IP Library › Granted Patent US 10,924,855
Granted Patent B2
US 10,924,855 · App. 16/548,229 · Granted Feb 16, 2021

Microphone for ambisonics, A/B format conversion software, recorder, and playback software

Inventor: Shunsuke Kudoh (Tokyo, JP)
Assignee: ZOOM CORPORATION
H04R5/027G06F3/012G06F3/165H04R1/083H04R29/004H04S7/30H04S2400/15H04S2420/11
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 10,924,855
App. No.
16/548,229
Granted
Feb 16, 2021
Kind
B2
Abstract

A microphone to generate A format signals used for ambisonics includes: a body of the microphone, first through fourth microphone elements provided facing sound pickup directions different from each other in the body and configured to output respective first signals to be components of the A format signals; and a six-axis sensor configured to detect displacement of the body and output information on a position of the body.

Claims (41)

1. A microphone to generate A format signals used for ambisonics, comprising:

a body of the microphone;

first through fourth microphone elements provided facing sound pickup directions different from each other in the body and configured to output respective first signals to be components of the A format signals, and

one or more sensors configured to detect displacement of the body and to output information on a position of the body.

2. The microphone of claim 1 , wherein the sensor is an accelerometer that is capable of detecting the displacement of the body in forward and backward directions, left and right directions, and upward and downward directions and configured to output angular information in a horizontal direction and a vertical direction of the body.

3. The microphone of claim 2 , wherein the sensor further includes a gyro sensor capable of detecting rotation of the body and is configured to output angular information in a rotation direction.

4. A non-transitory computer readable medium storing A/B format conversion software to convert the A format signals generated by the microphone of claim 1 to B format signals, wherein the A/B format conversion software causes a processor to execute the steps of:

distinguishing respective sound pickup directions of the first through fourth microphone elements based on the information on the position of the body outputted from the sensor;

selecting mathematical expressions to convert the A format signals to the B format signals based on the respective sound pickup directions of the first through fourth microphone elements; and

converting the first signals outputted from the respective first through fourth microphone elements, by addition and subtraction based on the mathematical expressions, to a plurality of second signals to be components of the B format signals.

5. A recorder to record data of A format signals and/or B format signals used for ambisonics, the recorder comprising:

(a) a microphone comprising:

a body of the microphone;

first through fourth microphone elements provided facing sound pickup directions different from each other in the body and configured to output respective first signals to be components of the A format signals, and

one or more sensors configured to detect displacement of the body and to output information on a position of the body;

(b) a non-transitory computer readable medium storing A/B format conversion software which causes a processor to execute the steps of:

distinguishing respective sound pickup directions of the first through fourth microphone elements based on the information on the position of the body outputted from the sensor;

selecting mathematical expressions to convert the A format signals to the B format signals based on the respective sound pickup directions of the first through fourth microphone elements; and

converting the first signals outputted from the respective first through fourth microphone elements, by addition and subtraction based on the mathematical expressions, to a plurality of second signals to be components of the B format signals;

(c) the processor to execute the processing of the A/B format conversion software; and

(d) a memory to record the data of the A format signals and/or the B format signals, wherein

the information on the position of the body outputted from the sensor is recorded in the memory as metadata for the data of the A format signals and/or the B format signals.

6. The recorder of claim 5 , wherein type information of A format or B format is recorded in the memory as metadata for the data of the A format signals or the B format signals.

7. The recorder of claim 5 , further comprising an image display, wherein

the processor causes the image display to display an image indicating a degree of horizontality and/or a degree of verticality of the body based on the information on the position of the body outputted from the sensor.

8. The recorder of claim 5 , wherein the non-transitory computer readable medium further storing B format/stereo conversion software to convert the B format signals to stereo signals, wherein

the B format/stereo conversion software causes the processor to execute the steps of:

differentiating signal levels of two or more of the second signals to be the components of the B format signals from each other based on the information on the position of the body outputted from the sensor, and

converting the two or more of the second signals having the differentiated signal levels, by synthesizing them, to two third signals to be components of the stereo signals.

9. A non-transitory computer readable medium storing playback software to play back the data of the B format signals, by a mobile device, recorded by the recorder of claim 5 , the playback software comprising B format/stereo conversion software to convert the B format signals to stereo signals, wherein

the B format/stereo conversion software causes a processor of the mobile device to execute the steps of:

differentiating signal levels of two or more of the second signals to be the components of the B format signals from each other based on information on a position of a body of the mobile device outputted from a sensor of the mobile device, and

converting the two or more of the second signals having the differentiated signal levels, by synthesizing them, to two third signals to be components of the stereo signals.

10. A non-transitory computer readable medium storing playback software to play back the data of the A format signals, by a mobile device, recorded by the recorder of claim 5 , the playback software comprising:

the A/B format conversion software to convert the A format signals to the B format signals and

B format/stereo conversion software to convert the B format signals to stereo signals, wherein

the A/B format conversion software causes a processor of the mobile device to execute the step of:

distinguishing respective sound pickup directions of the first through fourth microphone elements based on the information on the position recorded in the memory as the metadata, and

the B format/stereo conversion software causes the processor of the mobile device to execute the steps of:

differentiating signal levels of two or more of the second signals to be the components of the B format signals from each other based on information on a position of a body of the mobile device outputted from a sensor of the mobile device; and

converting the two or more of the second signals having the differentiated signal levels, by synthesizing them, to two third signals to be components of the stereo signals.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 22, 2019
From: KUDOH, SHUNSUKE
To: ZOOM CORPORATION
Reel/Frame 050136/0284 →
Priority Claims (1)
JP 2018-188932 · Oct 4, 2018 · national
Continuity (1)
Related Publication 20200112790A1 · Apr 9, 2020
Cited By (1)
US 12,652,488