CN206516071U - A kind of large-scale synthesis parking yard supervising system - Google Patents
A kind of large-scale synthesis parking yard supervising system Download PDFInfo
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- CN206516071U CN206516071U CN201720160575.9U CN201720160575U CN206516071U CN 206516071 U CN206516071 U CN 206516071U CN 201720160575 U CN201720160575 U CN 201720160575U CN 206516071 U CN206516071 U CN 206516071U
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- 230000015572 biosynthetic process Effects 0.000 title claims abstract description 18
- 238000003786 synthesis reaction Methods 0.000 title claims abstract description 18
- 238000007789 sealing Methods 0.000 claims description 25
- 230000005540 biological transmission Effects 0.000 claims description 12
- 230000005611 electricity Effects 0.000 claims description 5
- 230000010355 oscillation Effects 0.000 claims description 5
- 230000004044 response Effects 0.000 claims description 4
- 230000008878 coupling Effects 0.000 claims description 2
- 238000010168 coupling process Methods 0.000 claims description 2
- 238000005859 coupling reaction Methods 0.000 claims description 2
- 238000002347 injection Methods 0.000 claims 1
- 239000007924 injection Substances 0.000 claims 1
- 230000002262 irrigation Effects 0.000 abstract 1
- 238000003973 irrigation Methods 0.000 abstract 1
- 238000009434 installation Methods 0.000 description 4
- 230000009471 action Effects 0.000 description 2
- 238000010586 diagram Methods 0.000 description 2
- 239000012535 impurity Substances 0.000 description 2
- 239000000203 mixture Substances 0.000 description 2
- 208000019901 Anxiety disease Diseases 0.000 description 1
- 230000036506 anxiety Effects 0.000 description 1
- 239000000428 dust Substances 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 230000005764 inhibitory process Effects 0.000 description 1
- 238000002955 isolation Methods 0.000 description 1
- 238000000034 method Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 238000010248 power generation Methods 0.000 description 1
- 230000001681 protective effect Effects 0.000 description 1
- 230000036632 reaction speed Effects 0.000 description 1
- 230000000630 rising effect Effects 0.000 description 1
- 230000001960 triggered effect Effects 0.000 description 1
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Abstract
The utility model discloses a kind of large-scale synthesis parking yard supervising system, when solving driver and being stopped in underground parking, find that parking stall is difficult, it is necessary to artificial guide, and uses the mode of salary earner, the problem of artificial cost is high, its drip irrigation device is:Also include support, infrared launcher, infrared receiving device, infrared launcher, infrared receiving device are arranged on each parking stall and support;Also include infrared control device, remote indicator;Also include being arranged on the crossing in parking lot and being used for the instruction frame for installing remote indicator;When storing cycle is on parking stall, infrared receiving device can not receive infrared emission signal, the remote indicator on frame is indicated to realize long-range instruction, a kind of large-scale synthesis parking yard supervising system of the present utility model, when driver needs parking, it can be judged by the remote indicator being arranged on the instruction frame at crossing, be quickly found out parking stall so as to reach, also a saving cost of labor.
Description
Technical field
The utility model is related to a kind of vehicle management field, more particularly to a kind of large-scale synthesis parking yard supervising system.
Background technology
At present, each big-and-middle city automobile quantity sustainable growth, and land resource increasingly reduces anxiety, parking contradiction is very
It is prominent;To solve parking contradiction, to save land resource, underground garage is seasonable and gives birth to.
When driver is stopped in underground parking, because underground parking is very big, accordingly, it would be desirable to which staff is carried out
Management, by artificial guide, makes driver quickly find parking stall, still, in artificial guide, do not only result in it is artificial into
This rising, meanwhile, when staff relieves a sentry, also result in the problem of parking is difficult, also improved space.
Utility model content
The purpose of this utility model is to provide a kind of large-scale synthesis parking yard supervising system, can when driver needs parking
To be judged by the remote indicator being arranged on the instruction frame at crossing, parking stall is quickly found out so as to reach, is also saved
Cost of labor.
