LED lamp and connecting terminal
By designing positive and negative power connection components, grounding wire connection components, and a waterproof housing on the LED light strip, the problem of unstable electrical connection in traditional LED light strips in waterproof applications is solved, realizing stable power supply and intelligent control in harsh environments, and improving the durability and safety of LED lights.
Patent Information
- Application Number
- CN202520523385.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-25
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2035-03-25
AI Technical Summary
Traditional LED light strips cannot be easily connected to a power source in waterproof applications, resulting in unstable electrical connections, inability to adapt to harsh environments, and the risk of electrical failure.
Multiple positive and negative power connection components and grounding connection components were designed, equipped with a waterproof housing, combined with information data receiving components and PVC electrical connectors, to optimize power layout and data transmission, and enhance the flexibility and reliability of electrical connections.
It enables a stable power supply in a waterproof environment, reduces the risk of electrical failure, improves the durability and intelligent control capabilities of LED lights, and enhances the reliability and safety of the system.
Smart Images

Figure CN223768852U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the field of LED strip lighting, specifically relating to an LED lamp and a connecting terminal. Background Technology
[0002] Traditional LED strips are typically powered at both ends. Current flows through the power supply wires to the LED strip circuit board, which then directs the current to each LED. These strips usually have pads between every few LEDs to facilitate cutting and resoldering for power connection. However, a significant drawback arises when these LED strips are used in waterproof applications: after waterproofing, it becomes impossible to easily connect the power supply via the pads. Utility Model Content
[0003] To address the shortcomings of the prior art, this application provides an LED light strip with connecting terminals. The LED light strip is equipped with multiple LED elements and several sets of power connection components, which are arranged at regular intervals on the LED light strip. Each set of power components includes a positive power component and a negative power component, extending from the top of the light strip. Each LED element is aligned adjacent to a different power connection component. For high-voltage applications, the components on the LED light strip proposed in this application can also be connected to a ground wire. For RGB products, each set of power connection components includes a positive power component, a negative power component, and a data component. The LED light strip proposed in this application is also encased in a waterproof housing to accommodate waterproof applications.
[0004] In a first aspect, this application provides an LED lamp comprising: a circuit board, multiple LED components, a power connection assembly, a power connector, and multiple sets of information data receiving components;
[0005] The circuit board is connected to the LED light strip;
[0006] The power connection assembly includes a positive power supply assembly and a negative power supply assembly, wherein the positive power supply assembly and the negative power supply assembly are both positioned on the light strip and extend upward, and each LED element is matched with each power connection assembly, wherein the positive power supply assembly and the negative power supply assembly are positioned next to the corresponding LED element.
[0007] The power connector includes a positive power connector and a negative power connector, wherein the positive power connector is connected to the positive terminal of the power component and the negative power connector is connected to the negative terminal of the power component.
[0008] This application proposes an LED lamp that reduces power wiring, simplifies electrical connections, and enhances overall design flexibility and maintainability by independently designing power connection components and connectors. Each LED element is paired with a corresponding power connection component, ensuring uniform current distribution and improving power efficiency and luminous efficacy. The circuit board design allows for modular adjustment or replacement to accommodate different LED strip specifications, based on varying application requirements. Furthermore, the independent design of grounding and power components effectively reduces the risk of electrical system failures.
[0009] Meanwhile, the addition of data receiving components on the circuit board enables the LED light to transmit data, achieving intelligent control and feedback. A well-designed power distribution and power component layout optimize current distribution and improve overall heat dissipation, thereby helping to extend the lifespan of LED components and enhance stability.
[0010] Preferably, the LED light proposed in this application includes a waterproof housing that surrounds the LED light strip.
[0011] The waterproof housing design enhances the performance and durability of LED lights, and strengthens their adaptability to harsh environments, enabling LED lights to operate stably in more application scenarios.
[0012] Preferably, the LED lamp proposed in this application further includes a grounding wire connection component and a matching grounding wire power connector; the grounding wire connection component is disposed on the lamp strip and extends upward.
[0013] The design of the grounding wire connection component not only improves the safety, stability and durability of LED lights, but also effectively prevents electrical faults, static electricity accumulation and interference, improves the overall system reliability, and meets electrical safety standards.
[0014] Preferably, the LED light proposed in this application includes an information data receiving component, which includes a first transmission port and a second transmission port;
[0015] The first transmission port and the second transmission port are configured in conjunction with the data component, wherein the data component is located on the other side of the corresponding LED element and is symmetrically distributed with the positive and negative power supply connection components respectively.
