Vehicle display device

The vehicle display device addresses the trade-off between forward and rear visibility by transitioning between folded and unfolded states, optimizing display area for different driving conditions.

JP7836735B2Active Publication Date: 2026-03-27TOYOTA JIDOSHA KK +1
View PDF 5 Cites 0 Cited by

Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2022-08-15
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Existing vehicle sun visors with displays face a trade-off between ensuring forward visibility and providing a large display area, as a large display protruding from the visor obstructs forward visibility during manual driving but is beneficial in low visibility conditions.

Method used

A vehicle display device with a display that transitions between a folded and unfolded state, allowing flexible expansion of the visible area from the rear of the vehicle, with the unfolded state increasing rear visibility when needed and the folded state improving forward visibility during manual driving.

Benefits of technology

The display device provides flexible expansion of the visible area from the rear of the vehicle, enhancing rear visibility in low visibility conditions and maintaining forward visibility during manual driving by adjusting its state based on driving mode.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure 0007836735000001
    Figure 0007836735000001
  • Figure 0007836735000002
    Figure 0007836735000002
  • Figure 0007836735000003
    Figure 0007836735000003
Patent Text Reader

Abstract

To provide a display arranged along a surface of a sun visor, which is configured so that the area of a part that is visible from a rear side of a vehicle can be increased as needed.SOLUTION: A display 22 is arranged along a surface of a sun visor 12. The display 22 is controlled manually or by a processor 24 so that the display can be transitioned between a folded-back state and a developed state, when the sun visor 12 is in use. The folded-back state is a state where a first rear-surface area 22a-1 which is a portion of the display 22 is exposed to a rear side of a vehicle. The developed state is a state where a second rear-surface area 22a-2, which is a portion or the whole of the display 22 and whose area is larger than the area of the first rear-surface area 22a-1 and which protrudes from the sun visor 12 in a back view, is exposed to the rear side of the vehicle.SELECTED DRAWING: Figure 3
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This specification discloses a vehicle display device, particularly a vehicle display device including a display provided on a sun visor.

Background Art

[0002] Generally, vehicles are provided with sun visors for shading. Conventionally, sun visors provided with displays have been proposed.

[0003] For example, Patent Document 1 discloses a vehicle sun visor provided with a display on the rear surface facing the rear of the vehicle in the use state, and displays a captured image captured by a camera that captures the front of the vehicle on the display.

Prior Art Documents

Patent Documents

[0004]

Patent Document 1

Summary of the Invention

Problems to be Solved by the Invention

[0005] When providing a display along the surface of the sun visor, from the perspective of ensuring the forward visibility of the occupant, it is not possible to provide a display of a large size that significantly protrudes from the sun visor in the use state. On the other hand, for example, when the need for forward visibility is low, such as when the vehicle is stopped or in autonomous driving, it is better for the display to be larger in order to improve the visibility of the display.

[0006] The purpose of the vehicle display device disclosed in this specification is to provide a display provided along the surface of the sun visor, which can temporarily expand the area of the part visible from the rear of the vehicle.

Means for Solving the Problems

[0007] The vehicle display device disclosed herein is a vehicle display device having a display provided along the surface of a plate-shaped sun visor, wherein when the sun visor is in use, the display is transitionable between a folded state and an unfolded state, the folded state is a state in which a first rear region, which is part of the display, is exposed to the rear of the vehicle, and the unfolded state is a state in which a second rear region, which is part or all of the display, has a larger area than the first rear region and extends beyond the sun visor in a rear view, is exposed to the rear of the vehicle.

[0008] With this configuration, the display can transition between a folded state and an unfolded state, allowing for flexible expansion of the area visible from the rear of the vehicle. For example, when the need for forward visibility is low (e.g., when the vehicle is stopped or in autonomous driving mode), unfolding the display increases the area of ​​the display exposed to the rear of the vehicle (i.e., the area visible from the rear of the vehicle) compared to the folded state. On the other hand, when the need for forward visibility is high (e.g., when driving manually), folding the display 22 improves forward visibility compared to the unfolded state.

[0009] In the folded state, the display has a front area exposed to the front of the vehicle along the front of the sun visor, and the vehicle display device may further include a processor that causes the display to show information directed out of the vehicle in the front area when the display is in the folded state.

