CN203873498U - Solar energy sunlight infrared control double-track bilateral open curtain with direct-current micromotors - Google Patents
Solar energy sunlight infrared control double-track bilateral open curtain with direct-current micromotors Download PDFInfo
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- CN203873498U CN203873498U CN201420337439.9U CN201420337439U CN203873498U CN 203873498 U CN203873498 U CN 203873498U CN 201420337439 U CN201420337439 U CN 201420337439U CN 203873498 U CN203873498 U CN 203873498U
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- Prior art keywords
- curtain
- control
- direct current
- relay
- double
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Abstract
The utility model relates to the technical field of electronics, in particular to a solar energy sunlight infrared control double-track bilateral open curtain with direct-current micromotors. The solar energy sunlight infrared control double-track bilateral open curtain comprises a solar power supply, a double-layer double-breadth curtain, the two direct-current micromotors, a light-controlled module, an infrared remote control transmitter and receiver module and a double-track bilateral open transmission mechanism. When it is dawn and light irradiates a light-controlled device so that the double-track bilateral open is connected, the double-layer curtain is opened automatically; when night falls or it is dim due to thunderstorm in summer, the light-controlled device is disconnected, the double-layer curtain is closed automatically, automatic sun shading is achieved, indoor space modeling is softened, and the environmental decoration is beautified. Sunshade ventilation fabrics are selected for the double-layer curtain. A single-layer curtain can be opened or closed at any time through infrared remote control; and the curtain can be started or stopped at any position or be in a semi-open state and is flexible and convenient to use. The solar power supply is put into use in one time and used for a long term and is free of electric consumption, and the curtain is low in opening and closing power consumption, easy to maintain and long in service life. The solar energy sunlight infrared control double-track bilateral open curtain is widely suitable for living rooms, bedrooms, villas, hotels, wineshops, offices, shops and entertainment venues.
Description
Technical field
The utility model relates to electronic technology field, and specifically a kind of solar energy daylight infrared control direct current micromotor double track is split curtain.
Background technology
The inexhaustible new forms of energy of sun-generated electric power, but sun-generated electric power electrically driven curtain is seldom.Sunshine was controlled and was opened curtain daytime, and The night screen has hung down, and curtain is closed up in dim light control, and visible, light-operated curtain is with practical value.But can be applicable to instructions for use in the light-operated not all time.For example, have daytime and many times also need curtain to close, need night to ventilate and open curtain, or half-open position, obviously light-operated curtain function limitation, can't reach requirement.Infrared controlled curtain is controlled at any time does not but have a photosensitive automatic control function, and time has Changes in weather wind and rain, sand and dust to fly upward to can not get closing up in time curtain and pollutes, and the sunshade of individual layer window curtain fabric and ventilation are difficult for taking into account.
Summary of the invention
The purpose of this utility model is to provide sun-generated electric power power supply, drives a kind of solar energy daylight infrared control direct current micromotor double track of taking into account sunshade and ventilating two shell fabrics to split curtain.
The utility model technical solution: comprise sun-generated electric power, two-layer double width curtain, two direct current micromotor M
1, M
2, light-operated module, infrared remote-control emitter and receiver assembly, double track are split transmission mechanism, and wherein, light-operated module is opened stroke timer, curtain closing stroke timer, folding reversing switch S by optical sensor, preamplifier, shaping phase inverter, curtain
7form, infrared remote-control emitter and receiver assembly are by A, B, C, D, E, six channel pulse codings of F, decoding, impulse modulation infrared emission, reception, interlocking is controlled, light-operated module optical sensor connects curtain through a shaping phase inverter of preamplifier series connection and opens stroke timer, and curtain is opened the output of stroke timer through folding reversing switch S
7, resistance R
1meet triode VT
1and relay J
1, triode VT
3and relay J
3, light-operated module optical sensor connects curtain closing stroke timer through two shaping phase inverters of preamplifier series connection, and curtain closing stroke timer is exported through folding reversing switch S
7, resistance R
2meet triode VT
2and relay J
2, triode VT
4and relay J
4, infrared remote control receiver decoding A channel is through resistance R
3meet triode VT
1and relay J
1, B passage is through resistance R
4meet triode VT
2and relay J
2, C-channel is through resistance R
