Double-sided luminous radio frequency electronic tag

By fixing double-sided RFID tags to cable equipment and utilizing the setup of two LEDs and RFID control circuitry, the problem of identification difficulties caused by the rotation or displacement of tags along with the cable is solved, achieving more efficient cable equipment management.

CN223566166UActive Publication Date: 2025-11-18SHANGHAI QUANRAY ELECTRONICS
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Patent Information

Application Number
CN202423305520.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-11-18
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

In existing technologies, LED-illuminated electronic identification signs are prone to entering the blind spot of inspection personnel as cable equipment rotates or shifts, making them difficult to identify effectively.

Method used

Design a double-sided RFID tag that is fixed to a cable device with cable ties. It uses two symmetrically arranged LEDs. The RF control circuit obtains energy and controls the brightness and flashing frequency of the LEDs. The antenna is used for data transmission and reception and fixation.

Benefits of technology

This increases the likelihood that RFID tags will be seen by inspection personnel, ensuring more reliable identification and management of cable equipment.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223566166U_ABST
Patent Text Reader

Abstract

The utility model provides a double-sided luminous radio frequency electronic tag, which relates to the technical field of electronic tags, and is fixed on cable equipment through a ribbon to identify and manage the cable equipment. The radio frequency electronic tag comprises a radio frequency control circuit and an antenna. The radio frequency control circuit is connected with the antenna; the radio frequency control circuit comprises two LED lamps, and the two LED lamps are oppositely arranged on the two sides of the antenna. The radio frequency control circuit is used for acquiring energy, wirelessly receiving and transmitting electromagnetic wave data, supplying power to the LED lamp and controlling the brightness of the LED lamp; the antenna is used for transmitting and receiving electromagnetic wave data, protecting the radio frequency control circuit and being connected with the cable tie to fix the radio frequency electronic tag on cable equipment. In the mode, by arranging the two LED lamps, the possibility that the radio frequency electronic tag is seen by inspection personnel is improved, and then identification and management of the cable equipment are completed.
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Description

TECHNICAL FIELD

[0001] The utility model relates to electronic tag technical field especially is related to a double -sided luminous radio frequency electronic tag. BACKGROUND

[0002] In the field of electric power, railway, communication, traffic, etc., cable equipment is often needed to be identified and managed, but sometimes the position of the equipment sign is not convenient for the inspection personnel to check, for example, the sign is in the underground pipeline of small space, the inspection personnel is difficult to check, or wants to find the specified cable equipment in multiple cable equipment. Therefore, the electronic identification sign with LED light emitting appears, the staff does not need to approach the sign, can check the information of the sign through handheld device to identify and manage the cable equipment, and find the specified cable equipment through the flashing of LED.

[0003] But the identification sign in the related art is fixed with the cable equipment, the cable equipment can appear rotation, displacement and other conditions, the identification sign moves to the visual blind area of the inspection personnel along with the rotation, displacement of the cable equipment, therefore how to improve the possibility that the LED flashing of the electronic tag is seen by the inspection personnel becomes a challenge. SUMMARY

[0004] Therefore, the utility model discloses a double -sided luminous radio frequency electronic tag to improve the possibility that the radio frequency electronic tag is seen by the inspection personnel through the setting of two LED lamps, and then complete the identification and management of the cable equipment.

[0005] The utility model embodiment provides a double -sided luminous radio frequency electronic tag, and the radio frequency electronic tag is fixed on the cable equipment through the cable tie, to identify and manage the cable equipment, the radio frequency electronic tag includes: radio frequency control circuit and antenna, radio frequency control circuit is connected with antenna, and radio frequency control circuit includes two LED lamps, and two LED lamps are oppositely arranged on the both sides of antenna, radio frequency control circuit is used to obtain energy, wireless transceiver electromagnetic wave data, power supply and control the brightness of LED lamp, antenna is used for receiving and sending electromagnetic wave data, protecting radio frequency control circuit and being connected with cable tie to fix radio frequency electronic tag on the cable equipment.

