WO2018090449A1 - 调节移动终端发热状况的方法、装置及终端 - Google Patents
调节移动终端发热状况的方法、装置及终端 Download PDFInfo
- Publication number
- WO2018090449A1 WO2018090449A1 PCT/CN2016/112604 CN2016112604W WO2018090449A1 WO 2018090449 A1 WO2018090449 A1 WO 2018090449A1 CN 2016112604 W CN2016112604 W CN 2016112604W WO 2018090449 A1 WO2018090449 A1 WO 2018090449A1
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- WIPO (PCT)
- Prior art keywords
- mobile terminal
- heat source
- temperature
- area
- source position
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M1/00—Substation equipment, e.g. for use by subscribers
- H04M1/72—Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
- H04M1/724—User interfaces specially adapted for cordless or mobile telephones
- H04M1/72484—User interfaces specially adapted for cordless or mobile telephones wherein functions are triggered by incoming communication events
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M1/00—Substation equipment, e.g. for use by subscribers
- H04M1/72—Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
- H04M1/724—User interfaces specially adapted for cordless or mobile telephones
- H04M1/72448—User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions
- H04M1/72463—User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions to restrict the functionality of the device
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M1/00—Substation equipment, e.g. for use by subscribers
- H04M1/72—Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
- H04M1/724—User interfaces specially adapted for cordless or mobile telephones
- H04M1/72448—User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions
Definitions
- the present invention relates to the field of mobile terminal technologies, and in particular, to a method, device, and terminal for adjusting a heat condition of a mobile terminal.
- the present invention aims to solve at least one of the technical problems existing in the prior art or related art.
- an object of the present invention is to provide a method of adjusting the heat generation condition of a mobile terminal.
- Another object of the present invention is to provide an apparatus for adjusting the heat generation condition of a mobile terminal.
- Still another object of the present invention is to provide a terminal.
- a method for adjusting a fever condition of a mobile terminal comprising: determining whether the mobile terminal is in a charging state if the mobile terminal has an incoming call and answering; and when the mobile terminal is in a charging state When it is determined that the answering mode of the mobile terminal is hand-held; when the answering mode of the mobile terminal is hand-held, the mobile terminal is adjusted according to the first hand-held answering mode; when the answering mode of the mobile terminal is non-handheld, according to The first non-handheld answering adjustment mode adjusts the mobile terminal.
- the method for adjusting the heat generation condition of the mobile terminal provided by the present invention has an incoming call and a connection in the mobile terminal
- it is judged whether the mobile terminal is in a charging state and when the mobile terminal is in a charging state, it is judged whether the answering mode of the mobile terminal is hand-held by the acceleration sensor, the gyroscope and the air pressure sensor, and the answering mode of the mobile terminal is handheld answering. Adjusting the mobile terminal according to the first hand-held answering adjustment mode.
- the mobile terminal When the answering mode of the mobile terminal is non-handheld, the mobile terminal is adjusted according to the first non-handheld answering adjustment mode, and in different call scenarios, according to Different degrees of temperature sensitivity of the human body enable differentiating the temperature of different regions of the terminal, reducing the CPU frequency, thereby solving the heating problem of the terminal more efficiently and sensitively, and improving the user experience.
- the step of adjusting the mobile terminal according to the first hand-held answering adjustment manner comprises: determining whether the calling mode of the mobile terminal is a handheld non-hands-free call; and when the calling mode of the mobile terminal is When the handheld hands-free call is held, the charging current of the mobile terminal is adjusted to the second charging rate current; the temperature of the heat source position of the face area, the temperature of the heat source position of the human ear area, and the temperature of the heat source position of the human hand area are detected; when the temperature of the heat source position of the face area is greater than When the first preset face temperature threshold is used, the background application of the face area device is stopped; when the temperature of the human ear area heat source is greater than the second preset face temperature threshold, the background application of the human ear area device is stopped; when the manual area heat source is used When the position temperature is greater than the third preset face temperature threshold, the background application of the manual area device is stopped.
- the distance sensor determines whether the calling mode of the mobile terminal is a handheld non-hands-free call, and when the calling mode of the mobile terminal is a handheld non-hands-free call, the charging current is adjusted to a second charging rate current, thereby reducing The heating condition of the terminal, and using the NTC thermistor to detect the real-time temperature of the heat source position of the face area, the real-time temperature of the heat source position of the human ear area, and the real-time temperature of the heat source position of the human hand area, when the temperature of the heat source position of the face area is greater than the first preset When the face temperature threshold is used, the background application of the face area device is stopped.
- the background application of the device in the human ear area is stopped, and when the temperature of the heat source position of the human hand area is greater than the first
- the preset face temperature threshold is preset
- the background application of the manual area device is stopped, wherein the second charging rate current is smaller than the preset charging rate current of the mobile terminal, and the NTC thermistor distributed in each heat source position on the main board is realized.
- Main heat sources inside the terminal Real-time temperature monitoring, because the terminal is in the call state, the charging current is less than the preset charging rate current, and the temperature sensitivity of different parts of the human body is different for different heat sources of the terminal, and the frequency of CPU usage is reduced. In turn, the heating of the corresponding area is reduced.
- the method further includes: adjusting a charging current of the mobile terminal to a first charging rate current when the calling mode of the mobile terminal is not a handheld non-hands-free call; detecting a temperature of the face source heat source, the person The temperature of the ear region heat source position and the heat source position temperature of the hand area; when the temperature of the face area heat source is greater than the preset hand temperature threshold, the background application of the face area device is stopped; when the heat source position temperature of the ear area is greater than the preset hand temperature threshold The background application of the device in the human ear area is stopped; when the temperature of the heat source position of the human hand area is greater than the preset hand temperature threshold, the background application of the device of the human hand area is stopped.
- the first charging rate current is greater than the second charging rate current, and the first charging rate current is less than the preset charging rate current of the mobile terminal.
- the charging current of the mobile terminal is adjusted to a first charging rate current, and the temperature of the face region heat source is detected by the NTC thermistor, and the heat source of the ear region is detected.
- the position temperature and the heat source position temperature of the human hand area stop the background application of the face area device when the temperature of the face area heat source position is greater than the preset hand temperature threshold.
- the background application of the ear area device stops the background application of the human hand area device when the manual area heat source position temperature is greater than the preset hand temperature threshold, wherein the first charging rate current is less than the preset charging rate current of the mobile terminal.
- the NTC thermistor distributed in each heat source position on the main board, the real-time temperature monitoring of the main heat source positions inside the terminal is realized. Since the terminal belongs to the call state, the charging current is less than the preset charging rate current, and the handheld current is non-free. In the case of a call, the terminal can be charged with a first charge rate current greater than the second charge rate current, thereby reducing the heat generation of the terminal.
- the step of adjusting the mobile terminal according to the first non-handheld answering adjustment manner comprises: charging the mobile terminal according to a preset charging rate current; detecting the location temperature of the face region heat source, and detecting the heat source position of the ear region Temperature, manual location heat source position temperature; when the face area heat source position temperature is greater than the preset maximum temperature threshold, the background application of the face area device is stopped; when the human ear area heat source position temperature is greater than the preset maximum temperature threshold, the human ear is stopped.
- the background application of the regional device when the temperature of the hot spot of the manual area is greater than the preset maximum temperature threshold, the background application of the device of the manual area is stopped.
- the mobile terminal charges the current according to a preset charging rate, and uses the NTC thermistor to detect the heat source position temperature of the face region and the heat source position temperature of the ear region.
- the heat source position temperature of the human hand area stops the background application of the face area device when the temperature of the heat source position of the face area is greater than the preset maximum temperature threshold.
- the human ear area is stopped.
- the background application of the device when the temperature of the hot spot of the manual area is greater than the preset maximum temperature threshold, the background application of the device of the manual area is stopped, and the non-handheld hands-free call is charged according to the normal current, and the NTC thermistor at each heat source position
- the application of the terminal background is frozen and the CPU is down-clocked.
- the method further includes: determining, when the mobile terminal is not in a charging state, whether the answering mode of the mobile terminal is a hand-held answering; and when the answering mode of the mobile terminal is a hand-held answering, adjusting according to the second hand-held answering The method adjusts the mobile terminal; when the answering mode of the mobile terminal is non-handheld, the mobile terminal is adjusted according to the second non-handheld answering adjustment mode.
- the acceleration sensor, the gyroscope and the air pressure sensor determine whether the answering mode of the mobile terminal is a hand-held answering, and when the receiving mode of the mobile terminal is a hand-held answering, according to the second hand
- the mobile terminal is adjusted by the answering adjustment mode.
- the mobile terminal is adjusted according to the second non-handheld answering adjustment mode, and the charging current is different through the terminal in various situations. Configuration and temperature control, reducing the CPU frequency, and thus more efficient and sensitive solution to the heating problem of the terminal, improving the user experience.
- the step of adjusting the mobile terminal according to the second hand-held answering adjustment manner comprises: determining whether the calling mode of the mobile terminal is a handheld non-hands-free call; and when the mobile terminal is in a handheld mode When the call is raised, the temperature of the heat source location of the face area, the temperature of the heat source location of the human ear area, and the temperature of the heat source location of the human hand area are detected; when the temperature of the heat source position of the face area is greater than the first preset face temperature threshold, the background of the face device is stopped.
- the NTC thermistor is utilized. Detecting the heat source position temperature of the face area, the heat source position temperature of the human ear area, and the heat source position temperature of the human hand area. When the temperature of the face area heat source position is greater than the first preset face temperature threshold, the background application of the face area device is stopped, when the person When the temperature of the ear region heat source is greater than the second preset face temperature threshold, the background application of the device in the human ear region is stopped.
- the NTC thermistor distributed in each heat source position on the main board realizes the real-time temperature monitoring of the main heat source positions inside the terminal, taking into account the different heat sensitivity of different parts of the human body, and differentiating the temperature control of different heat sources of the terminal, reducing the CPU.
- the frequency of use which in turn causes the heating of the corresponding area to decrease.
- the method further includes: when the mobile terminal's calling mode is not a handheld non-hands-free call, detecting a face area heat source position temperature, a human ear area heat source position temperature, and a human hand area heat source position temperature; When the temperature of the face area heat source is greater than the preset hand temperature threshold, the background application of the face area device is stopped; when the temperature of the heat source position of the ear area is greater than the preset hand temperature threshold, the background application of the device of the human ear area is stopped; when the heat source of the hand area is used When the position temperature is greater than the preset handheld temperature threshold, the background application of the human hand zone device is stopped.
- the NTC thermistor is used to detect the temperature of the face region heat source, the temperature of the human ear region, the temperature of the hot spot of the human hand zone, and the heat source of the face region.
- the position temperature is greater than the preset handheld temperature threshold, the background application of the face area device is stopped.
- the background application of the device in the human ear area is stopped, when the temperature of the heat source position of the human hand area is greater than
- the handheld temperature threshold is preset
- the background application of the manual area device is stopped, and the real-time temperature of each main heat source position in the terminal is monitored by the NTC thermistor distributed at each heat source position on the main board, and the area is judged by the hand-held call. Whether the temperature exceeds the preset handheld temperature threshold, and freezes the background application of the corresponding area when it is exceeded, thereby reducing the fever of the terminal and reducing the frequency of the CPU.
- the step of adjusting the mobile terminal according to the second non-handheld answering adjustment mode comprises: detecting a face area heat source position temperature, a human ear area heat source position temperature, and a hand area heat source position temperature.
- the temperature of the face region heat source is greater than the preset maximum temperature threshold, the background application of the face device is stopped; when the temperature of the hot spot of the human ear region is greater than the preset maximum temperature threshold, the background application of the device in the human ear region is stopped;
- the location temperature of the manual area heat source is greater than the preset maximum temperature threshold, the background application of the device in the manual area is stopped.
- the NTC thermistor when the answering mode of the mobile terminal is non-handheld, the NTC thermistor is used to detect the heat source position temperature of the face area, the heat source position temperature of the human ear area, the heat source position temperature of the human hand area, and the heat source position of the face area.
- the temperature is greater than the preset maximum temperature threshold, the background application of the device in the face region is stopped.
- the background application of the device in the human ear region is stopped, and when the temperature of the heat source in the human hand region is greater than the pre-heating
- the maximum temperature threshold is set, the background application of the device in the manual area is stopped, and the real-time temperature monitoring of the main heat source positions inside the terminal is realized by the NTC thermistor distributed at each heat source position on the main board.
- an apparatus for adjusting a fever condition of a mobile terminal comprising: a first determining module configured to determine whether the mobile terminal is in a charging state if the mobile terminal has an incoming call and answer;
- the judging module is configured to determine whether the answering mode of the mobile terminal is a hand-held answer when the mobile terminal is in a charging state;
- the first processing module is configured to: when the answering mode of the mobile terminal is hand-held, according to the first hand-held answering adjustment mode The mobile terminal performs adjustment; when the answering mode of the mobile terminal is non-handheld answering, the mobile terminal is adjusted according to the first non-handheld answering adjustment mode.
- the device for adjusting the heat condition of the mobile terminal determines whether the mobile terminal is in a charging state by the first determining module when the mobile terminal has an incoming call and answers, and when the mobile terminal is in the charging state, the second determining module determines Whether the answering mode of the mobile terminal is hand-held, and the first processing module adjusts the mobile terminal according to the first hand-held answering mode when the answering mode of the mobile terminal is hand-held, and when the answering mode of the mobile terminal is non-handheld According to the first non-handheld answering adjustment mode, the mobile terminal is adjusted, and in different call scenarios, according to different temperature sensitivity of the human body, differentiating the temperature of different regions of the terminal is realized, and the CPU frequency is reduced, thereby further More efficient and sensitive solution
- the heating problem of the terminal improves the user experience.
- the above device for adjusting the heat generation condition of the mobile terminal according to the present invention may further have the following technical features:
- the first processing module includes: a third determining module, configured to determine whether the calling mode of the mobile terminal is a handheld non-hands-free call; the first processing module is further configured to be a calling mode of the mobile terminal When the hand-held non-hands-free call is used, the charging current of the mobile terminal is adjusted to the second charging rate current; the detecting module is configured to detect the temperature of the face source heat source, the heat source position temperature of the human ear area, and the heat source position temperature of the human hand area; The processing module is configured to stop the background application of the face area device when the temperature of the face area heat source is greater than the first preset face temperature threshold; when the temperature of the human ear area heat source is greater than the second preset face temperature threshold, The background application of the device in the human ear area is stopped; when the temperature of the heat source position of the human hand area is greater than the third preset face temperature threshold, the background application of the device of the human hand area is stopped.
- a third determining module configured to determine whether the calling mode of the mobile terminal
- the third determining module determines whether the calling mode of the mobile terminal is a handheld non-hands-free call, and when the calling mode of the mobile terminal is a handheld non-hands-free call, the first processing module adjusts the charging current to the second.
