Abstract:
A thermal printer and a printing method are provided. The thermal printer includes a thermal printhead for applying a predetermined amount of heat to a thermal recording paper to develop a print layer provided on the thermal recording paper; a feeding roller for feeding the thermal recording paper, a platen roller for facing the thermal printhead to support the thermal recording paper, wherein the thermal recording paper passes between the thermal printhead and the platen roller, a first encoder sensor for detecting a rotation of the platen roller, a second encoder sensor for detecting rotation of the feeding roller; a counting unit for counting first and second pulse signals generated from the first and second encoder sensors, respectively, and a switching unit of the first and second pulse signals as a variable to control the feeding of the thermal recording paper.
Abstract:
A mobile image forming apparatus is provided that comprises a casing, a support frame to surround a printing medium roll from which a printing medium is supplied and to guide the printing medium, an image forming unit to form an image on the printing medium guided by the support frame and a printing medium receiving portion disposed between the casing and the support frame to receive therein the printing medium on which the image is formed by the image forming unit. The mobile image forming apparatus may further comprise a roll support core disposed in the support frame to rotatably support the printing medium roll.
Abstract:
An image forming apparatus having a first image forming unit and a second image forming including a printing medium supplier which supplies a printing medium, a selection guide which selectively guides the printing medium from the printing medium supplier to one of a first supplying path of the first image forming unit and a second supplying path of the second image forming unit, and a first feed roller which is disposed between the selection guide and the printing medium supplier, and transfers the printing medium from the printing medium supplier to the selection guide.
Abstract:
A thermal printer and a printing method are provided. The thermal printer includes a thermal printhead for applying a predetermined amount of heat to a thermal recording paper to develop a print layer provided on the thermal recording paper; a feeding roller for feeding the thermal recording paper, a platen roller for facing the thermal printhead to support the thermal recording paper, wherein the thermal recording paper passes between the thermal printhead and the platen roller, a first encoder sensor for detecting a rotation of the platen roller, a second encoder sensor for detecting rotation of the feeding roller; a counting unit for counting first and second pulse signals generated from the first and second encoder sensors, respectively, and a switching unit of the first and second pulse signals as a variable to control the feeding of the thermal recording paper.
Abstract:
A thermal image forming apparatus includes a platen roller and a thermal printhead. A heating portion of the thermal printhead has a plurality of heating elements arranged along an area where the platen roller and the thermal printhead form a printing nip. A plurality of driving integrated circuits are mounted on a substrate and connected to the heating elements of the heating portion. A block is formed higher than the driving integrated circuits such that the driving integrated circuits are disposed between the block and the heating portion. A conveying unit is disposed toward the heating portion of the thermal printhead and conveys a sheet of paper between the platen roller and the thermal printhead.
Abstract:
A thermal image forming apparatus includes a platen roller and a thermal printhead. A heating portion of the thermal printhead has a plurality of heating elements arranged along an area where the platen roller and the thermal printhead form a printing nip. A plurality of driving integrated circuits are mounted on a substrate and connected to the heating elements of the heating portion. A block is formed higher than the driving integrated circuits such that the driving integrated circuits are disposed between the block and the heating portion. A conveying unit is disposed toward the heating portion of the thermal printhead and conveys a sheet of paper between the platen roller and the thermal printhead.
Abstract:
An image forming apparatus is provided and includes a platen roller and a thermal printing head. The thermal printing head is elastically biased toward the platen roller and rotates about a pivot of the platen roller for moving between first and second positions to faces first and second surfaces of a medium. A transfer portion has driving and driven rollers which are rotatably engageable with each other to transfer the media. A guiding unit reduces a difference of media transfer force of the transfer portion when the thermal printing head is respectively located in the first and second positions.
Abstract:
An image forming apparatus having a first image forming unit and a second image forming including a printing medium supplier which supplies a printing medium, a selection guide which selectively guides the printing medium from the printing medium supplier to one of a first supplying path of the first image forming unit and a second supplying path of the second image forming unit, and a first feed roller which is disposed between the selection guide and the printing medium supplier, and transfers the printing medium from the printing medium supplier to the selection guide.
Abstract:
A thermal type image forming apparatus is provided for printing images on both sides of a medium, which are a first surface and a second surface of the medium. A thermal print head (TPH) is rotated about a platen roller to a first position facing the first surface of the medium and to a second position facing the second surface of the medium. The thermal type image forming apparatus includes a transfer unit for transferring the medium in a first direction to supply the medium to a space between the platen roller and the thermal print head and in a second direction substantially opposite to the first direction to perform printing. A control member controls motion of the platen roller in the second direction to align a printing nip formed by the platen roller and the TPH with a heating line of the thermal print head. The platen roller is elastically biased in a direction to contact the control member.
Abstract:
A camera including a lens protection cap is provided. The camera includes a case, a lens, a power switch, and the lens protection cap. The lens is located inside the case and exposed toward a front side. The power switch is provided on the outer surface of the case, for turning the power on/off, and the lens protection cap is provided to prevent damage of the lens by shielding the lens when the power is turned off. The power switch and the lens protection cap are directly connected with each other to allow the lens protection cap to expose/shield the lens when the power switch is on/off-operated.