[0006] In the preferable embodiment of the utility model, the radio frequency control circuit includes: radio frequency chip, two LED lamps and capacitor, the radio frequency chip is used for connecting with antenna, receiving energy and storing part of energy in the energy to capacitor and receiving instruction and based on the instruction cooperation capacitor power supply two LED lamps, LED lamp is used for identifying and managing the cable equipment, and capacitor is used for controlling the voltage of two LED lamps and cooperation radio frequency chip power supply two LED lamps.

[0007] In the preferable embodiment of the utility model, the radio frequency chip includes: a first pin, a second pin, a third pin, a fourth pin, a fifth pin and a sixth pin; the first pin and the sixth pin are connected with the antenna; the second pin is VDD, the fourth pin is VSS, and a capacitor is connected between the second pin and the fourth pin; two LED lamps are connected in parallel between the third pin and the fourth pin.

[0008] In the preferable embodiment of the utility model, the antenna includes: a through hole, a protective layer, a glue layer and a shell; the through hole penetrates the protective layer, the glue layer and the shell; the protective layer and the glue layer both have multiple layers, and the multiple layers of protective layer and the multiple layers of glue layer are alternately stacked; the radio frequency control circuit is arranged in the antenna; the through hole is used for connecting with the cable tie to fix the radio frequency electronic tag on the cable equipment; the protective layer is used for protecting the radio frequency control circuit; the glue layer is used for connecting and combining between the protective layer and the radio frequency control circuit; the shell is used for packaging the protective layer, the glue layer and the radio frequency control circuit.

[0009] In the preferable embodiment of the utility model, the shell includes an upper shell and a lower shell; the upper shell is connected with a layer of protective layer, and the lower shell is connected with another layer of protective layer; multiple layers of glue layer and multiple layers of protective layer are alternately stacked between the layer of protective layer and the other layer of protective layer.

[0010] In the preferable embodiment of the utility model, the radio frequency chip, the two LED lamps and the capacitor in the radio frequency control circuit are connected through the copper layer.

[0011] In the preferable embodiment of the utility model, the copper layer is divided into three sections, the first section copper layer and the second section copper layer are arranged between the two adjacent layers of glue layer respectively, and the third section copper layer penetrates the protective layer and the glue layer between the first section copper layer and the second section copper layer and is connected with the first section copper layer and the second section copper layer.

[0012] In the preferable embodiment of the utility model, the radio frequency chip, the two LED lamps and the capacitor are connected with the copper layer through the surface treatment of the gold sinking process; the two LED lamps are arranged through the upper shell and the lower shell respectively.

[0013] In the preferable embodiment of the utility model, the antenna is also used for receiving electromagnetic wave data, controlling the voltage at both ends of the LED lamp based on the electromagnetic wave data to control the flickering frequency and the brightness of the LED lamp.

[0014] The embodiment of the utility model brings the following beneficial effects:

[0015] The utility model discloses a kind of double-sided light-emitting radio frequency electronic tags, radio frequency electronic tag is fixed on cable equipment by cable tie, to identify and manage cable equipment;Radio frequency electronic tag includes: radio frequency control circuit and antenna;Radio frequency control circuit is connected with antenna;Two LED lamps are included in radio frequency control circuit, two LED lamps are oppositely arranged in the both sides of antenna;Radio frequency control circuit is used to obtain energy, wireless transceiver electromagnetic wave data, power supply for LED lamp and control the brightness of LED lamp;Antenna is used for transceiving electromagnetic wave data, protecting radio frequency control circuit and being connected with cable tie to fix radio frequency electronic tag on cable equipment.In this mode, the possibility that radio frequency electronic tag is seen by patrol personnel is improved by setting two LED lamps, and then the identification and management of cable equipment are completed.

[0016] Other features and advantages of the present disclosure will be set forth in the following description, or can be learned by the specification, or can be determined without doubt, or can be known by implementing the above-mentioned technologies of the present disclosure.

