SATELLITE DISH MOUNT DEVICE
20170346153 · 2017-11-30
Inventors
Cpc classification
E04D13/1476
FIXED CONSTRUCTIONS
International classification
F16M13/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A satellite dish mount device for mounting a dish base plate of a satellite dish thereon. The satellite dish mount device includes a flashing attached to a rooftop. The flashing includes a cable receiving member. A base mount block assembly is integrated to the flashing and includes a block member and a top base plate adaptable to mount the dish base plate thereon. The top base plate includes a plurality of first extruded fins and a plurality of second extruded fins. A cable riser assembly enables a cable coupled to the satellite dish to pass via the cable receiving member through the rooftop. The cable riser assembly provides a drip curve arrangement to the cable above the rooftop and between the satellite dish and the strain relief fitting member thereby providing water proof protection to the cable riser assembly and to the rooftop.
Claims
1. A satellite dish mount device comprising: a flashing attached to a rooftop, the flashing comprising a cable receiving member; a base mount block assembly integrated to the flashing and including a block member and a top base plate adaptable to mount a dish base plate of a satellite dish thereon, the top base plate includes a plurality of first extruded fins and a plurality of second extruded fins; and a cable riser assembly having a strain relief fitting member and a connecting member, the cable riser assembly enables a cable coupled to the satellite dish to pass via the cable receiving member to the rooftop, the cable riser assembly provides a drip curve arrangement to the cable passing above the rooftop and between the satellite dish and the strain relief fitting member thereby providing water proof protection to the cable riser assembly and to the rooftop.
2. The satellite dish mount device of claim 1 wherein the drip curve arrangement of the cable directs water falling over the cable towards the rooftop without allowing the water to flow through the cable riser assembly.
3. The satellite dish mount device of claim 1 wherein the plurality of first extruded fins and the plurality of second extruded fins are positioned at a bottom base surface of the top base plate.
4. The satellite dish mount device of claim 1 wherein the plurality of second extruded fins is designed to slide through a groove at the block member thereby engaging the top base plate with the block member.
5. The satellite dish mount device of claim 1 wherein the connecting member is attached to the cable receiving member and the strain relief fitting member is attached to the connecting member.
6. The satellite dish mount device of claim 1 wherein the base mount block assembly equally distributes the weight of the dish base plate of the satellite dish to the rooftop.
7. The satellite dish mount device of claim 1 wherein the flashing includes a bottom surface attached to the rooftop and a top surface includes the cable receiving member, the base mount block assembly and a plurality of drip diverters.
8. The satellite dish mount device of claim 7 wherein the plurality of drip diverters diverts water falling at the top surface of the flashing towards the rooftop thereby preventing water leakage at the cable riser assembly and to the attic of a building.
9. The satellite dish mount device of claim 1 wherein the flashing includes a plurality of flashing connecting holes adaptable to connect the flashing to the rooftop.
10. The satellite dish mount device of claim 1 wherein the top base plate includes a plurality of first rafter bolt holes and a plurality of dish holes positioned at a top base surface thereon.
11. The satellite dish mount device of claim 1 wherein the block member includes a plurality of second rafter bolt holes positioned on a top block surface thereon.
12. The satellite dish mount device of claim 1 wherein the plurality of first extruded fins and the plurality of second extruded fins are adaptable to distribute the weight of the dish base plate equally over each side of at least one roof rafter at the rooftop.
13. The satellite dish mount device of claim 1 wherein the dish base plate of the satellite dish is engaged with the top base plate utilizing a plurality of threaded bolts inserted through the plurality of dish holes and a plurality of dish base holes at the dish base plate.
14. The satellite dish mount device of claim 1 wherein the base mount block assembly attaches to the rooftop by inserting a plurality of rafter bolts through the plurality of first rafter bolt holes aligned with the plurality of second rafter bolt holes at the block member.
15. The satellite dish mount device of claim 1 wherein the top base plate has an extruded portion that defines a notch for a course of roofing shingles located at the rooftop.
16. A satellite dish mount device comprising: a flashing having a top surface and a bottom surface, the bottom surface attached to a rooftop, the top surface including a plurality of drip diverters and a cable receiving member; a base mount block assembly integrated to the top surface of the flashing and including a block member and a top base plate adaptable to mount a dish base plate of a satellite dish thereon, the top base plate including a plurality of first extruded fins and a plurality of second extruded fins; and a cable riser assembly having a connecting member attached to the cable receiving member and a strain relief fitting member attached to the connecting member, the strain relief fitting member and the connecting member receive a cable coupled to the satellite dish and pass the cable via the cable receiving member through the rooftop, the cable riser assembly provides a drip curve arrangement to the cable above the rooftop and between the satellite dish and the strain relief fitting member that directs water falling over the cable towards the rooftop without allowing the water to flow through the cable riser assembly; whereby the cable riser assembly provides water proof protection to the cable riser assembly and the rooftop.
17. The satellite dish mount device of claim 16 wherein the base mount block assembly distributes the weight of the dish base plate of the satellite dish to the rooftop.
18. The satellite dish mount device of claim 16 wherein the plurality of first extruded fins and the plurality of second extruded fins are positioned at a bottom base surface thereon.
19. The satellite dish mount device of claim 16 wherein the plurality of second extruded fins is designed to slide through a groove positioned at the block member thereby engaging the top base plate with the block member.
20. The satellite dish mount device of claim 16 wherein the plurality of drip diverters diverts water falling at the top surface of the flashing towards the rooftop thereby preventing water leakage at the cable riser assembly and to the attic of a building.
21. The satellite dish mount device of claim 16 wherein the top base plate includes a plurality of first rafter bolt holes and a plurality of dish holes positioned at a top base surface thereon.
