CN107347705B - Biological sensing subassembly and smart pet device - Google Patents

Biological sensing subassembly and smart pet device Download PDF

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Publication number
CN107347705B
CN107347705B CN201710587546.5A CN201710587546A CN107347705B CN 107347705 B CN107347705 B CN 107347705B CN 201710587546 A CN201710587546 A CN 201710587546A CN 107347705 B CN107347705 B CN 107347705B
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China
Prior art keywords
module
light
hardware
shell
intelligent
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CN201710587546.5A
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CN107347705A (en
Inventor
肖喜良
罗钦祥
王忠山
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Shenzhen Waterward Information Co Ltd
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Shenzhen Water World Co Ltd
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Priority to CN201710587546.5A priority Critical patent/CN107347705B/en
Priority to PCT/CN2017/097732 priority patent/WO2019015000A1/en
Publication of CN107347705A publication Critical patent/CN107347705A/en
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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01KANIMAL HUSBANDRY; AVICULTURE; APICULTURE; PISCICULTURE; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
    • A01K29/00Other apparatus for animal husbandry
    • A01K29/005Monitoring or measuring activity, e.g. detecting heat or mating

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  • Life Sciences & Earth Sciences (AREA)
  • Environmental Sciences (AREA)
  • Biophysics (AREA)
  • Animal Husbandry (AREA)
  • Biodiversity & Conservation Biology (AREA)
  • Measurement Of The Respiration, Hearing Ability, Form, And Blood Characteristics Of Living Organisms (AREA)
  • Housing For Livestock And Birds (AREA)
  • Measuring And Recording Apparatus For Diagnosis (AREA)

Abstract

The invention discloses a biological sensing component and an intelligent pet device, wherein the biological sensing component comprises a biological sensing module, a hardware module and a transmission thimble; the biological sensing module is used for detecting biological information of a living body; the hardware module is connected with the biological sensing module to process biological information; the transmission thimble is inserted in the hardware module to send the processed biological information to the server through the intelligent module. According to the bio-sensing component and the intelligent pet device, the bio-sensing component can detect biological information such as heart rate of a pet and send the processed biological information to the intelligent module, so that the physical condition of the pet can be known, the bio-sensing component can be independent to serve as an alternative accessory, and the cost of the intelligent pet device can be reduced conveniently when the biological information is not needed by the intelligent pet device.

Description

Biological sensing subassembly and smart pet device
Technical Field
The invention relates to the field of smart pet devices, in particular to a biosensing assembly and a smart pet device.
Background
The existing intelligent pet device only has the positioning and light-emitting functions, is simple in function, cannot detect the current body condition of a pet, and causes a pet owner to detect the current body condition of the pet by using a biological detection instrument all the time.
Disclosure of Invention
The invention mainly aims to provide a biosensor component and a smart pet device, wherein the function of the biosensor component can be independent as an alternative.
The invention provides a biological sensing assembly, which comprises a biological sensing module, a hardware module and a transmission thimble; the biological sensing module is used for detecting biological information of a living body; the hardware module is connected with the biological sensing module to process biological information; the transmission thimble is inserted in the hardware module to send the processed biological information to the server through the intelligent module.
Further, the biological sensing module comprises a soft rubber shell and a piezoelectric film; the piezoelectric film is arranged in the soft rubber shell to detect biological information of an organism.
Further, the soft rubber shell comprises a soft rubber upper shell and a soft rubber lower shell; the soft rubber lower shell and the soft rubber upper shell are buckled and sealed to wrap the piezoelectric film.
Furthermore, the biological sensing module is in a strip shape and is provided with a fixing hole for fixing the biological sensing module on the hanging buckle.
Furthermore, the hardware module comprises a hardware lower shell, a hardware upper shell, a sealing ring and a sensor main board; the hardware upper shell is connected with the hardware lower shell; the sealing ring is arranged on the hardware lower shell; the sensor mainboard is arranged in the sealing ring and is connected with the piezoelectric film.
Furthermore, the hardware lower shell is provided with a fixing groove and a ring groove, the sensor mainboard is arranged in the fixing groove, and the sealing ring is arranged in the ring groove.
Furthermore, the hardware lower shell comprises a body, a sensor buckling position and a fixed connection position; the sensor main board and the sealing ring are arranged on the body; the sensor buckling position is arranged on one side of the body to be buckled with the base; the fixed connecting positions protrude out of two corners of the body and are connected to the base through bolts; the hardware epitheca is equipped with the bellying, and sensor mainboard is located to transmission thimble one end, and the other end protrusion is in the bellying.
The invention further provides an intelligent pet device which comprises the biological sensing assembly and the intelligent module, wherein the intelligent module comprises a receiving thimble abutting against the transmission thimble.
