The present invention relates generally to a lyre for retaining musical copy or other leaf-style items particularly suited for marching band brass instruments.
The marching band is a time-honored and highly respected aspect of high-schools and colleges around the country. Most commonly seen at half time shows during football games, a marching band show provides the performers the opportunity to not only show off their musical talents, but also their synchronized chorographical skills. Many performers, especially those who play brass instruments, hold their music in a lyre or flip folder at the distal end of their instrument. As many of the band's movements are fast and even “vigorous”, a common problem is that the sheet music holder tends to twist, turn, or even break and fall off. Accordingly, there exists a need for a means by which sheet music can be easily held on marching band instruments without the disadvantages as described above. The use of the music lyre enables marching band performers the ability to see their sheet music without worry at all times in a manner which is not only quick, easy, and effective, but non-disruptive as well.
The inventor has recognized the aforementioned inherent problems and lack in the art and observed that there is a need for an electronic watch charging device. The development of the present invention, which will be described in greater detail herein, fulfills this need.
In an embodiment, the disclosed music lyre includes a saddle assembly having a shape approximately matching an outer profile shape of a top portion of an instrument, the saddle assembly including an opposing pair of lips, wherein a lip of the pair of lips is disposed on each side of the saddle assembly, a pair of straps connected to the saddle assembly, wherein a strap of the pair of straps is disposed on the each side of the saddle assembly, and wherein each strap of the pair of straps is configured to be wrapped underneath a bottom portion of the instrument and connected to a corresponding lip of the pair of lips disposed on an opposite side of the saddle assembly to secure the saddle assembly to the instrument; and a holder assembly connected to the saddle assembly, wherein the holder assembly is configured to retain at least one (1) sheet of copy.
In another embodiment, the disclosed music lyre includes a saddle assembly including a saddle panel having a shape approximately matching an outer profile shape of a top portion of an instrument, the saddle panel including: a seat member; a pair of cinch members, wherein one (1) cinch member of the pair of cinch members extends outwardly from each side of the seat member; a saddle mounting plate connected to a first surface of the seat member, the saddle mounting plate includes a saddle fastener aperture located through a center of the saddle mounting plate and the seat member; an opposing pair of lips, wherein one (1) lip of the pair of lips is disposed on an end of the cinch member; and a padding layer connected to and coextensive with a second surface of the saddle plate, wherein the second surface is adapted to contact the instrument when the saddle panel is placed thereon; a pair of straps connected to the saddle assembly, wherein one (1) strap of the pair of straps is disposed on each side of the saddle panel, and wherein each strap of the pair of straps is configured to be wrapped underneath a bottom portion of the instrument and connected to a corresponding lip of the pair of lips disposed on an opposite side of the saddle panel to secure the saddle assembly to the instrument; and a holder assembly connected to the saddle assembly, the holder assembly including: a rear panel configured to retain at least one (1) sheet of copy is connected to the rear panel; a lower panel extending approximately perpendicularly from a lower end of the rear panel; and a holder mounting plate connected to a first surface of the lower panel, the holder mounting plate including a holder fastener aperture located through a center of the holder mounting plate and the lower panel, wherein the holder mounting plate engages the saddle mounting plate when the holder assembly is connected to the saddle assembly; and a fastener extending through the first aperture and second aperture when the holder mounting plate and the saddle mounting plate are engaged and the first aperture and second aperture are aligned to fasten the holder assembly to the saddle assembly.
