Cover apparatus for optimal beam implementation for antenna in wireless communication system
US-12183969-B2 · Dec 31, 2024 · US
US9608320B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9608320-B2 |
| Application number | US-201214129500-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 26, 2012 |
| Priority date | Jun 27, 2011 |
| Publication date | Mar 28, 2017 |
| Grant date | Mar 28, 2017 |
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A method for opening a dome for the protection of a device to be protected, fitted in a part described as fixed, in which, in the initial position before opening, a generally plane interface separates the dome from the fixed part, is provided. The method includes connecting the dome to the fixed part by at least two independent double-link connections that are movable in rotation between the dome and the fixed part. The links in a single connection being fitted in common to the dome and to the fixed part to form overall a pantograph in the shape of an isosceles trapezium which, during opening, opens out by pivoting until maximum opening is achieved, so that the dome moves away from the fixed part via a combination of movements in translation and in rotation.
Opening claim text (preview).
The invention claimed is: 1. A method for opening a dome for the protection of a device to be protected, fitted in a part described as fixed, in which, in the initial position before opening, a plane interface separates the dome from the fixed part, the method comprising: connecting the dome to the fixed part by at least two independent double-link connections that are movable in rotation between the dome and the fixed part, the links in a single connection being fitted in common to the dome and to the fixed part to form overall a pantograph in the shape of an isosceles trapezium which, during opening, opens out by pivoting until maximum opening is achieved, so that the dome moves away from the fixed part via a combination of movements in translation and in rotation. 2. The method for opening according to claim 1 , in which the links in a single connection are not parallel to one another at the dome. 3. The method for opening according to claim 2 , in which the links of each connection have a non-zero angle in two different planes. 4. The method for opening according to claim 1 , in which the links of each connection are mounted in articulation on a periphery of the dome. 5. The method for opening according to either claim 1 , in which the opening is an opening out upwards in a use mode, a final open position of the dome defining, relative to the initial position, an angle of opening of between 30° and 80°. 6. The method for opening according to claim 5 , in which automatic locking is provided when the dome has reached the final open position. 7. The method for opening according to claim 6 , in which the automatic locking is produced at the end of a telescopic extension. 8. The method for opening according to claim 6 , in which the connections are dimensioned so that the opening starts with a phase of movement of the dome substantially in translation perpendicular to the plane of the interface, followed by a phase of movement of the dome substantially in translation and rotation around a parallel axis of pivot of the pantograph. 9. The method for opening according to claim 1 , in which the connections to the dome and to the fixed part have a resilience that enables adjustment to be avoided. 10. A radome capable of being connected to a fixed part, comprising: a dome-shaped protective cover; and a plurality of linking mechanisms of which first extremities are connected in rotation to the protective cover and second extremities are connected in rotation to the fixed part onto which a communication system to be protected by the radome is mounted, wherein the plurality of linking mechanisms include at least two connecting pairs, and the first and second extremities of each connecting pair are mounted on a common fitting for connecting in rotation, and in that each connecting pair forms one of the sides of a pantograph shaped as an isosceles trapezium. 11. The radome according to claim 10 , in which the connecting pairs of a single connection have axes of rotation that are not parallel to one another at the fixed part. 12. The radome according to claim 11 , in which the axes of rotation of the connecting pairs of each connection have a non-zero angle in two different planes. 13. The radome according to claim 10 , in which each connecting pair consists of two linking elements made up of a rectilinear guide linkage and an arm of high mechanical strength, each linking element of each connecting pair being capable of pivoting overall around a fixed axis. 14. The radome according to claim 10 , comprising at least two telescopic rods capable of being fixed in rotation to the protective cover and to the fixed part in order to produce automatic locking when the protective cover has reached a final open position. 15. The radome according to claim 14 , in which each connecting pair is shorter than the corresponding telescopic rod. 16. The radome according to claim 10 , in which swivel bearings connect the first and second extremities of the connecting pairs in rotation to the radome, the swivel bearings on a support made of resilient material. 17. The radome according to claim 10 , in which the sides of the isosceles trapezium form an angle of 50° to 70°, with one of the bases of the isosceles trapezium. 18. The radome according to claim 13 , in which the linkage and the arm of each connecting pair have, in lateral projection when in use, an angle of separation of from 5° to 30°. 19. The radome according to claim 13 , in which the arms with high mechanical strength are curved, forming two edges machined as ribs. 20. The method for opening according to claim 1 , in which the links of each connection are mounted in articulation on an inner rim of the dome.
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