Further, still include the base of can dismantling the connection with intelligent object, wherein, the base is equipped with connecting grooves, with hardware module phase-match.
Furthermore, a thimble through hole is formed in the connecting groove, and the end of the transmission thimble is arranged in the thimble through hole to abut against the receiving thimble.
According to the biological sensing component and the intelligent pet device, the biological sensing component can detect biological information such as heart rate of a pet and send the processed biological information to the intelligent module, so that the physical condition of the pet can be known, the biological sensing component can be arranged separately from the intelligent module to be used as an alternative accessory of the intelligent pet device, and the use is convenient and flexible.
Drawings
FIG. 1a is a schematic diagram of an embodiment of an intelligent module;
FIG. 1b is a schematic structural view of an embodiment of the support frame of FIG. 1 a;
FIG. 1c is a schematic diagram of the transmission of light from the smart module;
FIG. 1d is a schematic view of the connection between the light source and the light guide plate in the smart module;
FIG. 1e is a partial schematic view of a cross-sectional view A-A of FIG. 1 d;
FIG. 1f is a schematic cross-sectional view of an embodiment of a smart pet device;
FIG. 2a is a schematic diagram of an exploded configuration of an embodiment of a wearable traction assembly;
FIG. 2b is a schematic diagram of an embodiment of a cord lock bracket in a wearable traction assembly;
FIG. 2c is a schematic view of the attachment of the hitch bracket to the upper shell of the wearable traction assembly;
FIG. 2d is a schematic diagram of an embodiment of a pet smart device;
FIG. 3a is a partial cross-sectional view of one embodiment of a resilient latch assembly;
FIG. 3b is an exploded view of FIG. 3 a;
FIG. 3c is a schematic diagram of an embodiment of the eject button of FIG. 3 a;
FIG. 3d is a schematic structural diagram of an embodiment of the elastic seat in FIG. 3 a;
FIG. 3e is a schematic view of an embodiment of the support sheet shown in FIG. 3 a;
FIG. 3f is a schematic diagram of the structure of one embodiment of the ejection mechanism of FIG. 3 a;
FIG. 4a is a schematic diagram of an embodiment of a waterproof key assembly;
FIG. 4b is an enlarged view of the portion circled A in FIG. 4 a;
FIG. 4c is a schematic diagram of an explosive structure of an embodiment of the intelligent module;
FIG. 4d is a schematic cross-sectional view of FIG. 4 c;
FIG. 5a is a schematic structural view of one embodiment of a biosensing assembly;
FIG. 5b is a schematic diagram of the exploded structure of FIG. 5 a;
fig. 5c is a schematic diagram of an embodiment of a smart pet device that includes a bio-sensing component.
The implementation, functional features and advantages of the objects of the present invention will be further explained with reference to the accompanying drawings.
Detailed Description
It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
Referring to fig. 1a to 1e, the smart module 4 is worn on a pet, and includes a PCB platelet 44, a light source 43, and a light guide plate 45; the light source 43 is arranged on the PCB small plate 44; the light guide plate 45 has light exit holes 4234, the light sources 43 are disposed in the light exit holes 4234 for generating the emitting light, and the light guide plate 45 receives the emitting light 402 and homogenizes the light to form the emitting light 4095 for uniform emission.
Can shine in dim environment with the prominent intelligent object 4, conveniently find the pet.
It should be noted that, in this embodiment, the light source 43 may be a light-measuring three-color lamp, and may emit lights of multiple colors, so that the intelligent module 4 may emit lights of different colors.
The intelligent module 4 further comprises a support bracket 403; the supporting frame 403 has a receiving hole 4031, the PCB platelet 44 is disposed in the receiving hole 4031, and the light guide plate 45 covers the receiving hole 4031.
The intelligent module 4 further comprises a PCB main board 401 and a battery 404; the small PCB 44, the battery 404, and the PCB main board 401 are sequentially stacked in the receiving hole 4031.
The intelligent module 4 further comprises a flexible circuit board 410; one end of the flexible circuit board 410 is connected to the PCB platelet 44, and the other end of the flexible circuit board is connected to the PCB main board 401 so as to wrap a side wall of the support frame 403 between two ends of the flexible circuit board 410, so that the PCB platelet 44, the battery 404, the PCB main board 401 and the support frame 403 form a module whole, which is convenient for installation, and further the PCB main board 401 can control the PCB platelet 44, and further the light source 43 is controlled to emit light.
