Car door handle with intelligent driving lamp
By setting an L-shaped intelligent driving indicator area and light transmission components on the door handle, the problem of the concealed location of the intelligent driving lights is solved, and the visibility of the intelligent driving status is improved in all aspects. This ensures that drivers of adjacent lanes and vehicles behind can clearly observe the intelligent driving status of the vehicle, thus ensuring driving safety and smoothness.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2026-02-10
- Publication Date
- 2026-04-07
AI Technical Summary
In existing technologies, the placement of the intelligent driving lights is inappropriate, which means that when the car is in autonomous driving mode, drivers of vehicles on both sides cannot see the taillight indicator lights, and the indicator lights on the welcome lights cannot be seen by drivers around them, resulting in poor visibility of the intelligent driving status.
A smart driving indicator area is set on the door handle, and the light-emitting surface of the light transmission component is embedded in the smart driving indicator area to form an L-shaped side and rear indicator position, ensuring that it can provide all-round indication in smart driving mode, including the drivers of adjacent lanes and rear vehicles.
It solves the problem of the concealed location of the intelligent driving lights, improves the visibility of the intelligent driving status, and ensures that drivers of adjacent lanes and vehicles behind can clearly observe the intelligent driving status of the vehicle, thus ensuring driving safety and smoothness.
Smart Images

Figure CN224093182U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of car door handles, and more particularly to a car door handle with intelligent driving lights. Background Technology
[0002] With the development of intelligent driving technology, vehicle operation modes and interaction scenarios are undergoing profound changes, and traditional vehicle signal systems are no longer able to adapt to the new demands. Current vehicle signal systems, such as turn signals and brake lights, are mainly designed around human drivers. Their core function is to convey the vehicle's operating intentions to surrounding traffic participants through fixed light signals. For example, turn signals indicate a change of direction, and brake lights reflect the braking status.
[0003] In existing automotive technology, indicator lights for indicating autonomous driving status are typically integrated into the taillights. For example, Chinese utility model patent CN219588778U discloses a vehicle lighting fixture that integrates an autonomous driving indicator light and a side turn signal. This fixture includes a housing, a transparent cover, a heat sink, a circuit board, and a light source unit. The transparent cover is fixedly mounted on the top side of the housing, forming an internal cavity with the inner side of the housing. The heat sink, circuit board, and light source unit are all housed within this internal cavity. The heat sink is located on the back of the circuit board, and the light source unit is mounted on the circuit board, which is fixedly mounted on the housing. This vehicle lighting fixture, integrating an autonomous driving indicator light and a side turn signal, makes vehicles lighter, solves the problem of insufficient interior space, and features a clever design, simple structure, reliable performance, and is suitable for large-scale application.
[0004] Alternatively, the autonomous driving indicator light can be placed on the side of the vehicle body, above the wheel hub, and integrated into the welcome light. For example, Chinese utility model patent CN220981090U discloses a lamp that integrates a welcome light, an autonomous driving indicator light, and a reversing light. This lamp includes a housing, a lampshade, a light guide strip, a first PCB, a second PCB, white LEDs, blue LEDs, and a bracket. The lampshade is bonded to the housing with hot melt adhesive. The bracket is fixed to the housing with several first self-tapping screws. The light guide strip is fixed to the bracket with clips. The first PCB and the second PCB are mounted on the bracket with the first self-tapping screws. Several white LEDs and several blue LEDs are provided, with both on the first PCB and the second PCB. This utility model integrates the autonomous driving indicator function into the welcome light, eliminating the need for a separate lamp and adding both reversing side lighting and autonomous driving indicator functions to the vehicle lights.
[0005] However, among the two types of lights mentioned above, the placement of the intelligent driving lights is inappropriate. When the car is in autonomous driving mode on the road, drivers of vehicles on both sides cannot see the taillight indicator lights, and the indicator lights on the welcome lights cannot be seen by surrounding drivers. Utility Model Content
[0006] In order to solve the above-mentioned problems in the prior art, the present invention provides a door handle with intelligent driving lights.
