Abstract:
A roof hook for mounting of solar installation modules on roofs. The roof hook has a first fastening section, which extends in the X and Y direction for fixing a roof hook, a hook-shaped mount for fixing the solar installation module or a fastening profile for solar installation modules and a second fastening section which runs perpendicular to the first fastening section in the Z direction from the latter. The mount is adjustable on the second fastening section in the Z direction, and fasteners act obliquely to the Z direction for fixing the mount on the fastening section.
Abstract:
The present invention provides a solar cell module support structure comprising: a first support for a solar cell module to be received and supported; a connecting portion connected to the first support; a main frame connected to the connecting portion so as to support the solar cell module and the first support, having the connection portion mounted thereon and having a mounting groove formed along the length thereof so that the location of the connecting portion can be adjusted along the length thereof; second supports which are provided on the lower side of the main frame, support the main frame from the ground surface, are provided in a plurality, and are arranged in a separated manner from each other; and a connection wire for mutually connecting any one of the second supports with another second support.
Abstract:
An adjustable mounting system for mounting solar panels on roofs is disclosed. The system allows a user to mount the solar panels either with or without rails. The mounting assemblies are adjustable to allow the user to mount a base plate in a chosen location (either on a roof joist or other structural member or not) and to adjust the mounting location for the panel in as many as three axis of adjustment from the location of the base plate. A system for mounting and grounding the panels at the same time is also disclosed.
Abstract:
Method and apparatus for a solar energy generating system to provide electricity to a structure ranging from a single family dwelling to multi-unit dwellings to commercial buildings, or a power plant or power grid. The system includes a solar collector having a magnifying lens to direct and focus sun rays to a solar energy collector, a heat transfer unit, boiler, a water heater backup system, a condenser unit and steam engine, and plural electrical energy storage units to store and dispense electricity to the selected type of electricity user.
Abstract:
A system to prevent a sliding nut in a channel in a bar from escaping from the channel, and to prevent the nut from entering a no-go-zone at the end of the channel. The system is adjustable to position the nut at a desirable location along the length of the channels to mount coupling devices onto the bar.
Abstract:
A roof standoff having a base attached to a roof surface using one or more threaded fasteners or screws. The base has a threaded hole that is aligned with a hole in a raised flashing that overlays the base to prevent water from infiltrating the holes in the roof formed by the threaded fasteners. A bolt threadably engages the threaded hole of the base to attach a bracket to the base. Objects may engage with the bracket such that these objects are supported by the roof standoff.
Abstract:
A solar power system can include a rail and a solar module disposed on the rail. A clamp assembly can couple the solar module to the rail. The clamp assembly can have a clamped configuration in which the solar module is secured to the rail and an unclamped configuration. The clamp assembly can comprise an upper clamp member, a lower clamp member coupled to the rail, and a stabilization member mechanically engaging the upper clamp member and the lower clamp member. The stabilization member can prevent rotation of the lower clamp member relative to the rail when the clamp assembly is in the clamped and unclamped configurations. In the unclamped configuration, the stabilization member can be biased such that the upper clamp member is disposed at a sufficient clearance above the rail to permit the insertion of the solar module between the upper clamp member and the rail.
Abstract:
The invention includes an apparatus for mounting a photovoltaic (PV) module on a structure where the apparatus includes a base portion, a stud portion, and a coupling portion. The coupling portion includes a male portion that acts as a spring under load and a clip portion that penetrates the PV module frame to create a grounding bond. The apparatus includes a lower jaw, shaped to pry open a groove, and a key portion that can compress to allow for tolerances. The invention further includes a clip with one or more tabs and one or more teeth. The invention further includes a replacement roof tile which includes a support structure with a horizontal flange, a vertical component, a horizontal component, a flashing with an upper surface and a lower surface, and a tile-shaped metal surface having a curvilinear shape that reflects the shapes of adjacent tiles.
Abstract:
A solar panel deployment system includes a main support frame and a solar panel array providing at least one solar panel, wherein the solar panel array is coupled to the main support frame, and each of the solar panels are mounted in a solar panel frame. The system also includes a lift mechanism coupled to the main support frame and solar panel array, and an array extender/retractor coupled to the solar panel array, wherein the array extender/retractor is actuated to deploy the solar panel array or to retract the solar panel array.
Abstract:
A system and method are disclosed for quickly and easily assembling PV modules into a PV array in a sturdy and durable manner. In examples of the present technology, the system includes various couplings having a first engaging portion adapted to engage a first PV module and a second engaging portion adapted to engage a second PV module. At least one of the engaging portions allows variable positioning of the engaged PV module along the engaging portion.