Device for electromagnetically probing a sample
11543515 ยท 2023-01-03
Assignee
Inventors
Cpc classification
G01S13/88
PHYSICS
H01Q1/42
ELECTRICITY
G01S13/887
PHYSICS
G01S7/027
PHYSICS
International classification
G01S13/88
PHYSICS
H01Q1/42
ELECTRICITY
Abstract
A device for the non-destructive probing of a sample by means of electromagnetic wave reflection includes a metal body as part of its frame. The metal body forms a lateral wall and a separating wall enclosing an interior space. On a first side of the metal body, a shielding structure forms a plurality of shielded chambers for receiving RF circuitry. Interior space faces the second side of the metal body. A first circuit board containing driver and receiver circuitry is mounted to the first side of the metal body, and a second circuit board containing an antenna structure is mounted to the second side thereof.
Claims
1. A device for the non-destructive probing of a sample by electromagnetic wave reflection, said device comprising: a frame, an antenna structure, a driver electrically connected to said antenna structure for sending a probe signal through said antenna structure, a receiver electrically connected to said antenna structure for receiving an echo signal through said antenna structure, at least a first circuit board, wherein at least part of said driver and/or said receiver is arranged on said first circuit board, at least a second circuit board, wherein said antenna structure is arranged on said second circuit board, a metal body arranged in said frame having first and second opposite sides, at least one electrical connector for electrically connecting said first and second circuit boards, wherein said first circuit board is mounted to the first side of said metal body and said second circuit board is mounted to the second side of said metal body.
2. The device of claim 1 wherein said metal body comprises a lateral wall circumferentially enclosing an interior space adjacent to said second side, wherein said antenna structure is adjacent to said interior space, and in particular wherein the lateral wall extends laterally outside the antenna structure.
3. The device of claim 2 further comprising a damping structure arranged in said interior space, and in particular wherein said damping structure is separate from said metal body.
4. The device of claim 3 wherein said damping structure comprises a conductive foam.
5. The device of claim 2 wherein said metal body comprises a separating wall closing said interior space towards said first side, and in particular wherein said separating wall is closer to said first circuit board than to said second circuit board.
6. The device of claim 5 wherein said metal body comprises a shielding structure extending between said separating wall and said first circuit board and forming several mutually shielded chambers between said separating wall and said first circuit board.
7. The device of claim 6 wherein circuitry of the driver and circuitry of the receiver are backed by different ones of said shielded chambers.
8. The device of claim 5 wherein said separating wall comprises an opening and wherein said connector extends through said opening.
9. The device of claim 1 wherein said antenna structure comprises a sender antenna and a receiver antenna.
10. The device of claim 9 wherein said metal body comprises a shield wall shielding said receiver antenna from said sender antenna, wherein said shield wall ends at said second circuit board.
11. The device of claim 10 wherein said shield wall extends between said second circuit board and said separating wall dividing said interior space into a first chamber backing said sender antenna and a second chamber backing said receiver antenna.
12. The device of claim 1 wherein said electrical connector is a rigid rod having a first plug plugged into said first circuit board and/or a second plug plugged into said second circuit board, and in particular wherein said device comprises at least two such electrical connectors.
13. The device of claim 1 wherein said connector is plugged into said first and/or said second circuit board.
14. The device of claim 1 wherein said first and/or said second circuit board is/are attached to said metal body.
15. The device of claim 1 wherein said metal body is a single metal piece, in particular of aluminum.
16. A device for the non-destructive probing of a sample by electromagnetic wave reflection, said device comprising: a frame, an antenna structure, a driver electrically connected to said antenna structure for sending a probe signal through said antenna structure, a receiver electrically connected to said antenna structure for receiving an echo signal through said antenna structure, at least a first circuit board, wherein at least part of said driver and/or said receiver is arranged on said first circuit board, at least a second circuit board, wherein said antenna structure is arranged on said second circuit board, a metal body arranged in said frame having first and second opposite sides, at least one electrical connector for electrically connecting said first and second circuit boards, wherein said first circuit board is mounted to the first side of said metal body and said second circuit board is mounted to the second side of said metal body, wherein said device further comprises a set of wheels for rolling it along said sample, wherein said wheels are mounted to said metal body, and wherein said metal body comprises: wheel holders for holding said wheels, and a base plate at the second side that extends between a lateral wall and said wheel holders.
17. The device of claim 16 wherein said second circuit board is arranged in an opening of said base plate.
18. A method for probing the structure of concrete comprising using the device of claim 1.
19. A device for the non-destructive probing of a sample by electromagnetic wave reflection, said device comprising a frame, an antenna structure, a driver electrically connected to said antenna structure, wherein said driver includes a digital section for generating a pulse or a CW signal and an analog section for amplifying and/or modulating and/or filtering said signal, a receiver electrically connected to said antenna structure, wherein said receiver comprises an analog section for filtering and/or demodulating and/or amplifying an echo signal as well as a digital section for further signal processing, at least a first circuit board, wherein at least said analog section of said driver and/or said receiver is arranged on said first circuit board, at least a second circuit board, wherein said antenna structure is arranged on said second circuit board, a metal body arranged in said frame having first and second opposite sides, at least one electrical connector for electrically connecting said first and second circuit boards, wherein said first circuit board is mounted to the first side of said metal body and said second circuit board is mounted to the second side of said metal body.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention will be better understood and objects other than those set forth above will become apparent when consideration is given to the following detailed description thereof. This description makes reference to the annexed drawings, wherein:
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MODES FOR CARRYING OUT THE INVENTION
Overview
(12)
(13) It comprises a frame 2 forming a housing enclosing the electronic components of the device.
