CN211321587U - Floor lamp control system linked with traffic signal lamp - Google Patents

Floor lamp control system linked with traffic signal lamp Download PDF

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Publication number
CN211321587U
CN211321587U CN201921821365.5U CN201921821365U CN211321587U CN 211321587 U CN211321587 U CN 211321587U CN 201921821365 U CN201921821365 U CN 201921821365U CN 211321587 U CN211321587 U CN 211321587U
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control unit
lamp
floor
traffic signal
power supply
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CN201921821365.5U
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李朝辉
王中华
孙青�
周永刚
程宇松
李新明
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Shanghai Qianfeng New Energy Resources Science & Technique Co ltd
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Shanghai Qianfeng New Energy Resources Science & Technique Co ltd
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Abstract

The utility model relates to a floor-lamp control system with traffic signal lamp linkage, include: the control unit, the power supply and the light sensor; the control unit, the external traffic signal lamp signal and the power supply circuit are powered by a power supply; the external traffic signal lamp signal and power supply circuit and the light sensor are connected to the control unit; the control unit is connected with a floor lamp. The utility model discloses a photoelectric coupling keeps apart and the traffic signal lamp linkage, realizes the luminous pattern of the different floor-lamps of different signal lamp signal control output, through solar cell panel detection ring border light intensity, the output is opened when accurate realization is closed output and light intensity weak according to ambient light intensity, the power is driven different groups floor-lamps respectively by a plurality of powers, the work of other banks is not influenced in the damage individually, the electric energy that the control unit passes through a plurality of powers of diode set is used, at least one power is normal just can normally work.