[0007] The above-mentioned problems of this utility model are solved by the following technical solution:
[0008] A door handle with intelligent driving lights, including,
[0009] The base of the car door;
[0010] The handle body has a first side hinged to the base so that the second side can be opened relative to the base;
[0011] The handle body is provided with a smart driving indicator area, and the handle body is provided with a light transmission component inside, and the light emitting surface of the light transmission component is embedded in the smart driving indicator area so that the smart driving indicator area is in the indicator state in smart driving mode.
[0012] The intelligent driving instruction area is arranged along the length direction and extends to the movable side of the handle body to form an instruction opening. In the instruction state, a side instruction position and a rear instruction position are formed on the surface of the handle body. The side instruction position and the rear instruction position are connected by a bend on the second side of the handle body to form an L-shaped intelligent driving instruction area.
[0013] A further provision of the above technical solution is that the optical transmission component includes a mounting strip with a bright strip, the bright strip being formed on the side end face of the mounting strip, and the light-emitting surface being the side end face of the bright strip and the rear end face connected to the side end face;
[0014] The handle body is provided with a receiving groove that can constrain the mounting strip, and the receiving groove extends to the side end face of the handle body to form the intelligent driving indicator area.
[0015] The light-emitting surface of the bright strip is exposed within the intelligent driving indicator area, and forms an L-shaped light strip when the indicator is in operation.
[0016] A further provision of the above technical solution is that the handle body includes a handle seat and a decorative cover constituting the receiving groove, the upper end surface of the handle seat is formed with a mounting position arranged along the length direction, and the mounting position forms a first opening and a second opening on the side end surface and the second side of the handle seat, respectively.
[0017] The decorative cover covers the upper opening of the mounting position so that the first opening and the second opening form the intelligent driving instruction area.
[0018] A further provision of the above technical solution is that a retaining edge is formed on the lower edge of the first opening of the mounting position, and the retaining edge stops the mounting strip.
[0019] A further configuration of the above technical solution is: one end of the first opening forms a light-blocking surface on the surface of the handle body near the first side, and the other end is connected to the second opening;
[0020] The lower part of the light-blocking surface is connected to the edge of the light-blocking surface.
[0021] A further provision of the above technical solution is that the optical transmission component also includes a light source placed inside the mounting strip, and a light guide groove is formed inside the mounting strip, the light guide groove extending to one end of the mounting strip to form a wiring port;
[0022] The light from the light source is directed toward the bright bar.
[0023] A further configuration of the above technical solution is as follows: the mounting strip is arranged with a positioning side and a fixing side on the upper and lower sides of the bright strip, respectively, the positioning side and the decorative cover form a positioning, and the fixing side is fixedly connected to the handle base.
[0024] A further feature of the above technical solution is that: the positioning side is formed with a plurality of positioning blocks, the positioning blocks are arranged along the length direction of the bright strip, and a positioning groove is provided on the side of the positioning block facing the inner wall of the handle body;
[0025] The inner wall of the handle body is formed with a positioning protrusion that can be embedded in the positioning groove.
[0026] A further feature of the above technical solution is that the fixed side is formed with a fixed foot, and the fixed foot extends toward the inside of the handle base;
[0027] The mounting position is provided with a hole that can accommodate the fixed foot, so that the fixed foot can be inserted into the handle seat for fixing.
[0028] By adopting the above technical solution, the split handle body forms a closed receiving groove. Through the precise cooperation of the positioning block and the positioning protrusion, and the screw fastening of the fixing foot and the handle seat, the installation stability of the optical transmission component is doubly guaranteed, avoiding loosening or displacement during vehicle operation.
[0029] A further configuration of the above technical solution is as follows: the light source is an LED lamp bead, and it is connected to a diode D1, resistors R2 and R3, and a ground point. Resistors R2 and R3 are connected in parallel, and the LED lamp bead is connected in parallel with resistor R1 and capacitor C1.
