problem that existing belts cannot accurately distinguish objects without looking at the belt is solved, and the effect of knowing the objects being taken without eye confirmation is achieved.
Patent Information
- Application Number
- CN202421568051.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-04
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-07-04
AI Technical Summary
The existing storage belt cannot accurately distinguish the items you need to take without looking at the belt, which can easily lead to the wrong items being taken, affecting the safety and accuracy of the experimental process.
Install a sensing module on the belt, including sensors and speakers. The sensor detects the position of the object and controls the speaker to send a reminder when the object leaves the cavity to ensure that the user is aware of the object being taken.
Users can know the items they have picked up without eye confirmation, reducing the probability of picking up the wrong items, and improving the safety and efficiency of the experiment.
Smart Images

Figure CN223053936U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of storage belts, in particular to a storage belt. Background Art
[0002] A belt is a band used to fasten around the waist, usually made of cloth, leather or plastic. The original function of the belt was to tie clothes. With the development of the times, belts with storage functions began to appear. By hanging a storage bag on the belt, users can place small items on the belt.
[0003] Belts with storage functions are widely used in different groups such as security personnel, police officers, scientific research personnel and outdoor adventure personnel. Taking scientific research personnel as an example, scientific research personnel often need to conduct experiments indoors or outdoors, and also need to conduct experiments in scenes with bright or dim light. During the experiment process, they may need to take objects such as tools, measuring tools or utensils from the storage belt. However, scientific research personnel need to always focus their attention on the experimental object, and it is not convenient to move their eyes to the belt at any time to confirm whether the target bag to be taken is exactly the required object. Moreover, it is more unfavorable to use eyesight to confirm the object to be taken in a dim light scene. The existing storage belts on the market can only provide simple storage functions and cannot help scientific research personnel distinguish the target bag to be taken without looking at the belt. When scientific research personnel take the wrong object, they need to spend more time and distract their attention to replace the object taken again, which is not conducive to the safety and accuracy of the experimental process and is not convenient for personnel to use.
[0004] In view of the above deficiencies, we need to develop a storage belt to meet the usage requirements of the majority of users. Content of the Utility Model
[0005] In view of the problem that the existing storage belts are not convenient for personnel to distinguish the objects to be taken without looking at the belt and are prone to taking the wrong objects, the technical solution adopted by the utility model to solve its technical problems is:
[0006] A storage belt includes a girdle for wearing, a waist sleeve installed on the girdle, and a sensing module for detecting the position of an object. The sensing module includes a sensor and a speaker. The waist sleeve is provided with a sleeve inner cavity for placing an object and a sleeve bottom hole for installing the sensor. The detection end of the sensor passes through the sleeve bottom hole and faces the center of the sleeve inner cavity. When the object leaves the sleeve inner cavity, the sensing module controls the speaker to emit a reminder.
[0007] Further, the waistband includes a standard kit and a plurality of special kits with different structures. The standard kit and the special kits are respectively arranged at intervals along the length direction of the belt. The standard kit and the special kits are respectively detachably mounted on the belt through movable buckles.
[0008] Further, it further includes a shoulder strap for shoulder carrying. The two ends of the shoulder strap are respectively detachably mounted on the belt through the movable buckles.
[0009] Further, the sensing module includes a controller for receiving the sensor signal. The special kit includes a device kit for storing the controller and the speaker. The device kit is provided with a sound transmission hole for facilitating sound transmission and a device wire hole for the cable to pass through. The cable of the controller is respectively electrically connected to the sensor and the speaker through the device wire hole.
[0010] Further, the belt is provided with a wire passing cavity for the cable to pass through. The wire passing cavity is provided with a first wire passing hole communicating with the device wire hole and a second wire passing hole communicating with the outside. The movable buckle is provided with a through third wire passing hole. The cable of the sensor passes through the second wire passing hole and the third wire passing hole and extends into the wire passing cavity and passes through the first wire passing hole and the device wire hole to be electrically connected to the controller.
[0011] Further, the special kit includes a long strip kit. The horizontal cross-sectional profile of the long strip kit adopts a circular or oval structure. The length of the long strip kit is greater than the length of the standard kit, and the width of the long strip kit is less than the width of the standard kit.
