Inductive lighting system with controllable inductive switch

By designing a motion-activated lighting system controllable by a motion-activated switch, and utilizing a dual-control control panel and delay function, the problem of motion-activated lights not being able to stay on continuously is solved, achieving flexible light control and meeting the lighting needs of multiple scenarios.

CN223872439UActive Publication Date: 2026-02-03CHINA AVIATION PLANNING AND DESIGN INSTITUTE (GROUP) CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202520418660.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-11
Publication Date
2026-02-03
Estimated Expiration
2035-03-11

AI Technical Summary

Technical Problem

In existing technologies, sensor lights cannot remain constantly lit for a specific period of time, and there is a lack of flexible control solutions.

Method used

A sensor-controlled lighting system was designed, which switches between a constant-on path and a sensor-controlled path through a dual-control control panel. By combining a human body detection sensor and a sensor-assisted motion element, a delay control is achieved.

Benefits of technology

It enables the switching of the lamps to be constantly on within a specific time period, improving the flexibility and applicability of control and meeting the lighting needs of different scenarios.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223872439U_ABST
    Figure CN223872439U_ABST
Patent Text Reader

Abstract

The utility model relates to an inductive lighting system with a controllable inductive switch, and the system comprises a first wiring module which is provided with a plurality of wiring terminals and is used for switching on a mains supply; the multi-channel lighting unit is used for providing a lamp normally-on channel and an inductive control channel; and the illumination double-control control panel is used for connecting the first wiring module and the multi-channel illumination unit so as to realize the switching of the lamp normally-on channel and the inductive control channel. The lighting double-control panel is arranged to control switching of the lamp normally-on access and the inductive control access, the lamp normally-on access and the inductive control access can be flexibly controlled to be switched, and the flexibility is improved.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present disclosure relates to the technical field of electrical lighting, and particularly relates to an inductive lighting system controllable by an inductive switch. BACKGROUND

[0002] With the relevant requirements of the country for energy saving, the lighting lamps in public areas such as corridors and staircases are controlled to turn on and off by human body induction intelligent control mode. However, in specific situations, the inductive lamps need to be in a constant-on state for a certain period of time, instead of in an inductive control state. In the related art, there is no relevant solution. CONTENT OF THE UTILITY MODEL

[0003] In order to overcome the problems in the related art, the present disclosure provides an inductive lighting system controllable by an inductive switch to solve the above problems.

[0004] An inductive lighting system controllable by an inductive switch, comprising:

[0005] A first wiring module provided with a plurality of wiring terminals for connecting to commercial power;

[0006] A multi-path lighting unit for providing a lamp constant-on path and an inductive control path;

[0007] A lighting double-control control panel for connecting the first wiring module and the multi-path lighting unit to realize switching of the lamp constant-on path and the inductive control path;

[0008] A single-blade double-way switch, a first contact and a second contact are arranged on the lighting double-control control panel;

[0009] In the case that the moving end of the single-blade double-way switch touches the first contact, the lamp constant-on path is connected;

[0010] In the case that the moving end of the single-blade double-way switch touches the second contact, the inductive control path is connected;

[0011] The fixed end of the single-blade double-way switch is connected to the live wire wiring terminal in the first wiring module.

[0012] In some embodiments, the multi-path lighting unit comprises:

[0013] A lighting light source module, an inductive control module and a second wiring module;

[0014] The lighting light source module is used for providing lighting light sources for the lamp constant-on path and the inductive control path;

[0015] The inductive control module is used for controlling the on-off of the inductive control path;

[0016] The second wiring module is provided with a plurality of wiring terminals for connecting the lighting source module and the sensing control module respectively.

[0017] In some embodiments, the first wiring module is provided with a plurality of wiring terminals, specifically including a zero line wiring terminal for connecting the zero line of the mains;

[0018] a live line wiring terminal for connecting the live line of the mains.

[0019] In some embodiments, the sensing control module includes a human body detection sensing element and a sensing auxiliary action element.

[0020] The human body detection sensing element is configured to send an instruction to the sensing auxiliary action element when a human body is detected.

[0021] The sensing auxiliary action element is configured to receive the instruction sent by the human body detection sensing element, start a delay timing function, and perform a switching action to control the on-off of the sensing control path after the delay reaches a specified time.

[0022] In some embodiments, the sensing control path includes a first terminal located at the output end of the lighting source module.

[0023] a second terminal located at the input end of the sensing control module and connected to the first terminal;

[0024] a third terminal located at the output end of the sensing control module;

[0025] The human body detection sensing element and the sensing auxiliary action element are connected in series between the second terminal and the third terminal.

[0026] The first wiring terminal in the second wiring module is connected to the third terminal and the second contact.

[0027] In some embodiments, the lamp constant-on path includes a fourth terminal located between the first terminal and the second terminal.

