Improved structure of a light strip type electric light source
Patent Information
- Application Number
- CN202522280268.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-28
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-10-28
AI Technical Summary
[0002]现有的灯带,包括带条、设置在带条上的一对导电体条、沿带条均匀分布的且连接在一对导电体之间的光源体,使用时,根据所需要的长度,分切灯带,然后使一对导电体条与电源控制装置连接,就可以控制灯带上的光源体工作,这种灯带,由于很方便地根据所需要的长度分切,因此,使用灵活方便,但是,受灯带的性质所决定,一来不容易进行快速固定,需要制造匹配的支撑结构进行固定,因此,成本高,应用起来麻烦,而且,不容易灵活进行造型上的设计固定,为此,有人发明了这样一种技术,该技术包括带有取电构件的快接构件、柔性线条灯、快接线缆,柔性线条灯包括软基带、固定在软基带后部的灯带,灯带包括设置在带条上的一对导电体条、沿带条均匀分布的且连接在一对导电体条之间的光源体,快接线缆包括绝缘带、并排设置在绝缘带上下两边的导线,快接线缆是导线外露式的快接线缆,或者快接线缆是导线内藏式的快接线缆,软基带前面设置有与快接线缆连接的连接结构,软基带通过连接结构连接在快接线缆的后面,快接构件是使取电构件直达快接线缆上的导线和使取电构件直达软基带后部的灯带上的导电体条,并使快接线缆的导线与灯带上匹配的导电体条导通的快接构件,快接构件上的取电构件有两对,两对取电构件分别直达快接线缆的导线及软基带后部的灯带上的导电体条,其中一对取电构件分别与快接线缆的两导线连接,另一对取电构件分别与灯带上的两导电体条连接,其中一对取电构件通过导电构件与匹配的另一对取电构件连接,使快接线缆导线上的电源通过取电构件、导电构件传导到灯带的导电体条上,该专利申请技术使用时,根据设计要求裁切柔性线条灯,使柔性线条灯的长度符合设计要求,然后将柔性线条灯连接定位在快接线缆上,将快接构件连接在柔性线条灯上,使快接构件的取电构件直达快接线缆的导线(如果快接线缆是导线外露式的快接线缆,取电构件是导电头,导电头按压在外露的导线上,如果快接线缆是导线内藏式的快接线缆,取电构件是导电针,导电针刺进绝缘带并与绝缘带内的导线连接)和使快接构件的取电构件(导电针)刺进软基带后直达灯带的导电体条,使快接线缆的导线与灯带上匹配的导电体条导通,以便从快接线缆上取电后将电源传导到柔性线条灯的灯带导电体条上,进而传导到光源体上,这样,就能通过设置在快接构件上或者与快接构件连接的控制电路就能控制灯带的工作;该专利申请技术由于需要两对取电构件,因此,其快接构件结构复杂,体积大,制造成本高,使用复杂,容易影响产品的整体美感
[0007]采用一对取电构件并使取电构件与导电体条、导线连通,采用带有盖竖向部分的盖与L形底座相互扣合相互扣合即可,使快接构件整体结构简单,体积小,制造成本低,使用简单,不容易影响产品的整体美感。
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Figure CN224801576U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of electric light source technology, and in particular to an improved structure of a strip lamp electric light source. Background Technology
[0002] Existing LED strips include a strip, a pair of conductive strips mounted on the strip, and light sources evenly distributed along the strip and connected between the pair of conductors. In use, the strip is cut to the required length, and then the pair of conductive strips are connected to a power control device to control the light sources. This type of strip is flexible and convenient to use because it can be easily cut to the required length. However, due to the nature of LED strips, they are not easy to quickly fix, requiring the manufacture of matching support structures for fixation, resulting in high cost and cumbersome application. Furthermore, they are not easy to design and fix in a flexible manner. Therefore, a technology has been invented that includes a quick-connect component with a power-gathering element. Flexible linear lights and quick-connect cables are included. The flexible linear light comprises a flexible base strip and a light strip fixed to the rear of the base strip. The light strip includes a pair of conductive strips mounted on the strip and light sources evenly distributed along the strip and connected between the conductive strips. The quick-connect cable includes an insulating strip and conductors arranged side-by-side on the upper and lower sides of the insulating strip. The quick-connect cable can be either an exposed conductor cable or a concealed conductor cable. A connection structure for connecting the quick-connect cable is provided at the front of the flexible base strip. The flexible base strip is connected to the rear of the quick-connect cable through the connection structure. The quick-connect component allows the power-taking component to directly reach the conductors on the quick-connect cable and the conductive strips on the light strip at the rear of the flexible base strip, and matches the conductors on the quick-connect cable with the conductive strips on the light strip. The quick-connect component with conductive strip has two pairs of power-taking components. These two pairs of power-taking components directly connect to the conductors of the quick-connect cable and the conductive strips on the lamp strip at the rear of the flexible base strip. One pair of power-taking components connects to the two conductors of the quick-connect cable, and the other pair connects to the two conductive strips on the lamp strip. One pair of power-taking components connects to the matching other pair of power-taking components via conductive components, allowing the power from the quick-connect cable conductors to be conducted to the conductive strips of the lamp strip through the power-taking components and conductive components. When using this patented technology, the flexible linear lamp is cut to the required length according to design requirements. Then, the flexible linear lamp is connected and positioned on the quick-connect cable, and the quick-connect component is connected to the flexible linear lamp. The power-taking component of the quick-connect component directly reaches the conductor of the quick-connect cable (if the quick-connect cable is an exposed conductor type, the power-taking component is a conductive head, which presses against the exposed conductor; if the quick-connect cable is an internal conductor type, the power-taking component is a conductive needle, which pierces into the insulating tape and connects to the conductor inside the insulating tape). The power-taking component (conductive needle) of the quick-connect component pierces into