In yet another embodiment, the disclosed music lyre includes a saddle assembly including a saddle panel having a shape approximately matching an outer profile shape of a top portion of an instrument, the saddle panel including a seat member; a first cinch member extending outwardly from a first side of the seat member; a second cinch member extending outwardly from a second side of the seat member; a saddle mounting plate connected to a top surface of the seat member, the saddle mounting plate including a saddle fastener aperture located through a center of the saddle mounting plate and the seat member; and a plurality of detents arranged in a second circular configuration adjacent an edge thereof; a first lip disposed on an end of the first cinch member, the first lip including a first ridge extending outwardly from the end of the first cinch member and forming a first groove between the first ridge and the first cinch member; a second lip disposed on an end of the second cinch member, the second lip including a second ridge extending outwardly from the end of the second cinch member and forming a second groove between the second ridge and the second cinch member; and a padding layer connected to and coextensive with a bottom surface of the saddle panel, wherein the second surface is adapted to contact the instrument when the saddle panel is placed on the instrument; a first elastic strap forming a first continuous loop connected to a first side of the saddle panel and configured to be wrapped underneath a bottom portion of the instrument, wherein the first strap is connected to the second lip to partially secure the saddle assembly to the instrument by the first continuous loop being received within the second groove and retained by the second ridge; a second elastic strap forming a second continuous loop connected to a second side of the saddle panel and configured to be wrapped underneath the bottom portion of the instrument, wherein the second strap is connected to the first lip to partially secure the saddle assembly to the instrument by the second continuous loop being received within the first groove and retained by the first ridge; and a holder assembly connected to the saddle assembly, the holder assembly including: a rear panel configured to retain at least one (1) sheet of copy is connected to the rear panel; and a lower panel extending approximately perpendicularly from a lower end of the rear panel; a holder mounting plate connected to a bottom surface of the lower panel, the holder mounting plate including: a holder fastener aperture located through a center of the holder mounting plate and the lower panel; and a plurality of protrusions arranged in a first circular configuration adjacent an edge thereof; and wherein the holder mounting plate engages the saddle mounting plate when the holder assembly is connected to the saddle assembly, the holder assembly is rotatably connected to the saddle assembly, alignment of the plurality of protrusions and the plurality of detents when the holder mounting plate and the saddle mounting plate are engaged and the first aperture and second aperture are aligned maintains an angular orientation of the holder assembly relative to the saddle assembly, and the holder assembly is removably connected to the saddle assembly by a fastener extending through the first aperture and second aperture when the holder mounting plate and the saddle mounting plate are engaged and the first aperture and second aperture are aligned to fasten the holder assembly to the saddle assembly.
Furthermore, the described features and advantages of the disclosure may be combined in various manners and embodiments as one skilled in the relevant art will recognize. The disclosure can be practiced without one (1) or more of the features and advantages described in a particular embodiment.
Further advantages of the present disclosure will become apparent from a consideration of the drawings and ensuing description.
The advantages and features of the present invention will become better understood with reference to the following more detailed description and claims taken in conjunction with the accompanying drawings, in which like elements are identified with like symbols, and in which:
The best mode for carrying out the invention is presented in terms of its preferred embodiment, herein depicted within
The terms “a” and “an” herein do not denote a limitation of quantity, but rather denote the presence of at least one (1) of the referenced items.
Referring to
The holder assembly 20 includes a holder panel 21. The holder panel 21 is configured to position and secure a plurality of individual sheets of the copy 30. The holder panel 21 is an L-shaped structure (having a shape in the form of the letter “L”). The holder panel 21 is rotatable relative to a saddle panel 62 of the saddle assembly 60 via respective upper mounting plate 38 and lower mounting plate 68 (
The holder assembly 20 may be made using any suitable materials. As an example, the holder panel 21 may be formed from a rugged, weather-resistant plastic or metal material. The holder panel 21 includes an approximately vertical rear panel 22 and an approximately horizontal lower panel 24. The lower panel 24 may depend outwardly from the rear panel 22 such that the rear panel 22 and the lower panel 24 are disposed approximately perpendicular to each other (e.g., having a combined shape in the form of the letter “L”). The rear panel 22 and/or the lower panel 24 may be generally planar (e.g., flat). As an example, the rear panel 22 and/or the lower panel 24 may include at least one (1) planar surface.
In an example embodiment, the lower panel 24 may taper from an edge attached to the rear panel 22 to an opposing edge. As an example, the lower panel 24 may have a first width proximate to (e.g., at or near) a joining edge interfacing with the rear panel 22 and a second width, smaller than the first width, at the free edge opposite the joining edge.
The rear panel 22 includes attachment features configured to position the plurality of sheets of copy 30, thereby allowing individual sheets of copy 30 to be flipped over to view a particular sheet of copy 30.
