CN105797353A - Monitoring device for eight trigrams boxing training bracelet - Google Patents

Monitoring device for eight trigrams boxing training bracelet Download PDF

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Publication number
CN105797353A
CN105797353A CN201610271007.6A CN201610271007A CN105797353A CN 105797353 A CN105797353 A CN 105797353A CN 201610271007 A CN201610271007 A CN 201610271007A CN 105797353 A CN105797353 A CN 105797353A
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feet
connect
sensor
resistance
chip microcomputer
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CN201610271007.6A
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Chinese (zh)
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CN105797353B (en
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赵玉斌
段蕾蕾
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Individual
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    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B71/00Games or sports accessories not covered in groups A63B1/00 - A63B69/00
    • A63B71/06Indicating or scoring devices for games or players, or for other sports activities
    • A63B71/0619Displays, user interfaces and indicating devices, specially adapted for sport equipment, e.g. display mounted on treadmills
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B24/00Electric or electronic controls for exercising apparatus of preceding groups; Controlling or monitoring of exercises, sportive games, training or athletic performances
    • A63B24/0003Analysing the course of a movement or motion sequences during an exercise or trainings sequence, e.g. swing for golf or tennis
    • A63B24/0006Computerised comparison for qualitative assessment of motion sequences or the course of a movement
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B71/00Games or sports accessories not covered in groups A63B1/00 - A63B69/00
    • A63B71/06Indicating or scoring devices for games or players, or for other sports activities
    • A63B71/0619Displays, user interfaces and indicating devices, specially adapted for sport equipment, e.g. display mounted on treadmills
    • A63B2071/065Visualisation of specific exercise parameters
    • A63B2071/0652Visualisation or indication relating to symmetrical exercise, e.g. right-left performance related to spinal column
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B71/00Games or sports accessories not covered in groups A63B1/00 - A63B69/00
    • A63B71/06Indicating or scoring devices for games or players, or for other sports activities
    • A63B71/0619Displays, user interfaces and indicating devices, specially adapted for sport equipment, e.g. display mounted on treadmills
    • A63B2071/0658Position or arrangement of display
    • A63B2071/0661Position or arrangement of display arranged on the user
    • A63B2071/0663Position or arrangement of display arranged on the user worn on the wrist, e.g. wrist bands

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  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Engineering & Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Measurement And Recording Of Electrical Phenomena And Electrical Characteristics Of The Living Body (AREA)
  • Measurement Of The Respiration, Hearing Ability, Form, And Blood Characteristics Of Living Organisms (AREA)

Abstract

The invention discloses a monitoring device for an eight trigrams boxing training bracelet. The monitoring device comprises a microcontroller, a heart rate and blood oxygen sensing unit, a position sensing unit, a storage unit, a button unit, a display unit, a communication interface unit, a music unit and a charging unit. The monitoring device has the advantages that curvilinear motion tracking data in human body health exercise actions is recorded and can be compared with data of standard actions, the purpose of checking the training effect is achieved, and a user can further know his/her physical condition.

Description

A kind of supervising device training bracelet for BADUANJIN
Technical field
The invention belongs to intelligent body-building equipment technology field, relate to a kind of supervising device training bracelet for BADUANJIN.
Background technology
Existing Intelligent bracelet is the principle utilizing 3-axis acceleration sensor, senses human body vibration in all directions, thus realizing the purpose of record running number when motion.But this mode can't complete the detection of curvilinear motion track in body-care actuating work, it is impossible to the degree that some training inspections such as traditional health care works are taken exercise.Present Intelligent bracelet, is merely able to record and obtains running step number.
With BADUANJIN be representative conventional motion works be not with step number number for principal character, but based on the abundant motion change of upper limb.And the Intelligent bracelet listed at present is only capable of monitoring step number, the change for upper extremity exercise track can not carry out monitor in real time.Therefore, also just the movement locus of the conventional motion works such as BADUANJIN cannot be analyzed.
Summary of the invention
The technical problem to be solved is to provide the track of the automatic operation of recording of a kind of energy and the supervising device training bracelet for BADUANJIN of heart rate and pulse data.
Being the technical scheme is that a kind of supervising device training bracelet for BADUANJIN for solving above-mentioned technical problem, it includes microcontroller, heart rate and blood oxygen sensing unit, position sensing unit and memory element;Described heart rate and blood oxygen sensing unit and position sensing unit are bi-directionally connected with the corresponding port of described microcontroller respectively;Described microcontroller, heart rate and blood oxygen sensing unit, position sensing unit and memory element are separately positioned on BADUANJIN training bracelet.