- the background application of the manual area device is stopped, wherein the second charging rate current is smaller than the preset charging rate current of the mobile terminal, and is distributed through the heat source positions on the main board.
- the NTC thermistor realizes the real-time temperature of the main heat source locations inside the terminal Monitoring, because the terminal belongs to the call state, the charging current is less than the preset charging rate current, and the temperature sensitivity of different parts of the human body is different for different heat sources of the terminal, and the frequency of CPU usage is reduced, thereby correspondingly The fever in the area has declined.
- the first processing module is further configured to adjust the charging current of the mobile terminal to the first charging rate current when the calling mode of the mobile terminal is not a handheld non-hands-free call; the detecting module further Set to detect the heat source position temperature of the face area, the heat source of the ear area The position temperature and the heat source position temperature of the manual area; the second processing module is further configured to stop the background application of the face area device when the temperature of the face area heat source position is greater than the preset hand temperature threshold; when the temperature of the human ear area is greater than the pre-heating position When the handheld temperature threshold is set, the background application of the device in the human ear region is stopped; when the temperature of the heat source location in the manual region is greater than the preset handheld temperature threshold, the background application of the device in the human hand region is stopped.
- the first charging rate current is greater than the second charging rate current, and the first charging rate current is less than the preset charging rate current of the mobile terminal.
- the first processing module adjusts the charging current of the mobile terminal to the first charging rate current when the calling mode of the mobile terminal is a hands-free calling, and detects the temperature of the face source heat source and the human ear by using the detecting module.
- the regional heat source position temperature and the manual hand source heat source position temperature, and the second processing module stops the background application of the face area device when the face area heat source position temperature is greater than the preset hand temperature threshold value, when the human ear area heat source position temperature is greater than the preset handhold When the temperature threshold is used, the background application of the device in the human ear region is stopped.
- the background application of the device of the manual area is stopped, wherein the first charging rate current is smaller than the preset charging rate of the mobile terminal.
- Current Through the NTC thermistor distributed in each heat source position on the main board, the real-time temperature monitoring of the main heat source positions inside the terminal is realized. Since the terminal belongs to the call state, the charging current is less than the preset charging rate current, and the handheld current is non-free. In the case of a call, the terminal can be charged with a first charge rate current greater than the second charge rate current, thereby reducing the heat generation of the terminal.
- the first processing module is further configured to: when the answering mode of the mobile terminal is non-handheld, charging the mobile terminal according to the preset charging rate current; and the detecting module is further configured to detect the person The surface area heat source position temperature, the human ear area heat source position temperature, and the hand area heat source position temperature; the second processing module is further configured to stop the background application of the face area device when the face area heat source position temperature is greater than the preset maximum temperature threshold.
- the background application of the device in the human ear region is stopped; when the temperature of the heat source location in the human hand region is greater than the preset maximum temperature threshold, the background application of the device in the human hand region is stopped.
- the mobile terminal charges the current according to a preset charging rate, and the detecting module detects the heat source position temperature of the face area, the heat source position temperature of the human ear area, and the human hand.
- Regional heat source position temperature, second processing module When the temperature of the face region heat source is greater than the preset maximum temperature threshold, the background application of the face device is stopped.
- the background application of the device in the human ear region is stopped, when the manual region is
- the heat source position temperature is greater than the preset maximum temperature threshold
- the background application of the manual area device is stopped, and the charging is performed according to the normal current during the hands-free hands-free call, and the temperature monitored by the NTC thermistor at each heat source position exceeds the system preset maximum.
- the temperature threshold is used, the application is frozen on the corresponding application in the terminal background, and the CPU is down-converted.
- the second determining module is further configured to: when the mobile terminal is not in the charging state, determine whether the answering mode of the mobile terminal is handheld answering; the first processing module is further configured to be a mobile terminal.
- the mobile terminal is adjusted according to the second hand-held answering adjustment mode; when the receiving mode of the mobile terminal is non-handheld answering, the mobile terminal is adjusted according to the second non-hand-held answering adjustment mode.
- the second determining module when the mobile terminal is not in the charging state, it is determined by the second determining module whether the answering mode of the mobile terminal is handheld answering.
- the first processing module follows the second hand.
- the mobile terminal is adjusted by the answering adjustment mode.
- the mobile terminal is adjusted according to the second non-handheld answering adjustment mode, and the charging current is different through the terminal in various situations. Configuration and temperature control, reducing the CPU frequency, and thus more efficient and sensitive solution to the heating problem of the terminal, improving the user experience.
- the first processing module includes: a third determining module, configured to determine whether the calling mode of the mobile terminal is a handheld non-hands-free call when the answering mode of the mobile terminal is handheld answering; the detecting module The second processing module is further configured to be a face when the mobile terminal's calling mode is a handheld non-hands-free call, detecting a face area heat source position temperature, a human ear area heat source position temperature, and a hand area heat source position temperature;
- the regional heat source position temperature is greater than the first preset face temperature threshold
- the background application of the face region device is stopped
- the background application of the human ear region device is stopped.
- the location temperature of the manual area heat source is greater than the third preset face temperature threshold, the background application of the manual area device is stopped.
- the third determining module determines whether the calling mode of the mobile terminal is a handheld non-hands-free call, and the calling party of the mobile terminal
- the detection module detects the heat source position temperature of the face area, the heat source position temperature of the human ear area, and the heat source position temperature of the human hand area, and the second processing module when the heat source position temperature of the face area is greater than the first preset person
- the face temperature threshold is used, the background application of the face area device is stopped.
- the background application of the device in the human ear area is stopped, and the temperature of the heat source position of the human hand area is greater than the third.
- the face temperature threshold is preset
- the background application of the manual area device is stopped, and the real-time temperature monitoring of the main heat source positions inside the terminal is realized by the NTC thermistor distributed at each heat source position on the main board, and the different parts of the human body are sensitive to heat.
- the degree of difference is different from the different heat sources of the terminal to control the temperature, reduce the frequency of use of the CPU, and thus reduce the heating of the corresponding area.
- the detecting module is further configured to detect a heat source position temperature of the face area, a heat source position temperature of the human ear area, and a heat source position temperature of the human hand area when the calling mode of the mobile terminal is not a handheld non-hands-free call.
- the second processing module is further configured to stop the background application of the face area device when the temperature of the face area heat source is greater than the preset hand temperature threshold; and stop the person when the heat source position temperature of the human ear area is greater than the preset hand temperature threshold The background application of the ear area device; when the manual area heat source position temperature is greater than the preset hand temperature threshold, the background application of the human hand area device is stopped.
- the detection module detects the heat source position temperature of the face area, the heat source position temperature of the human ear area, and the heat source position temperature of the human hand area, and the second processing module is a face.
- the regional heat source position temperature is greater than the preset handheld temperature threshold
- the background application of the face area device is stopped.
- the temperature of the human ear area heat source is greater than the preset handheld temperature threshold
- the background application of the human ear area device is stopped, and the manual area heat source position is used.
- the background application of the manual area device is stopped, and the real-time temperature monitoring of each main heat source position inside the terminal is realized by the NTC thermistor distributed in each heat source position on the main board, which is judged by the hand-held call. Whether the temperature of the area exceeds the preset handheld temperature threshold, and the background application of the corresponding area is frozen when the time exceeds, thereby reducing the heat generation of the terminal and reducing the frequency of the CPU.
- the first processing module further includes: a detecting module, configured to detect a heat source position temperature of the face area, a heat source position temperature of the human ear area, and a human hand when the answering mode of the mobile terminal is non-handheld Regional heat source position temperature; second processing module, also set to When the temperature of the face area heat source is greater than the preset maximum temperature threshold, the background application of the face area device is stopped; when the temperature of the heat source position of the human ear area is greater than the preset maximum temperature threshold, the background application of the device of the human ear area is stopped; When the regional heat source location temperature is greater than the preset maximum temperature threshold, the background application of the human hand zone device is stopped.
- a detecting module configured to detect a heat source position temperature of the face area, a heat source position temperature of the human ear area, and a human hand when the answering mode of the mobile terminal is non-handheld Regional heat source position temperature
- second processing module also set to When the temperature of the face area heat source is greater than the preset maximum temperature threshold, the
- the detecting module detects the heat source position temperature of the face area, the heat source position temperature of the human ear area, the heat source position temperature of the human hand area, and the second processing module is the face area.
- the heat source position temperature is greater than the preset maximum temperature threshold
- the background application of the face area device is stopped.
- the temperature of the human ear area heat source is greater than the preset maximum temperature threshold
- the background application of the human ear area device is stopped, and the heat source position temperature of the human hand area is stopped.
- the threshold is greater than the preset maximum temperature threshold
- the background application of the manual area device is stopped, and the real-time temperature of each main heat source position inside the terminal is monitored by the NTC thermistor distributed at each heat source position on the main board.
- a terminal including: a processor, a charging interface, a memory, a processor, a charging interface, and a memory connected by a bus, wherein the computer stores the computer instruction, and the processor executes the computer
- the instruction thus implements the following method: determining whether the mobile terminal is in a charging state when the mobile terminal has an incoming call and answering; determining whether the receiving mode of the mobile terminal is a handheld answer when the mobile terminal is in a charging state; and when the mobile terminal answers the mode
- the hand-held answering is performed, the mobile terminal is adjusted according to the first hand-held answering adjustment mode; when the receiving mode of the mobile terminal is non-handheld answering, the mobile terminal is adjusted according to the first non-hand-held answering adjustment mode.
- the terminal provided by the present invention comprises: a processor, a charging interface, a memory, a processor, a charging interface, and a memory connected by a bus.
- the memory stores computer instructions, and the processor implements the following method by executing computer instructions:
- the processor implements the following method by executing computer instructions:
- the terminal has an incoming call and answers, it is determined whether the mobile terminal is in a charging state.
- the mobile terminal is determined by the acceleration sensor, the gyroscope and the air pressure sensor whether the receiving mode of the mobile terminal is a hand-held answer, when the mobile terminal answers
- the mobile terminal is adjusted according to the first hand-held answering adjustment mode.
- the mobile terminal When the answering mode of the mobile terminal is non-handheld, the mobile terminal is adjusted according to the first non-hand-held answering adjustment mode, and the different calls are used.
- the control of the temperature difference in different regions of the terminal is realized. Reduce the CPU frequency, and then solve the heating problem of the terminal more efficiently and sensitively, which improves the user experience.
- 1a is a flow chart showing a method of adjusting a heat generation condition of a mobile terminal according to an embodiment of the present invention
- 1b is a flow chart showing a method of adjusting a heat generation condition of a mobile terminal according to another embodiment of the present invention.
- FIG. 2 is a schematic block diagram of an apparatus for adjusting a heat generation condition of a mobile terminal according to an embodiment of the present invention
- Figure 3 shows a schematic block diagram of a terminal of one embodiment of the present invention
- FIG. 4a is a schematic block diagram of a front side heat source component of a terminal according to an embodiment of the present invention.
- Figure 4b is a schematic block diagram of the back side heat source component of a particular embodiment of the present invention.
- FIG. 1a is a flow chart showing a method for adjusting a heat generation condition of a mobile terminal according to an embodiment of the present invention:
- Step 100 Determine whether the mobile terminal has an incoming call and answer the call
- Step 102 When the mobile terminal has an incoming call and receives an answer, determine whether the mobile terminal is in a charging state;
- Step 104 When the mobile terminal is in a charging state, determine whether the answering mode of the mobile terminal is a hand-held answering;
- Step 106 When the answering mode of the mobile terminal is handheld answering, adjust the mobile terminal according to the first hand-held answering adjustment mode;
- Step 108 When the answering mode of the mobile terminal is non-handheld answering, adjust the mobile terminal according to the first non-handheld answering adjustment mode;
- Step 110 When the mobile terminal is not in the charging state, determine whether the answering mode of the mobile terminal is handheld answering;
- Step 112 When the answering mode of the mobile terminal is handheld answering, adjust the mobile terminal according to the second hand-held answering adjustment mode;
- Step 114 When the answering mode of the mobile terminal is non-handheld, the mobile terminal is adjusted according to the second non-handheld answering adjustment mode.
- the method for adjusting the heat generation condition of the mobile terminal determines whether the mobile terminal is in a charging state when the mobile terminal has an incoming call and answers, and determines the movement by the acceleration sensor, the gyroscope and the air pressure sensor when the mobile terminal is in a charging state.
- the mobile terminal is adjusted according to the first hand-held answering mode, and when the answering mode of the mobile terminal is non-handheld, according to the first non-handheld
- the receiving adjustment mode adjusts the mobile terminal, and realizes different control of the temperature of different regions of the terminal according to the different sensitivity of the human body in different call scenarios, reduces the CPU frequency, and further solves the problem more efficiently and sensitively.
- the heating problem of the terminal improves the user experience.
- the acceleration sensor, the gyroscope and the air pressure sensor determine whether the answering mode of the mobile terminal is hand-held, and when the answering mode of the mobile terminal is hand-held, the second hand-held answering mode is moved.
- the terminal performs adjustment.
- the mobile terminal is adjusted according to the second non-handheld answering adjustment mode, and the charging current configuration and temperature control of the terminal are reduced under various conditions.
- the CPU frequency solves the heating problem of the terminal more efficiently and sensitively, and improves the user experience.
- FIG. 1b is a flow chart showing a method of adjusting a heat generation condition of a mobile terminal according to another embodiment of the present invention.
- a method for adjusting a heat generation condition of a mobile terminal according to some embodiments of the present invention will be described below with reference to FIG.
- the step of adjusting the mobile terminal according to the first hand-held answering adjustment manner includes:
- Step 1600 Determine whether the calling mode of the mobile terminal is a handheld non-hands-free call
- Step 1602 When the calling mode of the mobile terminal is a handheld non-hands-free call, the charging current of the mobile terminal is adjusted to a second charging rate current;
- Step 1604 detecting a heat source position temperature of the face area, a heat source position temperature of the human ear area, and a heat source position temperature of the human hand area;
- Step 1606 When the temperature of the face area heat source is greater than the first preset face temperature threshold, the background application of the face area device is stopped; when the temperature of the human ear area heat source is greater than the second preset face temperature threshold, the stop person is stopped. The background application of the ear area device; when the manual area heat source position temperature is greater than the third preset face temperature threshold, the background application of the human hand area device is stopped.
- the distance sensor determines whether the calling mode of the mobile terminal is a handheld non-hands-free call, and when the calling mode of the mobile terminal is a handheld non-hands-free call, the charging current is adjusted to the second charging rate current, thereby reducing The heating condition of the terminal, and using the NTC thermistor to detect the real-time temperature of the heat source position of the face area, the real-time temperature of the heat source position of the human ear area, and the real-time temperature of the heat source position of the human hand area, when the temperature of the heat source position of the face area is greater than the first preset When the face temperature threshold is used, the background application of the face area device is stopped.