[0030] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0031] 1. The intelligent driving indicator area is designed as an L-shaped light strip, arranged along the length of the handlebar and extending to the movable side. This structure allows drivers in adjacent lanes to clearly see the strip light on the handlebar surface while driving normally; it also allows drivers of overtaking vehicles behind to see the light through the indicator on the movable side of the handlebar, completely solving the core problem of the concealed location of the intelligent driving light in existing technologies, making it difficult for surrounding drivers to notice, and comprehensively improving the visibility of the intelligent driving status;
[0032] 2. By adopting the above technical solution, only the light-emitting surface of the light transmission component is exposed in the intelligent driving indicator area, while the handle body completely blocks the other light-emitting surfaces. Combined with the structural design of the baffle and light-blocking surface, light diffusion interference is effectively avoided, ensuring that the indicator area has clear and non-scattered light. Attached Figure Description
[0033] Figure 1 This is an exploded structural diagram of the present invention.
[0034] Figure 2 This is a schematic diagram of the overall structure of this utility model.
[0035] Figure 3 This is a schematic diagram of the handle body.
[0036] Figure 4 This is an exploded structural diagram of the handle body and the optical transmission component.
[0037] Figure 5 This is a structural diagram of the mounting strip and the bright strip.
[0038] Figure 6 This is a schematic diagram of the cross-sectional structure of the handle body.
[0039] Figure 7 This is a schematic diagram of the circuit where the light source is located.
[0040] The attached diagram is labeled as follows: 100, base; 200, handle body; 210, handle seat; 211, mounting position; 212, edge; 213, light-blocking surface; 214, hole; 220, decorative cover; 201, intelligent driving indicator area; 2011, indicator port;
[0041] 300, Optical transmission component; 310, Mounting strip; 311, Light guide groove; 312, Positioning block; 3121, Positioning slot; 313, Fixing foot; 320, Bright strip; 330, Backplate; a, First side; b, Second side. Detailed Implementation
[0042] To further illustrate the technical means and effects adopted by this utility model in order to achieve the intended utility model purpose, the following detailed description of the specific implementation methods, structure, features and effects of this utility model is provided in conjunction with the accompanying drawings and preferred embodiments.
[0043] This embodiment discloses a car door handle with intelligent driving lights.
[0044] Specific reference Figure 1 As shown, including,
[0045] The base 100 is arranged in the door;
[0046] The handle body 200 has a first side a hinged to the base 100 so that the second side b can be opened relative to the base 100;
[0047] The handle body 200 is provided with a smart driving indicator area 201. The handle body 200 is provided with a light transmission component 300 inside, and the light emitting surface of the light transmission component 300 is embedded in the smart driving indicator area 201 so that the smart driving indicator area 201 is in the indicator state in smart driving mode.
[0048] The intelligent driving instruction area 201 is arranged along the length direction and extends to the movable side of the handle body 200 to form an instruction opening 2011. In the instruction state, a side instruction position and a rear instruction position are formed on the surface of the handle body 200. The side instruction position and the rear instruction position are connected by the bend of the second side b of the handle body 200 to form an L-shaped intelligent driving instruction area 201.
[0049] The above is the basic scheme of this embodiment.
[0050] Specific reference Figure 2 As shown, the intelligent driving instruction area 201 is arranged along the length of the handle body 200, and its length is slightly less than the length of the handle body 200, so that its light emission range is as large as possible so that nearby drivers can observe it.
