PRINTING APPARATUS
Examples of the present disclosure relate generally to a printing apparatus and, more particularly, to apparatuses, systems, and methods for printing utilizing laser print head and reactive media.
1 . A printing apparatus comprising:
a preheating assembly, the preheating assembly comprising:
a first drive roller and a second drive roller positioned to be in direct contact with a top surface of a print media; and
a rotating preheating component configured to preheat the print media, the rotating preheating component being positioned to be in direct contact with a bottom surface of the print media, wherein an aperture between the first drive roller, second drive roller and the rotating preheating component defines a print media path through the preheating assembly.
2 . The printing apparatus of claim 1 , wherein the rotating preheating assembly comprises a substantially cylindrical member configured to rotate with respect to its central axis.
3 . The printing apparatus of claim 2 , wherein the rotating preheating assembly further comprises an infrared heating source or a conduction-based heating element defining an inner concentric member of the rotating preheating assembly.
4 . The printing apparatus of claim 1 , wherein a printing apparatus print line is located in between the first drive roller and the second drive roller.
5 . The printing apparatus of claim 1 , wherein the preheating assembly is at least partially mounted on a support bracket, and wherein the preheating assembly further comprises at least one of a tear bar and a guiding element.
6 . A printing apparatus comprising:
a preheating component operatively coupled to at least a first sensing element;
at least one heating component operatively coupled to at least a second sensing element; and
a controller component in electronic communication with the preheating component, the at least a first sensing element, the at least one heating component and the at least a second sensing element.
7 . The printing apparatus of claim 6 , wherein the at least one heating component comprises:
a primary heating component positioned adjacent a top surface of a print media, and
a secondary heating component positioned adjacent a bottom surface of the print media.
8 . The printing apparatus of claim 6 , wherein the controller component is configured to:
detect, via the at least a first sensing element, at least a first temperature value associated with the preheating component;
detect, via the at least a second sensing element, at least a second temperature value associated with the at least one heating component; and
regulate the operational temperature or power output of the preheating component and the at least one heating component based at least in part on one or more of the first temperature value and the second temperature value.
9 . The printing apparatus of claim 6 , wherein the controller component comprises a proportional-integral-derivative (PID) controller.
10 . The printing apparatus of claim 6 , wherein the at least a first temperature value and the at least a second temperature value each comprise one or more of an object temperature value, a surface temperature value and an ambient temperature value.
11 . The printing apparatus of claim 6 , wherein each of the preheating component and the at least one heating component comprises one or more of a cartridge heater, a flexible heater, an infrared (IR) light emitting diode heater, an IR lamp and a heater spreader.
12 . The printing apparatus of claim 6 , further comprising at least an additional sensing element that is configured to detect a temperature value associated with a surface of the print media.