CN211906003U - Mechanical watch device based on pointer display physiological characteristic index - Google Patents

Mechanical watch device based on pointer display physiological characteristic index Download PDF

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Publication number
CN211906003U
CN211906003U CN201820593884.XU CN201820593884U CN211906003U CN 211906003 U CN211906003 U CN 211906003U CN 201820593884 U CN201820593884 U CN 201820593884U CN 211906003 U CN211906003 U CN 211906003U
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China
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physiological characteristic
watch
module
pointer
mechanical
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Expired - Fee Related
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CN201820593884.XU
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Chinese (zh)
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戴明
荣大鹏
梁以江
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Hainan Online Expo Supply Chain Management Service Co ltd
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Hainan Online Expo Supply Chain Management Service Co ltd
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Abstract

The utility model discloses a mechanical watch device based on pointer demonstration physiological characteristic index, it has a clock display dial plate, a plurality of physiological characteristic that shows physiological characteristic index account for the percentage of normal index and shows the dial plate, and this wrist-watch includes: the device comprises a Bluetooth module, a physiological characteristic detection module for detecting physiological characteristic indexes of a human body, a plurality of stepping motors respectively used for driving deflection of a minute pointer and a clock pointer in a clock display dial and a percentage pointer in the physiological characteristic display dial, a PWM driver used for driving the stepping motors, a real-time clock, an MCU, a vibration module, an LED background lamp, a memory, a battery and a power supply management module. The utility model discloses both kept the fashion of mechanical watch, had the accurate and multi-functional characteristics of electronic watch simultaneously concurrently.