Described heart rate and blood oxygen sensing unit include first sensor U2, electric capacity C3-C4 and resistance R4-R6;Described position sensing unit includes the second sensor U5, the 3rd sensor U4, resistance R32-R33, electric capacity C16-20 and electric capacity C36-C37;Described memory element includes memory module U1, resistance R1-R3 and electric capacity C1-C2;Described microcontroller includes single-chip microcomputer U3 and peripheral circuit thereof;
3 feet of described first sensor U2 connect 30 feet of described single-chip microcomputer U3;2 feet of described first sensor U2 connect 29 feet of described single-chip microcomputer U3;13 feet of described first sensor U2 connect 20 feet of described single-chip microcomputer U3;Described electric capacity C3 is connected between 4 feet and 11 feet of described first sensor U2;Described electric capacity C4 is connected between 9 feet and the ground of described first sensor U2;9 feet and 10 feet of described first sensor U2 connect 3.3V DC source respectively;11 feet of described first sensor U2 connect 1.8V DC source;4 feet of described first sensor U2 and 12 feet ground connection respectively;
15 feet of described second sensor U5 connect 22 feet of single-chip microcomputer U3;1 foot of described second sensor U5 connects 7 feet of the 3rd sensor U4;16 feet of described second sensor U5 connect 6 feet of the 3rd sensor U4;Described electric capacity C16 is connected between 10 feet and the ground of the second sensor U5;Described electric capacity C17 is connected between 8 feet and 12 feet of the second sensor U5;Described electric capacity C36 is connected between 3.3V DC source and ground;2 feet of described second sensor U5,13 feet and 4 feet connect 3.3V DC source respectively;9 feet of described second sensor U5,11 feet and 17 feet are ground connection respectively;
6 feet of described 3rd sensor U4 connect 1 foot of the second sensor U5;7 feet of described 3rd sensor U4 connect 16 feet of the second sensor U5;23 feet of described 3rd sensor U4 connect 29 feet of single-chip microcomputer U3;24 feet of described 3rd sensor U4 connect 30 feet of single-chip microcomputer U3;12 feet of described 3rd sensor U4 connect 27 feet of single-chip microcomputer U3;Described electric capacity C18 is connected between 20 feet and the ground of the 3rd sensor U4;Described electric capacity C19 is connected between 10 feet and the ground of the 3rd sensor U4;Described electric capacity C20 is connected between 8 feet and the ground of the 3rd sensor U4;Described electric capacity C37 is connected between 3.3V DC source and ground;Described resistance R32 is connected between 24 feet and the 3.3V DC source of the 3rd sensor U4;Described resistance R33 is connected between 23 feet and the 3.3V DC source of the 3rd sensor U4;13 feet and 8 feet of described 3rd sensor U4 connect 3.3V DC source respectively;1 foot of described 3rd sensor U4,11 feet, 18 feet, 25 feet and 9 feet are ground connection respectively;
The data terminals DQ0-DQ7 of described memory module U1 connects the 37-40 foot of described single-chip microcomputer U3,51-53 foot and 2 feet respectively;16 feet of described memory module U1 connect 45 feet of single-chip microcomputer U3;17 feet of described memory module U1 connect 44 feet of single-chip microcomputer U3;18 feet of described memory module U1 connect 26 feet of single-chip microcomputer U3;8 feet of described memory module U1 connect 25 feet of single-chip microcomputer U3;9 feet of described memory module U1 connect 24 feet of single-chip microcomputer U3;19 feet of described memory module U1 connect 23 feet of single-chip microcomputer U3;7 feet of described memory module U1 connect 33 feet of single-chip microcomputer U3;Described resistance R1 is connected between 12 feet of memory module U1 and 7 feet;Described resistance R2 is connected between 12 feet of memory module U1 and 19 feet;Described resistance R3 is connected between 9 feet of memory module U1 and 3.3V DC source;Described electric capacity C2 is connected between 12 feet of memory module U1 and 13 feet;12 feet and 37 feet of described memory module U1 connect 3.3V DC source respectively;13 feet of described memory module U1 and 36 feet ground connection respectively.
Said apparatus also includes push-button unit;Described push-button unit is arranged on BADUANJIN training bracelet;Described push-button unit includes key-press module K1 and resistance R24-R26;Described resistance R24 is connected between 4 feet of key-press module K1 and 3.3V DC source;Described resistance R25 is connected between 3 feet of key-press module K1 and 3.3V DC source;Described resistance R26 is connected between 2 feet of key-press module K1 and 3.3V DC source;1 foot of key-press module K1 and 5 feet ground connection respectively;4 feet of described key-press module K1 connect 9 feet of single-chip microcomputer U3;3 feet of described key-press module K1 connect 10 feet of single-chip microcomputer U3;2 feet of described key-press module K1 connect 11 feet of single-chip microcomputer U3.
Said apparatus also includes display unit;Described display unit is arranged on BADUANJIN training bracelet;Described display unit includes liquid crystal display module J4, resistance R21, resistance R23, resistance R29-R31 and transistor Q1;
3 feet of described liquid crystal display module J4 connect the source electrode of described transistor Q1;Described resistance R23 and resistance R29 connects and is followed by between grid and the ground of described transistor Q1;The node of described resistance R23 and resistance R29 connects 34 feet of single-chip microcomputer U3;The grounded drain of described transistor Q1;6 feet of described liquid crystal display module J4 connect 35 feet of single-chip microcomputer U3;7 feet of described liquid crystal display module J4 connect 36 feet of single-chip microcomputer U3;8 feet of described liquid crystal display module J4 connect 59 feet of single-chip microcomputer U3;9 feet of described liquid crystal display module J4 connect 58 feet of single-chip microcomputer U3;12 feet of described liquid crystal display module J4 connect 57 feet of single-chip microcomputer U3;10 feet and 11 feet of described liquid crystal display module J4 connect 3.3V DC source respectively;2 feet of described liquid crystal display module J4 and 13 feet ground connection respectively;Described resistance R21 is connected between 12 feet of liquid crystal display module J4 and 3.3V DC source;Described resistance R30 is connected between 8 feet of liquid crystal display module J4 and 3.3V DC source;Described resistance R31 is connected between 9 feet of liquid crystal display module J4 and 3.3V DC source.
