Shielding box for providing high frequency electromagnetic shielding
09872420 ยท 2018-01-16
Assignee
Inventors
Cpc classification
E05D3/022
FIXED CONSTRUCTIONS
H05K9/0069
ELECTRICITY
E05Y2999/00
FIXED CONSTRUCTIONS
E05Y2201/62
FIXED CONSTRUCTIONS
International classification
H05K9/00
ELECTRICITY
Abstract
A shielding box for providing high frequency electromagnetic shielding where a first housing part and a second housing part are connected to each other by a hinge so as to be displaceable between an open position and a closed position. Further, a lifting mechanism is used which has at least one lifting stud and at least one guide, the guide being mounted to one of the housing parts and the lifting stud being mounted to the guide so as to be displaceable between an extended position and a retracted position in a direction which is generally perpendicular to a plane along which the first and second housing parts abut at each other in the closed position. The lifting stud is adapted for displacing the other one of the housing parts.
Claims
1. A shielding box for providing high frequency electromagnetic shielding, comprising a first housing part and a second housing part which are connected to each other by means of a hinge so as to be displaceable between an open position and a closed position, and further comprising a lifting mechanism having at least one lifting stud and at least one guide, the guide being mounted to one of the housing parts and the lifting stud being mounted to the guide so as to be displaceable between an extended position and a retracted position in a direction which is generally perpendicular to a plane along which the first and second housing parts abut at each other in the closed position, the lifting stud being adapted for displacing the other one of the housing parts, wherein a control slider is mounted to be displaceable between a closing position and a lifting position, the control slider cooperating with the lifting stud.
2. The shielding box of claim 1 wherein the lifting stud is provided with a first hinge element cooperating with a second hinge element, the second hinge element being mounted at the other one of the housing parts.
3. The shielding box of claim 1 wherein a direction of displacement of the lifting stud relative to the guide is oriented radially with respect to a hinge axis around which the first and second hinge elements can pivot with respect to each other.
4. The shielding box of claim 1 wherein the lifting stud is provided with an abutment surface which is adapted for cooperating with the other one of the housing parts at a side which is opposite the side where the hinge is arranged.
5. The shielding box of claim 1 wherein the control slider has a lifting cam which cooperates with the lifting stud, the lifting cam having a holding portion for holding the lifting stud in an extended position.
6. The shielding box of claim 5 wherein the lifting cam has a displacement portion for displacing the lifting stud between an extended position and a retracted position, and vice versa.
7. The shielding box of claim 6 wherein the displacement portion extends along a straight line.
8. The shielding box of claim 5 wherein the lifting stud is provided with a roller bearing for cooperating with the lifting cam.
9. The shielding box of claim 1 wherein a latching cam is arranged at the control slider, the latching cam being adapted for engaging at a latching stud mounted to one of the housing parts.
10. The shielding box of claim 9 wherein a lifting cam is provided which cooperates with the lifting stud, the latching cam opening to a side which faces away from the lifting cam.
11. The shielding box of claim 9 wherein a lifting cam is provided which cooperates with the lifting stud, the latching cam opening to a side which is directed towards the lifting cam.
12. The shielding box of claim 1 wherein a linear drive is provided for displacing the control slider.
13. The shielding box of claim 12 wherein the linear drive comprises a tooth rack and a pinion engaging into the tooth rack.
14. The shielding box of claim 12 wherein a plurality of guides with lifting studs is arranged along opposite sides of the housing part and wherein a plurality of control sliders is arranged along two opposite sides of the housing part, the linear drive cooperating with the control slider such that they are displaced simultaneously.
15. The shielding box of claim 1 wherein a seal is provided for sealing between the housing parts, the seal being spring-biased.
