CN210983457U - Intelligent RFID (radio frequency identification) recognition goods containing tray, and ring and label matched with same - Google Patents
Intelligent RFID (radio frequency identification) recognition goods containing tray, and ring and label matched with same Download PDFInfo
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- CN210983457U CN210983457U CN201921611965.9U CN201921611965U CN210983457U CN 210983457 U CN210983457 U CN 210983457U CN 201921611965 U CN201921611965 U CN 201921611965U CN 210983457 U CN210983457 U CN 210983457U
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Abstract
The utility model discloses an intelligent RFID identifying goods-containing tray, a ring and a label matched with the tray, wherein the tray comprises a tray body and a circuit board arranged on the tray body; the circuit board comprises a microprocessor, and an RFID high-frequency acquisition module, an RFID ultrahigh-frequency acquisition module and a power module which are electrically connected with the microprocessor; the microprocessor respectively identifies RFID high-frequency data and RFID ultrahigh-frequency data through the RFID high-frequency acquisition module and the RFID ultrahigh-frequency acquisition module, and then processes and packs the data. The utility model discloses a set up the RFID collection module of two kinds of different frequencies of high frequency and hyperfrequency, make this tray can acquire the data of commodity and staff respectively, effectively combine the data of both together simultaneously, the trade company thus analyzes the degree of liking of customer to the commodity and staff's process of selling goods etc. to help the effective management to commodity and staff; additionally, the utility model discloses a ring and label, this tray of being convenient for reads data.
Description
Technical Field
The utility model relates to a commodity retail technical field especially relates to an intelligence RFID discernment flourishing goods tray and rather than complex ring and label.
Background
Most commodity goods tray in the market only have simple goods containing function, also appear having the goods tray that has discernment RFID label ever, but this kind of tray generally can only pass through discernment corresponding RFID label and then discern corresponding commodity information, and can not combine together its and salesman's identity effectively, leads to data to become no main data, and this intellectuality that just makes the tray greatly reduced, and the function that the merchant used the tray to be used for staff's examination will weaken simultaneously.
SUMMERY OF THE UTILITY MODEL
In order to solve the problems, the utility model discloses an intelligent RFID identification goods-containing tray, which can overcome the defects, and a merchant can monitor the data about the trial of the goods and the selling data about the salesman through the tray, and can effectively combine the data about the goods and the salesman, thereby improving the intelligence degree of the goods-containing tray; additionally, the utility model discloses a with this tray cooperation ring and label that uses, this tray of being convenient for reads data.
The utility model adopts the technical proposal that:
an intelligent RFID identification goods containing tray comprises a tray body and a circuit board, wherein the circuit board is arranged on the tray body;
the circuit board comprises a microprocessor, and an RFID high-frequency acquisition module, an RFID ultrahigh-frequency acquisition module and a power module which are electrically connected with the microprocessor; the RFID high-frequency acquisition module acquires RFID high-frequency data and sends the data to the microprocessor; the RFID ultrahigh frequency acquisition module acquires RFID ultrahigh frequency data and transmits the RFID ultrahigh frequency data to the microprocessor; and the microprocessor respectively receives the RFID high-frequency data and the RFID ultrahigh-frequency data, processes and packs the data.
In the above technical solution, the microprocessor includes a first microprocessor U1 and a second microprocessor U9 electrically connected to each other, and the first microprocessor U1 is configured to control the RFID ultrahigh frequency acquisition module, acquire the RFID ultrahigh frequency data stored in the ultrahigh frequency RFID chip module on the tag, and process and package the data; and the second microprocessor U9 is used for controlling the RFID high-frequency acquisition module to read the RFID high-frequency data stored in the high-frequency RFID chip module on the ring, and processing and packaging the data.
In the above technical solution, the RFID high frequency acquisition module includes an RFID high frequency chip U2 electrically connected to the first microprocessor U1, a radio frequency antenna circuit N3 electrically connected to the RFID high frequency chip U2, an external crystal oscillator circuit N1, and a power supply circuit (N2, N4).
In the above technical solution, the RFID ultrahigh frequency acquisition module includes an RFID ultrahigh frequency chip U4 electrically connected to the first microprocessor U1 and a radio frequency antenna circuit T2 electrically connected to the RFID ultrahigh frequency chip U4.
In the above technical solution, the circuit board further includes a clock module electrically connected to the microprocessor, and a static storage module, the clock module is used for calculating local time, and the static storage module is used for storing RFID high-frequency data and RFID ultrahigh-frequency data.
In the above technical solution, the circuit board includes a wireless network module and a network reset module electrically connected to the microprocessor, the tray body is provided with a network reset key connected to the network reset module, the wireless network module is used for network communication, and the network reset module is used for resetting network communication.