The intelligent module 4 further includes an upper module case 411 and a lower module case 412; the module upper case 411 transmits the exit light of the light guide plate 45; the module lower case 412 is fastened to the module upper case 411, and the light guide plate 45 and the support bracket 403 are fixed to the module lower case 412 by a connector. The module upper case 411 and the module lower case 412 constitute the smart module case 41, and can protect the components mounted in the smart module case 41, such as the PCB platelet 44, the battery 404, and the PCB motherboard 401.
In another embodiment, the module top case 411 has a transparent ring area 4113 and a non-transparent area, the non-transparent area is formed in the transparent ring area 4113, the light guide plate 45 has an outer aperture 451, an inner light-exiting ring 452 and a light-homogenizing part 453, the light-homogenizing part 453 and the inner light-exiting ring 452 are disposed in the outer aperture 451, the light-exiting hole 4234 is disposed in the light-homogenizing part 453, the light-homogenizing part 453 is used for homogenizing the emitted light 402 of the light source 43, and the outer aperture 451 and the inner light-exiting ring 452 reflect the homogenized light 4096 to form an exiting light 4095, which is then emitted to the transparent ring area 4113 and the switch button 421.
Referring to fig. 1f, the intelligent module 4 further comprises a body temperature sensor 46; one end of the body temperature sensor 46 is connected to the PCB main board 401, and the other end is inserted into the module lower case 412. When in use, the body temperature sensor 46 is attached to the body of the pet, and can detect the body temperature of the pet.
The intelligent module 4 further comprises a GPS module 49 and a conductive piece; the support frame 403 has a mounting groove 4032 at one end for mounting the GPS module 49, the mounting groove 4032 has a through hole 4033, one end of the conductive member is connected to the GPS module 49, and the other end of the conductive member passes through the through hole 4033 and is connected to the PCB main board 401. The GPS module 49 is capable of locating the pet's location coordinates.
The intelligent module 4 also comprises a speaker 48; the speaker 48 is inserted into the light guide plate 45 and connected to the PCB panel 44. The speaker 48 can emit the sound to be emitted, so as to achieve the purpose of controlling the pet, etc.
The smart module 4 further includes a microphone 405, and the microphone 405 is also inserted into the light guide plate 45 and connected to the PCB panel 44.
The intelligent module 4 also comprises a temperature sensor 47; one end of the temperature sensor 47 is inserted into the light guide plate 45, and the other end is inserted into the module upper case 411. The temperature sensor 47 can detect the temperature of the environment where the pet is located, and the environment condition where the pet is located is conveniently judged.
Referring to fig. 1f, the present invention further provides a smart pet apparatus, which includes a base 1 and the smart module 4, wherein the base 1 has a mounting hole 14, and the smart module 4 is mounted in the mounting hole 14.
The base 1 includes an elastic latch 15 therein, and the elastic latch 15 can latch and fix the smart module 4 on the base 1.
The smart pet device may also include a SIM card and a card cover 406, where the card cover 406 fits the SIM card cover 406 onto the PCB motherboard 401.
The base 1 further comprises a rope buckle support 11 for connecting a rope, so that the intelligent pet device is convenient to fix on a pet body and pull the pet.
Intelligent module 4 and smart pet device can produce the emergent light and evenly jet out, can give out light in dim environment with prominent intelligent module 4 and smart pet device, conveniently look for intelligent module 4 and smart pet device, and intelligent module 4 and smart pet device still have functions such as measuring body temperature, GPS location, loudspeaker, measuring ambient temperature, make things convenient for the pet owner to further know pet health and activity situation.
Referring to fig. 2 a-2 d together, in another embodiment the smart pet device further comprises a wearing traction assembly, which comprises a housing 10 and a rope buckle support 11; the rope buckle bracket 11 comprises a bracket main body 111 and a connecting foot; the connecting pin is fixedly connected with the bracket main body 111; the bracket body 111 is disposed in the housing 10, and the connecting leg 112 extends out of the housing 10 for hooking or fastening the rope 2 (described below).
2 direct action in rope connect the foot, and then act on support main part 111, and rope fastening support 11 bears direct impact, can not direct action in casing 10, and rope fastening support 11 can adopt integrated into one piece's steel frame construction, and shock-resistant ability is stronger.
The connecting pins comprise an upper connecting pin 113 and a lower connecting pin 112; the upper connection leg 113 extends downward from the bracket main body 111; the lower connection leg 112 extends obliquely upward from the stand main body 111.
In this embodiment, the angle of inclination of the upper connecting leg 113 is about 65 degrees. The free end of the upper connecting leg 113 is close to the edge of the shell 10, so that the shell 10 is prevented from being excessively extruded when a pet is held, and the use is convenient.
It should be mentioned that the upper connecting foot 113 is used for connecting the traction rope 3 in this embodiment, and the traction rope 3 is detachably connected with the upper connecting foot 113, so that the use is convenient.
