WO2020063276A1 - 一种多功能智能货架系统 - Google Patents
一种多功能智能货架系统 Download PDFInfo
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- WO2020063276A1 WO2020063276A1 PCT/CN2019/104263 CN2019104263W WO2020063276A1 WO 2020063276 A1 WO2020063276 A1 WO 2020063276A1 CN 2019104263 W CN2019104263 W CN 2019104263W WO 2020063276 A1 WO2020063276 A1 WO 2020063276A1
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- product
- hook
- shelf
- transmitting coil
- current
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- 238000004806 packaging method and process Methods 0.000 claims description 64
- 230000006698 induction Effects 0.000 claims description 10
- 239000011120 plywood Substances 0.000 claims description 7
- 238000005192 partition Methods 0.000 claims description 5
- 229920001971 elastomer Polymers 0.000 claims description 3
- 239000000806 elastomer Substances 0.000 claims description 3
- 230000000694 effects Effects 0.000 abstract description 3
- 230000009286 beneficial effect Effects 0.000 abstract description 2
- 238000010586 diagram Methods 0.000 description 6
- 230000005540 biological transmission Effects 0.000 description 4
- 238000000034 method Methods 0.000 description 3
- 239000004020 conductor Substances 0.000 description 2
- 238000009434 installation Methods 0.000 description 2
- 239000000969 carrier Substances 0.000 description 1
- 239000003086 colorant Substances 0.000 description 1
- 238000013461 design Methods 0.000 description 1
- 238000011161 development Methods 0.000 description 1
- 230000005611 electricity Effects 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 230000003993 interaction Effects 0.000 description 1
- 238000002955 isolation Methods 0.000 description 1
- 239000000463 material Substances 0.000 description 1
- 239000002184 metal Substances 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 230000000717 retained effect Effects 0.000 description 1
- 238000012360 testing method Methods 0.000 description 1
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Classifications
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06Q—INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
- G06Q30/00—Commerce
- G06Q30/06—Buying, selling or leasing transactions
Definitions
- the invention relates to the field of display retail equipment, in particular to a multifunctional intelligent shelf system.
- the technical problem to be solved by the present invention is to provide a shelf to solve the problems occurring in the background art described above.
- a multifunctional intelligent shelf system which is characterized by including a shelf and a packaging body provided on the shelf; the packaging body for storing goods is a packaging container
- the elastic body is composed of a hook and a light emitting body.
- the hook is detachably connected to the top of the packaging container.
- the light emitting body is arranged at the bottom of the hook and enters the inside of the packaging container.
- the hook includes a hook housing and a circuit board.
- the circuit board is provided with a power source, and the inside of the hook housing is a hollow structure.
- the hook housing is opened near the upper position and penetrates back and forth to form a hook hole.
- the circuit board is disposed inside the hook housing, and the circuit board is connected to the light circuit.
- the shelf is provided with at least one placing device for storing a packaging body, an induction device and a processor provided corresponding to the placing device, the induction device senses the packaging body stored in the placing device, and When it is sensed that the package is removed from the placement device, the sensing device generates a corresponding sensing signal, and the processor sends the sensing signal to a cloud server, so that the cloud server The sensing signal counts the number of times the commodity is accessed.
- the hook housing is composed of a hook front shell, a hook rear shell, and a splint, which are symmetrically arranged.
- a half-sided cylindrical body is disposed on an upper surface of the hook front shell near an edge, and the end of the half-sided cylindrical body is provided.
- a finite block, the hook front shell and the hook back shell are spliced to form a complete cylindrical body, and the plywood is provided with a strip hole through which the upper part of the hook housing can pass and a limit hole through which the cylindrical body can pass,
- the top of the hook housing and the cylindrical body pass through the packaging container and are embedded with the plywood, and the limiting block plays a role of limiting the plywood.
- a translucent light guide shell is provided at the bottom of the luminous body, the light guide shell is connected to the bottom of the hook housing; the bottom surface of the light guide shell is flush with the bottom surface of the hook housing, and the The through hole on the splint through which the upper part of the hook housing passes is matched with the cross-sectional shape of the upper part of the hook housing and is slightly larger than the cross-section of the upper part of the hook housing.
- the placement device includes a display pole
- the induction device includes a current and voltage sensor connected to the display pole and an external power source, and when the package is placed on the display pole, the The current and voltage sensor is electrically connected to the product, and when the product is removed from the display pole, the current and voltage sensor is disconnected from the product.
- a wireless transmitting coil is installed in the display pole, and the placing device further includes a pendant provided on the commodity, and the pendant is hung on the display pole to hang the commodity on the display pole.
- a display pole, the pendant is equipped with a wireless receiving coil, and when the product is removed from the display pole, the wireless transmitting coil is disconnected from the wireless receiving coil.