Above-mentioned technical purpose of the present utility model technical scheme is that:
A kind of large-scale synthesis parking yard supervising system, including the parking stall being arranged in parking lot, in addition to it is arranged at parking stall
Top support, be arranged on support and for export infrared emission signal infrared launcher, be arranged on parking stall and
Infrared launcher is coupled to receive infrared emission signal and export the infrared receiving device of received IR signal, it is described infrared
Emitter, infrared receiving device are arranged on each parking stall and support;
Also include being coupled to infrared receiving device to receive received IR signal and export the infrared control of infrared control signal
Device processed, it is coupled to infrared control device to receive infrared control signal and in response to infrared control signal to realize long-range instruction
Remote indicator;
Also include being arranged on the crossing in parking lot and being used for the instruction frame for installing remote indicator;
When storing cycle is on parking stall, the infrared receiving device can not receive infrared emission signal, the instruction
Remote indicator on frame is to realize long-range instruction.
Using such scheme, indicate that some remote indicators are installed in frame, and remote indicator pass through it is infrared
Emitter, infrared receiving device are controlled, when automobile stops onto parking stall, coordinate the use of support, infrared receiving device
The signal that infrared launcher is sent cannot be received, is indicated so that remote indicator be realized, is placed on crossing
Indicate that frame can be guided from instruction situation to driver, not only reduce labour cost, while improving driver finds parking stall
Speed, it is practical.
Set preferably, being provided with the parking stall on the first mounting hole installed for infrared receiving device, the parking stall
The first end cap for sealing the first mounting hole is equipped with, the first end, which is covered, is provided with first through hole.
Using such scheme, the setting of the first mounting hole is installed infrared receiving device, without it is exposed outside
Side, while protected by the first end cap to infrared receiving device, improves the service life of infrared receiving device, and first
The setting of through hole, then ensure that the normal transmission of infrared receiving device, practical.
Preferably, being provided with the support for installing infrared launcher on the parking stall, it is provided with the support
The second end cap for sealing the second mounting hole is provided with the second mounting hole installed for infrared launcher, the support,
The second through hole is provided with second end cap.
Using such scheme, the setting of the second mounting hole is installed infrared launcher, without it is exposed outside
Side, while protected by the second end cap to infrared launcher, improves the service life of infrared launcher, and second
The setting of through hole, then ensure that the normal transmission of infrared launcher, practical.
Preferably, being arranged with sealing ring on first end cap, the second end cap, the sealing ring is set to be hollow,
The mounting groove installed for sealing ring is provided with first end cap, the second end cap.
Using such scheme, the setting of sealing ring improves the first end cap, the second end cap and the first mounting hole, the second peace
The seal degree between hole is filled, enters so as to reduce the impurity such as dust in the first mounting hole, the second mounting hole, improves to red
The service life of outer emitter, infrared receiving device, and sealing ring is set in hollow, sealing ring is being carried out in use, logical
The air crossed in crush seal circle, so as to improve the sealability to the first end cap, the second end cap, it is practical.
Preferably, light-passing board is provided with first end cap, the second end cap, first end cap, the second end cap
On be provided with and slide clamping and the baffle plate that is wholely set with the first end cap, the second end cap for light-passing board.
Using such scheme, the setting of light-passing board is not only sealed first through hole, the second through hole, while can protect
Card infrared launcher, the normal transmission of infrared receiving device, and the setting of baffle plate, by light-passing board and the first end cap, the second end
Cover into line slip clamping, improve the installation effectiveness to light-passing board.
Preferably, first end cap coordinates with the first mounting hole screw thread on parking stall, second end cap and second
Mounting hole screw thread coordinates, and first end cap is in horizontally disposed with parking stall.