Said apparatus also includes communication interface unit;Described communication interface unit is arranged on BADUANJIN training bracelet;Described communication interface unit includes USB interface J3;2 feet of described USB interface J3 connect 42 feet of single-chip microcomputer U3;3 feet of described USB interface J3 connect 43 feet of single-chip microcomputer U3;4 feet of described USB interface J3 connect 60 feet of single-chip microcomputer U3;The 5 foot ground connection of described USB interface J3.
Said apparatus also includes music unit;Described music unit is arranged on BADUANJIN training bracelet;Described music unit includes music module, power amplifier module and switch module;Described music module includes MP3 chip U10, resistance R20, electric capacity C33 and electric capacity C35;Power amplifier module includes audio frequency power amplifier chip U9, resistance R17-R19, electric capacity C28-C32, speaker SP1, port DAC_N and port DAC_P;Described switch module includes audion Q2, transistor Q3 and resistance R15-R16;
The base stage of described audion Q2 connects 62 feet of single-chip microcomputer U3 through resistance R16;The grounded emitter of described audion Q2;The colelctor electrode of described audion Q2 connects the grid of transistor Q3;The source electrode of described transistor Q3 connects external dc power;Described resistance R15 is connected between grid and the source electrode of transistor Q3;
12 feet of described MP3 chip U10 connect the drain electrode of transistor Q3;9 feet of described MP3 chip U10 meet the port DAC_P of audio frequency power amplifier chip U9;10 feet of described MP3 chip U10 meet the port DAC_N of audio frequency power amplifier chip U9;15 feet of described MP3 chip U10 connect 16 feet of single-chip microcomputer U3;14 feet of described MP3 chip U10 connect 17 feet of single-chip microcomputer U3;Described resistance R20 is connected between 4 feet and the 3.3V DC source of MP3 chip U10;Described electric capacity C33 is connected between 7 feet and the ground of MP3 chip U10;Described electric capacity C35 is connected between 12 feet and the ground of MP3 chip U10;8 feet of described MP3 chip U10 and 13 feet ground connection respectively;
1 foot of described audio frequency power amplifier chip U9 connects 8 feet of single-chip microcomputer U3;6 feet of described audio frequency power amplifier chip U9 connect the drain electrode of transistor Q3;The port DAC_N of audio frequency power amplifier chip U9 connects 4 feet of audio frequency power amplifier chip U9 successively through electric capacity C30, resistance R17, electric capacity C31;The port DAC_P of audio frequency power amplifier chip U9 connects 4 feet of audio frequency power amplifier chip U9 successively through electric capacity C32, resistance R19, electric capacity C31;The two ends of described speaker SP1 connect 8 feet and 5 feet of audio frequency power amplifier chip U9 respectively;Described resistance R18 is connected between 4 feet and 5 feet of audio frequency power amplifier chip U9;Described electric capacity C28 is connected between 6 feet and the ground of audio frequency power amplifier chip U9;Described electric capacity C29 is connected between 2 feet and the ground of audio frequency power amplifier chip U9;2 feet of audio frequency power amplifier chip U9 connect its 3 foot.
Said apparatus also includes charhing unit;Described charhing unit includes power module U8, resistance R14, resistance R28 and electric capacity C25-C26;3 feet of described power module U8 connect the positive pole of external dc power;4 feet of described power module U8 connect 1 foot of USB interface J3;Described electric capacity C26 is connected on external dc power two ends;Described electric capacity C25 is connected between 4 feet of power module U8 and 2 feet;Described resistance R28 is connected between 1 foot of power module U8 and 3.3V DC source;Described resistance R14 is connected between 5 feet and the ground of power module U8.
The invention has the beneficial effects as follows: present invention achieves the record to the curvilinear motion track data in body-care actuating work, such that it is able to the Data Comparison of standard operation, to reach to check the purpose of training effect, make individual that oneself health has been had further understanding.
Accompanying drawing explanation
Fig. 1 is principle of the invention block diagram.
Fig. 2 is single chip computer architecture figure.
Fig. 3 is heart rate and blood oxygen sensing unit circuit theory diagrams.
Fig. 4 is the circuit theory diagrams of the second sensor composition of position sensing unit.
Fig. 5 is the circuit theory diagrams of the 3rd sensor composition of position sensing unit.
Fig. 6 is storage unit circuit schematic diagram.
Fig. 7 is push-button unit circuit theory diagrams.
Fig. 8 is display unit circuit schematic diagram.
Fig. 9 is communication interface unit circuit theory diagrams.
Figure 10 is music module circuit theory diagrams.
Figure 11 is switch module circuit theory diagrams.
Figure 12 is power amplifier modular circuit schematic diagram.
Figure 13 is charhing unit circuit theory diagrams.
Detailed description of the invention
Embodiment shown in Fig. 1-13 it can be seen that it it include microcontroller, heart rate and blood oxygen sensing unit, position sensing unit and memory element;Described heart rate and blood oxygen sensing unit and position sensing unit are bi-directionally connected with the corresponding port of described microcontroller respectively;Described microcontroller, heart rate and blood oxygen sensing unit, position sensing unit and memory element are separately positioned on BADUANJIN training bracelet.
