The invention relates to the technical field of the gimbal, in particular to a lightweight hand-held stabilizer.
Most of the existing handles for the hand-held gimbal stabilizer have the configuration of traditional straight-rod, which comprises an elongated column as well as an arrangement for mounting the camera and adjusting the gravity center, a handle and a counterweight which are arranged on the column from top to bottom. The self-weight of the stabilizer is heavy, and thus it will become much heavier after a camera is arranged thereon. While in the prior art the hand-held handles are either placed horizontally or vertically, the ways for holding the hand-held handles cannot be changed so as to meet the needs of the user, and in view of this the tired or fatigued sense raised by holding the handles in a single way cannot be reduced. Therefore, the current hand-held camera stabilizer will be greatly limited in its popularization and application.
In view of the problems existing in the prior art, the invention provides a lightweight hand-held stabilizer, which increases the application modes of the stabilizer handle and enhances the experience of the stabilizer product for user. In order to achieve the object of the invention, the lightweight hand-held stabilizer provided by the invention is realized by the following technical scheme.
A lightweight hand-held stabilizer, comprising a gimbal and a 7-shaped handle, the handle comprises a first connection arm and a second connection arm, one end of the first connection arm is rigidly connected to one end of the second connection arm, a gimbal connector is arranged at the end of the joint of the first connection arm and the second connection arm, and the first connection arm is used for being hand-held and control device is provided on the first connection arm.
Further, a movable connector is arranged on the end face of the other end of the first connection arm and the second connection arm.
Further, the second connection arm is provided with a battery compartment.
Further, an included angle of 60 to 120 degree is formed between the first connection arm and the second connection arm.
Further, an included angle of 0 to 90 degree is formed between an axial direction of the end face of the movable connector of the second connection arm and an axial direction of the second connection arm.
Further, the movable connector is designed to couple the handle of the stabilizer to a support or an extension hand-held part.
Further, the movable connection is designed to be one of bolt connection, snap connection and magnetic connection.
Further, the gimbal includes a loading stand, connection arms and motors, wherein the loading stand is connected to the motor by the connection arm, and the motor is fixed at the end that connecting the gimbal with the handle.
Further, the motor includes a magnet, a motor drive plate and a motor shaft; the magnet is arranged on one end of the motor shaft; the motor drive plate is arranged around the magnet, and a gap is left between the magnet and the motor drive plate.
Further, the motor drive plate is provided with an encoder, the median plane of the encoder is coplanar with that of the magnet.
The advantages of the invention are as follows: 1. the user experience can be further optimized; 2. there are various application modes provided for the users to choose; 3. a various of application modes can be switched in order to make the gimbal operation more labor-saving; 4. the encoder and the motor drive plate are sleeved around the cylindrical surface of the magnet, which replaces the construction that the encoder is installed on the top of the magnet in the prior art, thereby the thickness of motor is greatly reduced and the overall weight of stabilizer is lightened without changing the motor power or parameters.
In the drawings, 1. the first connection arm; 2. the second connection arm; 3. gimbal connector; 4. movable connector; 6. extension hand-held part; 5. support; 7. battery compartment; 11. motor; 12. connection arm; 13. loading stand; 21. camera; 14. magnet; 15. motor drive plate; 16. motor shaft; 17. motor core carrier; 18. bearing; 19. motor end cover; 20. motor core; 22. motor housing; 23. encoder.
In order to explain the technical content, the objects and effects of the present invention in detail, the following will be described in conjunction with embodiments and drawings.
This embodiment provides a lightweight hand-held stabilizer, as shown in
On the basis of the embodiment 1, as shown in
On the basis of the embodiment 1, as shown in
On the basis of the embodiment 1, as shown in
On the basis of the embodiment 1, as shown in
The embodiment 1, as shown in
On the basis of the embodiment 1, as shown in
On the basis of embodiment 1, as shown in
On the basis of embodiment 1, as shown in
On the basis of the above embodiments, the motor 11 includes a motor shaft 16, a magnet 14, a motor drive plate 15 and an encoder 23 arranged on the motor drive plate 15, in which the motor drive plate 15 and the encoder 23 are connected to motor end cover by means of bolts, the motor shaft 16 is connected to the motor housing, and the encoder 23 is arranged coaxial with the ring magnet 14, a gap is left between the encoder 23 and ring magnet 14, when being driven by the motor shaft 16, the ring magnet 14 will be rotated relative to the encoder 23, and the encoder 23 can be used to detect the rotation angle of the ring magnet 14. The thickness of the motor is the sum of the following parameters: the thickness of motor housing, the length of motor shaft, the thickness of ring magnet, the gap, the encoder, the thickness of motor drive plate, the height of nut and the thickness of motor end cover.
On the basis of the embodiment 10, the motor structure is shown in
In the above embodiment, the installation positions of the motor shaft 16 and the motor drive plate 15 are illustratively shown, but they can also be instead arranged at other positions according to other embodiments of the present invention. For example, one end of the motor shaft 16 is connected to the motor rotor and the other end thereof is connected to the magnet 14, meanwhile the motor drive plate 15 is connected to the motor stator. Alternatively, one end of the motor shaft 16 is connected to the motor stator and the other end thereof is connected to the magnet 14, meanwhile the motor drive plate 15 is connected to the motor rotor, et al. The above constructions can achieve the effect of reducing the thickness of the motor.
On the basis of embodiment 10, the end of the motor shaft 16 that sleeved with the magnet 14 is provided with a threaded connection locking structure, in order to prevent the motor shaft 16 from displacing in the axial direction when in operation, and the magnet 14 is nested on the motor shaft 16 by the locking structure in order to improve the stability of the stabilizer motor.
On the basis of embodiment 10, the motor drive plate 15 further includes an encoder 23, a median plane of the encoder 23 is coplanar with the median plane of the magnet 14, and the encoder 23 can collect the rotation angle of the magnet 14. The data detected by the encoder is more precious with the installation position of encoder according to this embodiment.
The above embodiments exemplarily show the installation position of the encoder 23 relative to the magnet 14. According to other embodiments of the present invention, the encoder 23 can be alternatively installed at other positions, for example, the encoder 23 can be located at the upper edge or the lower edge of the magnet 14.
Although the present invention has been described in detail with specific embodiments above, it is apparent to those skilled in the art that some modifications or improvements can be made on the basis of the present invention. Therefore, these modifications or improvements made without departing from the spirit of the invention belong to the scope of the invention.
Number | Date | Country | Kind |
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201810956968.X | Aug 2018 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2019/101746 | 8/21/2019 | WO | 00 |