(14) In the embodiment shown here, the device comprises a set of wheels 4, in particular four wheels, by means of which the device can be guided along the sample at a defined distance therefrom. Instead of four wheels, the device can e.g. also have only two or three wheels, or wheel-like components, such as rollers or sliders.
(15) Further, the housing comprises, at a side opposite to the wheels 4, a handle 6 to be gripped by the user.
(16) The device also comprises input and output devices, such as a touchscreen 8.
(17)
(18) In operation, the user typically moves the device along the sample while control unit 24 performs a stream of measurements. Control unit 24, or circuitry external to the device, can use the recorded data in order to determine the sample's internal structure, e.g. using SAFT (Synthetic Aperture Focusing Technique) technology as it is known to the skilled person.
(19) Mechanical Design:
(20) A core of the device of
(21) Metal body 30 is advantageously a single piece of cast and/or worked metal, in particular aluminum. It comprises a first side 32 and a second side 34 (
(22) Metal body 30 comprises a base plate 36 (
(23) An opening 38 is arranged in base plate 36.
(24) On the side of base plate 36 that faces away from second side 34, metal body 30 forms a lateral wall that extends around opening 38. Lateral wall 40 is advantageously aligned perpendicularly to base plate 36.
(25) Lateral wall 40 encloses, i.e. runs around, an interior space 42, 43.
(26) Metal body 30 further forms a separating wall 44. It extends parallel to, and at a distance from, base plate 36 and borders interior space 42, 43.
(27) Metal body 30 further forms a shield wall 45. It is perpendicular to base plate 36 and extends between two opposite sides of lateral wall 40, thereby dividing interior space 42, 43 into a first chamber 42 and a second chamber 43. Shield wall 45 extends between second side 34 (namely opening 38) and separating wall 44.
(28) Further, metal body 30 forms a shielding structure 46a-46e (see
(29) Metal body 30 further forms wheel holders 50 for holding bearings for the wheels 4 and therefore for holding the wheels 4.
(30) Base plate 36 extends between lateral wall 40 and the wheel holders 50, thereby connecting these parts.
(31) As shown in
(32) As shown in
(33) A first circuit board 54 is attached to first side 32 of metal body 30, namely to shielding structure 46, e.g. by means of screws (sitting in screw openings some of which are denoted with reference number 58 in
(34) A second circuit board 56 is attached to second side 34 of metal body 30, again e.g. by means of screws (sitting in screw openings, some of which are denoted with reference number 50 in
(35) First circuit board 54 holds at least part of the electronics of driver 10, 12 and/or of receiver 14, 16. Advantageously, it holds at least the analog parts 12 and 14 thereof.
(36) First circuit board 54 can be a multi-layer PCB comprising a shield layer 62 that provides radio frequency shielding to the components above it. In this case, at least some of the electronic components of the sender 10, 12 and/or the receiver 14, 16 are on the side of shield layer 62 that faces second side 34 of metal body 30 in order to be shielded.
(37) In order to avoid crosstalk, different parts of the circuitry on first circuit board 54 are located in different ones of the shielded chambers 48. In particular, the circuitry of the driver and the circuitry of the receiver are backed by different ones of the shielded chambers 48.
(38) Second circuit board 56 holds the two antennas 20, 22, which can e.g. be implemented as circular conductive regions or in a bow-tie arrangement structured in a conductive layer of second circuit board 56.
(39) Sender antenna 20 and receiver antenna 22 are on opposite sides of shield wall 45 in order to reduce cross-talk between them.
(40) Further, and as shown in
(41) In order to have a large volume available for damping structure 59 separating wall 44 is advantageously closer to first circuit board 54 than to second circuit board 56.
(42) As mentioned, all of antenna structure 18, i.e. both antennas 20, 22, is backed by interior space 42, 43 such that all the backside of antenna structure 18 is damped.
(43) In the present case, first chamber 42 is arranged at the backside of antenna 20 and second chamber 43 is arranged at the backside of antenna 22.
(44) The antennas 20, 22 on second circuit board 56 have to be electrically connected to first circuit board 54. For this purpose, the present device is provided with at least one electrical connector 60 extending between first and second circuit boards 54, 56. For easy assembly, this electrical connector is plugged into one or both of the circuit boards 54, 56.
(45) In the embodiment of
(46) Advantageously, each connector extends perpendicularly to the circuit boards 54, 56.
(47) For each connector 60, separating wall 44 comprises an opening 66 (
(48) Notes:
(49) Even though, in the present embodiment, each of the first and second circuit boards 54, 56 is formed by a single board, it is possible to assemble each of them from two or more boards, each such board only holding part of the circuitry and antenna structure, respectively. However, using single boards is advantageous because it makes it easier to assemble the device.
(50) While there are shown and described presently preferred embodiments of the invention, it is to be distinctly understood that the invention is not limited thereto but may be otherwise variously embodied and practiced within the scope of the following claims.