- the placement device includes a shelf
- the induction device includes a wireless transmitting coil provided on the shelf and a current and voltage sensor connected to the wireless transmitting coil and connected to an external power source.
- the product is equipped with a wireless receiving coil; when the product is placed on the shelf, the wireless transmitting coil is inductively connected to the wireless receiving coil, and the current and voltage sensor senses the product on the shelf; when the product is moved from the shelf When walking the goods, the wireless transmitting coil is disconnected from the wireless receiving coil, and the current and voltage sensor senses that the goods on the shelf are removed to generate the sensing signal.
- the shelf includes one or more storage layers, and a wireless transmission coil is embedded in the storage layer.
- the current and voltage sensor is connected to the wireless transmission coil and connected to an external power source.
- a wireless receiving coil is installed at the bottom of the product on the storage layer.
- the wireless transmitting coil is inductively connected to the wireless receiving coil.
- the current and voltage sensor senses the product on the storage layer.
- the wireless transmitting coil is disconnected from the wireless receiving coil, and the current and voltage sensor detects that the product in the storage layer is removed to generate the sensing signal.
- the storage layer is separated into a plurality of commodity placing areas by a partition.
- the commodity placing area is provided with a wireless transmitting coil, and the current and voltage sensor is connected to the wireless transmitting coil and is connected to an external power source.
- a wireless receiving coil is installed at the bottom of the product placed in the product placing area.
- the wireless transmitting coil is inductively connected to the wireless receiving coil, and the current and voltage sensor senses the product placing area.
- the wireless transmitting coil is disconnected from the wireless receiving coil, and the current and voltage sensor senses that the product in the storage layer is removed to generate the sense. ⁇ ⁇ Test signal.
- the placement device includes a placement area for storing goods
- the sensing device includes an infrared transmitter and an infrared receiver provided at the placement area and corresponding positions, and the infrared transmitter is used for
- the infrared receiver emits infrared rays.
- the infrared rays are blocked by the merchandise.
- the infrared receiver receives the infrared rays of the infrared transmitter. And generating the sensing signal.
- the beneficial effect of adopting the above technical solution is that, because the hook is detachably connected to the packaging container, the installation is simple, and the hook has a built-in light-emitting body and a power source, which can make the packaged product exhibit a good light-emitting effect as a whole when it is displayed, attracting consumers and improving The selling point of the product; the sensing equipment set on the intelligent shelf, such as a current and voltage sensor or an infrared receiver, is associated with the product on the shelf.
- the sensing device corresponding to the product When the consumer picks up the product, the sensing device corresponding to the product will sense For the picked up product, the processor sends a sensing signal to the cloud server, so that the cloud server counts the number of times the product is accessed based on the sensing signal, and the merchant can know how much the product on the shelf attracts consumers ’attention, which improves the product. Interaction with consumers.
- Figure 1 is a front view of a package of the present invention
- FIG. 2 is an exploded view of a hook housing according to an embodiment of the packaging body of the present invention
- FIG. 3 is an internal structure diagram of a hook front case according to an embodiment of the packaging body of the present invention.
- FIG. 4 is a schematic diagram of a first structure of a shelf according to a first embodiment of the present invention.
- FIG. 5 is a schematic diagram of a second structure of a shelf according to the first embodiment of the present invention.
- FIG. 6 is a schematic diagram of a first structure of a shelf according to a second embodiment of the present invention.
- FIG. 7 is a schematic diagram of a second structure of a shelf according to a second embodiment of the present invention.
- FIG. 8 is a schematic structural diagram of a shelf according to a third embodiment of the present invention.
- a multifunctional intelligent shelf system includes a shelf and a packaging body provided on the shelf;
- the packaging body for storing goods is a packaging container, a hook formed by an elastomer, and It consists of a light-emitting body, and the hook is detachably connected to the top of the packaging container.
- the light-emitting body is arranged on the bottom of the hook and enters the inside of the packaging container.
- the hook includes a hook housing and a circuit board, and the circuit board is provided with a power source.
- the inside of the hook housing is a hollow structure.
- the hook housing is opened near the upper position and penetrates back and forth to form hook holes.
- the circuit board is arranged inside the hook housing, and the circuit board is connected to the light-emitting body circuit.
- the packaging body is composed of a packaging container 6, an elastic hook and a light emitting body.
- the hook is detachably connected to the top of the packaging container 6.
- the hook includes a hook housing and a circuit board 3.
- the circuit board is provided with a power source (not shown in the drawing) ),
- the inside of the hook housing is a hollow structure, the hook housing has an inverted T-shaped structure, the lower part of the hook housing is used to install the circuit board 3, and the upper part is provided with a hook hole for hanging on the display stand. It is hollow.
- the circuit board 3 is installed inside the hook housing, and the circuit board is electrically connected to a light emitting body (not shown in the drawings), and the light emitting body is located below the circuit board 3.
