Power connection structure of guide rail type power supply
By using a rail-type power supply connection structure, the horizontally inserted power components form a contact-type electrical connection with the conductive rail, solving the problems of installation complexity and high cost of narrow smart home products, and achieving convenient installation and cost savings.
Patent Information
- Application Number
- CN202423317800.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2034-12-31
AI Technical Summary
Long and narrow smart home products are complex to install in conductive tracks and have high production costs. Existing conductive structure designs are inconvenient to install and result in significant material waste.
Design a rail-type power supply connection structure, using horizontally inserted electrical components. The conductive contact ends form contact electrical connections with the positive and negative poles of the conductive rail on both sides of one end of the narrow product. L-shaped connecting plates and elastic plates are used to increase elastic contact, simplify the installation process and reduce material usage.
This enables convenient installation of narrow smart home products on conductive tracks, reducing production costs and improving installation efficiency.
Smart Images

Figure CN223680543U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to conductive connection technical field especially relates to a power connection structure of guide rail type power supply. BACKGROUND
[0002] With the popularization of smart home products, more and more people will adopt the structure of guide rail type power supply to control the internal circuit of home when decorating, and when the smart home product is powered by such guide rail type power supply structure, the power supply needs to be taken to the internal power supply of the conductive track, and then the smart home product (smart light, smart speaker, smart switch, etc.) is inserted into the slot of the conductive track and contacted with the positive and negative poles inside the conductive track. Generally speaking, since the length of the smart home product is small, the conductive copper sheet can be generally arranged on both sides. For long and narrow smart home products (for example: smart light bar), the input end of the power supply is located at both ends. If the conductive copper sheet is still arranged on both sides, the structure is complex and the production cost is increased, and the installation with the conductive track is not convenient.
[0003] Therefore, it is necessary to propose a power connection structure of guide rail type power supply for use in long and narrow smart home products, which is convenient to install in the conductive track and also saves production cost. CONTENT OF THE UTILITY MODEL
[0004] In order to solve the above problems, the utility model provides a power connection structure of guide rail type power supply for use in long and narrow smart home products, which is convenient to install in the conductive track and also saves production cost.
[0005] The utility model realizes the following technical scheme:
[0006] The utility model provides a power connection structure of guide rail type power supply, which comprises an electric component inserted horizontally in the conductive track, one end of the electric component is provided with a conductive contact end, one end of the conductive contact end is electrically connected with the electric component, the other end of the conductive contact end extends outward and forms contact type electrical connection with the positive and negative poles of the conductive track respectively.
[0007] Further, the conductive contact end comprises a first contact sheet and a second contact sheet, one end of the first contact sheet and one end of the second contact sheet are electrically connected with the electric component, the other end of the first contact sheet spirally faces one side of the electric component and forms contact type electrical connection with the positive pole of the conductive track, and the other end of the second contact sheet spirally faces the other side of the electric component and forms contact type electrical connection with the negative pole of the conductive track.
[0008] Further, the first contact sheet comprises a connecting plate, a contact end, one end of the connecting plate is electrically connected with the electric component, the other end of the connecting plate is serpentine towards one side of the electric component and is fixedly connected and electrically connected with one end of the contact end, the other end of the contact end is abutted with the positive pole of the conductive track; the first contact sheet is same in structure with the second contact sheet.
[0009] Further, the connecting plate is in L-shaped structure.
[0010] Further, the contact end comprises an elastic plate, an angle plate, one end of the elastic plate is fixedly connected with one end of the connecting plate at an angle, one end of the angle plate is fixedly connected with the other end of the elastic plate at an angle, the other end of the angle plate is abutted with the positive pole of the conductive track.
[0011] Further, the elastic plate is fixedly connected with the connecting plate perpendicularly.
[0012] Further, one end of the angle plate is fixedly connected with the elastic plate perpendicularly.
[0013] Further, the electric component comprises a sliding contact shell, a circuit board, the circuit board is fixedly connected in the sliding contact shell, one end of the conductive contact end is fixedly connected and electrically connected with one end of the circuit board, one end of the conductive contact end extends out of the outside of one end of the sliding contact shell.
[0014] Further, the electric component further comprises a balance frame, the balance frame is clamped and fixed on the outer circumferential side of the electric component, two sides of the balance frame are flush with two sides of one end of the conductive contact end.
[0015] Further, two sides of the balance frame are provided with abutment bosses, the two abutment bosses are flush with two sides of one end of the conductive contact end respectively.
[0016] The beneficial effects of the utility model are as follows:
[0017] The utility model discloses a conductive contact end is arranged at one end of the electric component, when the long and narrow electric component is transversely inserted in the conductive track, one end of the conductive contact end is contacted with the positive pole and the negative pole of the conductive track respectively, so that the electric component successfully obtains the direct current of the conductive track for use. ACCURATE DRAWINGS
[0018] Figure 1 The utility model discloses a conductive contact end is arranged at one end of the electric component, when the long and narrow electric component is transversely inserted in the conductive track, one end of the conductive contact end is contacted with the positive pole and the negative pole of the conductive track respectively, so that the electric component successfully obtains the direct current of the conductive track for use.
