1. An air compressor, comprising:
a pump;
a variable speed motor for driving the pump;
an electronic controller for controlling operation of the variable speed motor; and
a user interface having at least one interaction mechanism for setting a speed for the variable speed motor.
2. The air compressor of claim 1, wherein said at least one interaction mechanism comprises a first button for increasing motor speed, and a second button for decreasing motor speed.
3. The air compressor of claim 1, wherein the user interface further comprises a second interaction mechanism for setting an optimum mode for the air compressor, at which the motor is set to operate to maintain a tank for the air compressor at a particular pressure level that is lower than a maximal pressure.
4. The air compressor of claim 1, wherein the user interface further comprises a second interaction mechanism for setting a maximum mode for the air compressor, at which the motor is set to operate at a maximum speed.
The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.
1. A system comprising:
a controller to adjust the speed and feed direction in which media is guided through a printer; and
a park control module to command the controller to guide a leading edge of the media to engage a park zone in the printer, wherein the park zone comprises a surface of a platen in the printer that is spaced a predetermined distance from a roller pinch point in the printer, wherein the surface of the platen is fixed with respect to the roller pinch point and the media, where the leading edge of the media is to engage the platen to mitigate roll curl in the media.
2. The system of claim 1, wherein the platen further comprises a contact surface comprising a distal surface portion connected via a juncture to an angled proximal surface portion to deflect the leading edge of the media, the park control module is further to command the controller to hold the leading edge of the media at a fixed location on the distal surface portion of the platen for a predetermined period of time to mitigate the roll curl in the media.
3. The system of claim 1, wherein the platen further comprises a contact surface comprising a distal surface portion connected via a juncture to an angled proximal surface portion to deflect the leading edge of the media, the park control module is further to command the controller to hold the leading edge of the media at a fixed location on the proximal surface portion of the platen for a predetermined period of time to mitigate the roll curl in the media.
4. The system of claim 1, wherein the platen further comprises a contact surface comprising a distal surface portion connected via a juncture to an angled proximal surface portion to deflect the leading edge of the media, the park control module is further to command the controller to hold the leading edge of the media at a fixed location on the contact surface of the platen, corresponding to the park zone, up to a distance of about 12 millimeters from the roller pinch point for a predetermined period of time to mitigate the roll curl in the media.
5. The system of claim 1, wherein the controller guides the media to a predetermined distance from the roller pinch point to impose a reverse-bow in the media relative to the roll curl of the media to mitigate the roll curl in the media.
6. The system of claim 5, wherein the roller pinch point is set at an angle of about 12 degrees between respective rollers to create the reverse bow.
7. The system of claim 1, wherein the park control module is further to command the controller to hold the leading edge at one position on the platen for a predetermined period of time and subsequently hold the leading edge at another position on the platen for another predetermined period of time to mitigate the roll curl in the media.
8. The system of claim 1, wherein the park control module receives an adjustable setting control setting to control an amount of time the leading edge of the media is held at the park zone.
9. The system of claim 1, wherein the park control module commands the controller to reduce the speed of travel of the leading edge of the media within the park zone of the platen relative to a normal media advance speed to mitigate the roll curl in the media.
10. The system of claim 1, wherein the media is paper, a synthetic material, or a mixture of paper and the synthetic material.
11. A printer, comprising:
a feed roller set to receive physical media from a roll of the media, the feed roller located before a print zone;
an output roller set located downstream from the feed roller set to eject the media from the print zone;
a controller to control the feed roller set and the output roller set to adjust the speed and direction of the media; and
a park control module to command the controller to guide a leading edge of the media to a park zone in the printer such that the leading edge of the media engages a surface of a platen in the printer to mitigate roll curl in the media, wherein the park zone being located on the platen within a predetermined distance from a roller pinch point of the feed roller between the feed roller set and the output roller set.
12. The printer of claim 11, wherein the park control module commands the controller to hold the leading edge of the media for a predetermined time on the surface of the platen at a distance of about 12 millimeters past a pinch point defined by the feed roller set.
13. The printer of claim 12, wherein the pinch angle is set to about 12 degrees to create a reverse-bow in the media as it engages the surface of the platen to mitigate the curl.
14. The printer of claim 12, wherein the park control module commands the controller to reduce the speed of travel of the leading edge of the media over the platen to emulate a stationary park position and mitigate the roll curl in the media.
15. A method comprising:
advancing media via rollers before a printing process begins;
guiding the media to a predetermined zone that is spaced downstream a predetermined distance from a pinch point in the rollers to impose a reverse-bow in the media relative to a roll curl of the media; and
holding the media against a substrate in the predetermined zone for a predetermined period of time to mitigate the roll curl of the media.
16. The method of claim 15, wherein the substrate comprises a platen, the holding the media further comprises holding the media at multiple locations in the predetermined print zone in engagement with the platen spaced apart from the pinch point to mitigate the roll curl in the media.
17. The system of claim 1, further comprising:
a feed roller set to receive the physical media from a roll of the media, the feed roller located before a print zone of the printer;
an output roller set located downstream from the feed roller set to eject the media from the print zone;
wherein the controller is to control the feed roller set and the output roller set to adjust the speed and direction of the media; and
wherein the park control module is to command the controller to guide the leading edge of the media to the park zone in the printer such that the leading edge of the media engages the surface of the platen in the printer to mitigate roll curl in the media, wherein the park zone is located on the platen within a predetermined distance from a roller pinch point of the feed roller between the feed roller set and the output roller set.
18. The system of claim 1, wherein the park control module is configured to command an advance and then reversal of direction of the media as it travels over the surface of the platen to mitigate roll curl in the media.
19. The system of claim 1, wherein the surface of the platen is substantially planar.