1. Field of the Invention
The present invention relates to a print system with ribbon identification function, and more specifically, to a print system capable of identifying information of a ribbon with a plurality of identification regions on a ribbon shaft.
2. Description of the Prior Art
Due to the full tone printing performance, a dye sublimation printer becomes a trend in the printing market. The ribbon identification is often achieved by chip control, for reading ribbon information of a type, an area code, remaining ribbons, and so on, and it has high cost and complicated mechanical design. As for mechanical design to read information stored in the chip by means of contact with a circuit board, a cam mechanism is often used for separating the circuit board during printing, so as to increase manufacture cost and complexity of mechanical design. Even a radio frequency (RF) Chip can be utilized for solving the above-mentioned problems, but it has expensive cost and can not apply for mass production. Therefore, there is a need to provide ribbon identification mechanism with low cost and simply mechanical design in the print industry.
The present invention provides a print system capable of identifying information of a ribbon with a plurality of identification regions on a ribbon shaft to solve the problems mentioned above.
According to the claimed invention, a print system includes a casing, and a ribbon shaft rotatably installed inside the casing for carrying a ribbon. A plurality of identification regions is formed on the ribbon shaft . The print system further includes a ribbon motor installed inside the casing for driving the ribbon shaft, a sensor installed inside the casing for sensing the plurality of identification regions on the ribbon shaft as the ribbon shaft rotates, and a control unit installed inside the casing and coupled to the sensor and the ribbon motor for determining information of the ribbon according to a sensing result of the plurality of identification regions on the ribbon shaft sensed by the sensor.
According to the claimed invention, each identification region includes a beginning zone, a terminal zone, and a recognition zone connected to the beginning zone and the terminal zone, and the beginning zone and the terminal zone of the different identification regions are adjacent.
According to the claimed invention, a notch is formed on the beginning zone and the terminal zone is a closed zone.
According to the claimed invention, a notch is formed on the recognition zone or the recognition zone is a closed zone.
According to the claimed invention, the plurality of identification regions is arranged in a radial array.
According to the claimed invention, an initial region is further formed on the ribbon shaft and connected to two terminal identification regions of the plurality of identification regions.
According to the claimed invention, the initial region is a closed region.
According to the claimed invention, the initial region and the plurality of identification regions are arranged in a radial array.
According to the claimed invention, the sensor is an optical interrupter, and the control unit is for determining the information of the ribbon according to the sensing result of whether the plurality of identification regions on the ribbon shaft interrupts light, sensed by the sensor.
According to the claimed invention, the print system further includes a decoding module connected to the ribbon motor for converting rotational speeds of the ribbon motor and the ribbon shaft.
According to the claimed invention, the decoding module includes a wheel connected to the ribbon motor. A plurality of openings is formed on the wheel. The decoding module further includes a sensing component for sensing the plurality of openings formed on the wheel.
According to the claimed invention, the sensing component is an optical interrupter.
According to the claimed invention, the print system is a dye sublimation print system.
The print system of the present invention utilizes the identification regions on the ribbon shaft to determine information of the ribbon, such as a type, an area code, and so on. It can save the chip with high cost and the cam mechanism with complicated mechanical design in the prior art, so as to provide ribbon identification mechanism with low cost and simply mechanical design in the print industry.
These and other objectives of the present invention will no doubt become obvious to those of ordinary skill in the art after reading the following detailed description of the embodiment that is illustrated in the various figures and drawings.
Please refer to
The sensor 62 can be an optical interrupter, and the control unit 64 can be for determining the information of the ribbon 56 according to the sensing result of whether the plurality of identification regions 58 on the ribbon shaft 54 interrupts light, sensed by the sensor 62. Additionally, the print system 50 can selectively include a decoding module 66 connected to the ribbon motor 60 for converting rotational speeds of the ribbon motor 60 and the ribbon shaft 54, so that the control unit 64 can determine the plurality of identification regions 58 on the ribbon shaft 54 precisely. For example, the decoding module 66 can include a wheel 68 and a sensing component 70. The wheel 68 is connected to the ribbon motor 60, and a plurality of openings 681 is formed on the wheel 68. The sensing component 70 can sense the plurality of openings 681 formed on the wheel 68 as the ribbon motor 60 drives the wheel 68 to rotate, for converting rotating angles of the ribbon motor 60 and the ribbon shaft 54 so as to get a rotational distance of the ribbon shaft 54. The sensing component 70 can be an optical interrupter.
Please refer to
Please refer to
The ribbon identification mechanism of the present invention is introduced as follows. For example, if the reduction ration of the ribbon motor 60 and the ribbon shaft 54 is 27.3 and there are thirty openings 681 on the wheel 68 connected to the ribbon motor 60, the ribbon shaft 54 rotates for 360 degrees as the wheel 68 rotates for 819 units (27.3*30=819) . That is, when the ribbon shaft 54 rotates for 12 degrees, the wheel 68 rotates for 27.3 units (819*12/360=27.3). As shown in
The decoding module 66 of the present invention can be selectively utilized. For example, the relationship of the rotational speeds of the ribbon motor 60 and the ribbon shaft 54 can be obtained by using a step motor to drive the ribbon shaft 54, or the signals corresponding to different units can be distinguished by detecting a light penetration period. It depends on actual design demand. In addition, a reduction ratio of the ribbon motor 60 and the ribbon shaft 54, an amount of the openings 681 on the wheel 68, an amount of the divided units of the ribbon shaft 54, and an amount and disposal of the initial region 72 and the identification region 58 are not limited to those mentioned above, and all mechanisms with the identification regions for ribbon identification are within the scope of the present invention.
In contrast to the prior art, the print system of the present invention utilizes the identification regions on the ribbon shaft to determine information of the ribbon, such as a type, an area code, and so on. It can save the chip with high cost and the cam mechanism with complicated mechanical design in the prior art, so as to provide ribbon identification mechanism with low cost and simply mechanical design in the print industry.
Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention.
Number | Date | Country | Kind |
---|---|---|---|
100142871 | Nov 2011 | TW | national |