[0019] Figure 2 It is the whole schematic view of the power connection structure of the guide rail type power supply of the utility model;
[0020] Figure 3 It is Figure 2 The local enlarged schematic view of sign A.
[0021] The reference signs are as follows:
[0022] Conductive track 1, positive pole 11, negative pole 12;
[0023] Electric component 2, conductive contact end 21, first contact sheet 211, connecting plate 2111, contact end 2112, elastic plate 21121, angle plate 21122, second contact sheet 212, sliding contact shell 22, circuit board 23, balance frame 24, abutting boss 241. DETAILED DESCRIPTION
[0024] In order to more clearly and completely illustrate the technical scheme of the utility model, the utility model will be further described below in combination with the drawings.
[0025] Please refer to Figures 1-3 The utility model provides a kind of power connection structure of guide rail type power supply, including the electric component 2 of transverse insertion in conductive track 1, electric component 2 one end is equipped with conductive contact end 21, one end of conductive contact end 21 is electrically connected with electric component 2, the other end of conductive contact end 21 extends outward and two sides are respectively formed with the contact type electric connection of positive and negative pole of conductive track 1.
[0026] In the embodiment, conductive contact end 21 is arranged on one end of electric component 2, so that excessive copper sheet material is not needed, and production cost can be reduced.When the long and narrow electric component 2 is transversely inserted into the conductive track 1, the conductive contact end 21 will first enter the conductive track 1, and after entering, one end of the conductive contact end 21 will be in contact with the positive and negative poles of the conductive track 1, so that the electric component 2 successfully obtains the direct current of the conductive track 1 for use.
[0027] In summary, the power connection structure of the guide rail type power supply can effectively be used for long and narrow smart home products, which is convenient to install into the conductive track and saves production cost.
[0028] In the embodiment, the conductive contact end 21 includes a first contact sheet 211 and a second contact sheet 212, one end of the first contact sheet 211 and one end of the second contact sheet 212 are electrically connected with the electrical component 2, the other end of the first contact sheet 211 is curved towards one side of the electrical component 2 and forms a contact type electrical connection with the positive pole 11 of the conductive track 1, and the other end of the second contact sheet 212 is curved towards the other side of the electrical component 2 and forms a contact type electrical connection with the negative pole 12 of the conductive track 1; the first contact sheet 211 and the second contact sheet 212 are symmetrically arranged, the first contact sheet 211 is connected to the positive pole 11 of the electrical component 2, and the second contact sheet 212 is connected to the negative pole 12 of the electrical component 2; when the electrical component 2 is transversely inserted into the conductive track 1, the first contact sheet 211 will form a contact type electrical connection with the positive pole 11 of the conductive track 1, and the second contact sheet 212 will form a contact type electrical connection with the negative pole 12 of the conductive track 1, so that the electrical component 2 is successfully powered.
[0029] In the embodiment, the first contact sheet 211 includes a connecting plate 2111 and a contact end 2112, one end of the connecting plate 2111 is electrically connected with the electrical component 2, the other end of the connecting plate 2111 is curved towards one side of the electrical component 2 and is fixedly connected and electrically connected with one end of the contact end 2112, and the other end of the contact end 2112 is in abutment with the positive pole of the conductive track 1; the first contact sheet 211 and the second contact sheet 212 have the same structure; the connecting plate 2111 has an L-shaped structure, so that the contact end 2112 protrudes outward, so that the contact end 2112 can directly contact the positive pole 11 or the negative pole 12 of the conductive track 1; the connecting plate 2111 and the contact end 2112 are both made of copper sheet material and have a certain elasticity.
[0030] In the embodiment, the contact end 2112 includes an elastic plate 21121 and a corner plate 21122, one end of the elastic plate 21121 is fixedly connected at an angle with one end of the connecting plate 2111, one end of the corner plate 21122 is fixedly connected at an angle with the other end of the elastic plate 21121, and the other end of the corner plate 21122 is in abutment with the positive pole of the conductive track 1; in order to ensure that the corner plate 21122 can continuously abut against the positive pole 11 or the negative pole 12 of the conductive track 1, the elastic plate 21121 needs to be fixedly connected at an angle with the connecting plate 2111, and the corner plate 21122 also needs to form an angle with the elastic plate 21121 to increase the elastic force of the corner plate 21122, thereby increasing the abutting force of the corner plate 21122 and the positive pole 11 or the negative pole 12 of the conductive track 1.
[0031] In the embodiment, the elastic plate 21121 is fixedly connected with the connecting plate 2111 perpendicularly, and the elastic plate 21121 and the connecting plate 2111 are at 90 degrees, so that the elastic force between them is in a horizontal outward direction, and finally the angle plate 21122 can abut against the positive electrode 11 or the negative electrode 12 of the conductive track 1 horizontally and outwardly.