- the circuit board 3 and the luminous body can also be connected through a switch, so as to manually control whether the luminous body emits light or not, thereby avoiding loss of electricity.
- the switch can be disposed on the side of the hook front case 1 or the hook rear case 2 or on the inside of the hook hole.
- a translucent light guide shell 5 is provided at the bottom of the luminous body.
- the light guide shell is connected to the bottom of the hook housing.
- the top surface of the light guide shell 5 enters the inside of the hook housing, and the bottom surface is flush with the bottom surface of the hook housing, and the side is connected with the hook
- the inner side of the shell is connected, and the top surface of the light guide shell 5 can be directly bonded to the inner surface of the hook shell.
- the light guide shell supports the circuit board 3 on the one hand, and on the other hand, it can also gather the light of the luminous body and enhance the luminous effect.
- the hook housing is composed of a symmetrically arranged hook front shell 1 and a hook rear shell 2 and a splint 4.
- the upper surface of the hook front shell 1 near the edge is provided with a hemispherical column 11 and a limit block 12 is disposed at the end of the half column.
- the block 12 may be a half-round circular pie or a half-cone shape.
- the position where the bottom of the limiting block 12 meets the cylindrical part protrudes horizontally outward, and the upper surface of the hook front shell 1 and the hook rear shell 2 are spliced to form a complete cylindrical body.
- the limiting block is spliced into a complete circular pie or cone shape.
- the splint 4 is provided with a bar hole through which the upper part of the hook housing can pass and a limiting hole 41 through which the cylindrical body can pass.
- the hook shell The top of the body and the cylindrical body pass through the packaging container 6 and are embedded with the splint 4.
- the stopper 12 acts as a limit on the splint 4.
- the components of the entire hook are made of elastomer material, which is slightly harder.
- the plywood 4 can be separated from the cylindrical body. The position where the bottom of the limit block 12 meets the cylindrical part is projected horizontally outward. When the limit hole 41 is stressed, it can pass through and the force is almost zero. In the case of the limit can be maintained.
- the size of the horizontal protrusion of the stopper 12 needs to be determined according to the weight of the packaging product, so as to avoid the horizontal protrusion of the stopper 12 from being too small, and the packaging product being too heavy and causing the product to fall off.
- the packaging container 6 may select a packaging box, a packaging bag, and other types of packaging carriers, as long as the surface of the packaging carrier meets the installation requirements of the hook.
- the luminous body can use LED lights of different brightness, different colors and different sizes, and can be selected according to the display requirements during design.
- the placement device includes a display pole 62 and an induction device.
- the induction device includes a current and voltage sense connected to the display pole 62 and an external power source. Tester.
- the placement device is used to place the package 66 described above. When the package 66 is placed on the display pole 62, the current and voltage sensor establishes an electrical connection with the package 66. When the package 66 is removed from the display rod 62, the current and voltage sensor is electrically disconnected from the package 66.
- the display pole 62 is made of a conductive material, and may be, but is not limited to, a metal hanging pole.
- the hook housing of the packaging body 66 is also made of a conductive material, and the packaging body 66 is hung on the display pole 62 through a hook.
- the hook of the packaging body 66 is electrically disconnected from the display pole 62 so that the current and voltage sensor generates a corresponding sensing signal according to a change in the potential value on the display pole 62.
- the packaging body 66 may be a packaging box, a packaging bag, or the like.
- the packaging box 66 is preferably used as the packaging body 66. After the consumer chooses to buy the product 65, the packaging body 66 can be retained to continue to place other products 65.
- the sensing method of the display rod 62 and the packaging body 66 may also be: a wireless transmitting coil 64 is installed in the display rod 62, and the packaging A wireless receiving coil 63 is installed in the hook housing of the body 66, the package 66 is hung on the display pole 62 through the hook housing, and the current and voltage sensor is electrically connected to the wireless transmitting coil 64.
- the wireless transmitting coil 64 When the package 66 is removed from the display pole 62, the wireless transmitting coil 64 is disconnected from the wireless receiving coil 63, and the processor electrically connected to the wireless transmitting coil 64 sends the received sensing signal to the cloud server to enable the cloud
- the server counts the number of times the commodity 65 is accessed according to the sensing signal.
- the placement device includes one or more storage layers 67.
- a wireless transmission coil 64 is embedded in the storage layer 67, and the wireless transmission coil 64 is close to the surface of the storage layer 67.
- the current and voltage sensor is electrically connected to the wireless transmitting coil 64 and connected to an external power source.
- a wireless receiving coil 63 is mounted on the bottom surface of the package 66 placed on the storage layer 67. When the packaging body 66 is placed on the storage layer 67, the wireless transmitting coil 64 and the wireless receiving coil 63 are inductively connected, and the current and voltage sensor detects the packaging body 66 on the storage layer 67.