The number of the lower connecting pins 112 is 4, and the lower connecting pins 112 are distributed at two ends of the bracket main body 111 at intervals, so that the two lower connecting pins 112 at one end of the bracket main body 111 are in one group, in this embodiment, the inclination angles of the two groups of lower connecting pins 112 are about 50 degrees and 45 degrees, respectively, and the two lower connecting pins 112 in the same group are axisymmetric. The lower connecting pin 112 can be prevented from being excessively paid, the probability that the lower connecting pin 112 scratches other objects is reduced, and the use is convenient.
It should be mentioned that, lower connecting pin 112 is in this embodiment for connecting rope 2, and rope 2 will be dressed and pull the subassembly and bind on the pet, makes things convenient for the pet to carry the pet smart device with oneself.
The holder main body 111 has a holder hole 114, and the upper connection leg 113 is connected to a sidewall of the holder hole 114. Some components in the housing 10 may be disposed in the bracket holes 114, so that the bracket main body 111 reduces installation restrictions on the components in the housing 10.
Referring to fig. 2b, the stent main body 111 includes a first stent 1126, a second stent 1127, a third stent 1128 and a fourth stent 1129 which are sequentially connected in a surrounding manner and form a stent hole 114, wherein the second stent 1127 and the fourth stent 1129 are arc-shaped; the bracket hole 114 penetrates the bracket main body 111 to mount the smart module 4.
The lower connecting pin 112 comprises a first sub-connecting pin 1122, a second sub-connecting pin 1123, a third sub-connecting pin 1124 and a fourth sub-connecting pin 1121, the first sub-connecting pin 1122 is connected to the connection between the first branch 1126 and the second branch 1127, the second sub-connecting pin 1123 is connected to the connection between the first branch 1126 and the fourth branch 1129, the third sub-connecting pin 1124 is connected to the connection between the third branch 1128 and the second branch 1127, the fourth sub-connecting pin 1121 is connected to the connection between the third branch 1128 and the fourth branch 1129, the first sub-connecting pin 1122, the second sub-connecting pin 1123, the third sub-connecting pin 1124 and the fourth sub-connecting pin 1121 drive the two branches 1121 when being stressed, for example, when the first sub-connecting leg 1122 is stressed, the first leg 1126 and the second leg 1127 connected thereto are deformed by the air, and the acting force is dispersed, so that the first leg 1126 and the second leg 1127 are not easily deformed, and the deformation amplitude is small.
The housing 10 includes an upper case 12 and a lower case 13; the holder main body 111 is provided between the upper case 12 and the lower case 13. The bracket main body 111 is conveniently coupled with the housing 10.
The upper case 12 has a case through hole 123, and the upper connection leg 113 is inserted through the case through hole 123.
The upper case 12 further has a mounting groove 122, and a case through-hole 123 is formed in the mounting groove 122; the wearing traction assembly further comprises an elastic member 15 matched with the mounting groove 122, the elastic member 15 is provided with an elastic through hole 151, and the upper connecting leg 113 sequentially passes through the shell through hole 123 and the elastic through hole 151 to extend out of the upper shell 12. The elastic member 15 can fix the upper connecting leg 113, and prevent the upper connecting leg 113 from being scratched and damaged on the housing 10 when being stressed.
The lower connection pins 112 are exposed from the lower case 13; the upper case 12 has a covering portion 121, and the covering portion 121 covers the lower connection pins 112.
The connection leg 112 has a connection hole 1125. The rope 2 may be connected to the connection leg 112 through the connection hole 1125.
Referring to fig. 2d, in the pet smart device of the present invention, the holder hole 114 is communicated with the mounting hole 14, and the smart module 4 is also disposed in the holder hole 114.
According to the invention, the rope 2 part is connected with the rope buckle bracket 11 in the wearable traction assembly, the rope 2 part of the intelligent necklace directly acts on the rope buckle bracket 11, the shell 10 is not directly stressed, the bearing capacity of the pet intelligent device is greatly increased, the pet intelligent device can bear large impact, and the use is more convenient.
Referring to fig. 3a-3f, the smart pet device of the present invention further comprises a flexible latch assembly, wherein the flexible latch assembly comprises a base 1 and an intelligent module 4; the intelligent module 4 is detachably connected with the base 1, wherein the intelligent module 4 is provided with a connecting blind hole 44; the base 1 comprises a resilient catch 15, the resilient catch 15 being resiliently inserted into the blind connecting hole 44 when the smart module 4 is mounted to the base 1.
When the elastic lock catch 15 is separated from the blind hole 44, the intelligent module 4 can be easily separated from the base 1; because the elastic lock catch 15 can be easily installed on or separated from the base 1, the intelligent module 4 can be conveniently and independently taken out to be charged or the battery can be conveniently replaced, and the use is more convenient.
