Compact First Person View (FPV) Pan and Tilt Camera Mount
20230028734 · 2023-01-26
Inventors
Cpc classification
F16M11/2014
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M11/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
G03B2217/00
PHYSICS
F16M11/126
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M11/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A compact first-person-view (FPV) pan and tilt camera mount is installed in a remote-controlled vehicle, and the vehicle is configured to accommodate a video processing module/air unit, a camera module, and a horizontal and vertical rotatable (pan and tilt) camera mount module. A realistic scale remote-controlled scale vehicle typically comes with interior cabin or cockpit space to accommodate driver/pilot that can be utilized to install the pan & tilt camera module. The video processing module is configured to process images shot by the camera module. The camera is mounted on the pan and tilt module. The pan and tilt module includes a first servo, a base, a movable seat, a rotation module, a clamp portion, and an accommodation portion. The first servo has a first shaft, the movable seat has a fitting seat, and the fitting seat has a connection orifice. The rotation module has a first semi-circular gear and a second semi-circular gear meshing. The accommodation portion is formed on the movable seat and is configured to receive a second servo, and the second servo has a second shaft.
Claims
1. A compact first person view (FPV) pan and tilt camera mount being fixed in a vehicle, and the vehicle being configured to accommodate a processing module, a camera module, and a direction-rotatable driving module; wherein the vehicle includes a receiving chamber in which the processing module, the camera module, and the direction-rotatable driving module are accommodated, wherein the vehicle is operated by a user to move or/and rotate; wherein the processing module is accommodated in the receiving chamber and is configured to process images shot by the camera module; wherein the camera module is mounted on and is driven by the direction changeable driving module to shoot and send the images toward the augmented reality device via the processing module; wherein the direction-rotatable driving module is accommodated in the receiving chamber, and the direction-rotatable module includes a first servo, a base, a movable seat, a rotation module, a clamp portion, and an accommodation portion; wherein the first servo is fitted on the base, and the base is secured in the receiving chamber by ways of multiple screws, the first servo has a first shaft, the movable seat is arranged on the base, and the movable seat has a fitting seat and the clamp portion fixed on the fitting seat, wherein the fitting seat has a connection orifice defined on a center thereof and is fitted on the first shaft, and the movable seat is actuated by the first motor to move horizontally; wherein the clamp portion is configured to clamp the camera module, the rotation module is disposed on an outer wall of the clamp portion, and the rotation module has a first semi-circular gear and a second semi-circular gear meshing with the first semi-circular gear; and wherein the accommodation portion is formed on the movable seat and is configured to receive a second servo, and the second servo has a second shaft extending therefrom and rotatably connected with the first semi-circular gear, such that the second servo drives the first semi-circular gear to rotate via the second shaft, the second semi-circular gear is actuated by the first semi-circular gear, and the camera module of the clamp portion is driven by the rotation module to revolve vertically.
2. The compact first person view (FPV) pan and tilt camera mount as claimed in claim 1, wherein the direction-rotatable driving module is formed in a column shape, a diameter of the direction-rotatable driving module in the receiving chamber is 4 cm, and a height of the direction-rotatable driving module is 5 cm.
3. The compact first person view (FPV) pan and tilt camera mount as claimed in claim 1, wherein the processing module is fixed in a holder.
4. The compact first person view (FPV) pan and tilt camera mount as claimed in claim 1, wherein the accommodation portion has a slot defined on an outer wall thereof, the first motor is connected with the second motor via multiple wires, and the multiple wires are received in the slot so as to avoid an interfere to the first motor and the second motor.
5. The compact first person view (FPV) pan and tilt camera mount as claimed in claim 1, wherein the base is connected with an engagement plate in the receiving chamber.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0030] With reference to
[0031] Referring to
[0032] As shown in
[0033] As illustrated in
[0034] With reference to
[0035] As shown in
[0036] With reference to
[0037] Referring to
[0038] With reference to
[0039] The direction-rotatable driving module 40 is formed in a column shape, a diameter of the direction-rotatable driving module 40 in the receiving chamber 11 is 4 cm, and a height of the direction-rotatable driving module 40 is 5 cm, thus receiving the direction-rotatable driving module 40 in a small space, such as a compact unmanned aerial vehicle. Preferably, a wide vision is realized when receiving the direction-rotatable driving module 40 in a large-size unmanned aerial vehicle.
[0040] Referring to
[0041] While the preferred embodiments of the invention have been set forth for purpose of disclosure, modifications of the disclosed embodiments of the invention and other embodiments thereof may occur to those skilled in the art. Accordingly, the appended claims are intended to cover all embodiments which do not depart from the spirit and scope of the invention.