- the wireless transmitting coil 64 is disconnected from the wireless receiving coil 63, and the current and voltage sensor detects that the packaging body 66 of the storage layer 67 is removed to generate a sensing signal.
- the storage layer 67 of this embodiment is generally used to place the packaging body 66 of the same product 65. Picking up any one of the packaging bodies 66 can be counted as the product 65 being accessed once. This embodiment is suitable for counting the same storage layer. Number of visits to the same product 65 on 67.
- each of the above-mentioned storage layers 67 may also be separated into a plurality of cargo storage areas by a partition 68.
- a wireless transmitting coil 64 is installed at the bottom of each cargo placing area.
- a current and voltage sensor is connected to the wireless transmitting coil 64 and is connected to an external power source.
- a wireless receiving coil 63 is installed at the bottom of the package 66 placed in the cargo placing area. When the packaging body 66 is placed in the cargo placement area, the wireless transmitting coil 64 and the wireless receiving coil 63 are inductively connected, and the current and voltage sensor detects the packaging body 66 in the cargo placement area.
- the wireless transmitting coil 64 is disconnected from the wireless receiving coil 63, and the current and voltage sensor detects that the packaging body 66 of the storage layer 67 is removed to generate a sensing signal.
- This embodiment is suitable for counting the number of times that different types of commodities 65 on the same storage layer 67 are accessed.
- the commodity 65 can be placed in a special package 66 for sale.
- a wireless receiving coil 63 is provided at the bottom of the package 66.
- the wireless receiving coil 63 separates the commodity 65 by an isolation plate.
- the placement device of the shelf 61 of the third embodiment includes a cargo storage area for storing the packaging body 66.
- the sensing device includes an infrared transmitter 69 and an infrared receiver 70 provided in the cargo storage area and corresponding positions.
- the infrared transmitter 69 is used to transmit infrared rays to the infrared receiver 70.
- the infrared rays are blocked by the package 66.
