IP Library › Granted Patent US 10,886,624
Granted Patent B2
US 10,886,624 · App. 15/579,054 · Granted Jan 5, 2021

Waveguide coupling configuration for a line scanner

Inventors: Steffen Wälde (Niedereschach, DE); Daniel Schultheiss (Hornberg, DE)
Assignee: VEGA Grieshaber KG
H01Q21/0037G01B15/04G01F23/284H01Q1/225H01Q21/08H01P5/107H01Q19/19
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,886,624
App. No.
15/579,054
Granted
Jan 5, 2021
Kind
B2
Abstract

Exemplary waveguide coupling configuration can be provided for a fill level radar antenna, e.g., in the form of a line scanner. The exemplary waveguide coupling configuration can include a waveguide openings on the antenna side which can have a distance from one another that can correspond to less than or equal to one half of the wavelength of the transmission signal. For example, the distance between adjacent radiator elements can be greater than one half of the wavelength of the transmission signal. In this exemplary manner, more space can be provided for a front end on the printed circuit board.

Claims (33)

1. A waveguide coupling configuration for a fill level radar antenna, comprising:

a plurality of radiator elements, each of the radiator elements being configured to at least one of transmit or receive a radar signal; and

a plurality of waveguides, one of the waveguides being provided for each of the radiator elements, and configured to transmit or receive the radar signal to or from the corresponding one of the radiator elements to an antenna element of an antenna assembly,

wherein the antenna assembly comprises a plurality of antenna elements, each of the antenna elements being configured to at least one of emit or receive one of the radar signals towards or from a filling material, respectively,

wherein each of the waveguides comprises a waveguide opening on an antenna side of the antenna assembly,

wherein a distance between at least two adjacent openings is less than or equal to one half of a wavelength of the respective radar signal, and

wherein a distance between at least two adjacent radiator elements is greater than one half of a wavelength of the respective radar signal.

2. The waveguide coupling configuration according to claim 1 , herein a distance between adjacent ones of the radiator elements is twice as great as a distance between adjacent ones of waveguide openings of the waveguides on an antenna side of the antenna assembly.

3. The waveguide coupling configuration according to claim 1 , wherein every second one of the radiator elements is arranged along a first straight line, and wherein remaining ones of the radiator elements are arranged along a second line extending in parallel with respect to the first line.

4. The waveguide coupling configuration according to claim 1 , wherein the radiator elements are arranged at least partially on different planes with respect to one another.

5. The waveguide coupling configuration according to claim 1 , wherein the waveguide openings on an antenna side of the antenna assembly are arranged along a line.

6. The waveguide coupling configuration according to claim 1 , wherein at least one of the waveguides is a curved or angular waveguide, wherein at least one of the radiator elements associated with a respective one of the waveguides is not arranged directly below a waveguide opening on an antenna side of the antenna assembly, and arranged is laterally offset with respect thereto.

7. A fill level radar antenna comprising:

a waveguide coupling configuration for a fill level radar antenna, comprising:

a. a plurality of radiator elements, each of the radiator elements being configured to at least one of transmit or receive a radar signal; and

b. a plurality of waveguides, one of the waveguides being provided for each of the radiator elements, and configured to transmit or receive the radar signal to or from the corresponding one of the radiator elements to an antenna element of an antenna assembly,

wherein the antenna assembly comprises a plurality of antenna elements, each of the antenna elements being configured to at least one of emit or receive one of the radar signals towards or from a filling material, respectively,

wherein each of the waveguides comprises a waveguide opening on an antenna side of the antenna assembly,

wherein a distance between at least two adjacent openings is less than or equal to one half of a wavelength of the respective radar signal, and

wherein a distance between at least two adjacent radiator elements is greater than one half of a wavelength of the respective radar signal.

8. The fill level radar antenna according to claim 7 , wherein the level radar antenna has a configuration of a horn radiator array antenna.

9. The fill level radar antenna according to claim 7 , wherein the level radar antenna has a configuration of a parabolic trough.

10. The fill level radar antenna according to claim 7 , wherein the level radar antenna has a configuration of a one-dimensional array antenna.

11. The fill level radar antenna according to claim 7 , wherein the level radar antenna has a configuration of a two-dimensional array antenna.

12. A fill level measurement device comprising a fill level radar antenna which comprises:

a waveguide coupling configuration for a fill level radar antenna, comprising:

a. a plurality of radiator elements, each of the radiator elements being configured to at least one of transmit or receive a radar signal; and

b. a plurality of waveguides, one of the waveguides being provided for each of the radiator elements, and configured to transmit or receive the radar signal to or from the corresponding one of the radiator elements to an antenna element of an antenna assembly,

wherein the antenna assembly comprises a plurality of antenna elements, each of the antenna elements being configured to at least one of emit or receive one of the radar signals towards or from a filling material, respectively,

wherein each of the waveguides comprises a waveguide opening on an antenna side of the antenna assembly,

wherein a distance between at least two adjacent openings is less than or equal to one half of a wavelength of the respective radar signal, and

wherein a distance between at least two adjacent radiator elements is greater than one half of a wavelength of the respective radar signal.

13. The fill level measurement device according to claim 12 , wherein the fill level measurement device is configured to determine a topology of a surface of the filling material.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 21, 2017
From: SCHULTHEISS, DANIEL; WAELDE, STEFFEN
To: VEGA GRIESHABER KG
Reel/Frame 044467/0341 →
Continuity (1)
Related Publication 20180287264A1 · Oct 4, 2018