[0012] Further, the special kit includes a long strip opening kit. The top of the long strip opening kit is provided with an open sleeve opening communicating with the sleeve inner cavity and the outside. The length of the long strip opening kit is the same as the length of the long strip kit, and the width of the long strip opening kit is between the width of the long strip kit and the width of the standard kit.
[0013] Further, the special kit includes a rectangular kit and an arc-shaped kit. The horizontal cross-sectional profiles of the rectangular kit and the arc-shaped kit both adopt a rectangular structure. The length and width of the rectangular kit are both greater than the length and width of the standard kit. The bottom of the arc-shaped kit adopts an arc-shaped structure.
[0014] Further, the two ends of the belt are respectively provided with a first buckle and a second buckle that can be detachably buckled with each other. The first buckle is provided with a buckling convex part, and the second buckle is provided with a buckling sliding groove that is in limit fit with the buckling convex part.
[0015] Furthermore, it also includes anti-skid patterns for preventing the contact surface from slipping, and the anti-skid patterns are located on both sides of the strap and / or the cavity wall of the sleeve cavity.
[0016] The beneficial effects of the utility model are as follows:
[0017] 1. The utility model adds a sensor module to the traditional storage belt. The sensor module monitors in real time whether the object is taken out of the waist bag by the user through the sensor. When the user takes out the object in the waist bag and triggers the sensor to send a signal, the sensor module controls the speaker to send a reminder of the corresponding waist bag to the user, so that the user can know the specific object taken without using eyes to confirm the waist bag, reducing the time wasted by the user taking the wrong object, and making it convenient for the user to use.
[0018] 2. The waist cover of the utility model includes a standard kit and a plurality of special kits with different structures. Objects of different sizes and different shapes can be classified and placed in the waist cover of corresponding shape structure, so as to improve the adaptability and practicality of the waist cover. The waist cover can be detachably mounted on the belt through a movable buckle, so that the user can replace the special kit of the required shape structure at any time to meet the normal use of the user.
[0019] 3. The belt of the utility model can also be hung on the user through the shoulder strap. The user can hang multiple different storage belts at the same time, which is convenient for the user to carry multiple storage belts at the same time. Anti-skid patterns are also added on the belt and the waist cover to prevent the contact surface from slipping, so that the position of the waist cover will not produce a large displacement with the shaking of the user's body, which is convenient for the user to take the required target objects more quickly. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 This is a front view of a storage belt of the utility model.
[0021] Figure 2 for Figure 1 AA section view.
[0022] Figure 3 for Figure 1 BB cross-sectional view. DETAILED DESCRIPTION
[0023] The implementation modes of the present utility model are described in detail below in conjunction with the accompanying drawings.
[0024] like Figures 1 to 3As shown in the figure, a storage belt includes a belt 1 for wearing, a waist pouch 2 installed on the belt 1, and a sensing module 3 for detecting the position of an object. The sensing module 3 includes a sensor 31 and a speaker 32. The waist pouch 2 is provided with an inner cavity 21 for placing an object and a bottom hole 22 for installing the sensor 31. The detection end of the sensor 31 passes through the bottom hole 22 and faces the center of the inner cavity 21. When the object leaves the inner cavity 21, the sensing module 3 controls the speaker 32 to emit a reminder message.
[0025] Specifically, in some embodiments, the belt 1 is a long, flat strip for hanging the waist pouch 2 and tying around the user's waist. The waist pouch 2 is a pouch set for storing objects in the storage belt. The sensing module 3 is a sensing reminder module for detecting the storage state of objects in the storage belt. The waist pouch 2 is provided with an inner cavity 21 for placing an object and a bottom hole 22 for installing the sensor 31. The waist pouch 2 is provided with a waist pouch fastening member 29 for easy fastening. After the object is placed in the inner cavity 21, the waist pouch 2 is closed and the waist pouch fastening member 29 is buckled on the outside of the waist pouch 2 to prevent the object in the inner cavity 21 from falling out easily. The bottom hole 22 is located at the bottom of the waist pouch 2 and communicates the inner cavity 21 with the outside. The sensing module 3 includes a sensor 31 for detecting the position of the object and a speaker 32 for reminding the user. The detection end of the sensor 31 extends into the bottom hole 22 and faces the position in the inner cavity 21 for placing the object to detect the object in real time. The sensor 31 is provided with a limit ring for easy installation. The diameter of the limit ring is larger than the aperture of the bottom hole 22, so that the sensor 31 can be restricted at the position in contact with the bottom hole 22 through the limit ring to stabilize the placement of the sensor 31. The cable for the sensor 31 to transmit signals extends from the side of the sensor 31 away from the detection end and is connected to the sensing module 3. When in use, when the object leaves the inner cavity 21, the sensor 31 is triggered to transmit a signal. After receiving the signal, the sensing module 3 controls the speaker 32 to send a clear voice reminder message to the user to remind the user that the object corresponding to the waist pouch 2 has been taken out.