- the background application of the device in the human ear area is stopped, and when the temperature of the heat source position of the human hand area is greater than the first
- the preset face temperature threshold is preset
- the background application of the manual area device is stopped, wherein the second charging rate current is smaller than the preset charging rate current of the mobile terminal, and the NTC thermistor distributed in each heat source position on the main board is realized.
- the charge current is smaller than a predetermined current charge rate, taking into account the different parts of the body and the heat sensitivity of different terminals of different heat sources differentiated for temperature control, reduce the frequency of the CPU, thereby making the respective areas where heat decreases.
- the method further includes:
- Step 1608 when the calling mode of the mobile terminal is not a handheld non-hands-free call, adjusting the charging current of the mobile terminal to the first charging rate current;
- Step 1610 detecting a location temperature of a heat source in a face area, a temperature position of a heat source in a human ear region, and a temperature position of a heat source in a human hand zone;
- Step 1612 Stop the background application of the face area device when the temperature of the face area heat source is greater than the preset hand temperature threshold; and stop the background application of the ear area device when the temperature of the heat source position of the ear area is greater than the preset hand temperature threshold When the location temperature of the manual area heat source is greater than the preset handheld temperature threshold, the background application of the manual area device is stopped.
- the first charging rate current is greater than the second charging rate current, and the first charging rate current is less than the preset charging rate current of the mobile terminal.
- the charging current of the mobile terminal is adjusted to a first charging rate current, and the temperature of the face region heat source is detected by the NTC thermistor, and the heat source of the ear region is detected.
- the position temperature and the heat source position temperature of the human hand area stop the background application of the face area device when the temperature of the face area heat source position is greater than the preset hand temperature threshold.
- the background application of the ear area device stops the background application of the human hand area device when the manual area heat source position temperature is greater than the preset hand temperature threshold, wherein the first charging rate current is less than the preset charging rate current of the mobile terminal.
- the NTC thermistor distributed in each heat source position on the main board, the real-time temperature monitoring of the main heat source positions inside the terminal is realized. Since the terminal belongs to the call state, the charging current is less than the preset charging rate current, and the handheld current is non-free. In the case of a call, the terminal can be charged with a first charge rate current greater than the second charge rate current, thereby reducing the heat generation of the terminal.
- the step of adjusting the mobile terminal according to the first non-handheld answering adjustment manner includes:
- Step 1800 charging the mobile terminal according to a preset charging rate current
- Step 1802 detecting a heat source position temperature of a face area, a heat source position temperature of a human ear area, and a heat source position temperature of a human hand area;
- Step 1804 When the temperature of the face area heat source is greater than the preset maximum temperature threshold, the background application of the face area device is stopped; when the temperature of the hot spot of the human ear area is greater than the preset maximum temperature threshold When the value is used, the background application of the device in the human ear area is stopped; when the temperature of the heat source position of the human hand area is greater than the preset maximum temperature threshold, the background application of the device of the human hand area is stopped.
- the mobile terminal charges the current according to a preset charging rate, and uses the NTC thermistor to detect the temperature of the face region heat source and the temperature of the human ear region heat source.
- the heat source position temperature of the human hand area stops the background application of the face area device when the temperature of the heat source position of the face area is greater than the preset maximum temperature threshold.
- the human ear area is stopped.
- the background application of the device when the temperature of the hot spot of the manual area is greater than the preset maximum temperature threshold, the background application of the device of the manual area is stopped, and the non-handheld hands-free call is charged according to the normal current, and the NTC thermistor at each heat source position
- the application of the terminal background is frozen and the CPU is down-clocked.
- the step of adjusting the mobile terminal according to the second hand-held adjustment mode comprises:
- Step 1120 Determine whether the calling mode of the mobile terminal is a handheld non-hands-free call
- Step 1122 When the mobile terminal's calling mode is a handheld non-hands-free call, detecting a face area heat source position temperature, a human ear area heat source position temperature, and a hand area heat source position temperature;
- Step 1124 When the temperature of the face area heat source is greater than the first preset face temperature threshold, stop the background application of the face area device; when the temperature of the human ear area heat source is greater than the second preset face temperature threshold, stop the person. The background application of the ear area device; when the manual area heat source position temperature is greater than the third preset face temperature threshold, the background application of the human hand area device is stopped.
- the NTC thermistor is utilized. Detecting the heat source position temperature of the face area, the heat source position temperature of the human ear area, and the heat source position temperature of the human hand area. When the temperature of the face area heat source position is greater than the first preset face temperature threshold, the background application of the face area device is stopped, when the person When the temperature of the ear region heat source is greater than the second preset face temperature threshold, the background application of the device in the human ear region is stopped.
- the background application of the device of the human hand region is stopped.
- the real-time temperature monitoring of the main heat source locations inside the terminal is realized by NTC thermistors distributed on the heat source positions on the main board, taking into account the different degrees of heat sensitivity of different parts of the human body. Differentiating the temperature control of different heat sources of the terminal reduces the frequency of use of the CPU, thereby causing the heating condition of the corresponding area to decrease.
- the method further includes:
- Step 1126 when the mobile terminal's call mode is not a handheld non-hands-free call, detecting the face area heat source position temperature, the ear area heat source position temperature, and the hand area heat source position temperature;
- Step 1128 When the temperature of the face region heat source is greater than the preset handheld temperature threshold, the background application of the face device is stopped; when the temperature of the hot spot of the ear region is greater than the preset handheld temperature threshold, the background application of the device for stopping the ear region is stopped. When the location temperature of the manual area heat source is greater than the preset handheld temperature threshold, the background application of the manual area device is stopped.
- the NTC thermistor when the calling mode of the mobile terminal is a hands-free call, the NTC thermistor is used to detect the temperature of the face region heat source, the temperature of the ear region heat source, the temperature of the hand region heat source, and the face region heat source.
- the position temperature is greater than the preset handheld temperature threshold, the background application of the face area device is stopped.
- the background application of the device in the human ear area is stopped, when the temperature of the heat source position of the human hand area is greater than
- the handheld temperature threshold is preset
- the background application of the manual area device is stopped, and the real-time temperature of each main heat source position in the terminal is monitored by the NTC thermistor distributed at each heat source position on the main board, and the area is judged by the hand-held call. Whether the temperature exceeds the preset handheld temperature threshold, and freezes the background application of the corresponding area when it is exceeded, thereby reducing the fever of the terminal and reducing the frequency of the CPU.
- the step of adjusting the mobile terminal according to the second non-handheld answering adjustment manner includes:
- Step 1140 detecting a heat source position temperature of the face area, a heat source position temperature of the human ear area, and a heat source position temperature of the human hand area;
- Step 1142 When the temperature of the face region heat source is greater than the preset maximum temperature threshold, the background application of the face region device is stopped; when the temperature of the human ear region heat source is greater than the preset maximum temperature threshold, the background application of the human ear region device is stopped.
- the temperature of the hot spot of the manual area is greater than the preset maximum temperature threshold, the background application of the device of the manual area is stopped.
- the NTC thermistor when the answering mode of the mobile terminal is non-handheld, the NTC thermistor is used to detect the heat source position temperature of the face area, the heat source position temperature of the human ear area, and the heat of the hand area.
- Source position temperature when the temperature of the face area heat source is greater than the preset maximum temperature threshold, the background application of the face area device is stopped, and when the temperature of the hot spot of the human ear area is greater than the preset maximum temperature threshold, the background of the device of the human ear area is stopped.
- the background application of the manual area device is stopped, and the real-time temperature monitoring of the main heat source positions inside the terminal is realized by the NTC thermistor distributed at each heat source position on the main board. .
- FIG. 2 is a schematic block diagram of an apparatus 200 for adjusting a heat generation condition of a mobile terminal according to an embodiment of the present invention, which is described below with reference to FIG. Apparatus 200 for regulating a thermal condition of a mobile terminal in accordance with some embodiments of the present invention.
- the first determining module 202 is configured to determine, when the mobile terminal has an incoming call and answer the call, whether the mobile terminal is in a charging state;
- the second determining module 204 is configured to determine, when the mobile terminal is in a charging state, whether the answering mode of the mobile terminal is a handheld answering;
- the first processing module 206 is configured to adjust the mobile terminal according to the first hand-held answering mode when the answering mode of the mobile terminal is hand-held; and when the answering mode of the mobile terminal is non-handheld, according to the first non-handheld answering
- the adjustment mode adjusts the mobile terminal.
- the device 200 for adjusting the heat generation condition of the mobile terminal provided by the first judgment module 202 determines whether the mobile terminal is in a charging state when the mobile terminal has an incoming call and answers, and passes the second judgment when the mobile terminal is in a charging state.
- the module 204 determines whether the answering mode of the mobile terminal is a hand-held answering.
- the first processing module 206 adjusts the mobile terminal according to the first hand-held answering adjustment mode when the receiving mode of the mobile terminal is hand-held, and when the receiving mode of the mobile terminal is In the case of non-handheld answering, the mobile terminal is adjusted according to the first non-handheld answering adjustment mode, and in different call scenarios, according to different temperature sensitivity of the human body, differentiating control of temperature in different regions of the terminal is realized, and the control is reduced.
- the CPU frequency solves the heating problem of the terminal more efficiently and sensitively, and improves the user experience.
- the first processing module 206 includes:
- the third determining module 2062 is configured to determine whether the calling mode of the mobile terminal is a handheld non-hands-free call
- the first processing module 206 is further configured to adjust the charging current of the mobile terminal to the second charging rate current when the calling mode of the mobile terminal is a handheld non-hands-free calling;
- the detecting module 2064 is configured to detect a heat source position temperature of the face area, a heat source position temperature of the human ear area, and a heat source position temperature of the human hand area;
- the second processing module 2066 is configured to stop the background application of the face area device when the face area heat source position temperature is greater than the first preset face temperature threshold; when the human ear area heat source position temperature is greater than the second preset face temperature When the threshold is used, the background application of the device in the human ear region is stopped; when the temperature of the heat source location in the human hand region is greater than the third preset face temperature threshold, the background application of the device in the human hand region is stopped.
- the third determining module 2062 determines whether the calling mode of the mobile terminal is a handheld non-hands-free call.
- the first processing module 206 adjusts the charging current to The second charging rate current, thereby reducing the heating condition of the terminal, and detecting the real-time temperature of the heat source position of the human face region, the real-time temperature of the heat source position of the human ear region, and the real-time temperature of the heat source position of the human hand region by using the detecting module 2064, and the second processing module 2066
- the temperature of the face region heat source is greater than the first preset face temperature threshold
- the background application of the face region device is stopped, and when the temperature of the human ear region heat source is greater than the second preset face temperature threshold, the human ear region device is stopped.
- the background application stops the background application of the human hand area device when the temperature of the hot spot position of the manual area is greater than the third preset face temperature threshold, wherein the second charging rate current is smaller than the preset charging rate current of the mobile terminal, and is distributed on the main board
- the NTC thermistor at each heat source position realizes the main heat source positions inside the terminal When the temperature is monitored, the charging current is less than the preset charging rate current, and the temperature sensitivity of different parts of the human body is different for different heat sources of the terminal, and the frequency of CPU usage is reduced. In turn, the heating of the corresponding area is reduced.
- the first processing module 206 is further configured to adjust the charging current of the mobile terminal to the first charging rate current when the calling mode of the mobile terminal is not a handheld non-hands-free call;
- the detecting module 2064 is further configured to detect a heat source position temperature of the face area, a heat source position temperature of the human ear area, and a heat source position temperature of the human hand area;
- the second processing module 2066 is further configured to: when the temperature of the face region heat source is greater than the preset handheld When the temperature threshold is used, the background application of the face area device is stopped; when the temperature of the hot spot position of the human ear area is greater than the preset handheld temperature threshold, the background application of the device in the human ear area is stopped; when the temperature of the heat source position of the human hand area is greater than the preset handheld temperature threshold , to stop the background application of the human hand zone device.
- the first charging rate current is greater than the second charging rate current, and the first charging rate current is less than the preset charging rate current of the mobile terminal.
- the first processing module 206 adjusts the charging current of the mobile terminal to the first charging rate current when the calling mode of the mobile terminal is a hands-free calling, and detects the temperature of the face source heat source by using the detecting module 2064.
- the heat source position temperature of the human ear area and the heat source position temperature of the human hand area, and the second processing module 2066 stops the background application of the face area device when the temperature of the face area heat source position is greater than the preset hand temperature threshold, when the heat source position temperature of the human ear area is greater than
- the handheld temperature threshold is preset
- the background application of the device in the human ear region is stopped, and when the temperature of the hot spot of the human hand region is greater than the preset handheld temperature threshold, the background application of the device of the human hand region is stopped, wherein the first charging rate current is smaller than the pre-loading of the mobile terminal Set the charging current.
- the real-time temperature monitoring of the main heat source positions inside the terminal is realized. Since the terminal belongs to the call state, the charging current is less than the preset charging rate current, and the handheld current is non-free. In the case of a call, the terminal can be charged with a first charge rate current greater than the second charge rate current, thereby reducing the heat generation of the terminal.
- the first processing module 206 is further configured to: when the answering mode of the mobile terminal is non-handheld, charging the mobile terminal according to the preset charging rate current;
- the detecting module 2064 is further configured to detect a heat source position temperature of the face area, a heat source position temperature of the human ear area, and a heat source position temperature of the human hand area;
- the second processing module 2066 is further configured to stop the background application of the face area device when the face area heat source position temperature is greater than the preset maximum temperature threshold; and stop the person when the human ear area heat source position temperature is greater than a preset maximum temperature threshold The background application of the ear area device; when the manual area heat source position temperature is greater than the preset maximum temperature threshold, the background application of the human hand area device is stopped.
- the first processing module 206 charges the mobile terminal according to a preset charging rate current, and uses the detecting module 2064 to detect the temperature of the face source heat source and the human ear.
- Regional heat source location temperature, manual location heat source location temperature The second processing module 2066 stops the background application of the face region device when the temperature of the face region heat source is greater than the preset maximum temperature threshold, and stops the human ear region when the temperature of the hot spot of the human ear region is greater than a preset maximum temperature threshold.
- the background application of the device when the temperature of the hot spot of the manual area is greater than the preset maximum temperature threshold, the background application of the device of the manual area is stopped, and the non-handheld hands-free call is charged according to the normal current, and the NTC thermistor at each heat source position
- the application of the terminal background is frozen and the CPU is down-clocked.