- the infrared receiver 70 receives the infrared rays of the infrared transmitter 69 and generates a sensing signal and sends the sensing signal to the cloud server, so that the cloud server counts the number of visits of the product 65 according to the sensing signal.
- shelves 61 for arranging the infrared transmitter 69 and the infrared receiver 70, and it is preferably a shelf 61 having one or more storage layers 67, and two ends of each storage layer 67 are respectively provided with infrared transmitters 69 With the infrared receiver 70, only one packaging body 66 is placed in the storage layer 67, which is used to count the number of times the goods 65 in the packaging body are accessed.
- each storage layer 67 can also be separated into a plurality of cargo storage areas by partitions 68.
- Infrared emitters 69 and infrared receivers 70 are installed at two ends of each cargo placement area, and the packaging body 66 is placed. Infrared rays are blocked between the infrared emitter 69 and the infrared receiver 70.
- Each storage layer in this embodiment is used to place a plurality of packages 66.
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Abstract
一种多功能智能货架系统,货架设置有用于存放包装体的置放装置、与置放装置对应设置的感应设备以及处理器;感应设备感测存放在置放装置的包装体。当感应设备感测到包装体从置放装置移走时,感应设备产生相应的感测信号,处理器将该感测信号发送给云服务器,以使云服务器根据感测信号统计商品的被访问次数;用于放置商品的包装体内置发光体。有益效果是:当消费者拿起包装体时,感应设备会感测到被拿起的包装体,处理器将感测信号发送给云服务器,以使云服务器根据感测信号统计商品的被访问次数,商家便能知悉货架上的商品受消费者关注的程度;另外,包装体内置的发光体能使商品呈现良好的发光效果,吸引消费者。
Description
本发明涉及展示零售设备领域,尤其涉及一种多功能智能货架系统。
随着全球物联网和大数据技术的发展和线上(亚马逊、阿里巴巴、京东等)销售对传统线下商超的冲击,加上线上购物平台布局线下商超的趋势,形成立体化,全网全景,以消费者体验为中心的销售模式,线下商超物联已经形成趋势,传统的线下销售模式也面临严峻的挑战,首先,传统的商超普遍采用货架陈列方式进行零售。但是传统的货架的功能比较单一,往往只具有摆放展示货物的作用,无法跟踪货架上的商品的访问流量,消费者对商品的兴趣度也无法知悉;除此之外,摆放于货架上的商品的包装千篇一律、无创新性,难以达到吸引消费者的目的;这些是目前亟待解决的问题。
发明内容
本发明要解决的技术问题是提供一种货架,以解决上述背景技术中出现的问题。
为了解决上述技术问题,本发明的技术方案为:一种多功能智能货架系统,其特征在于,包括货架和设于所述货架上的包装体;用于存放商品的所述包装体由包装容器、弹性体形成的挂钩以及发光体组成,所述挂钩与包装容器的顶部呈可拆卸连接,所述发光体设置于挂钩底部并进入包装容器内部,所述挂钩包括挂钩壳体和电路板,所述电路板上设置有电源,所述挂钩壳体内部为中空结构,挂钩壳体靠近上部位置开孔并前后贯穿形成挂钩孔,电路板设置于挂钩壳体内部,电路板与发光体电路连接;
所述货架设置有至少一个用于存放包装体的置放装置、与所述置放装置对应设置的感应设备以及处理器,所述感应设备感测存放在所述置放装置的包装体,且当感测到所述包装体从所述置放装置移走时,所述感应设备产生相应的感测信号,所述处理器将所述感测信号发送给云服务器,以使所述云服务器根据所述感测信号统计所述商品的被访问次数。
作为本发明的优选方案,所述挂钩壳体由对称设置的挂钩前壳和挂钩后壳以及夹板组成,所述挂钩前壳靠近边缘的上表面设置有半边柱形体,所述半边柱形体末端设置有限位块,所述挂钩前壳和挂钩后壳拼接后形成完整的柱形体,所述夹板上设置有可供挂钩壳体上部穿过的条形孔以及供柱形体穿过的限位孔,所述挂钩壳体顶部和柱形体均由包装容器内穿过并与夹板相嵌,限位块对夹板起限位作用。