[0016] The information data receiving component design proposed in this application, through the symmetrical layout of the first and second transmission ports, helps to balance the signal transmission path, avoid signal attenuation or interference. Simultaneously, the symmetrical distribution of the data component and power connection component achieves electrical layout balance, optimizes current and voltage distribution, and reduces the impact of electrical imbalance on LED component performance. The data component and power connection component work together to reduce LED lamp electrical wiring, avoid excessive concentration and clutter of electrical components in space, effectively improve thermal management and heat dissipation. Furthermore, the symmetrical port and data component layout effectively reduces the impact of external electromagnetic interference on signal transmission, thereby improving the LED lamp's anti-interference capability and enhancing the system's reliability and scalability.
[0017] Preferably, the LED light proposed in this application includes an information data receiving component, which further includes a third transmission port; the third transmission port is connected to a negative power supply component.
[0018] The third transmission port is connected to the negative power supply component to achieve isolation between the power supply and signal transmission sections and stabilize the voltage supply.
[0019] Preferably, the LED lamp proposed in this application also includes a PVC electrical connector at the LED element.
[0020] This application proposes to install PVC electrical connectors at LED components, which can improve the stability and safety of the connection, enhance waterproof, dustproof and corrosion resistance, while reducing installation and maintenance costs and improving the reliability and lifespan of LED lights.
[0021] Preferably, the LED light proposed in this application also includes the use of COB adhesive on the LED light strip.
[0022] This application proposes using COB adhesive on LED light strips, which can effectively improve heat dissipation performance, brightness uniformity and shock resistance, while reducing production costs, improving the reliability and durability of LED lights, and making LED light strips thinner, more flexible, and easier to install and apply.
[0023] Preferably, the LED lamp proposed in this application includes an LED element encapsulated by a waterproof sealed lens.
[0024] This application proposes the use of a waterproof sealed lens package to prevent LED components from getting damp, and also enhances dust resistance, extends component lifespan, and improves luminous efficacy and brightness.
[0025] Preferably, the LED lamp proposed in this application includes the plurality of LED elements positioned on an LED light strip.
[0026] This application proposes to position multiple LED components on an LED light strip, which improves the luminous efficacy, uniformity, heat dissipation performance, shock resistance and cost control of the LED light, while also increasing design flexibility and scalability to adapt to different lighting needs.
[0027] Secondly, this application provides a connection terminal, which includes a power connection component and a power connector, wherein the power connection component and power connector are as described in any of the first aspects.
[0028] The proposed LED lamp design optimizes power connection, improves LED component efficiency through complementary design, and features waterproof protection for outdoor or humid environments, extending lifespan. Grounding connection enhances LED lamp safety, and data integration enables flexibility and intelligence. The overall design allows for wide applicability to various lighting scenarios.
[0029] Compared with the prior art, the advantages of this application are as follows:
[0030] This application discloses an LED lamp and connecting terminal. Through the precise design of the positive and negative power supply components, each LED element is precisely matched, ensuring a stable power supply to each LED element and reducing the impact of power fluctuations on LED lamp performance. The power connector design guarantees reliable power connection, reducing the risk of poor contact and power failure. The LED light strip is also equipped with a waterproof housing, effectively preventing moisture ingress, adapting to harsher environments, and extending its service life. The introduction of a grounding wire connection component provides additional electrical protection, effectively preventing electrical faults from harming equipment and users, and enhancing the safety of the LED lamp.
[0031] Furthermore, through the first, second, and third transmission ports, the LED lights can interact with external devices, supporting remote monitoring and intelligent control systems. Compared to traditional LED lighting fixtures, they possess stronger intelligent control and remote adjustment capabilities.
[0032] Regarding installation and maintenance, this application proposes that LED components can be equipped with PVC electrical connectors, making installation more convenient, improving connection stability, and enhancing anti-interference capabilities. COB adhesive can also be used to strengthen the fixation of the LED components, reducing damage caused by vibration or external forces, and improving the overall structural stability and durability. The LED components are encapsulated with waterproof, sealed lenses, effectively preventing the entry of external contaminants and improving the environmental adaptability and long-term operational reliability of the LED light. Attached Figure Description
[0033] Figure 1 The components of the present invention are shown.
[0034] Figure 2The components of the present invention are shown in their operating mode.
[0035] Figure 3 This is an end view of the component of the present invention.
[0036] Figure 4 The diagram shows the connection of the components of the present invention with a grounding wire.
[0037] Figure 5 Showing Figure 4 The status of the components in the working mode.
[0038] Figure 6 yes Figure 4 The end view of the component.
[0039] Figure 7 The combination of the components of the present invention with the data transmission component is shown.
[0040] Figure 8 Showing Figure 7 The status of the components in the working mode.
[0041] Figure 9 yes Figure 7 The end view of the component.
[0042] Figure 10 The invention's components are shown in use with another alternative light strip.
[0043] Figure 11 Showing Figure 10 The status of the components in the working mode.
[0044] Figure 12 yes Figure 10 The end view of the component.
[0045] Figure 13 The invention's components are shown in use with another alternative light strip.
