1. Field of the Invention
The present invention relates to a ribbon module structure of label printer, and more particularly to a ribbon module structure capable of retrieving ribbons with different transfer printing sides.
2. Description of the Prior Art
Currently, the label printer provides a main body and an axle. A label roll fits with the axle. The main body is composed of a ribbon frame and a printing frame. The printing frame has two rollers, and one of the rollers is driven by a driving mechanism. Thermally-induced ribbons are disposed on the rollers. Therefore, the label and the thermally-induced ribbons are synchronously actuated by the main body, and characters or figures are transferred to the label from the thermally-induced ribbons by a print head. However, the conventional thermally-induced ribbons are classified into inner-winding and outer-winding types according to the thermally-induced material being coated on which side of the ribbon. That limits the performance of the conventional label printer. Hence, a label printer, which is suitable for both the inner-winding and outer-winding types of thermally-induced ribbons, has been developed. Nevertheless, the label printer suitable for both the inner-winding and outer-winding types of thermally-induced ribbons has to be switched over to adapt to the specific type thermally-induced ribbon manually. Further, the thermally-induced ribbons have a limited retrievable angular displacement. Therefore, it is inconvenient for the user to check the printed content on the label.
In view of the problems of related conventional arts a main objective of the present invention is to provide a ribbon module structure for a label printer, which provides a turning mechanism at an end of the input shaft thereof adaptable for both the inner-winding type and the outer-winding type of thermally-induced ribbons.
Accordingly, a ribbon module structure for a label printer according to the present invention comprises a fixed frame, an input shaft and a retrieving shaft, wherein a turning mechanism is installed at one end of the input shaft and a driving mechanism is attached to the retrieving shaft. Further, the turning mechanism provides a connecting member and a control member and the control member is capable of pivotally moving an angular displacement rightward and leftward respectively to allow the input shaft rotating clockwise and counterclockwise with the connecting member corresponding to the pivotal movements of the control member such that two retrieving modes can be offered for retrieving the inner-winding and the outer-winding types thermally-induced ribbons.
Referring to
The turning mechanism 15 further comprises a roller-shaped connecting member 151 and a double-inverted-U-shaped control member 152. The connecting member 151 is attached to an end of the input shaft 12 with a T-shaped stop arm 1511 disposed on the circumferential side of the connecting member 151. The stop arm 1511 forms a flexible connection with the fixed frame 11 by means of an end of an elastic member 16 engaging the stop arm 1511 and another end of the stop arm 1511 engaging with a locating rod extending from the fixed frame 11. An L-shaped bracket 153 provides a pivot 1531 extending from the bottom of the bracket 153 to pass through the hollow shaft 1522 and movably engaging with the control member 152 with a retaining ring. The bracket 153 is attached to the fixed frame 11 such that the control member 152 is pivotally disposed on top of the connecting member 151. Furthermore, the control member 152 has two blocking sides 1521 are provided at the lower portion thereof. When the control member 152 pivotally moves an angular displacement leftward or rightward, one of the blocking sides 1521 can approach the fixed frame 11 to block the space between the control member 152 and the fixed frame 11.
In practice, the ribbon module 1 is one of parts of a label printer and other parts are conventional structures and not belonged to the scope of the present invention. Hence, no details are recited for the remainder parts of the label printer. As the foregoing, the thermally induced ribbons are classified into the inner type and the outer type according to the thermally induced material being coated on the inner side or the outer side of the respective ribbon. That is, the input shaft 12 has to rotate with the thermally induced ribbon either clockwise or counterclockwise based on which side of the ribbon coated with the thermally induced material. It can be seen in the
Although specific embodiments have been illustrated and described, it will be obvious to those skilled in the art that various modifications may be made without departing from what is intended to be limited solely by the appended claims.
The application is a continuation in part of application Ser. No. 11/187,142
| Number | Date | Country | |
|---|---|---|---|
| Parent | 11187142 | Jul 2005 | US |
| Child | 11968165 | Jan 2008 | US |