[0051] In practical applications, car door handles typically have a front end (side a) that is hinged to a base 100, while the rear end can be manually pulled to open relative to the base 100. In this embodiment, the intelligent driving indicator area 201 is arranged along the length of the handle body 200, and an indicator opening 2011 is formed on the second side (side b). In other words, the light-emitting surface includes both the strip surface on the surface of the handle body 200 and the end face on the second side (side b) of the handle body 200, thereby forming a side indicator and a rear indicator on the surface of the handle body 200. The side indicator can be observed by drivers of vehicles in adjacent lanes, and the rear indicator can be observed by drivers of vehicles behind. Furthermore, the side indicator and the rear indicator connect at the bend on the second side (side b) of the handle body 200, forming a complete L-shaped structure.
[0052] Based on the above settings, when the car is in intelligent driving mode, the light transmission component 300 is illuminated, which causes the intelligent driving indication area 201 to enter the indication state. In this state, the strip light on the surface of the handlebar body 200 is more easily noticed by drivers in adjacent lanes. Because in a normal driving scenario, drivers in adjacent lanes have a field of vision covering parts of surrounding vehicles, and this strip light on the surface of the handlebar body 200 is within their likely field of vision, thus attracting their attention. Simultaneously, since the intelligent driving indication area 201 presents two indication positions in different directions on the surface of the handlebar body 200, vehicles behind the intelligent driving vehicle can easily observe the lights at the rear of the handlebar body 200 when performing overtaking maneuvers. When a vehicle behind approaches and prepares to overtake, the lights on the rear indicator of the handlebar 200 are in a relatively easy-to-observe position, allowing the driver of the vehicle behind to make timely adjustments to the driving status of their vehicle to ensure driving safety and smoothness.
[0053] Specifically, in this embodiment, the optical transmission component 300 includes a mounting strip 310 with a bright strip 320, the bright strip 320 being formed on the side end face of the mounting strip 310, and the light-emitting surface being the side end face of the bright strip 320 and the rear end face connected to the side end face.
[0054] The handle body 200 is provided with a receiving groove that can constrain the mounting strip 310, and the receiving groove extends to the side end face of the handle body 200 to form the intelligent driving instruction area 201.
[0055] The light-emitting surface of the bright strip 320 is exposed within the intelligent driving indicator area 201, and forms an L-shaped light strip in the indicator state.
[0056] In this embodiment, the side indicator and the rear indicator are set as a connecting structure, that is, the intelligent driving indicator area is a continuous L-shaped structure. When the rear vehicle observes the rear indicator, the brightness of the rear indicator is easily insufficient due to the small opening of the indicator port 2011. However, due to the connecting structure of the side indicator and the rear indicator, the side indicator supplements the light of the rear indicator, making it easier for the driver of the rear vehicle to observe.
[0057] By setting the light transmission component 300 as a separate module and embedding the light-emitting surface into the intelligent driving indication area 201 of the handle body 200, the light-emitting surface and the outer surface of the handle body 200 can be completely spliced through the structural design of the light-emitting surface, so that the handle body 200 has a consistent appearance and ensures the integrity of the handle body 200.
[0058] Furthermore, due to the separate setting of the light transmission component 300, when the car is in intelligent driving mode, only the light-emitting surface emits light, while the other parts of the handle body 200 remain opaque. Under this setting, the intelligent driving indicator area 201 in the indicator state is more eye-catching against the backdrop of the surrounding plastic parts, which can attract the attention of drivers in adjacent lanes, so that drivers in adjacent lanes can easily realize that the car is in intelligent driving mode.
[0059] In this embodiment, the handle body 200 is specifically configured as follows: the handle body 200 includes a handle seat 210 and a decorative cover 220 that constitute the receiving groove. The upper end surface of the handle seat 210 is formed with a mounting position 211 arranged along the length direction, and the mounting position 211 forms a first opening and a second opening on the side end surface and the second side b of the handle seat 210, respectively.
[0060] The decorative cover 220 covers the upper opening of the mounting position 211 so that the first opening and the second opening form the intelligent driving instruction area 201.
[0061] Specific reference Figure 3 and Figure 4 As shown, in this embodiment, the handle body 200 is designed as a split structure, which includes a handle base 210 with a handle shape and a decorative cover 220 covering the handle base 210. The light transmission component 300 is placed in the receiving groove formed by the handle base 210 and the decorative cover 220, and only the light-emitting surface is exposed in the intelligent driving indication area 201.
