The invention generally relates to cameras and mobile devices, particularly to holding and securing such devices to a magnetic necklace mounting system with the use of high strength neodymium magnets.
The prevalence of carrying mobile devices and portable cameras has become a part of everyday life for many users. Usually they are carried in a user's pocket or bag, in which to use the device it must be taken out. Having the device in such areas is not the most convenient way to carry such a device. Furthermore, repeatedly taking out a mobile device or camera can cause scratch damage to the glass or plastic display by debris that maybe inside those areas.
Additionally, with the popularity of mobile devices and cameras has come the advent of video sharing through social media websites that allow anyone to post video content. This has encouraged users to carry these devices on them daily to capture video and share their experiences. Traditionally, to take video, a user would have to either use their hands to hold the device and record video, attach the device to a stationary mount, or put a mobile device or camera on a body mount. In the first instance the user must use their hands to hold the device to record video, not allowing for hands free recording. In the second instance the user must carry a stationary mount with them, not allowing for ease of mobility. In the third instance the user must put on and wear a cumbersome body mount. In all cases there are present disadvantages that allow for ease of use.
An unobtrusive magnetic necklace mounting system allows the user to easily put on and take off the necklace, thereby encouraging the user to wear it on a daily basis. Furthermore, the use of high strength neodymium magnets allows the user to easily attach, break-a-way and re-attach the device to any magnetic surface, while maintaining a secure connection to the device, allowing for ease of use and access.
The magnetic necklace mounting system provides the advantages of holding the phone out of the way of debris in a pocket or bag, hands free video recording, ease of wearing, ease of mounting to magnetic surfaces. What is needed is a camera mounting system that addresses the limitations mentioned above.
The present invention relates to a system and method for a quick, convenient, and removable way to mount and/or record video hands free using a mobile, camera, or video device, such system and method including a magnetic necklace mounting system. The system and method also includes a plate attached to the device that allows the device to be detachable from the necklace mounting system. Through the present invention, users will be able to always have their device “at the ready” to take pictures, notes, or video without having to remove the device from a pocket, bag, or hand-carry the device.
The present invention also teaches a system and method for taking photos, and/or video hands-free through the use of a magnetic necklace whereby a device is removably attached to the necklace via a plate attached to the device.
It should be expressly understood that the drawings are included for illustrative purposes and do not represent the full scope of the present invention. In the accompanying drawings, the references in different drawing may designate similar elements.
Throughout the description and pertaining to the present invention, the terms
“magnetic” or “magnet” shall refer to a material or the act of a material producing a magnetic field;
“necklace” shall refer to an article that is worn around the neck, either for decorative or utility purposes;
“device” shall refer to an electronic tool capable of performing a digital action, such as, but not limited to, recording audio, video, photos, capable of communicating over a network, capable of providing audio instructions, and the like.
Now to
In one embodiment of the invention, the housing 201 may be made of a variety of materials, including plastic (polymer), wood, semi-precious material (aluminum), or precious metals, for example gold or silver. As shown in previous embodiments, the housing may be any of a number of different shapes or designs.
In another embodiment, the housing 101 can be colorful or artistic in design, thus allowing the system, when the device is not connected thereto, to be used as a jewelry piece. The use of the system as a jewelry piece is logical as tech wearables are becoming a major part of the clothing industry.
The magnet 103 used in the present invention is positioned in conjunction with the pendant 111. In a preferred embodiment, the magnet 103 may be positioned centrally within the pendant 101, thus making the magnet 103, as its exposed outer side (i.e., the side facing outward from the user), flush with the outer edge of pendant 101.
In yet another embodiment, the magnet 103 is extended past the outer edge of the pendant 101.
The magnet 103 may be preferably selected from one of a rare-earth magnet, including but not limited to alloy of neodymium, iron, and boron, Nd2Fe14B, SmCos, or Sm(Co, Fe, Cu, Zr)7. The magnet 103 may also be selected from the group consisting of iron alloy of aluminum, nickel, and cobalt, and ferrite compounds.
In a preferred embodiment, the magnet 103 is a rare-earth metal of an alloy of neodymium, iron, and boron. More preferably, the magnet 103 is Nd2Fe14B.
The necklace 109 in the present invention can be made of a variety of materials depending on the desired look on the overall system, including but not limited to ropes, choker-type style, lanyard style, and the like.
The necklace 109 is used for securing the pendant, to which a device may be attached, to the body of the user, specifically about the neck.
In one embodiment, the necklace may be interchangeable with other necklaces. For example, if the user desires a particular look to match an outfit, a user may be able to disconnect the attachment means 107 via a clasp, and remove one necklace in favor of another.
As different users have different neck sizes, the necklace may have any number of different sizes in terms of diameter to match a user's neck size. In one embodiment (though not shown), the necklace is adjustable.
The dimensions of the pendant may vary, however it is limited by the matching plate on the device (to be discussed later).
The pendant 301 also includes a hole 302 wherein the hook, allowing attachment to the necklace (also not shown).
The attachment plate 401 may be of varying size and shape, based on the needs of the device in terms of device shape, device weight, etc. The plate 401 may be made of a ferromagnetic material, such as cobalt, iron, Fe2O3, FeO Fe2O3, Ni Fe2O3, CuO Fe2O3, Mg Fe2O3, MnBi, Ni, MnSb, MnO Fe2O3, Y3Fe5O12, CrO2, MnAs, Gd, Tb, Dy, EuO. A and b of
In one embodiment, the adhesive pad 503 is a hook and loop attachment, such as Velcro.