1. Technical Field
The invention relates to a device for handling banknotes, which comprises a display unit having a display surface for displaying at least one graphical user interface to a user of the device.
2. Discussion
The device is in particular an automated teller machine by means of which banknotes can be dispensed to a user and/or banknotes can be deposited by the user. At least one graphical user interface via which the user can control the device is displayed to the user by means of a display unit. In particular, via such a graphical user interface the user is requested to carry out the individual steps required for the deposit and/or the withdrawal of banknotes.
These automated teller machines are used by people of different heights such as, for example, a person sitting in a wheel chair. Further, automated teller machines are known that can be used from inside a vehicle, wherein these vehicles can have very different seat heights. In order to guarantee that the display unit can be read without any problems independent of a position of the user's face relative to the display unit, the display unit is tiltable about an axis of rotation that preferably extends horizontally. What is problematic with these automated teller machines is that the display surface must be tilted manually by the user to a tilt angle suitable for this user, which requires effort in particular when the automated teller machine is used from inside a vehicle.
From U.S. Pat. No. 7,644,039 B1, U.S. Pat. No. 6,812,917 B2, US 2010/0126805 A1 and U.S. Pat. No. 6,296,079 B1, devices with tiltable display surfaces are known.
It is an object of the invention to specify a device in which the display surface is oriented according to the relative position of the user to the display surface.
The device for handling banknotes preferably comprises a display unit which is tiltable about an axis of rotation. Further, the device comprises a drive unit for changing the tilt of the display unit about the axis of rotation, and a camera for capturing an image of an area in front of the device opposite to the display unit, the camera generating image data corresponding to the image. Further, the device comprises a control unit for processing the image data. By means of a processing algorithm the control unit detects a body feature of a user in front of the device, in particular the face of the user, the shoulder, the upper edge of the head, the hairline, and/or the eyes. Here, preferably the position of the detected body feature is determined in the image. Based on the determined position of the detected body feature, the control unit determines a tilt angle. Subsequently, the control unit controls the drive unit such that the drive unit adjusts the display surface tilt angle determined by the control unit. In this way, the display surface of the device is automatically ideally oriented dependent on the position of the user relative to the device such that the display surface can be read well and/or used easily by the user.
Preferably, the device comprises at least one further operating element by means of which a tilt angle different from the determined tilt angle can be adjusted by the user. As a result thereof, users that prefer a tilt angle different from the determined tilt angle can adjust their preferred display unit tilt angle.
In an advantageous development of the further operating element, this operating element comprises a first push button for driving the display unit about the axis of rotation in a first direction of rotation and a second push button for driving the display unit about the axis of rotation in a second direction of rotation opposite to the first direction of rotation. By providing two separate push buttons, each push button can, for example, be assigned one pictogram that corresponds to the effect of a use of this push button on the tilt angle of the display unit. This makes it easier for the users to adjust their preferred display unit tilt angle. As an alternative or in addition to the pictogram, singles letters or a text can be provided on each push button, these letters or the text indicating the effect of the use of this push button on the tilt angle of the display unit.
In a preferred embodiment, the display unit comprises a rectangular display surface. This display surface has a first side with a first side length and a second side with a second side length, the first side and the second side enclosing a right angle. A rectangular display surface is the preferred format of a display surface for automated teller machines. With this design of the display surface, standardized user interfaces for automated teller machines can be used.
In a particularly preferred embodiment of the device, this first side is oriented horizontally. In this way, the users can particularly easily view the graphic user interfaces.
It is advantageous when a plurality of push buttons for selecting control information displayed via the user interface are arranged along the second side of the display surface and/or along a third side of the display surface opposite to the second side. By arranging these push buttons next to the display surface in the display unit, these push buttons are likewise tilted when the display unit is tilted about the axis of rotation so that they are always arranged in the same position relative to the display surface. In this way, the control information on the user interface can always be displayed in the same position on the display surface independent of the tilt angle.
In a preferred embodiment, the axis of rotation is oriented horizontally when the device is in the operating position. This allows for a particularly easy orientation of the display unit relative to the user.
In an advantageous embodiment of the device, a home position tilt angle is stored in a preset manner in the control unit. The control unit controls the drive unit such that this home position tilt angle is adjusted whenever a transaction initiated by the user is terminated or when the control unit does not detect any user in the image captured by the camera. By providing a home position tilt angle, the display unit and thus the display surface is in a home position when the device is not used. For example, a tilt angle that is to be adjusted particularly often is assigned to this home position. As a result thereof, particular short adjustment times are achieved.
In a particularly preferred embodiment, the display unit comprises a touch screen. As a result thereof, use of the device is particularly easy. Further, the user interfaces for operating the device can have a simple design and allow for easy navigation.
Further features and advantages of the invention result from the following description which, in connection with the enclosed Figures, explains the invention in more detail with reference to embodiments.
