The present invention relates to an interactive unit for providing an electronic pen function to a projector.
In recent years, electronic blackboard systems that employ ultrasonic waves and infrared light such as disclosed in Patent Document 1 (Japanese Unexamined Patent Application Publication No. 2007-58425) have come into wide use. In this type of electronic blackboard system, an electronic pen transmits ultrasonic waves and infrared light when pressed, and sensors that are provided in two locations and that detect the ultrasonic waves and infrared light are used to specify the position pressed by the electronic pen based on the time difference of detection of the ultrasonic waves and infrared beam that were transmitted by the electronic pen and the positions of the sensors and to then reflect this position on the image that is projected by a projector.
Patent Document 2 (Japanese Unexamined Patent Application Publication No. 2010-201807) discloses an interactive board that is equipped with a projector hanger for supporting a projector and a position detection sensor and that has, as an object, enabling the use of an interactive board that uses a position-detecting transmission/reception function and that can be adopted regardless of being previously provided or newly provided in various types of blackboards and whiteboards. Patent Document 2 describes cases in which the position detection sensor is incorporated into a wall hanging unit which hangs a projector on a wall or is installed on the board surface or on a portion of the board frame.
Patent Document 1: Japanese Unexamined Patent Application Publication No. 2007-058425
Patent Document 2: Japanese Unexamined Patent Application Publication No. 2010-201807
When realizing an electronic blackboard system such as described in Patent Document 1, the positions of the sensors are used to identify the position at which an electronic pen is pressed, and the positions of the sensors are therefore of key importance.
The construction disclosed in Patent Document 2 assumes a case in which a sensor is incorporated into a wall hanging unit which hangs a projector on a wall and a case in which the sensor is installed on the board surface or on a portion of the board frame.
Apart from a whiteboard or a blackboard, a wall can also be offered as an example of a projection surface, but the wall hanging unit which hangs a projector on a wall disclosed in the cited Document 2 is assumed to be movable along the board and therefore cannot permit the use of a wall as a projection surface.
The present invention realizes an interactive unit attachment structure that enables a projector to have an electronic pen function regardless of the type of projection surface.
a) and (b) show states of the attachment of interactive unit 100.
a) and (b) show states of the attachment of interactive unit 100.
a)-(c) show attachment positions of interactive unit 100.
a)-(c) show attachment positions of interactive unit 100.
a)-(c) show details of top cover 105 of interactive unit 100.
a) and (b) show details of the top cover 105 of interactive unit 100.
An exemplary embodiment of the present invention is next described with reference to the accompanying drawings.
The electronic blackboard system shown in
Sensors 102 and 103 that detect ultrasonic waves and infrared light that are transmitted when electronic pen 400 is pressed are provided on both ends of interactive unit 100, and the reception states of these sensors 102 and 103 are sent to electronic pen position calculation unit 503 in personal computer 500 by way of USB cable 700. In electronic pen position calculation unit 503, the position at which electronic pen 400 was pressed is specified based on the positions of sensors 102 and 103 and the reception times of the ultrasonic waves and infrared light of each of the sensors, and a signal indicating this content is supplied to image synthesis unit 502.
In addition to image synthesis unit 502 and electronic pen position calculation unit 503 described above, personal computer 500 is further provided with image storage unit 501. Image data transmitted in from, for example, a radio LAN (Local Area Network) and USB memory are stored in image storage unit 501 and sent to image synthesis unit 502. In image synthesis unit 502, the image indicated by the image data that were transmitted in from image storage unit 501 is combined with an image indicating the position at which electronic pen 400 was pressed that was sent in from electronic pen position calculation unit 503, and data indicating this synthesized image are transmitted to projector 200 by way of video cable 800. In projector 200, the synthesized image that is indicated by the data that were sent in is projected, the input to electronic pen 400 being reflected in the projected image.
The attachment of interactive unit 100 is next described with reference to
As shown in
As shown in
Next, as shown in
2. Then, as shown in
The attachment position of interactive unit 100 is next described with reference to
As shown in
Because above-described sensors 102 and 103 carry out sensing of ultrasonic waves and infrared light, sensors 102 and 103 do not operate when they are rearward of the surface of whiteboard 300, which is the projection surface and which is pressed by electronic pen 400, as shown in
When rotation of the interactive unit occurs, when happens when it is caused to slide along arm 902 as shown in
In order to prevent the occurrence of rotation such as shown in
Interactive unit 100 thus slides while being guided by protrusions 110 and 111 that are inserted inside slot 904, whereby rotation such as shown in
When attaching interactive unit 100 to arm 902, adjustment dial 107 is turned to cause the adjustment screw to protrude as described hereinabove, but the concern arises that damage will occur to aim 902 at this time. To address his concern, arm 902 is prevented from being damaged by having label 905, which has a degree of thickness; adhere to arm 902 and then the adjustment screw butts against label 905, as shown in
Top cover 105 of interactive unit 100 is foamed to match the shape of the arm while taking into consideration the prevention of instability when attaching the interactive unit 100 to arm 902. In addition, notch 112 is formed to avoid label 905.
In addition, wiring accommodation unit 113 is provided in top cover 105 of interactive unit 100, as shown in
Interactive unit 100 is connected to personal computer 500. Interactive unit 100 is installed in an appropriate position with respect to the projection surface and is secured by the adjustment screw, but personal computer 500 has the capability of being carried about. If USB cable 700 should be pulled out while personal computer 500 is being carried, USB cable 700 must be reinserted in USB port 109. Although USB cable 700 can be easily reinserted should it be removed from the personal computer-500 side, USB port 109 is usually arranged in a high position and reinsertion is therefore extremely inconvenient.
Because the channel of USB cable 700 in an āSā shape, wiring accommodation unit 113 maintains a clamping force that can withstand a certain amount of tension, and by making the extraction of USB cable 700 more difficult on the USB port-109 side, the occurrence of reinsertion is prevented.
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/JP2011/071358 | 9/20/2011 | WO | 00 | 3/14/2014 |