[0017] In order to make the above-mentioned purposes, features and advantages of the present disclosure more obvious and easy to understand, the following preferred embodiments are described in detail below, and the accompanying drawings are described as follows. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to more clearly illustrate the specific embodiment of the utility model or the technical solution in the prior art, the following will be a brief introduction to the drawings needed to be used in the description of specific embodiment or prior art, obviously, the drawings in the following description is some embodiments of the utility model, for those skilled in the art, without creative labor, according to these drawings, other drawings can also be obtained.

[0019] Figure 1 A structure diagram of a radio frequency electronic tag provided by the utility model embodiment is provided;

[0020] Figure 2 A contrast schematic diagram of a radio frequency electronic tag provided by the utility model embodiment is provided;

[0021] Figure 3 A structure diagram of a radio frequency control circuit provided by the utility model embodiment is provided;

[0022] Figure 4 A whole structure section view of a radio frequency electronic tag provided by the utility model embodiment is provided.

[0023] Illustration:

[0024] 10 - radio frequency control circuit; 20 - antenna; 11 - radio frequency chip; 12 - LED lamp; 13 - capacitor; 111 - first pin; 112 - second pin; 113 - third pin; 114 - fourth pin; 115 - fifth pin; 116 - sixth pin; 21 - penetration hole; 22 - protective layer; 23 - adhesive layer; 24 - shell; 241 - upper shell; 242 - lower shell; 14 - copper layer; 141 - first section of copper layer; 142 - second section of copper layer; 143 - third section of copper layer; 30 - cable device; 40 - cable tie. DETAILED DESCRIPTION

[0025] In order to make the purpose, technical scheme and advantages of the embodiments of the present application more clear, the technical scheme of the present application will be described clearly and completely below with reference to the drawings. Obviously, the described embodiments are some embodiments of the present application, but not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0026] In the fields of electric power, railway, communication, transportation, etc., cable devices often need to be identified and managed. However, sometimes the position of the device sign is not convenient for the inspection personnel to view, for example, the sign is in a small space underground pipeline, and it is difficult for the inspection personnel to view, or it is difficult to find a specified cable device among multiple cable devices. Therefore, electronic identification signs with LED light-emitting appear, and workers can view the information of the sign through handheld devices without approaching the sign, so as to identify and manage the cable device, and find a specified cable device through LED flickering.

[0027] However, after the identification sign in the related art is fixed with the cable device, the cable device may rotate, displace, etc., and the identification sign will move with the rotation and displacement of the cable device to the visual blind area of the inspection personnel. Therefore, how to improve the possibility that the LED flickering of the electronic tag is seen by the inspection personnel has become a challenge.

[0028] Based on this, the utility model discloses a kind of double-sided light-emitting radio frequency electronic tags, radio frequency electronic tag is fixed on cable equipment by cable tie, to identify and manage cable equipment;Radio frequency electronic tag includes: radio frequency control circuit and antenna;Radio frequency control circuit is connected with antenna;Two LED lamps are included in radio frequency control circuit, two LED lamps are oppositely arranged on the two sides of antenna;Radio frequency control circuit is used to obtain energy, wireless transceiving electromagnetic wave data, power supply for LED lamp and control the brightness of LED lamp;Antenna is used for transceiving electromagnetic wave data, protecting radio frequency control circuit and with cable tie connection to fix radio frequency electronic tag on cable equipment.In this mode, the possibility that radio frequency electronic tag is seen by patrol personnel is improved by setting two LED lamps, and then the identification and management of cable equipment are completed.

[0029] To facilitate the understanding of the embodiment, first, a kind of double-sided light-emitting radio frequency electronic tag disclosed in the utility model embodiment is introduced in detail.

[0030] Embodiment 1

[0031] The utility model embodiment provides a kind of double-sided light-emitting radio frequency electronic tag, radio frequency electronic tag is fixed on cable equipment by cable tie, to identify and manage cable equipment.

