The present invention relates to the printer technology and, more particularly, to a barcode printer.
Currently available barcode printers for business generally use a plurality of interconnected printing papers folded in a zigzag. A paper delivering roller moves a printing paper forward to pass through a printer which is activated to print a one-dimensional barcode on a face of the printing paper. After the printing paper printed with the barcode moves forward and passes through a paper cutting device and a paper output device, the paper cutting device cuts a rear edge of the printed paper originally connected to a front edge of the next printing paper, and paper output rollers moves the printed paper forward and outward.
However, the paper tray of the conventional barcode printer cannot be adjusted in response to the length of the stacked height of the printing papers. Furthermore, the printing paper tends to tilt and wobble while entering the printing device, adversely affecting actuation of printing controlled by detection. Furthermore, troubleshooting should be carried out conveniently when the printing paper is jammed while moving in the printing device and the paper output device. Thus, a need exists for a novel barcode printer that mitigates and/or obviates the above drawbacks.
An objective of the present invention is to provide a barcode printer that can be adjusted in response to the length of the stacked height of the printing papers and that can control the printing paper to be stably fed, printed, cut, and outputted while permitting easy removal of the jammed printing paper.
To achieve the above objective, a barcode printer according to the present invention comprises a frame, a paper receiving device, a printing device, a cutting device, and a paper output device, with the paper receiving device, the printing device, the cutting device, and the paper output device disposed on the frame,
wherein the paper receiving device includes a receiving space having an upwardly facing opening, wherein the receiving space is configured to receive a plurality of printing papers which is interconnected and folded in a zigzag manner, wherein each of the plurality of printing papers has a mark on a face thereof,
wherein the printing device includes a printing seat, a printer, a paper delivering roller, a pivotal holding member, a paper feeding motor, and a first detector, wherein the printing seat includes a top portion having a paper inlet passage extending in a transverse direction, wherein a front arcuate guiding board and a rear guiding board extend upward from a front side and a rear side of the paper inlet passage, respectively, wherein the printer is disposed in the printing seat and extends in a transverse direction, wherein the paper delivering roller presses against the printer and has two shaft ends rotatably mounted to two holding arms on two sides of the pivotal holding member, wherein the paper feeding motor is located below the printer and is configured to drive the paper delivering roller via a gear unit,
wherein the paper cutting device includes a paper cutting seat and a cutter disposed in the paper cutting seat, wherein the cutter has a cutting blade facing downwards,
wherein the paper output device includes a paper output seat, a top cover, a paper output roller unit, a paper output motor, and a paper output connecting seat, wherein the paper output seat has a rear section extending below the cutter to a position adjacent to the printer, wherein the top cover is openably disposed on top of the paper output seat, wherein the paper output roller unit is disposed on a front section of the paper output seat and extends in the transverse direction, wherein the paper output roller unit includes two paper output rollers disposed in parallel and pressing against each other, wherein the paper output motor is configured to drive one of the two paper output rollers, wherein the paper output connecting seat and a front end of the paper output seat together form a paper outlet,
wherein a front edge of an uppermost one of the plurality of printing papers is inserted downward in between the front arcuate guiding board and the rear guiding board of the printing seat, the uppermost one of the plurality of printing papers enters the paper inlet passage, wherein the paper delivering motor drives the paper delivering roller to move the uppermost one of the plurality of the printing papers forward to pass through a gap between the printer and the paper delivering roller, wherein when the mark on the uppermost one of the plurality of the printing papers is detected by the first detector, the printer is activated to print a barcode on a lower face of the uppermost one of the plurality of the printing papers, the front edge of the uppermost one of the plurality of the printing papers is moved to pass through the cutter, the paper output seat, and a gap between the two paper output rollers, wherein the paper delivering motor is then stopped to stop a rear edge of the uppermost one of the plurality of the printing papers at a position below the cutter, wherein the paper output motor drives the paper output roller unit to pull the plurality of the printing papers forward, moving the rear edge of the uppermost one of the plurality of the printing papers upward to contact with the cutting blade to cut the rear edge, and wherein the paper output roller unit moves the cut printing paper forward and outward.
In an example, the paper receiving device further includes a partitioning board detachably mounted in the receiving space and configured to match with a length of associated printing papers to be received in the receiving space.
In an example, a substantially U-shaped fender associated with the receiving space is disposed upright on a peripheral edge of a top portion of the paper receiving device and has a forwardly facing opening. A sensor is disposed in the receiving space and is configured for detecting whether the plurality of printing papers reaches a low inventory level.
In an example, the front arcuate guiding board is higher than the rear guiding board and has two stop boards at two sides thereof.