- the second judging module 204 is further configured to: when the mobile terminal is not in the charging state, determine whether the answering mode of the mobile terminal is handheld answering;
- the first processing module 206 is further configured to adjust the mobile terminal according to the second hand-held answering mode when the answering mode of the mobile terminal is hand-held; and when the answering mode of the mobile terminal is non-handheld, according to the The second non-handheld answering adjustment mode adjusts the mobile terminal.
- the second determining module 204 determines whether the answering mode of the mobile terminal is handheld answering.
- the first processing module 206 follows the first The second hand-held answering adjustment mode adjusts the mobile terminal.
- the mobile terminal is adjusted according to the second non-handheld answering adjustment mode, and the terminal is differentiated in various situations.
- the charging current configuration and the temperature control reduce the CPU frequency, thereby solving the heating problem of the terminal more efficiently and sensitively, and improving the user experience.
- the first processing module 206 includes:
- the third determining module 2062 is further configured to: when the answering mode of the mobile terminal is handheld answering, determine whether the calling mode of the mobile terminal is a handheld non-hands-free call;
- the detecting module 2064 is further configured to: when the calling mode of the mobile terminal is a handheld non-hands-free call, detecting a temperature of the face region heat source, a temperature of the hot spot of the human ear region, and a temperature of the heat source of the human hand zone;
- the second processing module 2066 is further configured to stop the background application of the face area device when the face area heat source position temperature is greater than the first preset face temperature threshold; when the human ear area heat source position is warm When the degree is greater than the second preset face temperature threshold, the background application of the human ear area device is stopped; when the manual area heat source position temperature is greater than the third preset face temperature threshold, the background application of the human hand area device is stopped.
- the third determining module 2062 determines whether the calling mode of the mobile terminal is a handheld non-hands-free call, and when the calling mode of the mobile terminal is a handheld non-hands-free call, The detecting module 2064 detects the heat source position temperature of the face area, the heat source position temperature of the human ear area, and the heat source position temperature of the human hand area, and the second processing module 2066 stops the person when the temperature of the face area heat source position is greater than the first preset face temperature threshold.
- the background application of the face area device stops the background application of the human ear area device when the temperature of the hot spot position of the human ear area is greater than the second preset face temperature threshold, when the heat source position temperature of the human hand area is greater than the third preset face temperature threshold
- the background application of the manual area device is stopped, and the real-time temperature monitoring of the main heat source positions inside the terminal is realized by the NTC thermistor distributed at each heat source position on the main board, taking into account the different heat sensitivity of different parts of the human body to different heat sources of the terminal. Differentiate the temperature control, reduce the frequency of CPU usage, and then make the corresponding area The fever cases dropped.
- the detecting module 2064 is further configured to: when the mobile terminal's calling mode is not a handheld non-hands-free call, detecting a face area heat source position temperature, a human ear area heat source position temperature, and a human hand area heat source position temperature;
- the second processing module 2066 is further configured to stop the background application of the face region device when the face region heat source location temperature is greater than the preset handheld temperature threshold; and stop the person when the human ear region heat source location temperature is greater than the preset handheld temperature threshold The background application of the ear area device; when the manual area heat source position temperature is greater than the preset hand temperature threshold, the background application of the human hand area device is stopped.
- the detecting module 2064 detects the heat source position temperature of the face area, the heat source position temperature of the human ear area, and the heat source position temperature of the human hand area, and the second processing module 2066 When the temperature of the face area heat source is greater than the preset hand temperature threshold, the background application of the face area device is stopped.
- the background application of the device of the human ear area is stopped, when the hand area is
- the heat source position temperature is greater than the preset hand temperature threshold
- the background application of the manual area device is stopped, and the main heat source inside the terminal is realized by the NTC thermistor distributed at each heat source position on the main board.
- the real-time temperature monitoring of the location determines whether the temperature of the area exceeds the preset hand-held temperature threshold during the hand-held call, and freezes the background application of the corresponding area when the time is exceeded, thereby reducing the heat generation of the terminal and reducing the frequency of the CPU.
- the first processing module 206 further includes:
- the detecting module 2064 is further configured to: when the answering mode of the mobile terminal is non-handheld, detecting the temperature of the hot spot position of the face area, the temperature of the hot spot of the human ear area, and the temperature of the heat source position of the human hand area;
- the second processing module 2066 is further configured to stop the background application of the face area device when the face area heat source position temperature is greater than the preset maximum temperature threshold; and stop the person when the human ear area heat source position temperature is greater than a preset maximum temperature threshold The background application of the ear area device; when the manual area heat source position temperature is greater than the preset maximum temperature threshold, the background application of the human hand area device is stopped.
- the detecting module 2064 detects the heat source position temperature of the face area, the heat source position temperature of the human ear area, and the heat source position temperature of the human hand area, and the second processing module 2066 is a person.
- the temperature of the face region heat source is greater than the preset maximum temperature threshold
- the background application of the face device is stopped.
- the temperature of the hot spot of the human ear region is greater than the preset maximum temperature threshold
- the background application of the device in the human ear region is stopped, and the heat source of the human hand region is used.
- the position temperature is greater than the preset maximum temperature threshold
- the background application of the manual area device is stopped, and the real-time temperature of each main heat source position inside the terminal is monitored by the NTC thermistor distributed at each heat source position on the main board.
- FIG. 3 shows a schematic block diagram of a terminal 300 according to an embodiment of the present invention:
- the processor 302, the charging interface 304, the memory 306, the processor 302, the charging interface 304, and the memory 306 are connected by a bus.
- the memory 306 stores computer instructions, and the processor 302 implements the following steps by executing computer instructions: When the terminal has an incoming call and answers, it is determined whether the mobile terminal is in a charging state; when the mobile terminal is in a charging state, it is determined whether the receiving mode of the mobile terminal is a handheld answering; when the receiving mode of the mobile terminal is a handheld answering, according to the first The handheld answering adjustment mode adjusts the mobile terminal; when the receiving mode of the mobile terminal is non-handheld answering, the mobile terminal is adjusted according to the first non-handheld answering adjustment mode.
- the terminal provided by the present invention includes: a processor 302, a charging interface 304, a memory 306, a processor 302, a charging interface 304, and a memory 306 connected by a bus.
- the memory 306 stores computer instructions, and the processor 302 executes the computer.
- the instruction realizes the following method: when the mobile terminal has an incoming call and answers, it is determined whether the mobile terminal is in a charging state, and when the mobile terminal is in a charging state, it is determined by the acceleration sensor, the gyroscope and the air pressure sensor whether the receiving mode of the mobile terminal is Hand-held answering, when the answering mode of the mobile terminal is handheld answering, the mobile terminal is adjusted according to the first hand-held answering adjustment mode, and when the receiving mode of the mobile terminal is non-handheld answering, according to the first non-handheld answering adjusting mode to the mobile terminal
- the current solution does not consider the situation that the terminal is close to the human ear area when the non-hands-free call is held.
- the human face area is the most sensitive area of the human body, so the hand-held non-hands-free
- the call scenario needs to be optimally controlled for the heating condition of the terminal; in addition, the existing solution only controls the heating of the whole device when the terminal is charging, and does not take into account the difference in temperature sensitivity according to different regions such as the human ear, the face and the human hand. Then, according to different usage scenarios, different temperature control strategies for different heat sources in different areas of the whole machine are performed.
- the technical solution proposes a method and device for adjusting the heating condition of the mobile terminal, and the CPU and the acceleration sensor, the gyroscope and the air pressure sensor determine whether the terminal is in the handheld mode, and determine whether the user uses the handheld non-hands-free mode to make a call through the CPU and the optical distance sensor.
- the real-time temperature of different parts of the terminal is monitored by the NTC thermistor at each heat source position inside the terminal, and then the temperature control of different heat sources of the terminal is differentiated according to whether the terminal is in the charging mode and the sensitivity of different parts of the human body to heat sensitivity. .
- the terminal machine can be divided into the human ear area, the human face area and the human hand area according to the user's use scene.
- the general human ear area is the 3cm area under the earpiece and the earpiece, and the face area is the 3cm to 6cm area below the earpiece, and the human hand area is the human face. Below the area and the back shell area.
- the human ear area, the human face area and the human hand area are different in sensitivity to the terminal temperature, so in the case of charging and non-charging, the voice non-hands-free calling has different control on the terminal temperature.
- Table 1 is the terminal location division table. It should be noted that the specific ambient temperature and temperature rise standard values in Table 1 may be confidential and have been removed.
- FIG. 4a is a schematic block diagram of a front side heat source component of a terminal according to an embodiment of the present invention.
- the main heat source components on the front side of the terminal mainly include a TD module main chip, a PMU, an AP, an HD, an LCD, and an LED.
- the front secondary heat source component mainly has a memory.
- FIG. 4b is a schematic block diagram of a heat source component on the back side of the terminal according to an embodiment of the present invention.
- the main heat source components on the back side of the terminal mainly include a camera, a flash lamp, and an RF power amplifier.
- the secondary heat source components on the back side of the terminal mainly include an RF transceiver, a CODEC chip, and a terminal.
- the crystal on the back is susceptible to temperature and polarization, so it is critical to the temperature control of the terminal. It should be noted that the heat source distribution of the terminal is related to the structure of the specific project and the PCB layout.
- Embodiment 2 A method for adjusting a heat generation condition of a mobile terminal according to an embodiment of the present invention:
- the acceleration sensor, the gyroscope and the air pressure sensor determine whether the user picks up in a hand-held manner, if not, perform operation 1, and if yes, perform a judgment 1;
- Operation 1 Charging according to the normal charging current. If the temperature monitored by the NTC thermistor of each heat source position does not exceed the maximum temperature threshold set by the system, the application in the terminal background does not freeze the application, and the CPU does not perform the frequency reduction processing.
- Judgment 1 Determine whether the user uses handheld non-hands-free (ie, hand-held by distance sensor (PS) Mode call in the near face), if not, perform operation 2, and if yes, perform operation 4.
- handheld non-hands-free ie, hand-held by distance sensor (PS) Mode call in the near face
- PS distance sensor
- Face area heat source position NTC thermistor monitoring temperature is greater than the face temperature threshold or the human ear area heat source position NTC thermistor monitoring temperature is greater than the face temperature threshold or the manual area heat source position NTC thermistor monitoring When the temperature is greater than the face temperature threshold, freeze the background application using the corresponding area device to reduce the CPU frequency;
- the acceleration sensor, the gyroscope and the air pressure sensor determine whether the user picks up in a hand-held manner, if not, perform operation 3, if it is to continue the judgment 1;
- Operation 3 If the temperature monitored by the NTC thermistor of each heat source position does not exceed the maximum temperature threshold set by the system, the corresponding application in the terminal background does not freeze the application, and the CPU does not perform the frequency reduction processing.
- Judgment 1 Determine whether the user uses the handheld non-hands-free (ie, the hand is close to the face) to talk by the distance sensor (PS). If not, perform operation 5, and if yes, perform operation 6.
- Face area heat source position NTC thermistor monitoring temperature is greater than the face temperature threshold or the ear area heat source position NTC thermistor monitoring temperature is greater than the face temperature threshold or the manual area heat source position NTC thermistor monitoring When the temperature is greater than the face temperature threshold, freeze the background application using the corresponding area device to reduce the CPU frequency;
- Operation 6 When the temperature monitored by the NTC thermistor of each heat source position is greater than the handheld temperature threshold, the background application is frozen and the CPU frequency is lowered.
- the method and device for adjusting the heating condition of the terminal during the terminal call of the present invention have the following beneficial effects: the determination of different scenes during the voice call is realized by the CPU and various sensors; and the NTC thermistor distributed at each heat source position on the main board is realized. Real-time temperature monitoring of the main heat source locations inside the terminal; in different call scenarios, according to the human body's sensitivity to temperature In the same way, the control of the temperature difference in different regions of the terminal is realized; the differentiated temperature control improves the user experience.
- the description of the terms “one embodiment”, “some embodiments”, “specific embodiments” and the like means that the specific features, structures, materials, or characteristics described in connection with the embodiments or examples are included in the present invention. At least one embodiment or example.
- the schematic representation of the above terms does not necessarily refer to the same embodiment or example.
- the particular features, structures, materials, or characteristics described may be combined in a suitable manner in any one or more embodiments or examples.