[0032] Figure 1 The structure diagram of the radio frequency electronic tag provided in the utility model embodiment is shown in the figure. Figure 1 As shown, the radio frequency electronic tag can include the following structure: radio frequency control circuit 10 and antenna 20.

[0033] Wherein, radio frequency control circuit 10 is connected with antenna 20;Two LED lamps 12 are included in radio frequency control circuit 10, two LED lamps 12 are oppositely arranged on the two sides of antenna 20.

[0034] Wherein, radio frequency control circuit 10 is arranged in antenna 20, and is connected with antenna 20.

[0035] Further, antenna 20 can include shell, and other and LED lamp 12 of antenna 20 are protected by shell.

[0036] Wherein, radio frequency control circuit 10 is used to obtain energy, wireless transceiving electromagnetic wave data, power supply for LED lamp 12 and control the brightness of LED lamp 12.

[0037] Wherein, antenna 20 is used for transceiving electromagnetic wave data, protecting radio frequency control circuit 10 and with cable tie connection to fix radio frequency electronic tag on cable equipment.

[0038] The antenna 20 is further configured to receive electromagnetic wave data, and control the voltage across the LED lamp 12 based on the electromagnetic wave data to control the flicker frequency and brightness of the LED lamp 12.

[0039] For the convenience of understanding, Figure 2 A comparison diagram of the radio frequency electronic tag is provided for the embodiment of the utility model, as shown in the figure, Figure 2 The cable equipment 30 is connected with the antenna 20 through the cable tie 40, so that the radio frequency electronic tag is fixed to the cable equipment 30.

[0040] Among them, Figure 2 The left figure is the case that after the cable equipment 30 rotates, about 60% of the time, the inspection personnel cannot see the light flicker of the electronic identification, wherein the default personnel stands at a high place and looks down from the top; Figure 2 The right figure is the case that after the cable equipment 30 rotates, about 10% of the time, the inspection personnel cannot see the light flicker of the mat identification, wherein the default personnel stands at a high place and looks down from the top. Therefore, the present scheme greatly improves the possibility of the radio frequency electronic tag being seen by the inspection personnel.

[0041] The radio frequency electronic tag with double-sided light emission provided by the embodiment of the utility model can improve the possibility of the radio frequency electronic tag being seen by the inspection personnel by arranging two LED lamps, and further complete the identification and management of the cable equipment.

[0042] Embodiment 2

[0043] The embodiment of the utility model further provides a radio frequency control circuit; which is realized on the basis of the radio frequency electronic tag with double-sided light emission mentioned in the above embodiment.

[0044] Figure 3 A structure diagram of the radio frequency control circuit provided for the embodiment of the utility model is provided. As shown in the figure, Figure 3 The radio frequency control circuit 10 comprises the following structures: a radio frequency chip 11, two LED lamps 12 and a capacitor 13.

[0045] Among them, the radio frequency chip 11 is configured to be connected with the antenna 20, receive energy and store part of the energy in the capacitor 13, and receive instructions and supply power to the two LED lamps 12 based on the instructions in cooperation with the capacitor 13.

[0046] Among them, the radio frequency chip 11 contains internal circuits, which are not limited here.

[0047] Among them, the LED lamp 12 is configured to identify and manage the cable equipment.

[0048] Among them, the capacitor 13 is configured to control the voltage across the two LED lamps 12, and supply power to the two LED lamps 12 in cooperation with the radio frequency chip 11.

[0049] Specifically, the radio frequency chip 11 comprises a first pin 111, a second pin 112, a third pin 113, a fourth pin 114, a fifth pin 115 and a sixth pin 116; the first pin 111 and the sixth pin 116 are connected with the antenna 20; the second pin 112 is VDD, the fourth pin 114 is VSS, and the second pin 112 and the fourth pin 114 are connected with the capacitor 13; the third pin 113 and the fourth pin 114 are connected in parallel with two LED lamps 12.

[0050] The fifth pin 115 is used for open circuit detection.