In an example embodiment, the holder assembly 20 is removably connected to the saddle assembly 60. In an example embodiment, the holder assembly 20 is rotatably connected (e.g., rotatable relative) to the saddle assembly 60, for example, in the direction of arrow 110 (
The saddle assembly 60 includes the saddle panel 62. Generally, the saddle panel 62 has a profile shape (e.g., cross-sectional shape) that approximately matches a portion of a profile shape (e.g., cross-sectional shape) of the instrument 100, such as an upper, or top, portion of the profile shape of the body 105 proximate the bell (the round, flared opening opposite the mouthpiece) of a brass or other wind instrument. As an example, the saddle panel 62 has a nonlinear (e.g., arcuate) shape in cross section.
In an example, embodiment, the saddle panel 62 may be made of a flexible material configured to conform (e.g., bend) to the profile shape of the body 105 of the instrument 100. In this example, the same apparatus 10 may be used on (connected to) various, different types of instruments 100.
Alternately, in another example, the saddle panel 62 may be made of a semi-rigid material. In this example, the saddle panel 62 may include a preformed profile shape approximating the profile shape of the body 105 of the instrument 100. The semi-rigid material may also be capable of flexing or bending to small degree to conform to profile shape of the body 105 of the instrument 100.
In an example embodiment, the saddle assembly 60 includes at least one (1) strap 64 (identified herein as a first strap 64A and a second strap 64B) to securely attach the apparatus 10 to the instrument 100. The length of each strap 64A, 64B is easily adjustable to fit different sizes and types of instruments 100. The straps 64A, 64B can also be installed and/or removed quickly and without the need for a tool. In an example embodiment, the straps 64A, 64B may be fabricated from a material that provides a sufficient width to provide a friction interface between (e.g., in contact with) a surface of the instrument 100 to stabilize the apparatus 10 upon the instrument 100.
The holder assembly 20 includes at least one (1) ring 32 (e.g., a pair of rings 32 are shown) connected to the rear panel 22 of the holder panel 21. In an example embodiment, the holder panel 21 includes at least one (1) ring aperture 34 (e.g., a pair of ring apertures 34 are shown) formed through the rear panel 22. The rings 32 may be connected to the rear panel 22 through the ring apertures 34. In an example embodiment, the ring apertures 34 and, thus, the rings 32 are disposed proximate to an upper, or top, edge of the rear panel 22. In an example embodiment, the pair of ring apertures 34 and, thus, the pair of rings 32 are disposed proximate to opposed upper corners of the rear panel 22.
The rings 32 in turn pass through holes punched, or otherwise forms, in the copy 30, thereby, allowing the copy 30 to be quickly flipped over by the user. Furthermore, it is envisioned that the copy 30 may be arranged in a back-to-back manner having pairs that are either laminated using clear plastic, or contained in clear plastic sleeves, to maximize a number of sheets or pages of copy 30 present upon the holder assembly 20.
Referring now particularly to
Referring to
The straps 64 (e.g., first and second straps 64A, 64B) of the saddle assembly 20 are configured to provide for length-adjustment and a cinching attachment around the body of 105 of the instrument 100. As an example, and as illustrated in
While the example embodiments illustrated in
While the example embodiments illustrated in
The holder mounting plate 38 also includes a plurality of equally-spaced, semi-spherical detents 40 arranged in a circular pattern along a bottom, or underside, surface of the holder mounting plate 38. Correspondingly, the saddle mounting plate 68 includes a plurality of equally-spaced, semi-spherical protrusions 70 arranged in a circular pattern along a top surface of the saddle mounting plate 68. Alternatively, the holder mounting plate 38 may include a plurality of equally-spaced, semi-spherical protrusions 70 arranged in the circular pattern along the bottom, or underside, surface of the holder mounting plate 38. Correspondingly, the saddle mounting plate 68 may include the plurality of equally-spaced, semi-spherical detents 40 arranged in the circular pattern along a top surface of the saddle mounting plate 68.
The holder assembly 20 and the saddle assembly 60 are attached by inserting the stud 26 up through the fastener aperture 25, mating the holder mounting plate 38 and the saddle mounting plate 68, and installing a wing nut 27 upon the stud 26. The position and size of the respective female and male semi-sphere shapes of the detents 40 and the protuberances 70 are configured to mate and engage with one (1) another as the mounting plates contact each other.