[0028] A second wiring terminal is located in the second wiring module and is connected to the fourth terminal and the first contact.

[0029] In some embodiments, the second wiring module is further provided with a third wiring terminal connected to the ground wiring terminal in the first wiring module.

[0030] In some embodiments, the second wiring module is further provided with a fourth wiring terminal, the fourth wiring terminal is connected with the zero line wiring terminal in the first wiring module, a fifth terminal on the lighting source module and a sixth terminal of an output terminal in the induction control module respectively.

[0031] The technical scheme provided by the embodiments of the present disclosure can have the following beneficial effects:

[0032] The present application can control the switching of the constant lighting path and the induction control path of the lamp through the setting of the lighting double control panel, and can flexibly switch the constant lighting path and the induction control path of the lamp, thereby improving the flexibility.

[0033] It should be understood that the above general description and the following detailed description are only exemplary and explanatory, and cannot limit the present disclosure. BRIEF DESCRIPTION OF DRAWINGS

[0034] The accompanying drawings, which are incorporated into and form part of the specification, illustrate embodiments consistent with the present disclosure and, together with the description, serve to explain the principles of the disclosure.

[0035] Figure 1 is a structural diagram of an induction switch controllable induction lighting system according to an exemplary embodiment; Figure 2 is a lighting system diagram according to an exemplary embodiment;

[0036] Figure 3 is a flowchart of a lighting control method according to an exemplary embodiment. DETAILED DESCRIPTION

[0037] Example embodiments now will be described more fully hereinafter with reference to the accompanying drawings. Example embodiments, however, can be implemented in many different forms and should not be construed as limited to the examples set forth herein; rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the scope of example embodiments to those skilled in the art. The described features, structures, or characteristics can be combined in one or more embodiments. In the following description, numerous specific details are provided to give a thorough understanding of embodiments of the present disclosure. One skilled in the relevant art will recognize, however, that the techniques described herein can be practiced without one or more of the specific details, or with other methods, components, materials, etc.

[0038] The described features, structures, or characteristics can be combined in one or more embodiments. In the following description, numerous specific details are provided to give a thorough understanding of embodiments of the present disclosure. One skilled in the relevant art will recognize, however, that the techniques described herein can be practiced without one or more of the specific details, or with other methods, components, materials, etc. In other instances, well-known structures, materials, or operations are not shown or described in detail in order to avoid obscuring aspects of the application.

[0039] When a structure is "on" another structure, it can mean that the structure is integrally formed on the other structure, or that the structure is "directly" disposed on the other structure, or that the structure is "indirectly" disposed on the other structure through another structure.

[0040] The terms "one", "a", "said" are used to denote the presence of one or more elements / components / etc.; the terms "include" and "have" are used to indicate an open, inclusive meaning and that additional elements / components / etc. can be present in addition to those listed; the terms "first" and "second" etc. are used as labels, and do not denote a quantity or a numerical order.

[0041] The present application provides an inductive lighting system controllable by an inductive switch, referring to a structural schematic diagram of an inductive switch controllable inductive lighting system shown in the accompanying drawings. Figure 1 The system comprises:

[0042] A first wiring module 21 is provided with a plurality of wiring terminals for connecting to the mains.

[0043] A multi-path lighting unit 4 is used to provide a constant lighting path and an inductive control path for the lamp.

[0044] A lighting double-control control panel 23 is used to connect the first wiring module and the multi-path lighting unit, and to switch the constant lighting path and the inductive control path for the lamp.

[0045] The lighting double-control control panel 23 is provided with a single-blade double-way switch, a first contact and a second contact.

[0046] When the moving end of the single-blade double-way switch touches the first contact, the constant lighting path for the lamp is connected.

[0047] When the moving end of the single-blade double-way switch touches the second contact, the inductive control path for the lamp is connected.

[0048] The fixed end of the single-blade double-way switch is connected to the live wire terminal in the first wiring module.

[0049] The above technical solution of the present application controls the switching of the constant lighting path and the inductive control path for the lamp by providing a lighting double-control control panel, which can flexibly switch the constant lighting path and the inductive control path for the lamp, and improves flexibility.

[0050] In some embodiments, the multi-path lighting unit 4 comprises a lighting light source module 1, an inductive control module 2 and a second wiring module 3.

[0051] The lighting source module 1 is used to provide lighting source for the constant-on path and the induction control path of the lamp.

[0052] The induction control module 2 is used to control the on-off of the induction control path.

[0053] The second wiring module 3 is provided with a plurality of wiring terminals, which are used to connect the lighting source module 1 and the induction control module 2 respectively.

[0054] In some embodiments, the first wiring module 21 is provided with a plurality of wiring terminals, specifically including a neutral line wiring terminal N, which is used to connect the neutral line of the mains.