[0051] The radio frequency control circuit provided by the embodiment of the utility model can acquire energy by being connected with the antenna, and can wirelessly receive and transmit electromagnetic wave data, supply power to the LED lamp and control the brightness of the LED lamp.

[0052] Embodiment 3

[0053] The utility model embodiment further provides an antenna; the antenna is realized on the basis of the double-sided light-emitting radio frequency electronic tag mentioned in the above embodiment.

[0054] Figure 4 It is a whole structure section view of the double-sided light-emitting radio frequency electronic tag provided by the embodiment of the utility model. Figure 4 As shown in the figure, the antenna 20 comprises the following structures: a penetrating hole 21, a protective layer 22, a glue layer 23 and an outer shell 24.

[0055] The penetrating hole 21 penetrates the protective layer 22, the glue layer 23 and the outer shell 24; the protective layer 22 and the glue layer 23 are both multilayered, and the multilayered protective layer 22 and the multilayered glue layer 23 are alternately stacked; the radio frequency control circuit 10 is arranged in the antenna 20.

[0056] Specifically, the radio frequency chip 11, the two LED lamps 12 and the capacitor 13 in the radio frequency control circuit 10 are connected through the copper layer 14. The copper layer 14 is divided into three sections, the first section copper layer 141 and the second section copper layer 142 are arranged between the adjacent two layers of glue layer 23 respectively, and the third section copper layer 143 penetrates the protective layer 22 and the glue layer 23 between the first section copper layer 141 and the second section copper layer 142 and is connected with the first section copper layer 141 and the second section copper layer 142.

[0057] It should be noted that the number of the protective layer 22 and the glue layer 23 between the first section copper layer 141 and the second section copper layer 142 is not limited, and the function of the glue layer 23 is to connect the copper layer 14 and the protective layer 22, Figure 4 the number of layers in the above is only exemplary; in addition, the length of each copper layer 14 is also not limited, and the function of the copper layer 14 is to connect the radio frequency chip 11, the two LED lamps 12 and the capacitor 13, Figure 4The length in the above table is only exemplary.

[0058] The radio frequency chip 11, the two LED lamps 12 and the capacitor 13 are connected with the copper layer through surface treatment of the gold plating process; the two LED lamps 12 are arranged through the upper shell and the lower shell.

[0059] The penetrating hole 21 is used for connecting with the cable tie to fix the radio frequency electronic tag to the cable equipment.

[0060] The protective layer 22 is used for protecting the radio frequency control circuit 10.

[0061] The adhesive layer 23 is used for protecting the connection and compounding between the protective layer 22 and the radio frequency control circuit 10.

[0062] The shell 24 is used for packaging the protective layer 22, the adhesive layer 23 and the radio frequency control circuit 10.

[0063] Specifically, the shell 24 includes an upper shell 241 and a lower shell 242; the upper shell 241 is connected with one layer of the protective layer 22, the lower shell 242 is connected with another layer of the protective layer 22, and a plurality of layers of the adhesive layer 23 and a plurality of layers of the protective layer 22 are alternately stacked between the one layer of the protective layer 22 and the another layer of the protective layer 22.

[0064] The antenna provided by the embodiment of the utility model can be connected with the cable equipment through the cable tie and protect the radio frequency control circuit, so that the radio frequency chip, the capacitor and the LED lamp can be connected through the copper layer, and then the radio frequency control circuit can acquire energy through the connection with the antenna, and the radio frequency control circuit can acquire the wireless transceiving electromagnetic wave data, supply power to the LED lamp and control the brightness of the LED lamp.

[0065] The units described as separate components may or may not be physically separate, and the components displayed as units may or may not be physical units, that is, they may be located in one place, or they may be distributed on multiple network units. According to actual needs, part or all of the units can be selected to achieve the purpose of the embodiment.