[0046] Figure 14 Showing Figure 13 The status of the components in the working mode.
[0047] Figure 15 yes Figure 13 The end view of the component.
[0048] Figure 16 The invention's components are shown in use with another alternative light strip.
[0049] Figure 17 Showing Figure 16 The status of the components in the working mode.
[0050] Figure 18yes Figure 16 The end view of the component.
[0051] 1-Plug, 2-Power supply, 3-Positive power connector, 4-Negative power connector, 5P-Positive power connection assembly, 5N-Negative power connection assembly, 6-Waterproof sealed lens, 7-LED lamp element, 8-Resistor, 9-Waterproof housing, 10-Circuit board, 11-Three-phase wire connector, 12-Neutral wire connector, 13-Ground wire connector, 14-Capacitor, 15-Integrated circuit, 16-Address line, 17-Data line, 18-Controller, 19-Wire, 20-PVC electrical connector, 21-COB adhesive, 22-Wire, 23-Ground wire assembly, 24-Ground wire, 25-Address receiver assembly, 26-Data receiver assembly, LS-Light strip. Detailed Implementation
[0052] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions will be clearly and completely described below in conjunction with the embodiments of this application. Obviously, the described embodiments are only some, not all, of the embodiments of this application. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application.
[0053] Embodiment 1: An LED lamp proposed in this application includes: a circuit board, multiple LED components, a power connection assembly, a power connector, and multiple sets of information data receiving components;
[0054] The circuit board is connected to the LED light strip;
[0055] The power connection assembly includes a positive power supply assembly and a negative power supply assembly, wherein the positive power supply assembly and the negative power supply assembly are both positioned on the light strip and extend upward, and each LED element is matched with each power connection assembly, wherein the positive power supply assembly and the negative power supply assembly are positioned next to the corresponding LED element.
[0056] The power connector includes a positive power connector and a negative power connector, wherein the positive power connector is connected to the positive terminal of the power component and the negative power connector is connected to the negative terminal of the power component.
[0057] like Figures 1 to 3 As shown, a circuit board is connected to the light strip and supplies power to LED elements, which are encapsulated by a waterproof, sealed lens. Multiple power connection assemblies are arranged at fixed intervals on the light strip. Each set of power connection assemblies includes positive and negative power components, both located on the light strip and extending upwards. Each LED element is aligned adjacent to a different set of power connection assemblies. The power connection assemblies are pre-installed for connection to terminals on the circuit board. Resistors are also located on the power strip LS.
[0058] The positive and negative power connectors are connected to the power source via wires, and the power source receives power through the plug.
[0059] The waterproof housing, made of waterproof material, surrounds the light strip. This allows the light strip to be used in waterproof applications.
[0060] Therefore, the system proposed in this application provides a quick and easy way to connect the power connection components to a power source; the components are arranged on the circuit board so that they can be easily accessed from any location on the LED strip without affecting the waterproof treatment of the strip through its waterproof housing. Power can be supplied through any set of power connections—that is, the connection of the power connector and the corresponding power connection component—to illuminate the LED elements.
[0061] Preferably, the LED light proposed in this application includes a waterproof housing that surrounds the LED light strip.
[0062] The waterproof housing design enhances the performance and durability of LED lights, and strengthens their adaptability to harsh environments, enabling LED lights to operate stably in more application scenarios.
[0063] Preferred, such as Figures 4 to 6 As shown, the LED lamp proposed in this application further includes a grounding wire connection assembly and a matching grounding wire power connector; the grounding wire connection assembly is disposed on the lamp strip and extends upward.
[0064] The design of the grounding wire connection component not only improves the safety, stability and durability of LED lights, but also effectively prevents electrical faults, static electricity accumulation and interference, improves the overall system reliability, and meets electrical safety standards.
[0065] Preferred, such as Figures 7 to 9 As shown, this application proposes an LED light, which includes an information data receiving component, the information data receiving component including a first transmission port and a second transmission port;
[0066] The first transmission port and the second transmission port are configured in conjunction with the data component, wherein the data component is located on the other side of the corresponding LED element and is symmetrically distributed with the positive and negative power supply connection components respectively.
[0067] Preferably, the LED light proposed in this application includes an information data receiving component, which further includes a third transmission port; the third transmission port is connected to a negative power supply component.
[0068] The third transmission port is connected to the negative power supply component to achieve isolation between the power supply and signal transmission sections and stabilize the voltage supply.
[0069] The information data receiving components proposed in this application each include an address receiving component and a data receiving component arranged on the light strip and extending upwards. The controller receives power through wires and transmits information to the address line connector and data line connector via data lines to the address receiving component and data receiving component. Additional data can be transmitted from the controller to the power connector via the data line.
[0070] like Figures 10 to 12 The LED light proposed in this application can also replace the light strip.
