IP Library › Granted Patent US 11,431,362
Granted Patent B2
US 11,431,362 · App. 17/084,567 · Granted Aug 30, 2022

Low noise block down converter for receiving satellite broadcasting and antenna apparatus including the same

Inventor: Youn Gil Jang (Changwon-si, KR)
Assignee: ATRON CO., LTD.
H04B1/0475H04B1/0466H04B2001/0416
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Quick Facts
Patent No.
US 11,431,362
App. No.
17/084,567
Granted
Aug 30, 2022
Kind
B2
Abstract

A low noise block down converter for receiving satellite broadcasting comprises an input terminal; a low noise amplifying unit including one or more low noise amplifiers configured to amplify a signal received from the input terminal, and a built-in cavity waveguide band pass filter configured to pass a frequency band being higher or lower than a frequency band of a predetermined terrestrial transmission signal among satellite broadcasting frequency bands of signals amplified by the one or more low noise amplifiers; and a mixer configured to convert the signal output from the low noise amplifying unit into an intermediate frequency signal by mixing the signal output from the low noise amplifying unit with a local oscillation signal.

Claims (29)

1. A low noise block down converter for receiving satellite broadcasting, comprising:

an input terminal;

a low noise amplifying unit including one or more low noise amplifiers configured to amplify a signal received from the input terminal, and a built-in cavity waveguide band pass filter configured to pass a frequency band being higher or lower than a frequency band of a predetermined terrestrial transmission signal among satellite broadcasting frequency bands of signals amplified by the one or more low noise amplifiers, the built-in cavity waveguide band pass filter having an input pin and an output pin;

a circuit board including a mounting surface on which the one or more low noise amplifiers are mounted, a filter input terminal to which the input pin is connected, and a filter output terminal to which the output pin is connected; and

a mixer configured to convert signal output from the low noise amplifying unit into an intermediate frequency signal by mixing the signal output from the low noise amplifying unit with a local oscillation signal, the mixer being mounted on the mounting surface.

2. The low noise block down converter of claim 1 , wherein the mixer is an active mixer configured to amplify one or more of the signal output from the low noise amplifying unit and the intermediate frequency signal.

3. The low noise block down converter of claim 1 , wherein the predetermined terrestrial transmission signal is a 5G mobile communication signal.

4. The low noise block down converter of claim 1 , wherein the satellite broadcasting frequency bands include a C-band satellite broadcasting frequency band.

5. The low noise block down converter of claim 1 , further comprising an intermediate frequency amplifying unit including an intermediate frequency amplifier configured to amplify a signal output from the mixer, and a low pass filter configured to remove a frequency band corresponding to the frequency band of the predetermined terrestrial transmission signal among signals output from the intermediate frequency amplifier.

6. The low noise block down converter of claim 1 , further comprising a local oscillation circuit unit including a PLL module configured to generate a signal including a predetermined local oscillation frequency and a local oscillation amplifier configured to amplify a signal generated by the PLL module, and configured to output the local oscillation signal.

7. The low noise block down converter of claim 1 , wherein the circuit board further includes a concave part providing a space in which the built-in cavity waveguide band pass filter is directly fixed to a housing.

8. The low noise block down converter of claim 7 , wherein the housing comprises a part fixing unit including a bottom plate to which the circuit board and the built-in cavity waveguide band pass filter are fixed.

9. The low noise block down converter of claim 1 , wherein the built-in cavity waveguide band pass filter comprises a body part including one or more cavities forming a waveguide, and a cover part configured to cover an upper portion of the body part.

10. An antenna apparatus comprising:

a reflector configured to concentrate radio waves through reflection;

a feed horn configured to receive the radio waves concentrated by the reflector; and

a low noise block down converter for receiving satellite broadcasting, comprising:

an input terminal;

a low noise amplifying unit including one or more low noise amplifiers configured to amplify a signal received from the input terminal, and a built-in cavity waveguide band pass filter configured to pass a frequency band being higher or lower than a frequency band of a predetermined terrestrial transmission signal among satellite broadcasting frequency bands of signals amplified by the one or more low noise amplifiers, the built-in cavity waveguide band pass filter having an input pin and an output pin;

a circuit board including a mounting surface on which the one or more low noise amplifiers are mounted, a filter input terminal to which the input pin is connected, and a filter output terminal to which the output pin is connected; and

a mixer configured to convert signal output from the low noise amplifying unit into an intermediate frequency signal by mixing the signal output from the low noise amplifying unit with a local oscillation signal, the mixer being mounted on the mounting surface.

11. The antenna apparatus of claim 10 , wherein the mixer is an active mixer configured to amplify one or more of the signal output from the low noise amplifying unit and the intermediate frequency signal.

12. The antenna apparatus of claim 10 , wherein the predetermined terrestrial transmission signal is a 5G mobile communication signal.

13. The antenna apparatus of claim 10 , wherein the satellite broadcasting frequency bands include a C-band satellite broadcasting frequency band.

14. The antenna apparatus of claim 10 , the low noise block down converter further comprising an intermediate frequency amplifying unit including an intermediate frequency amplifier configured to amplify a signal output from the mixer, and a low pass filter configured to remove a frequency band corresponding to the frequency band of the predetermined terrestrial transmission signal among signals output from the intermediate frequency amplifier.

15. The antenna apparatus of claim 10 , the low noise block down converter further comprising a local oscillation circuit unit including a PLL module configured to generate a signal including a predetermined local oscillation frequency and a local oscillation amplifier configured to amplify a signal generated by the PLL module, and configured to output the local oscillation signal.

16. The antenna apparatus of claim 10 , wherein the circuit board further includes a concave part providing a space in which the built-in cavity waveguide band pass filter is directly fixed to a housing.

17. The antenna apparatus of claim 16 , wherein the housing comprises a part fixing unit including a bottom plate to which the circuit board and the built-in cavity waveguide band pass filter are fixed.

18. The antenna apparatus of claim 10 , wherein the built-in cavity waveguide band pass filter comprises a body part including one or more cavities forming a waveguide, and a cover part configured to cover an upper portion of the body part.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 3, 2020
From: JANG, YOUN GIL
To: ATRON CO., LTD.
Reel/Frame 054254/0488 →
Priority Claims (1)
KR 10-2019-0138282 · Nov 1, 2019 · national
Continuity (1)
Related Publication 20210135696A1 · May 6, 2021