the flexible base tape and then directly reaches the conductive strip of the light strip, so that the conductor of the quick-connect cable is connected to the matching conductive strip on the light strip, so that the power is drawn from the quick-connect cable and conducted to the conductive strip of the flexible linear light, and then conducted to the light source. In this way, the operation of the light strip can be controlled by the control circuit set on or connected to the quick-connect component.Because this patented technology requires two pairs of power-generating components, its quick-connect component structure is complex, large in size, has high manufacturing costs, is complicated to use, and can easily affect the overall aesthetics of the product. Summary of the Invention
[0003] The purpose of this invention is to provide an improved structure for a strip light source that is simple in structure, small in size, low in manufacturing cost, easy to use, and does not easily affect the overall aesthetics of the product.
[0004] The improved structure of this utility model's LED strip light source is achieved as follows: It includes a quick-connect component with a power-collecting element, a flexible linear light, and a quick-connect cable. The flexible linear light includes a flexible base strip and a light strip fixed to the rear of the base strip. The light strip includes a pair of conductive strips disposed on the strip and light sources evenly distributed along the strip and connected between the pair of conductive strips. The quick-connect cable includes an insulating strip and conductors arranged side-by-side on the upper and lower sides of the insulating strip. The quick-connect cable can be either an exposed conductor cable or a concealed conductor cable. A connecting structure for connecting the quick-connect cable is provided in front of the flexible base strip. The flexible base strip is connected to the rear of the quick-connect cable through the connecting structure. The quick-connect component enables the power-collecting element to directly reach the conductors on the quick-connect cable and enables the power-collecting element to directly reach the conductors on the quick-connect cable. The quick-connect component is a pair of power-taking components. Each power-taking component has two conductive pins, one facing the conductive strip on the LED strip of the flexible LED strip and the other facing the conductor of the quick-connect cable. The quick-connect component includes a driving component that drives the power-taking component to pierce the flexible LED strip and the quick-connect cable stacked on top of each other, causing one conductive pin to pierce the conductive strip on the LED strip of the flexible LED strip and the quick-connect cable stacked on top of each other. The driving component also includes a driving component that drives the power-taking component to pierce the flexible LED strip and the quick-connect cable stacked on top of each other, causing one conductive pin to pierce the conductive strip on the LED strip of the flexible LED strip and the other conductive pin to pierce the conductor of the quick-connect cable.
[0005] Preferably, the quick-connect component includes a cover as a driving member, and a pair of power-taking components are disposed under the cover. One conductive pin of the power-taking component is aligned with the conductive strip on the LED strip of the flexible baseband, and the other conductive pin of the power-taking component is aligned with the wire of the quick-connect cable. The cover can drive the power-taking component to insert one of the conductive pins into the conductive strip on the LED strip of the flexible baseband, and the cover can drive the power-taking component to insert the other conductive pin into the wire of the quick-connect cable.
[0006] Preferably, the quick-connect component includes an L-shaped base and a cover with a vertical portion serving as a driving member. A hook is provided on the inner side of the vertical portion of the L-shaped base, and a buckle matching the hook is provided at the free end of the cover with the vertical portion. The free end of the cover with the vertical portion is connected to the free end of the horizontal portion of the L-shaped base via a flexible connection. A pair of power-taking components are disposed under the cover with the vertical portion. One conductive pin of the power-taking component is aligned with the conductive strip on the LED strip of the flexible base, and the other conductive pin of the power-taking component is aligned with the wire of the quick-connect cable. The cover with the vertical portion and the L-shaped base are interlocked on the flexible linear LED and the quick-connect cable stacked on top of each other, so that the hook is fastened to the buckle. The cover with the vertical portion drives the power-taking component to insert one conductive pin into the conductive strip on the LED strip of the flexible base, and the cover with the vertical portion drives the power-taking component to insert the other conductive pin into the wire of the quick-connect cable.