[0026] More specifically, the user can number multiple different waist pouches 2 on the sensing module 3 and input the reminder message of the speaker 32 corresponding to the waist pouch 2. When the object in the corresponding waist pouch 2 is taken out, the sensor 31 is triggered to transmit a signal. After receiving the signal, the sensing module 3 controls the speaker 32 to emit a reminder message that the corresponding object has been taken out, so that the user can more clearly know which object has been taken.
[0027] More specifically, when the user encounters a thief or pickpocket stealing the objects on the storage belt outside the experimental site, the sensor 31 is also triggered to transmit a signal the moment the object leaves the inner cavity 21. After receiving the signal, the sensing module 3 controls the speaker 32 to emit a reminder message that the corresponding object has been taken out, so as to timely discover that the object has been stolen.
[0028] Such asFigures 1 to 3 As shown, the waist belt 2 includes a standard kit 23 and a plurality of special kits with different structures. The standard kit 23 and the special kits are respectively arranged at intervals along the length direction of the girdle 1. The standard kit 23 and the special kits are respectively detachably mounted on the girdle 1 through movable buckles 5.
[0029] Specifically, in some embodiments, the standard kit 23 is the standard pouch style of the waist belt 2, and the other special kits are other special adaptable styles obtained by improving and designing on the basis of the standard kit 23. There are multiple different styles in the structure of the special kits, which can be used to load small detection equipment such as thermometers, hygrometers, differential pressure gauges, anemometers, noise meters, illuminance meters, etc., and can also load tools such as flashlights, notebooks, voice recorders, bottled or boxed reagent containers, etc. A plurality of standard kits 23 and a plurality of special kits are respectively arranged at intervals along the length direction of the girdle 1 through movable buckles 5. The movable buckle 5 is fixedly connected to the side of the standard kit 23 or the special kit close to the girdle 1. The movable buckle 5 is provided with a buckle structure 52 that can be buckled with each other. When in use, the user first loosens the buckle structure 52, wraps the movable buckle 5 around the girdle 1, and then buckles the buckle structure 52 to complete the installation of the standard kit 23 or the special kit on the girdle 1. After buckling, the position of the movable buckle 5 on the girdle 1 can also be moved to adjust the interval between the standard kit 23 and the special kits, which is convenient for customers to use.
[0030] As Figure 1 and Figure 2 shown, it further includes a shoulder strap 4 for shoulder carrying. The two ends of the shoulder strap 4 are respectively detachably mounted on the girdle 1 through the movable buckles 5.
[0031] Specifically, in some embodiments, the shoulder strap 4 is a storage waist belt, which is an auxiliary tool for the user to carry extra items. The two ends of the shoulder strap 4 are respectively detachably mounted on the girdle 1 through movable buckles 5, so that the user can detach the shoulder strap 4 at any time and tie the storage waist belt alone around the waist, or can sling or single-cross the shoulder strap 4 on the shoulder, and it is convenient to carry the storage waist belt without tying the girdle 1 around the waist. A shoulder strap lining 41 for anti-slip is provided at the middle position of the shoulder strap 4 in contact with the user's shoulder. The shoulder strap lining 41 is designed to be hollow and sleeved on the shoulder strap 4 to prevent the shoulder strap 4 from slipping off the user's shoulder. The contact area between the shoulder strap lining 41 and the user's shoulder is larger than that of the shoulder strap 4. Therefore, it can also disperse the force per unit area of the storage waist belt on the user's shoulder, further reducing the load and fatigue on the user's shoulder.
