Portable electronic apparatus, user interface controlling method, and program
First Claim
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1. An electronic apparatus comprising:
- a control device configured to determine whether a shaking operation is performed on a main body of said electronic apparatus in a predetermined axial direction based on whether a motion-added acceleration value in said predetermined axial direction is determined to exceed a predetermined value, wherein said motion-added acceleration value is an acceleration value obtained by adding up a predetermined number of acceleration values recently acquired in said predetermined axial direction at constant intervals; and
wherein said control device is further configured to control said electronic apparatus to perform a predetermined action if said shaking operation is determined to occur by said control device.
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Abstract
An electronic apparatus is disclosed which includes: a main body motion determination device configured to determine whether a predetermined accelerated motion is exerted on a main body of the electronic apparatus in a predetermined axial direction; and a control device configured to control the electronic apparatus to perform a predetermined action based on a pattern of the predetermined accelerated motion determined to occur by the main body motion determination device.
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Citations
18 Claims
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1. An electronic apparatus comprising:
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a control device configured to determine whether a shaking operation is performed on a main body of said electronic apparatus in a predetermined axial direction based on whether a motion-added acceleration value in said predetermined axial direction is determined to exceed a predetermined value, wherein said motion-added acceleration value is an acceleration value obtained by adding up a predetermined number of acceleration values recently acquired in said predetermined axial direction at constant intervals; and wherein said control device is further configured to control said electronic apparatus to perform a predetermined action if said shaking operation is determined to occur by said control device. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8)
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9. A controlling method comprising the steps of:
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determining whether a pattern of shaking operation is performed on a main body of an apparatus in a predetermined axial direction based on whether a motion-added acceleration value in said predetermined axial direction is determined to exceed a predetermined value, wherein said motion-added acceleration value is an acceleration value obtained by adding up a predetermined number of acceleration values recently acquired in said predetermined axial direction at constant intervals; and controlling said apparatus to perform a predetermined action if said shaking operation is determined to occur in the shaking operation determining step. - View Dependent Claims (10, 11, 12, 13, 14, 15)
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16. A non-transitory recording medium which records a program in a manner readable by a computer, said program when executed causing said computer to execute a procedure comprising the steps of:
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determining whether a shaking operation is performed on a main body of an apparatus in a predetermined axial direction based on whether a motion-added acceleration value in said predetermined axial direction is determined to exceed a predetermined value, wherein said motion-added acceleration value is an acceleration value obtained by adding up a predetermined number of acceleration values recently acquired in said predetermined axial direction at constant intervals; and controlling said apparatus to perform a predetermined action if said shaking operation is determined to occur in the shaking operation determining step.
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17. An electronic apparatus comprising:
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a control device configured to determine whether a reciprocal shaking operation is performed on a main body of said electronic apparatus in a predetermined axial direction based on whether a reciprocal motion is sensed within a predetermined time period in said predetermined axial direction, wherein said reciprocal shaking operation is sensed based on a change pattern in which a gradual increase in an absolute value of acceleration is observed in a negative direction during an initial take-back period followed by an abrupt surge of acceleration in a positive direction during a subsequent release period; and wherein said control device is further configured to control said electronic apparatus to perform a predetermined action if said reciprocal shaking motion is determined to occur by said control device.
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18. A controlling method comprising the steps of:
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determining whether a reciprocal shaking operation is performed on a main body of an apparatus in a predetermined axial direction based on whether a reciprocal motion is sensed within a predetermined time period in said predetermined axial direction, wherein said reciprocal shaking operation is sensed based on a change pattern in which a gradual increase in an absolute value of acceleration is observed in a negative direction during an initial take-back period followed by an abrupt surge of acceleration in a positive direction during a subsequent release period; and controlling said apparatus to perform a predetermined action if said reciprocal shaking motion is determined to occur in the reciprocal shaking operation determining step.
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Specification