Using such scheme, the cooperation of screw thread is installed the first end cap, the second end cap, and install when without
It is free-hand just to complete to install using instrument, and installation effectiveness is high, while the first end cap is in horizontally disposed with parking stall, reduces
Influence of the automobile to the first end cap, so that improve the protective capability of the first end cap, it is practical.
Preferably, the infrared launcher includes being used for the oscillating circuit of outputting oscillation signal, is coupled to vibration electricity
Road is to receive oscillator signal and export infrared emission signal to the infrared transmitting circuit of infrared receiving device.
Using such scheme, the setting of oscillating circuit primarily serves the work that driving infrared transmitting circuit starts in circuit
With when oscillating circuit is powered, vibration will be produced, so as to carry out starting of oscillation, and the oscillator signal of certain frequency is exported, by red
Outer radiating circuit launches signal, makes the output frequency of infrared transmitting circuit consistent, improves the steady of infrared transmitting circuit
It is qualitative, it is practical.
Preferably, the infrared receiving device includes being coupled to infrared launcher receiving infrared emission signal and defeated
Go out the infrared switch circuit of infrared switch signal, be coupled to infrared switch circuit to receive infrared switch signal and export infrared connect
Collect mail number to infrared control device infrared control circuit.
Using such scheme, infrared switch circuit is in circuit as the circuit of an on-off action, when infrared switch electricity
Road is received after the infrared emission signal of infrared launcher output, will be turned on, so that infrared control device is triggered, and is controlled
The startup of infrared control device processed, improves the jamproof ability of circuit.
Preferably, the infrared control device includes being coupled to infrared receiving device receiving received IR signal and defeated
Go out the infrared controlled switch circuit of infrared controlled switch signal, be coupled to infrared controlled switch circuit to receive infrared controlled switch
The photoelectric coupled circuit of signal and output light coupling signal, it is coupled to photoelectric coupled circuit to receive optocoupler signal and export infrared control signal extremely
The triggers circuit of remote indicator.
Using such scheme, infrared controlled switch circuit is in circuit as the circuit of on-off action, when infrared control is opened
When powered-down road one receives the signal of high level, will turn on, and the speed of conducting is fast, photoelectric coupled circuit have to electric signal every
From effect, while there are good electrical isolation capabilities and antijamming capability, common mode inhibition capacity, while making infrared trigger circuit
Triggering, and control remote indicator is operated rapidly, reaction speed is fast.
Preferably, the remote indicator includes being coupled to infrared control device receiving infrared control signal and defeated
Go out the radio transmitter of wireless transmission signal, be coupled to radio transmitter with receive wireless transmission signal and export wirelessly connect
The wireless receiving circuit collected mail number, it is coupled to wireless receiving circuit to receive wireless reception of signals and in response to wireless reception of signals
To realize the cue circuit of prompting.
Using such scheme, the setting of radio transmitter makes the instruction on instruction frame be attached without using electric wire,
The transmission of teledata is carried out by radio transmitter and wireless receiving circuit, the convenience to instruction is improved, subtracts simultaneously
The use of electric wire is lacked, cost is lower, while the setting of cue circuit, will indicate that the correspondence position on frame is indicated, makes department
Machine is very clear, practical.
In summary, the utility model has the advantages that:
1st, when driver needs parking, it can be sentenced by the remote indicator being arranged on the instruction frame at crossing
It is disconnected, parking stall can be quickly found, meanwhile, save cost of labor;
2nd, infrared launcher, infrared receiving device are firmly installed, it is not easy to damaged, it is not easy to enter impurity, use the longevity
Life is high.
Brief description of the drawings
Fig. 1 is parking stall, the structural representation of support;
Fig. 2 is the scheme of installation of the infrared receiving device on parking stall;
Fig. 3 is the scheme of installation of the infrared launcher on support;
Fig. 4 is the sectional view of sealing ring;
Fig. 5 is infrared launcher, the circuit connection diagram of infrared receiving device;
Fig. 6 is infrared control device, the circuit connection diagram of remote indicator.
