A kind of health monitoring intelligent watch being provided with marine glue
Technical field
The present invention relates to a kind of health monitoring intelligent watch being provided with marine glue.
Background technology
At present, wrist-watch is more and more intelligent, and various functions is also gradually improved, the most current phone wrist-watch, the most universal, the most present fitness campaign wrist-watch, and it typically is provided with pulse wave detector for pulse situation detecting user etc.;But a wrist-watch simply detection device itself, is arranged if he needs communication with the outside world to be accomplished by preferable communication structure, often wrist-watch due to body worn, most of the time is blocked by clothes again, bad wrist-watch near arm, is therefore designed again in bottom surface, and its correspondence with foreign country ability is excessively poor.
Summary of the invention
It is an object of the invention to overcome disadvantages described above, it is provided that a kind of health monitoring intelligent watch being provided with marine glue.
For achieving the above object, the concrete scheme of the present invention is as follows: a kind of health monitoring intelligent watch being provided with marine glue, including watchcase, described watchcase is respectively equipped with that screen arranges layer, circuit arranges layer, battery arranges layer, separator arranges layer, communication antenna arranges layer, drain pan from top to bottom;Screen arranges layer and is provided with and touches display screen, circuit and arrange that layer is provided with circuit arrangement, battery is provided with the battery for powering with touch display screen for circuit arrangement in arranging layer;Described separator arranges layer and is provided with separator;Described communication antenna arranges layer and is provided with communication antenna;
Described circuit arrangement includes pulse wave detector that main controller is connected and the communicator for communication with the outside world with main controller signal;Described touch display screen is connected with main controller signal, and described communicator is connected with main controller and communication antenna signal respectively.
Wherein, described communication antenna includes is all the first PCB substrate of circle, the second PCB substrate, the 3rd PCB substrate;First to the 3rd PCB substrate size is identical, and the both sides of three are equipped with an arc notch, is equipped with micro-strip screen layer at arc notch;
Described first PCB substrate is provided with the first microstrip antenna;Described first microstrip antenna includes the first annulus arm, the second annulus arm, the 3rd annulus arm;Described first annulus arm, the second annulus arm, the 3rd annulus arm three are arranged concentrically;If being Y-axis through center of circle vertical direction, horizontal direction is X-axis, and described first annulus arm is provided with a sector notch from 122 ° to 132 ° regions of Y-axis angle counterclockwise;Described second annulus arm is provided with the second sector notch from 40 ° to 50 ° regions of Y-axis angle counterclockwise;Described second annulus arm is provided with the 3rd sector notch from 4 ° to 14 ° regions of X-axis angle counterclockwise;Described 3rd annulus arm is provided with four fan-shaped breach from 40 ° to 50 ° regions of Y-axis angle counterclockwise;Described 3rd annulus arm is provided with the 5th sector notch from 66 ° to 81 ° regions of X-axis angle clockwise;
Described first annulus arm is connected with the second annulus arm from Y-axis angle counterclockwise 5 ° to 51 ° of regions of angle clockwise the first fan-shaped linking arm;Described first annulus arm is connected with the second annulus arm from X-axis angle counterclockwise 30 ° to 40 ° of regions of angle clockwise the second fan-shaped linking arm;Described second annulus arm is connected with the 3rd annulus arm from Y-axis angle counterclockwise 114 ° to 122 ° of regions of angle counterclockwise the-the three fan-shaped linking arm;Described second annulus arm is connected with the 3rd annulus arm from Y-axis angle clockwise 46 ° to 54 ° of regions of angle clockwise four fan-shaped linking arm;
Described 3rd annulus arm upwardly extends the first L-shaped linking arm from the place of Y-axis angle clockwise 5 °, also include the parasitic oscillator arms of first in umbrella and the second parasitic oscillator arms, described first parasitic oscillator arms while with the second parasitic oscillator arms while being connected with the second linking arm, the another side of the described first parasitic oscillator arms and the another side of the second parasitic oscillator arms are connected with the 3rd linking arm, and the free end of described first linking arm is connected with the another side of the described first parasitic oscillator arms;
Described second PCB substrate is provided with the second microstrip antenna, described second microstrip antenna includes the first arc arm arranged around the second PCB substrate center of circle, also include around second the PCB substrate center of circle arrange the second arc arm, described first arc arm to central angle and the second arc arm to central angle add up to 360 °;The external diameter of described first arc arm and the external diameter of the first annulus arm are identical;The external diameter of described second arc arm and the external diameter of the second annulus arm are identical;
Described 3rd PCB substrate is provided with the 3rd microstrip antenna, described 3rd microstrip antenna includes the 3rd arc arm arranged around the 3rd PCB substrate center of circle, also include around the 3rd the PCB substrate center of circle arrange the 4th arc arm, described 3rd arc arm to central angle and the 4th arc arm to central angle add up to 360 °;The external diameter of described 3rd arc arm and the external diameter of the second arc arm are identical;The external diameter of described 4th arc arm and the external diameter of the first annulus arm are identical;
First PCB substrate, the second PCB substrate, the 3rd PCB substrate layering are superimposed;
Described separator includes orthohexagonal metallic plate, and described separator is provided with multiple hexagonal through hole.