Description

Floor lamp control system linked with traffic signal lamp
Technical Field
The utility model relates to a floor lamp control system, in particular to a floor lamp control system which is linked with traffic signal lamps through photoelectric coupling isolation to realize the control of different signal lamps and output different floor lamp light-emitting patterns; the solar energy battery board detects the intensity of ambient light, the output is accurately turned on according to the intensity of the ambient light and the output is turned off, the power supplies respectively drive different groups of floor lamps, the individual damage does not affect the work of other lamp groups, the control unit is used by collecting the electric energy of a plurality of power supplies through the diodes, and at least one power supply can normally work and is linked with the traffic signal lamp.
Background
At present, the floor lamp is seldom linked with a traffic signal lamp, some linkages have a light control problem, when natural light is stronger in daytime, the floor lamp is generally closed in daytime, and the existing market scheme adopts timer control, and the shortcoming is that the accumulated error of the timer is larger, and the time length in daytime in each season is different, and the timing can not meet the use requirement in each season usually, and the floor lamp using commercial power exists simultaneously, so that serious potential safety hazards are brought.
SUMMERY OF THE UTILITY MODEL
In view of the above problems, the main object of the present invention is to provide a device for controlling and outputting different ground lights to emit different patterns by the isolation of photoelectric coupling and the linkage of traffic lights; the solar energy battery board detects the intensity of ambient light, the output is accurately turned on according to the intensity of the ambient light and the output is turned off, the power supplies respectively drive different groups of floor lamps, the individual damage does not affect the work of other lamp groups, the control unit is used by collecting the electric energy of a plurality of power supplies through the diodes, and at least one power supply can normally work and is linked with the traffic signal lamp.
The utility model discloses a solve above-mentioned technical problem through following technical scheme: a traffic-signal-lamp-linked floor-lamp control system, comprising: the control unit, the power supply and the light sensor; the control unit, the external traffic signal lamp signal and the power supply circuit are powered by a power supply; the external traffic signal lamp signal and power supply circuit and the light sensor are connected to the control unit; the control unit is connected with a floor lamp.
In the embodiment of the present invention, the control unit controls the working mode of the floor lamp according to the signal of the external traffic signal lamp, and controls the working state of the floor lamp according to the light intensity of the environment measured by the light sensor; the power supply is a power supply which converts commercial power into low safe voltage and provides safe voltage for the control unit and the control unit to control the work of the floor lamp.
In a specific embodiment of the present invention, the control unit detects that the external traffic signal is isolated by the photoelectric coupling.
In an embodiment of the present invention, the light sensor is a solar panel.
In the embodiment of the present invention, the control unit is provided with a dial switch, and can configure the control unit of the working mode of the floor lamp.
In the embodiment of the present invention, the control unit controls the floor lamp to adopt the high power field effect transistor, and can drive a plurality of floor lamps simultaneously.
In the embodiment of the present invention, the power supply is a power supply for driving the ground lamps of different groups to operate respectively by a plurality of sub-power supplies, and when a certain sub-power supply fails, other power supplies are not affected.
In an embodiment of the present invention, the control unit provides the electric energy to the control unit through the electric energy of the diode circuit integrated with the plurality of power supplies.
The utility model discloses an actively advance the effect and lie in: the utility model provides a floor-lamp control system with traffic signal lamp linkage has following advantage: the utility model discloses a photoelectric coupling keeps apart and the traffic signal lamp linkage, realizes the luminous pattern of the different floor-lamps of different signal lamp signal control output, through solar cell panel detection ring border light intensity, the output is opened when accurate realization is closed output and light intensity weak according to ambient light intensity, the power is driven different groups floor-lamps respectively by a plurality of powers, the work of other banks is not influenced in the damage individually, the electric energy that the control unit passes through a plurality of powers of diode set is used, at least one power is normal just can normally work.
Drawings
Fig. 1 is a block diagram of the present invention.
Fig. 2 is a schematic circuit diagram of the opto-galvanic isolation in the control unit of the present invention.
Fig. 3 is a control schematic diagram of a high power fet in the control unit of the present invention.
Fig. 4 is a main schematic diagram of the control unit of the present invention.
Wherein: in fig. 2, resistors R1, R2, R3 and R4, capacitors C1 and C2, an optical coupler U1 and networks rxR, N and SigRxR are arranged.
In fig. 3, resistors R5 and R6, a field effect transistor Q1, a digital triode Q2, a network +24V1 and Red1 are arranged.
In fig. 4, resistors R7, R8, R9, R10, capacitors C3, C4, C5, C6, diodes D1, D2, three-terminal regulator U2, microprocessor U3, interfaces J1, J2, J3, J4, networks rxR, rxG, R, Y, G, N, SigrxR, SigrxG, SigR, SigY, SigG, K1, K2, +24V1, +24V2, 3V3, CtrRed1, CtrRed2, CtrGre1, CtrGre2, Red1, Red2, Gre1, Gre2, GND, and a toggle switch SW 1.
Detailed Description
The following provides a preferred embodiment of the present invention with reference to the accompanying drawings to explain the technical solutions of the present invention in detail.
The utility model provides a pair of floor-lamp control system with traffic signal lamp linkage realizes traffic signal lamp signal and ambient light detection control floor-lamp.
The external traffic signal lamp signal and the power supply are input and are connected to the control unit and the power supply, the power supply is connected to the control unit, the light sensor is connected to the control unit, the control unit obtains the electric energy work of the power supply, the control unit controls the work mode of the floor lamp simultaneously according to the external traffic signal lamp signal, and simultaneously, the work state of the floor lamp is controlled according to the light intensity of the environment measured by the light sensor.
Referring to fig. 1, a traffic signal light signal and power supply are connected to a power supply and a control unit, the traffic signal light signal is transmitted to the control unit through a photocoupling isolation circuit in fig. 2 through an interface J1 in fig. 4, a traffic signal rxR in fig. 2 is connected to an optocoupler U1 through a resistor R1 and then connected to resistors R2 to N to form a loop, a resistor R3 performs a voltage division function, a capacitor C1 performs a filtering function, after the optocoupler U1 is turned on, a network SigRxR presents a low level, the capacitor C2 performs a filtering function, when the optocoupler U1 does not work, the resistor R4 pulls up to cause the SigRxR to present a high level, the network SigRxR is connected to a microprocessor U3 in fig. 4 again, the microprocessor U3 detects the traffic signal condition, the high level is no signal, the low level is a signal, and the traffic signals of RxG, R, Y and G are detected by the microprocessor U3 through the functional circuit to realize that the microprocessor U3 detects the network sigrx, SigrxG, SigR, SigY, SigG, where the network N is the public zero line. The supply lines are connected to power supplies, in this case two power supplies, represented in fig. 4 as networks +24V1, +24V2, which are common to both power supply networks GND, the positive pole supplying the different groups of loads, achieving power independence, where damage to one power supply does not affect the operation of the other group.
In fig. 1, a control unit gets power from a plurality of power supplies and accesses the power supply through an interface J2 in fig. 4, networks +24V1 and +24V2 collect electric energy to a three-terminal regulator U2 through diodes D1 and D2 respectively, and the electric energy is obtained to a control unit power supply network 3V3 through a three-terminal regulator U2, wherein capacitors C3, C4 and C5 play a role in filtering.
In fig. 1, the electrical signal of the light sensor is transmitted to the control unit through the interface J4 in fig. 4, the electrical signal is divided by the resistors R10 and R9 to obtain a voltage signal, and the voltage signal is transmitted to the microprocessor U3 through the network SolarAdc, so that the microprocessor U3 detects the ambient light intensity, wherein the capacitor C6 has a filtering function.
In fig. 1, the control unit controls the ground lamp, which is described with reference to fig. 3 and 4, the network +24V1 is connected to the network Red1 through the fet Q1, the network Red1 is connected to the ground lamp through the interface J3, the microprocessor U3 controls the digital triode Q2 through the network ctred 1, when the network ctred 1 is at a high level, the digital triode Q2 is turned on, the G pole of the fet Q1 obtains a voltage division from the network +24V1 to the network GND through the resistors R5 and R6, the fet Q1 is turned on, the network +24V1 is output to the network Red1 and then is output to the ground lamp through the interface J3, so as to turn on the ground lamp, the microprocessor U3 turns off the digital triode Q2 when the network ctred 1 is controlled to be at a low level, the G pole of the fet Q1 obtains a non-bias voltage from the network +24V1, and the fet Q1 is turned off, so as to turn off the ground. Similarly, networks CtrRed2, ctrgreen 1 and ctrgreen 2 control networks Red2, Gre1 and Gre2 through control circuits of high-power field effect transistors as shown in fig. 3, so as to realize control of multiple groups of output floor lamps, wherein a network +24V1 is in the same control circuit with the networks CtrRed1 and ctrgreen 2, and a network +24V2 is in another control circuit with the networks ctrgreen 1 and ctrgreen 2, so as to realize independent power supply, and individual power supply fault does not affect the other path.
Fig. 3 is a control schematic diagram of a high power fet in the control unit of the present invention. Fig. 4 is a main schematic diagram of the control unit of the present invention. As shown in fig. 3 and 4: the microprocessor U3 is connected to the dial switch through the resistors R7 and R8 through the networks K1 and K2 respectively, the pull-up resistors are integrated in the networks K1 and K2 of the microprocessor U3, when a first switch of the dial switch SW1 is turned on, the network K1 presents low level, when the first switch of the dial switch SW1 is turned off, the network K1 presents high level, and similarly, the network K2 is controlled by a second switch of the dial switch SW 1.
In the system, the microprocessor U3 controls the floor lamp with the ambient light intensity control network Red2, Gre1 and Gre2 according to the detected signals of the networks rxR, rxG, R, Y and G, so that the linkage of the floor lamp and the signal lamp is realized, and the working mode of the floor lamp can be controlled by the dial switch SW 1.
The utility model discloses an in the concrete implementation process, light sensor can be general solar cell panel.
The utility model discloses a photoelectric coupling keeps apart and the traffic signal lamp linkage, realizes the luminous pattern of the different floor-lamps of different signal lamp signal control output, through solar cell panel detection ring border light intensity, the output is opened when accurate realization is closed output and light intensity weak according to ambient light intensity, the power is driven different groups floor-lamps respectively by a plurality of powers, the work of other banks is not influenced in the damage individually, the electric energy that the control unit passes through a plurality of powers of diode set is used, at least one power is normal just can normally work.
The basic principles and the main features of the invention and the advantages of the invention have been shown and described above. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, which are intended to illustrate the principles of the invention, and that various changes and modifications may be made without departing from the spirit and scope of the invention, which is defined by the appended claims and their equivalents.