[0062] In this embodiment, the intelligent driving indicator area 201 is positioned at the first and second openings of the mounting position 211. That is, the light transmission component 300 is installed within the receiving groove of the handlebar base 210, and the position of the light transmission component 300 is constrained by the receiving groove. Only the light-emitting surface used for indication is exposed at the opening of the receiving groove, and the upper end of the light transmission component 300 is covered by a decorative cover 220. Based on this configuration, only the intelligent driving indicator area 201 has a lighting effect in the entire handlebar structure; other parts of the handlebar body 200 do not have a light-emitting effect. Furthermore, the handlebar body 200 shields the other light-emitting surfaces of the light transmission component 300 to ensure that the light from the intelligent driving indicator area 201 is not interfered with by the light from other light-emitting surfaces, thus preventing the lighting of the intelligent driving indicator area 201 from becoming unclear.
[0063] In this embodiment, a retaining edge 212 is formed on the lower edge of the first opening of the mounting position 211, and the retaining edge 212 stops the mounting strip 310.
[0064] Specific reference Figure 5 and Figure 6 As shown, the bright strip 320 is formed on the side end face of the mounting strip 310, and the side end face has allowance on both the upper and lower sides of the bright strip 320. The bright strip 320 is located in the middle part of the front end face of the mounting strip 310. When the mounting strip 310 is inserted into the mounting position 211, the bright strip 320 extends out from the first opening of the mounting position 211. At this time, the retaining edge 212 is located below the bright strip 320, supporting the lower end face of the bright strip 320 and blocking the light emitted from the lower end face of the bright strip 320, so that the lower end face of the bright strip 320 does not emit light. The mounting strip 310 is located inside the retaining edge 212, and its displacement within the first opening is stopped by the retaining edge 212, ensuring the fixed position of the bright strip 320.
[0065] Meanwhile, in this embodiment, one end of the first opening forms a light-blocking surface 213 on the surface of the handle body 200 near the first side a, and the other end is connected to the second opening;
[0066] The lower part of the light-blocking surface 213 is connected to the edge 212.
[0067] Specific reference Figure 2 and Figure 3 As shown, in this embodiment, the intelligent driving indicator area 201 does not extend through the entire surface of the handle body 200 in the length direction. A light-blocking surface 213 is provided on the surface of the handle body 200 near the first side a. This light-blocking surface 213 constrains the movement of the bright strip 320 along its length direction and simultaneously blocks the light-emitting surface of the bright strip 320 facing the first side a, preventing light from emanating from that side.
[0068] The first opening connects to the second opening at the other end, and the bright strip 320 extends to the second side b end of the handle body 200, thereby forming an L-shaped bent structure light-emitting surface at the end.
[0069] Furthermore, in order for the bright strip 320 to fit into the position of the second opening, the end of the bright strip 320 on the second side b protrudes from the end face of the mounting strip 310.
[0070] In this embodiment, the optical transmission component 300 further includes a light source placed inside the mounting strip 310. A light guide groove 311 is formed inside the mounting strip 310, and the light guide groove 311 extends to one end of the mounting strip 310 to form a wiring port.
[0071] The light from the light source is directed toward the bright strip 320.
[0072] The light guide groove 311 extends along the length of the mounting strip 310, and one end is open to form a wiring port for wire insertion. Furthermore, in this embodiment, the back of the mounting strip 310 has an insertion port communicating with the light guide groove 311. The light source is installed into the light guide groove 311 through the insertion port, and the light guide groove 311 is sealed by the back plate 330 to ensure that the light source will not fall out of the insertion port. See [reference needed] for details. Figure 6 As shown.
[0073] To obtain the maximum light output, in this embodiment, the illumination direction of the light source includes at least one side facing the bright strip 320, so that each end face of the bright strip 320 emits light.