[0055] A live line wiring terminal L is used to connect the live line of the mains.

[0056] A ground terminal PE is used for grounding.

[0057] In some embodiments, the induction control module 2 includes a human body detection induction element 5 and an induction auxiliary action element 6.

[0058] The human body detection induction element 5 is used to send instructions to the induction auxiliary action element when a human body is detected.

[0059] The induction auxiliary action element 6 is used to receive the instructions sent by the human body detection induction element, start a delay timing function, and perform a switching action after the delay reaches a specified time to control the on-off of the induction control path.

[0060] In some embodiments, the induction auxiliary action element 6 can include:

[0061] A receiving module is used to receive instruction signals from the human body detection induction element (such as infrared sensors, cameras, etc.). This module needs to have high sensitivity and low false alarm rate to ensure accurate reception of human body detection signals.

[0062] A delay timing module is used to start a delay timing function after receiving the instruction signal. This module can count according to the preset delay time (such as 5 minutes, 10 minutes, etc.) and output a control signal when the specified time is reached.

[0063] A switching action module is used to perform a switching action to control the on-off of the induction control path after the delay timing module outputs the control signal. This module needs to have stable switching performance and long service life.

[0064] The working process of the induction auxiliary action element 6 is as follows:

[0065] The human body detection sensing element detects the human body entering or leaving the designated area and sends an instruction signal to the receiving module of the sensing auxiliary action element 6.

[0066] After the receiving module receives the instruction signal, the signal is transmitted to the delay timing module, and the delay timing function is started.

[0067] The delay timing module counts according to the preset delay time. During the counting process, if the instruction signal of the human body detection sensing element is received again (such as the human body entering the area again during the delay period), the counting is restarted.

[0068] When the delay reaches the specified time, the delay timing module outputs a control signal to the switch action module.

[0069] After the switch action module receives the control signal, it performs a switch action to control the on-off of the sensing control path. For example, if the sensing control path is connected to a lighting device, the switch action module will turn off the lighting device.

[0070] In this embodiment, the sensing control path includes: a first terminal 15 located at the output end of the lighting source module 1. A second terminal 13 is located at the input end of the sensing control module 2, and is connected to the first terminal 15. A third terminal 12 is located at the output end of the sensing control module 2. Between the second terminal 13 and the third terminal 12, the human body detection sensing element 5 and the sensing auxiliary action element 6 are arranged in series. The wiring terminal 9 in the second wiring module 3 is connected to the third terminal 12 and the second contact respectively.

[0071] In some embodiments, the lamp constant-on path includes: a fourth terminal 14 located between the first terminal 15 and the second terminal 13.

[0072] A second wiring terminal 8 is located in the second wiring module 3; the second wiring terminal 8 is connected to the fourth terminal 14 and the first contact respectively.

[0073] In some embodiments, the second wiring module 3 further comprises a third wiring terminal 10, which is connected to the ground wiring terminal PE in the first wiring module 21.

[0074] In some embodiments, the second wiring module 3 further comprises a fourth wiring terminal 7, which is connected to the neutral wiring terminal N in the first wiring module 21, the fifth terminal 16 on the lighting source module, and the sixth terminal 11 of the output end in the sensing control module 2 respectively.

[0075] The following is described according to the accompanying drawingsFigure 2 The application is further described in detail by the specific embodiments shown. Three sets of the multi-pass lighting units of the application are arranged in the corridor; three wires are threaded in the pipe A between the power distribution box and the nearest multi-pass lighting unit, which are the phase wire, the N wire and the PE wire; four wires are threaded in the pipe B between the lighting control panel and the multi-pass lighting unit, which are the phase wire, the control wire, the N wire and the PE wire; four wires are threaded in the pipe C between two multi-pass lighting units, which are the phase wire, the control wire, the N wire and the PE wire; when the lighting control panel is switched to the always-on position, the multi-pass lighting unit is always on, which is suitable for the corridor that needs to be always on instead of being dimmed on and off according to the presence or absence of people; if the light needs to be turned off, the lighting control panel is switched to another position, at which time the light in the corridor is automatically turned off when there is no one; when the lighting control panel is switched to the induction control position, it is suitable for the corridor that needs energy-saving control, and the light is on if there is someone and is turned off after a delay when the person leaves; if there is no one, the light is always off.

