Embodiments of the present invention relate to thermal printing devices with thermal print heads and controls for print pressure.
Thermal printing devices are well known in the art. One of the primary applications of thermal printing devices is label making, in which thermal ink is transferred onto a media, like a label, by sending data to the thermal print head (TPH) and then powering/heating the elements of the thermal print head to transfer the desired pattern of thermal ink onto the label.
Thermal print heads are obviously integral to the design of thermal printing devices. They are designed to be accurate, reliable, and relatively secure from tampering, as any disturbance of the thermal print head could affect the print results. As a consequence, thermal print heads are generally not designed for easy maintenance and replacement. For users of thermal printing devices that are not technically inclined, replacing a thermal print head can be time consuming and can require special tools.
For example,
Accordingly, there is a need for a thermal printing device with an easily replaceable thermal print head that reduces maintenance downtime.
A further challenge for users of thermal printing devices is printing pressure. Depending upon the type of media (i.e. label) and the type of print job, different pressures are needed to transfer the thermal ink pattern. In an attempt to allow the user to optimize the printing pressure, earlier solutions have provided users with several controls to adjust and tune the printing pressure. For most applications, however, such precision is not required and a reduced set of pressure settings is sufficient for most applications and reduces complexity for the user.
Therefore, there is a need for a thermal printing device with a simple print pressure adjustment control.
Accordingly, one aspect of the present invention discloses a thermal printing device comprising: an internal slot having on one end an opening on one side of the housing of the thermal printing device for receiving a thermal print head with contact connector terminals on one short edge of the thermal print head; and a push-activated connector, at the opposite end of the internal slot from the opening, for receiving the thermal print head contact connector terminals.
In other embodiments, the thermal print head is mounted upon the application of pushing pressure.
In further embodiments, the mounted thermal print head is unmounted upon the application of pushing pressure.
In still further embodiments, the push-activated connector for receiving the thermal print head comprises a plurality of receiving connector terminals.
In more embodiments, each of the plurality of receiving connector terminals comprises a receiving terminal contact.
In separate embodiments, each receiving terminal contact is in contact with a corresponding contact connector terminal on the thermal print head when the thermal print head is mounted.
In still additional embodiments, the push-activated connector further comprises a tray for holding the thermal print head.
In additional embodiments, the thermal printing device further comprises a cover for the internal slot.
In expanded embodiments, the cover for the internal slot is selected from the group consisting of: a slider, a cap, and a cover flap.
In another embodiment, the thermal printing device further comprises a print pressure turn-knob.
In yet further embodiments, the print pressure turn-knob has a plurality of discrete print pressure settings, each associated with different print pressures.
In other embodiments, the print pressure turn-knob has three discrete print pressure settings corresponding to low, medium, and high print pressures.
In further embodiments, the thermal printing device further comprises a print pressure mechanism, wherein the print pressure mechanism applies the print pressure along the surface of the thermal print head and the print pressure mechanism is controlled by the print pressure turn-knob.
In still further embodiments, the print pressure mechanism comprises a bracket, a spring, a leave spring, and a detent.
A further aspect of the present invention describes a thermal print head comprising: a circuit board; a plurality of heating resistor elements extending along a first long edge of the circuit board; a plurality of contact connector terminals along one short edge of the circuit board; and a conductor circuit pattern for establishing electrical connection between the plurality of heating resistor elements and plurality of contact connector terminals.
And yet a further aspect of the present invention imparts a method for inserting a thermal print head in a thermal printing device, the method comprising: receiving, by the thermal printing device, a thermal print head into an internal slot via an opening on a side of the housing of the thermal printing device, the slot having a push-activated connector at the end of the slot opposite the opening; and responsive to the application of first pushing pressure on the thermal print head, mounting the thermal print head in the push-activated connector of the thermal printing device.
In more embodiments, the method further comprises: responsive to the application of second pushing pressure on the mounted thermal print head in the thermal printing device, unmounting the thermal print head from the push-activated connector in the thermal printing device; and partially ejecting the thermal print head out of the thermal printing device so that it may easily be removed.
An additional aspect of the present invention describes a thermal printing system comprising: a thermal printing device comprising: an internal slot with an opening on a side of the housing of the thermal printing device; and a push-activated connector at the opposite end of the slot from the opening, wherein the thermal printing device is operable to: receive, in the slot through the opening, a thermal print head with contact connector terminals on one short edge of the thermal print head; and responsive to the application of first pushing pressure on the thermal print head, mounting the thermal print head in the push-activated connector; and a thermal print head comprising: a circuit board; a plurality of heating resistor elements extending along a first long edge of the circuit board; a plurality of contact connector terminals along one short edge of the circuit board; and a conductor circuit pattern for establishing electrical connection between the plurality of heating resistor elements and plurality of contact connector terminals.
In still additional embodiments, the thermal printing device is further operable to: responsive to the application of second pushing pressure on the mounted thermal print head in the thermal printing device, unmount the thermal print head from the push-activated connector in the thermal printing device; and partially eject the thermal print head out of the thermal printing device so that it may easily be removed.
The foregoing illustrative summary, as well as other exemplary objectives and/or advantages of the invention, and the manner in which the same are accomplished, are further explained within the following detailed description and its accompanying drawings.
Embodiments of the present invention relate a thermal printing device with an easily replaceable thermal print head that reduces maintenance downtime. Embodiments of the present invention also relate to a thermal printing device with a simple print pressure adjustment control.
Under the door 201, the thermal printing device 200 includes a roll of thermal ink, such as a ribbon roll, and a roll of media, such as a roll of labels (both not shown in
It should be noted that while slot 204 is shown as a closed slot in
It should be noted that in other embodiments, the electrical components of the thermal print head 300 (the contact connector terminals 303, plurality of heating resistor elements 301, integrated circuits 302, conductor circuit pattern 304, etc.) may take on any layout, orientation, and configuration on the circuit board 306 as necessary to meet the design of specific thermal printing devices 200 and to effect the easy replacement of the thermal print head 300 in those thermal printing devices 200.
In other embodiments, the push-activated connector 400 comprises a tray for holding the thermal print head 300 in position for better precision of the insertion of the thermal print head 300 into the push-activated connector opening 403 of the push-activated connector 400.
The push-activated connector 400 that receives the thermal print head 300 is positioned in the thermal printing device 200 at the end of the slot 204 opposite the opening 205 and the thermal print head cover 202.
In the replacement of the thermal print head 300, the thermal print head cover 202 (not shown in
Upon insertion of the thermal print head 300 into the push-activated connector 400, each contact connector terminal 303 of the power/data connector 305 on the thermal print head 300 contacts the corresponding receiving terminal contacts 406 and depresses the receiving connector terminals 405 in the receiving terminal grooves 407. The thermal print head 300 is mounted or locked in position.
Upon the further application of pushing pressure on the thermal print head 300, the thermal print head 300 is unmounted or released from the locked position and the spring 404 of the push-activated connector 400 nudges, pushes, or ejects the thermal print head 300 out of the push-activated connector 400 slightly or partially so that it may be completely removed.
The disclosed subject matter may be embodied as devices, systems, methods.
To supplement the present disclosure, this application incorporates entirely by reference the following commonly assigned patents, patent application publications, and patent applications:
In the specification and/or figures, typical embodiments of the invention have been disclosed. The present invention is not limited to such exemplary embodiments. The use of the term “and/or” includes any and all combinations of one or more of the associated listed items. The figures are schematic representations and so are not necessarily drawn to scale. Unless otherwise noted, specific terms have been used in a generic and descriptive sense and not for purposes of limitation.
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