Described heart rate and blood oxygen sensing unit include first sensor U2, electric capacity C3-C4 and resistance R4-R6;Described position sensing unit includes the second sensor U5, the 3rd sensor U4, resistance R32-R33, electric capacity C16-20 and electric capacity C36-C37;Described memory element includes memory module U1, resistance R1-R3 and electric capacity C1-C2;Described microcontroller includes single-chip microcomputer U3 and peripheral circuit thereof;
3 feet of described first sensor U2 connect 30 feet of described single-chip microcomputer U3;2 feet of described first sensor U2 connect 29 feet of described single-chip microcomputer U3;13 feet of described first sensor U2 connect 20 feet of described single-chip microcomputer U3;Described electric capacity C3 is connected between 4 feet and 11 feet of described first sensor U2;Described electric capacity C4 is connected between 9 feet and the ground of described first sensor U2;9 feet and 10 feet of described first sensor U2 connect 3.3V DC source respectively;11 feet of described first sensor U2 connect 1.8V DC source;4 feet of described first sensor U2 and 12 feet ground connection respectively;
15 feet of described second sensor U5 connect 22 feet of single-chip microcomputer U3;1 foot of described second sensor U5 connects 7 feet of the 3rd sensor U4;16 feet of described second sensor U5 connect 6 feet of the 3rd sensor U4;Described electric capacity C16 is connected between 10 feet and the ground of the second sensor U5;Described electric capacity C17 is connected between 8 feet and 12 feet of the second sensor U5;Described electric capacity C36 is connected between 3.3V DC source and ground;2 feet of described second sensor U5,13 feet and 4 feet connect 3.3V DC source respectively;9 feet of described second sensor U5,11 feet and 17 feet are ground connection respectively;
6 feet of described 3rd sensor U4 connect 1 foot of the second sensor U5;7 feet of described 3rd sensor U4 connect 16 feet of the second sensor U5;23 feet of described 3rd sensor U4 connect 29 feet of single-chip microcomputer U3;24 feet of described 3rd sensor U4 connect 30 feet of single-chip microcomputer U3;12 feet of described 3rd sensor U4 connect 27 feet of single-chip microcomputer U3;Described electric capacity C18 is connected between 20 feet and the ground of the 3rd sensor U4;Described electric capacity C19 is connected between 10 feet and the ground of the 3rd sensor U4;Described electric capacity C20 is connected between 8 feet and the ground of the 3rd sensor U4;Described electric capacity C37 is connected between 3.3V DC source and ground;Described resistance R32 is connected between 24 feet and the 3.3V DC source of the 3rd sensor U4;Described resistance R33 is connected between 23 feet and the 3.3V DC source of the 3rd sensor U4;13 feet and 8 feet of described 3rd sensor U4 connect 3.3V DC source respectively;1 foot of described 3rd sensor U4,11 feet, 18 feet, 25 feet and 9 feet are ground connection respectively;
The data terminals DQ0-DQ7 of described memory module U1 connects the 37-40 foot of described single-chip microcomputer U3,51-53 foot and 2 feet respectively;16 feet of described memory module U1 connect 45 feet of single-chip microcomputer U3;17 feet of described memory module U1 connect 44 feet of single-chip microcomputer U3;18 feet of described memory module U1 connect 26 feet of single-chip microcomputer U3;8 feet of described memory module U1 connect 25 feet of single-chip microcomputer U3;9 feet of described memory module U1 connect 24 feet of single-chip microcomputer U3;19 feet of described memory module U1 connect 23 feet of single-chip microcomputer U3;7 feet of described memory module U1 connect 33 feet of single-chip microcomputer U3;Described resistance R1 is connected between 12 feet of memory module U1 and 7 feet;Described resistance R2 is connected between 12 feet of memory module U1 and 19 feet;Described resistance R3 is connected between 9 feet of memory module U1 and 3.3V DC source;Described electric capacity C2 is connected between 12 feet of memory module U1 and 13 feet;12 feet and 37 feet of described memory module U1 connect 3.3V DC source respectively;13 feet of described memory module U1 and 36 feet ground connection respectively.
Said apparatus also includes push-button unit;Described push-button unit is arranged on BADUANJIN training bracelet;Described push-button unit includes key-press module K1 and resistance R24-R26;Described resistance R24 is connected between 4 feet of key-press module K1 and 3.3V DC source;Described resistance R25 is connected between 3 feet of key-press module K1 and 3.3V DC source;Described resistance R26 is connected between 2 feet of key-press module K1 and 3.3V DC source;1 foot of key-press module K1 and 5 feet ground connection respectively;4 feet of described key-press module K1 connect 9 feet of single-chip microcomputer U3;3 feet of described key-press module K1 connect 10 feet of single-chip microcomputer U3;2 feet of described key-press module K1 connect 11 feet of single-chip microcomputer U3.
