CN205989674U - Charging pile on a kind of laser water - Google Patents

Charging pile on a kind of laser water Download PDF

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Publication number
CN205989674U
CN205989674U CN201621043990.8U CN201621043990U CN205989674U CN 205989674 U CN205989674 U CN 205989674U CN 201621043990 U CN201621043990 U CN 201621043990U CN 205989674 U CN205989674 U CN 205989674U
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China
Prior art keywords
charging pile
laser
water
housing
energy
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Withdrawn - After Issue
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CN201621043990.8U
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Chinese (zh)
Inventor
林华
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Wuxi Tongchun New Energy Technology Co Ltd
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Wuxi Tongchun New Energy Technology Co Ltd
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Priority to CN201621043990.8U priority Critical patent/CN205989674U/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02TCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO TRANSPORTATION
    • Y02T10/00Road transport of goods or passengers
    • Y02T10/60Other road transportation technologies with climate change mitigation effect
    • Y02T10/70Energy storage systems for electromobility, e.g. batteries

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  • Charge And Discharge Circuits For Batteries Or The Like (AREA)

Abstract

This utility model is related to charging pile on a kind of laser water, belongs to charging pile applied technical field.The unrestrained coaming plate of installation gear around the upper surface of floating drum, charging pile housing is installed in center in the unrestrained coaming plate of gear, in the periphery of charging pile housing, waterproof insulation case is installed, control circuit is installed in bottom in charging pile housing, the waterproof sealing socket of input current is installed in the left side on the top of charging pile housing, the waterproof sealing socket of output current is installed on the right side on the top of charging pile housing, energy-storage battery and generating laser are installed above laser system buoyancy tank.Power supply family is powered to the energy-storage battery on the consuming parts of charging pile waterborne, laser system buoyancy tank and electricity consumer by water-proof cable.At night, photovoltaic self-control switch automatically turns on, connects circuit, inputs laser transmitter projects from the electric current of energy-storage battery output by conductor wire and goes out bright color laser, makes the electricity consumer of charging pile waterborne know the position that charging pile waterborne is located, be easy to charge in time.

