The present disclosure generally relates to a network camera, more particularly to a network camera with a manually adjustable shooting angle and including a main frame and a camera device, wherein the camera device can be assembled with the main frame integrally and rotatably positioned in a positioning ring of the main frame, the positioning ring has a plurality of first engagement parts disposed on an inner periphery thereof, and the camera device has at least one second engagement part which is disposed on a peripheral edge thereof and can be engaged with one of the first engagement parts at different location. Therefore, the user can rotate the camera device manually to adjust the shooting angle thereof through engaging the second engagement part with the corresponding first engagement part to make sure that images captured by the camera device are all at a normal view angle.
In recent year, as microelectronic technology, information and communication technology are rapidly developed, various portable electronic devices enter into people's daily life gradually. When the speed of data communication becomes faster, it is possible for people to interconnect with a remote electronic device for instant control through internet network. With coming of the network generation, people's many life habits are changed greatly. A network camera, which is very popular in recent year, is taken as an example for illustration. The network camera can be mounted at a specific place (such as home) and used to instantly upload a captured image to internet network through wired or wireless network. When the user goes out, for example, travels abroad or stays in office, the user can obtain a current condition of the specific place through the network camera anytime and anywhere. For example, the user can watch family pet in real time through the network camera.
The network camera has advantages of small size, easy to mount and convenient transmission; however, as the network camera is more popular and widely applied in people's life, the inventor finds that some detail designs of the network camera may cause the user's inconvenience and affect usage experience in specific usage. Please refer to
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According above description, it is obvious that the camera lens 12 cannot determine the user's desired shooting angle, and the problem illustrated in
Therefore, what is need is to improve the conventional network camera without greatly increasing volume and cost thereof, and the improved network camera can solve the problem that the camera lens may capture an image with an abnormal view angle when the network camera is mounted at the special shooting angle.
In order to solve the problem that the network camera cannot determine the user's desired shooting angle so usually capture the image with the abnormal view angle when the network camera is mounted at special shooting angle, according to multiple tests, and long-term study and experience in designing product the inventor designs a network camera with manually adjustable shooting angle, so as to facilitate the user to adjust the shooting angle of the network camera by manually rotating the network camera.
An objective of the present disclosure is to provide a network camera with manually adjustable shooting angle. The network camera includes a base, a main frame and a camera device. The base is fastened on a plane. The main frame has a bottom end connected to the base and a positioning ring disposed on a top end thereof. The positioning ring has a plurality of first engagement parts disposed on an inner periphery thereof. The camera device has a structure matching with the inner periphery of the positioning ring, so as to be assembled with the main frame integrally and rotatably positioned in the positioning ring. The camera device has at least one camera lens configured to capture image and the captured image is transmitted to internet network by a wired or wireless manner. The camera device has at least one second engagement part disposed on a peripheral edge thereof. Under a condition that the second engagement part is engaged into one of the plurality of the first engagement parts on the positioning ring, the camera device is fixed in the positioning ring and the camera lens is kept at a shooting angle (that is, when the base is fastened on the ground, the image captured by the camera lens is kept at the normal view angle). Under a condition that the camera device is rotated by an external force and the second engagement part is deformed to escape from the first engagement part, the camera device is rotated about a center of the positioning ring, and after the second engagement part is moved to be engaged with another first engagement part, the camera device is fixed in the positioning ring again to keep the camera lens at another shooting angle. An angle difference between the two shooting angles is equal to an angle interval between the two adjacent first engagement parts. Therefore, the user can rotate the camera device manually to adjust the shooting angle of the camera lens to make sure the captured image with the normal view angle, so that the user does not need to operate the playback software to change the angle of the captured image while viewing the capture image later.
According to one exemplary embodiment of the present disclosure, the camera device further includes a back cover, a camera module and a front cover. The back cover has a receiving groove recessed at an inner side thereof, and a plurality of first fastening parts disposed thereon and adjacently to a peripheral edge thereof. The camera module is mounted in the receiving groove and at least includes the camera lens and a network unit which is electrically connected to the camera lens and configured to upload the image captured by the camera lens to internet network. The front cover has a structure matching with the back cover, and is configured to be positioned on the inner side of the back cover to shield the receiving groove. The front cover has a camera hole disposed at an outer side thereof and corresponding in position to the camera lens, and the second engagement part and a plurality of second fastening parts disposed on an inner side thereof and adjacently to a peripheral edge thereof, and extended towards the back cover. An extension length of each of the second fastening parts is larger than that of the second engagement part. Under a condition that the plurality of first fastening parts and the plurality of second fastening parts are fastened with each other to assemble the front cover and the back cover integrally, the camera device is rotatably positioned in the positioning ring, and the second engagement part is exposed to the peripheral edge of the camera device.
The detailed structure, operating principle and effects of the present disclosure will now be described in more details hereinafter with reference to the accompanying drawings that show various embodiments of the present disclosure as follows.