[0076] Referring to the accompanying drawings Figure 3 The control method shown includes the following steps:

[0077] In step S101, it is determined whether the induction control pass is connected; if yes, step S102 is executed, and if no, step S112 is executed;

[0078] In step S102, the power input terminal of the induction control module is connected, and the power supply is connected;

[0079] In step S103, the on-off of the lamp is controlled by induction;

[0080] In step S104, it is determined whether there is someone in the control range;

[0081] In step S105, the auxiliary contact of the induction control module is closed, the induction pass is conducted, and the timing is triggered;

[0082] In step S106, the lamp is on;

[0083] In step S107, it is determined whether the set time is reached;

[0084] In step S108, the auxiliary contact of the induction control module is opened, and the induction pass is not conducted;

[0085] In step S109, the lamp is off;

[0086] In step S110, the auxiliary contact of the induction control module is kept open, and the induction pass is not conducted;

[0087] In step S111, the lamp is off;

[0088] In step S112, the relevant line is connected, the power input terminal of the lamp induction module is disconnected, and there is no power input;

[0089] In step S113, the lamp is always on and not controlled by induction.

[0090] The above technical solution of the present application, in cooperation with a double control lighting switch or a double control switch with an intermediate gear, can realize that the induction (automatic control) multi-path lighting unit is turned on and off in the use process. When turned on, the multi-path lighting unit realizes the automatic control function of turning on the light when a person comes and turning off the light when the person leaves (with a delay); when turned off, the multi-path lighting unit is a common lamp, realizing manual on-off. The present application realizes the function of multi-scene control requirement. It truly realizes the purposes of simple power distribution system, low overall cost, convenient implementation, and flexible use.

[0091] Other embodiments of the present disclosure will be apparent to those skilled in the art from consideration of the specification and practice of the present disclosure. This application is intended to cover any variations, uses, or adaptations of the present disclosure following the general principles thereof and including such departures from the present disclosure that come within known use or custom in the art. The specification and examples are to be regarded as illustrative only, and the true scope and spirit of the present disclosure are indicated by the following claims.

[0092] It should be understood that the present disclosure is not limited to the precise construction that has been described and shown in the accompanying drawings, and that various modifications and changes can be made by those skilled in the art without departing from the scope of the present disclosure. The scope of the present disclosure is limited only by the claims that follow.

Claims

1. A motion-activated lighting system controllable by a motion-activated switch, characterized in that, include: The first wiring module is equipped with multiple wiring terminals for connecting to mains power; A multi-path lighting unit is used to provide a constant-on path for the luminaire and a sensor control path; A dual-control lighting control panel is used to connect the first wiring module and the multi-channel lighting unit to switch between the constant-on path and the sensor control path of the lamp. The lighting dual-control control panel is equipped with a single-pole two-way switch, with a first contact and a second contact; When the movable end of the single-pole bidirectional switch touches the first contact, the constant-on path of the lamp is connected. When the movable end of the single-pole bidirectional switch touches the second contact, the sensing control path is connected; The fixed end of the single-pole bidirectional switch is connected to the live wire terminal in the first wiring module.

2. The sensor-controlled lighting system according to claim 1, characterized in that, The multi-channel lighting unit includes: Lighting source module, sensor control module, and second wiring module; The lighting source module is used to provide a lighting source for the constant-on path of the lamp and the sensing control path; The sensing control module is used to control the on / off state of the sensing control path. The second wiring module is provided with multiple wiring terminals for connecting the lighting source module and the sensing control module respectively.

3. The sensor-controlled lighting system according to claim 2, characterized in that, The first wiring module is provided with multiple wiring terminals, specifically including a neutral wire terminal for connecting the neutral wire of the mains power; The live wire terminal is used to connect the live wire to the mains power supply.

4. The sensor-controlled lighting system according to claim 3, characterized in that, The sensing control module includes: a human body detection sensing element and a sensing-assisted motion element; The human body detection sensor is used to send a command to the sensing-assisted motion element when a human body is detected. The sensing auxiliary action element is used to receive the instruction sent by the human body detection sensing element, start the delay timer function, and perform a switching action after the delay reaches the specified time to control the on / off state of the sensing control path.

5. The sensor-controlled lighting system according to claim 1, characterized in that, The sensing control path includes: a first terminal, which is located at the output end of the lighting source module; The second terminal is located at the input end of the sensing control module and is connected to the first terminal; The third terminal is located at the output end of the sensing control module; A human body detection sensor and a sensor-assisted motion element are connected in series between the second terminal and the third terminal; The first terminal in the second wiring module is connected to the third terminal and the second contact, respectively.

6. The sensor-controlled lighting system according to claim 5, characterized in that, The constantly lit path of the lamp includes: a fourth terminal, which is located between the first terminal and the second terminal; The second terminal is located in the second wiring module; the second terminal is connected to the fourth terminal and the first contact respectively.

7. The sensor-controlled lighting system according to claim 6, characterized in that, The second wiring module is also provided with a third wiring terminal, which is connected to the grounding terminal in the first wiring module.

8. The sensor-controlled lighting system according to claim 6, characterized in that, The second wiring module is also provided with a fourth wiring terminal, which is connected to the neutral wire terminal in the first wiring module, the fifth terminal on the lighting source module, and the sixth terminal of the output terminal in the sensing control module.