IP Library Granted Patent US 11,894,867
Granted Patent B2
US 11,894,867 · App. 17/678,611 · Granted Feb 6, 2024

Transmission device and electronic device

Inventor: Masaru Sato (Isehara, JP)
Assignee: FUJITSU LIMITED
H04B1/0458H04B1/0057H04B1/0483
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Quick Facts
Patent No.
US 11,894,867
App. No.
17/678,611
Granted
Feb 6, 2024
Kind
B2
Abstract

A transmission device includes a signal source configured to output a local signal with a first frequency, a first amplifier configured to amplify the local signal output from the signal source, a first mixer configured to mix a first input signal with an intermediate frequency and the local signal amplified by the first amplifier and to output a first output signal, and a second mixer configured to mix the first output signal output from the first mixer and the local signal amplified by the first amplifier and to output a second output signal.

Claims (69)

1. A transmission device comprising:

a signal source configured to output a local signal with a first frequency;

a first amplifier configured to amplify the local signal output from the signal source;

a first mixer configured to mix a first input signal with an intermediate frequency and the local signal amplified by the first amplifier and to output a first output signal; and

a second mixer configured to mix the first output signal output from the first mixer and the local signal amplified by the first amplifier and to output a second output signal.

2. The transmission device according to claim 1 , further comprising:

a second amplifier provided between the first mixer and the second mixer, and configured to amplify the first output signal output from the first mixer and to output the first output signal to the second mixer.

3. The transmission device according to claim 1 , further comprising:

a high-pass filter provided with an output side of the second mixer, and configured to pass through a signal in a band that includes a second frequency that is twice of the first frequency.

4. The transmission device according to claim 1 , further comprising:

a third mixer configured to mix a second input signal with the intermediate frequency and the local signal amplified by the first amplifier, the second input signal having a phase different from the first input signal by 90 degrees, and to output a third output signal;

a fourth mixer configured to mix the third output signal output from the third mixer and the local signal amplified by the first amplifier and to output a fourth output signal;

a phase shifter configured to adjust a phase of the fourth output signal to match phases of the second output signal and the fourth output signal; and

an adder configured to add the second output signal and the fourth output signal of which the phases are matched.

5. The transmission device according to claim 4 , further comprising:

a high-pass filter provided with an output side of the adder, and configured to pass through a signal in a band that includes a second frequency that is twice of the first frequency.

6. The transmission device according to claim 4 , further comprising:

a second amplifier provided between the first mixer and the second mixer, and configured to amplify the first output signal output from the first mixer and to output the first output signal to the second mixer; and

a third amplifier provided between the third mixer and the fourth mixer, and configured to amplify the third output signal output from the third mixer and to output the third output signal to the fourth mixer.

7. The transmission device according to claim 4 ,

wherein the first amplifier includes

a fourth amplifier that is provided between the signal source and the first mixer, amplifies the local signal output from the signal source, and outputs the local signal amplified by the fourth amplifier to the first mixer,

a fifth amplifier that is provided between the signal source and the second mixer, amplifies the local signal output from the signal source, and outputs the local signal amplified by the fifth amplifier to the second mixer,

a sixth amplifier that is provided between the signal source and the third mixer, amplifies the local signal output from the signal source, and outputs the local signal amplified by the sixth amplifier to the third mixer, and

a seventh amplifier that is provided between the signal source and the fourth mixer, amplifies the local signal output from the signal source, and outputs the local signal amplified by the seventh amplifier to the fourth mixer.

8. The transmission device according to claim 7 , wherein the fourth to seventh amplifiers are achieved by high electron mobility transistors.

9. The transmission device according to claim 1 , further comprising:

a third mixer configured to mix a second input signal with the intermediate frequency and a local signal amplified by the first amplifier, the second input signal having a phase different from the first input signal by 90 degrees, and to output a third output signal;

a fourth mixer configured to mix the third output signal output from the third mixer and the local signal amplified by the first amplifier and to output a fourth output signal;

a phase shifter configured to adjust a phase of the fourth output signal to match phases of the second output signal and the fourth output signal; and

a subtractor configured to output a difference between the second output signal and the fourth output signal of which the phases are matched.