Wherein, the described outer shroud of the first annulus arm and the radial width of internal ring are 0.8cm-1.2cm;The described outer shroud of the second annulus arm and the radial width of internal ring are 0.4cm-6cm;The described outer shroud of the 3rd annulus arm and the radial width of internal ring are 0.4cm-0.6cm.
Wherein, the outer shroud of described second annulus arm is identical with the radial width of internal ring with the outer shroud of described 3rd annulus arm with the radial width of internal ring.
Wherein, the described outer shroud of the first annulus arm and the radial width of internal ring are 1cm.
Wherein, the described outer shroud of the 3rd annulus arm and the radial width of internal ring are 0.5cm.
Wherein, described circuit arrangement is additionally provided with for the bluetooth module with extraneous Bluetooth communication, and described bluetooth module is connected with main controller signal;
Wherein, described circuit arrangement is additionally provided with the Big Dipper positioner for location, and described Big Dipper positioner is connected with main controller signal;
Wherein, it is provided with marine glue between described drain pan and watchcase;
The invention have the benefit that and arranged by rational structure, antenna is located at bottom one layer, increasing again isolating device between antenna and circuit arrangement, therefore signal of communication can preferably be attached with the external world.
Accompanying drawing explanation
Fig. 1 is the sectional view of watchcase of the present invention;
Fig. 2 is the schematic diagram of circuit arrangement of the present invention;
Fig. 3 is the top view of first PCB substrate of the present invention;
Fig. 4 is the top view of first microstrip antenna of the present invention;
Fig. 5 is the top view of second PCB substrate of the present invention;
Fig. 6 is the top view of the 3rd PCB substrate of the present invention;
Fig. 7 is the sectional view of the communication antenna of the present invention;
Fig. 8 is the top view of the separator of the present invention;
Fig. 9 is the frequency range emulation testing figure that communication antenna and the separator of the present invention does not conforms to timing;
Figure 10 is the communication antenna frequency range emulation testing figure with separator conjunction timing of the present invention;
Figure 11 is the directional diagram of the communication antenna of the present invention;
1-watchcase;11-touches display screen;12-circuit arranges layer;13-battery arranges layer;14-separator arranges layer;15-communication antenna arranges layer;16-drain pan;10-separator;101-through hole;
2-main controller;3-communicator;4-pulse wave detector;5-Big Dipper positioner;6-bluetooth module;
K1-the first PCB substrate;
K21-the first annulus arm;K22-the second annulus arm;K23-the 3rd annulus arm;
Q1-mono-sector notch;Q2-the second sector notch;Q3-the 3rd sector notch;The four fan-shaped breach of Q4-;Q5-the 5th sector notch;
The fan-shaped linking arm of L1-first;The fan-shaped linking arm of L2-second;The fan-shaped linking arm of L3--the 3rd;The four fan-shaped linking arm of L4-;
K11-arc notch;K12-micro-strip screen layer;K211-parasitism aperture;K31-the first linking arm;The parasitic oscillator arms of K32-first;The parasitic oscillator arms of K33-second;K34-the 3rd linking arm;K35-the second linking arm;
N1-the second PCB substrate;N11-the first arc arm;N12-the second arc arm;
M1-the 3rd PCB substrate;M11-the 3rd arc arm;M12-the 4th arc arm.
Detailed description of the invention
The present invention is further detailed explanation with specific embodiment below in conjunction with the accompanying drawings, is not that the practical range of the present invention is confined to this.