Reference will now be made in detail to the exemplary embodiments of the present disclosure, examples of which are illustrated in the accompanying drawings. Therefore, it is to be understood that the foregoing is illustrative of exemplary embodiments and is not to be construed as limited to the specific embodiments disclosed, and that modifications to the disclosed exemplary embodiments, as well as other exemplary embodiments, are intended to be included within the scope of the appended claims. These embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the inventive concept to those skilled in the art. The relative proportions and ratios of elements in the drawings may be exaggerated or diminished in size for the sake of clarity and convenience in the drawings, and such arbitrary proportions are only illustrative and not limiting in any way. The same reference numbers are used in the drawings and the description to refer to the same or like parts.
It will be understood that, although the terms ‘first’, ‘second’, ‘third’, etc., may be used herein to describe various elements, these elements should not be limited by these terms. The terms are used only for the purpose of distinguishing one component from another component. Thus, a first element discussed below could be termed a second element without departing from the teachings of embodiments. As used herein, the term “or” includes any and all combinations of one or more of the associated listed items.
The present disclosure provides a network camera with manually adjustable shooting angle. Please refer to
A bottom end of the main frame 32 is pivotally connected on a pivoting part 310 of the base 31, so that the main frame 32 is rotatable about the pivoting part 310. Alternatively, the main frame 32 can directly fastened on the base 31. The main frame 32 has a positioning ring 320 disposed at a top end thereof, and the positioning ring 320 has a plurality first engagement parts 320a disposed on an inner periphery thereof. In the first embodiment, the first engagement part 320a is a groove.
The camera device 33 has a peripheral edge matching with the inner periphery of the positioning ring 320 in structure (as shown in
The way of fastening and adjusting the camera device 33 and the positioning ring 320 is illustrated first, and the way of assembling the camera device 33 will be illustrated later. Please refer to
Under a condition that the base 31 is locked on the ceiling or wall and the user wants to change the shooting angle of the network camera 3, the user can grip the camera device 33 to rotate about the center of the positioning ring 320 and, meanwhile, the second engagement part 330a is deformed by an external force to escape from the engagement of the first engagement part 320a. In this situation, the camera device 33 is in a rotatable status, so that the user can rotate the camera device 33 about the center of the positioning ring 320, and the second engagement part 330a is then moved to engage with other first engagement part 320a of the positioning ring 320. By above-mentioned operation, the camera device 33 can be reseated at a new position with other shooting angle. For example, when the base 31 is locked on the ceiling, the user can rotate the camera device 33 to make the top end of the camera lens 420 face the base 31 (that is, the bottom end of the camera lens 420 faces the ground). Therefore, the camera lens 420 can still be kept at the normal view angle.
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The assembly and internal structure of the camera device 33 are illustrated below. In the first embodiment, the camera device 33 includes a back cover 41, a camera module 42 and a front cover 43. The back cover 41 has a receiving groove 410 recessed on an inner side thereof, and a plurality of first fastening parts 411 disposed adjacently a peripheral edge thereof. The camera module 42 is mounted in the receiving groove 410 and at least includes the camera lens 420 and a network unit which is not shown in drawings and can be implemented by a chip in a circuit board. The network unit is electrically connected with the camera lens 420 and configured to upload an image captured by the camera lens 420 to internet network.
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The front cover 43 has a structure matching with the back cover 41, so that the front cover 43 can be positioned on the inner side of the back cover 41 to shield the receiving groove 410. The front cover 43 has a camera hole 430 disposed on an outer side thereof and corresponding in position to the camera lens 420, and the second engagement part 330a and a plurality of second fastening parts 431 disposed on an inner side thereof, adjacently to the peripheral edge thereof and extended towards the back cover 41. An extension length of each of the plurality of second fastening parts 431 is longer than that of the second engagement part 330a, and under a condition that the plurality of first fastening parts 411 and the plurality of second fastening parts 431 are engaged with each other to assemble the front cover 43 and the back cover 41 integrally, the camera device 33 can be rotated to position in the positioning ring 320, and the second engagement part 330a can be exposed out of the peripheral edge of the camera device 33, as shown in
Compared with the peripheral edges of the front cover 43 and the back cover 41, the plurality of second fastening parts 431 and the second engagement part 330a are closer to the center of the camera device 33, so that under a condition that the front cover 43 and the back cover 41 are assembled integrally, a circular groove 331 can be recessed around the peripheral edge of the camera device 33 and have a structure matching with the inner periphery of the positioning ring 320, and the second engagement part 330a is exposed to the circular groove 331.
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The above-mentioned descriptions represent merely the exemplary embodiment of the present disclosure, without any intention to limit the scope of the present disclosure thereto. Various equivalent changes, alternations or modifications based on the claims of present disclosure are all consequently viewed as being embraced by the scope of the present disclosure.
Number | Date | Country | Kind |
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105105261 | Feb 2016 | TW | national |