Said apparatus also includes display unit;Described display unit is arranged on BADUANJIN training bracelet;Described display unit includes liquid crystal display module J4, resistance R21, resistance R23, resistance R29-R31 and transistor Q1;
3 feet of described liquid crystal display module J4 connect the source electrode of described transistor Q1;Described resistance R23 and resistance R29 connects and is followed by between grid and the ground of described transistor Q1;The node of described resistance R23 and resistance R29 connects 34 feet of single-chip microcomputer U3;The grounded drain of described transistor Q1;6 feet of described liquid crystal display module J4 connect 35 feet of single-chip microcomputer U3;7 feet of described liquid crystal display module J4 connect 36 feet of single-chip microcomputer U3;8 feet of described liquid crystal display module J4 connect 59 feet of single-chip microcomputer U3;9 feet of described liquid crystal display module J4 connect 58 feet of single-chip microcomputer U3;12 feet of described liquid crystal display module J4 connect 57 feet of single-chip microcomputer U3;10 feet and 11 feet of described liquid crystal display module J4 connect 3.3V DC source respectively;2 feet of described liquid crystal display module J4 and 13 feet ground connection respectively;Described resistance R21 is connected between 12 feet of liquid crystal display module J4 and 3.3V DC source;Described resistance R30 is connected between 8 feet of liquid crystal display module J4 and 3.3V DC source;Described resistance R31 is connected between 9 feet of liquid crystal display module J4 and 3.3V DC source.
Said apparatus also includes communication interface unit;Described communication interface unit is arranged on BADUANJIN training bracelet;Described communication interface unit includes USB interface J3;2 feet of described USB interface J3 connect 42 feet of single-chip microcomputer U3;3 feet of described USB interface J3 connect 43 feet of single-chip microcomputer U3;4 feet of described USB interface J3 connect 60 feet of single-chip microcomputer U3;The 5 foot ground connection of described USB interface J3.
Said apparatus also includes music unit;Described music unit is arranged on BADUANJIN training bracelet;Described music unit includes music module, power amplifier module and switch module;Described music module includes MP3 chip U10, resistance R20, electric capacity C33 and electric capacity C35;Power amplifier module includes audio frequency power amplifier chip U9, resistance R17-R19, electric capacity C28-C32, speaker SP1, port DAC_N and port DAC_P;Described switch module includes audion Q2, transistor Q3 and resistance R15-R16;
The base stage of described audion Q2 connects 62 feet of single-chip microcomputer U3 through resistance R16;The grounded emitter of described audion Q2;The colelctor electrode of described audion Q2 connects the grid of transistor Q3;The source electrode of described transistor Q3 connects external dc power;Described resistance R15 is connected between grid and the source electrode of transistor Q3;
12 feet of described MP3 chip U10 connect the drain electrode of transistor Q3;9 feet of described MP3 chip U10 meet the port DAC_P of audio frequency power amplifier chip U9;10 feet of described MP3 chip U10 meet the port DAC_N of audio frequency power amplifier chip U9;15 feet of described MP3 chip U10 connect 16 feet of single-chip microcomputer U3;14 feet of described MP3 chip U10 connect 17 feet of single-chip microcomputer U3;Described resistance R20 is connected between 4 feet and the 3.3V DC source of MP3 chip U10;Described electric capacity C33 is connected between 7 feet and the ground of MP3 chip U10;Described electric capacity C35 is connected between 12 feet and the ground of MP3 chip U10;8 feet of described MP3 chip U10 and 13 feet ground connection respectively;
1 foot of described audio frequency power amplifier chip U9 connects 8 feet of single-chip microcomputer U3;6 feet of described audio frequency power amplifier chip U9 connect the drain electrode of transistor Q3;The port DAC_N of audio frequency power amplifier chip U9 connects 4 feet of audio frequency power amplifier chip U9 successively through electric capacity C30, resistance R17, electric capacity C31;The port DAC_P of audio frequency power amplifier chip U9 connects 4 feet of audio frequency power amplifier chip U9 successively through electric capacity C32, resistance R19, electric capacity C31;The two ends of described speaker SP1 connect 8 feet and 5 feet of audio frequency power amplifier chip U9 respectively;Described resistance R18 is connected between 4 feet and 5 feet of audio frequency power amplifier chip U9;Described electric capacity C28 is connected between 6 feet and the ground of audio frequency power amplifier chip U9;Described electric capacity C29 is connected between 2 feet and the ground of audio frequency power amplifier chip U9;2 feet of audio frequency power amplifier chip U9 connect its 3 foot.
Said apparatus also includes charhing unit;Described charhing unit includes power module U8, resistance R14, resistance R28 and electric capacity C25-C26;3 feet of described power module U8 connect the positive pole of external dc power;4 feet of described power module U8 connect 1 foot of USB interface J3;Described electric capacity C26 is connected on external dc power two ends;Described electric capacity C25 is connected between 4 feet of power module U8 and 2 feet;Described resistance R28 is connected between 1 foot of power module U8 and 3.3V DC source;Described resistance R14 is connected between 5 feet and the ground of power module U8.
The model of described first sensor U2 is MAX30100EFD;The model of described second sensor U5 is HMC5883L;The model of described 3rd sensor U4 is MPU-6050;The model of described memory module U1 is K9F1G08U0D;The model of described single-chip microcomputer U3 is STM32F103RCT6;The model of described key-press module K1 is YH6852;The model of described liquid crystal display module J4 is 1.44 cun of TFT liquid crystal display screens;The model of described transistor Q1 is AO3402;The model of described MP3 chip U10 is MX6200;The model of described audio frequency power amplifier chip U9 is XPT4890S;The model of described audion Q2 is 8050;The model of described transistor Q3 is AO3401;The model of described power module U8 is TP4054.