[0007] The quick-connect component uses a pair of power-taking components and connects them to the conductive strip and wire. The cover with a vertical part and the L-shaped base are interlocked. This makes the quick-connect component simple in structure, small in size, low in manufacturing cost, easy to use, and does not easily affect the overall aesthetics of the product.
[0008] In use, stack the flexible linear light on the quick-connect cable, aligning the conductive strip of the flexible linear light with the corresponding wire of the quick-connect cable. Place the L-shaped base under the stacked flexible linear light and quick-connect cable. Flip the cover with the vertical part so that it is placed on top of the flexible linear light and pressed towards the quick-connect cable. This causes one conductive pin of the power-taking component to pierce the conductive strip on the flexible base strip, while the other conductive pin of the power-taking component pierces the wire of the quick-connect cable, connecting the power-taking component with the conductive strip and wire. Simultaneously, fasten the hook to the buckle to ensure a stable connection between the cover with the vertical part and the L-shaped base, thus preventing the power-taking component from detaching from the conductive strip and wire.
[0009] Preferably, the top of the hook is a slope. When the cap with the vertical part is connected to the L-shaped base using the slope, the buckle can smoothly slide into the range of the hook's action.
[0010] Compared with existing technologies, this utility model has the advantages of simple structure, small size, low manufacturing cost, simple use, and less likely to affect the overall aesthetics of the product. Attached Figure Description
[0011] Figure 1 This is a schematic diagram of the improved structure of the LED strip light source of this utility model; Figure 2 This is a schematic diagram of a strip light source after it has been powered on. Figure 3 This is a schematic diagram of a flexible linear light structure; Figure 4 A schematic diagram of a quick-connect cable with exposed conductors; Figure 5 This is a schematic diagram of a quick-connect cable with a cable cord.
[0012] Explanation of reference numerals: 1-Quick-connect component; 102-Power supply component; 1021-Conductive pin; 107-Vertical part of base; 108-L-shaped base; 109-Cover with vertical part; 110-Hook; 1101-Bevel; 111-Snap; 112-Flexible connection; 113-Vertical wall; 114-Groove; 115-Notch; 2-Flexible linear light; 201-Soft base strip; 202-Light strip; 2021-Strip; 2022-Conductive strip; 2023-Light source; 203-Connection structure; 204-Through hole; 3-Quick-connect cable; 301-Insulating tape; 302-Wire; 303-Cable. Detailed Implementation
[0013] The improved structure of the LED strip light source of this utility model will now be described in further detail with reference to the accompanying drawings and embodiments: Example 1: As Figure 1 , 2 As shown in Figure 3, the improved structure of the LED strip light source of this utility model is achieved as follows: It includes a quick-connect component 1 with a power-collecting component 102, a flexible linear light 2, and a quick-connect cable 3. The flexible linear light 2 includes a flexible base strip 201 and a light strip 202 fixed to the rear of the flexible base strip 201. The light strip 202 includes a pair of conductive strips 2022 disposed on the strip 2021 and a light source body 2023 evenly distributed along the strip 2021 and connected between the pair of conductive strips 2022. The quick-connect cable 3 includes an insulating strip 301 and wires 302 arranged side-by-side on the upper and lower sides of the insulating strip 301. Figure 5 As shown, the conductor 302 of the quick-connect cable 3 is located in the middle, and cables 303 are provided on both sides of the quick-connect cable 3. The function of the cables 303 is to facilitate the quick-connect cable 3 to be straightened and fixed between two fixed parts (such as a wall), so that the flexible linear light 2 can effectively achieve posture fixation and play its role. Figure 4 As shown, quick-connect cable 3 is a quick-connect cable with exposed wires, or as... Figure 1 , 2As shown, the quick-connect cable 3 is a quick-connect cable with an internal conductor (the insulating tape 301 constituting the quick-connect cable is made of plastic, such as insulating silicone, which is easily pierced by the conductive needle of the power-taking component 102 without causing deformation of the insulating tape 301 after piercing). The front of the flexible base tape 201 is provided with a connection structure 203 that connects to the quick-connect cable 3. The flexible base tape 201 is connected to the rear of the quick-connect cable 3 through the connection structure 203. The quick-connect component 1 is a conductor 302 that allows the power-taking component 102 to reach the quick-connect cable 3 directly and a conductive strip 2022 on the lamp strip 202 at the front of the flexible base tape 201, so that the conductor 302 of the quick-connect cable 3 is connected to the conductive strip 2022 on the lamp strip 202. The quick-connect component 1 has a pair of power-taking components 102. Each power-taking component 102 has two conductive pins 1021, one of which is facing the conductive strip 2022 on the lamp strip 202 of the flexible base strip 201 of the stacked flexible linear lamp 2 and quick-connect cable 3. The other conductive pin 1021 is facing the wire 302 of the quick-connect cable 3 of the stacked flexible linear lamp 2 and quick-connect cable 3. The quick-connect component 1 includes a driving member. The driving member drives the power-taking component 102 to pierce the stacked flexible linear lamp 2 and quick-connect cable 3, so that one of the conductive pins 1021 pierces the conductive strip 2022 on the lamp strip 202 of the flexible base strip 201, and the other conductive pin 1021 pierces the wire 302 of the quick-connect cable 3.
