CN-122017886-A - Bird positioner with flexible plate structure
Abstract
The invention discloses a bird positioner with a flexible plate structure, which comprises a shell and a flexible plate, wherein the flexible plate is arranged in the shell, the flexible plate is in a strip shape, one end of the flexible plate is provided with an antenna area, the antenna area is provided with a GNSS antenna, the other end of the flexible plate is provided with a charging area, the charging area is provided with an induction charging device, a Bluetooth module is arranged at the position, which is close to the charging area, of the charging area, and the Bluetooth module and the GNSS antenna are oppositely arranged in the shell. According to the bird positioner with the flexible plate structure, through the design on the position of the GNSS antenna, other influences on the GNSS antenna caused by the use of the flexible plate are effectively avoided, so that the bird positioner with the flexible plate can be effectively lightened, the positioning precision of the GNSS antenna can be ensured, and the flight monitoring mileage of the positioner is effectively ensured.
Inventors
- ZHUGE JUN
Assignees
- 深圳市昂盛达电子股份有限公司
Dates
- Publication Date
- 20260512
- Application Date
- 20260212
Claims (10)
- 1. The bird positioner with the flexible plate structure is characterized by comprising a shell and a flexible plate, wherein the flexible plate is arranged in the shell, the flexible plate is in a strip shape, an antenna area is arranged at one end of the flexible plate, a GNSS antenna is arranged in the antenna area, a charging area is arranged at the other end of the flexible plate, an induction charging device is arranged in the charging area, a Bluetooth module is arranged at the position, which is close to the charging area, of the flexible plate, and the Bluetooth module and the GNSS antenna are oppositely arranged in the shell.
- 2. The bird locator with flexible board structure of claim 1, wherein the length of the antenna area is equal to or greater than one quarter of the overall length of the flexible board.
- 3. The bird positioner with the flexible board structure of claim 1, wherein the length of the antenna area is 15cm or more.
- 4. The bird locator with the flexible board structure of claim 1, wherein the Bluetooth module comprises a Bluetooth antenna and a Bluetooth chip, one side of the Bluetooth antenna is close to the edge of the flexible board, bluetooth clearance areas of 1cm and above are arranged on the other three sides of the Bluetooth antenna, and the Bluetooth clearance areas are only wired.
- 5. The bird locator with the flexible board structure of claim 4, wherein a distance from a side of the Bluetooth antenna adjacent to the edge of the flexible board is greater than or equal to 2mm.
- 6. The bird locator with the flexible board structure of claim 1, wherein the antenna area is provided with a master IC area in close proximity, and the master IC area is provided with an MCU.
- 7. The bird locator with the flexible board structure of claim 6, wherein the MCU is disposed immediately adjacent to a power amplifier.
- 8. The bird locator with the flexible board structure of claim 1, wherein a battery is disposed between the antenna area and the Bluetooth module.
- 9. The bird locator with flexible board structure of claim 1, wherein the housing includes a lower housing surface, an upper cover, and side housing surfaces, the side housing surfaces being correspondingly configured with the antenna areas.
- 10. The bird locator with the flexible board structure of claim 9, wherein the lower housing surface is correspondingly configured as the charging area.
Description
Bird positioner with flexible plate structure Technical Field The invention relates to a positioning device, in particular to a bird positioner with a flexible plate structure. Background The existing bird locators are mainly used for locating the position of birds, particularly some large birds. Some bird positioners are also used for competition of birds. Whichever type of positioner is required, specific requirements are imposed on the positioner itself. The bird locator is particularly required to reduce the weight of the bird locator because it is worn on the bird for a long period of time, and the bird locator used for racing plays, if too heavy, can affect the flight path and speed of the bird. In addition, there is a need for positioning accuracy of the positioner, otherwise, positioning loss or inaccurate positioning of the flight path is easy to occur. Therefore, the bird positioner needs to be reduced in weight as much as possible, and the positioning accuracy cannot be influenced, so that the technical problem which is always required to be studied and solved by the person skilled in the art is solved. Disclosure of Invention The invention aims to provide a bird positioner with a flexible plate structure, which solves the technical problems that the weight is reduced and the positioning precision cannot be influenced. In order to achieve the above object, the technical scheme of the invention is to provide a bird positioner with a flexible board structure, which comprises a casing and a flexible board, wherein the flexible board is arranged in the casing, the flexible board is in a strip shape, one end of the flexible board is provided with an antenna area, the antenna area is provided with a GNSS antenna, the other end of the flexible board is provided with a charging area, the charging area is provided with an induction charging device, a Bluetooth module is arranged at a position close to the charging area, and the Bluetooth module and the GNSS antenna are oppositely arranged in the casing. The bird positioner with the flexible plate structure directly and greatly lightens the weight of the bird positioner by using the design of the flexible plate, simultaneously increases the wireless charging module and the Bluetooth module to interact information and energy with the outside, avoids increasing the weight of the bird positioner by using a plug-in unit, simultaneously, in order to avoid the influence of the Bluetooth module and the wireless charging module on the positioning precision, sets the GNSS antenna at one end far away from the Bluetooth module and a charging area, avoids the interference of an induction charging device and the Bluetooth module on the GNSS antenna, and particularly sets the Bluetooth antenna in the Bluetooth module, so that the Bluetooth module and the GNSS antenna are arranged oppositely, namely at the farthest distance, and the influence of the Bluetooth module on the positioning precision of the GNSS antenna is avoided as far as possible. Preferably, the length of the antenna area is equal to or longer than one fourth of the entire length of the flexible board. The antenna area is ensured to be as large as possible so as to ensure the positioning accuracy and stability, and other components are not arranged in the antenna area, so that the shielding and interference of the other components to the GNSS antenna are avoided. Preferably, the length of the antenna area is 15cm or more. Since the length of the antenna area is large enough to ensure positioning accuracy, when the antenna area is smaller than 15cm, the size of the GNSS antenna is small, which is easy to cause insufficient positioning accuracy. Preferably, the bluetooth module comprises a bluetooth antenna and a bluetooth chip, wherein one side of the bluetooth antenna is close to the edge of the flexible board, the other three sides of the bluetooth antenna are provided with bluetooth clearance areas of 1cm and above, and the bluetooth clearance areas only are wired. The Bluetooth keep away zone can prevent other components from interfering with the Bluetooth antenna, so that the speed and accuracy of Bluetooth transmission are influenced. More preferably, a distance from a side of the bluetooth antenna, which is close to the edge of the flexible board, to the edge of the flexible board is greater than or equal to 2mm. When this distance is less than 2mm, bluetooth antenna is difficult to fix on the flexible board, takes place bluetooth antenna easily and drops, leads to bluetooth module inefficacy. Preferably, a main control IC area is arranged at a position close to the antenna area, and the main control IC area is provided with an MCU. The antenna area is close to the main control IC area, signals of the GNSS antenna can reach the MCU through the shortest path, the signals of the GNSS antenna are prevented from going along a longer transmission path, the influence of other factors in the signal transmis