Description

Charging pile on a kind of laser water
Technical field
This utility model is related to charging pile on a kind of laser water, belongs to charging pile applied technical field.
Background technology
In city, replace gasoline automobile with electric automobile or diesel engine automobile is welcome by the people, because Carbon emission is decreased by the automobile that motor provides power, the air in city will not be polluted.When promoting electric motor car, first to build more and fill Electric stake.The original custom of driver drives automobile in large-scale gas station filling gasoline or diesel oil, uncomfortable to short and small Charge before charging pile, in the suburb at night, it is very difficult that driver finds short and small charging pile.With using diesel engine on the water surface Ship as power starts to repack into electric ship, charges for convenience, and charging pile waterborne also will appear on the water surface, due to other The blocking of hull, it is not an appearance that the driver of electric ship will find the little charging pile waterborne of volume on the water surface quickly Easy thing.
Utility model content
The purpose of this utility model is to overcome deficiency of the prior art, provides charging pile on a kind of laser water.
Laser refers to the light amplification that material stimulated radiation produces, and is a kind of good directionality, monochromaticity is good, energy is concentrated, phase The good high-quality light source of dryness.The color of laser depends on the wavelength of laser, and wavelength depends on sending the active matter of laser Matter.The color of light is by the wavelength of light(Or frequency)Determine, the certain color of certain wavelength correspondence.Generating laser output Light, wave spread is very narrow, and therefore color is extremely pure.Energy due to laser is concentrated, and its light beam is very bright.Driver is only Bright laser beam in the night sky to be had a look at is it is possible to find the position of transmitting laser quickly.In this utility model, waterborne fill The bottom of electric stake is floating drum, and floating drum is connected with laser system buoyancy tank, and at night, photovoltaic self-control switch automatically turns on, connects Circuit, passes through conductor wire from the electric current of energy-storage battery output and photovoltaic self-control switch input generating laser is bright to night air-launched The bright, laser beam of nearly hundred meters of length, the driver of electric ship passes through to watch aerial laser beam, just can know that transmitting is sharp quickly The position of the generating laser of light, and charging pile waterborne is arranged on and immediates vicinity apart from generating laser, have found laser and sends out The transmitting position of emitter, also just have found the address of charging pile waterborne.Our company initiates fast with laser beam steer motor driver Speed find charging pile place position be charged in time, safe solve driver and be difficult to find at night or cloudy day fill The difficulty of electric stake.
In order to solve above-mentioned technical problem, this utility model is achieved through the following technical solutions:
By power supply family 2, charging pile waterborne 3, floating drum 4, waterproof insulation case 5, charging pile housing 6, control circuit 7, conduction Line 8, the waterproof sealing socket 9 of input current, the waterproof sealing socket 10 of output current, top cover 11, water-proof cable 12, diverter 13rd, unrestrained coaming plate 14, osculum 15, laser system buoyancy tank 16, energy-storage battery 17, photovoltaic self-control switch 18, generating laser are kept off 19th, electricity consumer 20 collectively constitutes charging pile on a kind of laser water;
The gear wave coaming plate 14 of setting is installed around the upper surface of the floating drum 4 on the water surface 1, in the bottom of the unrestrained coaming plate 14 of gear Different directions open up 48 osculums 15 respectively, charging pile housing 6 is installed in the center in the unrestrained coaming plate 14 of gear, The periphery of charging pile housing 6 installs waterproof insulation case 5, and control circuit 7 is installed in the bottom in charging pile housing 6, is charging The waterproof sealing socket 9 of input current is installed in the left side on the top of stake housing 6, installs on the right side on the top of charging pile housing 6 The waterproof sealing socket 10 of output current, installs top cover 11, floating drum 4 and the laser system being connected at the top of charging pile housing 6 Keep afloat on 1 with buoyancy tank 16, energy-storage battery 17 is installed in the left side above laser system is with buoyancy tank 16, in energy-storage battery 17 Top diverter 13 is installed, generating laser 19 is installed on right side above laser system is with buoyancy tank 16, in Laser emission Photovoltaic self-control switch 18, the installation site distance of generating laser 19 are installed on the conductor wire 8 between device 19 and energy-storage battery 17 The position of charging pile 3 waterborne is near, and there is power supply family 2 left of charging pile 3 on the water, and there is electricity consumer the right of charging pile 3 on the water 20;
Electricity consumer 20 is connected with the waterproof sealing socket 9 of the input current on charging pile 3 waterborne by water-proof cable 12, water The waterproof sealing socket 10 of the output current on upper charging pile 3 is connected with diverter 13 by water-proof cable 12, and diverter 13 leads to Cross water-proof cable 12 to be connected with electricity consumer 20, diverter 13 is connected with energy-storage battery 17 by water-proof cable 12, energy-storage battery 17 It is connected with generating laser 19 by conductor wire 8, in charging pile housing 6:The waterproof sealing socket 9 of input current passes through conduction Line 8 is connected with control circuit 7, and control circuit 7 is connected with the waterproof sealing socket 10 of output current by conductor wire 8.
Generating laser 19 is red laser emitter or green laser emitter.
Compared with prior art, the beneficial effects of the utility model are:1. with aerial laser beam steer motor driver It is quickly found out the charging pile waterborne near the position launching laser beam and generating laser, very accurately, very in time.2. with swashing Light beam guiding driver finds that the low cost of charging pile waterborne, effect be good, time-consuming and energy.
Brief description
Fig. 1 is structural representation of the present utility model.
Specific embodiment
Generating laser has the type of many, and the main laser launching solid color, such as red laser emitter, blueness swash Optical transmitting set, violet laser emitter, green laser emitter, yellow laser emitter, white laser emitter.Laser emission The color of the laser that device projects can be connected with the outward service situation of charging pile waterborne, for example:Charging pile waterborne is Public business, when having electricity can fill, by red laser emitter transmitting red laser beam, charging pile waterborne stops public business, no electricity When can fill, by green laser emitter transmitting green laser.Certainly, the different colours of laser can also be waterborne with different company The brand of charging pile and business relations get up, and participate in business activity, expand charging business scope.