[0010] This configuration allows various notifications to be sent to people outside the vehicle without the need for a separate display.

[0011] The vehicle equipped with the vehicle display device is capable of both automatic and manual driving, and in manual driving mode, it is preferable that the transition of the display from the folded state to the unfolded state is prohibited.

[0012] This configuration prevents the display from becoming deployed and reducing forward visibility during manual driving, where forward visibility is highly important. [Effects of the Invention]

[0013] The vehicle display device disclosed herein provides a display that is provided along the surface of a sun visor and can flexibly expand the area of ​​the portion visible from the rear of the vehicle. [Brief explanation of the drawing]

[0014] [Figure 1] This is a schematic diagram showing the front part of the vehicle interior of a vehicle equipped with the vehicle display device according to this embodiment, as seen from the rear of the vehicle. [Figure 2] This is a functional block diagram of a vehicle display device according to this embodiment. [Figure 3] This figure shows a first example of a display in both its folded and unfolded states. [Figure 4] This figure shows a second example of a display in both its folded and unfolded states. [Figure 5] This is a diagram showing the display and camera in their deployed state. [Modes for carrying out the invention]

[0015] Figure 1 is a schematic diagram of the front of the interior of a vehicle 10 equipped with a vehicle display device according to this embodiment, viewed from the rear of the vehicle. In the drawings of this specification, FR represents the front side in the longitudinal direction of the vehicle, LH represents the left side in the vehicle width direction, and UP represents the upper side in the vertical direction. In this embodiment, the vehicle 10 has two operating modes: an automatic driving mode for automated driving and a manual driving mode for manual driving. Automated driving is when a processor installed in the vehicle 10 controls the driving in response to detection signals from various sensors installed in the vehicle 10. Manual driving is when the occupants of the vehicle 10 control the driving by operating pedals and a steering wheel.

[0016] A sun visor 12 is provided in front of the front seats of the vehicle 10 to block the sun. The sun visor 12 is a roughly rectangular plate-shaped member and is attached to the ceiling 14 of the vehicle 10. The sun visor 12 can be in a stored state, shown by a dashed line in Figure 1, and in an open state, shown by a solid line in Figure 1. In this embodiment, the front end of the sun visor 12 in the stored state is attached to the ceiling 14 so as to be rotatable around an axis extending in the vehicle width direction. The stored state is when the sun visor 12 is roughly parallel to the ceiling 14, and the open state is when the sun visor 12 rotates from the stored state and is pulled down. Note that the display 22, which will be described later, is not shown in Figure 1.

[0017] Figure 2 is a functional block diagram of the vehicle display device 20 according to this embodiment. The vehicle display device 20 is composed of a display 22 and a processor 24.

[0018] The display 22 is provided along the surface of the sun visor 12. When the sun visor 12 is in use, the display 22 can transition between a folded state and an unfolded state by manual control or control by the processor 24. Here, the folded state is a state in which a first rear area (details described later), which is part of the display 22, is exposed to the rear of the vehicle. In other words, in the folded state, the first rear area is visible from the rear of the vehicle. The unfolded state is a state in which a second rear area (details described later), which is part or all of the display 22, has a larger area than the first rear area, and extends beyond the sun visor 12 when viewed from behind, is exposed to the rear of the vehicle. In other words, in the unfolded state, the second rear area is visible from the rear of the vehicle.

[0019] In this embodiment, the display 22 is flexible. In this embodiment, the display 22 transitions between a folded state and a deployed state by bending or stretching. The display 22 is constituted by, for example, an organic EL (Electro Luminescence). Alternatively, the display 22 may be composed of a plurality of partial displays that are individually non-flexible and are combined so that they can face different directions from each other. Thereby, the display 22 constituted by the plurality of partial displays may be bendable as a whole.

[0020] FIG. 3 is a diagram showing a first example of the display 22 in a folded state and a deployed state. The left side of the arrow in FIG. 3 represents the folded state, and the right side of the arrow represents the deployed state.