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Abstract
本发明提出了一种调节移动终端发热状况的方法,包括:在移动终端有来电并接听的情况下,判断移动终端是否处于充电状态;当移动终端处于充电状态时,判断移动终端的接听方式是否为手持接听;当移动终端的接听方式为手持接听时,按照第一手持接听调节方式对移动终端进行调节;当移动终端的接听方式为非手持接听时,按照第一非手持接听调节方式对移动终端进行调节,本发明通过在不同的通话场景下,根据人体对温度敏感程度的不同,实现了对终端不同区域温度进行差异化的控制,降低CPU频率,进而更加高效、灵敏地解决终端的发热问题,提升了用户的使用体验。
Description
本申请要求于2016年11月21日提交中国专利局,申请号为201611058632.9、发明名称为“调节移动终端发热状况的方法、装置及终端”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
本发明涉及移动终端技术领域,具体而言,涉及一种调节移动终端发热状况的方法、装置及终端。
目前,随着智能机的普及,终端的屏幕也越来越大,终端的发热状况也日益严重,尤其是最近两年发展起来的直流高压快充技术和金属壳终端的流行,终端的发热也逐渐成为用户的一个痛点。而现有方案中只是对终端在充电时整机的发热控制,未考虑到手持非免提通话时终端靠近人脸人耳区的情况。如何高效地解决终端发热问题成为亟待解决的问题。
发明内容
本发明旨在至少解决现有技术或相关技术中存在的技术问题之一。
为此,本发明的一个目的在于提出了一种调节移动终端发热状况的方法。
本发明的另一个目的在于提出了一种调节移动终端发热状况的装置。
本发明的再一个目的在于提出了一种终端。
有鉴于此,根据本发明的一个目的,提出了一种调节移动终端发热状况的方法,包括:在移动终端有来电并接听的情况下,判断移动终端是否处于充电状态;当移动终端处于充电状态时,判断移动终端的接听方式是否为手持接听;当移动终端的接听方式为手持接听时,按照第一手持接听调节方式对移动终端进行调节;当移动终端的接听方式为非手持接听时,按照第一非手持接听调节方式对移动终端进行调节。
本发明提供的调节移动终端发热状况的方法,在移动终端有来电并接
听的情况下,判断移动终端是否处于充电状态,当移动终端处于充电状态时,通过加速度传感器、陀螺仪以及气压传感器判断移动终端的接听方式是否为手持接听,当移动终端的接听方式为手持接听时,按照第一手持接听调节方式对移动终端进行调节,当移动终端的接听方式为非手持接听时,按照第一非手持接听调节方式对移动终端进行调节,通过在不同的通话场景下,根据人体对温度敏感程度的不同,实现了对终端不同区域温度进行差异化的控制,降低CPU频率,进而更加高效、灵敏地解决终端的发热问题,提升了用户的使用体验。
根据本发明的上述调节移动终端发热状况的方法,还可以具有以下技术特征:
在上述技术方案中,优选地,按照所述第一手持接听调节方式对所述移动终端进行调节的步骤包括:判断移动终端的通话方式是否为手持非免提通话;当移动终端的通话方式为手持非免提通话时,将移动终端的充电电流调整至第二充电倍率电流;检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;当人脸区域热源位置温度大于第一预设人脸温度阈值时,停止人脸区域器件的后台应用;当人耳区域热源位置温度大于第二预设人脸温度阈值时,停止人耳区域器件的后台应用;当人手区域热源位置温度大于第三预设人脸温度阈值时,停止人手区域器件的后台应用。
在该技术方案中,通过距离传感器判断移动终端的通话方式是否为手持非免提通话,当移动终端的通话方式为手持非免提通话时,将充电电流调整至第二充电倍率电流,从而降低终端的发热情况,并且利用NTC热敏电阻检测人脸区域热源位置的实时温度、人耳区域热源位置的实时温度、人手区域热源位置的实时温度,当人脸区域热源位置温度大于第一预设人脸温度阈值时,停止人脸区域器件的后台应用,当人耳区域热源位置温度大于第二预设人脸温度阈值时,停止人耳区域器件的后台应用,当人手区域热源位置温度大于第三预设人脸温度阈值时,停止人手区域器件的后台应用,其中,第二充电倍率电流小于移动终端的预设充电倍率电流,通过分布于主板上各热源位置的NTC热敏电阻实现了对终端内部各主要热源
位置实时温度的监测,由于终端属于通话状态,则充电电流要小于预设充电倍率电流,并且兼顾人体不同部位对热敏感程度的不同对终端不同热源进行差异化的温度控制,降低CPU的使用频率,进而使得相应区域的发热情况下降。
在上述技术方案中,优选地,还包括:当移动终端的通话方式不为手持非免提通话时,将移动终端的充电电流调整至第一充电倍率电流;检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;当人脸区域热源位置温度大于预设手持温度阈值时,停止人脸区域器件的后台应用;当人耳区域热源位置温度大于预设手持温度阈值时,停止人耳区域器件的后台应用;当人手区域热源位置温度大于预设手持温度阈值时,停止人手区域器件的后台应用。其中,第一充电倍率电流大于第二充电倍率电流,第一充电倍率电流小于移动终端的预设充电倍率电流。
在该技术方案中,当移动终端的通话方式为手持免提通话时,将移动终端的充电电流调整至第一充电倍率电流,利用NTC热敏电阻检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度,当人脸区域热源位置温度大于预设手持温度阈值时,停止人脸区域器件的后台应用,当人耳区域热源位置温度大于预设手持温度阈值时,停止人耳区域器件的后台应用,当人手区域热源位置温度大于预设手持温度阈值时,停止人手区域器件的后台应用,其中,第一充电倍率电流小于移动终端的预设充电倍率电流。通过分布于主板上各热源位置的NTC热敏电阻实现了对终端内部各主要热源位置实时温度的监测,由于终端属于通话状态,则充电电流要小于预设充电倍率电流,另外与为手持非免提通话的情况不同,可以以大于第二充电倍率电流的第一充电倍率电流对终端充电,从而降低终端的发热情况。
在上述技术方案中,优选地,按照第一非手持接听调节方式对移动终端进行调节的步骤包括:将移动终端按照预设充电倍率电流充电;检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;当人脸区域热源位置温度大于预设最大温度阈值时,停止人脸区域器件的后台应用;当人耳区域热源位置温度大于预设最大温度阈值时,停止人耳
区域器件的后台应用;当人手区域热源位置温度大于预设最大温度阈值时,停止人手区域器件的后台应用。
在该技术方案中,当所述移动终端的接听方式为非手持接听时,将移动终端按照预设充电倍率电流充电,利用NTC热敏电阻检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度,当人脸区域热源位置温度大于预设最大温度阈值时,停止人脸区域器件的后台应用,当人耳区域热源位置温度大于预设最大温度阈值时,停止人耳区域器件的后台应用,当人手区域热源位置温度大于预设最大温度阈值时,停止人手区域器件的后台应用,通过在非手持免提通话时,按照正常电流充电,并且在各热源位置NTC热敏电阻监测的温度超过系统预设最大温度阈值时,对终端后台相应应用进行应用冻结,对CPU进行降频处理。
在上述技术方案中,优选地,还包括:当移动终端不处于充电状态时,判断移动终端的接听方式是否为手持接听;当移动终端的接听方式为手持接听时,按照第二手持接听调节方式对移动终端进行调节;当移动终端的接听方式为非手持接听时,按照第二非手持接听调节方式对移动终端进行调节。
在该技术方案中,当移动终端不处于充电状态时,通过加速度传感器,陀螺仪以及气压传感器判断移动终端的接听方式是否为手持接听,当移动终端的接听方式为手持接听时,按照第二手持接听调节方式对移动终端进行调节,当移动终端的接听方式为非手持接听时,按照第二非手持接听调节方式对移动终端进行调节,通过对终端在各种情况下的差异化的充电电流配置以及温度控制,降低CPU频率,进而更加高效、灵敏地解决终端的发热问题,提升了用户的使用体验。
在上述技术方案中,优选地,按照第二手持接听调节方式对移动终端进行调节的步骤包括:判断移动终端的通话方式是否为手持非免提通话;当移动终端的通话方式为手持非免提通话时,检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;当人脸区域热源位置温度大于第一预设人脸温度阈值时,停止人脸区域器件的后台应用;当人耳区域热源位置温度大于第二预设人脸温度阈值时,停止人耳区域器件的后
台应用;当人手区域热源位置温度大于第三预设人脸温度阈值时,停止人手区域器件的后台应用。
在该技术方案中,当移动终端的接听方式为手持接听时,判断移动终端的通话方式是否为手持非免提通话,当移动终端的通话方式为手持非免提通话时,利用NTC热敏电阻检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度,当人脸区域热源位置温度大于第一预设人脸温度阈值时,停止人脸区域器件的后台应用,当人耳区域热源位置温度大于第二预设人脸温度阈值时,停止人耳区域器件的后台应用,当人手区域热源位置温度大于第三预设人脸温度阈值时,停止人手区域器件的后台应用,通过分布于主板上各热源位置的NTC热敏电阻实现了对终端内部各主要热源位置实时温度的监测,兼顾人体不同部位对热敏感程度的不同对终端不同热源进行差异化的温度控制,降低CPU的使用频率,进而使得相应区域的发热情况下降。
在上述技术方案中,优选地,还包括:当移动终端的通话方式不为手持非免提通话时,检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;当人脸区域热源位置温度大于预设手持温度阈值时,停止人脸区域器件的后台应用;当人耳区域热源位置温度大于预设手持温度阈值时,停止人耳区域器件的后台应用;当人手区域热源位置温度大于预设手持温度阈值时,停止人手区域器件的后台应用。
在该技术方案中,当移动终端的通话方式为手持免提通话时,利用NTC热敏电阻检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度,当人脸区域热源位置温度大于预设手持温度阈值时,停止人脸区域器件的后台应用,当人耳区域热源位置温度大于预设手持温度阈值时,停止人耳区域器件的后台应用,当人手区域热源位置温度大于预设手持温度阈值时,停止人手区域器件的后台应用,通过分布于主板上各热源位置的NTC热敏电阻实现了对终端内部各主要热源位置实时温度的监测,通过在手持通话时判断该区域温度是否超过预设手持温度阈值,在超过时冻结对应区域的后台应用,从而降低终端的发热情况,降低CPU的频率。
在上述技术方案中,优选地,按照所述第二非手持接听调节方式对所述移动终端进行调节的步骤包括:检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;当人脸区域热源位置温度大于预设最大温度阈值时,停止人脸区域器件的后台应用;当人耳区域热源位置温度大于预设最大温度阈值时,停止人耳区域器件的后台应用;当人手区域热源位置温度大于预设最大温度阈值时,停止人手区域器件的后台应用。
在该技术方案中,当移动终端的接听方式为非手持接听时,利用NTC热敏电阻检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度,当人脸区域热源位置温度大于预设最大温度阈值时,停止人脸区域器件的后台应用,当人耳区域热源位置温度大于预设最大温度阈值时,停止人耳区域器件的后台应用,当人手区域热源位置温度大于预设最大温度阈值时,停止人手区域器件的后台应用,通过分布于主板上各热源位置的NTC热敏电阻实现了对终端内部各主要热源位置实时温度的监测。
根据本发明的另一个目的,提出了一种调节移动终端发热状况的装置,包括:第一判断模块,设置为在移动终端有来电并接听的情况下,判断移动终端是否处于充电状态;第二判断模块,设置为当移动终端处于充电状态时,判断移动终端的接听方式是否为手持接听;第一处理模块,设置为当移动终端的接听方式为手持接听时,按照第一手持接听调节方式对移动终端进行调节;当移动终端的接听方式为非手持接听时,按照第一非手持接听调节方式对移动终端进行调节。
本发明提供的调节移动终端发热状况的装置,通过第一判断模块在移动终端有来电并接听的情况下,判断移动终端是否处于充电状态,当移动终端处于充电状态时,通过第二判断模块判断移动终端的接听方式是否为手持接听,第一处理模块在移动终端的接听方式为手持接听时,按照第一手持接听调节方式对移动终端进行调节,以及当移动终端的接听方式为非手持接听时,按照第一非手持接听调节方式对移动终端进行调节,通过在不同的通话场景下,根据人体对温度敏感程度的不同,实现了对终端不同区域温度进行差异化的控制,降低CPU频率,进而更加高效、灵敏地解决
终端的发热问题,提升了用户的使用体验。
根据本发明的上述调节移动终端发热状况的装置,还可以具有以下技术特征:
在上述技术方案中,优选地,第一处理模块包括:第三判断模块,设置为判断移动终端的通话方式是否为手持非免提通话;第一处理模块,还设置为当移动终端的通话方式为手持非免提通话时,将移动终端的充电电流调整至第二充电倍率电流;检测模块,设置为检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;第二处理模块,设置为当人脸区域热源位置温度大于第一预设人脸温度阈值时,停止人脸区域器件的后台应用;当人耳区域热源位置温度大于第二预设人脸温度阈值时,停止人耳区域器件的后台应用;当人手区域热源位置温度大于第三预设人脸温度阈值时,停止人手区域器件的后台应用。
在该技术方案中,通过第三判断模块判断移动终端的通话方式是否为手持非免提通话,当移动终端的通话方式为手持非免提通话时,第一处理模块将充电电流调整至第二充电倍率电流,从而降低终端的发热情况,并且利用检测模块检测人脸区域热源位置的实时温度、人耳区域热源位置的实时温度、人手区域热源位置的实时温度,第二处理模块当人脸区域热源位置温度大于第一预设人脸温度阈值时,停止人脸区域器件的后台应用,当人耳区域热源位置温度大于第二预设人脸温度阈值时,停止人耳区域器件的后台应用,当人手区域热源位置温度大于第三预设人脸温度阈值时,停止人手区域器件的后台应用,其中,第二充电倍率电流小于移动终端的预设充电倍率电流,通过分布于主板上各热源位置的NTC热敏电阻实现了对终端内部各主要热源位置实时温度的监测,由于终端属于通话状态,则充电电流要小于预设充电倍率电流,并且兼顾人体不同部位对热敏感程度的不同对终端不同热源进行差异化的温度控制,降低CPU的使用频率,进而使得相应区域的发热情况下降。
在上述技术方案中,优选地,第一处理模块,还设置为当移动终端的通话方式不为手持非免提通话时,将移动终端的充电电流调整至第一充电倍率电流;检测模块,还设置为检测人脸区域热源位置温度、人耳区域热源
位置温度、人手区域热源位置温度;第二处理模块,还设置为当人脸区域热源位置温度大于预设手持温度阈值时,停止人脸区域器件的后台应用;当人耳区域热源位置温度大于预设手持温度阈值时,停止人耳区域器件的后台应用;当人手区域热源位置温度大于预设手持温度阈值时,停止人手区域器件的后台应用。其中,第一充电倍率电流大于第二充电倍率电流,第一充电倍率电流小于移动终端的预设充电倍率电流。
在该技术方案中,第一处理模块当移动终端的通话方式为手持免提通话时,将移动终端的充电电流调整至第一充电倍率电流,利用检测模块检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度,第二处理模块当人脸区域热源位置温度大于预设手持温度阈值时,停止人脸区域器件的后台应用,当人耳区域热源位置温度大于预设手持温度阈值时,停止人耳区域器件的后台应用,当人手区域热源位置温度大于预设手持温度阈值时,停止人手区域器件的后台应用,其中,第一充电倍率电流小于移动终端的预设充电倍率电流。通过分布于主板上各热源位置的NTC热敏电阻实现了对终端内部各主要热源位置实时温度的监测,由于终端属于通话状态,则充电电流要小于预设充电倍率电流,另外与为手持非免提通话的情况不同,可以以大于第二充电倍率电流的第一充电倍率电流对终端充电,从而降低终端的发热情况。