To position and secure the holder assembly 20 at a desired angle, a user loosens the wing nut 27 along the stud 26, lifts and rotates the holder assembly 20 to a desired orientation, and lowers the holder assembly 20 to engage the detents 40 and protuberances 70. The wing nut 27 is then tightened to retain the holder assembly 20 in the desired angular position.
Referring to
An example embodiment of the disclosed method of utilizing the apparatus 10 may be achieved by performing the following steps: procuring a model of the apparatus 10 that provides a saddle assembly 60 having a suitable fit onto an intended instrument 100; positioning the saddle panel 62 upon the body 105 of the instrument 100; wrapping a first strap 64A around the body 105; looping ends of the first strap 64A through respective pairs of strap apertures 66A, 66B in the saddle panel 62; extending the ends of the strap 64A back over themselves; cinching and fastening the ends of the strap 64A to themselves tightly around the instrument 100 by connecting the sewn-in hook-and-loop fasteners 67; repeating the above steps for the second strap 64B; installing the holder assembly 20 onto the saddle assembly 60, if not previously installed, by inserting the stud fastener 26 of the lower saddle mounting plate 68 up through the fastener aperture 25 of the upper holder mounting plate 38; installing the wing nut 27 upon the stud fastener 26 loosely; lifting and rotating the holder assembly 20 to a desired angular orientation and corresponding viewing angle; lowering the holder assembly 20 to engage the detents 40 and protuberances 70; securing the position of the holder assembly 20 by tightening the wing nut 27; preparing a plurality of sheets of copy 30 in a back-to-back manner; containing the copy 30 by either laminating or inserting the pairs of copy 30 in clear plastic sleeves; punching holes through the copy 30; mounting a desired number of sheets of copy 30 onto the rings 32 of the rear panel 22; and, securing the copy 30 to the rear panel 22 using the wire stay 36, as needed.
The seat member 82 is configured to contact and rest upon a portion of the top, or upper, surface of the body 105 of the instrument 100. In an example embodiment, at least a portion of the seat member 82 may be planar. In another example embodiment, at least a portion of the seat member 82 may be nonlinear, for example, having a curvature configured to conform to the profile shape of the portion of the body 105 of the instrument. In yet another example, at least a portion of a top surface of the seat member 82 may be planar for location and connection of the saddle mounting plate 68 (
Each cinch member 84 extends from opposing sides of the seat member 82 and wraps at least partially around a portion of opposing sides of the body 105 of the instrument 100. As an example, the cinch members 84 may extend approximately halfway around the body 105 of the instrument 100.
Like the embodiment described above and illustrated in
Alternately, in another example, the saddle panel 62 may be made of a semi-rigid material. In this example, the saddle panel 62 may include a preformed profile shape approximating the profile shape of the body 105 of the instrument 100. The semi-rigid material may also be capable of flexing or bending to small degree to conform to profile shape of the body 105 of the instrument 100.
Each cinch member 84 includes a lip 86 (identified individually herein as a first lip 86A and a second lip 86B in
In an example embodiment, the saddle assembly 60 includes the pair of attachment, or cinch, straps 64 (identified individually herein as a first strap 64A and a second strap 64B in
As best illustrated in
In an example implementation, to connect the apparatus 10 to the instrument 100, the saddle panel 62 of the saddle assembly 60 is positioned on the instrument 100. The seat member 82 of the saddle panel 62 is positioned at a desired location on the top surface of the body 105 of the instrument 100. The first (e.g., right) cinch member 84A is positioned at least partially around the first (e.g., right) side of the body 105 of the instrument 100. The second (e.g., left) cinch member 84B is positioned at least partially around the opposing second (e.g. left) side of the body 105 of the instrument 100. The first loop 65A of the first strap 64A, connected to and extending from the first cinch member 84A, is wrapped under the body 105 of the instrument 100 and connected to the second lip 86B of the second cinch member 84B. Likewise, the second loop 65B of the second strap 64B, connected to and extending from the second cinch member 84B, is wrapped under the body 105 of the instrument 100 and connected to the first lip 86A of the first cinch member 84A.
