Patent classifications
B66F19/00
Device for removing, storing and installing convertible SUV hard tops
A device designed for the removal, storage, and installation of removable hardtops from convertible sport utility vehicles, comprising a wheeled base unit, a vertical support structure and a platform assembly, wherein the base unit is aligned directly below the platform unit and the vertical support structure connects them together, wherein the device can be disassembled for simple shipping, is adjustable for height and depth to accommodate different SUV models, and includes markers for easy assembly.
FLYING VEHICLE SYSTEMS AND METHODS
An example charging station for an unmanned aerial vehicle (UAV), the charging station generally including a nest and a charging device. The nest includes an upper portion and a lower portion. The upper portion defines an upper opening sized and shaped to receive a landing apparatus of the UAV, and a diameter of the nest reduces from a first diameter at the upper opening to a second diameter at the lower portion. The charging device is mounted in the nest, and includes a first contact pad and a second contact pad. The charging device is configured to apply a voltage differential across the first contact pad and the second contact pad such that the charging station is operable to charge a power supply of the UAV via the landing apparatus.
FLYING VEHICLE SYSTEMS AND METHODS
A method according to certain embodiments generally involves operating a system including an unmanned aerial vehicle (UAV) and a base station. The base station includes a nest including an upper opening having an upper opening diameter and a lower opening having a lower opening diameter less than the upper opening diameter. The lower opening is accessible from within the base station. The method generally includes landing the UAV within the nest such that a portion of the UAV is accessible via the lower opening, releasably attaching a load to the UAV, and operating the UAV to deliver the load to a destination.
Transportable lifting device
A transportable lifting device (10) comprising: an upright (12); an arm (13) connectable to the upper end of said upright (12); a diagonal (14) for connecting said arm (13) and said upright (12); characterized in that said arm (13) is fixed to said upright (12) by means of a first joint (30, 35); said diagonal (14) is fixed to said upright (12) by means of a second joint (32, 41); said diagonal (14) is fixed to said arm (13) by means of a third joint (36, 40); said first joint (30, 35), said second joint (32, 41) and said third joint (36, 40) are of the type with double tenon and mortise; said first joint (30, 35) comprises: two hooks (35) placed at the end of the arm (13); two vertical slots (30) placed on the upright (12).
Transportable lifting device
A transportable lifting device (10) comprising: an upright (12); an arm (13) connectable to the upper end of said upright (12); a diagonal (14) for connecting said arm (13) and said upright (12); characterized in that said arm (13) is fixed to said upright (12) by means of a first joint (30, 35); said diagonal (14) is fixed to said upright (12) by means of a second joint (32, 41); said diagonal (14) is fixed to said arm (13) by means of a third joint (36, 40); said first joint (30, 35), said second joint (32, 41) and said third joint (36, 40) are of the type with double tenon and mortise; said first joint (30, 35) comprises: two hooks (35) placed at the end of the arm (13); two vertical slots (30) placed on the upright (12).
AN EXTRACTION UNIT FOR EXTRACTING A ROBOT
An extraction unit that may includes a handle, a bendable intermediate element; and an extraction unit interfacing element that is configured to interface with a robot; wherein the bendable intermediate element is connected between the handle and the extraction unit interfacing element.
AN EXTRACTION UNIT FOR EXTRACTING A ROBOT
An extraction unit that may includes a handle, a bendable intermediate element; and an extraction unit interfacing element that is configured to interface with a robot; wherein the bendable intermediate element is connected between the handle and the extraction unit interfacing element.
Flying vehicle systems and methods
An example charging station for an unmanned aerial vehicle (UAV), the charging station generally including a nest and a charging device. The nest includes an upper portion and a lower portion. The upper portion defines an upper opening sized and shaped to receive a landing apparatus of the UAV, and a diameter of the nest reduces from a first diameter at the upper opening to a second diameter at the lower portion. The charging device is mounted in the nest, and includes a first contact pad and a second contact pad. The charging device is configured to apply a voltage differential across the first contact pad and the second contact pad such that the charging station is operable to charge a power supply of the UAV via the landing apparatus.
TRANSFORMER LID LIFTING TOOL
A transformer lid lifting tool is disclosed. The transformer lid lifting tool including a handle; a rail pivotally connected to the handle; and a hook connected to a first end of the rail, the hook being configured to engage a bottom edge of a transformer lid.
TRANSFORMER LID LIFTING TOOL
A transformer lid lifting tool is disclosed. The transformer lid lifting tool including a handle; a rail pivotally connected to the handle; and a hook connected to a first end of the rail, the hook being configured to engage a bottom edge of a transformer lid.