As shown in Figure 1 to 11, a kind of health monitoring intelligent watch being provided with marine glue described in the present embodiment, including watchcase 1, described watchcase 1 is respectively equipped with that screen arranges layer, circuit arranges layer 12, battery arranges layer 13, separator arranges layer 14, communication antenna arranges layer 15, drain pan 16 from top to bottom;Screen arranges layer and is provided with and touches display screen 11, circuit and arrange that layer 12 is provided with circuit arrangement, battery is provided with in arranging layer 13 for for circuit arrangement and the battery touching display screen 11 power supply;Described separator arranges layer 14 and is provided with separator 10;Described communication antenna arranges layer 15 and is provided with communication antenna;Described circuit arrangement includes pulse wave detector 4 that main controller 2 is connected and the communicator 3 for communication with the outside world with main controller 2 signal;Described touch display screen 11 is connected with main controller 2 signal, and described communicator 3 is connected with main controller 2 and communication antenna signal respectively.Being arranged by rational structure, antenna is located at bottom one layer, increase again isolating device between antenna and circuit arrangement, therefore signal of communication can preferably be attached with the external world.
Embodiment 1:
A kind of health monitoring intelligent watch being provided with marine glue described in the present embodiment, it is all the first PCB substrate K1 of circle, the second PCB substrate N1, the 3rd PCB substrate M1 that described communication antenna includes;First to the 3rd PCB substrate M1 size is identical, and the both sides of three are equipped with an arc notch K11, is equipped with micro-strip screen layer K12 at arc notch K11;Described first PCB substrate K1 is provided with the first microstrip antenna;Described first microstrip antenna includes the first annulus arm K21, the second annulus arm K22, the 3rd annulus arm K23;Described first annulus arm K21, the second annulus arm K22, the 3rd annulus arm K23 three are arranged concentrically;If being Y-axis through center of circle vertical direction, horizontal direction is X-axis, and described first annulus arm K21 is provided with sector notch Q1 from 122 ° to 132 ° regions of Y-axis angle counterclockwise;Described second annulus arm K22 is provided with the second sector notch Q2 from 40 ° to 50 ° regions of Y-axis angle counterclockwise;Described second annulus arm K22 is provided with the 3rd sector notch Q3 from 4 ° to 14 ° regions of X-axis angle counterclockwise;Described 3rd annulus arm K23 is provided with four fan-shaped breach Q4 from 40 ° to 50 ° regions of Y-axis angle counterclockwise;Described 3rd annulus arm K23 is provided with the 5th sector notch Q5 from 66 ° to 81 ° regions of X-axis angle clockwise;Described first annulus arm K21 is connected with the second annulus arm K22 from Y-axis angle counterclockwise 5 ° to 51 ° of regions of angle clockwise the first fan-shaped linking arm L1;Described first annulus arm K21 is connected with the second annulus arm K22 from X-axis angle counterclockwise 30 ° to 40 ° of regions of angle clockwise the second fan-shaped linking arm L2;Described second annulus arm K22 is connected with the 3rd annulus arm K23 from Y-axis angle counterclockwise 114 ° to 122 ° of regions of angle counterclockwise the-the three fan-shaped linking arm L3;Described second annulus arm K22 is connected with the 3rd annulus arm K23 from Y-axis angle clockwise 46 ° to 54 ° of regions of angle clockwise four fan-shaped linking arm L4;Described 3rd annulus arm K23 upwardly extends the first L-shaped linking arm K31 from the place of Y-axis angle clockwise 5 °, also include parasitic oscillator arms K32 of first in umbrella and the second parasitic oscillator arms K33, described first parasitic oscillator arms K32 while with the second parasitic oscillator arms K33 while being connected with the second linking arm K35, the another side of the described first parasitic oscillator arms K32 and the another side of the second parasitic oscillator arms K33 are connected with the 3rd linking arm K34, and the free end of described first linking arm K31 is connected with the another side of the described first parasitic oscillator arms K32;Described second PCB substrate N1 is provided with the second microstrip antenna, described second microstrip antenna includes the first arc arm N11 arranged around the second PCB substrate N1 center of circle, also include around second the PCB substrate N1 center of circle arrange the second arc arm N12, described first arc arm N11 to central angle and the second arc arm N12 to central angle add up to 360 °;The external diameter of described first arc arm N11 and the external diameter of the first annulus arm K21 are identical;The external diameter of described second arc arm N12 and the external diameter of the second annulus arm K22 are identical;Described 3rd PCB substrate M1 is provided with the 3rd microstrip antenna, described 3rd microstrip antenna includes the 3rd arc arm M11 arranged around the 3rd PCB substrate M1 center of circle, also include around the 3rd the PCB substrate M1 center of circle arrange the 4th arc arm M12, described 3rd arc arm M11 to central angle and the 4th arc arm M12 to central angle add up to 360 °;The external diameter of described 3rd arc arm M11 and the external diameter of the second arc arm N12 are identical;The external diameter of described 4th arc arm M12 and the external diameter of the first annulus arm K21 are identical;First PCB substrate K1, the second PCB substrate N1, the 3rd PCB substrate M1 layering are superimposed;Described separator 10 includes orthohexagonal metallic plate, and described separator 10 is provided with multiple hexagonal through hole 101.Described first annulus arm is communicated to connect with signal transmitting terminal by feed line, described first arc arm to the 4th arc arm ground connection respectively.
