IP Library Granted Patent US 10,079,925
Granted Patent B2
US 10,079,925 · App. 15/266,048 · Granted Sep 18, 2018

Mobile telephone

Inventors: Hiroshi Hosoi (Osaka, JP); Yoji Hosoi (Osaka, JP); Masashi Morimoto (Kyoto, JP); Masahide Tanaka (Osaka, JP)
Assignees: Rohm Co., Ltd.; Finewell Co., Ltd.
H04M1/03H04M1/0258H04M1/05H04M1/6066H04R3/04H04M1/0214H04M1/0245H04M1/6058H04M2250/12H04M2250/22H04M2250/52H04R1/026H04R7/045H04R17/005H04R31/006H04R2420/07H04R2430/01H04R2440/05H04R2460/13H04R2499/11H04W4/008H04W4/80H04W52/0254H04W88/02Y02D70/00Y02D70/12Y02D70/122Y02D70/144Y02D70/26
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Quick Facts
Patent No.
US 10,079,925
App. No.
15/266,048
Granted
Sep 18, 2018
Kind
B2
Abstract

The mobile telephone disclosed in the present specification has a mobile telephone upper edge unit including a right-ear cartilage conduction unit, a left-ear cartilage conduction unit, and a linking unit linking the right-ear cartilage conduction unit and the left-ear cartilage conduction unit, the units being exposed at the mobile telephone surface; and a cartilage-conduction vibration source for transmitting vibration to the mobile telephone upper edge unit.

Claims (31)

1. A mobile telephone comprising:

a sound signal source unit for outputting a sound signal;

an acoustic signal processing unit for applying correction, based on vibration transmission frequency characteristics of cartilage-conduction, to the sound signal from the sound signal source unit; and

a cartilage-conduction vibration source vibrated by the sound signal corrected by the acoustic signal processing unit,

wherein the acoustic signal processing unit is arranged, in an external auditory meatus occluded state, to perform correction to boost a gain at a high end within a frequency band at which the cartilage-conduction vibration source is vibrated, to a level higher than the gain in an external auditory meatus unoccluded state.

2. The mobile telephone according to claim 1 further comprising:

a mobile telephone upper edge unit including a right-ear cartilage conduction unit,

a left-ear cartilage conduction unit, and

a linking unit linking the right-ear cartilage conduction unit and the left-ear cartilage conduction unit, the units being exposed at the mobile telephone surface, wherein the cartilage-conduction vibration source is arranged to transmit vibration to the mobile telephone upper edge unit.

3. The mobile telephone according to claim 2 , the cartilage-conduction vibration source transmitting vibration to either one of the right-ear cartilage conduction unit and the left-ear cartilage conduction unit, and the linking unit transmitting the vibration to the other of the right-ear cartilage conduction unit and the left-ear cartilage conduction unit.

4. The mobile telephone according to claim 2 , the linking unit bypassing an in-camera built-in the mobile telephone and linking the right-ear cartilage conduction unit and the left-ear cartilage conduction unit.

5. The mobile telephone according to claim 2 , a vibration isolating part intervening between the mobile telephone upper edge unit and other sections of the mobile telephone, and the cartilage-conduction vibration source being furnished to the inside of the mobile telephone upper edge unit in such a way as to have substantially no conduct with other sections of the mobile telephone.

6. The mobile telephone according to claim 2 , the cartilage-conduction vibration source being furnished at the inside center of the linking unit.

7. The mobile telephone according to claim 2 , the mobile telephone upper edge unit being an antenna.

8. The mobile telephone according to claim 1 further comprising an external sound output unit, wherein the acoustic signal processing unit is arranged to perform correction to boost the gain at the high end within the frequency band at which the cartilage-conduction vibration source is vibrated, to a level higher than the gain in sound output signal to the external sound output unit.

9. The mobile telephone according to claim 1 further comprising a short-range wireless communication unit, wherein the acoustic signal processing unit is arranged to perform correction to boost the gain at the high end within the frequency band at which the cartilage-conduction vibration source is vibrated, to a level higher than the gain in a sound signal output from the short-range wireless communication unit.

10. The mobile telephone according to claim 1 , wherein the acoustic signal processing unit includes a plurality of acoustic signal processing units, and wherein the mobile telephone further comprises an amplifier unit for outputting, as a drive signal to the cartilage-conduction vibration source, a processed signal processed by the plurality of acoustic signal processing units and synthesized thereby.

