The present invention relates to an electronic mirror device for providing a driver of a vehicle with an image that is taken by a camera mounted to the vehicle.
There is known a conventional electronic mirror device having a half mirror disposed in front of a video display unit. In a case where a rear vision is blocked by, for example, a body of a rear seat display device and rear viewing becomes difficult, the driver can see rearward by watching, through the half mirror, a video which is taken by a camera mounted to the vehicle and displayed on the video display unit (see, for example, PTL 1).
The conventional electronic mirror device is provided with a gap which is disposed between the half mirror and the video display unit and serves as a means for protecting the display screen of the video display unit. That is, the half mirror is a single sheet and is held at its periphery to constitute a single elastic member by itself. Therefore, in a case, for example, where the display screen of the video display unit is unintentionally hit by something, the gap between the half mirror and the video display unit allows the half mirror to function as an elastic body, so that the half mirror absorbs a shock on the video display unit.
PTL 1: Unexamined Japanese Patent Publication No. H11-291817
The present invention provides an electronic mirror device that is capable of protecting a video display unit by a half mirror and preventing occurrence of an image shift, or a double image, which would otherwise be caused by the half mirror.
An electronic mirror device of the present invention has a display device that is mounted on a mounting position of a rear view mirror in an interior of a vehicle and displays an image taken by a camera mounted on the vehicle. This display device has a body case having an opening, and a display unit mounted in the body case. The display unit has a video display unit, and a half mirror. The video display unit has a display surface facing toward the opening of the main body. The half mirror is disposed closer to the opening of the main body than to the video display unit, and is apart from the display surface. A gap between the half mirror and the video display unit is smaller at one end or both ends of the half mirror in a horizontal direction than at a center of the half mirror.
According to the present invention, it is possible to protect the video display unit by the half mirror by providing a gap between the video display unit and the half mirror. In addition, it is possible to prevent occurrence of the image shift, or the double image, by making the gap between the half mirror and the video display unit to be smaller at a portion farther from a driver's seat than at the center of the half mirror.
Prior to describing an exemplary embodiment of the present invention, a problem of the conventional electronic mirror device will be briefly described. As described above, the conventional electronic mirror device is provided with a gap between the half mirror and the video display unit. Due to the gap provided between the half mirror and the video display unit in this manner, a video image displayed on the video display unit appears as a reflection image on a surface of the half mirror facing the video display unit. Accordingly, an image shift, or a double image, like image 1001 as shown in
The image shift, or the double image, is caused by the parallax shift as shown in
The image shift, or double image, reduces the visibility of the electronic mirror device, and might possibly provide an illusion as if a vehicle behind the own vehicle has started a next action.
Meanwhile, there is a tendency that the lateral size of the video display unit of the electronic mirror device is larger, so that the image shift, or double image, also may occur increasingly.
Hereinafter, an example in which an electronic mirror device in accordance with an exemplary embodiment of the present invention is mounted to a vehicle will be described with reference to the accompanying drawings. In this example, the vehicle is an automobile, and the video display unit is a liquid crystal display.
As shown in
Display device 5 is configured such that the content of display on display unit 500 can be switched, by operating operation unit 523, between a video display provided by the liquid crystal display as a video display unit and a display provided by the half mirror as a mirror.
As shown in
That is, display device 5 has body case 5A having opening 51A, and display unit 500 mounted in body case 5A. Display unit 500 has a length W1 in a first direction, and length W2 in a second direction. Length W2 is longer than length W1. The second direction is a horizontal direction. Lengths W1 and W2 may be substantially equal to each other. Display unit 500 has liquid crystal display 501, which is a video display unit, and half mirror 503. Liquid crystal display 501 has display surface 501A facing opening 51A of body case 5A. Half mirror 503 is disposed closer to opening 51A than to liquid crystal display 501, and is apart from display surface 501A.
Half mirror 503 is held at its periphery by the opening of body case 5A, so that half mirror 503 functions as a single elastic body by itself.
In a case, for example, where the electronic mirror device is unintentionally hit on the display surface side by something, gap 502 between half mirror 503 and liquid crystal display 501 allows half mirror 503 to function as an elastic body. That is, gap 502 allows half mirror 503 to bend toward liquid crystal display 501 to absorb the shock and push back the thing hitting the display surface side toward the direction opposite to liquid crystal display 501, so that the shock toward liquid crystal display 501 can be absorbed.
According to the present exemplary embodiment, liquid crystal display 501 and half mirror 503 are disposed as shown in
In addition, according to the present exemplary embodiment, the gap between liquid crystal display 501 and half mirror 503 at side 601 away from the driver's seat is made such that an image shift is not caused as illustrated in
More specifically, an image displayed on liquid crystal display 501 is reflected by a surface of half mirror 503 facing display surface 501A to produce another image. From the viewpoint at the driver's seat, a parallax shift is caused between these two images. Considering this, the gap between liquid crystal display 501 and half mirror 503 at an end of length W2 of half mirror 503 in the second direction is set such that the parallax shift becomes equal to or smaller than one pixel of liquid crystal display 501.
As shown in
According to the present exemplary embodiment, the gap between liquid crystal display 501 and half mirror 503 is set such that the parallax shift becomes equal to or smaller than one pixel of liquid crystal display 501 at side 601, which is farthest from the driver's seat and at which a maximum parallax is caused.
Referring to
Liquid crystal display 501 displays a rear view from automobile 1 taken by camera 7 mounted to automobile 1. Camera 7 and liquid crystal display 501 are connected to controller 521 as shown in
In the control block diagram of
As described hereinabove, electronic mirror device 5000 in accordance with the present embodiment is provided with gap 502 between liquid crystal display 501 and half mirror 503 to make it possible to protect liquid crystal display 501 by half mirror 503. In addition, the gap between liquid crystal display 501 and half mirror 503 at the side away from the driver's seat is set such that the parallax between the image displayed on liquid crystal display 501 and the image reflected on half mirror 503 becomes equal to or smaller than one pixel of liquid crystal display 501. Accordingly, it is possible not only to protect liquid crystal display 501 by half mirror 503, but also to prevent occurrence of an image shift, or a double image, due to half mirror 503.
Although an example of using a liquid crystal display as a video display unit is described, the video display unit may not be limited to the liquid crystal display, but may be any kind of display unit that can display an image taken by the camera, including, for example, an organic electroluminescence display.
The gap between liquid crystal display 501 and half mirror 503 may be appropriately changed to the forms as shown in
For example, as shown in
Alternatively, as shown in
Further alternatively, it would be apparent that the same advantageous effects can be obtained by the configurations as shown in
The electronic mirror device of the present invention is useful as a monitoring device for vehicles.
1 automobile
2 interior
3 driver's seat
4 front passenger seat
6 mounting unit
5A body case
500 display unit
501 liquid crystal display
501A display surface
503 half mirror
521 controller
522 storage
523 operation unit
5000 electronic mirror device
Number | Date | Country | Kind |
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2014-117261 | Jun 2014 | JP | national |
Filing Document | Filing Date | Country | Kind |
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PCT/JP2015/002828 | 6/4/2015 | WO | 00 |