10. The transmission device according to claim 9 , further comprising:

a high-pass filter provided with an output side of the subtractor, and configured to pass through a signal in a band that includes a second frequency that is twice of the first frequency.

11. The transmission device according to claim 1 ,

wherein the first amplifier includes

a fourth amplifier that is provided between the signal source and the first mixer, amplifies the local signal output from the signal source, and outputs the local signal amplified by the fourth amplifier to the first mixer, and

a fifth amplifier that is provided between the signal source and the second mixer, amplifies the local signal output from the signal source, and outputs the local signal amplified by the fifth amplifier to the second mixer.

12. The transmission device according to claim 1 , wherein the first frequency is 150 GHz.

13. A transmission device comprising:

a signal source configured to output a local signal with a first frequency;

a differential output circuit coupled to an output side of the signal source, and configured to generate, from the local signal, a differential signal that includes a first local signal and a second local signal obtained by inverting a phase of the first local signal and to output the differential signal;

a first amplifier provided with an output side of the differential output circuit, and configured to amplify the first local signal;

a second amplifier provided with an output side of the differential output circuit, and configured to amplify the second local signal;

a first mixer configured to mix a first input signal with an intermediate frequency and the first local signal amplified by the first amplifier and to output a first output signal;

a second mixer configured to mix a second input signal obtained by inverting a phase of the first input signal and the second local signal and to output a second output signal;

a third mixer configured to mix the first output signal output from the first mixer and the local signal and to output a third output signal;

a fourth mixer configured to mix the second output signal output from the second mixer and the local signal and to output a fourth output signal; and

an adder configured to add the third output signal output from the third mixer and the fourth output signal output from the fourth mixer.

14. The transmission device according to claim 13 , further comprising:

a first matching circuit provided between the first mixer and the third mixer, and configured to pass through a signal in a band of the first frequency; and

a second matching circuit provided between the second mixer and the fourth mixer, and configured to pass through the signal in the band of the first frequency.

15. The transmission device according to claim 13 ,

wherein the third mixer is a harmonic mixer that mixes the first output signal output from the first mixer and the local signal and outputs the third output signal that has a frequency that is triple of the first frequency, and

wherein the fourth mixer is a harmonic mixer that mixes the second output signal output from the second mixer and the local signal and outputs the fourth output signal that has a frequency that is triple of the first frequency.

16. The transmission device according to claim 13 , wherein the first amplifier and the second amplifier are achieved by high electron mobility transistors.

17. An electronic device comprising:

a data output device configured to output a first input signal with an intermediate frequency; and

a transmission device configured to include

a signal source configured to output a local signal with a first frequency,

a first amplifier configured to amplify the local signal output from the signal source,

a first mixer configured to mix the first input signal and the local signal amplified by the first amplifier and to output a first output signal, and

a second mixer configured to mix the first output signal output from the first mixer and the local signal amplified by the first amplifier and to output a second output signal.

18. The electronic device according to claim 17 ,

wherein the data output device outputs the first input signal and a second input signal with the intermediate frequency, the second input signal having a phase different from the first input signal by 90 degrees, and

wherein the transmission device further includes

a third mixer configured to mix the second input signal and the local signal amplified by the first amplifier, and to output a third output signal,

a fourth mixer configured to mix the third output signal output from the third mixer and the local signal amplified by the first amplifier and to output a fourth output signal,

a phase shifter configured to adjust a phase of the fourth output signal to match phases of the second output signal and the fourth output signal, and

an adder configured to add the second output signal and the fourth output signal of which the phases are matched.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 28, 2022
From: SATO, MASARU
To: FUJITSU LIMITED
Reel/Frame 059117/0788 →
Priority Claims (2)
JP 2021-085210 · May 20, 2021 · national
JP 2021-191908 · Nov 26, 2021 · national
Continuity (1)
Related Publication 20220376717A1 · Nov 24, 2022