11. A mobile telephone comprising:

a sound signal source unit arranged to output a sound signal;

an external sound output unit to which the sound signal is applied;

a cartilage-conduction vibration source vibrated by the sound signal; and

an acoustic signal processing unit for applying correction to the sound signal from the sound signal source unit to boost a gain at a high end within a frequency band at which the cartilage-conduction vibration source is vibrated, to a level higher than the gain in the sound output signal applied to the external sound output unit, the cartilage-conduction vibration source being vibrated by the sound signal corrected by the acoustic signal processing unit, wherein the acoustic signal processing unit is arranged, in an external auditory meatus occluded state, to perform correction to boost the gain at the high end within the frequency band at which the cartilage-conduction vibration source is vibrated, to a level higher than the gain in an external auditory meatus unoccluded state.

12. The mobile telephone according to claim 11 further comprising a short-range wireless communication unit, wherein the acoustic signal processing unit is arranged to perform correction to boost the gain at the high end within the frequency band at which the cartilage-conduction vibration source is vibrated, to a level higher than the gain in a sound signal output from the short-range wireless communication unit.

13. The mobile telephone according to claim 11 , wherein the acoustic signal processing unit includes a plurality of acoustic signal processing units, and wherein the mobile telephone further comprises an amplifier unit for outputting, as a drive signal to the cartilage-conduction vibration source, a processed signal processed by the plurality of acoustic signal processing units and synthesized thereby.

14. A mobile telephone comprising:

a short-range wireless communication unit to output a sound signal;

a cartilage-conduction vibration source vibrated by the sound signal; and

an acoustic signal processing unit arranged to perform correction to the sound signal to boost a gain at a high end within a frequency band at which the cartilage-conduction vibration source is vibrated, to a level higher than the gain in the sound signal output from the short-range wireless communication unit, the cartilage-conduction vibration source being vibrated by the sound signal corrected by the acoustic signal processing unit,

wherein the acoustic signal processing unit is arranged, in an external auditory meatus occluded state, to perform correction to boost the gain at the high end within the frequency band at which the cartilage-conduction vibration source is vibrated, to a level higher than the gain in an external auditory meatus unoccluded state.

15. The mobile telephone according to claim 14 further comprising an external sound output unit, wherein the acoustic signal processing unit is arranged to perform correction to boost the gain at the high end within the frequency band at which the cartilage-conduction vibration source is vibrated, to a level higher than the gain in sound output signal to the external sound output unit.

16. The mobile telephone according to claim 14 , wherein the acoustic signal processing unit includes a plurality of acoustic signal processing units, and wherein the mobile telephone further comprises an amplifier unit for outputting, as a drive signal to the cartilage-conduction vibration source, a processed signal processed by the plurality of acoustic signal processing units and synthesized thereby.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 29, 2018
From: ROHM CO., LTD.
To: FINEWELL CO., LTD.
Reel/Frame 047343/0367 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 30, 2016
From: HOSOI, HIROSHI
To: FINEWELL CO., LTD.
Reel/Frame 039903/0116 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 19, 2016
From: HOSOI, HIROSHI; HOSOI, YOJI; MORIMOTO, MASASHI; TANAKA, MASAHIDE
To: ROHM CO., LTD.; HOSOI, HIROSHI
Reel/Frame 039777/0832 →
Priority Claims (13)
JP 2012-010355 · Jan 20, 2012 · national
JP 2012-011340 · Jan 23, 2012 · national
JP 2012-034413 · Feb 20, 2012 · national
JP 2012-035592 · Feb 21, 2012 · national
JP 2012-054308 · Mar 12, 2012 · national
JP 2012-061048 · Mar 16, 2012 · national
JP 2012-065613 · Mar 22, 2012 · national
JP 2012-095464 · Apr 19, 2012 · national
JP 2012-097302 · Apr 23, 2012 · national
JP 2012-120173 · May 25, 2012 · national
JP 2012-136291 · Jun 15, 2012 · national
JP 2012-137707 · Jun 19, 2012 · national
JP 2012-141328 · Jun 22, 2012 · national
Continuity (7)
Division 14334998 · Jul 18, 2014
Continuation In Part PCTJP2012066376 · Jun 27, 2012
Continuation In Part 15266048
Continuation In Part 13556367 · Jul 24, 2012
Continuation In Part 13951164 · Jul 25, 2013
Continuation 13489971 · Jun 6, 2012
Related Publication 20170006144A1 · Jan 5, 2017
Cited By (1)
US 12,482,335