The elasticity of the material of the straps 64 provides for the length of each strap 64 to be easily adjustable to fit different sizes and types of instruments 100. The straps 64 can also be installed and/or removed quickly and without the need for a tool. In an example embodiment, the straps 64 may be fabricated from a material that provides a sufficient width to provide a friction interface between (e.g., in contact with) a surface of the instrument 100 to stabilize the apparatus 10 upon the instrument 100. In another example, a contact (e.g., underside) surface of the straps 64 may include or be coated with a friction material configured to increase friction between the strap 64 and the surface of the instrument 100.
Referring now particularly to
The saddle mounting plate 68 is affixed (e.g., permanently connected or integral) to the top surface of the seat portion 82 of the saddle panel 62. The saddle assembly 60 includes the threaded stud fastener 26 extending upwardly from the center of the top surface of the saddle mounting plate 68. As an example, the saddle assembly 60 includes the central saddle fastener aperture 28 that extends through the center of the saddle mounting plate 68 and through the seat member 82 of the saddle panel 62. The stud fastener 26 extends through the aligned holder fastener aperture 25 and saddle fastener aperture 28 when the holder mounting plate 38 and the saddle mounting plate 68 are engaged.
Each cinch member 84 tapers inwardly from the seat member 82 to the lip 86. As an example, the cinch member 84 includes an opposed pair of curved sides 90. Each side 90 of the cinch member 84 curves inwardly from the side 88 of the seat member 82 to the lip 86 (e.g., an inwardly curved side 90).
The lip 86 extends outwardly, for example, approximately perpendicularly, from the end of the cinch member 84. The lip 86 includes, or forms, a groove 92 and a ridge 94. As an example, a portion of the lip 86 increases in thickness as it extends outwardly from the surface of the cinch member 84 forming the ridge 94 and the groove 92 positioned between the ridge 94 and the surface of the cinch member 84. When the loop 65 formed by the strap 64 (
In an example embodiment, the lip 86 also includes, or forms, an opposed pair of flanges 96. As an example, a portion of the lip 86 (e.g., the ridge 94) increases in length as it extends outwardly from the surface of the cinch member 84 forming the flanges 96 extending outwardly from opposing ends of the ridge 94 beyond the sides of the groove 92, for example, extending beyond the sides 90 of the cinch member 84 at the lip 86. When the loop 65 formed by the strap 64 (
Referring to
In another example embodiment, the strap 64 is (e.g., formed from) a continuous strip (e.g., loop) of elastic material. As an example, the continuous strip of elastic material may extend from the bottom surface of the saddle panel 62 and between and through the associated longitudinally opposed pair of strap apertures 66 formed through the saddle panel 62. In this embodiment, each continuous strip of elastic material of the strap 64 forms an associated loop 65.
In another example, both straps 64 (e.g., the first strap 64A and the second strap 64B) is (e.g., formed from) a continuous strip (e.g., loop) of elastic material. As an example, the continuous strip of elastic material may extend from the bottom surface of the saddle panel 62 between and through the associated laterally opposed pair of strap apertures 66 formed through the saddle panel 62, and between and through the associated longitudinally opposed pair of strap apertures 66 formed through the saddle panel 62. In this embodiment, each continuous strip of elastic material of the strap 64 forms both associated loops 65 (e.g., the first loop 65A and the second loop 65B).
