Stage technicians, whether involved with musicians or other performers, have the daunting task of assembling not only the physical stage and lighting equipment for any given performance, but also preparing the musical and other equipment for ready use by the performers. Especially in view of advances in technology, many performers are using digital and other equipment in connection with their performances.
Problems exist with such assemblies and preparations in that certain useful equipment has not been previously available in the marketplace to not only secure certain equipment where desired, but to allow said equipment to be adjusted as desired without fear of the equipment being unsecured. The devices and kits of the present disclosure solve those problems, and would be well-received in the marketplace.
In an exemplary embodiment of an articulating restraint device of the present disclosure, the device comprises a clamp having two arms coupled to one another, each of the two arms defining opposing inner surfaces and having distal ends, at least two engagement portions, wherein at least one of the at least two engagement portions is coupled to each inner surface of each of the two arms and positioned so that when the distal ends of the clamp engage one another, the at least two engagement portions do not engage one another, and a plurality of interlocked individual articulating arm members, each articulating arm member being relatively cylindrical and defining a first end opening at a first end, an opposing second end opening at a second end, and a tapered central portion, whereby two adjacent articulating arm members can engage and reversibly couple to one another by positioning the second end of a first articulating arm member within the first end opening of an adjacent second articulating arm member, wherein one of the plurality of articulating arm members is coupled to one of the two arms of the clamp. In another embodiment, each of the at least two engagement portions comprise a material selected from the group consisting of rubber, foam, and foam rubber. In yet another embodiment, when the clamp is opened and positioned around a cylindrical object, closure of the clamp around at least part of the cylindrical object causes the at least two engagement portions to engage the cylindrical object. In an additional embodiment, the clamp remains in place relative to the cylindrical object upon closure of the clamp around at least part of the cylindrical object. In yet an additional embodiment, the cylindrical object is selected from the group consisting of a pole, a microphone stand, scaffolding, and stage equipment.
In an exemplary embodiment of an articulating restraint device of the present disclosure, when the clamp is opened and each of the two arms are positioned with a portion of a body therebetween, closure of the clamp upon at least part of the body causes the at least two engagement portions to engage the body. In an additional embodiment, the clamp remains in place relative to the body upon closure of the clamp upon at least part of the body. In yet an additional embodiment, the body is selected from the group consisting of a table, a desk, musical equipment, and stage equipment.
In an exemplary embodiment of an articulating restraint device of the present disclosure, a most distal articulating arm member is configured to reversibly engage an external product. In another embodiment, the external product is selected from the group consisting of a microphone, a tablet computer, a telephone, a smartphone, a personal digital assistant, a digital music player, a laptop computer, a camera, a camcorder, a flashlight, a speaker, and a retention platform. In yet another embodiment, the external product comprises a portable electronic device. In an additional embodiment, the external product comprises a retention platform configured to retain a second external product. In yet an additional embodiment, the retention platform comprises a plurality of retention arms having retention flanges and a tension clip, whereby the retention flanges and the tension clip are configured to retain the second external product. In another embodiment, the second external product is selected from the group consisting of a microphone, a tablet computer, a telephone, a smartphone, a personal digital assistant, a digital music player, a laptop computer, a camera, a camcorder, a flashlight, and a speaker.
In an exemplary embodiment of an articulating restraint device of the present disclosure, the device further comprises a locking mechanism positioned within at least one articulating arm member, wherein the one of the plurality of articulating arm members is coupled to one of the two arms of the clamp using the locking mechanism. In an additional embodiment, the locking mechanism comprises a threaded bolt having a head portion and a threaded portion, a first washer, a second washer, and a nut, wherein the first washer, the second washer, and the nut are all positioned on the threaded portion of the threaded bolt. In yet an additional embodiment, the first washer is positioned within the first end opening of at least one articulating arm member, the threaded bolt is positioned within the first end opening and through the washer so that the head portion of the threaded bolt remains within the first end opening, the second washer is positioned upon the threaded portion of the threaded bolt within the second end opening, and wherein the nut is positioned upon the threaded portion of the threaded bolt within the second end opening to secure the second washer within the at least one articulating arm member. In another embodiment, the device further comprises a separate adapter coupled to the threaded bolt, the separate adapter configured to reversibly engage an external product.
In an exemplary embodiment of an articulating restraint device of the present disclosure, the device further comprises at least one splitter coupled to at least one of the articulating arm members, the at least one splitter configured to receive up to two additional articulating arm members. In another embodiment, the at least one splitter defines a first splitter end, a second splitter end, and a third splitter end, wherein each end is configured to receive the at least one articulating arm member. In yet another embodiment, the at least two engagement portions face one another.