In figure:1st, parking stall;2nd, infrared launcher;3rd, infrared receiving device;4th, infrared control device;5th, it is long-range to indicate dress
Put;6th, frame is indicated;7th, the first mounting hole;8th, the first end cap;9th, first through hole;10th, the second mounting hole;11st, the second end cap;12、
Second through hole;13rd, sealing ring;14th, light-passing board;15th, baffle plate;16th, oscillating circuit;17th, infrared transmitting circuit;18th, infrared switch
Circuit;19th, infrared control circuit;20th, infrared controlled switch circuit;21st, photoelectric coupled circuit;22nd, triggers circuit;23rd, wireless transmission
Circuit;24th, wireless receiving circuit;25th, cue circuit;26th, support.
Embodiment
The utility model is described in further detail below in conjunction with accompanying drawing.
A kind of large-scale synthesis parking yard supervising system disclosed in the present embodiment, including the parking stall 1 being arranged in parking lot, car
It is provided with position 1 on support 26, parking stall 1 and is provided with infrared receiving device 3, is provided with infrared launcher 2 on support 26, and stop
The instruction frame 6 for installing remote indicator 5 is provided with the crossing in parking lot.
As shown in figure 1, being used to park a car on the parking stall 1 in parking lot, and support 26, support are fixedly connected with parking stall 1
26 are set in digital " 7 " shape, and indicate to be provided with some remote indicators 5 on frame 6.
As shown in Figure 2,4, be provided with the first mounting hole 7 installed for infrared receiving device 3 on parking stall 1, the first end cap 8 with
The screw thread of first mounting hole 7 coordinates, and sealing ring 13 is provided between the first end cap 8 and the first mounting hole 7, and sealing ring 13 is in hollow
And sealing is set, sealing ring 13 is sheathed on the first end cap 8, is provided with the first end cap 8 for the transmission signal of infrared receiving device 3
First through hole 9, and the side away from sealing ring 13 is provided with baffle plate 15 on the first end cap 8, and baffle plate 15 is C-shaped to be set, and gear
Light-passing board 14 is entered line slip clamping by plate 15, and light-passing board 14 is covered first through hole 9.
As shown in Figure 3,4, the second mounting hole 10 installed for infrared launcher 2, the second end cap are provided with support 26
11 and the screw thread of the second mounting hole 10 coordinate, and be provided with sealing ring 13, sealing ring between the second end cap 11 and the second mounting hole 10
13 are set in hollow and sealing, and sealing ring 13 is sheathed on the second end cap 11, are provided with the second end cap 11 for infrared emission dress
The second through hole 12 of 2 transmission signals is put, and the side away from sealing ring 13 is provided with baffle plate 15 on the second end cap 11, baffle plate 15 is in
C-shaped is set, and light-passing board 14 is entered line slip clamping by baffle plate 15, and light-passing board 14 is covered the second through hole 12.
As shown in figure 5, infrared launcher 2 includes oscillating circuit 16, infrared transmitting circuit 17.Oscillating circuit 16 includes core
Piece U1, resistance R1, resistance R2, resistance R3, electric capacity C1, chip U1 can be NE555, UA555, SL555 time-base integrated circuit, this
Preferential in embodiment to use NE555, infrared transmitting circuit 17 is infrared transmitting tube LED1.
As shown in figure 5, the one end of chip U1 1 pin respectively with ground GND, electric capacity C1 is connected, electric capacity C1 other end difference
2 pin of one end, chip U1, chip U1 6 pin with resistance R1 are connected, 7 pin, the electricity of the resistance R1 other end respectively with chip U1
Hinder R2 one end connection, 4 pin, chip U1 8 pin, resistance R3 one end, the power supply of the resistance R2 other end respectively with chip U1
VCC connections, the resistance R3 other end is connected with infraluminescence pipe LED1 anode, infraluminescence pipe LED1 negative electrode and chip U1
3 pin connection.