In the above technical solution, the circuit board further includes an audio module electrically connected to the microprocessor, a reset module and an indicator light module, the reset module is used to reset the circuit board, the indicator light module is used to display the operating state of the device, and the audio module is used to play audio.
In the technical scheme, the power supply module comprises a charging interface module, a charging chip module and a power supply voltage transformation module which are electrically connected in sequence, and the power supply supplies current to the microprocessor, the RFID high-frequency acquisition module, the RFID ultrahigh-frequency acquisition module, the wireless network module, the clock module, the static storage module, the indicator light module, the audio module and the reset module through the charging interface module, the charging chip module and the power supply voltage transformation module; and the tray body is provided with a charging interface connected with the charging interface module and a power switch connected with the charging chip module.
In the above technical solution, the tray body includes an upper cover and a lower cover, the circuit board is disposed on the lower cover, and the upper cover is disposed on the lower cover.
The ring is provided with a high-frequency RFID circuit module and is worn by staff for storing staff information, and the label is provided with an ultrahigh-frequency RFID circuit module and is arranged on the commodity for storing the information of the commodity.
After the technical scheme is adopted, the utility model discloses a set up the RFID collection module of two kinds of different frequencies of high frequency and hyperfrequency, make this tray can acquire commodity and staff's data respectively, effectively combine the data of both simultaneously, the trade company thus analyzes the degree of liking of customer to commodity and staff's the process of selling goods etc. to help the effective management to commodity and staff; additionally, the utility model discloses a with this tray cooperation ring and label that uses, this tray of being convenient for reads data.
Drawings
Fig. 1 is a schematic perspective exploded view of the present invention;
fig. 2 is a connection block diagram of the circuit board of the present invention;
fig. 3 is a schematic circuit diagram of a first microprocessor U1 according to the present invention;
fig. 4 is a circuit diagram of a second microprocessor U9 according to the present invention;
fig. 5 is a schematic diagram of the circuit structure of the RFID high-frequency acquisition module of the present invention;
fig. 6 is a schematic diagram of the circuit structure of the RFID ultra-high frequency acquisition module of the present invention;
fig. 7 is a schematic circuit diagram of the wireless network module of the present invention;
fig. 8 is a schematic circuit diagram of the network reset module according to the present invention;
fig. 9 is a schematic diagram of the circuit structure of the clock module of the present invention;
fig. 10 is a schematic circuit diagram of a static memory module according to the present invention;
fig. 11 is a schematic diagram of the circuit structure of the indicator light module of the present invention;
fig. 12 is a schematic diagram of the circuit structure of the audio module of the present invention;
fig. 13 is a schematic diagram of the circuit structure of the reset module of the present invention;
fig. 14 is a schematic circuit diagram of the charging interface module of the present invention;
fig. 15 is a schematic diagram of a charging chip module circuit structure according to the present invention;
fig. 16 is a schematic diagram of the circuit structure of the power transformer module of the present invention.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
As shown in fig. 1 and fig. 2, the utility model discloses an intelligence RFID discernment flourishing goods tray, including tray body 1 and circuit board 2, wherein:
referring to fig. 1, the tray body 1 includes an upper cover 11 and a lower cover 12, the circuit board 2 is fixed on the lower cover 12, and the upper cover 11 covers the lower cover 12; as shown in fig. 2, the circuit board 2 includes a microprocessor 201, and an RFID high-frequency acquisition module 202, an RFID ultrahigh-frequency acquisition module 203, and a power module 204 electrically connected to the microprocessor; as shown in fig. 5, the RFID high-frequency acquisition module 202 is configured to acquire RFID high-frequency data, in this embodiment, the RFID high-frequency data is used to acquire data of an employee, and the frequency of the RFID high-frequency data is 13.56 MHz; as shown in fig. 6, the RFID ultra-high frequency acquisition module 203 is configured to acquire RFID ultra-high frequency data, in this embodiment, the RFID ultra-high frequency refers to a frequency of 862/902-928 MHz; the microprocessor 201 respectively collects employee and commodity data through the RFID high-frequency collection module 202 and the RFID ultrahigh-frequency collection module 203, and then processes and packages the data.
Referring to fig. 5, the RFID high frequency acquisition module 202 includes an RFID high frequency chip U2 electrically connected to the first microprocessor U1, a radio frequency antenna circuit N3 electrically connected to the RFID high frequency chip U2, an external crystal oscillator circuit N1, and a power supply circuit (N2, N4).
Referring to fig. 6, the RFID uhf acquisition module 203 includes an RFID uhf chip U4 electrically connected to the first microprocessor U1 and a rf antenna circuit T2 electrically connected to the RFID uhf chip U4.
