CN204993477U - Healthy cell phone - Google Patents

Healthy cell phone Download PDF

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Publication number
CN204993477U
CN204993477U CN201520573308.5U CN201520573308U CN204993477U CN 204993477 U CN204993477 U CN 204993477U CN 201520573308 U CN201520573308 U CN 201520573308U CN 204993477 U CN204993477 U CN 204993477U
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CN
China
Prior art keywords
health
port
pull
resistor
monitoring module
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Expired - Fee Related
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CN201520573308.5U
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Chinese (zh)
Inventor
余林
李长生
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Communication Science And Technology Ltd Of Sichuan Changhong
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Communication Science And Technology Ltd Of Sichuan Changhong
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Priority to CN201520573308.5U priority Critical patent/CN204993477U/en
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Abstract

The utility model provides a healthy cell phone, including be suitable for the human health index of monitoring with the health monitoring module that obtains healthy data with be suitable for right analysis processes's mobile phone motherboard is carried out to healthy data, the health monitoring module with mobile phone motherboard connects through the hot plug mode. The utility model provides a healthy cell phone will gather the circuit module ization of healthy data, realize having reduced user's cost with a multinomial health index of healthy cell phone monitoring.

Description

Health mobile phone
Technical field
The utility model relates to health Condition Monitoring Technology field, particularly a kind of health mobile phone.
Background technology
Along with improving constantly of living standard, the health status of people to self is more and more paid attention to.Especially the elderly, under self not realizing that blood sugar concentration change, pulse generation unusual fluctuation, blood pressure depart from the situations such as normal value, wishes that whether the health often understanding oneself is good, should note taking which safeguard procedures.On the other hand, consider time and cost, go to medical institutions to carry out physical examination continually and infeasible.This just needs a kind of conventional portable unit to carry out regular monitoring to health state, and can reminding user in time, improves the general level of the health of people, thereby produce health mobile phone with this.
Traditional health mobile phone is after the transducer choosing monitoring health indicator, schematic diagram is designed according to transducer, around components and parts (as resistance, electric capacity etc.) and central processing unit, after circuit simulation, by transducer, around components and parts and central processing unit cloth on cell phone mainboard.Such health mobile phone can not be changed because transducer is fixed on cell phone mainboard, and user can only obtain the health indicator that this transducer can be monitored.If need to monitor other health indicators, can only transducer be reselected, then redesign mobile phone.Such pattern wastes huge manpower and financial resources, is also unfavorable for that user uses simultaneously.If same user needs to monitor multinomial health indicator, then need buy or use multiple health mobile phone, both added user cost, also use to user and cause trouble.
Utility model content
The problem being existing health mobile phone and can only monitoring individual event health indicator to be solved in the utility model.
For solving the problem, the utility model provides a kind of health mobile phone, comprise: be suitable for monitoring of human health index with the health monitoring module of the data that secure good health and the cell phone mainboard being suitable for carrying out described health data analyzing and processing, described health monitoring module is connected by hot plug mode with described cell phone mainboard.By being independently health monitoring module by the transducer of monitoring health indicator and periphery circuit design, each health monitoring module of monitoring various health indicator can be connected with cell phone mainboard in hot plug mode by identical interface.When user needs to monitor different health indicators, the health monitoring module of correspondence is connected cell phone mainboard in hot plug mode, achieves and monitor multinomial health indicator with a health mobile phone, reduce user cost.
Optionally, described health monitoring module comprises the first FPDP, the first clock port, the first power port, the first grounding ports and detection port, described detection port ground connection, described cell phone mainboard comprises the second FPDP, second clock port, second source port, second grounding ports, first interruptive port, first pull-up resistor, second pull-up resistor and the 3rd pull-up resistor, one end of described first pull-up resistor connects described second FPDP, one end of described second pull-up resistor connects described second clock port, one end of described 3rd pull-up resistor connects described first interruptive port, the other end of described first pull-up resistor, the other end of described second pull-up resistor and the other end of described 3rd pull-up resistor are suitable for receiving supply voltage, when carrying out hot plug and connecting, described first FPDP connects described second FPDP, described first clock port connects described second clock port, described first power port connects described second source port, described first grounding ports connects described second grounding ports, and described detection port connects described first interruptive port.
When not inserting health monitoring module, described first interruptive port receives supply voltage by described 3rd pull down resistor, is in high level state; After inserting health monitoring module, described first interruptive port is dragged down by being connected with described detection port.By identifying the level height of described first interruptive port, insertion and the pull action of health monitoring module automatically can be detected.
Optionally, described detection port connects described first grounding ports, and the other end of the other end of described first pull-up resistor, the other end of described second pull-up resistor and described 3rd pull-up resistor connects described second source port.