As shown in figure 5, when chip U1 obtains electric, the oscillator signal of certain frequency will be sent, the frequency of oscillator signal by
Resistance and Capacity control, and pass through infraluminescence pipe LED1 output signals.
As shown in figure 5, infrared receiving device 3 includes infrared switch circuit 18, infrared control circuit 19.Infrared switch circuit
18 be infrared receiving tube LED2.Infrared control circuit 19 includes electric capacity C2, electric capacity C3, electric capacity C4, electric capacity C5, electric capacity C6, electric capacity
C7, resistance R4, resistance R5, resistance R6, resistance R7, inductance L, chip U2, chip U2 model UPC1373H.
As shown in figure 5, one end, the inductance L one end of chip U2 3 pin respectively with electric capacity C6 are connected, the inductance L other end
One end respectively with electric capacity C6, resistance R4 one end, chip U2 8 pin, resistance R5 one end, electric capacity C7 positive pole, power supply VCC
Connection, positive pole, the infrared receiving tube LED2 negative electrode of the resistance R4 other end respectively with electric capacity C2 be connected, electric capacity C2 negative pole and
Ground GND connections, infrared receiving tube LED2 anode is connected with chip U2 7 pin, and chip U2 6 pin connect with resistance R7 one end
Connect, the resistance R7 other end is connected with electric capacity C3 one end, the electric capacity C3 other end respectively with ground GND, electric capacity C4 one end, core
Piece U2 5 pin, electric capacity C5 one end, resistance R6 one end connection, the electric capacity C4 other end are connected with chip U2 2 pin, electric capacity
1 pin, the resistance R5 other end of the C5 other end respectively with chip U2 are connected, the resistance R6 other end point and chip U2 4 pin,
Electric capacity C7 negative pole connection.
As shown in figure 5, when the signal of infraluminescence pipe LED1 transmittings is received by infrared receiving tube LED2, the 1 of chip U2
Pin exports low level signal.The signal of hot outer luminous tube LED1 transmittings is separated, and causes infrared receiving tube LED2 not connect
When receiving the signal of infraluminescence pipe LED1 transmittings, chip U2 1 pin exports the signal of high level.
As shown in fig. 6, infrared control device 4 includes infrared controlled switch circuit 20, photoelectric coupled circuit 21, infrared trigger circuit
22.Infrared controlled switch circuit 20 is triode Q1, triode Q1 for NPN type triode and model 2SC4019, it is infrared to touch
Power Generation Road 22 is relay KM1, and photoelectric coupled circuit 21 is photo-coupler U1.
As shown in fig. 6, chip U2 1 pin is connected with triode Q1 base stage, triode Q1 emitter stage and ground GND connect
Connect, triode Q1 colelctor electrode is connected with the negative electrode of the light emitting diode in photo-coupler U1, luminous two in photo-coupler U1
The anode of pole pipe is connected with power supply VCC, and the colelctor electrode of photosensitive three pole is connected with relay KM1 one end in photo-coupler U1, after
The electrical equipment KM1 other end is connected with power supply VCC, and the emitter stage of the phototriode in photo-coupler U1 is connected with ground GND.
As shown in fig. 6, remote indicator 5 includes radio transmitter 23, wireless receiving circuit 24, indicating circuit.Nothing
Line radiating circuit 23 includes resistance R8, transmitter;Wireless receiving circuit 24 includes receiver, resistance R9, and indicating circuit is luminous
Diode (LED) 3, transmitter, the model of receiver 315M superregenerative modules.
As shown in fig. 6, relay normally open contact KM1-1 one end is connected with power supply VCC, relay normally open contact KM1-1
The other end be connected with resistance R8 one end, one end of the resistance R8 other end and transmitter is connected, the other end of transmitter with
Ground GND connections.One end of receiver is connected with power supply VCC, and the other end of receiver is connected with resistance R9 one end, resistance R9's
The other end is connected with the anode of LED 3, and the negative electrode of LED 3 is connected with ground GND.