The elastic lock catch 15 comprises an elastic element 152, an elastic seat 153 and a lock catch portion 1531; the elastic seat 153 is connected with the elastic element 152; the locking portion 1531 is disposed on one side of the elastic seat 153 for being inserted into the blind hole 44.
It should be noted that, in the present embodiment, the elastic element 152 is a spring, and when the intelligent module 4 is mounted to the base 1, the spring pushes the elastic seat 153 to plug the locking portion 1531 into the blind hole 44.
The resilient latch 15 further includes an eject button 151; the ejection button 151 is provided with an extrusion pin 1511 inserted with the elastic seat 153, and the extrusion pin 1511 is provided with an extrusion inclined surface 15111; wherein, when the eject button 151 is pressed, the pressing slope 15111 passes through the resilient seat 153 to move the resilient seat 153 and compress the resilient member 152 so as to disengage the locking portion 1531 from the blind hole 44.
Referring to fig. 3b and 3d, the elastomeric mount 153 further includes a squeeze hole 1532 and a connection post 1534; the squeezing hole 1532 and the squeezing pin 1511 are movably inserted into the squeezing hole 1532; one end of the connecting post 1534 is sleeved with the elastic element 152; the pressing hole 1532 has a pressing inclined surface 1533 on a sidewall thereof, wherein when the eject button 151 is pressed, the pressing inclined surface 15111 presses the pressing inclined surface 1533 to move the elastic seat 153 and compress the elastic element 152.
The pressing inclined surface 15111 is matched with the abutting inclined surface 1533, and when the eject button 151 is pressed downwards, the elastic seat 153 is pressed to press the spring in the spring direction, so that the locking part 1531 is separated from the blind hole 44; when the eject button 151 is released, the elastic seat 153 slides under the pressure of the spring, and pushes against the eject button 151 to eject the eject button 151 during the movement of the elastic seat 153.
Referring to fig. 3e, the resilient latch assembly further includes a support plate 154; the support plate 154 supports the elastic holder 153. The elastic seat 153 slides on the support plate 154.
Referring to fig. 3f, the resilient latch assembly further includes an ejection mechanism 155; the ejection mechanism 155 includes an elastic tongue 1551, and the elastic tongue 1551 abuts against the bottom surface of the smart module 4 to enable the smart module 4 to be ejected elastically when the smart module is not stressed. When the intelligent module 4 is installed on the base 1, the bottom surface of the intelligent module 4 extrudes the spring tongue 1551 to deform the spring tongue 1551, and when the intelligent module 4 is not stressed, the restoring force of the spring tongue 1551 enables the intelligent module 4 to elastically pop up.
The ejection mechanism 155 further comprises a spring plate fixing seat 1552; one end of the spring tongue 1551 is bent and connected to the spring plate fixing seat 1552, and the other end of the spring tongue 1551 extends towards the bottom surface of the intelligent module 4. The eject mechanism 155 is an integral member in this embodiment.
The elastic locking assembly further comprises a rope buckle support 11 arranged between the elastic sheet fixing seat 1552 and the support sheet 154, and the elastic sheet fixing seat 1552 and the support sheet 154 are fixed through fixing parts (such as screws); the cord lock bracket 11 defines a latch tongue 1551 to prevent the latch tongue 1551 from going too far up.
The support plate 154 includes a relief hole 1541 and a mating groove 1542; when the pop-up button 151 is popped up or pressed down, the extrusion foot 1511 passes through the abdicating hole 1541; the matching groove 1542 matches with the elastic element 152, so that the elastic element 152 is more convenient to install and work; the two receding holes 1541 are arranged on two sides of the matching groove 1542, and the receding holes 1541 correspond to each other, so that the extrusion pins 1511 of the pop-up button 151 are matched.
The base 1 is provided with a mounting hole 14 for mounting the intelligent module 4; the base 1 includes an upper case 12 and a lower case 13; the lower shell 13 is fastened to the upper shell 12, and the elastic latch 15 is disposed between the lower shell 13 and the upper shell 12.
The upper shell 12 is provided with a locking hole 124 and an ejecting hole 125; the locking hole 124 is communicated with the mounting hole 14, and one end of the locking portion 1531 is arranged in the locking hole 124 and movably inserted in the connecting blind hole 44; the ejection hole 125 communicates with the mounting hole 14. The spring tongue 1551 comprises a fixed end and a free end, the fixed end is connected with the spring sheet fixing seat 1552 in a bending mode, the movable end is arranged at an interval with the spring sheet fixing seat 1552, and the movable end is arranged in the spring hole 125 and abuts against the bottom surface of the intelligent module 4 to spring the intelligent module 4 in the direction away from the mounting hole 14.