[0032] As Figures 1 to 3As shown, the sensing module 3 includes a controller 33 for receiving signals from the sensor 31. The special kit includes an equipment kit 24 for storing the controller 33 and the speaker 32. The equipment kit 24 is provided with a sound hole 241 for facilitating sound transmission and an equipment wire hole 242 for the cable to pass through. The cable of the controller 33 is electrically connected to the sensor 31 and the speaker 32 respectively through the equipment wire hole 242.
[0033] Specifically, in some embodiments, the controller 33 can use a single-chip microcomputer as the micro-control processor. A single-chip microcomputer is a microcomputer system integrating a central processor, a memory, input / output ports, timers, counters, and other auxiliary functions. It is usually applicable to embedded systems to control various devices, such as household appliances, automotive electronic systems, industrial automation, etc. It has the characteristics of small size, low power consumption, low cost, and stable performance. The controller 33 judges and confirms the storage state of the object by collecting and receiving the trigger signal of the sensor 31. Since the object is tightly fastened by the waistband buckle 29 inside the waist sheath 2 under normal conditions and is in stable contact with the detection end of the sensor 31, even if the user's movement or walking action is large, the shaking of the object in the inner cavity 21 of the sheath will not be very large, making the judgment of the controller 33 more accurate. The equipment kit 24 is a bag in the special kit for storing the controller 33 and the speaker 32. The equipment kit 24 is provided with an equipment wire hole 242 for the cable to pass through on the side close to the girdle 1. The cable of the sensor 31 can pass through the equipment wire hole 242 and be connected to the controller 33. The cables of all the sensing wires 31 extend into the equipment wire hole 242 uniformly, facilitating the storage and management of the cables, avoiding the messy placement and connection of the cables during the user's use, and facilitating the user's use.
[0034] As Figures 1 to 3 As shown, the girdle 1 is provided with a wire passing cavity 11 for the cable to pass through. The wire passing cavity 11 is provided with a first wire passing hole 12 communicating with the equipment wire hole 242 and a second wire passing hole 13 communicating with the outside. The movable buckle 5 is provided with a through third wire passing hole 51. The cable of the sensor 31 passes through the second wire passing hole 13 and the third wire passing hole 51, extends into the wire passing cavity 11, and passes through the first wire passing hole 12 and the equipment wire hole 242 to be electrically connected to the controller 33.
[0035] Specifically, in some embodiments, the wire passing cavity 11 is arranged at a position close to the outer side of the belt 1. The wire passing cavity 11 is an inner cavity channel of the belt for connecting each sensor 31 and the controller 33. The wire passing cavity 11 is provided with a plurality of first wire passing holes 12 and second wire passing holes 13 communicating with the outside. The first wire passing holes 12 are opened on one side of the belt 1 close to the waist sleeve 2 and are evenly spaced along the length direction of the belt 1. The second wire passing holes 13 are opened on one side of the belt 1 close to the bottom and are evenly spaced along the length direction of the belt 1. When installing the equipment kit 24, the position of the equipment wire hole 242 is set corresponding to the position of the first wire passing hole 12, and the position of the third wire passing hole 51 of the other movable buckle 5 is set corresponding to the position of the second wire passing hole 13, so that the cables extended from each sensor 31 extend into and pass through the second wire passing hole 13 along the wire passing cavity 11, communicate to the third wire passing hole 51 and then pass through the equipment wire hole 242 to be electrically connected to the controller 33.
[0036] Specifically, in some embodiments, the wire passing cavity 11 can be arranged at the middle position of the cross section of the belt 1, so that the distances between the wire passing cavity 11 and the outer side of the belt 1 in different directions are as equal as possible, avoiding the single side wall thickness being too thin and easily worn and perforated, which affects the use of the cables in the wire passing cavity 11.
[0037] As Figure 1 shown, the special kit includes a long strip kit 25. The horizontal cross-sectional profile of the long strip kit 25 adopts a circular or oval structure. The length of the long strip kit 25 is greater than the length of the standard kit 23, and the width of the long strip kit 25 is less than the width of the standard kit 23.