5meet triode VT
3and relay J
3, D passage is through resistance R
6meet triode VT
4and relay J
4, E passage is unsettled, direct current micromotor M
1through relay contact J
1-1, J
1-2with J
2-1, J
2-2positive decommuntation intersects the sun-generated electric power of joining, direct current micromotor two ends connecting resistance R
8, capacitor C
1absorption spark disturbs, direct current micromotor M
2through relay contact J
3-1, J
3-2with J
4-1, J
4-2positive decommuntation intersects the sun-generated electric power of joining, direct current micromotor two ends connecting resistance R
9, capacitor C
2absorption spark disturbs, and double track is split transmission mechanism respectively by two direct current micromotor M
1, M
2axle is all through transmission case gear reduction, and transmission two rail Timing Belts draw two-layer double width curtain open/close, infrared remote-control emitter button S
1control a rail window curtain and open, button S
2control this rail window curtain closed, button S
5control this track and stop transmission, make its curtain at track staying at random location, button S
3control another rail window curtain and open, button S
4control this rail window curtain closed, same, button S
5control track and stop transmission, make its curtain at track staying at random location, F passage is through resistance R
7meet triode VT
5, bistable state memory self-locking relay J
5, normally-closed contact J
5-1meet light-operated modular power source end, normally opened contact J
5-2connect the power end of infrared remote control receiver, tool arm contact meets sun-generated electric power Vcc, button S
6control and switch light-operated and infrared remote control pattern;
Wherein, infrared remote-control emitter is by infrared emission chip IC
1carrier frequency oscillation, modulation, six passages of pulse code, six press keys switch S
1~S
6control, through triode VT
1amplify and drive infrarede emitting diode VD
1transmitting telecommand;
Infrared remote receiver is by photodiode VD
2, infrared receiving chip IC
2receive remote control command signal, amplify, demodulation access coding chip IC
3six passages of pulse decoding, the output of interlocking pattern is amplified and is driven two direct current micromotor M of Control through triode respectively
1, M
2, draw two-layer double width curtain open/close, and switch light-operated and infrared remote control pattern;
Sun-generated electric power is by photovoltaic battery panel E
2output is through blocking diode VD
3, relay J contact J-
1meet battery E
3, light-operated module, infrared remote control receiver power end and two direct current micromotors, battery E
3cross pressure-controlled sampling and meet potentiometer RP
3, it is adjustable termination window voltage comparable chip ICa positive input terminal, under-voltage control sampling meets potentiometer RP
2, adjustable termination window voltage comparable chip IC
bnegative input end, window voltage comparable chip ICa negative input end and window voltage comparable chip IC
bpositive input terminal is through resistance R
15, R
16divide crimping voltage-stabiliser tube VD
7voltage is made reference, and window voltage is relatively exported through triode and connect relay J, battery E
3be connected in series quick fuse F, and take over control reversal connection diode VD
4;
Double track is split transmission mechanism and is connect respectively transmission case by two guide rail two ends, in guide rail, by Timing Belt closure, mesh two ends transmission case gear, Timing Belt meshes respectively two the traction cranes in left and right, two of left and right traction crane is inserted two groups of hanging wheels subsequently, hook support is put respectively in transmission case outside, the transmission case gear shaft socket direct current micromotor axle of two guide rail one end, two-layer double width curtain top hook is hooked in respectively on traction crane, two-layer double width curtain end hook is hooked in respectively in hook support, and all the other hooks of two-layer double width curtain are hooked on hanging wheel respectively.
The utility model produces good effect: daybreak in summer is light-operated closes up two-layer double width curtain sunshade, dustproof automatically, night, curtain was opened ventilation automatically, daytime in winter solar radiation, automatically opening two-layer double width curtain ventilates, automatic shading has both the moulding of the softening interior space, the decoration of beautifying the environment, infrared electrical remote control can be opened respectively or closed individual layer curtain at any time, and can open at an arbitrary position, stop, or half-open position, give comfortable impression easily, increase the joy of life, double-layer window curtain, is convenient to select two kinds of fabrics, takes into account sun-shading ventilating.Sun-generated electric power once drops into long-term use, does not have electricity charge consumption, and direct current micromotor drives curtain to omit inverter, and curtain open/close power consumption is little, easy care long service life.Switch light-operated and infrared remote control power supply change control model, components and parts are multiplexing, save cost.