By means of a camera 38 of the device 10 an image of an area in front of the device 10 can be captured and image data corresponding to the image can be generated. The image data are then processed by means of a control unit of the device 10. A user in front of the device 10 is detected and in particular the user's face is detected, and the position of the face of the user in the image is determined. In addition, the device 10 comprises an operating element 28 via which a user can manually change the tilt angle of the display unit 12. In this embodiment, the operating element 28 is designed as a rocker switch, the two pictograms 30, 32 provided on the rocker switch indicating the operating function of the respective area of the rocker switch.
The drive unit 34 comprises a drive motor 72 which by means of a gear 73 drives a gear unit 74 comprising a stepped gear 82 and a driven gear 84. The driven gear 84 is connected to a shaft 70 in a rotationally fixed manner and drives this shaft upon a rotation of the drive motor 72. Two gears 78, 80 are connected to this shaft 70 in a rotationally fixed manner, wherein the gear 80 is hidden behind a basic plate 76 of the gear unit 74 and is thus not visible in
As already mentioned, the camera 38 captures an image of the area in front of the device 10 and generates image data corresponding to the image, which data are transmitted via the electric line 42 to the control unit 36 where they are processed. By means of a sequence described in the following in connection with
The maximum possible tilt angle from a rest position of the display unit 12 (referred to as home position) is preferably 10° in both directions. In other embodiments, the tilt angle can be varied between 0° and 15° in one or in both directions. Embodiments in which, starting out from the home position, the possible variation of the tilt angle in both directions is different, for example 10° in one direction and 15° in the other direction, are likewise possible. The home position is the position taken by the display unit 12 when no user is detected in the area in front of the device 10.
Further, the user can manually change the tilt angle of the display unit 12 by means of the operating element 28. By pressing the area identified with the pictogram 30 the display unit 12 is tilted upward in the first direction of rotation by means of the drive unit 34, whereas by pressing the area identified with the pictogram 32 the display unit 12 is tilted downward in the second direction of rotation by means of the drive unit 34.
For illustration of the tilt angle α, the legs 98, 99 forming the tilt angle α are illustrated in
Dependent on the sensor signal from the ultrasonic sensor 62, the control unit 36 determines in this embodiment whether an object that may be a vehicle 60 or a user, is present in a detection area in front of the device 100. At the same time, an image of the detection area in front of the device 100 is captured by means of the camera 38, and image data corresponding to the image are generated. The image data are then processed by means of the control unit 36 of the device 100. A user in front of the device 100 or a vehicle 60 in front of the device 100 is detected. When the control unit 36 determines on the basis of the sensor signal the presence of an object in the detection area, then the control unit 36 determines by means of the sequence described below in connection with
Alternatively, in another embodiment, in addition to the determined position of the face in the captured image, based on the sensor signal also the distance of the user or, respectively, of the object can be taken into account in the determination of the desired tilt angle to be adjusted.
In
Thereafter, in step S20, this desired tilt angle is transmitted as adjustment angle to a subprogram described in more detail in the following with reference to
In step S22, the control unit 36 then checks whether the user has already left the area in front of the device 10. For this, the camera 38 captures an image of the area in front of the device 10 opposite to the display unit 12, generates image data corresponding to this image, and the control unit 36 detects the presence of the user by means of the processing algorithm. As long as the presence of the user is detected, this step S22 is repeatedly carried out. As soon as the control unit 36 determines that the user has left the area in front of the device 10, the preset tilt angle assigned to the home position is defined as new tilt angle to be adjusted in program step S24 and thereafter, in step S26, transmitted as adjustment angle to the subprogram for adjusting the tilt angle. After the home position tilt angle has been adjusted in step S26, the program is terminated in step S28.
In an advantageous development, the sequence is automatically repeatedly executed after termination in step S28 and is again started in step S10.
If the angle difference has a positive sign, the sequence proceeds from step S60 to step S62. In step S62, the drive unit 34 is driven for changing the tilt of the display unit 12 such that the display unit 12 tilts upward in the first direction of rotation in the direction of the arrow P5 shown in
If, however, it has been determined in step S60 that the sign of the angle difference is negative, the drive unit 34 is driven such that the display unit is tilted downward in the second direction of rotation opposite to the direction of the arrow P5 shown in
Likewise, the actual tilt angle α is stored in the memory unit of the control unit 36 as new actual tilt angle α before the sequence is terminated in step S56.
In the described embodiments, the face of the user is detected as body feature of the user. In other embodiments, however, also other body features such as the shoulder, the upper edge of the head, the hairline, and/or the eyes may be detected and their position in the image may be determined.
The entire disclosure of European Patent Application No. 11 186 147.2, filed Oct. 21, 2011, is expressly incorporated by reference herein.
Number | Date | Country | Kind |
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11 186 147.2 | Oct 2011 | EP | regional |