As shown in fig. 6, when relay normally open contact KM1-1 disconnects, transmitter must not be electric, therefore transmitter does not work,
Receiver can not receive the signal of transmitter, so that LED 3 does not work.When relay normally open contact KM1-1 closures
When, transmitter obtains electric, therefore transmitter works, and receiver receives the signal of transmitter, so that LED 3 is turned on
It is luminous.
The course of work:
1st, the outputting oscillation signal of oscillating circuit 16 of chip U1 compositions gives infraluminescence pipe LED1, when automobile stops to parking stall 1
When upper, the signal of infraluminescence pipe LED1 outputs is not received by infrared receiving tube LED2, chip U2 1 pin output high level
Signal, triode Q1 is turned on after receiving the signal of high level, photo-coupler U1 conductings, and now relay KM1 is turned on, relay
Normally opened contact KM1-1 obtains electric closure, and transmitter obtains electric proceed-to-send signal, and receiver is received after signal, makes to be arranged on instruction
LED 3 on frame 6 lights.
2nd, the outputting oscillation signal of oscillating circuit 16 of chip U1 compositions gives infraluminescence pipe LED1, when automobile does not stop to car
When on position 1, the signal of infraluminescence pipe LED1 outputs is received by infrared receiving tube LED2, chip U2 1 pin output low level
Signal, triode Q1 is not turned on after receiving low level signal, and photo-coupler U1 is not turned on, and now relay KM1 is not led
Logical, relay normally open contact KM1-1 dead electricity disconnects, and transmitter does not work, and receiver can not receive the signal sent, peace
LED 3 on instruction frame 6 does not light.
This specific embodiment is only to explain of the present utility model, and it is not to limitation of the present utility model, ability
Field technique personnel can make the modification without creative contribution to the present embodiment as needed after this specification is read, but
As long as all being protected in right of the present utility model by Patent Law.
Claims (10)
1. a kind of large-scale synthesis parking yard supervising system, including the parking stall (1) being arranged in parking lot, it is characterized in that:Also include
The support (26) of the top of parking stall (1) is arranged at, is arranged on support (26) and for exporting the infrared hair of infrared emission signal
Injection device (2), it is arranged on parking stall (1) and is coupled to infrared launcher (2) to receive infrared emission signal and export infrared
The infrared receiving device (3) of signal is received, the infrared launcher (2), infrared receiving device (3) are arranged at each parking stall
(1) and on support (26);
Also include being coupled to infrared receiving device (3) to receive received IR signal and export the infrared control of infrared control signal
Device (4), it is coupled to infrared control device (4) to receive infrared control signal and long-range to realize in response to infrared control signal
The remote indicator (5) of instruction;
Also include being arranged on the crossing in parking lot and being used for the instruction frame (6) for installing remote indicator (5);
When storing cycle is on parking stall (1), the infrared receiving device (3) can not receive infrared emission signal, the finger
Show the remote indicator (5) on frame (6) to realize long-range instruction.
2. a kind of large-scale synthesis parking yard supervising system according to claim 1, it is characterized in that:Set on the parking stall (1)
It is equipped with the first mounting hole (7) installed for infrared receiving device (3), the parking stall (1) to be provided with and is installed for sealing first
First through hole (9) is provided with first end cap (8) in hole (7), first end cap (8).
3. a kind of large-scale synthesis parking yard supervising system according to claim 2, it is characterized in that:Set on the parking stall (1)
It is equipped with the support (26) for installing infrared launcher (2), the support (26) and is provided with for infrared launcher (2) peace
The second end cap (11) for sealing the second mounting hole (10) is provided with the second mounting hole (10) of dress, the support (26),
The second through hole (12) is provided with second end cap (11).
4. a kind of large-scale synthesis parking yard supervising system according to claim 3, it is characterized in that:First end cap (8),
It is arranged with sealing ring (13) on second end cap (11), the sealing ring (13) is set to be hollow, first end cap (8), the
The mounting groove installed for sealing ring (13) is provided with two end caps (11).