Accompanying drawing explanation
Fig. 1 technical solutions of the utility model theory diagram
Fig. 2 double track is split direct current micromotor control circuit
Fig. 3 infrared remote-control emitter and infrared remote control receiver
Fig. 4 solar-electricity source circuit
Fig. 5 double track is split curtain schematic diagram
The specific embodiment
With reference to Fig. 1,2,3,4,5, the utility model specific embodiment and embodiment: comprise sun-generated electric power, 6,9, two direct current micromotor M of two-layer double width curtain
14, M
27, light-operated module 1, infrared remote-control emitter 2 are split transmission mechanism 5,8 with receiver 3 assemblies, double track, wherein, light-operated module 1 is opened stroke timer 1d, curtain closing stroke timer 1e, folding reversing switch S by optical sensor 1a, preamplifier 1b, shaping phase inverter 1c, curtain
7form, infrared remote-control emitter 2 and receiver 3 assemblies are by A, B, C, D, E, F six channel pulses codings, decoding, impulse modulation infrared emission, reception, interlocking is controlled, light-operated module 1 optical sensor 1a connects curtain through a shaping phase inverter 1c of preamplifier 1b series connection and opens stroke timer 1d, and curtain is opened stroke timer 1d output through folding reversing switch S
7, resistance R
1meet triode VT
1and relay J
1, triode VT
3and relay J
3, light-operated module 1 optical sensor 1a meets curtain closing stroke timer 1e through two shaping phase inverter 1c of preamplifier 1b series connection, and curtain closing stroke timer 1e exports through folding reversing switch S
7, resistance R
2meet triode VT
2and relay J
2, triode VT
4and relay J
4, infrared remote control receiver 3 decoding A channels are through resistance R
3meet triode VT
1and relay J
1, B passage is through resistance R
4meet triode VT
2and relay J
2, C-channel is through resistance R
5meet triode VT
3and relay J
3, D passage is through resistance R
6meet triode VT
4and relay J
4, E passage is unsettled, direct current micromotor M
14 through relay contact J
1-1, J
1-2with J
2-1, J
2-2positive decommuntation intersects the sun-generated electric power of joining, direct current micromotor M
14 two ends connecting resistance R
8, capacitor C
1absorption spark disturbs, direct current micromotor M
27 through relay contact J
3-1, J
3-2with J
4-1, J
4-2positive decommuntation intersects the sun-generated electric power of joining, direct current micromotor M
27 two ends connecting resistance R
9, capacitor C
2absorption spark disturbs, and double track is split transmission mechanism 5,8 respectively by two direct current micromotor M
14, M
27 axles are all through transmission case gear reduction, and transmission two rail Timing Belts draw two-layer double width curtain 6,9 foldings, infrared remote-control emitter 2 button S
1control startup one rail window curtain 6 and open, button S2 controls this rail window curtain 6 closures, button S
5control this track and stop transmission, make its curtain 6 at track staying at random location, button S
3control another rail window curtain 9 of startup and open, button S
4control this rail window curtain 9 closures, same, button S
5control track and stop transmission, make its curtain 9 at track staying at random location, F passage is through resistance R
7meet triode VT
5, bistable state memory self-locking relay J
5, normally-closed contact J
5-1meet light-operated module 1 power end, normally opened contact J
5-2connect infrared remote control receiver 3 power ends, tool arm contact meets sun-generated electric power Vcc, button S
6control and switch light-operated and infrared remote control pattern.
Double track is split Window curtain structure (be example by one deck curtain, another layer is identical), guide rail 5a, transmission case 5b, Timing Belt 5c, traction crane 5d, hanging wheel 5e, hook support 5f, direct current micromotor 4,7, curtain 6,9.
Optical sensor is installed in outdoor, summer, folding reversing switch S
7while being set to day bright light rays grow, light shutter device is irradiated by light, two direct current micromotor M of curtain closing stroke Timer Controlling
1, M
2reverse drive, closes up two-layer double width curtain sunshade, dustproof automatically, and The night screen has hung down, and light is dark, and light shutter device dull thread irradiates, and curtain is opened two direct current micromotor M of stroke Timer Controlling
1, M
2forward transmission, automatically opens two-layer double width curtain and ventilates.
