Faraday cage

The transportable Faraday cage, featuring an inflatable frame and electrically conductive fabric, addresses the impracticality of existing cages by being lightweight, easy to set up, and space-saving, while maintaining effective electromagnetic shielding for device testing.

FR3156276A1Pending Publication Date: 2025-06-06THALES SA
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
FR2023013302
Authority / Receiving Office
FR · FR
Patent Type
Applications
Current Assignee / Owner
Filing Date
2023-11-30
Publication Date
2025-06-06

AI Technical Summary

Technical Problem

Existing Faraday cages are bulky, heavy, and difficult to transport, making them impractical for testing small and medium-sized devices due to their size and weight, as well as the challenge of setting them up and storing them.

Method used

A transportable Faraday cage designed with an inflatable frame and a canvas made of electrically conductive fabric, which can be easily set up and disassembled, allowing for efficient storage and transport, while maintaining effective electromagnetic shielding.

Benefits of technology

The solution provides a lightweight, easily transportable, and space-saving Faraday cage that ensures good electromagnetic shielding, facilitating the testing of small and medium-sized devices with ease and convenience.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure 00000000_0000_ABST
    Figure 00000000_0000_ABST
Patent Text Reader

Abstract

The invention relates to a Faraday cage comprising an inflatable frame (2) and a canvas (3) made of electrically conductive fabric supported by the inflatable frame (2), the canvas (3) comprising an opening portion (30) having an edge (300) detachable from the rest of the canvas (3) so as to allow the cage to be opened, said opening portion (30) comprising on one face an assembly element (302), the rest of the canvas (3) comprising on one face a complementary assembly element (312), the assembly element (302) and the complementary assembly element (312) being electrically conductive and configured to be assembled to each other so as to close the cage, the inflatable frame (2) and the canvas (3) made of electrically conductive fabric each being a single piece. Figure for the abstract: Fig. 1.
Need to check novelty before this filing date? Find Prior Art

Description

Title of the invention: Faraday cage

[0001] The invention relates to a Faraday cage. In particular, the invention relates to a transportable Faraday cage for testing small and medium-sized devices, such as radios.

[0002] Some devices, for example radios, require testing their electromagnetic compatibility (EMC), or ElectroMagnetic Compatibility (EMC). This involves checking the electromagnetic radiation emitted by the components of these devices and the susceptibility of said components to the radiation they receive or are likely to receive.

[0003] To do this, these devices are placed in a Faraday cage. The cages of the prior art are entirely metallic, bulky and heavy.

[0004] Such solutions are not practical, since they are difficult to move. They cannot be handled by a single individual. Their transport is difficult. In addition, they take up space unnecessarily when not in use.

[0005] The invention aims to propose a transportable, lightweight and space-saving Faraday cage while ensuring good electromagnetic shielding.

[0006] The invention proposes for this purpose a Faraday cage comprising an inflatable frame and a canvas made of electrically conductive fabric supported by the inflatable frame, the canvas comprising an opening portion having an edge detachable from the rest of the canvas so as to allow the cage to be opened, said opening portion comprising on one face an assembly element, the rest of the canvas comprising on one face a complementary assembly element, the assembly element and the complementary assembly element being electrically conductive and configured to be assembled to each other so as to close the cage, the inflatable frame and the canvas made of electrically conductive fabric each being in one piece.

[0007] Thanks to its configuration, the Faraday cage according to the invention is easily transportable and lightweight. The inflatable frame can be inflated by a simple pump, such as a hand pump, making the cage very quick and easy to set up. The cage can therefore be used wherever it is needed.

[0008] Storing the cage is also simple since it only needs to be deflated. The cage is therefore very space-saving and can be folded and stored in a bag once deflated. Unlike the prior art, the cage does not take up unnecessary space when not in use.

[0009] The opening portion having a detachable edge makes it possible to simply create an opening in order to be able to access the interior of the Faraday cage. This makes it possible to place a device to be tested or controlled inside the cage, remove it or even handle it.

[0010] The presence of the electrically conductive assembly element and complementary assembly element makes it possible to ensure the electrical assembly and thus the electromagnetic shielding.

[0011] By being supported by the inflatable frame, the canvas contributes as little as possible to the mechanical forces of the Faraday cage. The Faraday cage according to the invention thus wears less quickly.