作为本发明的优选方案,所述发光体底部设置有半透明的导光壳,所述导光壳与挂钩壳体底部相接;所述导光壳底面与挂钩壳体底面齐平,所述夹板上供挂钩壳体上部穿过的通孔与挂钩壳体上部的截面形状相匹配且略大于挂钩壳体上部的截面。
作为本发明的优选方案,所述置放装置包括陈列杆,所述感应设备包括连接于所述陈列杆和外电源的电流电压感测器,所述包装体置于陈列杆上时,所述电流电压感测器与所述商品建立电连接,当从陈列杆移走所述商品时,所述电流电压感测器与所述商品断开连接。
作为本发明的优选方案,所述陈列杆内安装有无线发射线圈,所述置放装置还包括设于商品上的挂件,所述挂件挂于所述陈列杆以将所述商品挂于所述陈列杆,所述挂件安装有无线接收线圈,当从陈列杆移走所述商品时,无线发射线圈与无线接收线圈断开连接。
作为本发明的优选方案,所述置放装置包括置物架,所述感应设备包括设于所述置物架的无线发射线圈和连接于所述无线发射线圈并接通外电源的电流电压感测器,所述商品安装有无线接收线圈;当商品放置于置物架时,无线发射线圈与无线接收线圈感应连接,所述电流电压感测器感测到置物架上的商品;当从置物架上移走所述商品时,无线发射线圈与无线接收线圈断开连接,所述电流电压感测器感测到所述置物架的商品被移除而产生所述感测信号。
作为本发明的优选方案,所述置物架包括一个或多个置物层,所述置物层内嵌入有无线发射线圈,所述电流电压感测器连接于无线发射线圈并接通外电源,放置于所述置物层上的商品的底部安装有无线接收线圈,当商品放置于置物层时,无线发射线圈与无线接收线圈感应连接,所述电流电压感测器感测到置物层上的商品,当从置物层上移走所述商品时,无线发射线圈与无线接收线圈断开连接,所述电流电压感测器感测到所述置物层的商品被移除而产生所述感测信号。
作为本发明的优选方案,所述置物层通过隔板隔离成多个商品放置区,所述商品放置区安装有无线发射线圈,所述电流电压感测器连接于无线发射线圈并接通外电源,置于所述商品放置区的商品的底部安装有无线接收线圈,当商品放置于商品放置区时,无线发射线圈与无线接收线圈感应连接,所述电流电压感测器感测到商品放置区的商品,当从商品放置区移走所述商品时,无线发射线圈与无线接收线圈断开连接,所述电流电压感测器感测到所述置物层的商品被移除而产生所述感测信号。
作为本发明的优选方案,所述置放装置包括存放商品的放置区,所述感应设备包括设于所述放置区且位置对应的红外线发射器和红外线接收器,所述红外线发射器用于向所述红外线接收器发射红外线,当商品位于放置区时,所述红外线被所述商品隔断,当从所述放置区移走所述商品时,所述红外线接收器接收到所述红外线发射器的红外线而产生所述感测信号。
采用上述技术方案的有益效果是:由于挂钩与包装容器呈可拆卸连接,安装简便,挂钩内置发光体和电源,在陈列展示时可使包装的产品整体呈现良好的发光效果,吸引消费者、提高商品的卖点;智能货架设置的感应设备,如电流电压感测器或红外线接收器,与货架上的商品关联在一起,当消费者拿起商品时,与该商品对应的感应设备会感测到被拿起的商品,处理器将感测信号发送给云服务器,以使云服务器根据感测信号统计商品的被访问次数,商家便能知悉货架上的商品受消费者关注的程度,提高了商品和消费者的交互性。
图1为本发明包装体的主视图;
图2为本发明包装体实施例的挂钩壳体的爆炸图;
图3为本发明包装体实施例的挂钩前壳的内部结构图;
图4为本发明第一实施例货架的第一种结构示意图;
图5为本发明第一实施例货架的第二种结构示意图;
图6为本发明第二实施例货架的第一种结构示意图;
图7为本发明第二实施例货架的第二种结构示意图;
图8为本发明第三实施例货架的结构示意图;
图中,1、挂钩前壳;2、挂钩后壳;3、电路板;4、夹板;5、导光壳;6、包装容器;11、半边柱形体;12、限位块;41、限位孔;61、货架;62、陈列杆;63、无线接收线圈;64、无线发射线圈;65、商品;66、包装体;67、置物层;68、隔板;69、红外线发射器;70、红外线接收器。
下面结合附图对本发明的具体实施方式作进一步说明。在此需要说明的是,对于这些实施方式的说明用于帮助理解本发明,但并不构成对本发明的限定。此外,下面所描述的本发明各个实施方式中所涉及的技术特征只要彼此之间未构成冲突就可以相互组合。
如图1、2、3所示,一种多功能智能货架系统,包括货架和设于所述货架上的包装体;用于存放商品的所述包装体由包装容器、弹性体形成的挂钩以及发光体组成,所述挂钩与包装容器的顶部呈可拆卸连接,所述发光体设置于挂钩底部并进入包装容器内部,所述挂钩包括挂钩壳体和电路板,所述电路板上设置有电源,所述挂钩壳体内部为中空结构,挂钩壳体靠近上部位置开孔并前后贯穿形成挂钩孔,电路板设置于挂钩壳体内部,电路板与发光体电路连接;
包装体由包装容器6、弹性体形成的挂钩以及发光体组成,挂钩与包装容器6的顶部呈可拆卸连接,挂钩包括挂钩壳体和电路板3,电路板上设置有电源(附图无显示),挂钩壳体内部为中空结构,挂钩壳体呈倒T形结构,挂钩壳体的下部用于安装电路板3,而上部设置有挂钩孔用于悬挂于展示架上,由于挂钩壳体下部呈中空状,电路板3安装于挂钩壳体内部,而电路板与发光体(附图无显示)电路连接,发光体位于电路板3的下方。另外,电路板3与发光体也可以通过开关连接,从而手动地控制发光体的发光与否,避免造成电量的损耗。该开关可设置于挂钩前壳1或挂钩后壳2的侧面,也可以设置于挂钩孔的内侧。发光体底部设置有半透明的导光壳5,导光壳与挂钩壳体底部相接,导光壳5的顶面进入挂钩壳体内部,而底面与挂钩壳体底面齐平,侧面与挂钩壳体的内侧面相接,导光壳5的顶面可直接与挂钩壳体内部表面粘接。导光壳一方面对电路板3起支撑作用,另一方面也可使发光体的光线聚拢,增强发光效果。