Winter, folding reversing switch S
7be replaced into solar radiation on daytime, curtain is opened two direct current micromotor M of stroke Timer Controlling
1, M
2forward transmission, automatically opens two-layer double width curtain and ventilates, and The night screen has hung down, and light is dimmed, two direct current micromotor M of curtain closing stroke Timer Controlling
1, M
2reverse drive, closes up two-layer double width curtain automatically, and automatic shading has both the moulding of the softening interior space, and the decoration of beautifying the environment omits operation and removes manual trouble from.Individual layer curtain can be opened respectively or close up to infrared remote control at any time, and can half-open position or stop optional position, flexible and convenient to use, gives comfortable impression easily, increases the joy of life.Double-layer window curtain, is convenient to select two kinds of fabrics, takes into account sun-shading ventilating.
Solar cell E
2daylight is for curtain open/close, simultaneously also to battery E
3charging, night is by battery E
3curtain open/close is powered.Window voltage comparable chip IC
a, Ic
boutput level is through triode VT
7drive relay J to control under-voltage, the overvoltage of charging, protection battery E
3normal operation.
Control that sun-generated electric power is under-voltage, at battery E
3voltage is during lower than window voltage comparable chip ICa reference voltage, relay J adhesive, contact J-
1connect battery E
3charging, as battery E
3voltage is sufficient, crosses pressure-controlled voltage higher than window voltage comparable chip IC
bduring reference voltage, relay J releasing contact J-
1, cut off solar cell E
2to battery E
3charging.Curtain open/close power consumption reduces battery E
3voltage, sun-generated electric power is recovered charging.Relay J two ends diode VD in parallel
8suppress backward voltage.Voltage-stabiliser tube VD
7and resistance R
17, capacitor C
11voltage stabilizing guarantee is under-voltage, overvoltage is accurately controlled.Window voltage comparable chip IC selects LM358 double operational.Switch S
8control light-operated, infrared remote control receiver power supply and two direct current micromotors.Direct current micromotor drives curtain to omit inverter.
Infrared remote-control emitter coding is selected chip IC
1lC2190, receiver chip IC
2cX20106A, coding chip IC
3lC2200, regulates RP
1make it frequency-selecting 38KHz, command range 15~20m.Relay J
1, J
2, J
3, J
4select JQX-13F, relay J
5select ZS01 bistable state memory self-locking type.
Claims (5)
1. solar energy daylight infrared control direct current micromotor double track is split a curtain, comprises sun-generated electric power, two-layer double width curtain, two direct current micromotor M
1, M
2it is characterized in that: also comprise that light-operated module, infrared remote-control emitter and receiver assembly, double track split transmission mechanism, wherein, light-operated module is opened stroke timer, curtain closing stroke timer, folding reversing switch S by optical sensor, preamplifier, shaping phase inverter, curtain
7form, infrared remote-control emitter and receiver assembly are by A, B, C, D, E, F six channel pulse codings, decoding, impulse modulation infrared emission, reception, interlocking is controlled, light-operated module optical sensor connects curtain through a shaping phase inverter of preamplifier series connection and opens stroke timer, and curtain is opened the output of stroke timer through folding reversing switch S
7, resistance R
1meet triode VT
1and relay J
1, triode VT
3and relay J
3, light-operated module optical sensor connects curtain closing stroke timer through two shaping phase inverters of preamplifier series connection, and curtain closing stroke timer is exported through folding reversing switch S
7, resistance R
2meet triode VT
2and relay J
2, triode VT
4and relay J
4, infrared remote control receiver decoding A channel is through resistance R
3meet triode VT
1and relay J
1, B passage is through resistance R
4meet triode VT
2and relay J
2, C-channel is through resistance R
5meet triode VT
3and relay J
3, D passage is through resistance R
6meet triode VT
4and relay J
4, E passage is unsettled, direct current micromotor M
1through relay contact J
1-1, J
1-2with J
2-1, J
2-2positive decommuntation intersects the sun-generated electric power of joining, direct current micromotor two ends connecting resistance R
8, capacitor C
1absorption spark disturbs, direct current micromotor M
2through relay contact J
3-1, J
3-2with J
4-1, J
4-2positive decommuntation intersects the sun-generated electric power of joining, direct current micromotor two ends connecting resistance R
9, capacitor C
2absorption spark disturbs, and double track is split transmission mechanism respectively by two direct current micromotor M
1, M
2axle is all through transmission case gear reduction, and transmission two rail Timing Belts draw two-layer double width curtain open/close, wireless remote control emitter button S
1control a rail window curtain and open, button S
2control this rail window curtain closed, button S
5control this track and stop transmission, make its curtain at track staying at random location, button S
3control another rail window curtain and open, button S
4control this rail window curtain closed, same, button S
5control track and stop transmission, make its curtain at track staying at random location, F passage is through resistance R
7meet triode VT
5, bistable state memory self-locking relay J
5, normally-closed contact J
5-1meet light-operated modular power source end, normally opened contact J
5-2connect the power end of infrared remote control receiver, tool arm contact meets sun-generated electric power Vcc, button S
6control and switch light-operated and infrared remote control pattern.