[0012] Particular preferred convenient features of the Faraday cage according to the invention are presented below.

[0013] One of the connecting element and the complementary connecting element comprises hooks, and the other of the connecting element and the complementary connecting element comprises loops.

[0014] The canvas has a thickness of between 0.07 millimeters and 0.1 millimeters, preferably equal to 0.08 millimeters.

[0015] The opening portion forms all or part of one face of the canvas.

[0016] The Faraday cage has a maximum volume of 1 m3.

[0017] The Faraday cage further comprises a plate configured to be assembled to the canvas in a removable manner.

[0018] The canvas and the plate each comprise several orifices, the plate being configured to be assembled to the canvas by bolts passing through the orifices.

[0019] The plate includes holes configured to allow the passage of cables.

[0020] Other features and advantages of the invention will become apparent in the description below with reference to the appended drawings, given by way of non-limiting example: - [Fig.l] represents a Faraday cage according to an embodiment of the invention and in which an opening portion of the cage is closed; - [Fig.2] represents the Faraday cage of [Fig.l] in which the opening portion is open; - [Fig.3] represents the Faraday cage of [Fig.l] from another angle of view; and - [Fig.4] is a view similar to [Fig.3] and further showing a collector plate of the cage.

[0021] The figures represent a Faraday cage 1 according to one embodiment of the invention.

[0022] The cage 1 may be in a working configuration or in a transport configuration. The cage 1 is shown in the working configuration in FIGS. 1 to 3.

[0023] The cage 1 here has a parallelepiped shape in the operating configuration. The shape of the cage can of course be different.

[0024] Cage 1 has a volume allowing it to accommodate a small or medium-sized device (for example a radio) whose electromagnetic radiation must be controlled. Cage 1 preferably has a maximum volume of 1 m3.

[0025] The cage 1 comprises an inflatable frame 2 and a canvas 3. The volume of the cage 1 corresponds to the volume delimited by the frame 2.

[0026] The frame 2 is made of an electrically insulating material.

[0027] The frame 2 is a single piece. In other words, the cage 1 comprises a single frame 2.

[0028] The frame 2 is inflated when the cage 1 is in the operating configuration. The frame 2 is deflated when the cage 1 is in the transport configuration.

[0029] The canvas 3 is supported by the frame 2. This allows the canvas 3 to participate as little as possible in the mechanical forces of the Faraday cage 1. The canvas 3 is for example sewn to the frame 2. The canvas 3 is in particular sewn to the outside of the frame 2, or in other words to an external face of the frame 2.

[0030] The fabric 3 is made of electrically conductive fabric. The fabric 3 is made of a material having a high electrical conductivity, in particular at least equal to 1.107 S / m. For example, the fabric 3 has an electrical conductivity equal to 3.107 S / m.

[0031] The fabric 3 is for example metallic or made of a metallic alloy. In an exemplary embodiment, the fabric 3 is made of an alloy comprising silver, copper and / or nickel.

[0032] The thickness of the fabric 3 is defined by a compromise between low frequency shielding activity and an acceptable weight, i.e. not too heavy, for the fabric 3. The fabric 3 must in fact be as light as possible in order to facilitate handling and transport of the cage 1, while making it possible to achieve the desired shielding objectives at the frequencies of interest.

[0033] The canvas 3 has a thickness of between 0.07 millimeters and 0.1 millimeters, preferably equal to 0.08 millimeters.

[0034] The configuration of the fabric 3, in particular by the choice of the electrically conductive material having a high conductivity and the optimization of the thickness of the fabric 3, makes it possible to obtain a shielding efficiency greater than 50 dB for frequencies from 1 MHz to 1 GHz.

[0035] According to a specific embodiment making it possible to obtain the targeted shielding effectiveness, in particular greater than 50 dB from 1 MHz to 1 GHz, the fabric 3 is made of an alloy comprising silver, copper and nickel, and the thickness of the fabric 3 is 0.08 millimeters.

[0036] The canvas 3 is a single piece. In other words, the cage comprises a single canvas 3.

[0037] The canvas 3 comprises an opening portion 30. The opening portion 30 forms all or part of a face of the canvas 3. The opening portion 30 forms in the example illustrated an entire face of the canvas 3. The opening portion 30 thus forms an entire face of the cage when the latter is in the operating configuration. The entire face is here also called the front face 32.