在上述技术方案中,优选地,第一处理模块,还设置为当移动终端的接听方式为非手持接听时,将移动终端按照所述预设充电倍率电流充电;检测模块,还设置为检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;第二处理模块,还设置为当人脸区域热源位置温度大于预设最大温度阈值时,停止人脸区域器件的后台应用;当人耳区域热源位置温度大于预设最大温度阈值时,停止人耳区域器件的后台应用;当人手区域热源位置温度大于预设最大温度阈值时,停止人手区域器件的后台应用。
在该技术方案中,当所述移动终端的接听方式为非手持接听时,将移动终端按照预设充电倍率电流充电,利用检测模块检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度,第二处理模块当
人脸区域热源位置温度大于预设最大温度阈值时,停止人脸区域器件的后台应用,当人耳区域热源位置温度大于预设最大温度阈值时,停止人耳区域器件的后台应用,当人手区域热源位置温度大于预设最大温度阈值时,停止人手区域器件的后台应用,通过在非手持免提通话时,按照正常电流充电,并且在各热源位置NTC热敏电阻监测的温度超过系统预设最大温度阈值时,对终端后台相应应用进行应用冻结,对CPU进行降频处理。
在上述技术方案中,优选地,第二判断模块,还设置为当移动终端不处于充电状态时,判断移动终端的接听方式是否为手持接听;所述第一处理模块,还设置为当移动终端的接听方式为手持接听时,按照第二手持接听调节方式对移动终端进行调节;当移动终端的接听方式为非手持接听时,按照第二非手持接听调节方式对移动终端进行调节。
在该技术方案中,当移动终端不处于充电状态时,通过第二判断模块判断移动终端的接听方式是否为手持接听,当移动终端的接听方式为手持接听时,第一处理模块按照第二手持接听调节方式对移动终端进行调节,当移动终端的接听方式为非手持接听时,按照第二非手持接听调节方式对移动终端进行调节,通过对终端在各种情况下的差异化的充电电流配置以及温度控制,降低CPU频率,进而更加高效、灵敏地解决终端的发热问题,提升了用户的使用体验。
在上述技术方案中,优选地,第一处理模块包括:第三判断模块,还设置为当移动终端的接听方式为手持接听时,判断移动终端的通话方式是否为手持非免提通话;检测模块,还设置为当移动终端的通话方式为手持非免提通话时,检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;第二处理模块,还设置为当人脸区域热源位置温度大于第一预设人脸温度阈值时,停止人脸区域器件的后台应用;当人耳区域热源位置温度大于第二预设人脸温度阈值时,停止人耳区域器件的后台应用;当人手区域热源位置温度大于第三预设人脸温度阈值时,停止人手区域器件的后台应用。
在该技术方案中,当移动终端的接听方式为手持接听时,第三判断模块判断移动终端的通话方式是否为手持非免提通话,当移动终端的通话方
式为手持非免提通话时,利用检测模块检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度,第二处理模块当人脸区域热源位置温度大于第一预设人脸温度阈值时,停止人脸区域器件的后台应用,当人耳区域热源位置温度大于第二预设人脸温度阈值时,停止人耳区域器件的后台应用,当人手区域热源位置温度大于第三预设人脸温度阈值时,停止人手区域器件的后台应用,通过分布于主板上各热源位置的NTC热敏电阻实现了对终端内部各主要热源位置实时温度的监测,兼顾人体不同部位对热敏感程度的不同对终端不同热源进行差异化的温度控制,降低CPU的使用频率,进而使得相应区域的发热情况下降。
在上述技术方案中,优选地,检测模块,还设置为当移动终端的通话方式不为手持非免提通话时,检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;第二处理模块,还设置为当人脸区域热源位置温度大于预设手持温度阈值时,停止人脸区域器件的后台应用;当人耳区域热源位置温度大于预设手持温度阈值时,停止人耳区域器件的后台应用;当人手区域热源位置温度大于预设手持温度阈值时,停止人手区域器件的后台应用。
在该技术方案中,当移动终端的通话方式为手持免提通话时,利用检测模块检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度,第二处理模块当人脸区域热源位置温度大于预设手持温度阈值时,停止人脸区域器件的后台应用,当人耳区域热源位置温度大于预设手持温度阈值时,停止人耳区域器件的后台应用,当人手区域热源位置温度大于预设手持温度阈值时,停止人手区域器件的后台应用,通过分布于主板上各热源位置的NTC热敏电阻实现了对终端内部各主要热源位置实时温度的监测,通过在手持通话时判断该区域温度是否超过预设手持温度阈值,在超过时冻结对应区域的后台应用,从而降低终端的发热情况,降低CPU的频率。
在上述技术方案中,优选地,第一处理模块还包括:检测模块,还设置为当移动终端的接听方式为非手持接听时,检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;第二处理模块,还设置为
当人脸区域热源位置温度大于预设最大温度阈值时,停止人脸区域器件的后台应用;当人耳区域热源位置温度大于预设最大温度阈值时,停止人耳区域器件的后台应用;当人手区域热源位置温度大于预设最大温度阈值时,停止人手区域器件的后台应用。
在该技术方案中,当移动终端的接听方式为非手持接听时,利用检测模块检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度,第二处理模块当人脸区域热源位置温度大于预设最大温度阈值时,停止人脸区域器件的后台应用,当人耳区域热源位置温度大于预设最大温度阈值时,停止人耳区域器件的后台应用,当人手区域热源位置温度大于预设最大温度阈值时,停止人手区域器件的后台应用,通过分布于主板上各热源位置的NTC热敏电阻实现了对终端内部各主要热源位置实时温度的监测。
根据本发明的再一个目的,提出了一种终端,包括:处理器、充电接口、存储器,处理器、充电接口、存储器之间通过总线相连接,存储器中存储有计算机指令,处理器通过执行计算机指令从而实现以下方法:在移动终端有来电并接听的情况下,判断移动终端是否处于充电状态;当移动终端处于充电状态时,判断移动终端的接听方式是否为手持接听;当移动终端的接听方式为手持接听时,按照第一手持接听调节方式对移动终端进行调节;当移动终端的接听方式为非手持接听时,按照第一非手持接听调节方式对移动终端进行调节。
本发明提供的终端,包括:处理器、充电接口、存储器,处理器、充电接口、存储器之间通过总线相连接,存储器中存储有计算机指令,处理器通过执行计算机指令从而实现以下方法:在移动终端有来电并接听的情况下,判断移动终端是否处于充电状态,当移动终端处于充电状态时,通过加速度传感器、陀螺仪以及气压传感器判断移动终端的接听方式是否为手持接听,当移动终端的接听方式为手持接听时,按照第一手持接听调节方式对移动终端进行调节,当移动终端的接听方式为非手持接听时,按照第一非手持接听调节方式对移动终端进行调节,通过在不同的通话场景下,根据人体对温度敏感程度的不同,实现了对终端不同区域温度进行差异化的控制,
降低CPU频率,进而更加高效、灵敏地解决终端的发热问题,提升了用户的使用体验。
本发明的附加方面和优点将在下面的描述部分中变得明显,或通过本发明的实践了解到。
本发明的上述和/或附加的方面和优点从结合下面附图对实施例的描述中将变得明显和容易理解,其中:
图1a示出了本发明的一个实施例的调节移动终端发热状况的方法的流程示意图;
图1b示出了本发明的另一个实施例的调节移动终端发热状况的方法的流程示意图;
图2示出了本发明的一个实施例的调节移动终端发热状况的装置的示意框图;
图3示出了本发明的一个实施例的终端的示意框图;
图4a示出了本发明一个具体实施例的终端正面热源部件示意框图;
图4b示出了本发明一个具体实施例的终端背面热源部件示意框图。
为了能够更清楚地理解本发明的上述目的、特征和优点,下面结合附图和具体实施方式对本发明进行进一步的详细描述。需要说明的是,在不冲突的情况下,本申请的实施例及实施例中的特征可以相互组合。
在下面的描述中阐述了很多具体细节以便于充分理解本发明,但是,本发明还可以采用其他不同于在此描述的其他方式来实施,因此,本发明的保护范围并不限于下面公开的具体实施例的限制。
本发明第一方面的实施例,提出一种调节移动终端发热状况的方法,图1a示出了本发明的一个实施例的调节移动终端发热状况的方法的流程示意图:
步骤100,判断移动终端是否有来电并接听;
步骤102,在移动终端有来电并接听的情况下,判断移动终端是否处于充电状态;
步骤104,当移动终端处于充电状态时,判断移动终端的接听方式是否为手持接听;
步骤106,当移动终端的接听方式为手持接听时,按照第一手持接听调节方式对移动终端进行调节;
步骤108,当移动终端的接听方式为非手持接听时,按照第一非手持接听调节方式对移动终端进行调节;
步骤110,当移动终端不处于充电状态时,判断移动终端的接听方式是否为手持接听;
步骤112,当移动终端的接听方式为手持接听时,按照第二手持接听调节方式对移动终端进行调节;
步骤114,当移动终端的接听方式为非手持接听时,按照第二非手持接听调节方式对移动终端进行调节。
本发明提供的调节移动终端发热状况的方法,在移动终端有来电并接听的情况下,判断移动终端是否处于充电状态,当移动终端处于充电状态时,通过加速度传感器、陀螺仪以及气压传感器判断移动终端的接听方式是否为手持接听,当移动终端的接听方式为手持接听时,按照第一手持接听调节方式对移动终端进行调节,当移动终端的接听方式为非手持接听时,按照第一非手持接听调节方式对移动终端进行调节,通过在不同的通话场景下,根据人体对温度敏感程度的不同,实现了对终端不同区域温度进行差异化的控制,降低CPU频率,进而更加高效、灵敏地解决终端的发热问题,提升了用户的使用体验。当移动终端不处于充电状态时,通过加速度传感器,陀螺仪以及气压传感器判断移动终端的接听方式是否为手持接听,当移动终端的接听方式为手持接听时,按照第二手持接听调节方式对移动终端进行调节,当移动终端的接听方式为非手持接听时,按照第二非手持接听调节方式对移动终端进行调节,通过对终端在各种情况下的差异化的充电电流配置以及温度控制,降低CPU频率,进而更加高效、灵敏地解决终端的发热问题,提升了用户的使用体验。
图1b示出了本发明的另一个实施例的调节移动终端发热状况的方法的流程示意图,下面参照图1b描述根据本发明一些实施例所述的调节移动终端发热状况的方法。
在本发明的一个实施例中,如图1b所示,优选地,按照所述第一手持接听调节方式对所述移动终端进行调节的步骤包括:
步骤1600,判断移动终端的通话方式是否为手持非免提通话;
步骤1602,当移动终端的通话方式为手持非免提通话时,将移动终端的充电电流调整至第二充电倍率电流;
步骤1604,检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;
步骤1606,当人脸区域热源位置温度大于第一预设人脸温度阈值时,停止人脸区域器件的后台应用;当人耳区域热源位置温度大于第二预设人脸温度阈值时,停止人耳区域器件的后台应用;当人手区域热源位置温度大于第三预设人脸温度阈值时,停止人手区域器件的后台应用。
在该实施例中,通过距离传感器判断移动终端的通话方式是否为手持非免提通话,当移动终端的通话方式为手持非免提通话时,将充电电流调整至第二充电倍率电流,从而降低终端的发热情况,并且利用NTC热敏电阻检测人脸区域热源位置的实时温度、人耳区域热源位置的实时温度、人手区域热源位置的实时温度,当人脸区域热源位置温度大于第一预设人脸温度阈值时,停止人脸区域器件的后台应用,当人耳区域热源位置温度大于第二预设人脸温度阈值时,停止人耳区域器件的后台应用,当人手区域热源位置温度大于第三预设人脸温度阈值时,停止人手区域器件的后台应用,其中,第二充电倍率电流小于移动终端的预设充电倍率电流,通过分布于主板上各热源位置的NTC热敏电阻实现了对终端内部各主要热源位置实时温度的监测,由于终端属于通话状态,则充电电流要小于预设充电倍率电流,并且兼顾人体不同部位对热敏感程度的不同对终端不同热源进行差异化的温度控制,降低CPU的使用频率,进而使得相应区域的发热情况下降。
在本发明的一个实施例中,如图1b所示,优选地,还包括:
步骤1608,当移动终端的通话方式不为手持非免提通话时,将移动终端的充电电流调整至第一充电倍率电流;
步骤1610,检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;
步骤1612,当人脸区域热源位置温度大于预设手持温度阈值时,停止人脸区域器件的后台应用;当人耳区域热源位置温度大于预设手持温度阈值时,停止人耳区域器件的后台应用;当人手区域热源位置温度大于预设手持温度阈值时,停止人手区域器件的后台应用。
其中,第一充电倍率电流大于第二充电倍率电流,第一充电倍率电流小于移动终端的预设充电倍率电流。
在该实施例中,当移动终端的通话方式为手持免提通话时,将移动终端的充电电流调整至第一充电倍率电流,利用NTC热敏电阻检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度,当人脸区域热源位置温度大于预设手持温度阈值时,停止人脸区域器件的后台应用,当人耳区域热源位置温度大于预设手持温度阈值时,停止人耳区域器件的后台应用,当人手区域热源位置温度大于预设手持温度阈值时,停止人手区域器件的后台应用,其中,第一充电倍率电流小于移动终端的预设充电倍率电流。通过分布于主板上各热源位置的NTC热敏电阻实现了对终端内部各主要热源位置实时温度的监测,由于终端属于通话状态,则充电电流要小于预设充电倍率电流,另外与为手持非免提通话的情况不同,可以以大于第二充电倍率电流的第一充电倍率电流对终端充电,从而降低终端的发热情况。
在本发明的一个实施例中,如图1b所示,优选地,按照第一非手持接听调节方式对移动终端进行调节的步骤包括:
步骤1800,将移动终端按照预设充电倍率电流充电;
步骤1802,检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;
步骤1804,当人脸区域热源位置温度大于预设最大温度阈值时,停止人脸区域器件的后台应用;当人耳区域热源位置温度大于预设最大温度阈
值时,停止人耳区域器件的后台应用;当人手区域热源位置温度大于预设最大温度阈值时,停止人手区域器件的后台应用。
在该实施例中,当所述移动终端的接听方式为非手持接听时,将移动终端按照预设充电倍率电流充电,利用NTC热敏电阻检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度,当人脸区域热源位置温度大于预设最大温度阈值时,停止人脸区域器件的后台应用,当人耳区域热源位置温度大于预设最大温度阈值时,停止人耳区域器件的后台应用,当人手区域热源位置温度大于预设最大温度阈值时,停止人手区域器件的后台应用,通过在非手持免提通话时,按照正常电流充电,并且在各热源位置NTC热敏电阻监测的温度超过系统预设最大温度阈值时,对终端后台相应应用进行应用冻结,对CPU进行降频处理。
在本发明的一个实施例中,如图1b所示,优选地,按照第二手持接听调节方式对移动终端进行调节的步骤包括:
步骤1120,判断移动终端的通话方式是否为手持非免提通话;
步骤1122,当移动终端的通话方式为手持非免提通话时,检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;
步骤1124,当人脸区域热源位置温度大于第一预设人脸温度阈值时,停止人脸区域器件的后台应用;当人耳区域热源位置温度大于第二预设人脸温度阈值时,停止人耳区域器件的后台应用;当人手区域热源位置温度大于第三预设人脸温度阈值时,停止人手区域器件的后台应用。
