1. Technical Field
At least one disclosed embodiment in accordance with the present invention relates to a camera device. More particularly, at least one disclosed embodiment relates to an internet protocol camera supporting a wide range of rotation.
2. Description of the Related Art
Recently, camera device has been applied intensively to various circumstances including observing crime hotspots, monitoring children or senior citizens, and establishing video links. Camera therefore largely increases convenience and security nowadays.
However, conventional camera devices in this field usually are manufactured with several connected arms and physical joints, which led to inconvenience during device mounting and difficulties in camera rotating. Users usually suffer from failures when trying to adjust the camera to a specific position or angle, since the unsmooth surfaces and rectangular shapes of camera devices largely restrict the camera device from movements. These situations are encountered intensively when attempting to mount the camera device to places such as wall, ceiling, or corner.
The physical features of camera devices by conventional camera devices largely refrain users from convenience and ease, since the complexities in arms and joints require an enormous amount of time to build a camera system.
Aiming to solve the problems led by conventional camera devices, at least one embodiment in accordance with the present invention provides a novel camera device which comprising a base, a body, and a camera. Wherein the camera is connected onto the body and the body is placed onto the base.
The base comprises a fillister, wherein the fillister is a concave and, to increases the friction per se, is made of natural rubber or synthetic rubber. The body is formed in a gourd-shape, a dumbbell-shape, or a teardrop-shape. A neck, on the body, is configured to a spherical unit which is able to fit with the fillister. The spherical unit further comprises a second magnetic unit magnetically attractive to a first magnetic unit configured in the base. Wherein the magnetic force induced by the first magnetic unit and the second magnetic unit is able to attach the spherical unit to the fillister to form a joint allowing the body to rotate and spin freely within a hemispherical region.
In a preferred embodiment, the body, when centered on the spherical unit, is allowed to perform a horizontal rotation in 360 degree and a vertical rotation in 180 degree; in addition, the camera per se, with the center of the camera, is able to further rotate in 360 degree.
In another embodiment, a heavy unit is configured in the base for stabilizing the base and the body. The heavy unit also provides the ability as a buffer to balance the movements of the centroid during rotations, and therefore protect the body and the camera from collisions. Since electronic elements in camera are highly interfered and easily got wrecked by magnetic force, the neck places the camera a distance away from the first magnetic unit and the second magnetic unit to protect the camera from the magnetic forces.
In yet another embodiment, the camera device may further comprise a first fixing unit, connected onto the bottom of the base, and a second fixing unit. The second fixing unit comprises at least one first combining unit, and the first fixing unit comprises at least one second combining unit; wherein the at least one first combining unit is a mortise or a concave, and the at least one second combining unit is a tenon or a convex; or, on the contrary, the at least one first combining unit is a tenon or a convex, and the second combining unit is a mortise or a concave. The second fixing unit further comprises at least one fixing hole for fixing the second fixing unit onto a surface with nails or fixtures. The camera device is then able to be mounted onto the surface by combining the first combining unit and the second combining unit. In this embodiment, the camera device is able to be mounted onto a wall, a ceiling, or a surface of an object easily and rapidly. Besides, since sizes of the base and the second fixing unit are relative smaller, the requirements for a place for mounting a camera device are relative low.
The camera device in accordance with the present invention provides advantages such as easily adjusting the direction of camera to optimize the camera recording field, smoothly rotating the body without physical hindrances, fast mounting, and suitable for a variety of places under different situations.
a) is a cross-sectional view of one embodiment in accordance with the present invention in the first position.
b) is a cross-sectional view of one embodiment in accordance with the present invention in the second position.
c) is a cross-sectional view of one embodiment in accordance with the present invention in the third position.
a) is a front plan view of an exemplary body in accordance with the present invention.
b) is a top perspective view of an exemplary base in accordance with the present invention.
a) is a bottom perspective view of an exemplary base with an exemplary first fixing unit in accordance with the present invention.
b) is a perspective view of an exemplary second fixing unit in accordance with the present invention.
In a general aspect, at least one embodiment in accordance with the present invention relates to a camera device. More particularly, at least one embodiment relates to an internet protocol camera supporting a wide range of rotation. The embodiments and drawings provided here show different aspects of the present invention. However, the present invention are neither limited to any embodiment nor drawing thereof.
a)-(c) represent another embodiment in accordance with the present invention.
The embodiment illustrated in
a) and
a) and
Number | Date | Country | Kind |
---|---|---|---|
103200692 | Jan 2014 | TW | national |