2. the light-operated direct current micromotor double track of solar energy infrared remote control according to claim 1 is split curtain, it is characterized in that: infrared remote-control emitter is by infrared emission chip IC
1carrier frequency oscillation, modulation, six passages of pulse code, six press keys switch S
1~S
6control, through triode VT
1amplify and drive infrarede emitting diode VD
1transmitting telecommand.
3. solar energy daylight infrared control direct current micromotor double track according to claim 1 is split curtain, it is characterized in that: infrared remote receiver is by photodiode VD
2, infrared receiving chip IC
2receive remote control command signal, amplify, demodulation access coding chip IC
3six passages of pulse decoding, the output of interlocking pattern is amplified and is driven two direct current micromotor M of Control through triode respectively
1, M
2, draw two-layer double width curtain open/close, and switch light-operated and infrared remote control pattern.
4. solar energy daylight infrared control direct current micromotor double track according to claim 1 is split curtain, it is characterized in that: sun-generated electric power is by photovoltaic battery panel E
2output is through blocking diode VD
3, relay J contact J-
1meet battery E
3, light-operated module, infrared remote control receiver power end and two direct current micromotors, battery E
3cross pressure-controlled sampling and meet potentiometer RP
3, adjustable termination window voltage comparable chip ICa positive input terminal, under-voltage control sampling meets potentiometer RP
2, adjustable termination window voltage comparable chip IC
bnegative input end, window voltage comparable chip ICa negative input end and window voltage comparable chip IC
bpositive input terminal is through resistance R
15, R
16divide crimping voltage-stabiliser tube VD
7voltage is made reference, and window voltage is relatively exported through triode and connect relay J, battery E
3be connected in series quick fuse F, and take over control reversal connection diode VD
4.
5. solar energy daylight infrared control direct current micromotor double track according to claim 1 is split curtain, it is characterized in that: double track is split transmission mechanism and connect respectively transmission case by two guide rail two ends, in guide rail, by Timing Belt closure, mesh two ends transmission case gear, Timing Belt meshes respectively two the traction cranes in left and right, two of left and right traction crane is inserted two groups of hanging wheels subsequently, hook support is put respectively in transmission case outside, the transmission case gear shaft socket direct current micromotor axle of two guide rail one end, two-layer double width curtain top hook is hooked in respectively on traction crane, two-layer double width curtain end hook is hooked in respectively in hook support, all the other hooks of two-layer double width curtain are hooked on hanging wheel respectively.
Priority Applications (1)
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CN201420337439.9U CN203873498U (en) | 2014-06-13 | 2014-06-13 | Solar energy sunlight infrared control double-track bilateral open curtain with direct-current micromotors |
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Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201420337439.9U CN203873498U (en) | 2014-06-13 | 2014-06-13 | Solar energy sunlight infrared control double-track bilateral open curtain with direct-current micromotors |
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Publication Number | Publication Date |
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CN203873498U true CN203873498U (en) | 2014-10-15 |
Family
ID=51674062
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CN201420337439.9U Expired - Fee Related CN203873498U (en) | 2014-06-13 | 2014-06-13 | Solar energy sunlight infrared control double-track bilateral open curtain with direct-current micromotors |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105286466A (en) * | 2014-06-13 | 2016-02-03 | 阮雪芬 | Solar sunlight infrared control direct-current micromotor two-rail oppositely-opening curtain |
-
2014
- 2014-06-13 CN CN201420337439.9U patent/CN203873498U/en not_active Expired - Fee Related
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105286466A (en) * | 2014-06-13 | 2016-02-03 | 阮雪芬 | Solar sunlight infrared control direct-current micromotor two-rail oppositely-opening curtain |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20141015 Termination date: 20150613 |
|
EXPY | Termination of patent right or utility model |