[0014] Preferably, the quick-connect component 1 includes an L-shaped base 108 and a cover 109 with a vertical portion serving as a driving member. The cover 109 is square plate-shaped. A hook 110 is provided on the inner side of the vertical portion 107 of the L-shaped base 108. A buckle 111 matching the hook 110 is provided at the free end of the cover 109 with the vertical portion. The free end of the cover 109 with the vertical portion is connected to the free end of the horizontal portion of the L-shaped base 108 via a flexible connector 112. A pair of power-taking components 102 are disposed below the cover 109 with the vertical portion. The two conductive pins 1021 of the power-taking components 102 face downwards. One of the conductive pins 1021 of the power-taking components 102... Facing the conductive strip 2022 on the LED strip 202 of the flexible baseband 201, another conductive needle 1021 of the power taking component 102 faces the wire 302 of the quick-connect cable 3. The cover 109 with the vertical part of the cover and the L-shaped base 108 are interlocked on the flexible linear light 2 and the quick-connect cable 3 stacked on top of each other, so that the hook 110 is fastened on the buckle 111. The cover 109 with the vertical part of the cover drives the power taking component 102 to make one of the conductive needles 1021 pierce into the conductive strip 2022 on the LED strip 202 of the flexible baseband 201. The cover 109 with the vertical part of the cover drives the power taking component 102 to make the other conductive needle 1021 pierce into the wire 302 of the quick-connect cable 3.
[0015] Preferably, the top of the hook is a slope 1101. When the cover 109 with the vertical part of the cover is connected to the L-shaped base 108 using the slope 1101, the buckle 111 can smoothly slide into the working range of the hook 110.
[0016] In use, the flexible linear light 2 is stacked on the quick-connect cable 3, so that the conductive strip 2022 of the flexible linear light 2 and the wire 302 of the quick-connect cable 3 correspond to the two conductive pins 1021 of the power-taking component 102, respectively. The L-shaped base 108 is then placed under the stacked flexible linear light 2 and quick-connect cable 3. The cover 109 with the vertical cover portion is flipped over, so that the cover 109 with the vertical cover portion is placed on top of the flexible linear light 2 and pressed towards the quick-connect cable 3, so that one of the power-taking components 102... A conductive needle 1021 pierces the conductive strip 2022 on the LED strip 202 of the soft base 201. The power-taking component 102 causes another conductive needle 1021 to pierce the wire 302 of the quick-connect cable 3, so that the power-taking component 102 is connected to the conductive strip 2022 and the wire 302. At the same time, the hook 110 is fastened to the buckle 111 to ensure the stability of the connection between the cover 109 with the vertical part of the cover and the L-shaped base 108, thereby preventing the power-taking component 102 from detaching from the conductive strip 2022 and the wire 302.
[0017] Of course, you can also first press the cover 109 with the vertical part of the cover on top of the flexible linear light 2 and quick-connect cable 3 stacked on top of each other, flip the L-shaped base 108, and press the cover 109 with the vertical part of the cover towards the quick-connect cable 3, so that one of the conductive needles 1021 of the power taking component 102 pierces into the conductive strip 2022 on the light strip 202 of the soft base 201, and the other conductive needle 1021 of the power taking component 102 pierces into the wire 302 of the quick-connect cable 3, so that the power taking component 102 is connected to the conductive strip 2022 and the wire 302. At the same time, the hook 110 is fastened to the buckle 111 to ensure the stable connection between the cover 109 with the vertical part of the cover and the L-shaped base 108, thereby preventing the power taking component 102 from detaching from the conductive strip 2022 and the wire 302.