The invention belongs to a kind of intellectual technology detecting fitness training effect quality, for the movement locus of the conventional motion works such as BADUANJIN is analyzed and monitors, the present invention is worn on the wrist place of body-building people, can the track of recorder's action automatically when taking exercise, such that it is able to compare with standard operation, play the purpose checking training effect.
Existing Intelligent bracelet is the principle utilizing 3-axis acceleration sensor, senses human body vibration in all directions, thus realizing the purpose of record running number when motion.But this mode can't complete the detection of curvilinear motion track in body-care actuating work, it is impossible to the degree that some training inspections such as traditional health care works are taken exercise.
The present invention installs and uses nine axle sensors on training bracelet, is measured the position in 6 directions, motion track by three axle geomagnetic sensors, three axle gyrosensors simultaneously, measures angular velocity, to differentiate kinestate.Also increase heart normal pulse blood oxygen transducer, to reach the functions such as detection heart rate.When people trains, these data are stored, and transfer data on computer or mobile phone by USB interface/bluetooth/WIFI, compare with the data of standard operation training, thus reaching to check the purpose whether training action puts in place.
The present invention is directed to existing Intelligent bracelet to count step number and body-care actuating can not be detected and move along a curved path the defect of track, adopt the method installing nine axle sensors and heart arteries and veins, blood oxygen transducer in bracelet device, when carrying out BADUANJIN fitness exercise and taking exercise, by data such as operation of recording track and heart rate pulses, match with standard operation, can learn the effect oneself trained how, thus reaching the effect of building body.
BADUANJIN trains special bracelet to be the action for BADUANJIN conditioning exercise and adopt nine axle sensors, heart normal pulse blood oxygen transducer, a Intelligent bracelet designed.When there is no coach directed, the contrast of data Yu standard operation by checking record, thus learning the effect oneself taken exercise, reach to improve the purpose of training action.The data of heart rate, blood pressure can also be obtained, for individual's understanding to oneself health with the heart normal pulse blood oxygen transducer that is contained on bracelet.
For present Intelligent bracelet, being merely able to record the defect obtaining running number, this device achieves the record of the curvilinear motion track data during body-care actuating is made.Thus with the Data Comparison of standard operation, it is possible to reach to check the purpose of training effect.
The Core Microcontroller of Intelligent bracelet is with the integrated circuit of embedded-microcontroller STM32F103RCT6, mainly completes the control to other modular circuits.
The action data of record, for making radio communication between the training bracelet of user and smart mobile phone or computer connect, is sent in computer or cell phone software, thus checking the situation of exercise by communication interface unit.The main mode adopted is USB interface.
Position sensing unit is nine axle sensors;It includes combination gyroscope and the accelerator of MPU-6050 model and with the compass geomagnetic sensor of HMC5883L model, measures the position in 6 directions, motion track simultaneously, measures angular velocity, it is possible to identification maneuver.
Heart rate and blood oxygen sensing unit select MAX30100EFD+ to be radiated on skin measure the physiological values such as heart rate, blood pressure and blood oxygen through the light-emittingdiode (LED) of different wave length.
Push-button unit completes power and energy and the selection of Intelligent bracelet.
Display unit includes liquid crystal display screen display screen, and some basic function parameters of Intelligent bracelet are shown on 1.44TFT liquid crystal display screen, to facilitate user to carry out the reading of information.
The data of unit records training action, and store.To take exercise after terminating, it is transferred to computer or mobile phone carries out processing and analyzing, and then check whether conformance with standard and the gap with its standard operation.Adopting the components and parts carrying out storing is K9F1G08U0D.
Charging chip in charhing unit adopts TP4054, and the purpose choosing this model is that it adopts the linear charger of constant current/constant voltage, it is possible to be suitable for USB power source and adaptor power supplies work.
Music unit includes music module and switch module;Power amplifier module carries out Audio power amplifier, is mounted with loudspeaker in Intelligent bracelet;The song lyric that training is required is mainly stored by music module.
The above embodiment is only the preferred embodiments of the present invention, and and non-invention possible embodiments exhaustive.For persons skilled in the art, any apparent change under the premise without departing substantially from the principle of the invention and spirit, it is done, all should be contemplated as falling with within the claims of the present invention.

Claims (8)

1. the supervising device for BADUANJIN training bracelet, it is characterised in that: include microcontroller, heart rate and blood oxygen sensing unit, position sensing unit and memory element;Described heart rate and blood oxygen sensing unit and position sensing unit are bi-directionally connected with the corresponding port of described microcontroller respectively;Described microcontroller, heart rate and blood oxygen sensing unit, position sensing unit and memory element are separately positioned on BADUANJIN training bracelet.
