Abstract:
To provide an autonomous conveyor (20) interfacing aerial delivery, to handle reception of smart parcels from a drone, and delivering them to a specific compartment (31) inside an office, flat, floor.. The conveyor (20) is made from a motorized carrier-plate (21). A drone delivers the parcel to inside the duct (22) opening over the carrier-plate (21). While the parcel is moving down toward the plate (21), a side scanner fixed on the duct's inner surface, scans a fluorescent code printed on the side of the parcel, to locate which addressed compartment (31) inside the tower this parcel belongs too. A control unit runs the side motors to unwrap the ropes from the pulleys to let the carrier-plate move down with the parcel, until reaching the floor in which the compartment is located. There, a hydraulically piston supported side-plate (33) pushes the box toward the retard able door of the compartment (31), to let the parcel be moved inside the compartment (31).
Abstract:
To provide a police drone (20) for assisting in controlling road traffic issues. A modified drone (20) is used with many built-in devices and mechanisms; a camera (21) is installed in the front side to update a policeman in a patrol, or a control/command center. A mini- scanner (22) is installed in the rear side to scan the documents of a driver sharing in an accident or violating traffic rules, while a mini-printer (23) is installed in the front side under the camera (21) to print traffic fine, police report... etc. The communication in-between the policeman and a driver can be monitored via the camera (21), the speaker (24) at the front bottom side, and the microphone (25) that is installed in the front side in- between the printer (23) and the camera (21 ). A net of diodes (27) screen (26), rotatable around a tubular motor (28) built-in along the lower body of the drone, is expanded down, to show orders to guide drivers.
Abstract:
To provide a police drone (20) for assisting in controlling road traffic issues. A modified drone (20) is used with many built-in devices and mechanisms; a camera (21) is installed in the front side to update a policeman in a patrol, or a control/command center. A mini- scanner (22) is installed in the rear side to scan the documents of a driver sharing in an accident or violating traffic rules, while a mini-printer (23) is installed in the front side under the camera (21) to print traffic fine, police report... etc. The communication in-between the policeman and a driver can be monitored via the camera (21), the speaker (24) at the front bottom side, and the microphone (25) that is installed in the front side in- between the printer (23) and the camera (21 ). A net of diodes (27) screen (26), rotatable around a tubular motor (28) built-in along the lower body of the drone, is expanded down, to show orders to guide drivers.
Abstract:
To provide a rescue drone (20), for rescuing an idle drone (21), it consists of an adjustable length hook (22) to engage with the idle drone, to carry it away, an L- shaped metallic tool (27) to push the idle drone away from the middle of the road, or to help in repositioning it to be at a side that permits for the hook (22) to engage with it, an emergency light (SOS) (28), to assist while hovering over the idle drone located in a road, an electric shock stick (29), which is to be used against any person approaching the idle drone to steal it, a speaker (30) and camera (31), to assist a security person in a command center to assess the case, talk with and warn any person who is trying to steal the idle drone, or to advise and guide a volunteer who is trying to help and assist in rescuing the idle drone.
Abstract:
A Safety/stability tool (20) for a mini aircraft (21) is provided, the aircraft block is to be penetrated by two parallely rigid, tensioned, and fixed ropes (22) extending from the top of the facade, toward the bottom basket (23), wherein a set of four side cylindrical bearings (24) are surrounding each rope (22) at the top and lower surfaces of the block (21). The ropes (22) serve as a guide, over which the mini aircraft (21) is guided to glide. In case of emergency, wherein the mini aircraft (21) gets idle, the mini aircraft 20 would not fell sideways, but it will fell down toward a basket (23), which is provided by a collapsible net (25), and a spongy base (26), while the mini aircraft (21) itself has an air cushion (27) too, installed on its bottom, this arrangement prevents the smash of the aircraft (21), and may let it bounce up and down along the ropes (22), until settling down inside the basket (23).
Abstract:
To provide a firefighters drone arrangement (20), such that the drones (21) are installed on an on-tank support base (32) on the top surface of the truck's (22) tank (23), wherein the hydrant (26) is extended through a carrier ring (27) at bottom of each drone (21), and pulled up while the drones (21) are released up. The drones set (24) can either use a set of two drones, such that the leader drone (29) is carrying up the tip of the hydrant (26) to spray toward the fire, while the second supporting drone (30) is carrying the hydrant's (26) extension away from the building, such that this arrangement (20) is used for firefighting of a fire blowing out of a fiat in a high rise building, or the set of drones (24) are to be made of three or more, to create an arc shape for the hydrant (26) over the inaccessible terrain toward a deep unreachable fire inside a forest.
Abstract:
To provide a motorized cleaning apparatus (20), that is manually effective in adjusting the horizontal destance of a rotatable brush (21) from a facade according to its variable protrusions details. On each of the the right and left hands of a worker supporting chair, rails (24) are installed, supporting from the back balance blocks, and supporting from their top sides two slideable beams (26), holding a motor housing, which is linked from its front side to an intermediate shaft (30) via a supporting frame (31), a belt installed on a drive gear from the motor side drives the intermediate shaft (30), which is driving via its end gears the brush's shaft (39), using two toothed belts. To support the brush (21), its shaft is linked from its both ends to the intermediate shaft (30) through a two U-shaped joints (40), which are inserted inside the ends of the intermediate shaft (30) and the brush's shaft (39), wherein carrier bearings are installed in-between them.
Abstract:
To provide drones service aero-carrier (20), a big drone (20) is carrying and supporting two levels of trays (21), (22), each tray is divided into many compartments, where a loaded mini drone (24) or parcels (25) are to be located. The aero-carrier is connected to the trays (21), (22) from its bottom center via a telescopic shaft (26), which is welded to the top tray (21), and penetrating it toward the lower tray (22), where it is welded to it too. Trays space (gap) adjustment mechanism is provided too, depending on a motor, pulleys, and strings, to pull up the trays (21), (22) with the telescopic shaft (26) to hold the mini drones, or parcels while in flight, or to let the trays (21), (22) move down to expand the gap to the mini drones to be released out while unloading the aero-carrier (20).
Abstract:
To provide an autonomous ground station (20) for interfacing aerial delivery, which handles autonomously the reception of a smart parcel box (21) from a drone (22), then delivering each content in each sub-parcel to a specific person, and returning back the empty smart parcels to the drone (22). The station (20) is made of many empty coupled in-out columns (30) opened to receive boxes (21) from drones to move inside the machine (20), wherein each box (21) is made of cells (24), containing sub-parcels, to be delivered via a mini-gate (25), that is actuated after entering the sub-parcel code to the machine (20) via a data entry system (38). The boxes are moved through the station (20) from the inlet downward under gravity, and then depending on hydraulically piston supported plates (40), (41) it is pushed to the exit column (32), and then out to be collected via the drone 22).
Abstract:
To provide drones service aero-carrier (20), a big drone (20) is carrying and supporting two levels of trays (21), (22), each tray is divided into many compartments, where a loaded mini drone (24) or parcels (25) are to be located. The aero-carrier is connected to the trays (21), (22) from its bottom center via a telescopic shaft (26), which is welded to the top tray (21), and penetrating it toward the lower tray (22), where it is welded to it too. Trays space (gap) adjustment mechanism is provided too, depending on a motor, pulleys, and strings, to pull up the trays (21), (22) with the telescopic shaft (26) to hold the mini drones, or parcels while in flight, or to let the trays (21), (22) move down to expand the gap to the mini drones to be released out while unloading the aero-carrier (20).