The base 1 and the intelligent module 4 of the intelligent pet device are designed in a split mode, the intelligent module 4 is fixed through the elastic lock catch 15 of the base 1, the intelligent module 4 can be separated from the base 1 through the elastic lock catch 15, the intelligent module 4 can be conveniently and independently taken out to be charged or the battery can be conveniently replaced, and the intelligent pet device is more convenient to use.
Referring to fig. 4a and 4b, in another embodiment the smart pet device further comprises a waterproof key assembly 42, the waterproof key assembly 42 comprises an elastic switch 424, a waterproof pressing plate 423, a waterproof sealing gasket 422 and a switch key 421; the waterproof pressing plate 423 has a switch through hole 4231 matched with the elastic switch 424; the waterproof sealing gasket 422 is arranged on the waterproof pressing plate 423 to cover the switch through hole 4231; the switch button 421 and the waterproof pressing plate 423 are respectively arranged on two sides of the waterproof sealing gasket 422; when the switch button 421 is pressed, the waterproof sealing gasket 422 is driven to abut against the elastic switch 424.
In this embodiment, the light guide plate 45 and the waterproof pressing plate 423 and the waterproof pressing plate are one, so as to guide light and press the waterproof sealing gasket 422.
Waterproof seal gasket 422 prevents that water from flowing into elastic switch 424 place end by switch button 421, still plays waterproof effect when possessing the button function, protects devices such as the intelligent module that sets up this waterproof button subassembly 42.
The elastic switch 424 is a dome switch or a tact switch.
The switch button 421 includes a pressing column 4211; the pressing column 4211 abuts against the waterproof sealing gasket 422; the switch side wall is spaced apart from the pressing column 4211 and forms a relief groove 4212.
The waterproof sealing gasket 422 comprises an interlocking column 4224 and an arch-shaped bulge 4222; the linkage column 4224 is arranged between the elastic switch 424 and the pressing column 4211; the dome-shaped protrusion 4222 is disposed around the link column 4224 and is matched with the relief groove 4212, wherein the dome-shaped protrusion 4222 has a stopper groove 4223.
The waterproof pressure plate 423 includes a resisting protrusion 4232; the abutting protrusion 4232 is matched with the limit groove 4223, wherein a switch through hole 4231 is formed in the abutting protrusion 4232.
When the switch button 421 is pressed, the pressing column 4211 presses the abutting linkage column 4224, the connecting column abuts against the pressing elastic switch 424, when the switch button 421 is released to be pressed, the arched protrusion 4222 of the waterproof sealing gasket 422 drives the interlocking column 4224 to rebound, so as to drive the switch button 421 to return to the initial position, and when the switch button 421 is pressed, the abutting protrusion 4232 abuts against the arched protrusion 4222, so that the arched protrusion 4222 is prevented from being deformed too much and cannot rebound.
The waterproof sealing gasket 422 is light guide silica gel. The waterproof pressing plate 423 is a light guide plate. The waterproof pressing plate 423 is provided with a light outlet 4234, the light source 43 is inserted into the light outlet 4234, the waterproof pressing plate 423 receives the emergent light of the light source 43 and forms uniform light and large-area emergent light, the abutting protrusion 4232 is provided with a reflection inclined plane, the reflection inclined plane receives the uniform light along the waterproof pressing plate 423 to form reflection light, and the reflection light sequentially penetrates through the abutting protrusion 4232, the waterproof sealing gasket 422 and the switch button 421. The switch button 421 has a non-transparent area formed in the transparent aperture and a transparent aperture for transmitting the reflected light.
Referring to fig. 4 c-4 d, in another embodiment, the smart module 4 includes a smart module case 41 and the waterproof key assembly 42, and the waterproof gasket 422 is hermetically connected to the smart module case 41. Waterproof seal gasket 422 prevents that water from getting into intelligent module 4 by seeing through it and junction, when playing the button function, prevents that water from getting into intelligent module 4 by waterproof button subassembly 42, protection intelligent module 4.
The smart module case 41 includes a module upper case 411 and a module lower case 412.
The module upper housing 411 has a sealing groove 4112, and the waterproof sealing gasket 422 has a sealing boss 4221 matching with the sealing groove 4112. The waterproof pressure plate 423 is provided with a sealing abutting bulge 4233 for supporting the sealing bulge 4221, and the sealing abutting bulge 4233 abuts against the position of the sealing bulge 4221, so that the sealing bulge 4221 is inserted into the sealing groove 4112, and the sealing effect is better.