5. a kind of large-scale synthesis parking yard supervising system according to claim 3, it is characterized in that:First end cap (8),
It is provided with to be provided with light-passing board (14), first end cap (8), the second end cap (11) on second end cap (11) and supplies printing opacity
Plate (14) slides clamping and the baffle plate (15) being wholely set with the first end cap (8), the second end cap (11).
6. a kind of large-scale synthesis parking yard supervising system according to claim 3, it is characterized in that:First end cap (8)
Coordinate with the first mounting hole (7) screw thread on parking stall (1), second end cap (11) coordinates with the second mounting hole (10) screw thread,
And first end cap (8) is in horizontally disposed with parking stall (1).
7. a kind of large-scale synthesis parking yard supervising system according to claim 1, it is characterized in that:The infrared launcher
(2) include the oscillating circuit (16) for outputting oscillation signal, be coupled to oscillating circuit (16) to receive oscillator signal and export
Infrared emission signal to infrared receiving device (3) infrared transmitting circuit (17).
8. a kind of large-scale synthesis parking yard supervising system according to claim 1, it is characterized in that:The infrared receiving device
(3) include being coupled to infrared launcher (2) receiving infrared emission signal and exporting the infrared switch electricity of infrared switch signal
Road (18), be coupled to infrared switch circuit (18) with receive infrared switch signal and export received IR signal to infrared control fill
Put the infrared control circuit (19) of (4).
9. a kind of large-scale synthesis parking yard supervising system according to claim 1, it is characterized in that:The infrared control device
(4) include being coupled to infrared receiving device (3) to receive received IR signal and export the infrared control of infrared controlled switch signal
On-off circuit (20) processed, it is coupled to infrared controlled switch circuit (20) to receive infrared controlled switch signal and output light coupling signal
Photoelectric coupled circuit (21), be coupled to photoelectric coupled circuit (21) and indicate to fill to long-range to receive optocoupler signal and export infrared control signal
Put the triggers circuit (22) of (5).
10. a kind of large-scale synthesis parking yard supervising system according to claim 1, it is characterized in that:The long-range instruction dress
Putting (5) includes being coupled to infrared control device (4) to receive infrared control signal and export the wireless transmission of wireless transmission signal
Circuit (23), it is coupled to radio transmitter (23) to receive wireless transmission signal and export the wireless receiving of wireless reception of signals
Circuit (24), it is coupled to wireless receiving circuit (24) to receive wireless reception of signals and carry to realize in response to wireless reception of signals
The cue circuit (25) shown.
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CN201720160575.9U CN206516071U (en) | 2017-02-21 | 2017-02-21 | A kind of large-scale synthesis parking yard supervising system |
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CN201720160575.9U CN206516071U (en) | 2017-02-21 | 2017-02-21 | A kind of large-scale synthesis parking yard supervising system |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108230738A (en) * | 2018-01-31 | 2018-06-29 | 四川驿停车智慧科技有限公司 | Stop induction system for a kind of staggered form parking stall |
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2017
- 2017-02-21 CN CN201720160575.9U patent/CN206516071U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108230738A (en) * | 2018-01-31 | 2018-06-29 | 四川驿停车智慧科技有限公司 | Stop induction system for a kind of staggered form parking stall |
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Effective date of registration: 20240604 Address after: Room 1003, 10th Floor, Building 3, No. 801 Huiping Road, Jiading District, Shanghai, 200000 Patentee after: Shanghai Xiledou Technology Group Co.,Ltd. Country or region after: China Address before: Room 127, No.1 Youshan Road, Shishan Xingcheng, Qixia District, Nanjing City, Jiangsu Province, 210033 Patentee before: JIANGSU RENCHENG ELECTRONIC TECHNOLOGY CO.,LTD. Country or region before: China |