Description

Mechanical watch device based on pointer display physiological characteristic index
Technical Field
The utility model relates to a wearing equipment field especially relates to a machinery wrist-watch device based on pointer demonstration physiological characteristic index.
Background
The present watch devices are mainly classified into mechanical watches and electronic watches. At present, a mechanical watch gives a certain power to the watch through the movement of a wearer or a clockwork spring, a certain error exists when the mechanical watch moves according to the precision of a movement, the mechanical watch stops moving if the mechanical watch is not worn for a long time, but the mechanical watch does not consume power, and the mechanical watch has higher taste and value preservation; the electronic watch uses the battery as power, so that the walking time is relatively more accurate, and the functions and styles are more. The existing mechanical watch devices for displaying physiological characteristic indexes all adopt a pure electronic watch to display numerical values or percentages.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model lies in, to the above-mentioned defect of prior art, provide a mechanical watch device based on pointer demonstration physiological characteristic index.
The utility model provides a technical scheme that its technical problem adopted is: a mechanical watch device configured to display a physiological characteristic indicator based on a pointer, the watch having a plurality of physiological characteristic display dials that display the physiological characteristic indicator as a percentage of a normal indicator, the watch comprising: the watch comprises a Bluetooth module for data communication between a watch end and a terminal, a physiological characteristic detection module for detecting human physiological characteristic indexes, a plurality of stepping motors for driving deflection of a minute pointer and a clock pointer in a clock display dial plate and a percentage pointer in the physiological characteristic display dial plate, a PWM driver for driving the plurality of stepping motors, a real-time clock, an MCU, a memory, a battery and a power management module, wherein the plurality of stepping motors are connected to the PWM driver, the battery is connected to the power management module, the PWM driver, the real-time clock, the memory, the Bluetooth module and the physiological characteristic detection module are connected to the MCU, and the power management module is connected with the MCU, the PWM driver, the plurality of stepping motors, the memory and the Bluetooth module.
Preferably, the physiological characteristic detection module comprises sensors of blood pressure, blood oxygen and heart rate, the number of the stepping motors is five, and three stepping motors are respectively used for driving percentage pointers related to the blood pressure, the blood oxygen and the heart rate. .
Preferably, the watch further comprises a vibration module, the vibration module is connected with the MCU and the power management module, and the vibration module is used for vibrating to remind a user when a terminal calls or reaches a log time point set by the user.
Preferably, the watch further comprises an LED background light, and the LED background light is connected with the MCU.
Preferably, the bluetooth module is a DA14580 bluetooth module.
Preferably, the terminal is a mobile phone or a PDA.
Preferably, the surface of the mechanical watch device is made of organic glass, and a rear cover of the mechanical watch device is screwed and fixed by an embedded sealing rubber ring through threads.
Implement the utility model discloses a mechanical watch device based on pointer demonstration physiological characteristic index has following beneficial effect: the utility model not only retains the fashion of the mechanical watch, but also has the characteristics of accuracy and multifunction of the electronic watch, wherein the physiological characteristic detection module can realize the detection of the physiological characteristic of the human body, and the physiological characteristic index accounts for the percentage of the normal index through the physiological characteristic display dial plate, and the physiological characteristic index information can be uploaded to the terminal for display through the Bluetooth module; furthermore, incoming call reminding and event reminding can be realized through the vibration module.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the provided drawings without creative efforts:
fig. 1 is a schematic structural diagram of a preferred embodiment of the present invention.
Detailed Description
In order to facilitate understanding of the present invention, the present invention will be described more fully hereinafter with reference to the accompanying drawings. Exemplary embodiments of the present invention are shown in the drawings. The invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete.
It is noted that the terms "equal," "same," "simultaneously," or other similar terms are not limited to the absolute equality or equality in mathematical terms, but may be similar in engineering sense or within an acceptable error range when practicing the claims of this patent. The word "connected" or "connecting" is intended to encompass not only the direct connection of two entities, but also the indirect connection via other entities with beneficial and improved effects.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used in the description of the invention herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention.
For better understanding of the technical solutions of the present invention, the following detailed descriptions will be made in conjunction with the drawings and the specific embodiments of the present invention, and it should be understood that the specific features in the embodiments and examples of the present invention are detailed descriptions of the technical solutions of the present invention, but not limitations of the technical solutions of the present invention, and the technical features in the embodiments and examples of the present invention can be combined with each other without conflict.
Referring to fig. 1, it is a schematic structural diagram of a preferred embodiment of the present invention.
The watch is not provided with any knob or key, the surface of the watch is made of organic glass, and the watch is provided with a clock display dial and a plurality of physiological characteristic display dials for displaying the percentage of physiological characteristic indexes in normal indexes. This lid is screwed through the screw and is embedded sealed rubber ring waterproof behind wrist-watch, sets for or calibrates time, date isoparametric through bluetooth and cell-phone APP's wireless connection.
In a preferred embodiment, the mechanical watch device comprises: the mobile phone comprises a Bluetooth module used for data communication between a watch end and a terminal, a physiological characteristic detection module used for detecting human physiological characteristic indexes, a plurality of stepping motors, a PWM driver used for driving the stepping motors, a real-time clock, an MCU, a vibration module used for vibrating to remind a user when the terminal is powered on or reaches a log time point set by the user, an LED background lamp, a storage, a battery and a power management module, wherein the stepping motors are connected to the PWM driver, the battery is connected to the power management module, the PWM driver, the real-time clock, the storage, the Bluetooth module, the physiological characteristic detection module, the vibration module and the LED background lamp are respectively connected to the MCU, and the power management module is respectively connected with the MCU, the PWM driver, the stepping motors, the storage, the Bluetooth module and the vibration module.
