1. Field of the Invention
The present invention relates to a disc tray, particularly to a disc tray adapted for printing devices.
2. Description of the Related Art
The disc tray for printing devices has been developed for a long time. However, it still needs a labor to manually change the disc before and after printing, respectively. Thus, it may drag down the efficiency for printing the discs.
When the transport arm device for carrying disc is developed flourishingly, it did help the printing efficiency for discs. However, before the discs are printed, they need to be processed, such as recording or verifying compact discs. In other words, the transport arm device needs to move the discs between two different processing systems. But the disc trays for different systems (such as a printing device system and a processing device system) usually have different designs. Furthermore, it will slow down the efficiency when waiting for the transport arm device to move away the discs from the printing device to a colleting tray and also waiting for the transport arm device to move a next processed disc from the processing system to the printing device.
In addition, most printing devices are multifunctional. In other words, the modern printing devices can be used as a general printer to print for papers and also can be used as a disc printer for printing the discs. However, due to the different size of the objects to be printed, it is required to manually set the printing device (printer) in order to comply with the different objects (i.e. papers and discs) to be printed.
A main objective of the present invention is to provide a disc tray for a printing device, which can receive a disc (such as CD or DVD, or the like) for the printing device to print on the disc.
Another objective of the present invention is to provide a control box adapted to a disc tray for controlling a sensor of a printing device, wherein the disc tray is used for the printing device to print on a disc received on the disc tray.
The present invention provides a disc tray for a printing device comprising a mover driving means including a first guiding portion; a main body comprising a disc receiver having a holding portion and a slopping portion connected with each other, a second guiding portion engaged with the first guiding portion, and a third guiding portion, wherein the mover driving means drives the main body by way of the first guiding portion and the second guiding portion to move the main body; and a supporter comprising a fourth guiding portion engaged with the third guiding portion so as to allow the fourth guiding portion moving along the third guiding portion, wherein the supporter and the holding portion are used to support a printed disc; when the disc receiver receives the printed disc, the supporter is moved to be veiled under the main body for dropping the printed disc from the slopping portion of the disc receiver.
In another aspect of the invention, a control box is provided. The control box of the present invention is adapted to a disc tray (such as the disc tray described above) for controlling a sensor of a printing device, which comprises a printer driving means; a hollowed shaft with an indentation; a movable portion comprising a main portion and a protrusion extending from the main portion, with the protrusion being received inside the indentation, wherein the main portion comprises a hole; and an eccentric cam driven by the printer driving means, wherein the hole of the main portion is used for receiving the eccentric cam; whereby the printer driving means drives the eccentric cam for swaying the main portion and the protrusion so as to unveil the protrusion from the hollowed shaft for controlling the sensor of the printing device.
Other objectives, advantages, and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
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The second guiding portion 122 is engaged with the first guiding portion 111. The mover driving means 11 drives the main body 12 by way of the first guiding portion 111 and the second guiding portion 122 to move the main body 12. In a preferred embodiment, the first guiding portion 111 is substantially a cam, and the second guiding portion 122 comprises a plurality of positioning holes for at least a part of the cam to engage with for rolling the main body 12 to move. In this embodiment, the mover driving means 11 may further comprise at least a gear 112 engaged with a bolt 1131 and the cam 111, a motor 113 connected with the bolt 1131. However, the example shown in FIGs are not used to limit the present invention, for example, the first guiding portion and the second guiding portion can be designed as a track and a guider respectively or the like to achieve the substantial same engaging and guiding functions. In this embodiment, the mover driving means 11 is fixed and unmoved corresponding to the main body 12, so when the cam 111 is driven by the motor 113 to rotate, the holes 122 engaged with the cam 111 can be used to move the main body 12.
The fourth guiding portion 131 is engaged with the third guiding portion 123 so as to allow the fourth guiding portion 131 moving along the third guiding portion 123. Furthermore, in one embodiment, the third guiding portion 123 extends along an edge of the disc receiver 121. In another embodiment, the third guiding portion 123 is a slot near the disc receiver 121. The fourth guiding 131 is substantially a bulge engaged with the third guiding portion 123 for allowing the supporter 13 to be moved along the third guiding portion 123. However, as described in above, FIGs are not used to limit the present invention, for example, the third guiding portion and the fourth guiding portion can be designed as holes and a cam respectively or the like to achieve the substantial same engaging and guiding functions.
In a preferred embodiment, the disc tray 1 may further comprises a base 10 corresponding to the main body 12. When the main body 12 is moved forward to send an unprinted disc 100 received on the disc receiver 121 to the printing device 2 (as shown in
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In a preferred embodiment, the slopping portion 1212 comprises an axle 1210 so as to allow the slopping portion 1212 being moved up and down. As shown in
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As described in the prior art, when a general printer is used for printing discs, it is required to change manually for the controlling of the printer. Thus, in a preferred embodiment, as shown in
Thus, in another aspect of the invention, a control box is provided. Please see
The printer driving means 141 may comprise a motor 1411 and a bolt 1412 connected thereto to drive at least one gear 1413. The printer driving means 141 drives the eccentric cam 142 for swaying the main portion 1430 and the protrusion 1431 so as to unveil the protrusion 1431 from the hollowed shaft 145 for controlling the sensor of the printing device 2 (as shown in
Although the present invention has been explained in relation to its preferred embodiment, it is to be understood that many other possible modifications and variations can be made without departing from the spirit and scope of the invention as hereinafter claimed.