[0038] Specifically, in some embodiments, the long strip kit 25 in the special kit can be used to load rod-like objects such as record pens, flashlights, and sticks. Since such objects have the shape characteristics of being long and narrow, the long strip kit 25 is designed for such objects in the special kit. Compared with the standard kit 23, the horizontal cross-sectional profile of the long strip kit 25 adopts a circular or oval structure to adapt to the outer contour of the rod-like objects. The length dimension of the long strip kit 25 is longer to adapt to the length of the rod-like objects, and the width dimension of the long strip kit 25 is smaller to adapt to the width of the rod-like objects, avoiding the rod-like objects shaking in the sleeve inner cavity 21. The long strip kit 25 also occupies less hanging space of the belt 1. When in use, after loading the rod-like objects into the sleeve inner cavity 21, just buckle the waist sleeve fastener 29 to complete the loading.
[0039] As Figure 1As shown, the special kit includes a long strip opening kit 26. An open sleeve mouth 261 communicating with the inner cavity 21 of the sleeve and the outside is provided at the top of the long strip opening kit 26. The length of the long strip opening kit 26 is the same as that of the long strip kit 25. The width of the long strip opening kit 26 is between the width of the long strip kit 25 and the width of the standard kit 23.
[0040] Specifically, in some embodiments, the long strip opening kit 26 in the special kit can be used to load rod-shaped objects such as recording pens, flashlights, and sticks. Since such objects have the shape characteristics of being long and narrow, the long strip opening kit 26 is designed for such objects in the special kit. However, there are still some rod-shaped objects that are not convenient to be fastened by the sleeve cover. Therefore, the sleeve cover is removed at the top of the long strip opening kit 26 to form an open sleeve mouth 261 communicating with the inner cavity 21 of the sleeve and the outside. A relatively thick sleeve mouth layer is provided at the edge of the open sleeve mouth 261. The long strip opening kit 26 tightens the contact with the object through the sleeve mouth layer, reducing the possibility of the object falling out. Compared with the standard kit 23, the horizontal cross-sectional profile of the long strip opening kit 26 adopts a circular or elliptical structure to adapt to the outer contour of the rod-shaped object. The length dimension of the long strip opening kit 26 is longer to adapt to the length of the rod-shaped object. The width of the long strip opening kit 26 is greater than the width of the long strip kit 25 and less than the width of the standard kit 23 to adapt to rod-shaped objects with a slightly larger volume, facilitating user use.
[0041] As Figure 1 As shown, the special kit includes a rectangular kit 27 and an arc-shaped kit 28. The horizontal cross-sectional profiles of both the rectangular kit 27 and the arc-shaped kit 28 adopt a rectangular structure. The length and width of the rectangular kit 27 are both greater than the length and width of the standard kit 23. The bottom of the arc-shaped kit 28 adopts an arc-shaped structure.
[0042] Specifically, in some embodiments, the rectangular kit 27 in the special kit can be used to load rectangular objects such as mobile phones, calculators, notebooks, and other rectangular tools. Such objects have the shape characteristics of approximate length and width and perpendicular length and width. The rectangular kit 27 is designed for such objects in the special kit. The vertical shape of the rectangular kit 27 is rectangular, and the horizontal cross-sectional profile also adopts a rectangular shape. Compared with the standard kit 23, the length and width of the rectangular kit 27 are both larger dimensions to accommodate the volume of the rectangular object. The rectangular kit 27 can fit the outer contour of the rectangular object more closely, facilitating user use.
[0043] Specifically, in some embodiments, the arc-shaped kit 28 can be used in a special kit to load circular, semi-circular or elliptical arc-shaped objects. Such objects have a curved outer shape in the form of an arc. In the special kit, the arc-shaped kit 28 is designed for such objects. The vertical shape of the arc-shaped kit 28 is semi-elliptical, the bottom of the arc-shaped kit 28 adopts a curved surface structure in the shape of an arc, and the horizontal cross-sectional profile is also rectangular. Compared with the standard kit 23, the length of the arc-shaped kit 28 is similar to that of the standard kit 23, but the width of the arc-shaped kit 28 is larger to accommodate the volume of the arc-shaped object. The arc-shaped kit 28 can better fit the outer contour of the arc-shaped object, facilitating user use.