挂钩壳体由对称设置的挂钩前壳1和挂钩后壳2以及夹板4组成,挂钩前壳1靠近边缘的上表面设置有半边柱形体11,半边柱形体末端设置有限位块12,该限位块12可以为半边圆形饼状或半边锥体状,限位块12底部与圆柱部分相接的位置向外水平突出,挂钩前壳1和挂钩后壳2拼接后上表面形成完整的柱形体,而限位块则拼接成完整的圆形饼状或锥体状,夹板4上设置有可供挂钩壳体上部穿过的条形孔以及供柱形体穿过的限位孔41,挂钩壳体顶部和柱形体均由包装容器6内穿过并与夹板4相嵌,限位块12对夹板4起限位作用,拆卸时由于整个挂钩的组成部件均由弹性体材料组成,稍微用力,夹板4与柱形体即可分离,限位块12底部与圆柱部分相接的位置向外水平突出的大小在保证限位孔41受力时可穿过而在不受力或受力几乎为零 的情况下能保持限位作用即可。另外还需根据包装产品的重量来决定限位块12水平突出的大小,从而避免限位块12水平突出太小造成,而包装产品过重造成产品的脱落。
在本实施例中,包装容器6可选择包装盒、包装袋以及其他类型的包装载体,只要包装载体的表面符合挂钩的安装要求即可。
发光体可采用不同亮度、不同颜色、不同大小的LED灯,设计时可根据陈列要求进行选择。
如图4所示,其为第一实施例货架61,置放装置的第一实施例,置放装置包括陈列杆62和感应设备,感应设备包括连接于陈列杆62和外电源的电流电压感测器。置放装置用于放置上述的包装体66,当包装体66置于陈列杆62上时,电流电压感测器与包装体66建立电连接。当从陈列杆62移走包装体66时,电流电压感测器与该包装体66断开电连接。陈列杆62由导电材料制成,可以是但不限于金属挂杆等。包装体66的挂钩壳体也使用导电材料制成,包装体66通过挂钩挂于陈列杆62上。当从陈列杆62移走包装体66时,包装体66的挂钩与陈列杆62断开电连接以使电流电压感测器根据陈列杆62上的电位值发生变化而产生相应的感测信号。
在一些可行的实施例中,包装体66可以是包装盒、包装袋等,本实施例优选包装盒作为包装体66。消费者选择买走商品65后,包装体66可以保留下来继续放置其它商品65。
如图5所示,在一些可行的实施例中,置放装置还有第二实施例,陈列杆62与包装体66的感应方式还可以是:陈列杆62内安装有无线发射线圈64,包装体66的挂钩壳体内安装有无线接收线圈63,包装体66通过挂钩壳体挂于陈列杆62上,电流电压感测器电连接无线发射线圈64。当从陈列杆62移走包装体66时,无线发射线圈64与无线接收线圈63断开连接,与无线发射线圈64电连接的处理器将接收到的感测信号发送至云服务器,以使云服务器根据感测信号统计该商品65的被访问次数。
如图6所示,其为第二实施例货架61,置放装置包括一个或多个置物层67,置物层67内嵌入有无线发射线圈64,无线发射线圈64靠近置物层67表面。电流电压感测器电连接于无线发射线圈64并接通外电源,放置于置物层67上的包装体66的底面安装有无线接收线圈63。当包装体66放置于置物层67时,无线发射线圈64与无线接收线圈63感应连接,电流电压感测器感测到置物层67上的包装体66。当从置物层67上移走该包装体66时,无线发射线圈64与无线接收线圈63断开连接,电流电压感测器感测到置物层67的该包装体66被移除而产生感测信号。本实施例的置物层67一般用于放置同一种商品65的包装体66,拿起任一个包装体66,都可以算做本种商品65被访问过一次,这种实施例适合统计同一置物层67上的同一种商品65的被访问次数。
如图7所示,在一些可行的实施例中,上述每一置物层67还可以通过隔板68隔离成多个货物放置区。每一货物放置区的底部安装有无线发射线圈64,电流电压感测器连接于无线发射线圈64并接通外电源,置于货物放置区的包装体66的底部安装有无线接收线圈63。当包装体66放置于货物放置区时,无线发射线圈64与无线接收线圈63感应连接,电流电压感测器感测到货物放置区的包装体66。当从货物放置区移走包装体66时,无线发射线圈64与无线接收线圈63断开连接,电流电压感测器感测到置物层67的包装体66被移除而产生感测信号。这种实施例适合统计同一置物层67上的不同种类商品65的被访问次数。
商品65可以放置在特制的包装体66内出售,包装体66的底部设置无线接收线圈63,无线 接收线圈63通过隔离板将商品65隔开。
如图8所示,其为第三实施例货架61,第三实施例货架61的置放装置包括用于存放包装体66的货物放置区。感应设备包括设于该货物放置区且位置对应的红外线发射器69和红外线接收器70,红外线发射器69用于向红外线接收器70发射红外线。当包装体66位于放置区时,红外线被包装体66隔断。当从放置区移走包装体66时,红外线接收器70接收到红外线发射器69的红外线而产生感测信号发送至云服务器,以使云服务器根据感测信号统计该商品65的被访问次数。