2. a kind of supervising device training bracelet for BADUANJIN according to claim 1, it is characterised in that: described heart rate and blood oxygen sensing unit include first sensor U2, electric capacity C3-C4 and resistance R4-R6;Described position sensing unit includes the second sensor U5, the 3rd sensor U4, resistance R32-R33, electric capacity C16-20 and electric capacity C36-C37;Described memory element includes memory module U1, resistance R1-R3 and electric capacity C1-C2;Described microcontroller includes single-chip microcomputer U3 and peripheral circuit thereof;
3 feet of described first sensor U2 connect 30 feet of described single-chip microcomputer U3;2 feet of described first sensor U2 connect 29 feet of described single-chip microcomputer U3;13 feet of described first sensor U2 connect 20 feet of described single-chip microcomputer U3;Described electric capacity C3 is connected between 4 feet and 11 feet of described first sensor U2;Described electric capacity C4 is connected between 9 feet and the ground of described first sensor U2;9 feet and 10 feet of described first sensor U2 connect 3.3V DC source respectively;11 feet of described first sensor U2 connect 1.8V DC source;4 feet of described first sensor U2 and 12 feet ground connection respectively;
15 feet of described second sensor U5 connect 22 feet of single-chip microcomputer U3;1 foot of described second sensor U5 connects 7 feet of the 3rd sensor U4;16 feet of described second sensor U5 connect 6 feet of the 3rd sensor U4;Described electric capacity C16 is connected between 10 feet and the ground of the second sensor U5;Described electric capacity C17 is connected between 8 feet and 12 feet of the second sensor U5;Described electric capacity C36 is connected between 3.3V DC source and ground;2 feet of described second sensor U5,13 feet and 4 feet connect 3.3V DC source respectively;9 feet of described second sensor U5,11 feet and 17 feet are ground connection respectively;
6 feet of described 3rd sensor U4 connect 1 foot of the second sensor U5;7 feet of described 3rd sensor U4 connect 16 feet of the second sensor U5;23 feet of described 3rd sensor U4 connect 29 feet of single-chip microcomputer U3;24 feet of described 3rd sensor U4 connect 30 feet of single-chip microcomputer U3;12 feet of described 3rd sensor U4 connect 27 feet of single-chip microcomputer U3;Described electric capacity C18 is connected between 20 feet and the ground of the 3rd sensor U4;Described electric capacity C19 is connected between 10 feet and the ground of the 3rd sensor U4;Described electric capacity C20 is connected between 8 feet and the ground of the 3rd sensor U4;Described electric capacity C37 is connected between 3.3V DC source and ground;Described resistance R32 is connected between 24 feet and the 3.3V DC source of the 3rd sensor U4;Described resistance R33 is connected between 23 feet and the 3.3V DC source of the 3rd sensor U4;13 feet and 8 feet of described 3rd sensor U4 connect 3.3V DC source respectively;1 foot of described 3rd sensor U4,11 feet, 18 feet, 25 feet and 9 feet are ground connection respectively;
The data terminals DQ0-DQ7 of described memory module U1 connects the 37-40 foot of described single-chip microcomputer U3,51-53 foot and 2 feet respectively;16 feet of described memory module U1 connect 45 feet of single-chip microcomputer U3;17 feet of described memory module U1 connect 44 feet of single-chip microcomputer U3;18 feet of described memory module U1 connect 26 feet of single-chip microcomputer U3;8 feet of described memory module U1 connect 25 feet of single-chip microcomputer U3;9 feet of described memory module U1 connect 24 feet of single-chip microcomputer U3;19 feet of described memory module U1 connect 23 feet of single-chip microcomputer U3;7 feet of described memory module U1 connect 33 feet of single-chip microcomputer U3;Described resistance R1 is connected between 12 feet of memory module U1 and 7 feet;Described resistance R2 is connected between 12 feet of memory module U1 and 19 feet;Described resistance R3 is connected between 9 feet of memory module U1 and 3.3V DC source;Described electric capacity C2 is connected between 12 feet of memory module U1 and 13 feet;12 feet and 37 feet of described memory module U1 connect 3.3V DC source respectively;13 feet of described memory module U1 and 36 feet ground connection respectively.
3. a kind of supervising device training bracelet for BADUANJIN according to claim 2, it is characterised in that: also include push-button unit;Described push-button unit is arranged on BADUANJIN training bracelet;Described push-button unit includes key-press module K1 and resistance R24-R26;Described resistance R24 is connected between 4 feet of key-press module K1 and 3.3V DC source;Described resistance R25 is connected between 3 feet of key-press module K1 and 3.3V DC source;Described resistance R26 is connected between 2 feet of key-press module K1 and 3.3V DC source;1 foot of key-press module K1 and 5 feet ground connection respectively;4 feet of described key-press module K1 connect 9 feet of single-chip microcomputer U3;3 feet of described key-press module K1 connect 10 feet of single-chip microcomputer U3;2 feet of described key-press module K1 connect 11 feet of single-chip microcomputer U3.
4. a kind of supervising device training bracelet for BADUANJIN according to claim 2, it is characterised in that: also include display unit;Described display unit is arranged on BADUANJIN training bracelet;Described display unit includes liquid crystal display module J4, resistance R21, resistance R23, resistance R29-R31 and transistor Q1;
3 feet of described liquid crystal display module J4 connect the source electrode of described transistor Q1;Described resistance R23 and resistance R29 connects and is followed by between grid and the ground of described transistor Q1;The node of described resistance R23 and resistance R29 connects 34 feet of single-chip microcomputer U3;The grounded drain of described transistor Q1;6 feet of described liquid crystal display module J4 connect 35 feet of single-chip microcomputer U3;7 feet of described liquid crystal display module J4 connect 36 feet of single-chip microcomputer U3;8 feet of described liquid crystal display module J4 connect 59 feet of single-chip microcomputer U3;9 feet of described liquid crystal display module J4 connect 58 feet of single-chip microcomputer U3;12 feet of described liquid crystal display module J4 connect 57 feet of single-chip microcomputer U3;10 feet and 11 feet of described liquid crystal display module J4 connect 3.3V DC source respectively;2 feet of described liquid crystal display module J4 and 13 feet ground connection respectively;Described resistance R21 is connected between 12 feet of liquid crystal display module J4 and 3.3V DC source;Described resistance R30 is connected between 8 feet of liquid crystal display module J4 and 3.3V DC source;Described resistance R31 is connected between 9 feet of liquid crystal display module J4 and 3.3V DC source.