[0066] Finally, it should be noted that the above-described embodiments are merely specific implementations of the present application, and are used to illustrate the technical solutions of the present application, rather than limit the same. The protection scope of the present application is not limited thereto. Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that any person skilled in the art can still modify or easily think of changes to the technical solutions recorded in the foregoing embodiments, or make equivalent replacements to some of the technical features, within the technical range disclosed by the present application. Such modifications, changes or replacements do not cause the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present application, and should be covered within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. A double-sided luminous radio frequency electronic tag, characterized in that, The radio frequency electronic tag is fixed to the cable equipment by cable ties for identification and management of the cable equipment; The radio frequency electronic tag includes: a radio frequency control circuit and an antenna; the radio frequency control circuit is connected to the antenna; the radio frequency control circuit includes two LEDs, which are arranged opposite to each other on both sides of the antenna; The radio frequency control circuit is used to acquire energy, wirelessly transmit and receive electromagnetic wave data, supply power to the LED light, and control the brightness of the LED light. The antenna is used to transmit and receive electromagnetic wave data, protect the radio frequency control circuit, and connect with the cable tie to fix the radio frequency electronic tag to the cable device.

2. The double-sided luminous radio frequency electronic tag according to claim 1, characterized in that, The radio frequency control circuit includes: a radio frequency chip, two LEDs, and a capacitor; The radio frequency chip is used to connect with the antenna, receive energy and store a portion of the energy in the capacitor, and receive instructions and, based on the instructions, power the two LEDs in conjunction with the capacitor. The LED lights are used for identification and management of the cable equipment; The capacitor is used to control the voltage across the two LEDs and to power the two LEDs in conjunction with the radio frequency chip.

3. The double-sided light-emitting radio frequency electronic tag according to claim 2, characterized in that, The radio frequency chip includes: pin 1, pin 2, pin 3, pin 4, pin 5, and pin 6; pin 1 and pin 6 are connected to the antenna; pin 2 is VDD, pin 4 is VSS, and a capacitor is connected between pin 2 and pin 4; two LEDs are connected in parallel between pin 3 and pin 4.

4. The double-sided light-emitting radio frequency electronic tag according to claim 3, characterized in that, The antenna includes: a through hole, a protective layer, an adhesive layer, and a housing; the through hole penetrates the protective layer, the adhesive layer, and the housing; both the protective layer and the adhesive layer have multiple layers, which are stacked alternately; the radio frequency control circuit is disposed in the antenna; The through hole is used to connect with a cable tie to secure the RFID tag to the cable device; The protective layer is used to protect the radio frequency control circuit; The adhesive layer is used for the connection and bonding between the protective layer and the radio frequency control circuit; The outer casing is used to encapsulate the protective layer, the adhesive layer, and the radio frequency control circuit.

5. The double-sided light-emitting radio frequency electronic tag according to claim 4, characterized in that, The outer shell includes an upper shell and a lower shell; the upper shell is connected to a protective layer, and the lower shell is connected to another protective layer; multiple layers of adhesive and multiple layers of protective layers are alternately stacked between the first protective layer and the other protective layer.

6. The double-sided light-emitting radio frequency electronic tag according to claim 5, characterized in that, The radio frequency chip, the two LEDs, and the capacitor in the radio frequency control circuit are connected by a copper layer.

7. The double-sided luminous radio frequency electronic tag according to claim 6, characterized in that, The copper layer is divided into three sections. The first and second copper layers are respectively disposed between two adjacent adhesive layers. The third copper layer penetrates the protective layer and adhesive layer between the first and second copper layers and is connected to the first and second copper layers.

8. The double-sided luminous radio frequency electronic tag according to claim 7, characterized in that, The radio frequency chip, the two LEDs, and the capacitor are connected to the copper layer through a surface treatment process called immersion gold; the two LEDs are respectively disposed through the upper shell and the lower shell.

9. The double-sided luminous radio frequency electronic tag according to claim 2, characterized in that, The antenna is also used to receive electromagnetic wave data, and based on the electromagnetic wave data, the control capacitor adjusts the voltage across the LED to control the flashing frequency and brightness of the LED.