[0044] As Figure 1 shown, both ends of the strap 1 are respectively provided with a first buckle 14 and a second buckle 15 that are detachably buckled with each other. The first buckle 14 is provided with a buckling convex part, and the second buckle 15 is provided with a buckling sliding groove that is in limit fit with the buckling convex part.
[0045] Optionally, the first buckle 14 and the second buckle 15 can be made of materials such as metal and plastic. When the first buckle 14 and the second buckle 15 are made of metal, they can have good structural stability, are not easily damaged, can be used for a long time and multiple times, and the tensile performance after buckling is relatively excellent. When the first buckle 14 and the second buckle 15 are made of plastic, they have relatively good corrosion resistance and are relatively light in weight. Users can choose first buckles 14 and second buckles 15 of different materials according to actual environmental needs.
[0046] Specifically, in some embodiments, the first buckle 14 is a fastening member for active buckling in the strap 1, and the second buckle 15 is a fastening member for passive buckling in the strap 1. For the convenience of buckling and loosening, a buckling convex part is provided on the buckling surface where the first buckle 14 contacts the second buckle 15, and a buckling sliding groove is provided on the buckling surface where the second buckle 15 contacts the first buckle 14. After the buckling convex part extends into the buckling sliding groove and is connected in cooperation, the effect of locking the first buckle 14 and the second buckle 15 is formed. When unbuckling, the user presses the buckling convex part to loosen the buckling connection between each other and complete the unbuckling.
[0047] As Figure 1 shown, it further includes anti-slip lines 6 for preventing the contact surface from slipping. The anti-slip lines 6 are located on both sides of the strap 1 and / or the wall of the inner cavity 21 of the sleeve.
[0048] Specifically, in some embodiments, the girdle 1 is a storage waistband, which is a strip-shaped flat long belt for hanging the waist sheath 2 and winding around the user's waist. The anti-slip pattern 6 is a pattern structure provided in the middle of the front and back sides of the girdle 1 for increasing friction. The anti-slip pattern 6 can be a pattern that protrudes and / or depresses on the girdle 1, a criss-cross pattern, a pattern arranged vertically and evenly spaced along the length direction of the girdle 1, or a pattern of a pattern type, or a combination of one or more of them. When the waist sheath 2 and its accessories hung on the girdle 1 shake and shift due to the user's activities, the anti-slip pattern 6 can effectively increase the friction with the waist sheath 2 and its accessories through its pattern, further reducing the shaking amplitude and displacement distance of the waist sheath 2 and its accessories. When the user picks up the girdle 1, the anti-slip pattern 6 can also be used to increase the friction with the hand, reducing phenomena such as slipping, instability, and falling off during the process of picking up the girdle 1.
[0049] As Figures 1 to 3 shown, the specific implementation manner of Embodiment 1 of the present utility model is as follows:
[0050] The sensor 31 in this embodiment adopts a measurement and control type sensor, and triggers a signal by detecting the distance to the target.
[0051] During installation, the user can select different styles of standard kits 23 and special kits suitable for loading according to the tools and objects to be used. After selection, the standard kits 23 and special kits are buckled on the girdle 1 through the movable buckles 5 in the order preferred by the user. The equipment kit 24 is preferably buckled at the middle position of the girdle 1, that is, the middle between the two ends in the length direction of the girdle 1. The remaining waist sheaths 2 are separated from each other at intervals. The third wire passing hole 51 of each movable buckle 5 connecting the waist sheath 2 is aligned with the second wire passing hole 13 on the girdle 1. All the waist sheaths 2 are arranged on the same side of the girdle 1. The girdle 1 increases the friction with the movable buckle 5 through the anti-slip pattern 6, so that the movable buckle 5 will not easily slide on the girdle 1 after being buckled tightly, completing the installation of the waist sheath 2;
[0052] One sensor 31 is installed in each bottom hole 22 of the waist sheath 2. The detection end of the sensor 31 is arranged towards the center of the inner cavity 21 of the sheath. One end of the cable extending from the sensor 31 corresponding to each waist sheath 2 passes through the bottom hole 22 until the limiting ring of the sensor 31 contacts the bottom hole 22 to limit the position of the sensor 31. The cable of the sensor 31 corresponding to each waist sheath 2 extends into and passes through the second wire passing hole 13 from the third wire passing hole 51, communicates with the third wire passing hole 51 along the wire passing cavity 11, and then passes through the equipment wire hole 242 to be electrically connected to the controller 33. The user identifies each connected sensor 31 through the controller 33 and inputs the corresponding reminder message, completing the installation of the sensor 31;
[0053] When in use, the object is placed into the inner cavity 21 of the corresponding waist sheath 2, such that the object is close to the sensor 31. After all the objects are loaded, the waist sheath fastener 29 is fastened so that the waist sheath 2 wraps around the object. The user brings the side of the strap 1 away from the waist sheath 2 close to the waist and wraps the strap 1 around the waist. The strap 1 is fastened to the waist by the cooperation and connection of the first buckle 14 and the second buckle 15. Then the user turns on and activates the controller 33 and the sensor 31. At this time, the controller 33 detects through the sensor 31 that the object is within the preset detection range, completing the wearing of the storage waistband.