[0021] In the example of FIG. 3, in the folded state, a part of the display 22 along the rear surface 12a of the sun visor 12 is the first rear surface area 22a-1 (of course, the display surface faces the rear of the vehicle). The display 22 bends forward of the vehicle at the lower end of the sun visor 12 and runs along the front surface 12b of the sun visor 12. A part of the display 22 exposed in front of the vehicle along the front surface 12b is called the front area 22b.

[0022] In the example of FIG. 3, from the folded state, by manual or control by the processor 24, the bent portion of the display 22 extends in the direction indicated by the dashed-dotted arrow in FIG. 3. That is, the bent portion of the display 22 extends so that the front area 22b faces the rear of the vehicle and becomes flat, thereby transitioning to the deployed state. Thereby, in the deployed state, all of the display 22 is exposed to the rear of the vehicle. That is, all of the display 22 becomes the second rear surface area 22a-2. Needless to say, the second rear surface area 22a-2 in the deployed state has a larger area than the first rear surface area 22a-1 in the folded state. Also, the second rear surface area 22a-2 protrudes below the lower end of the sun visor 12 in a rear view.

[0023] In the unfolded state, the display 22 can be bent again, allowing it to transition back to the folded state.

[0024] Figure 4 shows a second example of the display 22 in its folded and unfolded states. In Figure 4, the left side of the arrow represents the folded state, and the right side of the arrow represents the unfolded state.

[0025] In the example in Figure 4, when folded, a portion of the display 22 along the rear surface 12a of the sun visor 12 is the first rear region 22a-1. The display 22 bends forward at the upper end of the sun visor 12 and follows the front surface 12b of the sun visor 12. A portion of the display 22 exposed to the front of the vehicle along the front surface 12b becomes the front region 22b.

[0026] In the example in Figure 4, the display 22 slides along the surface of the sun visor 12 in the direction indicated by the dashed-dotted arrow in Figure 4, either manually or under control by the processor 24, from the folded state. The display 22 transitions to the unfolded state when it slides until it becomes flat. As a result, in the unfolded state, the entire display 22 is exposed to the rear of the vehicle. That is, the entire display 22 becomes the second rear area 22a-2. In the example in Figure 4, as in the example in Figure 3, the area of ​​the second rear area 22a-2 in the unfolded state is larger than the area of ​​the first rear area 22a-1 in the folded state. Also, the second rear area 22a-2 extends below the lower end of the sun visor 12 when viewed from the rear. In this example, the front area 22b of the display 22 has a flexible front surface.

[0027] Note that the unfolded state does not necessarily mean that the display 22 has been fully slid to become flat. In this case, in the unfolded state, a portion of the display 22 becomes the second rear area 22a-2, and a portion of the display 22 remains as the front area 22b. However, even in this case, the second rear area 22a-2 has a larger area than the first rear area 22a-1, and the display 22 slides until it extends below the lower edge of the sun visor 12 when viewed from the rear.

[0028] In the unfolded state, the display 22 can be slid upward to return to the folded state.

[0029] As described above, the display 22 can transition between a folded state and an unfolded state. This allows for flexible expansion of the area of ​​the display visible from the rear of the vehicle. For example, when the need for forward visibility is low, such as when the vehicle 10 is stopped or in autonomous driving mode, unfolding the display 22 increases the area of ​​the display 22 exposed to the rear of the vehicle compared to the folded state. In this embodiment, in the folded state, the display 22 does not protrude significantly from the sun visor 12 when viewed from the rear (at least less than in the unfolded state). Therefore, when the need for forward visibility is high, such as in manual driving mode, folding the display 22 improves forward visibility compared to the unfolded state.

[0030] Returning to Figure 2, the processor 24 is composed of, for example, a microprocessor, a GPU (Graphics Processing Unit), or an ASIC (Application Specific Integrated Circuit). The processor 24 may not consist of a single processing unit, but rather of multiple processing units located in physically separate locations working together. The processor 24 functions as a state control unit 26 and a display control unit 28.

[0031] The state control unit 26 transitions the state of the display 22 between a folded state and an unfolded state in response to instructions from the occupants of the vehicle 10. Specifically, when the state control unit 26 receives instructions from the occupants through the operation of a predetermined switch or the like, it operates an actuator for state transitions, thereby transitioning the state of the display 22.

