AIIM TR19-1993 Electronic Imaging Output Displays《电子影像输出显示器》.pdf
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1、AIIM TRLS 93 W LO12348 0500355 700 W AIIM TR19-1993 Electronic Imaging Output Displays Technical Report n Association for Information and Image Management 1100 Wayne Avenue, Suite 1100 Silver Spring, Maryland 2091 O Telephone 301 1587-8202 AIIM TRIS 93 W LO12348 0500356 b47 m AIIM TR19-1993 Technica
2、l Report for Information and Image Management Electronic Imaging Output Displays Association For Information and Image Management a a This technical report describes current electronic display technologies that are used in the office document handling environment. It can be used as a guide when sele
3、cting appropriate display technology to match electronic image manage- ment requirements. AIIM TR19 93 m 1012348 0500357 583 Contents Foreword i 1 Scope and purpose .l 2 References . 1 3 Definitions . 1 4 Display technologies . 3 for one definition to be inappropriately used for another. Although th
4、e following do not comprise all technologies or situations, it is important to differentiate between the following terms for the purpose of this report. Fuller and more detailed explanations are provided in the appropri- ate sections of this technical report. O 5 Display features .5 6 Application co
5、nsiderations. . 10 7 Human factors and ergonomics 11 8 Summary . 12 Figure 1 Illustration of portrait and image landscape displays 8 Foreword This document provides information on the types ofdis- plays used with electronic image management (EIM) sys- tems. Particular emphasis has been given to high
6、- resolution monochrome displays that are used for office- type documents. Color displays have been included as well as a brief review of other emerging technologies. (Note: The terms cathode ray tube, monitor and display are commonly used. For the purpose of this technical report, the term display
7、is used.) Throughout this report, it is important to note that primarily, two types of information are displayed on a workstation terminal. The first is text and graphics creat- ed by a software application. This information is creat- ed by the software program from stored text and graphic attribute
8、 data. Text created in this manner is optimized by the display manufacturer to have the highest resolu- tion achievable by that display device. The second type of information displayed is text and graphics which are represented as a digital reproduction of a document. This information is created by
9、scanning and storing a bit-map of a document. The display quali- ty of a scanned image is directly affected by the quality and resolution of the scanner and indirectly by the qual- ity and resolution of the display device and any support- ing software that enhances the displayed image. In considerin
10、g any display device for bit-map image processing, the quality of the input must be judged. The quality and accuracy of the scanned image (a bit-mapped reproduction of a document) on any display, whether the display is high or low resolution, monochrome or color, is dependent on the condition of the
11、 original document, the quality of the scanner, and any post-scanning work done for image enhancement. Although scanning is not addressed in this document, it is important in any image system. A second factor must be noted as it relates to resolution and displays. The definition of resolution depend
12、s on how an image is being produced and it is entirely possible a. Photographic resolution: The resolution of a camera lens is typically measured by using a series of parallel lines called a test chart. The National In- stitute of Standards and Technology developed a chart in which the line width is
13、 equal to the space between the lines. As the line width and the space between the lines are reduced, the ability of the lens to differen- tiate between line and space is tested. These lines and spaces are called line pairs and are measured as line pairs per millimeter (Ip/mm). b. Computer display r
14、esolution: Information dis- played on a computer terminal is composed of a pat- tern of dots that are either lighter or darker then the background light. These dots, when combined in a series, form characters or a representation of a scanned document. The resolution of the display screen is continge
15、nt on the number of dots that can be displayed as individual dots and the capability of the display to keep the dots and open space separate. These dots are typically measured as the number of dots per inch (dpi) that a display can produce. c. Printer output resolution: Similar to a display, a laser
16、 printer lays down a pattern of dots that form an image of what is being printed. The resolution is dependent on the number of dots, horizontal and ver- tical, that can be printed in one square inch. The higher the number of dots, the smaller they are, and hence the finer the printed image can be. T
17、he human eye can then resolve this image. For example, the eye will typically be able to see the difference between printing at 100 dots per inch and 300 dots per inch. A complete discussion of resolution and factors affect- ing resolution can be found in AIIM TR26-1993, Tcch- nical Report for Infor
18、mation and Image Management, Resolution as it Relates to Photographic and Electronic Imaging. We wish to acknowledge Sigma Designs and Cornerstone Technology for their valuable help with preparing this technical report. We also wish to ac- knowledge Dr. James Sheedy of the School of Optome- try, Uni
19、versity of California at Berkeley, for providing copies of his research for use in this technical report. Suggestions for improvement of this technical report are welcome. They should be sent to the Chair, AIIM Stan- dards Board, Association for Information and Image Management, 1100 Wayne Avenue, S
20、uite 1100, Silver Spring, MD 20910. I AIIM TRL7 73 1012348 0500358 4LT M At the time it approved this technical report, the AIIM Standards Board had the following members: The AIIM Electronic Imaging/Output Committee, C14, processed and approved this technical report. The com- Marilyn Courtot, Chair
21、 Thomas C. Bagg Thomas E. Berney Loretta DAgnolo Bruce Evans Bruce A. Holroyd Don Klosterboer E. Brien Lewis Alan S. Linden Charles A. Plesums George Thoma Charles E Touchton Herbert J. White II - mittee had the following members at the time this tech- nical report was approved: Association for Info
22、rmation and Image Management National Institute of Representative Standards and Technology Shahzad Qazi, Chair Thomas Bagg Consultant American Express Company 3M Company Eastman Kodak Company Anacomp, Inc. I-NET, Inc. Wang Laboratories U SAA National Library of IBM Corporation Genealogical Society o
23、f Medicine Utah Betty Burton Jack Coplen Lindsay Eisan Donald Klosterboer Basil Manns John Stapleton Charles E Touchton Organization Eastman Kodak Company National Institute of Standards and Technology Department of the Army, Image Systems Support Di recto rate Cornerstone Technologies MIT Libraries
24、 Anacomp, Inc. Library of Congress Staplevision, Inc. IBM Corporation AIIM TRLS 93 1012348 0500357 356 Technical Report for Information and Image Management - Electronic Imaging Output Displays, AIIM TRl9-1993 1 Scope and purpose 1.1 Scope This document describes basic display technology, purchasing
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