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公开(公告)号:US2842248A
公开(公告)日:1958-07-08
申请号:US55674855
申请日:1955-12-30
Applicant: IBM
Inventor: FRED SALTZ , STREET RAMON L
CPC classification number: B41J11/44
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公开(公告)号:CA1241228A
公开(公告)日:1988-08-30
申请号:CA508030
申请日:1986-04-30
Applicant: IBM
Inventor: ENGLE VENCIL D , HAFER CAMERON H , HUGHES FRANK M , STEGER DONALD J , STEWART EDWARD G , STREET RAMON L , THOMPSON JOHN A
Abstract: THERMAL PRINTER A thermal printer (10) has a thermal transfer medium (28) fed past a thermal printhead (21) at a substantially constant velocity by a feed roll (82) engaging the thermal transfer medium just prior to the printhead to maintain a portion of the thermal transfer medium between the printhead and the feed roll relatively stiff. The feed roll is mounted on a cartridge (30) having the thermal transfer medium supplied therefrom. A drag brake (70) is disposed in the feed path of the thermal transfer medium prior to the feed roll to cause a substantially constant premetering tension to be applied to the thermal transfer medium irrespective of the coefficient of friction between the drag brake and the thermal transfer medium. A carrier (14), which supports the printhead and a feed roll driver (90), is driven separately from the feed roll driver so that various ratios between the velocities of the thermal transfer medium and the carrier are obtained to produce various print qualities. One print quality occurs in a draft mode, which is a relatively high speed, in which there is substantial conservation of the thermal transfer medium. The peel angle of the thermal transfer medium from a recording medium (12) on which printing occurs is maintained at a relatively low angle to increase the contact time between the thermal transfer medium and the recording medium.
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公开(公告)号:CA1212582A
公开(公告)日:1986-10-14
申请号:CA465432
申请日:1984-10-15
Applicant: IBM
Inventor: DOVE DEREK B , MAKOWKA CLAUS D , STREET RAMON L
Abstract: RESISTIVE RIBBON THERMAL TRANSFER PRINTING SYSTEM AND PROCESS A technique and structure for resistive ribbon thermal transfer printing including a separate resistive ribbon and transfer ribbon therefor is illustrated. The resistive ribbon is used only for the generation of heat and is placed in contact with a separate transfer ribbon including a very thin carrier ribbon coated with ink. A moveable electrode printhead generates a heat pattern along the resistive ribbon and this pattern is compressed along the direction of printing by means of printhead motion v1. The resistive ribbon is moved relative to the transfer ribbon at a velocity v2 so as to generate a heat flow in the transfer ribbon corresponding to the pattern required for normal printing. The ink is melted and is transferred from the transfer ribbon to the paper.
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