Optionally, described first FPDP and described second FPDP are Inter-Integrated Circuit bus interface, universal asynchronous receiving-transmitting transmitter interface or Serial Peripheral Interface (SPI).
Optionally, described first clock port and described second clock port are Inter-Integrated Circuit bus interface.
Optionally, described health monitoring module also comprises the second interrupt interface, and described cell phone mainboard also comprises the 3rd interrupt interface; When carrying out hot plug and connecting, described second interrupt interface connects described 3rd interrupt interface, and described health monitoring module is suitable for sending interrupt signal by described second interrupt interface to described 3rd interrupt interface when needs send health data or health data exceeds predetermined threshold value.For some health indicators, health data is relatively stable within a period of time, does not need described health monitoring module to send in real time.By arranging described second interrupt interface and described 3rd interrupt interface, described health monitoring module can timed sending health data or send when health data exceedes predetermined threshold value, allow central processing unit on cell phone mainboard can dormancy when not receiving health data, to reduce the power consumption of central processing unit, alleviate the burden of central processing unit.
Optionally, described cell phone mainboard also comprises electrostatic discharge protection device, and described second FPDP, described second clock port, described second source port, described second grounding ports and described first interruptive port are by electrostatic discharge protection device ground connection.By each port on described cell phone mainboard is passed through electrostatic discharge protection device ground connection, the static discharge produced when hot plug can be avoided to connect damages the device in health mobile phone, improves the reliability of health mobile phone.
Optionally, described health monitoring module is blood sugar monitoring module, rhythm of the heart monitoring modular or monitoring of blood pressure module.
Compared with prior art, the utility model has the following advantages:
The health mobile phone that the utility model provides, to the transducer of health data be gathered and periphery circuit design is independently health monitoring module, every health indicator correspondence is monitored by a health monitoring module, and each health monitoring module can be connected with cell phone mainboard in hot plug mode by identical interface.When user needs to monitor different health indicators, the health monitoring module of correspondence is connected cell phone mainboard in hot plug mode, achieves and monitor multinomial health indicator with a health mobile phone, reduce user cost.
Accompanying drawing explanation
Fig. 1 is the structural representation of the health mobile phone of the utility model execution mode;
Fig. 2 is the structural representation of the health mobile phone of a kind of embodiment of the utility model;
Fig. 3 is the structural representation of the health mobile phone of the another kind of embodiment of the utility model;
Fig. 4 is the structural representation of the health mobile phone of another embodiment of the utility model.
Embodiment
Fig. 1 is the structural representation of the health mobile phone of the utility model execution mode, and described health mobile phone comprises health monitoring module 11 and cell phone mainboard 12.Described health monitoring module 11 is suitable for monitoring of human health index with the data that secure good health, and described cell phone mainboard 12 is suitable for carrying out analyzing and processing to described health data, and described health monitoring module 11 is connected by hot plug mode with described cell phone mainboard 12.Particularly, described health monitoring module 11 comprises the transducer and peripheral circuit thereof that gather health data, and according to the difference of monitored health indicator, described health monitoring module 11 can be blood sugar monitoring module, rhythm of the heart monitoring modular or monitoring of blood pressure module etc.Described cell phone mainboard 12 comprises central processing unit, and central processing unit is responsible for carrying out analyzing and processing to described health data.When user needs a monitoring health indicator, the health monitoring module 11 with corresponding monitoring function is selected to be connected with described cell phone mainboard 12 in hot plug mode, transducer after connecting in described health monitoring module 11 gathers health data, and central processing unit health data is sent in described cell phone mainboard 12, by central processing unit, analyzing and processing is carried out to health data.It is identical with prior art with the principle of central processing unit analyzing and processing health data that transducer gathers health data, do not repeat them here.The transducer of collection health data and periphery circuit design thereof are standalone module by the health mobile phone of present embodiment, every health indicator correspondence is monitored by a module, and modules can be connected with described cell phone mainboard 12 in hot plug mode by identical interface.When user needs to monitor different health indicators, the health monitoring module 11 of correspondence is connected described cell phone mainboard 12 in hot plug mode, achieves and monitor multinomial health indicator with a health mobile phone, reduce user cost.
Below in conjunction with embodiment and accompanying drawing, to the detailed description further of the utility model do, but execution mode of the present utility model is not limited thereto.
The present embodiment provides a kind of concrete structure of described monitoring modular 11 and described cell phone mainboard 12, as shown in Figure 2.Described monitoring modular 11 comprises the first FPDP SDA1, the first clock port SCL1, the first power port VCC1, the first grounding ports GND1 and detection port CD, described detection port CD ground connection.Described monitoring modular 11 also comprises transducer 21 and peripheral circuit (not shown) thereof, described first FPDP SDA1, described first clock port SCL1, described first power port VCC1 and described first grounding ports GND1 are connected with each corresponding ports of described transducer 21, described detection port CD by connecting described first grounding ports GND1 ground connection, also can pass through the ground connection connecting described transducer 21 peripheral circuit.