[0071] Preferred, such as Figures 13 to 15 The present application discloses an LED lamp, which may also include a PVC electrical connector at the LED element.
[0072] This application proposes to install PVC electrical connectors at LED components, which can improve the stability and safety of the connection, enhance waterproof, dustproof and corrosion resistance, while reducing installation and maintenance costs and improving the reliability and lifespan of LED lights.
[0073] Preferred, such as Figures 16 to 18 As shown, this application proposes an LED light, which also includes the option to use COB adhesive on the LED light strip.
[0074] This application proposes using COB adhesive on LED light strips, which can effectively improve heat dissipation performance, brightness uniformity and shock resistance, while reducing production costs, improving the reliability and durability of LED lights, and making LED light strips thinner, more flexible, and easier to install and apply.
[0075] Preferably, the LED lamp proposed in this application includes an LED element encapsulated by a waterproof sealed lens.
[0076] This application proposes the use of a waterproof sealed lens package to prevent LED components from getting damp, and also enhances dust resistance, extends component lifespan, and improves luminous efficacy and brightness.
[0077] Preferably, the LED lamp proposed in this application includes the plurality of LED elements positioned on an LED light strip.
[0078] This application proposes to position multiple LED components on an LED light strip, which improves the luminous efficacy, uniformity, heat dissipation performance, shock resistance and cost control of the LED light, while also increasing design flexibility and scalability to adapt to different lighting needs.
[0079] Embodiment 2: A connection terminal proposed in this application includes a power connection component and a power connector, wherein the power connection component and power connector are as described in any of the first aspects.
[0080] The LED lamp design proposed in this application effectively reduces the risk of poor contact and loosening through the matching design of power connection components and connectors. The clear allocation of power connectors makes subsequent maintenance work more efficient, can adapt to different power systems, and the connection terminal design improves connection stability, simplifies installation and maintenance, enhances power compatibility, optimizes electrical performance, saves space, and increases system safety, thereby improving the overall performance and reliability of the equipment.
[0081] Although exemplary embodiments have been described herein with reference to the accompanying drawings, it should be understood that the above exemplary embodiments are merely illustrative and are not intended to limit the scope of this application. Various changes and modifications can be made therein by those skilled in the art without departing from the scope and spirit of this application. All such changes and modifications are intended to be included within the scope of this application as claimed in the appended claims.
[0082] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.
[0083] Although the description of this application has been given in conjunction with the specific embodiments described above, it will be apparent to those skilled in the art that many substitutions, modifications, and variations can be made based on the foregoing. Therefore, all such substitutions, modifications, and variations are included within the spirit and scope of the appended claims.
Claims
1. An LED lamp, characterized in that, The application relates to a LED lamp strip, comprising: a circuit board, a plurality of LED elements, a power supply connecting assembly, a power supply connector and a plurality of information data receiving assemblies; The circuit board is connected with the LED lamp strip; The power supply connecting assembly comprises a positive power supply assembly and a negative power supply assembly, wherein the positive power supply assembly and the negative power supply assembly are positioned on the lamp strip and extend upwards, each LED element is arranged in matched mode with each power supply connecting assembly, and the positive power supply assembly and the negative power supply assembly are arranged beside the corresponding LED element; The power supply connector comprises a positive power supply connector and a negative power supply connector, wherein the positive power supply connector is connected with the positive end of the power supply assembly, and the negative power supply connector is connected with the negative end of the power supply assembly.
2. The LED lamp of claim 1, wherein, The LED lamp strip is enclosed by a waterproof shell.
3. The LED lamp of claim 1, wherein, The LED lamp strip further comprises a grounding wire connecting assembly and a matched grounding wire power supply connector; The grounding wire connecting assembly is arranged on the lamp strip and extends upwards.
4. The LED lamp of claim 1, wherein, The information data receiving assembly comprises a first transmission port and a second transmission port; The first transmission port and the second transmission port are arranged in matched mode with data assemblies, wherein the data assemblies are arranged beside the corresponding LED element and are symmetrically distributed with the positive and negative power supply connecting assemblies.
5. The LED lamp of claim 4, wherein, The information data receiving assembly further comprises a third transmission port; The third transmission port is connected with the negative power supply assembly.
6. The LED lamp of claim 1, wherein, The LED element is further provided with a PVC electrical connector.
7. The LED lamp of claim 1, wherein, The LED lamp strip is further provided with COB glue.
8. The LED lamp of claim 1, wherein, The LED element is enclosed by a waterproof sealed lens.
9. The LED lamp of claim 1, wherein, The plurality of LED elements are positioned on the LED lamp strip.
10. A connection terminal characterized by comprising: The connecting terminal comprises the power supply connecting assembly and the power supply connector, and the power supply connecting assembly and the power supply connector are as described in any one of claims 1 to 9.