[0032] When the vehicle 10 is in manual driving mode, it is preferable that the transition of the display 22 from the folded state to the unfolded state be prohibited. This prevents the display 22 from becoming unfolded and reducing forward visibility when there is a high need for forward visibility. Specifically, when the vehicle 10 is in manual driving mode, the state control unit 26 will not transition the display 22 from the folded state to the unfolded state, even if instructed to do so by the occupant.

[0033] Furthermore, if the state transitions of the display 22 are performed manually, it is advisable to provide a locking mechanism (not shown) that can prevent the transition of the display 22 from the folded state to the unfolded state. When the vehicle 10 is in manual driving mode, it is advisable to prevent the transition of the display 22 from the folded state to the unfolded state using this locking mechanism.

[0034] The display control unit 28 controls the display 22 to display various images. In particular, as shown in Figure 3 or Figure 4, the display 22 according to this embodiment has a front area 22b that is exposed to the front of the vehicle when folded. Therefore, when the display 22 is in the folded state, the display control unit 28 may display information directed to people outside the vehicle (for example, people in front of the vehicle 10) on the front area 22b. This eliminates the need to provide a separate display other than the display 22, and allows various notifications to be sent to people outside the vehicle (especially people in front of the vehicle 10).

[0035] In particular, it would be desirable for the occupants of vehicle 10 to be able to select what content (for example, messages such as "Please cross" or "Go ahead") to be displayed on the front area 22b of the display 22 when it is folded. This would allow the occupants of vehicle 10 to communicate with people outside the vehicle.

[0036] Furthermore, if the state transitions of the display 22 are performed manually, it is advisable to provide a sensor to detect the state of the display 22. This allows the display control unit 28 to detect the state of the display 22 in accordance with the detection signal from the sensor.

[0037] Furthermore, as shown in Figure 5, a camera C may be provided on the rear surface 12a of the sun visor 12. The display control unit 28 may configure the display control unit 28 to display the captured image taken by camera C on the second rear surface area 22a-2 of the display 22 when the display 22 is unfolded. The display control unit 28 may also configure the display control unit 28 to display the captured image taken by camera C on the first rear surface area 22a-1 of the display 22 (see Figure 3 or Figure 4) when the display 22 is folded.

[0038] When the sun visor 12 is to be stored (see Figure 1), the display 22 is folded prior to that. When the sun visor 12 is stored, the front area 22b of the display 22 (see Figure 3 or Figure 4) faces downward. Therefore, the display control unit 28 may illuminate all or part of the front area 22b when the sun visor 12 is stored. This makes the front area 22b available as interior lighting for the vehicle.

[0039] The vehicle display device described above has been explained, but the vehicle display device described above is not limited to the embodiments described above, and various modifications are possible as long as they do not deviate from the spirit of the invention. [Explanation of Symbols]

[0040] 10 Vehicle, 12 sun visor, 12a rear, 12b front, 14 ceiling, 20 vehicle display device, 22 display, 22a-1 first rear area, 22a-2 second rear area, 22b front area, 24 processor, 26 state control unit, 28 display control unit.

Claims

1. A vehicle display device having a display and processor provided along the surface of a plate-shaped sun visor, When the sun visor is in use, the display is capable of transitioning between a folded state and an unfolded state. The aforementioned folded state is a state in which the first rear area, which is part of the display, is exposed to the rear of the vehicle. The aforementioned deployed state is a state in which a part or all of the display, having a larger area than the first rear region, and a second rear region that extends beyond the sun visor in a rear view, is exposed to the rear of the vehicle. In the folded state, the display has a front area that is exposed to the front of the vehicle along the front of the sun visor. The processor causes the display to show information directed outwards from the vehicle in the front area when the display is in the folded state. A vehicle display device characterized by the following features.

2. The vehicle equipped with the aforementioned vehicle display device is a vehicle capable of both automatic and manual driving. During manual operation, the transition of the display from the folded state to the unfolded state is prohibited. The vehicle display device according to feature 1.

Citation Information

Patent Citations

  • Expandable screen smartphone and expandable screen tablet

    JP2014072884A

  • Sun visor for vehicle

    JP2019001256A

  • Sunshade apparatus

    JP2019214364A

  • Gate driving circuit and flexible display using the same

    JP2021110942A

  • Vehicular shading device

    JP2022076835A