[0038] In other non-limiting examples, the opening portion 30 may form another face of the canvas 3 than that shown (here front face 32), form a portion of only one face of the canvas 3 or extend over several faces of the canvas 3.

[0039] According to another exemplary embodiment, the canvas 3 may comprise several opening portions.

[0040] The opening portion 30 comprises a detachable edge 300 from the rest of the canvas 3 (the rest of the canvas being here called the remaining portion 31) so as to allow the cage 1 to be opened. The opening portion 30 thus constitutes the portion of the canvas 3 which can be detached from the remaining portion 31 in order to form an opening in the cage 1. When the edges of the opening portion 30 are detached from the remaining portion 31, as visible in [Fig. 2] representing the open opening portion 30, it is possible to access the interior of the cage 1.

[0041] The detachable edge 300 forms, in the example shown, three edges of the canvas 3, in particular three edges of the front face 32.

[0042] The detachable edge 300 may be formed elsewhere on the fabric 3, and / or have other dimensions and shapes. The detachable edge 300 may form one or more edges of the fabric 3, entirely or in part. The detachable edge 300 may be formed elsewhere than on one of the edges of the fabric 3.

[0043] The remaining portion 31 comprises an edge, called the fixed edge 310. The fixed edge 310 of the remaining portion 31 has the same shape and the same dimensions as the detachable edge 300 of the opening portion 30. The fixed edge 310 and the detachable edge 300 are opposite each other when the cage 1 is in the operating configuration.

[0044] The opening portion 30 has dimensions allowing the insertion and removal of the cage 1 from the device to be tested. The opening portion 30 has, for example, a surface area at least equal to 70% or 80% of the surface area of ​​the front face 32.

[0045] The opening portion 30 comprises on one face, called the assembly face 301, an assembly element 302. The remaining portion 31 of the canvas 3 comprises on one face, called the complementary assembly face 311, a complementary assembly element 312 (visible in [Fig.2]). The assembly face 301 may be an internal face or an external face of the opening portion 30. The complementary assembly face 311 may be an internal face or an external face of the remaining portion 31.

[0046] When the assembly face 301 is the internal face of the opening portion 30, the complementary assembly face 311 is the external face of the remaining portion 31. When the assembly face 301 is the external face of the opening portion 30, the complementary assembly face 311 is the inner face of the remaining portion 31.

[0047] The assembly element 302 and the complementary assembly element 312 are electrically conductive. The assembly element 302 is assembled to the complementary assembly element 312 so as to electrically connect the opening portion 30 and the remaining portion 31. In other words, the assembly of the electrically conductive assembly elements 302 and complementary assembly element 312 together makes it possible to ensure electrical continuity, thus improving the electromagnetic performance of the Faraday cage 1.

[0048] Such a configuration allows good electrical assembly by covering the opening portion 30 and remaining portion 31 at the level of the assembly element 302 and complementary assembly element 312.

[0049] The assembly element 302 extends near the detachable edge 300 and the complementary assembly element 312 extends near the fixed edge 310 (visible in [Fig.2]). The assembly element 302 extends here along the detachable edge 300 and the complementary assembly element 312 extends here along the fixed edge 310. In other words, the assembly element 302, the complementary assembly element 312, the detachable edge 300 and the fixed edge 310 have the same length. Such a configuration makes it possible to ensure electrical continuity.

[0050] For example, one of the joining element 302 and the complementary joining element comprises hooks. The other of the joining element 302 and the complementary joining element comprises loops. In other words, the joining element 302 and the complementary joining element 312 form a hook-and-loop fastener, also known as Velcro after the brand name Velcro. The joining element 302 and the complementary joining element 312 are assembled by being arranged one on top of the other.

[0051] According to an exemplary embodiment, the assembly element 302 and the complementary assembly element 312 each comprise, for example, two portions, called assembly portions and complementary assembly portions. Each assembly portion is configured to be assembled with a respective complementary assembly portion. Of course, the number of assembly portions and complementary assembly portions may also be different.

[0052] The width of the assembly element 302 and the complementary assembly element 312 is defined to also improve electrical continuity.

[0053] The assembly element 302 and the complementary assembly element 312 each have a width of between 3 centimeters and 5 centimeters, preferably equal to 5 centimeters.