Referring to fig. 2, the circuit board 2 further includes a clock module 205, a static memory module 206, a wireless network module 207, a network reset module 208, an indicator light module 211, an audio module 209, and a reset module 210 electrically connected to the microprocessor 201; as shown in fig. 9, the clock module 205 is used for calculating local time and providing time for the microprocessor 201; as shown in fig. 10, the static storage module 206 is used to store RFID data when the wireless network is interrupted, so as to prevent data loss; as shown in fig. 7, the wireless network module 207 is used for communication, so that the intelligent terminal is connected with the microprocessor 201 through the wireless network module 207 to obtain data; as shown in fig. 8, the network resetting module 208 is configured to reset the wireless network module 207; as shown in fig. 11, the indicator light module 211 uses lights with different colors to display the current power supply capacity state and the wireless network connection state of the tray, and the indicator light module 211 includes an indicator light 2111 with an upper cover 1; as shown in fig. 12, the audio module 209 is used for playing audio; as shown in fig. 13, the reset module 210 is used to reset the circuit board 2.
Referring to fig. 14, 15, and 16, the power module 204 includes a charging interface module 2041, a charging chip module 2042, and a power voltage transformation module 2043, which are electrically connected in sequence, and the power supplies supply current to the microprocessor 201, the RFID high-frequency acquisition module 202, the RFID ultrahigh-frequency acquisition module 203, the wireless network module 207, the clock module 205, the static storage module 206, the indicator light module 211, the audio module 209, and the reset module 210 through the charging interface module 2041, the charging chip module 2042, and the power voltage transformation module 2043.
Referring to fig. 1, the lower cover 12 of the tray is provided with a charging interface 122 connected to the charging interface module 2041, a power switch 123 connected to the charging chip module 2042, and a network reset key 121 connected to the network reset module 208, and the lower cover 12 between the upper covers 11 is further provided with a lithium battery (not shown) connected to the charging chip module 2042.
Referring to fig. 3 and 4, the microprocessor 201 includes a first microprocessor U1 and a second microprocessor U9 connected to each other, and the two processors interactively control the modules, so that the operation efficiency of the tray is improved; the first microprocessor U1 is mainly used for controlling the RFID ultrahigh frequency acquisition module 203 to acquire commodity data and process and pack information about commodities, the second microprocessor U9 is mainly used for controlling the wireless network module 207 and the RFID high frequency acquisition module 202 to realize connection with a background server by controlling the wireless network module 207 to report and receive data, and the like, and realizes reading staff data and processing and packing information about staff by controlling the RFID high frequency acquisition module 202.
The utility model also discloses a ring and a label used with the intelligent RFID identification goods-holding tray, the ring is provided with a high-frequency RFID circuit module and is worn by staff for storing staff information, the ring is not only small and exquisite, but also has various types and models, and can adapt to the hobbies of various crowds; the tag is provided with an ultrahigh frequency RFID circuit module and is arranged on the commodity and used for storing information of the commodity, and the tag can be connected with the commodity through a binding rope.
Firstly, inputting the information of the store clerk into the ring, and inputting the information of the commodity into the label; during selling goods, a customer selects goods to be tried, the shop assistant places the selected goods on the intelligent RFID identification goods holding tray, the circuit board reads the ring information worn on the shop assistant and the tag information connected with the goods, meanwhile, the microprocessor 201 identifies the reading time through the clock module 205, then the customer takes out the goods for trial, after the trial of the customer is completed, the shop assistant places the goods back on the tray, the circuit board reads the ring information worn on the shop assistant and the tag information connected with the goods again, meanwhile, the microprocessor 201 identifies the reading time through the clock module 205, so far, the whole trial process is completed, the microprocessor 201 completes data acquisition of staff information, goods information, trial frequency, time and the like, the microprocessor 201 processes and packs the data, and then transmits the data to the static storage module 206 for storage, or the microprocessor 201 is connected with the server or the intelligent terminal through the wireless network module 207, the packaged data is sent to the server or the intelligent terminal, and finally the trial frequency and duration of the commodities and the selling frequency and time of the staff are monitored through the server or the intelligent terminal, so that the types, the number, the duration and the frequency of the used commodities, the selling action and the flow specification degree, the diligence degree and the like of the staff can be analyzed.
RFID be the radio frequency identification technology.
The utility model discloses a set up the RFID collection module of two kinds of different frequencies of high frequency and hyperfrequency, make this tray can acquire commodity and staff's data respectively, effectively combine data between them simultaneously, thereby the trade company analyzes out that the customer helps commodity and staff's effective management to liking degree and staff's the process of selling goods etc. of commodity.
The above embodiments are merely illustrative and not restrictive, and all equivalent changes and modifications made by the methods described in the claims are intended to be included within the scope of the present invention.