Referring to
Referring to
In another example embodiment, the disclosed apparatus 10 includes the saddle assembly 60 including the saddle panel 62 having a shape approximately matching an outer profile shape of a top portion of the instrument 100. The saddle panel 62 includes the seat member 82 and the pair of cinch members 84. Each (e.g., one) cinch member 84 of the pair of cinch members 84 extends outwardly from each side of the seat member 82. The saddle mounting plate 68 is connected to a first surface of the seat member 82. The saddle mounting plate 68 includes the saddle fastener aperture 28 located through a center of the saddle mounting plate 68 and the seat member 62. The saddle panel 62 includes the opposing pair of lips 86. Each (e.g., one (1)) lip 86 of the pair of lips 86 is disposed on an end of the cinch member 84. The padding layer 76 connected to and coextensive with a second surface of the saddle panel 62. The second surface is adapted to contact the instrument 100 when the saddle panel 62 is placed thereon. The pair of straps 64 is connected to the saddle assembly 60. Each (e.g., one (1)) strap 64 the pair of straps 64 is disposed on each side of the saddle panel 62. Each strap 64 of the pair of straps 64 is configured to be wrapped underneath the bottom portion of the instrument 100 and connected to a corresponding lip 86 of the pair of lips 86 disposed on an opposite side of the saddle panel 62 to secure the saddle assembly 62 to the instrument 100. The apparatus 10 includes the holder assembly 20 connected to the saddle assembly 60. The holder assembly 20 includes the rear panel 22 configured to retain at least one (1) sheet of copy 30 connected to the rear panel 22 and the lower panel 24 extending approximately perpendicularly from a lower end of the rear panel 22. The holder mounting plate 38 is connected to a first surface of the lower panel 24. The holder mounting plate 38 including a holder fastener aperture 25 located through a center of the holder mounting plate 38 and the lower panel 24. The holder mounting plate 38 engages the saddle mounting plate 68 when the holder assembly 20 is connected to the saddle assembly 60. The fastener 26 extends through the first aperture 28 and second aperture 25 when the holder mounting plate 38 and the saddle mounting plate 68 are engaged and the first aperture 28 and second aperture 25 are aligned to fasten the holder assembly 20 to the saddle assembly 60.
In another example embodiment, the disclosed apparatus 10 includes a saddle assembly 60 including the saddle panel 62 having a shape approximately matching an outer profile shape of the top portion of an instrument 100. The saddle panel 62 includes the seat member 62, the first cinch member 84 extending outwardly from a first side of the seat member 62 and the second cinch member 84 extending outwardly from a second side of the seat member 62. The saddle mounting plate 68 is connected to a top surface of the seat member 62. The saddle mounting plate 68 includes the saddle fastener aperture 28 located through a center of the saddle mounting plate 68 and the seat member 62. The saddle mounting plate 68 includes the plurality of detents 40 arranged in a second circular configuration adjacent an edge thereof. The first lip 86A is disposed on an end of the first cinch member 84. The first lip 86A includes the first ridge 94 extending outwardly from the end of the first cinch member 84 and forming the first groove 92 between the first ridge 94 and the first cinch member 84. The second lip 86B is disposed on an end of the second cinch member 84. The second lip 86B includes the second ridge 94 extending outwardly from the end of the second cinch member 84 and forming the second groove 92 between the second ridge 94 and the second cinch member 84. The padding layer 76 is connected to and coextensive with a bottom surface of the saddle panel 62. The bottom surface is adapted to contact the instrument 100 when the saddle panel 62 is placed on the instrument 100. The first elastic strap 64A forming the first continuous loop 65A is connected to a first side of the saddle panel 62 and configured to be wrapped underneath the bottom portion of the instrument 100. The first strap 64A is connected to the second lip 86 to partially secure the saddle assembly 60 to the instrument 100 by the first continuous loop 65A being received within the second groove 92 and retained by the second ridge 94. The second elastic strap 64B forming the second continuous loop 65B connected to a second side of the saddle panel 62 and configured to be wrapped underneath the bottom portion of the instrument 100. The second strap 64B is connected to the first lip 86 to partially secure the saddle assembly 60 to the instrument 100 by the second continuous loop 65B being received within the first groove 92 and retained by the first ridge 94. The apparatus 10 includes the holder assembly 20 connected to the saddle assembly 60. The holder assembly 20 includes the rear panel 22 configured to retain at least one sheet of copy 30 connected to the rear panel 22 and the lower panel 24 extending approximately perpendicularly from a lower end of the rear panel 22. The holder mounting plate 38 is connected to a bottom surface of the lower panel 24. The holder mounting plate 38 includes the holder fastener aperture 25 located through a center of the holder mounting plate 38 and the lower panel 24. The holder mounting plate 38 includes the plurality of protrusions 70 arranged in a first circular configuration adjacent an edge thereof. The holder mounting plate 38 engages the saddle mounting plate 68 when the holder assembly 20 is connected to the saddle assembly 60. The holder assembly 20 is rotatably connected to the saddle assembly 60. Alignment of the plurality of protrusions 70 and the plurality of detents 40 when the holder mounting plate 38 and the saddle mounting plate 68 are engaged and the first aperture 28 and second aperture 25 are aligned maintains an angular orientation of the holder assembly 20 relative to the saddle assembly 60. The holder assembly 20 is removably connected to the saddle assembly 60 by the fastener 26 extending through the first aperture 28 and second aperture 25 when the holder mounting plate 38 and the saddle mounting plate 68 are engaged and the first aperture 28 and second aperture 25 are aligned to fasten the holder assembly 20 to the saddle assembly 60.
