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小型迅速デジタルミニラボ“Frontier 340E”の開発
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1. 9 3 Scheme 2 H S8 032 HSO 1 8S EDTA Fe I EDTA Fe I ArSO Ag S ArSO S Schem
2. Ye Conventional aerial turnover New wiper blade crossover Fig 5 Crossover structure FR340E Fig 6 PS1 PS4 3 PS4 FR340E PS4 PS1 PS3 20 a m
3. 13 Scheme 3 1 J 2 Solutnon without SRA with SRA 3 Sen Dye SRA x gt complex Effect of SRA 1 I Photographnc Materials Captured by Oil droplet Captured by
4. 3 Fig 7 Service selection on Frontier 330 Printing screen Fig 8 Service selection on Frontier 340E Sub main screen FUJIFILM RESEARCH amp DEVELOPMENT No 49 2004 Le Fig 9 Screen of the pre operational checks on Frontier 340E 6 2 Simple Simple 3 a b c Fig 10 Fig 10 1
5. ER330 FR340E Imaging section New densitometer Dual use carrier Paper 5 exposure section New sorter LED light SOUrCe Image processing section Leak sensor Paper Pass Filter New wiper blade crossover Fig 1 Schematic drawing of frontier 340E 3 FR330 133 APS LED FR330 Frontier 32207 3 1 LED FR330 1
6. 22 Leak sensor 4 gt Gascade P1 PS2 PS3 PS4 Bleaching 3 OMNE NEQ and fixing HG NG A Color 1 0 developing 2 Blade Seal and Squeezee A UiW 1 Pleats filter Fig 6 New paper processing tank 5 2 FR330 1 4 FR330 FR340E FR330 4 CU CC FR330
7. a I 3 FR340E 1 1 i Fig 10 Screen of the order entry on Frontier 340E 23 Fig 11 Print size changing Operation on the previous model and Frontier 340E 7 FR340E CP 49E CP 49E Dry to Dry 1 40 CP 48S Dry to Dry 3 40 3
8. Fig 4 21 Processindg time P1 P2 PS py PDryto Dry Frontier 330 MN FN 3 min 40 sec Frontier 340E 1 min 40 sec RY A DP nl Frontier 330 J 650 prints hr Feed speed 20 mm sec Frontier 340E 900 prints hr Feed speed 28 mm sec Fig 4 Comparison conventional paper processor Frontier 330 and new paper processor Frontier 340E Improved initial print dry to dry Fig 5 FR330 FR340E
9. Phote 2 Table 2 Photo 2 Sorter of Frontier 340E 6 GUI Frontier 340E Easy amp Simple GUI 6 1 Easy
10. 2 Frontier340E 2 1 FR340E FR340E gt Simple Easy FR340E FR330 1 2m2 gt e FR340E E Express Easy operation E picture 2 2 FR340E Table 1 Table 1 Main Specification of Frontier 340E
11. 1 4 4 1 FR330 FR340E 20mm sec 28mm sec PC FUJIFILM RESEARCH amp DEVELOPMENT No 49 2004 DSP FR330 DSP
12. 3 4
13. 1 Frontier350 370 No 43 35 41 2000 2 Frontier390 No 47 24 30 2002 3 Frontier330 No 48 15 21 2003 4 62 1 44 49 1999 FUJICOLOR BEVBR BBAUTY 25
14. 2 7 1 1 12 273 Scheme 1 PPD QD I HA
15. R LED FR340 R LED FR330 R 15nm Eie 2 Fig 3 RDP3 B100S LED FR330 R RDP3 E100S FR340 R RDP3 E100S FR340 R 1 Fig 2 E100S spectrum penetration percentage and LED light intensity FR330 R LED FR340 R LED 4 R RDP3 13 Fig 3 RDP3 spectrum penetration percentage and LED light intensity 3 2 FR340E 133 APS F330
16. 4 2 AD200 0 TT 100 5 5 1 CP 48S P1 38 5C P2 PS 38 CFP 49E Pl 45 0C P2 PS 40C FR340E
17. FR340 Basy a b c FR330 Hig 7 FR340E Fig 8 C PFR340E Fig 9
