IP Library › Granted Patent US 9,878,559
Granted Patent B2
US 9,878,559 · App. 14/862,368 · Granted Jan 30, 2018

Dual mode printer

Inventors: Stephen L. Aroneo (Franklin Lakes, NJ); Oleksandr Ryzhenko (Woburn, MA)
Assignee: Impress Systems
B41J2/335B41J2/325B41J3/28B41J3/4073B41J25/304
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Quick Facts
Patent No.
US 9,878,559
App. No.
14/862,368
Granted
Jan 30, 2018
Kind
B2
Abstract

A thermal transfer flat bed printer that is configured for printing on flat objects includes a removable cylinder print module that is installed between a print head and the flat bed. The cylinder print module includes an alignment mechanism that engages with an alignment subsystem that moves with the print head and is separated from the print head by a predetermined distance. The engagement between the alignment mechanism and the alignment subsystem positions the module relative to the print head such that a cylindrical object supported by the module is in precise alignment with the print head, to within the tight tolerances associated with cylinder printing. The cylinder print module, which rests on but does not attach to the printer flat bed, includes rollers that are arranged to both support the cylindrical object and control the rotation of the cylindrical object, to maintain the cylindrical object in precise alignment with the print head during a cylinder print operation.

Claims (45)

1. A thermal transfer printer that utilizes thermal media for printing on flat and cylindrical objects, the printer including

a print head with one or more print elements;

a print head assembly that supports the print head and an alignment component of an alignment subsystem that moves with the print head, the print head assembly supporting the alignment component at a predetermined separation from the print head;

a flatbed that supports a flat object during printing on the flat object;

a removable cylindrical print module that is positioned between the print assembly and the flatbed for a cylindrical print operation, the module including endplates that support

an alignment mechanism that is shaped to receive and engage with the alignment component of the alignment subsystem to position the module in a predetermined position relative to the print head, and

rotatable rollers that support the cylindrical object at a predetermined location on the module and control rotation of the cylindrical object,

the end plates providing a separation between the alignment mechanism and a center line of the rollers that corresponds to the predetermined separation between the alignment component and the print head.

2. The printer of claim 1 wherein

the removable cylindrical print module is positioned between the print head assembly and the flatbed, and

the print head assembly moves the print head downwardly relative to the removable cylindrical print module and the alignment component that moves with the print head is received by the alignment mechanism on the removable cylindrical print module and the alignment component and the alignment mechanism engage to position the cylindrical module in the predetermined position relative to the print head.

3. The printer of claim 2 wherein

the flatbed moves relative to the print head during a print operation, and

the rollers on the module are in contact with the flatbed and rotate in synchronism with the movement of the flatbed.

4. The printer of claim 2 wherein

the alignment component is an alignment blade, and

the alignment mechanism includes slots that are shaped to receive and engage with the alignment blade.

5. The printer of claim 2 wherein

the alignment component consists of a bar with one or more downwardly extending pins, shafts or both, and

the alignment mechanism includes bushings or holes that receive the pins, shafts or both.

6. The printer of claim 1 wherein the end plates are shaped to guide the cylindrical object to the location.

7. The printer of claim 6 wherein the end plates are shaped to allow clearance for features of the cylindrical object during rotation.

8. The printer of claim 1 wherein the alignment mechanism further includes an adjustable stop.

9. The printer of claim 2 wherein the module rests on the flat bed after installation and further includes a motor that drives at least one of the rollers in synchronism with print head operations to control the rotation of the cylindrical object during printing.

10. The printer of claim 2 wherein

the flat bed moves relative to the print head during a print operation,

the printer further includes a removable table that attaches to and moves with the flat bed, and

the rollers on the module are in contact with the removable table and the rollers rotate in synchronism with the movement of the flatbed.

11. The printer of claim 4 wherein

the print assembly includes a nose plate that supports the alignment blade on a first wall and a bracket that holds the print head on a second wall, and

the alignment blade moves upwardly and downwardly with respect to the nose plate and is held in place by a screw that when tight hold the alignment blade in place, the alignment blade moving downwardly to engage the alignment mechanism and being held in place after engagement by the screw.

12. A thermal transfer printer that utilizes thermal media for printing on flat and cylindrical objects, the printer including

a print head with one or more print elements;

a print head assembly that supports the print head and an alignment component of an alignment subsystem that moves with the print head, the print head assembly supporting the alignment component at a predetermined separation from the print head, the alignment component including an alignment blade, and

a flatbed that supports a flat object during printing on the flat object;

a removable cylindrical print module that is positioned between the print assembly and the flatbed for a cylindrical print operation, the module including

rotatable rollers that support the cylindrical object at a predetermined location on the module and control rotation of the cylindrical object, and

endplates that support an alignment mechanism that includes slots that are shaped to receive and engage with the alignment blade to position the module in a predetermined position relative to the print head, the end plates providing a separation between the alignment mechanism and a center line of the rollers that corresponds to the predetermined separation between the alignment component and the print head, and

the flatbed moves relative to the print head during a print operation and the rollers are in contact with the flatbed and rotate in synchronism with the movement of the flatbed.

13. The printer of claim 12 wherein

the print head assembly moves the print head downwardly relative to the removable cylindrical print module to position the print head for printing, and

the alignment slots on the module receive the alignment blade of the alignment component on the print head assembly to position the module in the predetermined position relative to the print head.

14. The printer of claim 13 wherein

the print assembly includes a nose plate that supports the alignment blade on a first wall and a bracket that holds the print head on a second wall, and

the alignment blade moves upwardly and downwardly with respect to the nose plate and is held in place by a screw that when tight hold the alignment blade in place, the alignment blade moving downwardly to engage the alignment mechanism and being held in place after engagement by the screw.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 23, 2015
From: ARONEO, STEPHEN L.; RYZHENKO, OLEKSANDR
To: IMPRESS SYSTEMS
Reel/Frame 036634/0751 →
Continuity (2)
Provisional Application 62053996 · Sep 23, 2014
Related Publication 20160082757A1 · Mar 24, 2016