The module upper shell 411 is provided with a switch key hole 4111, and the switch key 421 is provided with a first protrusion 4213; the switch button 421 is movably disposed in the switch button hole 4111, and the first protrusion 4213 is fastened to the inner wall of the module upper housing 411.
When the switch button 421 is not pressed, the first protrusion 4213 abuts against the inner wall of the module upper case 411, so that a waterproof effect is primarily achieved, and a large amount of water can be prevented from flowing into the module upper case 411 from the switch button 421.
The waterproof button assembly 42 of the present invention realizes the button function, and simultaneously prevents water from entering the intelligent module 4 and the pet intelligent device from the waterproof button assembly 42, thereby protecting the intelligent module 4 and the pet intelligent device provided with the waterproof button assembly 42.
Referring to fig. 5 a-5 b, in another embodiment the smart pet apparatus further comprises a bio-sensing component 5, the bio-sensing component 5 comprises a bio-sensing module 52, a hardware module 51 and a transmission thimble 513; the biological sensing module 52 is used for detecting biological information of a biological body; the hardware module 51 is connected with the biological sensing module 52 to process biological information; the transmission thimble 513 is inserted into the hardware module 51 and is movably connected to the intelligent module 4, so as to transmit the processed biological information to the server through the intelligent module 4.
The biological sensing module 52 is connected with the hardware module 51, and the connection part is sealed, so that water can be prevented from entering.
Biological information such as the rhythm of the heart of the pet of 5 detectable biosensing subassemblies to the bioinformation that will handle is sent intelligent object 4, and then knows the health of pet, and biosensing subassemblies 5 can also set up with intelligent object components of a whole that can function independently to as the spare accessory of intelligent pet device, convenient to use, flexibility.
The bio-sensor module 52 includes a soft shell and a piezoelectric film 524; the piezoelectric film 524 is disposed in the soft housing to detect biological information of the living body. Preferably, the piezoelectric film 524 is used to detect biological information such as heart rate of the pet. The piezoelectric film 524 has a first through hole 5241.
The soft rubber shell comprises an upper soft rubber shell 522 and a lower soft rubber shell 523; the soft rubber lower shell 523 and the soft rubber upper shell 522 are buckled and sealed to wrap the piezoelectric film 524. The soft rubber lower casing 523 is provided with an installation column 5231 penetrating through the first through hole 5241, and the biosensing module 52 is in a strip shape and is provided with a fixing hole 521 for fixing on the hanging buckle. The strip-shaped biological sensing module 52 can be contacted with the pet in a large area, so that the biological information such as the heart rate of the pet can be acquired more stably; the hanging buckle is arranged on the rope 2, so that the biological sensing module 52 is tightly attached to the pet. In other embodiments, the fixing hole 521 may not be provided, and specifically, the bio-sensor module 52 is embedded in the rope 2, and the rope 2 is used to make the bio-sensor module 52 close to the pet. Of course, the bio-sensing module 52 may be fixed by inserting an end of the bio-sensing module 52 into a hook on the rope 2, and pressing the end of the bio-sensing module 52 onto the rope 2 through the hook.
The hardware module 51 comprises a hardware lower shell 515, a hardware upper shell 514, a sealing ring 517 and a sensor main board 516; the hardware upper shell 514 is connected with the hardware lower shell 515; the sealing ring 517 is arranged on the hardware lower shell 515; the sensor board 516 is disposed in the sealing ring 517 and connected to the piezoelectric film 524. The hardware module 51 is sealed to prevent water from entering, so that the biosensing assembly 5 can be conveniently arranged outside. The hardware lower shell 515 and the soft rubber lower shell 523 are integrally formed and made of flexible materials. The hardware lower case 515 is formed with a fixing groove 5152 and a ring groove 5153, the sensor main plate 516 is disposed in the fixing groove 5152, and the sealing ring 517 is disposed in the ring groove 5153.
The hardware lower shell 515 comprises a body 5151, a sensor buckling position 511 and a fixed connection position 512; the sensor main board 516 and the sealing ring 517 are arranged on the body 5151; the sensor fastening position 511 is arranged on one side of the body 5151 to be fastened with the base; the fixed connection positions 512 protrude out of two corners of the body 5151 to be connected to the base 1 through bolts; the hardware upper shell 514 is provided with a protruding portion 5141, one end of the transmission thimble 513 is disposed on the sensor main board 516, and the other end protrudes from the protruding portion 5141. The hardware lower shell 515 is connected to the base 1 through the sensor fastening position 511 and the fixed connection position 512; in this embodiment, the sensor fastening portion 511 is a protrusion, and the base 1 is provided with a slot 15 matching with the sensor fastening portion 511; when the lower hardware shell 515 is connected to the base 1, the sensor fastening portion 511 is inserted into the fastening slot 15 to fix one side of the lower hardware shell 515 to the base 1, and is fastened to the base 1 at the fastening portion 512 by bolts to fix the other side of the lower hardware shell 515 to the base 1.