[0074] In this embodiment, the light source is an LED lamp bead, as detailed in the following reference. Figure 7 As shown, diode D1, resistors R2 and R3, LED beads, and grounding point are connected in sequence to form a circuit. The voltage VIN input circuit generates current to light up LED1. Resistor R1 and capacitor C1 are connected in parallel with the LED beads. Resistor R1 and capacitor C1 maintain the voltage across the LED beads and filter interference current. A protection diode TVS1 is connected in parallel at the voltage VIN input terminal. When a sudden high-voltage pulse interference occurs in the circuit, the resistance value is instantly reduced, and the high-voltage pulse is guided to the grounding point to prevent the circuit from being impacted by the high-voltage pulse.
[0075] In this embodiment, after constraining the movement of the mounting strip 310 at the mounting position 211, the mounting strip 310 is further fixed. Specifically, the mounting strip 310 is arranged with a positioning side and a fixing side on the upper and lower sides of the bright strip 320, respectively. The positioning side and the decorative cover 220 form a positioning, and the fixing side is fixedly connected to the handle seat 210.
[0076] In this embodiment, the handle body 200 is configured as a split type. When fixing the mounting strip 310 and the bright strip 320, it is necessary to connect or position the handle base 210 and the decorative cover 220 respectively to ensure that the space of the intelligent driving indication area 201 formed between the handle base 210 and the decorative cover 220 can always maintain stability, and further achieve stable constraint on the bright strip 320.
[0077] Specifically, the positioning side is formed with a plurality of positioning blocks 312, the positioning blocks 312 are arranged along the length direction of the bright strip 320, and the positioning blocks 312 are provided with positioning grooves 3121 on the side facing the inner wall of the handle body 200.
[0078] The inner wall of the handle body 200 is formed with a positioning protrusion that can be embedded in the positioning groove 3121.
[0079] Specifically, in this embodiment, the positioning block 312 is a protrusion formed on the front end face of the mounting strip 310, and its surface structure is consistent with the inner wall of the decorative cover 220 to achieve stable support for the inner wall of the decorative cover 220. At the same time, a positioning groove 3121 is provided on the surface of the positioning block 312, and the positioning groove 3121 and the positioning protrusion on the decorative cover 220 are engaged at a fixed point to achieve positioning and installation of the decorative cover 220 on the positioning side.
[0080] The fixed side is formed with a fixed foot 313, which extends toward the inside of the handle base 210;
[0081] The mounting position 211 is provided with a hole 214 that can accommodate the fixed foot 313 to pass through, so that the fixed foot 313 can be inserted into the handle seat 210 for fixing.
[0082] Mounting position 211 is formed on the upper end surface of handle base 210. The handle base 210 has a hollow structure inside and is isolated from mounting position 211 for accommodating electrical components such as capacitors. The bottom of mounting position 211 has a hole 214. Fixing foot 313 extends from the lower end surface of mounting strip 310, extends into the handle through hole 214, and is fixed to handle base 210 with screws.
[0083] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any way. Although the present utility model has been disclosed above with reference to a preferred embodiment, it is not intended to limit the present utility model. Any person skilled in the art can make some modifications or alterations to the above-disclosed technical content to create equivalent embodiments without departing from the scope of the present utility model. Any simple modifications, equivalent changes and alterations made to the above embodiments based on the technical essence of the present utility model without departing from the scope of the present utility model shall still fall within the scope of the present utility model.
Claims
1. A door handle with intelligent driving lights, comprising, A base (100) is arranged on the door; The handle body (200) has a first side (a) hinged to the base (100) so that the second side (b) can be opened relative to the base (100); Its features are: The handle body (200) is provided with a smart driving indicator area (201), and the handle body (200) is provided with a light transmission component (300), and the light emitting surface of the light transmission component (300) is embedded in the smart driving indicator area (201) so that the smart driving indicator area (201) is in the indicator state in the smart driving mode. The intelligent driving instruction area (201) is arranged along the length direction and extends to the movable side of the handle body (200) to form an instruction opening (2011). In the instruction state, a side instruction position and a rear instruction position are formed on the surface of the handle body (200). The side instruction position and the rear instruction position are connected by the bend of the second side (b) of the handle body (200) to form an L-shaped intelligent driving instruction area (201).