[0054] When an object needs to be taken, the user reaches out to open the waist sheath fastener 29 and takes out the object from the inner cavity 21. After the object leaves the sensor 31 by a certain distance, the sensor 31 is triggered to send a signal which is transmitted to the controller 33 via a cable. The controller 33 identifies the waist sheath 2 corresponding to the sensor 31 that receives the signal, and then controls the speaker 32 to emit a reminder message for taking the corresponding object, reminding the user of the information of the object being taken, avoiding the user taking the wrong object and being distracted to confirm the object in hand. The user can know the specific object being taken without having to use their eyes to confirm the waist sheath, reducing the time wasted by the user taking the wrong object and facilitating the user's use.
[0055] More specifically, the sensor 31 is triggered after the object leaves the sensor 31 by more than 10 mm. The preset detection range is controlled within 10 mm to ensure that even if the object slightly detaches from the sensor 31 under normal shaking, the sensor 31 will not be easily triggered, causing false detection and the speaker 32 to sound accidentally.
[0056] The specific implementation manner of Embodiment 2 of the present utility model is as follows:
[0057] Different from Embodiment 1, the sensor 31 in this embodiment adopts a contact-type sensor, and triggers a signal by detecting the contact state with the target.
[0058] When an object needs to be taken, the user reaches out to open the waist sheath fastener 29 and takes out the object from the inner cavity 21. After the object leaves the detection end of the sensor 31, the sensor 31 is triggered to send a signal which is transmitted to the controller 33 via a cable. The controller 33 identifies the waist sheath 2 corresponding to the sensor 31 that receives the signal, and then controls the speaker 32 to emit a reminder message for taking the corresponding object, reminding the user of the information of the object being taken, avoiding the user taking the wrong object and being distracted to confirm the object in hand. The user can know the specific object being taken without having to use their eyes to confirm the waist sheath, reducing the time wasted by the user taking the wrong object and facilitating the user's use.
[0059] As Figures 1 to 3 shown, the specific implementation manner of Embodiment 3 of the present utility model is as follows:
[0060] Different from Embodiment 1 and Embodiment 2, in this embodiment, the girdle 1 is equipped with a shoulder strap 4 through a movable buckle 5. The two ends of the shoulder strap 4 are detachably installed on the girdle 1 through the movable buckle 5 respectively, so that the user can detach the shoulder strap 4 at any time and tie the storage waistband alone around the waist, or can slant or single-span the shoulder strap 4 on the shoulder, and can conveniently carry the storage waistband without tying the girdle 1 around the waist.
[0061] More specifically, a shoulder strap bushing 41 for anti-slip is provided at the middle position of the shoulder strap 4 in contact with the user's shoulder. The shoulder strap bushing 41 is designed to be hollow and sleeved on the shoulder strap 4 to prevent the shoulder strap 4 from slipping off the user's shoulder. The contact area of the shoulder strap bushing 41 with the user's shoulder is larger than that of the shoulder strap 4. Therefore, it can also disperse the force per unit area of the storage waistband on the user's shoulder, further reducing the sense of burden and fatigue on the user's shoulder.