18. CCD LDS HG ACCS PC PC F D I 135 APS 127mm L 9 0 0 DI 1 27mm L 7 50 D I 7 5 0 1 40 Dry to Dry CP 49E FUJICOLOR EVER BEAUTY PAPER for LASER 8x12 W A 4 110 135F amp H APS 120 220 RV 1 2m 20 FR340E ER330 Table 2 Table 2 Technical Advantages of Frontier 340E L 900 670 L 650 480 4R 800 570 4R 570 410 Dry to Dry 1 40 100 Dry to Dry 3 40 220 DSP 6 DSP 4
19. 2003 9 4 250 0193 210 258 8538 798 Ashigara Research Laboratories Miyanodai Technology Development Center Fuji Photo Film Co Ltd Fuji Photo Film Co Ltd Minamiashigara Kanagawa 250 0193 Japan Miyanodai Kaisel machi Ashigarakami gun Fuji Photo Film U S A Inc Kanagawa 258 8538 Japan 555 Taxter Road Elmsford NY10523 U S A FUJIFILM RESEARCH amp DEVELOPMENT No 49 2004 19 FR340E FR330 FR330 CP 49E GUI Graphic User Iterface FR330 1 2002
20. CPU 1 2GHz CPU 566MHz 100MHz 66MHz 512MB 384MB Easy amp Simple GUI R LED 15nm 1ch L 5 4R 5 A4 2 L 3 4R 3 A4 1 L 8 4R 7 A4 2 L 4 4R 4 A4 1 AD200 AD100 Fig 1 FR330 FR330 Table 2 4 Dry to Dry Easy amp Simple lt CP 49E
21. PPD QD IT PPD 0 24 2 PPD HAox 2 PPD gt Y Tar PPD p phenylenediamine QDI quinonediimine HA hydroxylamine drivative HAox oxidized hydroxylamine derivative Reproduction of the hydroxylamine derivative Removal of oxygen Removal of quinonedilmine Scheme 1 Proposed mechanisms of tar reduction with a sulfinic acid derivative 7 2 pH
22. Oil droplet Scheme 3 Hole of the new stain reducindg agentSs FUJIFILM RESEARCH amp DEVELOPMENT No 49 2004 8 Simple Easy CN EN ER 7
23. UDC 771 318 15 771 531 2 Frontier 340E Development of Digital Minilab System Frontier 340E Fumio MOGI Katsuhiko TANAKA Teruo TAKANASHI Takashi YAMAMOTO Tatsuya KONAGAYA Kazuaki YOSHIDA Makoto SUZUKI and Yasufumi NAK AT Abstract The Frontier series of digital minilabs have won a worldwide acclaim for its incomparable print quality achieved by FujiFilm s exclusive laser technology In 2001 we made small sized fully digital minilab Frontier 330 for the considerable numbers of smaller stores Making use of Frontier 330 s platform Frontier 340E has evolved to have an enhanced processing capacity from 650 prints hr to 900 prints hr for 3R size with time saving efficiency from 3min 40sec to 1min 40sec of the dry to dry initial print finishing time and also to a simple amp easy operation system The present evolution has been realized by combining improvements in both hardware and chemical technology and by simple graphic user interface GULD For the above achievement a new processing system including a submerged wiper blade component system and a exclusively developed new set of chemicals CP 49E We are proud of the high adaptability of Frontier 340E to the specific requirements brought about by the rec
24. e 2 Reduction of sulfur formation with the sulfinic acid derivative 7 3 2 Frontier 32207 1 2 2
25. ent digitization of image information due to the rapid prevalence of digital cameras cell phone cameras etc 1 Erontier 1996 Frontier FR FR350 370 3907 lt FR330 2001 FR 4 SRK Photo 1 Frontier 340E
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