Portable electronics and sensing method
View Patent ↗A portable electronics includes detection unit which detects a state of the portable electronics, storage unit which stores a detection result of the detection unit at a first period, and determination unit which reads out, every time a second period longer than the first period has elapsed, a plurality of detection results stored in the storage unit during the second period and determines the state of the portable electronics based on the plurality of readout detection results.
1. A portable electronics comprising:
a detection unit configured to detect an acceleration generated in the portable electronics;
a storage unit configured to store the acceleration detected by the detection unit at a first period;
a switching unit configured to switch an operating state of a control unit controlling the portable electronics between a sleep state and an active state; and
a determination unit configured to read out, every time a second period longer than the first period has elapsed, a plurality of detected accelerations stored in the storage unit during the second period and to cause the switching unit to switch the operating state of the control unit based on the plurality of readout detected accelerations.
2. The portable electronics according to claim 1 , further comprising:
an input unit which receives a request from a user; and
a request detection unit which detects input of the request to the input unit,
wherein when the request detection unit has detected the input of the request, the determination unit reads out, every time the second period has elapsed, the plurality of detection results stored in the storage unit during the second period and determines the state of the portable electronics based on the plurality of readout detection results.
3. The portable electronics according to claim 2 , wherein the determination unit determines the state of the portable electronics based on detection results which are stored in the storage unit until the request detection unit has detected the input of the request.
4. The portable electronics according to claim 2 , wherein the determination unit determines the state of the portable electronics based on detection results which are stored in the storage unit after the request detection unit has detected the input of the request.
5. The portable electronics according to claim 2 , further comprising an ambient state detection unit which detects a state around the portable electronics,
wherein the storage unit stores, at the first period, a plurality of detection results except detection results detected by the detection unit during detection of a preset state by the ambient state detection unit.
6. The portable electronics according to claim 1 , further comprising a switching unit which switches an operating state of the portable electronics from a high power consumption state to a low power consumption state or from the low power consumption state to the high power consumption state in accordance with a determination result of the determination unit.
7. The portable electronics according to claim 1 , further comprising a switching unit which switches several functions of the portable electronics from an operating state to a stop state or from the stop state to the operating state in accordance with a determination result of the determination unit.
8. A sensing method comprising:
a detection step of detecting an acceleration generated in the portable electronics;
a storage step of causing a storage unit to store the acceleration detected in the detection step at a first period;
a switching an operating state of a control unit controlling the portable electronics between a sleep state and an active state; and
a determination step of reading out, every time a second period longer than the first period has elapsed, a plurality of detected accelerations stored in the storage unit during the second period and causes the switching unit to switch the operating state of the control unit based on the plurality of readout detected accelerations.
9. The sensing method according to claim 8 , further comprising a request detection step of detecting input of a request to an input unit which receives a request from a user,
wherein in the determination step, when the input of the request has been detected in the request detection step, the plurality of detection results stored in the storage unit during the second period are read out every time the second period has elapsed, and the state of the portable electronics is determined based on the plurality of readout detection results.
10. The sensing method according to claim 9 , wherein in the determination step, the state of the portable electronics is determined based on detection results which are stored in the storage unit until the input of the request has been detected in the request detection step.
11. The sensing method according to claim 9 , wherein in the determination step, the state of the portable electronics is determined based on detection results which are stored in the storage unit after the input of the request has been detected in the request detection step.
12. The sensing method according to claim 9 , further comprising an ambient state detection step of detecting a state around the portable electronics,
wherein in the storage step, the storage unit stores, at the first period, a plurality of detection results except detection results detected in the detection step during detection of a preset state in the ambient state detection step.
13. The sensing method according to claim 8 , wherein in the detection step, an acceleration generated in the portable electronics is detected.
14. The sensing method according to claim 8 , further comprising a switching step of switching an operating state of a control unit controlling the portable electronics from a sleep state to an active state or from the active state to the sleep state in accordance with a determination result in the determination step.
15. The sensing method according to claim 8 , further comprising a switching step of switching an operating state of the portable electronics from a high power consumption state to a low power consumption state or from the low power consumption state to the high power consumption state in accordance with a determination result in the determination step.
16. The sensing method according to claim 8 , further comprising a switching step of switching several functions of the portable electronics from an operating state to a stop state or from the stop state to the operating state in accordance with a determination result in the determination step.
17. The portable electronics as claimed in claim 1 , wherein the determination unit is configured to determine a state of the portable electronics based on the plurality of readout detected accelerations, and to cause the switching unit to switch the operating state of the control unit in accordance with a result of said determination.