22. The satellite dish mount device of claim 16 wherein the block member includes a plurality of second rafter bolt holes positioned at a top block surface thereon.
23. The satellite dish mount device of claim 16 wherein the plurality of first extruded fins and the plurality of second extruded fins are adaptable to distribute the weight of the dish base plate equally over each side of at least one roof rafter at the rooftop.
24. The satellite dish mount device of claim 16 wherein the dish base plate of the satellite dish is engaged with the top base plate utilizing a plurality of threaded bolts inserted through the plurality of dish holes at the top base plate and a plurality of dish base holes at the dish base plate.
25. The satellite dish mount device of claim 16 wherein the base mount block assembly attaches to the rooftop by inserting a plurality of rafter bolts through the plurality of first rafter bolt holes aligned with the plurality of second rafter bolt holes.
26. The satellite dish mount device of claim 16 wherein the top base plate has an extruded portion that defines a notch for a course of roofing shingles located at the rooftop.
27. A satellite dish mount device comprising: a flashing having a top surface and a bottom surface, the bottom surface being attached to a rooftop, the top surface including a plurality of drip diverters and a cable receiving member; a base mount block assembly integrated to the top surface of the flashing and including a block member and a top base plate adaptable to mount a dish base plate of a satellite dish at a top base surface thereon, the top base plate including a plurality of first extruded fins and a plurality of second extruded fins at a bottom base surface thereon, the base mount block assembly being adaptable to distribute the weight of the dish base plate of the satellite dish to each side of the rooftop; and a cable riser assembly having a connecting member attached to the cable receiving member and a strain relief fitting member attached to the connecting member, the strain relief fitting member and the connecting member receive a cable coupled to the satellite dish and pass the cable via the cable receiving member to the rooftop, the cable riser assembly providing a drip curve arrangement to the cable above the rooftop and between the satellite dish and the strain relief fitting member which directs water falling over the cable towards the rooftop without allowing the water to flow through the cable riser assembly; whereby the cable riser assembly provides water proof protection to the cable and the rooftop.
28. The satellite dish mount device of claim 27 wherein the plurality of second extruded fins is designed to slide through a groove positioned at the block member thereby engaging the top base plate with the block member.
29. The satellite dish mount device of claim 27 wherein the plurality of first extruded fins and the plurality of second extruded fins distribute the weight of the dish base plate equally over each side of at least one roof rafter at the rooftop.
30. The satellite dish mount device of claim 27 wherein the top base plate includes a plurality of first rafter bolt holes and a plurality of dish holes.
31. The satellite dish mount device of claim 27 wherein the block member includes a plurality of second rafter bolt holes positioned on a top block surface thereon.
32. The satellite dish mount device of claim 27 wherein the dish base plate of the satellite dish is engaged with the top base plate utilizing a plurality of threaded bolts inserted through the plurality of dish holes at the top base plate and a plurality of dish base holes at the dish base plate of the satellite dish.
33. The satellite dish mount device of claim 27 wherein the base mount block assembly attaches to the rooftop by inserting a plurality of rafter bolts through the plurality of first rafter bolt holes aligned with the plurality of second rafter bolt holes.
34. The satellite dish mount device of claim 27 wherein the plurality of drip diverters diverts water falling on the top surface of the flashing towards the rooftop.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Elements in the figures have not necessarily been drawn to scale in order to enhance their clarity and improve understanding of these various elements and embodiments of the invention. Furthermore, elements that are known to be common and well understood to those in the industry are not depicted in order to provide a clear view of the various embodiments of the invention, thus the drawings are generalized in form in the interest of clarity and conciseness.
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DETAILED DESCRIPTION OF THE DRAWINGS
[0032] In the following discussion that addresses a number of embodiments and applications of the present invention, reference is made to the accompanying drawings that form a part hereof, and in which is shown by way of illustration specific embodiments in which the invention may be practiced. It is to be understood that other embodiments may be utilized and changes may be made without departing from the scope of the present invention.
[0033] Various inventive features are described below that can each be used independently of one another or in combination with other features. However, any single inventive feature may not address any of the problems discussed above or only address one of the problems discussed above. Further, one or more of the problems discussed above may not be fully addressed by any of the features described below.
[0034] As used herein, the singular forms “a”, “an” and “the” include plural referents unless the context clearly dictates otherwise. “And” as used herein is interchangeably used with “or” unless expressly stated otherwise. As used herein, the term “about” means +/−5% of the recited parameter. All embodiments of any aspect of the invention can be used in combination, unless the context clearly dictates otherwise.
[0035] Unless the context clearly requires otherwise, throughout the description and the claims, the words ‘comprise’, ‘comprising’, and the like are to be construed in an inclusive sense as opposed to an exclusive or exhaustive sense; that is to say, in the sense of “including, but not limited to”. Words using the singular or plural number also include the plural and singular number, respectively. Additionally, the words “herein,” “wherein”, “whereas”, “above,” and “below” and words of similar import, when used in this application, shall refer to this application as a whole and not to any particular portions of the application.
[0036] The description of embodiments of the disclosure is not intended to be exhaustive or to limit the disclosure to the precise form disclosed. While the specific embodiments of, and examples for, the disclosure are described herein for illustrative purposes, various equivalent modifications are possible within the scope of the disclosure, as those skilled in the relevant art will recognize.
[0037] Referring first to
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[0045] The foregoing description of the preferred embodiment of the present invention has been presented for the purpose of illustration and description. It is not intended to be exhaustive or to limit the invention to the precise form disclosed. Many modifications and variations are possible in light of the above teachings. It is intended that the scope of the present invention not be limited by this detailed description, but by the claims and the equivalents to the claims appended hereto.