在该实施例中,当移动终端的接听方式为手持接听时,判断移动终端的通话方式是否为手持非免提通话,当移动终端的通话方式为手持非免提通话时,利用NTC热敏电阻检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度,当人脸区域热源位置温度大于第一预设人脸温度阈值时,停止人脸区域器件的后台应用,当人耳区域热源位置温度大于第二预设人脸温度阈值时,停止人耳区域器件的后台应用,当人手区域热源位置温度大于第三预设人脸温度阈值时,停止人手区域器件的后台应用,通过分布于主板上各热源位置的NTC热敏电阻实现了对终端内部各主要热源位置实时温度的监测,兼顾人体不同部位对热敏感程度的不同
对终端不同热源进行差异化的温度控制,降低CPU的使用频率,进而使得相应区域的发热情况下降。
在本发明的一个实施例中,如图1b所示,优选地,还包括:
步骤1126,当移动终端的通话方式不为手持非免提通话时,检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;
步骤1128,当人脸区域热源位置温度大于预设手持温度阈值时,停止人脸区域器件的后台应用;当人耳区域热源位置温度大于预设手持温度阈值时,停止人耳区域器件的后台应用;当人手区域热源位置温度大于预设手持温度阈值时,停止人手区域器件的后台应用。
在该实施例中,当移动终端的通话方式为手持免提通话时,利用NTC热敏电阻检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度,当人脸区域热源位置温度大于预设手持温度阈值时,停止人脸区域器件的后台应用,当人耳区域热源位置温度大于预设手持温度阈值时,停止人耳区域器件的后台应用,当人手区域热源位置温度大于预设手持温度阈值时,停止人手区域器件的后台应用,通过分布于主板上各热源位置的NTC热敏电阻实现了对终端内部各主要热源位置实时温度的监测,通过在手持通话时判断该区域温度是否超过预设手持温度阈值,在超过时冻结对应区域的后台应用,从而降低终端的发热情况,降低CPU的频率。
在本发明的一个实施例中,如图1b所示,优选地,按照所述第二非手持接听调节方式对所述移动终端进行调节的步骤包括:
步骤1140,检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;
步骤1142,当人脸区域热源位置温度大于预设最大温度阈值时,停止人脸区域器件的后台应用;当人耳区域热源位置温度大于预设最大温度阈值时,停止人耳区域器件的后台应用;当人手区域热源位置温度大于预设最大温度阈值时,停止人手区域器件的后台应用。
在该实施例中,当移动终端的接听方式为非手持接听时,利用NTC热敏电阻检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热
源位置温度,当人脸区域热源位置温度大于预设最大温度阈值时,停止人脸区域器件的后台应用,当人耳区域热源位置温度大于预设最大温度阈值时,停止人耳区域器件的后台应用,当人手区域热源位置温度大于预设最大温度阈值时,停止人手区域器件的后台应用,通过分布于主板上各热源位置的NTC热敏电阻实现了对终端内部各主要热源位置实时温度的监测。
本发明第二方面的实施例,提出一种调节移动终端发热状况的装置200,图2示出了本发明的一个实施例的调节移动终端发热状况的装置200的示意框图,下面参照图2描述根据本发明一些实施例所述的调节移动终端发热状况的装置200。
第一判断模块202,设置为在移动终端有来电并接听的情况下,判断移动终端是否处于充电状态;
第二判断模块204,设置为当移动终端处于充电状态时,判断移动终端的接听方式是否为手持接听;
第一处理模块206,设置为当移动终端的接听方式为手持接听时,按照第一手持接听调节方式对移动终端进行调节;当移动终端的接听方式为非手持接听时,按照第一非手持接听调节方式对移动终端进行调节。
本发明提供的调节移动终端发热状况的装置200,通过第一判断模块202在移动终端有来电并接听的情况下,判断移动终端是否处于充电状态,当移动终端处于充电状态时,通过第二判断模块204判断移动终端的接听方式是否为手持接听,第一处理模块206在移动终端的接听方式为手持接听时,按照第一手持接听调节方式对移动终端进行调节,以及当移动终端的接听方式为非手持接听时,按照第一非手持接听调节方式对移动终端进行调节,通过在不同的通话场景下,根据人体对温度敏感程度的不同,实现了对终端不同区域温度进行差异化的控制,降低CPU频率,进而更加高效、灵敏地解决终端的发热问题,提升了用户的使用体验。
在本发明的一个实施例中,如图2所示,优选地,第一处理模块206包括:
第三判断模块2062,设置为判断移动终端的通话方式是否为手持非免提通话;
第一处理模块206,还设置为当移动终端的通话方式为手持非免提通话时,将移动终端的充电电流调整至第二充电倍率电流;
检测模块2064,设置为检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;
第二处理模块2066,设置为当人脸区域热源位置温度大于第一预设人脸温度阈值时,停止人脸区域器件的后台应用;当人耳区域热源位置温度大于第二预设人脸温度阈值时,停止人耳区域器件的后台应用;当人手区域热源位置温度大于第三预设人脸温度阈值时,停止人手区域器件的后台应用。
在该实施例中,通过第三判断模块2062判断移动终端的通话方式是否为手持非免提通话,当移动终端的通话方式为手持非免提通话时,第一处理模块206将充电电流调整至第二充电倍率电流,从而降低终端的发热情况,并且利用检测模块2064检测人脸区域热源位置的实时温度、人耳区域热源位置的实时温度、人手区域热源位置的实时温度,第二处理模块2066当人脸区域热源位置温度大于第一预设人脸温度阈值时,停止人脸区域器件的后台应用,当人耳区域热源位置温度大于第二预设人脸温度阈值时,停止人耳区域器件的后台应用,当人手区域热源位置温度大于第三预设人脸温度阈值时,停止人手区域器件的后台应用,其中,第二充电倍率电流小于移动终端的预设充电倍率电流,通过分布于主板上各热源位置的NTC热敏电阻实现了对终端内部各主要热源位置实时温度的监测,由于终端属于通话状态,则充电电流要小于预设充电倍率电流,并且兼顾人体不同部位对热敏感程度的不同对终端不同热源进行差异化的温度控制,降低CPU的使用频率,进而使得相应区域的发热情况下降。
在本发明的一个实施例中,如图2所示,优选地,
第一处理模块206,还设置为当移动终端的通话方式不为手持非免提通话时,将移动终端的充电电流调整至第一充电倍率电流;
检测模块2064,还设置为检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;
第二处理模块2066,还设置为当人脸区域热源位置温度大于预设手持
温度阈值时,停止人脸区域器件的后台应用;当人耳区域热源位置温度大于预设手持温度阈值时,停止人耳区域器件的后台应用;当人手区域热源位置温度大于预设手持温度阈值时,停止人手区域器件的后台应用。其中,第一充电倍率电流大于第二充电倍率电流,第一充电倍率电流小于移动终端的预设充电倍率电流。
在该实施例中,第一处理模块206当移动终端的通话方式为手持免提通话时,将移动终端的充电电流调整至第一充电倍率电流,利用检测模块2064检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度,第二处理模块2066当人脸区域热源位置温度大于预设手持温度阈值时,停止人脸区域器件的后台应用,当人耳区域热源位置温度大于预设手持温度阈值时,停止人耳区域器件的后台应用,当人手区域热源位置温度大于预设手持温度阈值时,停止人手区域器件的后台应用,其中,第一充电倍率电流小于移动终端的预设充电倍率电流。通过分布于主板上各热源位置的NTC热敏电阻实现了对终端内部各主要热源位置实时温度的监测,由于终端属于通话状态,则充电电流要小于预设充电倍率电流,另外与为手持非免提通话的情况不同,可以以大于第二充电倍率电流的第一充电倍率电流对终端充电,从而降低终端的发热情况。
在本发明的一个实施例中,如图2所示,优选地,
第一处理模块206,还设置为当移动终端的接听方式为非手持接听时,将移动终端按照所述预设充电倍率电流充电;
检测模块2064,还设置为检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;
第二处理模块2066,还设置为当人脸区域热源位置温度大于预设最大温度阈值时,停止人脸区域器件的后台应用;当人耳区域热源位置温度大于预设最大温度阈值时,停止人耳区域器件的后台应用;当人手区域热源位置温度大于预设最大温度阈值时,停止人手区域器件的后台应用。
在该实施例中,第一处理模块206当所述移动终端的接听方式为非手持接听时,将移动终端按照预设充电倍率电流充电,利用检测模块2064检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温
度,第二处理模块2066当人脸区域热源位置温度大于预设最大温度阈值时,停止人脸区域器件的后台应用,当人耳区域热源位置温度大于预设最大温度阈值时,停止人耳区域器件的后台应用,当人手区域热源位置温度大于预设最大温度阈值时,停止人手区域器件的后台应用,通过在非手持免提通话时,按照正常电流充电,并且在各热源位置NTC热敏电阻监测的温度超过系统预设最大温度阈值时,对终端后台相应应用进行应用冻结,对CPU进行降频处理。
在本发明的一个实施例中,如图2所示,优选地,
第二判断模块204,还设置为当移动终端不处于充电状态时,判断移动终端的接听方式是否为手持接听;
所述第一处理模块206,还设置为当移动终端的接听方式为手持接听时,按照第二手持接听调节方式对移动终端进行调节;当移动终端的接听方式为非手持接听时,按照第二非手持接听调节方式对移动终端进行调节。
在该实施例中,当移动终端不处于充电状态时,通过第二判断模块204判断移动终端的接听方式是否为手持接听,当移动终端的接听方式为手持接听时,第一处理模块206按照第二手持接听调节方式对移动终端进行调节,当移动终端的接听方式为非手持接听时,按照第二非手持接听调节方式对移动终端进行调节,通过对终端在各种情况下的差异化的充电电流配置以及温度控制,降低CPU频率,进而更加高效、灵敏地解决终端的发热问题,提升了用户的使用体验。
在本发明的一个实施例中,如图2所示,优选地,第一处理模块206包括:
第三判断模块2062,还设置为当移动终端的接听方式为手持接听时,判断移动终端的通话方式是否为手持非免提通话;
检测模块2064,还设置为当移动终端的通话方式为手持非免提通话时,检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;
第二处理模块2066,还设置为当人脸区域热源位置温度大于第一预设人脸温度阈值时,停止人脸区域器件的后台应用;当人耳区域热源位置温
度大于第二预设人脸温度阈值时,停止人耳区域器件的后台应用;当人手区域热源位置温度大于第三预设人脸温度阈值时,停止人手区域器件的后台应用。
在该实施例中,当移动终端的接听方式为手持接听时,第三判断模块2062判断移动终端的通话方式是否为手持非免提通话,当移动终端的通话方式为手持非免提通话时,利用检测模块2064检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度,第二处理模块2066当人脸区域热源位置温度大于第一预设人脸温度阈值时,停止人脸区域器件的后台应用,当人耳区域热源位置温度大于第二预设人脸温度阈值时,停止人耳区域器件的后台应用,当人手区域热源位置温度大于第三预设人脸温度阈值时,停止人手区域器件的后台应用,通过分布于主板上各热源位置的NTC热敏电阻实现了对终端内部各主要热源位置实时温度的监测,兼顾人体不同部位对热敏感程度的不同对终端不同热源进行差异化的温度控制,降低CPU的使用频率,进而使得相应区域的发热情况下降。
在本发明的一个实施例中,如图2所示,优选地,
检测模块2064,还设置为当移动终端的通话方式不为手持非免提通话时,检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;
第二处理模块2066,还设置为当人脸区域热源位置温度大于预设手持温度阈值时,停止人脸区域器件的后台应用;当人耳区域热源位置温度大于预设手持温度阈值时,停止人耳区域器件的后台应用;当人手区域热源位置温度大于预设手持温度阈值时,停止人手区域器件的后台应用。
在该实施例中,当移动终端的通话方式为手持免提通话时,利用检测模块2064检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度,第二处理模块2066当人脸区域热源位置温度大于预设手持温度阈值时,停止人脸区域器件的后台应用,当人耳区域热源位置温度大于预设手持温度阈值时,停止人耳区域器件的后台应用,当人手区域热源位置温度大于预设手持温度阈值时,停止人手区域器件的后台应用,通过分布于主板上各热源位置的NTC热敏电阻实现了对终端内部各主要热源
位置实时温度的监测,通过在手持通话时判断该区域温度是否超过预设手持温度阈值,在超过时冻结对应区域的后台应用,从而降低终端的发热情况,降低CPU的频率。
在本发明的一个实施例中,如图2所示,优选地,第一处理模块206还包括:
检测模块2064,还设置为当移动终端的接听方式为非手持接听时,检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;
第二处理模块2066,还设置为当人脸区域热源位置温度大于预设最大温度阈值时,停止人脸区域器件的后台应用;当人耳区域热源位置温度大于预设最大温度阈值时,停止人耳区域器件的后台应用;当人手区域热源位置温度大于预设最大温度阈值时,停止人手区域器件的后台应用。
在该实施例中,当移动终端的接听方式为非手持接听时,利用检测模块2064检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度,第二处理模块2066当人脸区域热源位置温度大于预设最大温度阈值时,停止人脸区域器件的后台应用,当人耳区域热源位置温度大于预设最大温度阈值时,停止人耳区域器件的后台应用,当人手区域热源位置温度大于预设最大温度阈值时,停止人手区域器件的后台应用,通过分布于主板上各热源位置的NTC热敏电阻实现了对终端内部各主要热源位置实时温度的监测。
本发明第三方面的实施例,提出一种终端300,图3示出了本发明的一个实施例的终端300的示意框图:
处理器302、充电接口304、存储器306,处理器302、充电接口304、存储器306之间通过总线相连接,存储器306中存储有计算机指令,处理器302通过执行计算机指令从而实现以下方法:在移动终端有来电并接听的情况下,判断移动终端是否处于充电状态;当移动终端处于充电状态时,判断移动终端的接听方式是否为手持接听;当移动终端的接听方式为手持接听时,按照第一手持接听调节方式对移动终端进行调节;当移动终端的接听方式为非手持接听时,按照第一非手持接听调节方式对移动终端进行调节。
本发明提供的终端,包括:处理器302、充电接口304、存储器306,处理器302、充电接口304、存储器306之间通过总线相连接,存储器306中存储有计算机指令,处理器302通过执行计算机指令从而实现以下方法:在移动终端有来电并接听的情况下,判断移动终端是否处于充电状态,当移动终端处于充电状态时,通过加速度传感器、陀螺仪以及气压传感器判断移动终端的接听方式是否为手持接听,当移动终端的接听方式为手持接听时,按照第一手持接听调节方式对移动终端进行调节,当移动终端的接听方式为非手持接听时,按照第一非手持接听调节方式对移动终端进行调节,通过在不同的通话场景下,根据人体对温度敏感程度的不同,实现了对终端不同区域温度进行差异化的控制,降低CPU频率,进而更加高效、灵敏地解决终端的发热问题,提升了用户的使用体验。