Referring also to fig. 5c, the smart module 4 of bio-sensing device includes a receiving pin 405 abutting against a transmitting pin 513. The processed biological information is transmitted to the intelligent module 4 through the transmission thimble 513 and the receiving thimble 405, and is transmitted to the server through the intelligent module 4.
The lower case 13 of the base 1 is provided with a coupling groove 16 to be matched with the hardware module 51. The hardware module 51 is detachably connected to the base 1, and is aligned with the intelligent module 4 by positioning the base 1, so that the transmission thimble 513 is aligned and abutted against the receiving thimble 405.
The connection groove 16 has a pin through hole 17, and an end of the transmission pin 513 is disposed on the pin through hole 17 to abut against the receiving pin 405.
Biological sensing subassembly 5 detectable pet's biological information such as the rhythm of the heart to the biological information who will handle sends intelligent object 4, and then knows the health of pet, biological sensing subassembly 5 can also set up with intelligent object 4 components of a whole that can function independently, with the spare accessory as intelligent pet device, convenient to use is nimble.
The above description is only a preferred embodiment of the present invention, and not intended to limit the scope of the present invention, and all modifications of equivalent structures and equivalent processes, which are made by using the contents of the present specification and the accompanying drawings, or directly or indirectly applied to other related technical fields, are included in the scope of the present invention.

Claims (10)

1. A bio-sensor assembly, comprising:
the biological sensing module is used for detecting biological information of a biological body;
the hardware module is connected with the biological sensing module to process the biological information;
the transmission thimble is inserted in the hardware module to send the processed biological information to a server through an intelligent module, wherein the intelligent module comprises a PCB (printed circuit board) small plate, a light source and a light guide plate, the light source is arranged on the PCB small plate, the light guide plate is provided with a light outlet, and the light source is arranged on the light outlet and used for generating emitting light; the light guide plate receives the emitted light and homogenizes the light to form emergent light for uniform emission, the light guide plate is provided with an outgoing aperture, an internal outgoing aperture and a homogenizing part, the homogenizing part and the internal outgoing aperture are arranged in the outgoing aperture, the light outgoing hole is arranged in the homogenizing part, the homogenizing part is used for homogenizing the emitted light of the light source, and the outgoing aperture and the internal outgoing aperture reflect the homogenized light to form emergent light which is then emitted to the light transmitting ring area and the switch key respectively.
2. The biosensing assembly of claim 1, wherein said biosensing module comprises:
a soft rubber shell;
and the piezoelectric film is arranged in the soft rubber shell to detect biological information of an organism.
3. The biosensor assembly of claim 2, wherein the soft housing comprises:
coating soft rubber on the shell;
and the soft rubber lower shell is buckled with the soft rubber upper shell to seal and wrap the piezoelectric film.
4. The assembly of claim 1, wherein the biosensor module is in the form of a strip, the biosensor module having a fastening hole for fastening to a buckle.
5. The bio-sensor assembly according to claim 2, wherein the hardware module comprises:
a hardware lower shell;
the hardware upper shell is connected with the hardware lower shell;
the sealing ring is arranged on the hardware lower shell;
and the sensor mainboard is arranged in the sealing ring and connected with the piezoelectric film.
6. The assembly of claim 5, wherein the lower hardware shell defines a retaining groove and a ring groove, the main sensor board is disposed in the retaining groove, and the sealing ring is disposed in the ring groove.
7. The bio-sensor assembly according to claim 5, wherein the hardware lower housing comprises:
the sensor mainboard and the sealing ring are arranged on the body;
the sensor buckling position is arranged on one side of the body and buckled with the base;
the fixed connecting positions protrude out of two corners of the body and are connected to the base through bolts;
the hardware upper shell is provided with a protruding portion, one end of the transmission thimble is arranged on the sensor main board, and the other end of the transmission thimble protrudes out of the protruding portion.
8. A smart pet device comprising the biosensing assembly of any of claims 1-7 and a smart module, said smart module comprising a receiving thimble abutting said transmitting thimble.
9. The device of claim 8, further comprising a base detachably connected to the smart module, wherein the base is provided with a connection groove to match the hardware module.
10. The device of claim 9, wherein said attachment recess has a thimble passage hole therein, and wherein an end of said transport thimble is disposed in said thimble passage hole to abut against said receiving thimble.
CN201710587546.5A 2017-07-18 2017-07-18 Biological sensing subassembly and smart pet device Active CN107347705B (en)

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