Wherein the physiological characteristic detection module comprises any one or any combination of the following: blood pressure, blood oxygen, heart rate sensor. Preferably, in this embodiment, the blood pressure sensor, the blood oxygen sensor and the heart rate sensor are all provided, so the number of the physiological characteristic display dials is also three, and the physiological characteristic display dials are respectively a blood pressure display dial, a blood oxygen display dial and a heart rate display dial. The number of the stepping motors is five, wherein two stepping motors are respectively used for driving a minute pointer and a clock pointer, and the remaining three stepping motors are respectively used for driving percentage pointers related to blood pressure, blood oxygen and heart rate.
As shown in the figure, the plurality of stepping motors are a stepping motor 1, a stepping motor 2, a stepping motor 3, a stepping motor 4, and a stepping motor 5. The stepping motor 1 and the stepping motor 2 are respectively used for driving a minute pointer in a clock display dial and a clock pointer in the clock display dial; the stepping motor 3, the stepping motor 4 and the stepping motor 5 are respectively used for driving the deflection of percentage pointers in the blood pressure display dial, the blood oxygen display dial and the heart rate display dial.
Wherein, the terminal is a mobile phone or a PDA.
Specifically, due to the small size and low power consumption requirements of the watch, the preferred embodiment employs a DA14580 bluetooth module, which is an ultra-low power, ultra-small size, super bluetooth chip based on DAILOG, germany. It includes an antenna part with only 8.3mm and a height of only 1.7mm, and an integrated 32-bit ARM Cortex M0 on a chipTMOf international standards for processors
Figure DEST_PATH_GDA0002555869060000051
Smart protocol stack, it is therefore particularly suitable for Smart wearable devices with special requirements on size and power consumption.
Specifically, the APOLLO 256 chip is an ultra-low power consumption micro-control processor, and includes a Sensor Hub management function, and is particularly suitable for wearable and portable devices, so the MCU of the present device adopts the APOLLO 256 chip as a micro-control processing chip.
Wherein, power management module is used for carrying out low-power consumption intelligent management, when triaxial acceleration sensor detected that the user is in the sleep state, MCU will control bluetooth module's electric energy through power management module to reach the purpose of saving the electric energy, and when minute counter and clock counter not full yet, MCU will come the power that cuts off PWM driver, step motor etc. through power management module, thereby further realize the purpose of reducing the consumption.
The working principle of the preferred embodiment is briefly described as follows:
open the cell-phone bluetooth, and put near directly over the wrist-watch with the cell-phone, the wrist-watch pairs the back through bluetooth and cell-phone end, set for the wrist-watch through cell-phone end APP blood pressure, the blood oxygen, the normal index and the automatic setting current clock of rhythm of the heart, and remind log information through cell-phone end APP input event, and through the bluetooth synchronous memory module to this device, data such as this wrist-watch will be blood pressure, the blood oxygen, rhythm of the heart information, current clock are sent through bluetooth module and are shown and the storage in the APP of cell-phone end simultaneously. The watch of the embodiment reminds a user through the vibration module when the current mobile phone incoming call state is obtained through Bluetooth or a log time point set by the user is reached.
Simultaneously, blood pressure, blood oxygen, heart rate sensor can monitor user's blood pressure, blood oxygen, heart rate information to calculate human current blood pressure, blood oxygen, the heart rate account for the normal index's of the blood pressure of setting for, blood oxygen, heart rate percentage, and calculate the required pivoted angle of PWM driver needs drive step motor through MCU, then control the PWM driver through MCU, make step motor's pointer point to current blood pressure, blood oxygen, heart rate percentage position. In the prior art, the percentage is directly displayed, and in the invention, the percentage is displayed by a pointer.
The clock setting principle is as follows: the mobile phone end sends a time setting instruction to the watch end through the Bluetooth, the clock and the minutes of the watch are respectively adjusted through the mobile phone, the mobile phone end points to 12 points (0 point), the mobile phone end sends clock synchronization data to the MCU in the watch, the MCU in the watch analyzes the synchronization data, the rotation direction (forward rotation or reverse rotation) is preferably selected through the analysis of the set time, the angle of a clock/minute pointer needing to rotate is calculated, the MCU generates PWM waves to control the PWM wave driver to generate rotation pulses, the PWM wave driver controls the stepping motor to rotate, and therefore the function of automatically setting the clock and the minutes of the watch to a designated position according to the received synchronization signals is achieved.
Wherein, the clock theory of operation does: the MCU controls a Real Time Clock (RTC) of 32.768KHz to generate a time delay signal of 1 second, the MCU counts the generated time delay signal, the MCU generates an interrupt signal every time the count is full of 60, the MCU generates a PWM wave to control the PWM driver, so that the minute pointer generates a step signal with a step length of 3 degrees clockwise, the step signal acts on the stepping motor to rotate to the next minute position, meanwhile, the minute number is counted again, when the counter of the minute number is full of 12, the MCU generates an interrupt signal, the MCU generates a PWM wave to control the PWM driver, so that the clock pointer generates a step signal with a step length of 3 degrees clockwise, and the step signal acts on the stepping motor to rotate to the next position. Wherein the clock is rotated 5 times for 1 hour (12 x 5).
In addition, the utility model discloses a can also solve the problem that the light is dim at night and can't read the pointer data through the LED backlight; preferably, the Bluetooth connection state and the data interaction transmission operation can be reminded by matching with the vibration module in two synchronous reminding modes of vibration and LED background light flashing.
To sum up, implement the utility model discloses a mechanical wrist-watch device based on pointer demonstration physiological characteristic index has following beneficial effect: the utility model not only retains the fashion of the mechanical watch, but also has the characteristics of accuracy and multifunction of the electronic watch, wherein the physiological characteristic detection module can realize the detection of the physiological characteristic of the human body, and the physiological characteristic index accounts for the percentage of the normal index through the physiological characteristic display dial plate, and the physiological characteristic index information can be uploaded to the terminal for display through the Bluetooth module; furthermore, incoming call reminding and event reminding can be realized through the vibration module. .
While the embodiments of the present invention have been described with reference to the accompanying drawings, the present invention is not limited to the above-described embodiments, which are merely illustrative and not restrictive, and many modifications may be made by one skilled in the art without departing from the spirit and scope of the present invention as defined in the appended claims.