[0032] In the embodiment, one end of the angle plate 21122 is fixedly connected with the elastic plate 21121 perpendicularly, and the angle plate 21122 and the elastic plate 21121 are at 90 degrees, so that the elastic force between them is in a horizontal outward direction, and directly the angle plate 21122 can abut against the positive electrode 11 or the negative electrode 12 of the conductive track 1 horizontally and outwardly.
[0033] In the embodiment, the power consuming member 2 comprises a sliding contact shell 22 and a circuit board 23, the circuit board 23 is fixedly connected in the sliding contact shell 22, one end of the conductive contact end 21 is fixedly connected and electrically connected with one end of the circuit board 23, and the one end of the conductive contact end 21 extends out of the one end of the sliding contact shell 22; the circuit board 23 is in a long strip shape, and the power consuming device can be carried on the circuit board 23, the sliding contact shell 22 is used for providing a protection structure for the circuit board 23, and when the power consuming member 2 is assembled, the circuit board 23 needs to be installed in the sliding contact shell 22 first, so that the power consuming member 2 forms an integral structure, and is convenient for being inserted in the conductive track 1.
[0034] In the embodiment, the power consuming member 2 further comprises a balance frame 24, the balance frame 24 is clamped and fixed on the outer circumferential side of the power consuming member 2, and the two sides of the balance frame 24 are flush with the two sides of one end of the conductive contact end 21; the balance frame 24 is used for maintaining the central position of the power consuming member 2 when the power consuming member 2 is inserted in the conductive track 1, so that the power consuming member 2 can also be centrally arranged away from the one end of the conductive contact end 21, and the power consuming member 2 is also prevented from shaking accidentally and affecting the electrical connection between the conductive contact end 21 and the conductive track 11.
[0035] In the embodiment, the balance frame 24 is provided with abutting bosses 241 on the two sides, and the two abutting bosses 241 are flush with the two sides of one end of the conductive contact end 21 respectively; the abutting bosses 241 protrude outwardly by the same distance as the conductive contact end 21, and the abutting bosses 241 are used for being clamped with the clamping grooves in the conductive track 1, so that the power consuming member 2 can be centrally arranged.
[0036] Of course, the utility model also can have other various embodiments, based on the embodiment, the ordinary skill in the art person without any creative labor obtains other embodiments, all belong to the range that the utility model protects.
Claims
1. A power feeding structure of a guideway type power supply, characterized by comprising: The utility member is inserted into the conductive track transversely, and one end of the utility member is provided with a conductive contact end, one end of the conductive contact end is electrically connected with the utility member, and the other end of the conductive contact end extends outward and is in contact type electrical connection with the positive and negative poles of the conductive track.
2. The power feeding structure of the guide rail type power supply according to claim 1, characterized by, The conductive contact end comprises a first contact sheet and a second contact sheet, one end of the first contact sheet and one end of the second contact sheet are electrically connected with the utility member, the other end of the first contact sheet is serpentine towards one side of the utility member and is in contact type electrical connection with the positive pole of the conductive track, and the other end of the second contact sheet is serpentine towards the other side of the utility member and is in contact type electrical connection with the negative pole of the conductive track.
3. The power feeding structure of the guide rail type power supply according to claim 2, characterized by, The first contact sheet comprises a connecting plate and a contact end, one end of the connecting plate is electrically connected with the utility member, the other end of the connecting plate is serpentine towards one side of the utility member and is fixedly connected and electrically connected with one end of the contact end, and the other end of the contact end is in abutment with the positive pole of the conductive track; the first contact sheet and the second contact sheet are of the same structure.
4. The power feeding structure of the guide rail type power supply according to claim 3, characterized by, The connecting plate is of an L-shaped structure.
5. The power feeding structure of the guide rail type power supply according to claim 3, characterized by, The contact end comprises an elastic plate and a corner plate, one end of the elastic plate is fixedly connected with one end of the connecting plate at an angle, one end of the corner plate is fixedly connected with the other end of the elastic plate at an angle, and the other end of the corner plate is in abutment with the positive pole of the conductive track.
6. The power feeding structure of the guide rail type power supply according to claim 5, characterized by, The elastic plate is fixedly connected with the connecting plate perpendicularly.
7. The power feeding structure of the guide rail type power supply according to claim 5, characterized by, One end of the corner plate is fixedly connected with the elastic plate perpendicularly.
8. The power feeding structure of the guide rail type power supply according to claim 1, characterized by, The utility member comprises a sliding contact shell and a circuit board, the circuit board is fixedly connected in the sliding contact shell, one end of the conductive contact end is fixedly connected with one end of the circuit board and is electrically connected, and one end of the conductive contact end extends out of the outside of one end of the sliding contact shell.
9. The power feeding structure of the guide rail type power supply according to claim 8, characterized by, The utility member further comprises a balance frame, the balance frame is clamped and fixed on the outer circumferential side of the utility member, and two sides of the balance frame are flush with two sides of one end of the conductive contact end.
10. The power feeding structure of the guide rail type power supply according to claim 9, characterized by, Two sides of the balance frame are provided with abutment bosses, and the two abutment bosses are flush with two sides of one end of the conductive contact end, respectively.