In an example, the two holding arms on the two sides of the pivotal holding member of the printing device are pivotably mounted to the printing seat. A plurality of springs is connected between the pivotal holding member and the printer, such that the two holding arms are biased downwardly to be securely coupled to the two shaft ends of the paper delivering roller. One of the two holding arms has a pressing portion configured to be manually pressed to pivot the two holding arms upward to release the paper delivering roller. The printing seat includes a stopper configured to be pivotable to a position stopping the pressing portion of the one of the two holding arms.
In an example, each of the printing seat and the paper cutting seat includes an intermediate portion having a recess facing the paper delivering roller.
In an example, a micro switch is disposed on the paper output seat and is configured to detect an open state or a closed state of the top cover.
In an example, a second detector is disposed in the paper output seat and is configured to detect output of the cut printing paper.
In an example, a fixing seat is movably connected to a bottom portion of the frame. The fixing seat includes two guiding tracks on two sides thereof. The bottom portion of the frame includes two side tracks associated with the two guiding tracks. A third detector is disposed on the frame and is configured to detect forward displacement of the frame relative the fixing seat.
In an example, a positioning member is disposed on the bottom portion of the frame. The positioning member includes two elastic positioning portions extending on two sides thereof. Each of the two guiding tracks of the fixing seat has two positioning grooves on a front portion and a rear portion thereof, respectively.
The present invention will become clearer in light of the following detailed description of illustrative embodiments of this invention described in connection with the drawings.
With reference to
The frame 1 includes a seat 11 having an upwardly facing opening. Two side tracks 12 and a positioning member 13 are disposed on the bottom portion of the frame 1 (see
The paper receiving space 2 includes a receiving space having an upwardly facing opening. The receiving space 21 is configured to receive a plurality of printing papers 8 (see
A substantially U-shaped fender 24 associated with the receiving space 21 is disposed upright on a peripheral edge of a top portion of the paper receiving device 2 and has a forwardly facing opening (see
The printing device 3 includes a printing seat 31, a printer 32, a paper delivering roller 33, a pivotal holding member 34, a paper delivering motor 35, and a first detector 37. The printing seat 31 includes a top portion having a paper inlet passage 312 (see
The printer 32 can be of a hot-press printing type. The printer 32 is disposed in a seat 311 of the printing seat 31 and extends in a transverse direction, as shown in
The paper delivering motor 35 is located below the printer 32 and has a shaft configured to drive the paper delivering roller 33 and a gear 332 to rotate via transmission by a gear unit 351. The first detector 37 (see
The paper cutting device 4 includes a paper cutting seat 41 and a cutter 42 (see
The paper output device 5 includes a paper output seat 51, a top cover 52, a paper output roller unit 53, a paper output motor 54, and a paper output connecting seat 55, as shown in
As shown in
As shown in
When the barcode printer of the embodiment according to the present invention proceeds with a first printing operation, as shown in
Then, the printing device 3 controls the paper delivering motor 35 and the paper delivering roller 33 to rotate in a reverse direction, moving the next printing paper 8a backward until the mark 81a (see
The barcode printer according to the present invention can control the printing paper 8 to stably proceed with the feeding, printing, cutting, and outputting procedures. In a case that a printing paper 8 is jammed in the printing device 3, an operator can pivot and open the stopper 36 and its stop portion 361. Then, the pressing portion 343 of the pivotal holding member 34 can be pulled rearward, pivoting the two holding arms 341 and the holding portion 342 upward to release the paper delivering roller 33. Thus, the printing paper 8 can be easily pulled rearward to relieve the jam. Next, the operator can extend his or her fingers downwardly into the recesses 316 and 411 of the printing seat 31 and the paper cutting seat 41, thereby returning the paper delivering roller 33. Then, the holding portion 342 of the associated holding arm 341 is pressed downward to couple the two holding arms 341 to the two shaft end portions 331 of the paper delivering roller 33. Next, the stop portion 361 of the stopper 36 is pivoted to a position stopping the pressing portion 343 of the associated holding arm 341. Furthermore, when a printing paper 8 is jammed in the paper output device 5, the operator can open the top cover 52 (see
Although specific embodiments have been illustrated and described, numerous modifications and variations are still possible without departing from the scope of the invention. The scope of the invention is limited by the accompanying claims.
Number | Name | Date | Kind |
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20090174139 | Chen | Jul 2009 | A1 |
20140060275 | Chng | Mar 2014 | A1 |
20190001712 | Nohara | Jan 2019 | A1 |
Number | Date | Country | |
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20230173828 A1 | Jun 2023 | US |