16. The shielding box of claim 1 wherein the plane along which the first and second housing parts abut at each other in the closed position, is oriented horizontally.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention will now be described with reference to the accompanying drawings. In the drawings,
(2)
(3)
(4)
(5)
(6)
(7)
DETAILED DESCRIPTION OF THE INVENTION
(8) In
(9) The two housing parts 10, 12 are made from a material with good electric conductivity. Sheet metal is an example for such material. In the embodiment shown, housing part 10 is in the form of a tray-like bottom part or underside, and housing part 12 is in the form of an upper part or cover.
(10) Housing parts 10, 12 are connected to each other by means of a hinge formed from two hinge elements 14, 16 (please see
(11) In the closed condition, housing parts 10, 12 abut at each other in a plane which is here arranged horizontally. Along the edges of housing part 10 facing housing part 12 and/or along the edges of housing part 12 facing housing part 10, a seal 22 is arranged for achieving an electromagnetic seal between the two housing parts 10, 12. Seal 22 is spring-biased so as to provide the desired elasticity. The process of transferring shielding box 5 from the open condition shown in
(12) For achieving other translational movement of the second housing part 12 with respect to the first housing part 10 and for actively drawing the two housing parts towards each other, a lifting mechanism is provided which will be explained with reference to
(13) Stated in a general manner, there is a first type of lifting mechanism which is used for lifting the hinge axis around which hinge elements 14, 16 pivot with respect to each other, and a second type of lifting mechanism is provided for supporting the edge of upper housing part 12 on the side which is opposite the side where the hinges are arranged.
(14)
(15) The hinge mechanism comprises a guide 24 which is mounted to lower housing part 10. It further comprises a lifting stud 26 which is guided within guide 24 so as to be displaceable in a translational manner. Specifically, lifting stud 26 is displaceable vertically and thus perpendicularly with respect to the plane along which the edges of lower and upper housing parts 10, 12 abut at each other.
(16) At the upper end of lifting stud 26, hinge element 14 is mounted. Hinge element 16 is connected to upper housing part 12.
(17) At the lower end of lifting stud 26, a roller bearing 28 is mounted. In the alternative, a wheel can be used here.
(18) Roller bearing 28 cooperates with a control slider 30 which is mounted displaceably on lower housing part 10. The direction of displacement (see arrow B in
(19) Control slider 30 is provided with a lifting cam 32 on which roller bearing 28 sits. Lifting cam 32 comprises a holding portion 34 which extends horizontally and thus in parallel with direction B. Lifting cam 32 further comprises a displacement portion which extends obliquely with respect to holding portion 34. Specifically, displacement portion 36 starts at the end of holding portion 34 and descends therefrom towards an outer end of control slider 30.
(20) For drawing housing parts 10, 12 towards each other, a latching mechanism is provided. The latching mechanism comprises a latching cam 38 which is formed on control slider 30, and a latching stud 40 which is provided on upper housing part 12. A roller bearing 42 is here mounted on latching stud 40 for reducing friction.
(21) A second type of lifting mechanism is shown in
(22) When upper housing part 12 is displaced towards the closed condition, it can be pivoted downwards until its edge opposite the hinge side is stopped by contacting abutment surface 44. In this condition, upper housing part 12 is held in a certain distance above lower housing part 10 but parallel thereto. Then, control sliders 30 are displaced (towards the left in
(23) At a certain point, upper housing part 12 is supported by lower housing part 10, and lifting stud 26 is disengaged from lifting cam 32. Continued displacement of control slider 30 makes latching cam 38 engage at latching stud 40 so that the housing parts 10, 12 are drawn towards each other until finally, a completely closed and latched condition is achieved, with control sliders 30 being in the positions shown in
(24) In
(25) For displacing control sliders 30 simultaneously, a linear drive is provided which comprises a pinion 50 and a tooth rack 52 at each side of shielding box 5. Pinions 50 are arranged on a common drive shaft 54 which can be rotated by means of a lever. The displacement of tooth rack 52 is transmitted to the control sliders 30 by means of a connection linkage 58.
(26) In