In an exemplary embodiment of an articulating restraint device of the present disclosure, the device comprises a clamp having two arms coupled to one another, each of the two arms defining opposing inner surfaces and having distal ends, at least two engagement portions, wherein at least one of the at least two engagement portions is coupled to each inner surface of each of the two arms and positioned so that when the distal ends of the clamp engage one another, the at least two engagement portions do not engage one another, and at least one articulating arm member, each articulating arm member being relatively cylindrical and defining a first end opening at a first end, an opposing second end opening at a second end, and a tapered central portion, whereby two adjacent articulating arm members can engage and reversibly couple to one another by positioning the first end of a first articulating arm member within the second end opening of an adjacent second articulating arm member, wherein one articulating arm member of the at least one articulating arm members is coupled to one of the two arms of the clamp. In another embodiment, the at least one articulating arm member comprises a plurality of interlocked articulating arm members.
In an exemplary embodiment of an articulating restraint device of the present disclosure, the device comprises a magnetic base comprising a magnet, and a plurality of interlocked individual articulating arm members, each articulating arm member being relatively cylindrical and defining a first end opening at a first end, an opposing second end opening at a second end, and a tapered central portion, whereby two adjacent articulating arm members can engage and reversibly couple to one another by positioning the first end of a first articulating arm member within the second end opening of an adjacent second articulating arm member, wherein one of the plurality of articulating arm members is coupled to the magnetic base. In another embodiment, the magnetic base is configured to attract to and magnetically engage a metallic substrate. In yet another embodiment, when the magnetic base is attracted to and engages a metallic substrate, the magnetic base remains in place relative to the metallic substrate. In an additional embodiment, the magnetic base further comprises a base housing configured to receive at least part of the magnet.
In an exemplary embodiment of an articulating restraint device of the present disclosure, the device further comprises a locking mechanism positioned within at least one articulating arm member, wherein the one of the plurality of articulating arm members is coupled to the magnetic base using the locking mechanism. In an additional embodiment, the locking mechanism comprises a threaded bolt having a head portion and a threaded portion, a washer, and a nut, wherein the washer and the nut are positioned on the threaded portion of the threaded bolt. In yet an additional embodiment, the threaded bolt is positioned within the magnetic base so that the head portion of the threaded bolt contacts the magnetic base, the washer is positioned upon the threaded portion of the threaded bolt within one of the first end opening and the second end opening, and wherein the nut is positioned upon the threaded portion of the threaded bolt within the one of the first end opening and the second end opening to secure the washer within the at least one articulating arm member. In another embodiment, the locking mechanism comprises (i) a rivet having a rivet head, and (ii) a washer, wherein the washer is positioned on the rivet. In yet another embodiment, the rivet is positioned within the magnetic base so that the rivet head contacts the magnetic base, the washer is positioned upon the rivet within one of the first end opening and the second end opening, and wherein a distal end of the rivet is expanded within the one of the first end opening and the second end opening to secure the washer within the at least one articulating arm member.
In an exemplary embodiment of an articulating restraint device of the present disclosure, the device comprises a magnetic base comprising a magnet, and at least one articulating arm member, each articulating arm member being relatively cylindrical and defining a first end opening at a first end, an opposing second end opening at a second end, and a tapered central portion, whereby two adjacent articulating arm members can engage and reversibly couple to one another by positioning the first end of a first articulating arm member within the second end opening of an adjacent second articulating arm member, wherein one articulating arm member of the at least one articulating arm members is coupled to the magnetic base. In another embodiment, the at least one articulating arm member comprises a plurality of interlocked articulating arm members.
In an exemplary embodiment of an articulating restraint device of the present disclosure, the device comprises a restraint mechanism selected from the group consisting of (i) a clamp having two arms coupled to one another, each of the two arms defining opposing inner surfaces and having distal ends, and (ii) a magnetic base comprising a magnet, at least one articulating arm member, each articulating arm member being relatively cylindrical and defining a first end opening at a first end, an opposing second end opening at a second end, and a tapered central portion, whereby two adjacent articulating arm members can engage and reversibly couple to one another by positioning the first end of a first articulating arm member within the second end opening of an adjacent second articulating arm member, wherein one articulating arm member of the at least one articulating arm members is coupled to the restraint mechanism. In another embodiment, the restraint mechanism comprises the clamp having the two arms coupled to one another, each of the two arms defining the opposing inner surfaces and having the distal ends. In yet another embodiment, the device further comprises at least two engagement portions, wherein at least one of the at least two engagement portions is coupled to each inner surface of each of the two arms and positioned so that when the distal ends of the clamp engage one another, the at least two engagement portions do not engage one another. In an additional embodiment, the one articulating arm member of the at least one articulating arm members is coupled to one of the two arms of the clamp. In yet an additional embodiment, the at least one articulating arm member comprises a plurality of interlocked articulating arm members.