具体实施例一,现有方案中未考虑到手持非免提通话时终端靠近人脸人耳区的情况,事实上,人耳人脸区域是人体对温度最敏感的区域,故手持非免提通话场景需对终端发热情况进行最优化的控制;另外,现有方案只是对终端在充电时整机的发热控制,未考虑到根据人耳、人脸、人手等不同区域对温度敏感程度的不同,然后再根据不同的使用场景对整机不同区域的不同热源进行差异化的温度控制策略。
本技术方案提出了一种调节移动终端发热状况的方法及装置,通过CPU和加速度传感器,陀螺仪,气压传感器判断终端是否处于手持模式,通过CPU和光距传感器判断用户是否采用手持非免提方式通话,通过终端内部各热源位置的NTC热敏电阻监测终端不同区域的实时温度,然后再根据终端是否处于充电模式,兼顾人体不同部位对热敏感程度的不同,对终端不同热源进行差异化的温度控制。
终端整机按用户使用场景的不同,可分为人耳区、人脸区和人手区,一般人耳区是听筒及听筒下方3cm区域,人脸区是听筒下方3cm至6cm区域,人手区是人脸区下方以及终端背壳区域。人耳区、人脸区和人手区对终端温度的敏感程度不同,所以在充电和非充电情况下,语音非免提通话对终端温度的控制是不同的。表1为终端位置划分表,需要说明的是,表1中具体环境温度和升温标准数值可能涉密,已去掉。
表1
图4a示出了本发明一个具体实施例的终端正面热源部件示意框图,终端正面主要热源部件主要有TD模块主芯片、PMU、AP、HD、LCD、LED,终端正面次要热源部件主要有存储器,图4b示出了本发明一个具体实施例的终端背面热源部件示意框图,终端背面主要热源部件主要有摄像头、闪光灯、RF功放,终端背面次要热源部件主要有RF收发器、CODEC芯片,终端背面的晶振易受温度影响而引起偏振,因此对终端的温度控制至关重要。需要说明的是,终端的热源分布跟具体项目的结构以及PCB布板相关。
具体实施例二,本发明的一个具体实施例的调节移动终端发热状况的方法:
1.通过CPU判断是否有来电,是否有接听以及终端目前是否处于充电状态;
2.有来电接听且处于充电状态时,通过加速度传感器,陀螺仪以及气压传感器判断用户是否采用手持方式接听,如果不是,执行操作1,如果是,则执行判断1;
操作1:按正常充电电流充电,各热源位置NTC热敏电阻监测的温度如果未超过系统设置的最大温度阈值,终端后台相应应用不进行应用冻结,CPU不进行降频处理。
判断1:通过距离传感器(PS)判断用户是否采用手持非免提(即手持靠
近脸部)的方式通话,如果不是则执行操作2,如果是则执行操作4。
操作2:
(1)调整终端充电电流到n1C(0<n1<m,C是电池充电倍率,mc是终端本身支持的充电倍率,m是大于0的自然数);
(2)各热源位置NTC热敏电阻监测的温度大于手持温度阈值时,冻结后台应用,降低CPU频率;
操作4:
(1)调整终端充电电流到n2C(0<n2<0.2,C是电池充电倍率),n2<n1;
(2)人脸区域热源位置NTC热敏电阻监测的温度大于人脸温度阈值时或人耳区域热源位置NTC热敏电阻监测的温度大于人脸温度阈值时或人手区域热源位置NTC热敏电阻监测的温度大于人脸温度阈值时,冻结使用相应区域器件的后台应用,降低CPU频率;
3.终端处于非充电状态时,通过加速度传感器,陀螺仪以及气压传感器判断用户是否采用手持方式接听,如果不是,执行操作3,如果是继续执行判断1;
操作3:各热源位置NTC热敏电阻监测的温度如果未超过系统设置的最大温度阈值,终端后台相应应用不进行应用冻结,CPU不进行降频处理。
判断1:通过距离传感器(PS)判断用户是否采用手持非免提(即手持靠近脸部)的方式通话,如果不是则执行操作5,如果是则执行操作6。
操作5:人脸区域热源位置NTC热敏电阻监测的温度大于人脸温度阈值时或人耳区域热源位置NTC热敏电阻监测的温度大于人脸温度阈值时或人手区域热源位置NTC热敏电阻监测的温度大于人脸温度阈值时,冻结使用相应区域器件的后台应用,降低CPU频率;
操作6:各热源位置NTC热敏电阻监测的温度大于手持温度阈值时,冻结后台应用,降低CPU频率。
本发明的终端通话时调节终端发热状况的方法及装置具有以下有益效果:通过CPU和各种传感器实现了对语音通话时不同场景的判断;通过分布于主板上各热源位置的NTC热敏电阻实现了对终端内部各主要热源位置实时温度的监测;在不同的通话场景下,根据人体对温度敏感程度的不
同,实现了对终端不同区域温度进行差异化的控制;差异化的温度控制,提升了用户体验。
在本说明书的描述中,术语“一个实施例”、“一些实施例”、“具体实施例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或特点包含于本发明的至少一个实施例或示例中。在本说明书中,对上述术语的示意性表述不一定指的是相同的实施例或实例。而且,描述的具体特征、结构、材料或特点可以在任何的一个或多个实施例或示例中以合适的方式结合。
以上所述仅为本发明的优选实施例而已,并不用于限制本发明,对于本领域的技术人员来说,本发明可以有各种更改和变化。凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。
Claims (17)
- 一种调节移动终端发热状况的方法,其特征在于,包括:在移动终端有来电并接听的情况下,判断所述移动终端是否处于充电状态;当所述移动终端处于充电状态时,判断所述移动终端的接听方式是否为手持接听;当所述移动终端的接听方式为所述手持接听时,按照第一手持接听调节方式对所述移动终端进行调节;当所述移动终端的接听方式为非手持接听时,按照第一非手持接听调节方式对所述移动终端进行调节。
- 根据权利要求1所述的调节移动终端发热状况的方法,其特征在于,按照所述第一手持接听调节方式对所述移动终端进行调节的步骤包括:判断所述移动终端的通话方式是否为手持非免提通话;当所述移动终端的通话方式为所述手持非免提通话时,将所述移动终端的充电电流调整至第二充电倍率电流;检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;当所述人脸区域热源位置温度大于第一预设人脸温度阈值时,停止人脸区域器件的后台应用;当所述人耳区域热源位置温度大于第二预设人脸温度阈值时,停止人耳区域器件的后台应用;当所述人手区域热源位置温度大于第三预设人脸温度阈值时,停止人手区域器件的后台应用。
- 根据权利要求2所述的调节移动终端发热状况的方法,其特征在于,还包括:当所述移动终端的通话方式不为所述手持非免提通话时,将所述移动终端的充电电流调整至第一充电倍率电流;检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;当所述人脸区域热源位置温度大于预设手持温度阈值时,停止人脸区域器件的后台应用;当所述人耳区域热源位置温度大于所述预设手持温度阈值时,停止人耳区域器件的后台应用;当所述人手区域热源位置温度大于所述预设手持温度阈值时,停止人手区域器件的后台应用;其中,所述第一充电倍率电流大于所述第二充电倍率电流,所述第一充电倍率电流小于所述移动终端的预设充电倍率电流。
- 根据权利要求1所述的调节移动终端发热状况的方法,其特征在于,按照所述第一非手持接听调节方式对所述移动终端进行调节的步骤包括:将所述移动终端按照所述预设充电倍率电流充电;检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;当所述人脸区域热源位置温度大于预设最大温度阈值时,停止人脸区域器件的后台应用;当所述人耳区域热源位置温度大于所述预设最大温度阈值时,停止人耳区域器件的后台应用;当所述人手区域热源位置温度大于所述预设最大温度阈值时,停止人手区域器件的后台应用。
- 根据权利要求1所述的调节移动终端发热状况的方法,其特征在于,还包括:当所述移动终端不处于充电状态时,判断所述移动终端的接听方式是否为所述手持接听;当所述移动终端的接听方式为所述手持接听时,按照第二手持接听调节方式对所述移动终端进行调节;当所述移动终端的接听方式为非手持接听时,按照第二非手持接听调节方式对所述移动终端进行调节。
- 根据权利要求5所述的调节移动终端发热状况的方法,其特征在于,按照所述第二手持接听调节方式对所述移动终端进行调节的步骤包括:判断所述移动终端的通话方式是否为所述手持非免提通话;当所述移动终端的通话方式为所述手持非免提通话时,检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;当所述人脸区域热源位置温度大于第一预设人脸温度阈值时,停止人脸区域器件的后台应用;当所述人耳区域热源位置温度大于第二预设人脸温度阈值时,停止人耳区域器件的后台应用;当所述人手区域热源位置温度大于第三预设人脸温度阈值时,停止人手区域器件的后台应用。
- 根据权利要求6所述的调节移动终端发热状况的方法,其特征在于,还包括:当所述移动终端的通话方式不为所述手持非免提通话时,检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;当所述人脸区域热源位置温度大于预设手持温度阈值时,停止人脸区域器件的后台应用;当所述人耳区域热源位置温度大于所述预设手持温度阈值时,停止人耳区域器件的后台应用;当所述人手区域热源位置温度大于所述预设手持温度阈值时,停止人手区域器件的后台应用。
- 根据权利要求5所述的调节移动终端发热状况的方法,其特征在于,按照所述第二非手持接听调节方式对所述移动终端进行调节的步骤包括:检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;当所述人脸区域热源位置温度大于预设最大温度阈值时,停止人脸区域器件的后台应用;当所述人耳区域热源位置温度大于所述预设最大温度阈值时,停止人耳区域器件的后台应用;当所述人手区域热源位置温度大于所述预设最大温度阈值时,停止人手区域器件的后台应用。
- 一种调节移动终端发热状况的装置,其特征在于,包括:第一判断模块,设置为在移动终端有来电并接听的情况下,判断所述移动终端是否处于充电状态;第二判断模块,设置为当所述移动终端处于充电状态时,判断所述移动终端的接听方式是否为手持接听;第一处理模块,设置为当所述移动终端的接听方式为所述手持接听时,按照第一手持接听调节方式对所述移动终端进行调节;当所述移动终端的接听方式为非手持接听时,按照第一非手持接听调节方式对所述移动终端进行调节。
- 根据权利要求9所述的调节移动终端发热状况的装置,其特征在于,所述第一处理模块包括:第三判断模块,设置为判断所述移动终端的通话方式是否为手持非免提通话;所述第一处理模块,还设置为当所述移动终端的通话方式为所述手持非免提通话时,将所述移动终端的充电电流调整至第二充电倍率电流;检测模块,设置为检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;第二处理模块,设置为当所述人脸区域热源位置温度大于第一预设人脸温度阈值时,停止人脸区域器件的后台应用;当所述人耳区域热源位置温度大于第二预设人脸温度阈值时,停止人耳区域器件的后台应用;当所述人手区域热源位置温度大于第三预设人脸温度阈值时,停止人手区域器件的后台应用。
- 根据权利要求10所述的调节移动终端发热状况的装置,其特征在于,所述第一处理模块,还设置为当所述移动终端的通话方式不为所述手持非免提通话时,将所述移动终端的充电电流调整至第一充电倍率电流;所述检测模块,还设置为检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;所述第二处理模块,还设置为当所述人脸区域热源位置温度大于预设手持温度阈值时,停止人脸区域器件的后台应用;当所述人耳区域热源位置温度大于所述预设手持温度阈值时,停止人耳区域器件的后台应用;当 所述人手区域热源位置温度大于所述预设手持温度阈值时,停止人手区域器件的后台应用;其中,所述第一充电倍率电流大于所述第二充电倍率电流,所述第一充电倍率电流小于所述移动终端的预设充电倍率电流。
- 根据权利要求9所述的调节移动终端发热状况的装置,其特征在于,所述第一处理模块,还设置为当所述移动终端的接听方式为非手持接听时,将所述移动终端按照所述预设充电倍率电流充电;所述检测模块,还设置为检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;所述第二处理模块,还设置为当所述人脸区域热源位置温度大于预设最大温度阈值时,停止人脸区域器件的后台应用;当所述人耳区域热源位置温度大于所述预设最大温度阈值时,停止人耳区域器件的后台应用;当所述人手区域热源位置温度大于所述预设最大温度阈值时,停止人手区域器件的后台应用。
- 根据权利要求9所述的调节移动终端发热状况的装置,其特征在于,所述第二判断模块,还设置为当所述移动终端不处于充电状态时,判断所述移动终端的接听方式是否为所述手持接听;所述第一处理模块,还设置为当所述移动终端的接听方式为所述手持接听时,按照第二手持接听调节方式对所述移动终端进行调节;当所述移动终端的接听方式为非手持接听时,按照第二非手持接听调节方式对所述移动终端进行调节。
- 根据权利要求13所述的调节移动终端发热状况的装置,其特征在于,所述第一处理模块包括:所述第三判断模块,还设置为当所述移动终端的接听方式为所述手持接听时,判断所述移动终端的通话方式是否为所述手持非免提通话;所述检测模块,还设置为当所述移动终端的通话方式为所述手持非免提通话时,检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;所述第二处理模块,还设置为当所述人脸区域热源位置温度大于第一 预设人脸温度阈值时,停止人脸区域器件的后台应用;当所述人耳区域热源位置温度大于第二预设人脸温度阈值时,停止人耳区域器件的后台应用;当所述人手区域热源位置温度大于第三预设人脸温度阈值时,停止人手区域器件的后台应用。
- 根据权利要求14所述的调节移动终端发热状况的装置,其特征在于,所述检测模块,还设置为当所述移动终端的通话方式不为所述手持非免提通话时,检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;所述第二处理模块,还设置为当所述人脸区域热源位置温度大于预设手持温度阈值时,停止人脸区域器件的后台应用;当所述人耳区域热源位置温度大于所述预设手持温度阈值时,停止人耳区域器件的后台应用;当所述人手区域热源位置温度大于所述预设手持温度阈值时,停止人手区域器件的后台应用。
- 根据权利要求13所述的调节移动终端发热状况的装置,其特征在于,所述第一处理模块还包括:所述检测模块,还设置为当所述移动终端的接听方式为所述非手持接听时,检测人脸区域热源位置温度、人耳区域热源位置温度、人手区域热源位置温度;所述第二处理模块,还设置为当所述人脸区域热源位置温度大于预设最大温度阈值时,停止人脸区域器件的后台应用;当所述人耳区域热源位置温度大于所述预设最大温度阈值时,停止人耳区域器件的后台应用;当所述人手区域热源位置温度大于所述预设最大温度阈值时,停止人手区域器件的后台应用。
- 一种终端,其特征在于,包括:处理器、充电接口、存储器,所述处理器、所述充电接口、所述存储器之间通过总线相连接,所述存储器中存储有计算机指令,所述处理器通过执行所述计算机指令从而实现以下方法:在移动终端有来电并接听的情况下,判断所述移动终端是否处于充电状态;当所述移动终端处于充电状态时,判断所述移动终端的接听方式是否为手持接听;当所述移动终端的接听方式为所述手持接听时,按照第一手持接听调节方式对所述移动终端进行调节;当所述移动终端的接听方式为非手持接听时,按照第一非手持接听调节方式对所述移动终端进行调节。
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| CN113433984A (zh) * | 2021-06-25 | 2021-09-24 | 南昌黑鲨科技有限公司 | 温度控制方法、装置、可读存储介质及移动终端 |
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