The embodiment combining in accompanying drawing is further described by this utility model below:
By power supply family 2, charging pile waterborne 3, floating drum 4, waterproof insulation case 5, charging pile housing 6, control circuit 7, conduction Line 8, the waterproof sealing socket 9 of input current, the waterproof sealing socket 10 of output current, top cover 11, water-proof cable 12, diverter 13rd, unrestrained coaming plate 14, osculum 15, laser system buoyancy tank 16, energy-storage battery 17, photovoltaic self-control switch 18, generating laser are kept off 19th, electricity consumer 20 collectively constitutes charging pile on a kind of laser water;
The gear wave coaming plate 14 of setting is installed around the upper surface of the floating drum 4 on the water surface 1, in the bottom of the unrestrained coaming plate 14 of gear Different directions open up 48 osculums 15 respectively, charging pile housing 6 is installed in the center in the unrestrained coaming plate 14 of gear, The periphery of charging pile housing 6 installs waterproof insulation case 5, and control circuit 7 is installed in the bottom in charging pile housing 6, is charging The waterproof sealing socket 9 of input current is installed in the left side on the top of stake housing 6, installs on the right side on the top of charging pile housing 6 The waterproof sealing socket 10 of output current, installs top cover 11, floating drum 4 and the laser system being connected at the top of charging pile housing 6 Keep afloat on 1 with buoyancy tank 16, energy-storage battery 17 is installed in the left side above laser system is with buoyancy tank 16, in energy-storage battery 17 Top diverter 13 is installed, generating laser 19 is installed on right side above laser system is with buoyancy tank 16, in Laser emission Photovoltaic self-control switch 18, the installation site distance of generating laser 19 are installed on the conductor wire 8 between device 19 and energy-storage battery 17 The position of charging pile 3 waterborne is near, and there is power supply family 2 left of charging pile 3 on the water, and there is electricity consumer the right of charging pile 3 on the water 20;
Electricity consumer 20 is connected with the waterproof sealing socket 9 of the input current on charging pile 3 waterborne by water-proof cable 12, water The waterproof sealing socket 10 of the output current on upper charging pile 3 is connected with diverter 13 by water-proof cable 12, and diverter 13 leads to Cross water-proof cable 12 to be connected with electricity consumer 20, diverter 13 is connected with energy-storage battery 17 by water-proof cable 12, energy-storage battery 17 It is connected with generating laser 19 by conductor wire 8, in charging pile housing 6:The waterproof sealing socket 9 of input current passes through conduction Line 8 is connected with control circuit 7, and control circuit 7 is connected with the waterproof sealing socket 10 of output current by conductor wire 8.
Generating laser 19 is red laser emitter or green laser emitter.
The floating drum of the bottom of charging pile waterborne will have enough volumes, will produce enough buoyancy in water, floating drum upper Surface will have enough areas, and the unrestrained coaming plate of the gear being arranged on around upper surface can stop the impact to charging pile waterborne for the wave, The weight of the unrestrained coaming plate of gear can also stablize the floating drum on the water surface, and the osculum of the unrestrained coaming plate bottom of gear discharges waterproof insulation case and gear Hydrops between unrestrained coaming plate.The control circuit in charging pile housing being arranged in waterproof insulation case occupies in charging pile housing Bottom, be respectively mounted the waterproof sealing socket of input current and the anti-watertight of output current in the both sides of charging pile housing upper Envelope socket, installs top cover at the top of charging pile housing, and laser system buoyancy tank is closely coupled with floating drum, laser system buoyancy tank Above energy-storage battery and generating laser are installed, light is installed in the middle of the conductor wire connecting energy-storage battery and generating laser Quick autocontrol switch, photovoltaic self-control switch is subject to control different with night intensity of illumination on daytime.Electric current supply from the output of power supply family Whole electricity consumptions of the electricity consumption device of charging pile waterborne, energy-storage battery, generating laser and electricity consumer.
Now enumerate embodiment as follows:
Embodiment one:
On the water surface, floating drum is linked together with laser system buoyancy tank, installation gear wave around the upper surface of floating drum Coaming plate, charging pile housing is installed in the center in the unrestrained coaming plate of gear, installs waterproof insulation case in the periphery of charging pile housing, Control circuit is installed in bottom in charging pile housing, installs the anti-watertight of input current in the left side on the top of charging pile housing Envelope socket, installs the waterproof sealing socket of output current, in laser system buoyancy tank on the right side on the top of charging pile housing Energy-storage battery installed above and red laser emitter.Power supply family pass through consuming parts from water-proof cable to charging pile waterborne, swash Energy-storage battery on photosystem buoyancy tank and electricity consumer are powered.At night, photovoltaic self-control switch automatically turns on, connects circuit, from storage The electric current of energy battery output inputs red laser emitter by conductor wire and launches bright red laser, makes charging pile waterborne Electricity consumer and management personnel know the position that charging pile waterborne is located quickly, be easy to charge in time or keeped in repair.
Embodiment two:
On the water surface, floating drum is linked together with laser system buoyancy tank, installation gear wave around the upper surface of floating drum Coaming plate, charging pile housing is installed in the center in the unrestrained coaming plate of gear, installs waterproof insulation case in the periphery of charging pile housing, Control circuit is installed in bottom in charging pile housing, installs the anti-watertight of input current in the left side on the top of charging pile housing Envelope socket, installs the waterproof sealing socket of output current, in laser system buoyancy tank on the right side on the top of charging pile housing Energy-storage battery installed above and green laser emitter.Power supply family pass through consuming parts from water-proof cable to charging pile waterborne, swash Energy-storage battery on photosystem buoyancy tank and electricity consumer are powered.At night, photovoltaic self-control switch automatically turns on, connects circuit, from storage The electric current of energy battery output inputs green laser emitter by conductor wire and launches bright green laser, makes charging pile waterborne Electricity consumer and management personnel know the position that charging pile waterborne is located quickly, be easy to charge in time or keeped in repair.