Claims (7)

1. The utility model provides a floor-lamp control system with traffic signal lamp linkage which characterized in that: the floor lamp control system linked with the traffic signal lamp comprises: the control unit, the power supply and the light sensor; the control unit, the external traffic signal lamp signal and the power supply circuit are powered by a power supply; the external traffic signal lamp signal and power supply circuit and the light sensor are connected to the control unit; the control unit is connected with a floor lamp.
2. The floor lamp control system in conjunction with a traffic signal lamp as claimed in claim 1, wherein: the control unit controls the working mode of the floor lamp according to the external traffic signal lamp signal and controls the working state of the floor lamp according to the ambient light intensity measured by the light sensor; the power supply is a power supply which converts commercial power into low safe voltage and provides safe voltage for the control unit and the control unit to control the work of the floor lamp.
3. A floor lamp control system in conjunction with a traffic signal lamp as claimed in claim 1 or 2, characterized in that: the control unit detects that the external traffic signal is isolated by photoelectric coupling.
4. The floor lamp control system in conjunction with a traffic signal lamp as claimed in claim 1, wherein: the light ray sensor adopts a solar cell panel.
5. The floor lamp control system in conjunction with a traffic signal lamp as claimed in claim 1, wherein: the control unit controls the floor lamps to adopt high-power field effect transistors, and can drive a plurality of floor lamps simultaneously.
6. The floor lamp control system in conjunction with a traffic signal lamp as claimed in claim 1, wherein: the power supply is a power supply for driving different groups of floor lamps to work by a plurality of sub-power supplies respectively, and when a certain sub-power supply fails, the work of other power supplies is not influenced.
7. The floor lamp control system in conjunction with a traffic signal lamp as recited in claim 6, wherein: the control unit provides electric energy for the control unit through the electric energy of diode circuit collection multiple power.
CN201921821365.5U 2019-10-28 2019-10-28 Floor lamp control system linked with traffic signal lamp Active CN211321587U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921821365.5U CN211321587U (en) 2019-10-28 2019-10-28 Floor lamp control system linked with traffic signal lamp

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921821365.5U CN211321587U (en) 2019-10-28 2019-10-28 Floor lamp control system linked with traffic signal lamp

Publications (1)

Publication Number Publication Date
CN211321587U true CN211321587U (en) 2020-08-21

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Application Number Title Priority Date Filing Date
CN201921821365.5U Active CN211321587U (en) 2019-10-28 2019-10-28 Floor lamp control system linked with traffic signal lamp

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114842652A (en) * 2022-04-20 2022-08-02 深圳市旗扬特种装备技术工程有限公司 Traffic signal floor lamp control system

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114842652A (en) * 2022-04-20 2022-08-02 深圳市旗扬特种装备技术工程有限公司 Traffic signal floor lamp control system
CN114842652B (en) * 2022-04-20 2023-02-28 深圳市旗扬特种装备技术工程有限公司 Traffic signal floor lamp control system

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