5. a kind of supervising device training bracelet for BADUANJIN according to claim 2, it is characterised in that: also include communication interface unit;Described communication interface unit is arranged on BADUANJIN training bracelet;Described communication interface unit includes USB interface J3;2 feet of described USB interface J3 connect 42 feet of single-chip microcomputer U3;3 feet of described USB interface J3 connect 43 feet of single-chip microcomputer U3;4 feet of described USB interface J3 connect 60 feet of single-chip microcomputer U3;The 5 foot ground connection of described USB interface J3.
6. a kind of supervising device training bracelet for BADUANJIN according to claim 2, it is characterised in that: also include music unit;Described music unit is arranged on BADUANJIN training bracelet;Described music unit includes music module, power amplifier module and switch module;Described music module includes MP3 chip U10, resistance R20, electric capacity C33 and electric capacity C35;Power amplifier module includes audio frequency power amplifier chip U9, resistance R17-R19, electric capacity C28-C32, speaker SP1, port DAC_N and port DAC_P;Described switch module includes audion Q2, transistor Q3 and resistance R15-R16;
The base stage of described audion Q2 connects 62 feet of single-chip microcomputer U3 through resistance R16;The grounded emitter of described audion Q2;The colelctor electrode of described audion Q2 connects the grid of transistor Q3;The source electrode of described transistor Q3 connects external dc power;Described resistance R15 is connected between grid and the source electrode of transistor Q3;
12 feet of described MP3 chip U10 connect the drain electrode of transistor Q3;9 feet of described MP3 chip U10 meet the port DAC_P of audio frequency power amplifier chip U9;10 feet of described MP3 chip U10 meet the port DAC_N of audio frequency power amplifier chip U9;15 feet of described MP3 chip U10 connect 16 feet of single-chip microcomputer U3;14 feet of described MP3 chip U10 connect 17 feet of single-chip microcomputer U3;Described resistance R20 is connected between 4 feet and the 3.3V DC source of MP3 chip U10;Described electric capacity C33 is connected between 7 feet and the ground of MP3 chip U10;Described electric capacity C35 is connected between 12 feet and the ground of MP3 chip U10;8 feet of described MP3 chip U10 and 13 feet ground connection respectively;
1 foot of described audio frequency power amplifier chip U9 connects 8 feet of single-chip microcomputer U3;6 feet of described audio frequency power amplifier chip U9 connect the drain electrode of transistor Q3;The port DAC_N of audio frequency power amplifier chip U9 connects 4 feet of audio frequency power amplifier chip U9 successively through electric capacity C30, resistance R17, electric capacity C31;The port DAC_P of audio frequency power amplifier chip U9 connects 4 feet of audio frequency power amplifier chip U9 successively through electric capacity C32, resistance R19, electric capacity C31;The two ends of described speaker SP1 connect 8 feet and 5 feet of audio frequency power amplifier chip U9 respectively;Described resistance R18 is connected between 4 feet and 5 feet of audio frequency power amplifier chip U9;Described electric capacity C28 is connected between 6 feet and the ground of audio frequency power amplifier chip U9;Described electric capacity C29 is connected between 2 feet and the ground of audio frequency power amplifier chip U9;2 feet of audio frequency power amplifier chip U9 connect its 3 foot.
7. a kind of supervising device training bracelet for BADUANJIN according to claim 2, it is characterised in that: also include charhing unit;Described charhing unit includes power module U8, resistance R14, resistance R28 and electric capacity C25-C26;3 feet of described power module U8 connect the positive pole of external dc power;4 feet of described power module U8 connect 1 foot of USB interface J3;Described electric capacity C26 is connected on external dc power two ends;Described electric capacity C25 is connected between 4 feet of power module U8 and 2 feet;Described resistance R28 is connected between 1 foot of power module U8 and 3.3V DC source;Described resistance R14 is connected between 5 feet and the ground of power module U8.
8. a kind of supervising device training bracelet for BADUANJIN according to claim 1-7 any one, it is characterised in that: the model of described first sensor U2 is MAX30100EFD;The model of described second sensor U5 is HMC5883L;The model of described 3rd sensor U4 is MPU-6050;The model of described memory module U1 is K9F1G08U0D;The model of described single-chip microcomputer U3 is STM32F103RCT6;The model of described key-press module K1 is YH6852;The model of described liquid crystal display module J4 is 1.44 cun of TFT liquid crystal display screens;The model of described transistor Q1 is AO3402;The model of described MP3 chip U10 is MX6200;The model of described audio frequency power amplifier chip U9 is XPT4890S;The model of described audion Q2 is 8050;The model of described transistor Q3 is AO3401;The model of described power module U8 is TP4054.
CN201610271007.6A 2016-04-27 2016-04-27 A kind of supervising device for eight-section brocade training bracelet Active CN105797353B (en)

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CN110917604A (en) * 2019-11-14 2020-03-27 西安优信机电工程有限公司 Indoor yoga posture correction system

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