It is envisioned that other styles and configurations of the disclosed apparatus 10 can be easily incorporated into the teachings of the present disclosure, and only certain example embodiments have been shown and described for purposes of clarity and disclosure and not by way of limitation of scope.
The example embodiments of the disclosed apparatus 10 can be utilized by user in a simple and effortless manner with little or no training. After initial purchase or acquisition of the apparatus 10, it would be installed as indicated in
Another example embodiment of the disclosed method of utilizing the apparatus 10 may be achieved by performing the following steps: procuring a model of the apparatus 10 that provides a saddle assembly 60 having a suitable fit onto an intended instrument 100; positioning the saddle panel 62 upon the body 105 of the instrument 100; conforming the first cinch member 84A of the saddle panel 62 at least partially around the body 105 of the instrument 100, wrapping a first strap 64A around the body 105; connecting the first loop 65A formed by the first strap 64A to the first lip 86A of the first cinch member 84A; repeating the above steps for the second strap 64B; installing the holder assembly 20 onto the saddle assembly 60, if not previously installed, by inserting the stud portion 26 of the lower mounting plate 68 up through the fastener aperture portion 25 of the upper mounting plate 38; installing the wing nut 27 upon the stud 26 loosely; lifting and rotating the holder assembly 20 to a desired orientation and corresponding viewing angle; lowering the holder assembly 20 to engage the detents 40 and protuberances 70; securing the position of the holder assembly 20 by tightening the wing nut 27; preparing a plurality of sheets of copy 30 in a back-to-back manner; containing the copy 30 by either laminating or inserting the pairs of copy 30 in clear plastic sleeves; punching holes through the copy 30; mounting a desired number of sheets of copy 30 onto the ring portions 32 of the rear panel 22; and, securing the copy 30 to the rear panel 22 using the wire stay 36, as needed.
The apparatus 10 may be used by a marching band members or similar performers using brass instruments 100 to position a plurality of sheets of copy 30 in a hands-free manner. During performances, an observed page of copy 30 may be changed when desired by either flipping one (1) or more sheets over a top portion of the rear plate 22, or by loosening the wing nut 27 and rotating the holder assembly 20 one-hundred eighty degrees (180°) to access additional sheets of copy 30.
Alternate embodiments of the apparatus 10 are envisioned to provide differently sized and shaped saddle panels 62 and corresponding padding 76 designed to conform to exterior contours of different brass instruments 100 from a trumpet to a sousaphone, so as to position the apparatus 10 properly and securely.
The foregoing descriptions of specific embodiments of the present invention have been presented for purposes of illustration and description. They are not intended to be exhaustive or to limit the invention and method of use to the precise forms disclosed. Obviously many modifications and variations are possible in light of the above teaching. The embodiment was chosen and described in order to best explain the principles of the invention and its practical application, and to thereby enable others skilled in the art to best utilize the invention and various embodiments with various modifications as are suited to the particular use contemplated. It is understood that various omissions or substitutions of equivalents are contemplated as circumstance may suggest or render expedient, but is intended to cover the application or implementation without departing from the spirit or scope of the claims of the present invention.
The present invention is a continuation-in-part of U.S. application Ser. No. 14/955,217, filed on Dec. 1, 2015, which is a continuation of, was first described in, and claims the benefit of U.S. Provisional Application No. 62/085,713, filed Dec. 1, 2014, the entire disclosures of which are incorporated herein by reference.
Number | Name | Date | Kind |
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2827732 | Shumaker | Mar 1958 | A |
2828576 | Fismen | Apr 1958 | A |
D255459 | Corder | Jun 1980 | S |
9622572 | Moore | Apr 2017 | B1 |
Number | Date | Country | |
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Parent | 14955217 | Dec 2015 | US |
Child | 15443576 | US |