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    • 75. 发明专利
    • SYSTEM FOR SEGREGATING PURGE SHEETS AND CONTINUED PRINTING
    • AU638389B2
    • 1993-06-24
    • AU8152591
    • 1991-08-01
    • XEROX CORPORATION
    • CARLA J. KINDERWILLIAM M. OUYANGMICHAEL E. FARRELL
    • B65H29/60B65H29/62B65H39/11G03G15/00
    • In copying or printing, proper printed copy sheets generated from the printing operation may be selectably operator directed to various different copy sheet output compiling stations, such as a stacking tray or a finisher compiler. Those copy sheets desired to be purged rather than provided as finished copies {called purge sheets below} are directed to a particlar designated such station for operator removal and disposal. Preferably this designated purge station is a readily operator accessible existing top tray. In this system, reduced printing delays are provided by continuing the printing process as long as the proper copy sheets are selectably directed to a copy sheet output compiling station which is not the same tray or station into which the purge sheets have been directed in the same printing operation, or, as long as the proper copy sheets will not be stacked on top of the purge sheets in that same tray. The printing operation of the copy sheets is automatically stopped to prevent such intermixing of the purged sheets with the proper copy sheets in the same output tray. However, this interrupted printing operation can then resume in response to sensing that all the sheets in that tray have been removed, which may be directed.
    • 79. 发明专利
    • DK133524C
    • 1976-10-18
    • DK244771
    • 1971-05-19
    • XEROX CORPORATION
    • DRAUGELIS V CHARTMAN W RLANGDON M J
    • G03G15/01
    • 1345391 Electro-photography XEROX CORP 17 May 1971 [20 May 1970] 15329/71 Heading G2H In a subtractive multi-colour registered transfer process using impure light filters, a developed image corresponding to a pure colour is produced at each stage by employing a development electrode at a potential between a high potential corresponding to the pure colour and a lower potential corresponding to other colours transmitted by the filter. The development electrode potential may be 20 volts above the said lower potential. A line-by-line image of a stationary object, corresponding to a particular colour, may be projected on to a charged photoconductive drum 10 using a moving lens system comprising illumination lamps 18 and filter 20, the resulting charge image being developed at one of a plurality of magnetic developer stations 21-23 and transferred to a sheet 100. Each developer station comprises a pair 80 of rotary cylinders, each containing a stationary magnetic 81 and being connected to a source of potential Fig.7 (not shown). In the complete multistage process, the filters are changed automatically by means of a solenoid.