Described cell phone mainboard 12 comprises the second FPDP SDA2, second clock port SCL2, second source port VCC2, the second grounding ports GND2, the first interruptive port INT1, the first pull-up resistor R1, the second pull-up resistor R2 and the 3rd pull-up resistor R3.One end of described first pull-up resistor R1 connects described second FPDP SDA2, one end of described second pull-up resistor R2 connects described second clock port SCL2, the other end of one end connection other end of described first interruptive port INT1, described first pull-up resistor R1, the other end of described second pull-up resistor R2 and the described 3rd pull-up resistor R3 of described 3rd pull-up resistor R3 is suitable for receiving power source voltage Vcc.Described cell phone mainboard 12 also comprises central processing unit 22 and peripheral circuit (not shown) thereof, described second FPDP SDA2, described second clock port SCL2, described second source port VCC2, described second grounding ports GND2 and described first interruptive port INT1 is connected with each corresponding ports of described central processing unit 22, the other end of described first pull-up resistor R1, the other end of described second pull-up resistor R2 and the other end of described 3rd pull-up resistor R3 can receive power source voltage Vcc by connecting described second source port VCC2, also power source voltage Vcc can be received by the power line connecting described central processing unit 22 peripheral circuit.
When carrying out hot plug and connecting, described first FPDP SDA1 connects described second FPDP SDA2, described first clock port SCL1 connects described second clock port SCL2, described first power port VCC1 connects described second source port VCC2, described first grounding ports GND1 connects described second grounding ports GND2, and described detection port CD connects described first interruptive port INT1.Further, described first FPDP SDA1 and described second FPDP SDA2 can be Inter-Integrated Circuit bus (I2C, Inter-IntegratedCircuit) interface, universal asynchronous receiving-transmitting transmitter (UART, UniversalAsynchronousReceiver/Transmitter) interface or Serial Peripheral Interface (SPI) (SPI, SerialPeripheralInterface), described first clock port SCL1 and described second clock port SCL2 can be Inter-Integrated Circuit bus interface.
Below the operation principle of the health mobile phone of the present embodiment is described in detail.When user needs to monitor a certain item health indicator, the health monitoring module 11 that can gather this health data is connected on described cell phone mainboard 12 in hot plug mode.Because described detection port CD is connected with described first interruptive port INT1, described detection port CD ground connection, after connecting, described first interruptive port INT1 is pulled to low level by high level.By the level change of described first interruptive port INT1, described central processing unit 22 has detected that module is inserted, thus identify the module type of described health monitoring module 11.Described cell phone mainboard 12 is provided power source voltage Vcc by described second source port VCC2 to described health monitoring module 11, provides clock signal by described second clock port SCL2 to described health monitoring module 11, is sent to described cell phone mainboard 12 after described health monitoring module 11 gathers health data by described first FPDP SDA1.
The health mobile phone that the embodiment that Fig. 2 is corresponding provides, after described health monitoring module 11 is connected with the hot plug of described cell phone mainboard 12, described health monitoring module 11 sends health data in real time to described cell phone mainboard 12.For some health indicator, health data is relatively stable within a period of time, and it is then unnecessary that described health monitoring module 11 still sends health data in real time to described cell phone mainboard 12.Based on this, the present embodiment also provides the another kind of concrete structure of described monitoring modular 11 and described cell phone mainboard 12, as shown in Figure 3.
Compared with the embodiment that Fig. 2 is corresponding, the health monitoring module 11 of the present embodiment also comprises the second interrupt interface INT2, and described cell phone mainboard 12 also comprises the 3rd interrupt interface INT3.When carrying out hot plug and connecting, described second interrupt interface INT2 connects described 3rd interrupt interface INT3, and described health monitoring module 11 is suitable for sending interrupt signal by described second interrupt INT 2 interface to described 3rd interrupt interface INT3 when needs send health data or health data exceeds predetermined threshold value.By arranging described second interrupt interface INT2 and described 3rd interrupt interface INT3, described health monitoring module 11 can timed sending health data or send when health data exceedes predetermined threshold value, allow described central processing unit 22 can dormancy when not receiving health data, to reduce the power consumption of described central processing unit 22, alleviate the burden of described central processing unit 22.
Easily produce electrostatic potential when carrying out hot plug, electrostatic potential easily damages device.Based on this, the present embodiment also provides the another kind of concrete structure of described monitoring modular 11 and described cell phone mainboard 12, as shown in Figure 4.Described cell phone mainboard 12 also comprises electrostatic discharge protection device 41, and described second FPDP SDA2, described second clock port SCL2, described second source port VCC2, described second grounding ports GND2 and described first interruptive port INT1 are by described electrostatic discharge protection device 41 ground connection.Described electrostatic discharge protection device 41 can be piezo-resistance, TVS pipe etc., and the utility model is not construed as limiting this.
The above; it is only preferred embodiment of the present utility model; not do any pro forma restriction to the utility model, every any simple modification, equivalent variations done above embodiment according to technical spirit of the present utility model, all falls within protection range of the present utility model.