Claims (11)
1. The intelligent RFID identification goods containing tray is characterized by comprising a tray body (1) and a circuit board (2), wherein the circuit board (2) is arranged on the tray body (1);
the circuit board (2) comprises a microprocessor (201), and an RFID high-frequency acquisition module (202), an RFID ultrahigh-frequency acquisition module (203) and a power module (204) which are electrically connected with the microprocessor; the RFID high-frequency acquisition module (202) acquires RFID high-frequency data and sends the data to the microprocessor (201); the RFID ultrahigh frequency acquisition module (203) acquires RFID ultrahigh frequency data and transmits the RFID ultrahigh frequency data to the microprocessor (201); and the microprocessor (201) receives the RFID high-frequency data and the RFID ultrahigh-frequency data respectively, and processes and packs the data.
2. The intelligent RFID-recognizing tray as claimed in claim 1, wherein the microprocessor (201) comprises a first microprocessor U1 and a second microprocessor U9 electrically connected with each other, the first microprocessor U1 is used for controlling the RFID UHF acquisition module (203), acquiring RFID UHF data stored in the UHF RFID chip module on the tag, processing and packaging the data; and the second microprocessor U9 is used for controlling the RFID high-frequency acquisition module (202) to acquire the RFID high-frequency data stored in the high-frequency RFID chip module on the ring, and processing and packaging the data.
3. The intelligent RFID identification tray as claimed in claim 2, wherein the RFID high frequency collecting module (202) comprises an RFID high frequency chip U2 electrically connected with the first microprocessor U1, a radio frequency antenna circuit N3 electrically connected with the RFID high frequency chip U2, an external crystal oscillator circuit N1 and a power supply circuit (N2, N4).
4. The intelligent RFID-recognizing tray as claimed in claim 3, wherein the RFID UHF acquisition module (203) comprises an RFID UHF chip U4 electrically connected to the first microprocessor U1, and an RF antenna circuit T2 electrically connected to the RFID UHF chip U4.
5. An intelligent RFID-recognizing holding tray as claimed in any one of claims 1 to 4, wherein the circuit board (2) further comprises a clock module (205) electrically connected to the microprocessor (201), and a static memory module (206), wherein the clock module (205) is used for calculating local time, and the static memory module (206) is used for storing RFID high-frequency data and RFID ultrahigh-frequency data.
6. The intelligent RFID-identified cargo tray according to any one of claims 1-4, wherein the circuit board (2) comprises a wireless network module (207) and a network reset module (208) electrically connected to the microprocessor (201), the tray body (1) is provided with a network reset key (121) connected to the network reset module (208), the wireless network module (207) is used for network communication, and the network reset module (208) is used for network communication resetting.
7. The intelligent RFID-recognizing cargo tray according to any one of claims 1-4, wherein the circuit board (2) further comprises an audio module (209) electrically connected with the microprocessor (201), a reset module (210) and an indicator light module (211), the reset module (210) is used for resetting the circuit board (2), the indicator light module (211) is used for displaying the working state of the equipment, and the audio module (209) is used for playing audio.
8. The intelligent RFID identification tray as claimed in any one of claims 1 to 4, wherein the power module (204) comprises a charging interface module (2041), a charging chip module (2042) and a power voltage transformation module (2043) which are electrically connected in sequence, and the power supplies current to the microprocessor (201), the RFID high-frequency acquisition module (202), the RFID ultrahigh-frequency acquisition module (203), the wireless network module (207), the clock module (205), the static storage module (206), the indicator light module (211), the audio module (209) and the reset module (210) through the charging interface module (2041), the charging chip module (2042) and the power voltage transformation module (2043); the tray body (1) is provided with a charging interface (122) connected with the charging interface module (2041) and a power switch (123) connected with the charging chip module (2042).
9. The intelligent RFID-identified cargo tray according to any one of claims 1-4, wherein the tray body (1) comprises an upper cover (11) and a lower cover (12), the circuit board (2) is arranged on the lower cover (12), and the upper cover (11) is arranged on the lower cover (12) in a covering manner.
10. A ring for use with the intelligent RFID-enabled organizer of any of claims 1-9; the ring is provided with a high-frequency RFID circuit module and is worn by staff for storing staff information.
11. A tag, wherein the tag is respectively used with the intelligent RFID identification pallet of any one of claims 1-9, and the tag is provided with an ultrahigh frequency RFID circuit module and is arranged on a commodity for storing information of the commodity.
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CN110569940A (en) * | 2019-09-26 | 2019-12-13 | 深圳好逸多科技有限公司 | Intelligent RFID (radio frequency identification) recognition goods containing tray, and ring and label used in cooperation with same |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN110569940A (en) * | 2019-09-26 | 2019-12-13 | 深圳好逸多科技有限公司 | Intelligent RFID (radio frequency identification) recognition goods containing tray, and ring and label used in cooperation with same |
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