2. The door handle with intelligent driving lights according to claim 1, characterized in that: The optical transmission component (300) includes a mounting strip (310) having a bright strip (320), the bright strip (320) being formed on the side end face of the mounting strip (310), and the light-emitting surface being the side end face of the bright strip (320) and the rear end face connected to the side end face; The handle body (200) is provided with a receiving groove that can constrain the mounting strip (310), and the receiving groove extends to the side end face of the handle body (200) to form the intelligent driving instruction area (201). The light-emitting surface of the light strip (320) is exposed within the intelligent driving instruction area (201), and forms an L-shaped light strip in the instruction state.
3. The door handle with intelligent driving lights according to claim 2, characterized in that: The handle body (200) includes a handle seat (210) constituting the receiving groove and a decorative cover (220). The upper end face of the handle seat (210) is formed with a mounting position (211) arranged along the length direction, and the mounting position (211) forms a first opening and a second opening on the side end face and the second side (b) of the handle seat (210), respectively. The decorative cover (220) covers the upper opening of the mounting position (211) so that the first opening and the second opening form the intelligent driving instruction area (201).
4. The door handle with intelligent driving lights according to claim 3, characterized in that: A retaining edge (212) is formed on the lower edge of the first opening of the mounting position (211), and the retaining edge (212) stops the mounting strip (310).
5. The door handle with intelligent driving lights according to claim 4, characterized in that: One end of the first opening forms a light-blocking surface (213) on the surface of the handle body (200) near the first side (a), and the other end connects to the second opening; The lower part of the light-blocking surface (213) is connected to the edge (212).
6. The door handle with intelligent driving lights according to claim 2, characterized in that: The optical transmission assembly (300) also includes a light source placed in a mounting strip (310), wherein a light guide groove (311) is formed in the mounting strip (310), and the light guide groove (311) extends to one end of the mounting strip (310) to form a wiring port; The light from the light source is directed toward the bright bar (320).
7. The door handle with intelligent driving lights according to claim 3, characterized in that: The mounting strip (310) is arranged with a positioning side and a fixing side on the upper and lower sides of the bright strip (320), respectively. The positioning side and the decorative cover (220) form a positioning, and the fixing side is fixedly connected to the handle base (210).
8. The door handle with intelligent driving lights according to claim 7, characterized in that: The positioning side is formed with a plurality of positioning blocks (312), the positioning blocks (312) are arranged along the length direction of the bright strip (320), and the positioning blocks (312) are provided with positioning grooves (3121) on the side facing the inner wall of the handle body (200); The inner wall of the handle body (200) is formed with a positioning protrusion that can be embedded in the positioning groove (3121).
9. The door handle with intelligent driving lights according to claim 7, characterized in that: The fixed side is formed with a fixed foot (313), which extends toward the inside of the handle base (210); The mounting position (211) is provided with a hole (214) that can accommodate the fixed foot (313) to pass through, so that the fixed foot (313) can be inserted into the handle seat (210) for fixing.
10. The door handle with intelligent driving lights according to claim 6, characterized in that: The light source is an LED lamp bead, which is connected to a diode D1, resistors R2 and R3, and a ground point. Resistors R2 and R3 are connected in parallel, and the LED lamp bead is connected in parallel with resistor R1 and capacitor C1.
Citation Information
Patent Citations
Vehicle lamp integrating automatic driving indicating lamp and side steering lamp
CN219588778U
Lamp integrating greeting lamp, automatic driving indicating lamp and reversing illuminating lamp
CN220981090U