[0054] The cage 1 further comprises a window 313. The window 313 is here formed on a rear face 33 of the cage. The rear face 33 is opposite and here parallel to the front face 32. Alternatively, the window 313 can be formed on a side face 34 of the cage 1.

[0055] The window 313 here has a rectangular shape but which can be modified according to needs.

[0056] The window 313 is pre-drilled, i.e. formed directly in the canvas 3 before mounting the cage 1 for its use.

[0057] The canvas 3 comprises several orifices 314. The canvas 3 here comprises twenty orifices 314, but this number can of course be different.

[0058] The orifices 314 extend around the window 313. The orifices 314 are arranged here in a rectangular arrangement. The arrangement may be different, polygonal or not. The arrangement of the orifices 314 depends in particular on the shape of the window 313.

[0059] The orifices 314 are here formed on the rear face 33 of the cage 1. Alternatively, in particular when the window 313 is formed in a lateral face 34 of the cage 1, the orifices 314 are formed on said lateral face 34 of the cage 1.

[0060] The holes 314 are configured to each receive a bolt. Each hole 314 is sized according to the size and type of bolt intended.

[0061] The orifices 314 here have a circular shape but can of course have a different shape.

[0062] The orifices 314 are pre-drilled.

[0063] The fabric 3 preferably comprises a reinforced portion 315. The reinforced portion 315 extends around the orifices 314. The reinforced portion 315 here forms a rectangular frame. The reinforced portion 315 has, for example, a greater thickness than the rest of the fabric 3.

[0064] The Faraday cage 1 further comprises a plate 4 (visible in [Fig.4]), also called a collector plate, configured to be removably assembled to the fabric 3.

[0065] The plate 4 is for example configured to be assembled to the canvas 3 by bolts. The plate 4 comprises orifices 40 configured to allow the passage of the bolts. The plate 4 and the canvas 3 may comprise the same number of orifices 40, 314. The orifices 40 of the plate 4 and the orifices 314 of the canvas 3 have the same dimensions and shape. At least a portion of the orifices 40 of the plate 4 and the orifices 314 of the canvas 3 are opposite each other when the plate 4 is assembled to the canvas 3. The bolts pass through the orifices 40 of the plate 4 and the orifices 314 of the canvas 3, and allow the removable assembly of the plate 4 with the canvas 3.

[0066] The plate 4 has a shape and dimensions making it possible to close the window 313 of the canvas 3 when the plate 4 is assembled to the canvas 3. The plate 4 is assembled on the face comprising the orifices 314 and the window 313.

[0067] The holes 314 and the window 313 of the canvas 3 being pre-drilled, this makes it possible to assemble the plate 4 to the canvas 3 without damaging the canvas 3.

[0068] The plate 4 being assembled to the canvas 3 in a removable manner, this makes it possible to easily change the plate 4, depending on the needs and in particular the device to be tested.

[0069] The orifices 314 and the window 313 of the canvas 3 are preferably formed close to the bottom of the cage 1. The orifices 314 and the window 313 of the canvas 3 are in particular formed as close as possible to the bottom of the cage 1. This makes it possible to avoid (or at least limit) the canvas 3 from supporting the weight of the plate 4. This makes it possible in particular to avoid the canvas 3 from supporting the vertical forces exerted by the plate 4.

[0070] The reinforced portion 315 forms an additional safety feature to prevent the canvas 3 from tearing due to the plate 4. The reinforced portion 315 makes it possible to absorb the lateral forces exerted by the plate 4.

[0071] The plate 4 further comprises holes (not shown in the figures) configured to allow the passage of cables. The shape, number, dimensions and arrangement of the holes vary depending on the device to be tested to be introduced into the cage 1. The plate 4 being removably assembled to the canvas 3, this makes it possible to change the plate 4 easily depending on the needs and in particular the device to be tested. A user can thus have various plates 4, and assemble to the canvas 3 the one that suits him according to his needs.

[0072] Plate 4 allows electrical cables to pass through cage 1 without damaging the shielding. In other words, plate 4 allows cables to pass through cage 1 while still allowing the device placed inside the cage to be tested. The cables are used in particular to power the device inside the cage, to control it, or to monitor it.