[0018] Preferably, a vertical wall 113 is provided at the free end of the cover 109 with the vertical part of the cover. The vertical wall 113 cooperates with the vertical part of the cover to form a groove 114 that matches the flexible linear lamp 2 and quick-connect cable 3 stacked on top of each other. This allows the cover 109 with the vertical part of the cover to be pressed accurately and smoothly towards the quick-connect cable 3. The two conductive needles 1021 of the power taking component 102 are accurately inserted into the conductive strip 2022 on the lamp strip 202 of the soft base strip 201 and the wire 302 of the quick-connect cable 3, respectively.
[0019] Preferably, the cover 109 with the vertical part of the cover is provided with a notch 115 matching the flexible linear light 2, so that the flexible linear light 2 is accurately stacked on the quick-connect cable 3 under the positioning of the notch 115 and the groove 114.
Claims
1. An improved structure for a strip light source, characterized in that, The system includes a quick-connect component with a power-gathering element, a flexible linear light, and a quick-connect cable. The flexible linear light includes a flexible base strip and a light strip fixed to the rear of the flexible base strip. The light strip includes a pair of conductive strips disposed on the strip and a light source evenly distributed along the strip and connected between the pair of conductive strips. The quick-connect cable includes an insulating strip and conductors disposed side-by-side on the upper and lower sides of the insulating strip. The quick-connect cable is either a quick-connect cable with exposed conductors or a quick-connect cable with concealed conductors. The flexible base strip has a connection structure at its front for connecting to the quick-connect cable. The flexible base strip is connected to the rear of the quick-connect cable through the connection structure. The quick-connect component consists of the conductors that allow the power-gathering element to directly reach the quick-connect cable and the light strip that allows the power-gathering element to directly reach the rear of the flexible base strip. The quick-connect component is a pair of power-taking components. Each power-taking component has two conductive pins, one facing the conductive strip on the flexible linear light strip and the flexible base strip of the quick-connect cable stacked on top of each other. The other conductive pin faces the conductor of the flexible linear light strip and the quick-connect cable stacked on top of each other. The quick-connect component includes a driving member that can drive the power-taking component to pierce the flexible linear light strip and the quick-connect cable stacked on top of each other, and cause one of the conductive pins to pierce the conductive strip on the flexible base strip of the light strip. The power-taking component can also cause the other conductive pin to pierce the conductor of the quick-connect cable.
2. The improved structure of the LED strip light source according to claim 1, characterized in that, The quick-connect component includes a cover as a driving element, and a pair of power-taking components disposed under the cover. One conductive pin of the power-taking component is aligned with the conductive strip on the LED strip of the flexible baseband, and the other conductive pin of the power-taking component is aligned with the wire of the quick-connect cable. The cover can drive the power-taking component to insert one of the conductive pins into the conductive strip on the LED strip of the flexible baseband, and the cover can drive the power-taking component to insert the other conductive pin into the wire of the quick-connect cable.
3. The improved structure of the LED strip light source according to claim 2, characterized in that, The quick-connect component includes an L-shaped base and a cover with a vertical portion serving as a driving element. A hook is provided on the inner side of the vertical portion of the L-shaped base, and a buckle matching the hook is provided at the free end of the cover with the vertical portion. The free end of the cover with the vertical portion is connected to the free end of the horizontal portion of the L-shaped base via a flexible connector. A pair of power-taking components are located under the cover with the vertical portion. One conductive pin of the power-taking component faces the conductive strip on the flexible base strip, and the other conductive pin faces the wire of the quick-connect cable. The cover with the vertical portion and the L-shaped base interlock on the flexible linear light and quick-connect cable stacked on top of each other, causing the hook to engage with the buckle. The cover with the vertical portion drives the power-taking component to insert one conductive pin into the conductive strip on the flexible base strip, and the cover with the vertical portion drives the power-taking component to insert the other conductive pin into the wire of the quick-connect cable.
4. The improved structure of the LED strip light source according to claim 3, characterized in that, A vertical wall is provided at the free end of the cover with the vertical part of the cover. The vertical wall cooperates with the vertical part of the cover to form a groove that matches the flexible linear light and quick-connect cable stacked on top of each other. This allows the cover with the vertical part of the cover to be pressed accurately and smoothly towards the quick-connect cable. The two conductive pins of the power taking component accurately pierce the conductive strip on the light strip of the soft base and the wire of the quick-connect cable, respectively.
5. The improved structure of the LED strip light source according to claim 1, 2, 3, or 4, characterized in that, The cover with the vertical portion has a notch underneath that matches the flexible linear light.