Designed by the microstrip circuit structure not less than 500 times, and by being not less than under 500 l-G simulation tests and parameter adjustment, finally determine above-mentioned antenna structure and matched separator 10 structure, this antenna possesses wider frequency range and preferable isolation and directivity and gain performance with separator 10 when coordinating, comply fully with use requirement, improve the communication performance of implantable medical device.
Especially when removing this structure separator 10 or placing common metal separator 10, such as Fig. 9, this beamwidth of antenna available frequency range is still up to 1.8GHz to 2.8GHz;Substantially meeting the requirement of communications band, its gain is the highest, and in frequency band, average gain is more than 9.0dBi;Meet actually used needs.The design of this shape separator 10 is also to be drawn by emulation and continuous EXPERIMENTAL DESIGN, wherein, screw stereo antenna is included when this separator 10 being placed other prior art antennas and coordinating, its matching is the highest, and isolation performance strengthens inconspicuous, when testing ordinary antennas, this separator 10 in cooperation, average gain increases 0.01-0.15dBi or does not increases, and isolation performance is constant, and frequency range is without changing.And the emulation before reality test with test is appreciated that, test when the communication antenna in this programme coordinates with the separator 10 of this programme, the bandwidth of the communication antenna of this programme, isolation, gain aspect all exceed Antenna Design when being not added with separator 10, the simulation value such as Figure 10 after wherein coordinating.This integrated antenna system bandwidth available frequency range has reached 1.5GHz to 3.0GHz;Its gain the most substantially increases, and in frequency band, average gain is more than 9.5dBi, compares rising 0.5dBi;If additionally isolation in its isolation figure frequency band, isolation performance preferably, such as Figure 10, can be seen that in S3 isolation is more than 25.5dB in frequency range.Its directivity, as described in Figure 11, it is omni-directional antenna.
Embodiment 2:
A kind of health monitoring intelligent watch being provided with marine glue described in the present embodiment, the described outer shroud of the first annulus arm K21 and the radial width of internal ring are 0.8cm-1.2cm;The described outer shroud of the second annulus arm K22 and the radial width of internal ring are 0.4cm-6cm;The described outer shroud of the 3rd annulus arm K23 and the radial width of internal ring are 0.4cm-0.6cm.Wherein, the outer shroud of described second annulus arm K22 is identical with the radial width of internal ring with the outer shroud of described 3rd annulus arm K23 with the radial width of internal ring.Wherein, the described outer shroud of the first annulus arm K21 and the radial width of internal ring are 1cm.Wherein, the described outer shroud of the 3rd annulus arm K23 and the radial width of internal ring are 0.5cm.
Above-mentioned parameter draws in constantly test and adjustment, and it is the most stable design parameter optimal with performance, and concrete actual test is tied HFSS15 computed in software and drawn, this total system beamwidth of antenna available frequency range is at 1.5GHz to 3.0GHz internal frequency modulation;In frequency band, average gain is more than 9.5dBi, and impedance reduces;In frequency range, isolation is more than 26dB;Find in reality is tested, the change of external environment, as temperature, magnetic field impact change within the specific limits, such as temperature amplitude of variation about 10 degree, use above-mentioned parameter and during special value, very by force, frequency range conservation degree is preferable for its stability.
A kind of health monitoring intelligent watch being provided with marine glue described in the present embodiment, described circuit arrangement is additionally provided with for the bluetooth module 6 with extraneous Bluetooth communication, and described bluetooth module 6 is connected with main controller 2 signal.For getting around third party's network, direct and target device carries out two-way communication.A kind of health monitoring intelligent watch being provided with marine glue described in the present embodiment, described circuit arrangement is additionally provided with the Big Dipper positioner 5 for location, and described Big Dipper positioner 5 is connected with main controller 2 signal;Using China's Big Dipper positioner 5, precision is high, and power saving is effective.Wherein, it is provided with marine glue between described drain pan 16 and watchcase 1;For waterproof.
A kind of health monitoring intelligent watch being provided with marine glue described in the present embodiment, the first annulus arm K21 is additionally provided with multiple around centrally disposed equally spaced parasitic aperture K211.
The above is only a preferred embodiment of the present invention, therefore all equivalence changes done according to structure, feature and the principle described in present patent application scope or modification, in the range of being included in the keep alive of present patent application.