Print media loading mechanism having displaceable endless belts
View Patent ↗A print media loading mechanism for a modular printer assembly includes a drive assembly. A traversing mechanism is engaged with the drive mechanism. A pair of endless belt and roller assemblies is operatively engaged with the traversing mechanism, so that actuation of the drive assembly displaces the traversing mechanism to push, or pull, the belt and roller mechanisms farther apart or closer together, respectively.
1. A print media loading mechanism for a modular printer assembly, the loading mechanism comprising:
a drive assembly including at least one worm screw and respective motor for rotating the worm screw;
a traversing mechanism engaged with the drive assembly, the traversing mechanism including traversing blocks threaded to run on respective ends of the worm screw and two arms mounted to respective traversing blocks at a common pivot point, with each arm connected to a roller held slidably in slides fixed to a frame of the printer;
a pair of endless belt and roller assemblies operatively engaged with the traversing mechanism, so that actuation of the drive assembly displaces the traversing mechanism to push, or pull, the belt and roller mechanisms farther apart or closer together, respectively.
2. The loading mechanism of claim 1 , which includes two motors and respective worm screws with traversing blocks and arms connected to the rollers on opposite sides of the endless belts.
3. The loading mechanism of claim 1 , having a driving motor fixed to the frame of the printer for operatively rotating at least one of the rollers.
4. The loading mechanism of claim 1 , wherein the belts are foraminous to enable warm air to pass through the belts over sides of media passing through the media path.
5. The loading mechanism of claim 3 , which is configured to feed media into the printer by the motor pulling the rollers together until the belts abut, whereafter the drive motor is activated to feed a leading edge of media into the media path.
6. The loading mechanism of claim 5 , which is configured so that the motor pushes the rollers apart once the media has been fed into the media path.
7. The loading mechanism of claim 6 , which is configured so that the belts are spaced from and do not bear against the media during operation of the printer.