Claims (2)

1. charging pile on a kind of laser water, is characterized in that, by power supply family(2), charging pile waterborne(3), floating drum(4), waterproof insulation Case(5), charging pile housing(6), control circuit(7), conductor wire(8), the waterproof sealing socket of input current(9), output electricity The waterproof sealing socket of stream(10), top cover(11), water-proof cable(12), diverter(13), the unrestrained coaming plate of gear(14), osculum (15), laser system buoyancy tank(16), energy-storage battery(17), photovoltaic self-control switch(18), generating laser(19), electricity consumer (20)Collectively constitute charging pile on a kind of laser water;
In the water surface(1)On floating drum(4)Upper surface surrounding install setting gear wave coaming plate(14), in the unrestrained coaming plate of gear(14)'s The different directions of bottom open up 48 osculums respectively(15), in the unrestrained coaming plate of gear(14)Charging pile is installed in interior center Housing(6), in charging pile housing(6)Periphery install waterproof insulation case(5), in charging pile housing(6)Interior bottom is installed Control circuit(7), in charging pile housing(6)Top left side install input current waterproof sealing socket(9), in charging pile Housing(6)Top right side install output current waterproof sealing socket(10), in charging pile housing(6)Top install top Lid(11), floating drum(4)With the laser system buoyancy tank being connected(16)Keep afloat(1)On, in laser system buoyancy tank(16)'s Energy-storage battery is installed in left side above(17), in energy-storage battery(17)Top install diverter(13), in laser system with floating Case(16)Above right side install generating laser(19), in generating laser(19)With energy-storage battery(17)Between conduction Line(8)Upper installation photovoltaic self-control switch(18), generating laser(19)Installation site apart from charging pile waterborne(3)Position lean on Closely, charging pile on the water(3)Left have power supply family(2), charging pile on the water(3)Right have electricity consumer(20);
Electricity consumer(20)By water-proof cable(12)With charging pile waterborne(3)On input current waterproof sealing socket(9)Even Connect, charging pile waterborne(3)On output current waterproof sealing socket(10)By water-proof cable(12)With diverter(13)Even Connect, diverter(13)By water-proof cable(12)With electricity consumer(20)Connect, diverter(13)By water-proof cable(12)With storage Can battery(17)Connect, energy-storage battery(17)By conductor wire(8)With generating laser(19)Connect, in charging pile housing(6) Interior:The waterproof sealing socket of input current(9)By conductor wire(8)With control circuit(7)Connect, control circuit(7)By leading Electric wire(8)Waterproof sealing socket with output current(10)Connect.
2. charging pile on a kind of laser water according to claim 1, is characterized in that, described generating laser(19)It is red Color generating laser or green laser emitter.
CN201621043990.8U 2016-09-08 2016-09-08 Charging pile on a kind of laser water Withdrawn - After Issue CN205989674U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201621043990.8U CN205989674U (en) 2016-09-08 2016-09-08 Charging pile on a kind of laser water

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201621043990.8U CN205989674U (en) 2016-09-08 2016-09-08 Charging pile on a kind of laser water

Publications (1)

Publication Number Publication Date
CN205989674U true CN205989674U (en) 2017-03-01

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CN201621043990.8U Withdrawn - After Issue CN205989674U (en) 2016-09-08 2016-09-08 Charging pile on a kind of laser water

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106274542A (en) * 2016-09-08 2017-01-04 无锡同春新能源科技有限公司 Charging pile on a kind of laser water
CN108790905A (en) * 2018-06-28 2018-11-13 芜湖明智自动化科技有限公司 Electronic charging unit waterborne peculiar to vessel
WO2019041459A1 (en) * 2017-08-29 2019-03-07 广船国际有限公司 Ship charging method

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106274542A (en) * 2016-09-08 2017-01-04 无锡同春新能源科技有限公司 Charging pile on a kind of laser water
CN106274542B (en) * 2016-09-08 2018-05-25 无锡同春新能源科技有限公司 Charging pile on a kind of laser water
WO2019041459A1 (en) * 2017-08-29 2019-03-07 广船国际有限公司 Ship charging method
CN108790905A (en) * 2018-06-28 2018-11-13 芜湖明智自动化科技有限公司 Electronic charging unit waterborne peculiar to vessel
CN108790905B (en) * 2018-06-28 2021-11-19 南京轩世琪源软件科技有限公司 Overwater charging device for electric ship

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Granted publication date: 20170301

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