[0062] The above only uses embodiments to further illustrate the technical content of the present utility model for the convenience of readers to understand more easily, but it does not mean that the implementation modes of the present utility model are limited to this. Any technical extension or re-creation based on the present utility model is protected by the present utility model. The protection scope of the present utility model is subject to the claims.
Claims
1. A storage belt, characterized in that: It includes a belt (1) for wearing, a waist sheath (2) mounted on the belt (1), and a sensing module (3) for detecting the position of an object. The sensing module (3) includes a sensor (31) and a speaker (32). The waist sheath (2) is provided with a sheath inner cavity (21) for placing the object and a sheath bottom hole (22) for mounting the sensor (31). The detection end of the sensor (31) passes through the sheath bottom hole (22) and faces the center of the sheath inner cavity (21). When the object leaves the sheath inner cavity (21), the sensing module (3) controls the speaker (32) to emit a reminder message.
2. The storage belt according to claim 1, characterized in that: The waist sheath (2) includes a standard kit (23) and a plurality of special kits with different structures. The standard kit (23) and the special kits are respectively arranged at intervals along the length direction of the belt (1). The standard kit (23) and the special kits are respectively detachably mounted on the belt (1) through movable buckles (5).
3. The storage belt according to claim 2, characterized in that: It further includes a shoulder strap (4) for carrying on the shoulder. Both ends of the shoulder strap (4) are respectively detachably mounted on the belt (1) through the movable buckles (5).
4. The storage belt according to claim 3, wherein: The sensing module (3) includes a controller (33) for receiving signals from the sensor (31). The special kit includes an equipment kit (24) for storing the controller (33) and the speaker (32). The equipment kit (24) is provided with a sound emitting hole (241) for facilitating sound transmission and an equipment wire hole (242) for the cable to pass through. The cable of the controller (33) is electrically connected to the sensor (31) and the speaker (32) respectively through the equipment wire hole (242).
5. The storage belt according to claim 4, wherein: The belt (1) is provided with a wire passing cavity (11) for the cable to pass through. The wire passing cavity (11) is provided with a first wire passing hole (12) communicating with the equipment wire hole (242) and a second wire passing hole (13) communicating with the outside. The movable buckle (5) is provided with a through third wire passing hole (51). The cable of the sensor (31) passes through the second wire passing hole (13) and the third wire passing hole (51), extends into the wire passing cavity (11), and passes through the first wire passing hole (12) and the equipment wire hole (242) to be electrically connected to the controller (33).
6. The storage belt according to claim 2, wherein: The special kit includes a long strip kit (25). The horizontal cross-sectional profile of the long strip kit (25) adopts a circular or oval structure. The length of the long strip kit (25) is greater than the length of the standard kit (23). The width of the long strip kit (25) is less than the width of the standard kit (23).
7. The storage belt according to claim 6, wherein: The special kit includes a long strip opening kit (26). The top of the long strip opening kit (26) is provided with an open sleeve opening (261) communicating with the sheath inner cavity (21) and the outside. The length of the long strip opening kit (26) is the same as the length of the long strip kit (25). The width of the long strip opening kit (26) is between the width of the long strip kit (25) and the width of the standard kit (23).
8. The storage belt according to claim 2, characterized in that: The special kit includes a rectangular kit (27) and an arc-shaped kit (28). The horizontal cross-sectional profiles of the rectangular kit (27) and the arc-shaped kit (28) both adopt a rectangular structure. The length and width of the rectangular kit (27) are both greater than the length and width of the standard kit (23). The bottom of the arc-shaped kit (28) adopts an arc-shaped structure.
9. The storage belt according to claim 1, characterized in that: Both ends of the strap (1) are respectively provided with a first buckle (14) and a second buckle (15) that are detachably buckled with each other. The first buckle (14) is provided with a buckling convex part, and the second buckle (15) is provided with a buckling chute that is in limit fit with the buckling convex part.
10. A storage belt according to any one of claims 1-9, characterized in that: It further includes an anti-slip pattern (6) for preventing the contact surface from slipping. The anti-slip pattern (6) is located on both sides of the strap (1) and / or the wall of the inner cavity (21) of the sleeve.