Claims (8)

1. A mechanical wristwatch device for displaying a physiological characteristic index based on a hand, having a clock display dial, a plurality of physiological characteristic display dials for displaying the physiological characteristic index as a percentage of a normal index, said wristwatch comprising: the watch comprises a Bluetooth module for data communication between a watch end and a terminal, a physiological characteristic detection module for detecting human physiological characteristic indexes, a plurality of stepping motors for driving deflection of a minute pointer and a clock pointer in a clock display dial plate and a percentage pointer in the physiological characteristic display dial plate respectively, a PWM driver for driving the plurality of stepping motors, a real-time clock, an MCU, a memory, a battery and a power management module, wherein the plurality of stepping motors are connected to the PWM driver, the battery is connected to the power management module, the PWM driver, the real-time clock, the memory, the Bluetooth module and the physiological characteristic detection module are connected to the MCU respectively, and the power management module is connected with the MCU, the PWM driver, the plurality of stepping motors, the memory and the Bluetooth module respectively.
2. The mechanical watch device for displaying a physiological characteristic indicator based on a pointer according to claim 1, wherein the physiological characteristic detection module comprises any one or any combination of the following: blood pressure, blood oxygen, heart rate sensor.
3. The mechanical wristwatch device of claim 2, wherein the number of the stepping motors is five, and three of the stepping motors are used to drive blood pressure, blood oxygen, and heart rate related percentage indicators, respectively.
4. The mechanical watch device for displaying physiological characteristic indexes based on the pointers of claim 1, wherein the watch further comprises a vibration module, the vibration module is connected with the MCU and the power management module, and the vibration module is used for vibrating to remind a user when a terminal is powered on or a log time point set by the user is reached.
5. The mechanical watch device for displaying indicators of physiological characteristics based on hands of claim 1, wherein said watch further comprises an LED backlight, said LED backlight being connected to the MCU.
6. The mechanical watch device for displaying a physiological characteristic index based on a pointer of claim 1, wherein the bluetooth module is a DA14580 bluetooth module.
7. The mechanical wristwatch device of claim 1, wherein the terminal is a cell phone or a PDA.
8. The mechanical wristwatch device of claim 1, wherein the surface of the mechanical wristwatch device is made of plexiglass, and the back cover of the mechanical wristwatch device is fixed by screwing an embedded sealing rubber ring.
CN201820593884.XU 2018-04-24 2018-04-24 Mechanical watch device based on pointer display physiological characteristic index Expired - Fee Related CN211906003U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201820593884.XU CN211906003U (en) 2018-04-24 2018-04-24 Mechanical watch device based on pointer display physiological characteristic index

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201820593884.XU CN211906003U (en) 2018-04-24 2018-04-24 Mechanical watch device based on pointer display physiological characteristic index

Publications (1)

Publication Number Publication Date
CN211906003U true CN211906003U (en) 2020-11-10

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Granted publication date: 20201110