一种畜牧养殖用标签结构
By integrating radio frequency identification and sensors into the cable tie structure, the problem of existing cable ties being unable to integrate information and monitor physiological parameters is solved, enabling rapid information acquisition, improved livestock comfort, and physiological parameter monitoring.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIANGSU HAIKANG BORUI ELECTRONICS CO LTD
- Filing Date
- 2025-09-09
- Publication Date
- 2026-07-17
Smart Images

Figure CN224519327U_ABST
Abstract
Claims
1. A tag structure for livestock breeding, comprising a cable tie strip (1) and a cable tie buckle (2) disposed at the end of the cable tie strip (1), wherein multiple limiting teeth (3) are equidistantly arranged on the upper end face of the cable tie strip (1), and after the cable tie strip (1) passes through the limiting through hole (9) on the cable tie buckle (2), the limiting structure inside the cable tie buckle (2) locks the limiting teeth (3) so that the cable tie strip (1) cannot be pulled back; characterized in that, It also includes a box body (4), which is set on the cable tie strip (1) and close to the cable tie buckle (2); the outer surface of the box body (4) is sprayed with radio frequency identification code, and a radio frequency function box (13) is set inside the box body (4). A chip is set inside the radio frequency function box (13), and the chip stores the information of the livestock. The livestock information is obtained by scanning the radio frequency identification code with an RFID scanning device.
2. The livestock farming label structure according to claim 1, characterized by, An RFID code mounting plate (10) is provided on the outward side of the box body (4), and an RFID code is provided on the outward side of the RFID code mounting plate (10); multiple threaded holes are provided on the outward side of the box body (4), multiple countersunk holes are provided on the RFID code mounting plate (10), and the RFID code mounting plate (10) and the box body (4) are connected by multiple bolts (11).
3. The livestock farming label structure according to claim 1, characterized by, It also includes a telescopic protective cover (5) that is fitted onto the cable tie (1) and connected to the box body (4) at its left end, and an end plate (6) set at the right end of the telescopic protective cover (5). After the cable tie (1) passes through the limiting hole (9) and is fixed, the telescopic protective cover (5) is stretched to cover the limiting tooth (3).
4. The livestock farming label structure according to claim 3, characterized by, An inverted clip plate (7) is provided on the right side of the end plate (6), and a clip hole (8) is provided on the upper surface of the cable tie (2). The inverted clip plate (7) is engaged and inserted into the clip hole (8).
5. The livestock farming label structure according to claim 1, wherein The chip inside the radio frequency function box (13) is a passive chip. Based on the passive tag of radio frequency identification, the chip is powered by the radio frequency energy of the external device and does not require a built-in power supply.
6. The livestock farming label structure according to claim 1, wherein The chip inside the radio frequency function box (13) is an active chip. The chip needs to actively process data and communicate. After radio frequency scanning and identification, the information stored on the chip can be modified. The radio frequency function box (13) is equipped with a power supply.
7. The livestock farming label structure according to claim 1, wherein A partition (12) is provided inside the box (4). The radio frequency function box (13) is located below the partition (12). A monitoring function box (14) is located above the partition (12). The monitoring function box (14) is used to monitor the heart rate and body temperature of livestock.
8. The livestock farming label structure according to claim 7, characterized by, The monitoring function box (14) is equipped with an optical sensor, a temperature sensor, a control system and a power supply. The optical sensor measures the heart rate, the temperature sensor measures the temperature, and the control system receives the heart rate and temperature data and transmits the data to a remote terminal.