用于安置红外线发射器69和红外线接收器70的货架61上可以是很多种,优选为具有一个或多个置物层67的货架61,每层置物层67的两端部分别设置红外线发射器69和红外线接收器70,该置物层67只放置一个包装体66,用于统计该包装体内的商品65的被访问次数。
在一些可行的实施例中,每一置物层67还可以通过隔板68隔离成多个货物放置区,每个货物放置区的两端安装红外线发射器69和红外线接收器70,包装体66放置在红外线发射器69与红外线接收器70之间阻断红外线,该实施例的每个置物层用于放置多个包装体66。
以上结合附图对本发明的实施方式作了详细说明,但本发明不限于所描述的实施方式。对于本领域的技术人员而言,在不脱离本发明原理和精神的情况下,对这些实施方式进行多种变化、修改、替换和变型,仍落入本发明的保护范围内。
Claims (9)
- 一种多功能智能货架系统,其特征在于,包括货架和设于所述货架上的包装体;用于存放商品的所述包装体由包装容器、弹性体形成的挂钩以及发光体组成,所述挂钩与包装容器的顶部呈可拆卸连接,所述发光体设置于挂钩底部并进入包装容器内部,所述挂钩包括挂钩壳体和电路板,所述电路板上设置有电源,所述挂钩壳体内部为中空结构,挂钩壳体靠近上部位置开孔并前后贯穿形成挂钩孔,电路板设置于挂钩壳体内部,电路板与发光体电路连接;所述货架设置有至少一个用于存放包装体的置放装置、与所述置放装置对应设置的感应设备以及处理器,所述感应设备感测存放在所述置放装置的包装体,且当感测到所述包装体从所述置放装置移走时,所述感应设备产生相应的感测信号,所述处理器将所述感测信号发送给云服务器,以使所述云服务器根据所述感测信号统计所述商品的被访问次数。
- 根据权利要求1所述的多功能智能货架系统,其特征在于,所述挂钩壳体由对称设置的挂钩前壳和挂钩后壳以及夹板组成,所述挂钩前壳靠近边缘的上表面设置有半边柱形体,所述半边柱形体末端设置有限位块,所述挂钩前壳和挂钩后壳拼接后形成完整的柱形体,所述夹板上设置有可供挂钩壳体上部穿过的条形孔以及供柱形体穿过的限位孔,所述挂钩壳体顶部和柱形体均由包装容器内穿过并与夹板相嵌,限位块对夹板起限位作用。
- 根据权利要求2所述的多功能智能货架系统,其特征在于,所述发光体底部设置有半透明的导光壳,所述导光壳与挂钩壳体底部相接;所述导光壳底面与挂钩壳体底面齐平,所述夹板上供挂钩壳体上部穿过的通孔与挂钩壳体上部的截面形状相匹配且略大于挂钩壳体上部的截面。
- 根据权利要求1所述的多功能智能货架系统,其特征在于,所述置放装置包括陈列杆,所述感应设备包括连接于所述陈列杆和外电源的电流电压感测器,所述包装体置于陈列杆上时,所述电流电压感测器与所述商品建立电连接,当从陈列杆移走所述商品时,所述电流电压感测器与所述商品断开连接。
- 根据权利要求4所述的多功能智能货架系统,其特征在于,所述陈列杆内安装有无线发射线圈,所述置放装置还包括设于商品上的挂件,所述挂件挂于所述陈列杆以将所述商品挂于所述陈列杆,所述挂件安装有无线接收线圈,当从陈列杆移走所述商品时,无线发射线圈与无线接收线圈断开连接。
- 根据权利要求1所述的多功能智能货架系统,其特征在于,所述置放装置包括置物架,所述感应设备包括设于所述置物架的无线发射线圈和连接于所述无线发射线圈并接通外电源的电流电压感测器,所述商品安装有无线接收线圈;当商品放置于置物架时,无线发射线圈与无线接收线圈感应连接,所述电流电压感测器感测到置物架上的商品;当从置物架上移走所述商品时,无线发射线圈与无线接收线圈断开连接,所述电流电压感测器感测到所述置物架的商品被移除而产生所述感测信号。
- 根据权利要求6所述的多功能智能货架系统,其特征在于,所述置物架包括一个或多个置物层,所述置物层内嵌入有无线发射线圈,所述电流电压感测器连接于无线发射线圈并接通外电源,放置于所述置物层上的商品的底部安装有无线接收线圈,当商品放置于置物层 时,无线发射线圈与无线接收线圈感应连接,所述电流电压感测器感测到置物层上的商品,当从置物层上移走所述商品时,无线发射线圈与无线接收线圈断开连接,所述电流电压感测器感测到所述置物层的商品被移除而产生所述感测信号。
- 根据权利要求7所述的多功能智能货架系统,其特征在于,所述置物层通过隔板隔离成多个商品放置区,所述商品放置区安装有无线发射线圈,所述电流电压感测器连接于无线发射线圈并接通外电源,置于所述商品放置区的商品的底部安装有无线接收线圈,当商品放置于商品放置区时,无线发射线圈与无线接收线圈感应连接,所述电流电压感测器感测到商品放置区的商品,当从商品放置区移走所述商品时,无线发射线圈与无线接收线圈断开连接,所述电流电压感测器感测到所述置物层的商品被移除而产生所述感测信号。
- 根据权利要求1所述的多功能智能货架系统,其特征在于,所述置放装置包括存放商品的放置区,所述感应设备包括设于所述放置区且位置对应的红外线发射器和红外线接收器,所述红外线发射器用于向所述红外线接收器发射红外线,当商品位于放置区时,所述红外线被所述商品隔断,当从所述放置区移走所述商品时,所述红外线接收器接收到所述红外线发射器的红外线而产生所述感测信号。
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CN208766713U (zh) * | 2018-09-28 | 2019-04-19 | 深圳市利烨包装设计有限公司 | 一种基于物联网的货架系统 |
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