In an exemplary embodiment of an articulating restraint device of the present disclosure, the restraint mechanism comprises the magnetic base comprising the magnet. In various embodiments of devices of the present disclosure, one or more device components comprise a material selected from the group consisting of plastic and metal.
In an exemplary embodiment of a kit of the present disclosure, the kit comprises an exemplary restraint mechanism of the present disclosure and at least one articulating arm member.
The disclosed embodiments and other features, advantages, and disclosures contained herein, and the matter of attaining them, will become apparent and the present disclosure will be better understood by reference to the following description of various exemplary embodiments of the present disclosure taken in conjunction with the accompanying drawings, wherein:
An overview of the features, functions and/or configurations of the components depicted in the various figures will now be presented. It should be appreciated that not all of the features of the components of the figures are necessarily described. Some of these non-discussed features, such as various couplers, etc., as well as discussed features are inherent from the figures themselves. Other non-discussed features may be inherent in component geometry and/or configuration.
For the purposes of promoting an understanding of the principles of the present disclosure, reference will now be made to the embodiments illustrated in the drawings, and specific language will be used to describe the same. It will nevertheless be understood that no limitation of the scope of this disclosure is thereby intended.
An exemplary articulating restraint device of the present disclosure is shown in
As shown in
In at least one embodiment of a device 100 of the present disclosure, each of the engagement portions 116, 118 comprise a material selected from the group consisting of rubber, foam, and foam rubber. Such materials allow clamp 102, when opened and positioned around a cylindrical object 400 as shown in
In various embodiments of clamps 102 of the present disclosure, when clamp 102 is opened and each of the two arms 104, 106 are positioned with a portion of a body 500 therebetween as shown in
As shown in
Exemplary devices 100 of the present disclosure also include various locking mechanisms useful to connect articulating arm members 120 to clamp(s) 102, external product(s) 600, and/or other objects. As shown in
The exemplary arm members 120 are shown in
The locking mechanisms 700 shown in
As shown in
An exemplary device 800 of the present disclosure may further comprise one or more splitters 800 as shown in
An exemplary device 800 of the present disclosure may further comprise a magnetic base 900 such as shown in
A locking mechanism 700 can be used to couple magnetic base 900 to a first articulating arm member 120 as shown in
As referenced herein, the term “restraint mechanism” may refer to an exemplary clamp 100 and/or an exemplary magnetic base 900 of the present disclosure. Further, various components of devices 100 of the present disclosure may comprise plastic and/or metal materials.
In at least one embodiment of a kit 1000 of the present disclosure, and as shown in
An exemplary device 800 of the present disclosure may further comprise a magnetic base 900 such as shown in
A locking mechanism 700 can be used to couple magnetic base 900 to a first articulating arm member 120 as shown in
In at least one embodiment of a kit 1000 of the present disclosure, and as shown in
While various embodiments of articulating restraint devices and methods of using the same have been described in considerable detail herein, the embodiments are merely offered as non-limiting examples of the disclosure described herein. It will therefore be understood that various changes and modifications may be made, and equivalents may be substituted for elements thereof, without departing from the scope of the present disclosure. The present disclosure is not intended to be exhaustive or limiting with respect to the content thereof.
Further, in describing representative embodiments, the present disclosure may have presented a method and/or a process as a particular sequence of steps. However, to the extent that the method or process does not rely on the particular order of steps set forth therein, the method or process should not be limited to the particular sequence of steps described, as other sequences of steps may be possible. Therefore, the particular order of the steps disclosed herein should not be construed as limitations of the present disclosure. In addition, disclosure directed to a method and/or process should not be limited to the performance of their steps in the order written. Such sequences may be varied and still remain within the scope of the present disclosure.
The present U.S. nonprovisional patent application is related to, and claims the priority benefit of, U.S. provisional patent application Ser. No. 61/702,546 filed Sep. 18, 2012, the contents of which are hereby incorporated by reference in their entirety into this disclosure.
Number | Date | Country | |
---|---|---|---|
61702546 | Sep 2012 | US |