Claims (8)

1. a health mobile phone, it is characterized in that, comprise: be suitable for monitoring of human health index with the health monitoring module of the data that secure good health and the cell phone mainboard being suitable for carrying out described health data analyzing and processing, described health monitoring module is connected by hot plug mode with described cell phone mainboard.
2. health mobile phone according to claim 1, is characterized in that, described health monitoring module comprises the first FPDP, the first clock port, the first power port, the first grounding ports and detection port, described detection port ground connection;
Described cell phone mainboard comprises the second FPDP, second clock port, second source port, second grounding ports, first interruptive port, first pull-up resistor, second pull-up resistor and the 3rd pull-up resistor, one end of described first pull-up resistor connects described second FPDP, one end of described second pull-up resistor connects described second clock port, one end of described 3rd pull-up resistor connects described first interruptive port, the other end of described first pull-up resistor, the other end of described second pull-up resistor and the other end of described 3rd pull-up resistor are suitable for receiving supply voltage,
When carrying out hot plug and connecting, described first FPDP connects described second FPDP, described first clock port connects described second clock port, described first power port connects described second source port, described first grounding ports connects described second grounding ports, and described detection port connects described first interruptive port.
3. health mobile phone according to claim 2, it is characterized in that, described detection port connects described first grounding ports, and the other end of the other end of described first pull-up resistor, the other end of described second pull-up resistor and described 3rd pull-up resistor connects described second source port.
4. health mobile phone according to claim 2, is characterized in that, described first FPDP and described second FPDP are Inter-Integrated Circuit bus interface, universal asynchronous receiving-transmitting transmitter interface or Serial Peripheral Interface (SPI).
5. health mobile phone according to claim 2, is characterized in that, described first clock port and described second clock port are Inter-Integrated Circuit bus interface.
6. the health mobile phone according to any one of claim 2 to 5, is characterized in that, described health monitoring module also comprises the second interrupt interface, and described cell phone mainboard also comprises the 3rd interrupt interface;
When carrying out hot plug and connecting, described second interrupt interface connects described 3rd interrupt interface, and described health monitoring module is suitable for sending interrupt signal by described second interrupt interface to described 3rd interrupt interface when needs send health data or health data exceeds predetermined threshold value.
7. the health mobile phone according to any one of claim 2 to 5; it is characterized in that; described cell phone mainboard also comprises electrostatic discharge protection device, and described second FPDP, described second clock port, described second source port, described second grounding ports and described first interruptive port are by electrostatic discharge protection device ground connection.
8. health mobile phone according to claim 1, is characterized in that, described health monitoring module is blood sugar monitoring module, rhythm of the heart monitoring modular or monitoring of blood pressure module.
CN201520573308.5U 2015-08-03 2015-08-03 Healthy cell phone Expired - Fee Related CN204993477U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107451405A (en) * 2017-07-27 2017-12-08 腾讯科技(深圳)有限公司 Healthy data acquisition methods, health test equipment and storage medium

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107451405A (en) * 2017-07-27 2017-12-08 腾讯科技(深圳)有限公司 Healthy data acquisition methods, health test equipment and storage medium

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CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20160120

Termination date: 20190803