[0073] The plate 4 is here assembled on the rear face 33 of the canvas 3 comprising the window 313 and the orifices 314. The assembly of the plate 4 at the rear of the cage makes it easier to connect the cables to the devices introduced into the cage and whose connectors are generally located at the rear of the devices.

[0074] The Faraday cage 1 may further comprise a ground mat 5 or floor.

[0075] The groundsheet 5 is adapted to be arranged on a bottom face of the canvas 3 and extends horizontally when the cage 1 is in the operating configuration. The ground mat 5 thus provides physical protection for the canvas 3, and prevents or limits its damage. The ground mat 5 in fact protects the bottom face of the canvas 3 on which a device whose electromagnetic radiation must be controlled would be placed.

[0076] The ground sheet 5 may be made of the same material as the inflatable frame 2. The ground sheet 5 may also be inflatable.

[0077] The assembly of the Faraday cage 1 is carried out in the following manner.

[0078] The Faraday cage 1, in transport configuration, is placed on the ground. The assembly element 302 and complementary assembly element 312 are assembled together. Then the frame 2 is inflated. The cage 1 deploys little by little.

[0079] If there is one, the ground sheet 5 can be arranged on the bottom face of the canvas 3 before or after inflating the frame 2. In particular, when it is inflatable, the deflated ground sheet 5 can be arranged on the bottom face of the canvas 3 before inflating the frame 2. The ground sheet 5 is inflated after inflating the frame 2.

[0080] In order to move from the operating configuration to the transport configuration, the frame 2 is deflated, and possibly the ground sheet 5 is deflated (if the latter is inflatable).

[0081] The cage in transport configuration can be folded, and is thus very easily transportable and space-saving.

[0082] The Faraday cage according to the invention has many advantages. It is transportable, reducing logistical problems and allowing its use anywhere. It can be easily assembled and disassembled.

[0083] Thanks to the opening portion and its configuration, the invention makes it possible to create a door for the Faraday cage while maintaining very good electrical continuity.

[0084] When assembling the cage, it is not necessary to assemble several elements together to form the cage. Since the frame is a single piece, it does not require the assembly of several elements (for example, several frames) before it can be inflated. Similarly, since the canvas is a single piece, it does not require assembly (for example, several canvases) when assembling the cage and in particular when deploying it in the use configuration. The canvas is also already assembled to the inflatable frame, here sewn to the frame, they form a single block. By simply inflating the frame, the cage is deployed in the use configuration.

Claims

Claims

1. Faraday cage comprising an inflatable frame (2) and a canvas (3) made of electrically conductive fabric supported by the inflatable frame (2), the canvas (3) comprising an opening portion (30) having an edge (300) detachable from the rest of the canvas (3) so as to allow the cage to be opened, said opening portion (30) comprising on one face an assembly element (302), the rest of the canvas (3) comprising on one face a complementary assembly element (312), the assembly element (302) and the complementary assembly element (312) being electrically conductive and configured to be assembled to each other so as to close the cage, the inflatable frame (2) and the canvas (3) made of electrically conductive fabric each being in one piece.

2. The Faraday cage of claim 1, wherein one of the connecting element (302) and the complementary connecting element (312) comprises hooks, and the other of the connecting element (302) and the complementary connecting element (312) comprises loops.

3. Faraday cage according to claim 1 or claim 2, in which the fabric (3) has a thickness of between 0.07 millimeters and 0.1 millimeters, preferably equal to 0.08 millimeters.

4. Faraday cage according to one of claims 1 to 3, in which the opening portion (30) forms all or part of one face of the fabric (3).

5. Faraday cage according to one of claims 1 to 4, having a maximum volume of 1 m3.

6. Faraday cage according to one of claims 1 to 5, further comprising a plate (4) configured to be assembled to the canvas (3) in a removable manner.

7. A Faraday cage according to claim 6, wherein the fabric (3) and the plate (4) each comprise a plurality of orifices (314, 40), the plate (4) being configured to be assembled to the fabric (3) by bolts passing through the orifices (314, 40).

8. A Faraday cage according to claim 6 or claim 7, wherein the plate (4) comprises holes configured to allow the passage of cables.

Citation Information

Patent Citations

  • Monolithic, rigid, inflatable, self-supporting Faraday tent module with a low-profile arch shape, and associated Faraday tent

    FR3069001A1

  • Lightweight portable EMI shielding container

    US5136119A