NAVY MIL-HDBK-231 A-1991 ENCODERS SHAFT ANGLE TO DIGITAL《编码器轴角到数字》.pdf
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1、I. I I 1. MIL-HDBK-231A 59 9999970 0069781 7 II - MILITARY HANDBOOK ENCODERS - SHAFT ANGLE TO DIGITAL INCH-POUND EZJ MIL-WDBK-231A SUPERSEDING MIL-HDBK-231(AS) 1 JULY 1970 30 September 1991 - AMSC N/A FSC 5990 DSTRIBUTION!,STATEMENT A. Approved for public release; distribution ia unlimited. Provided
2、 by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-HDBK-231A 59 W 9999970 00b82 9 Wi MIL-HDBK-23lA FOREWORD 1. This military handbook is approved for use by all Departments and Agencies of the Department of Defense and supersedes MIL-HDBK-231(AS) dated 1 Ju
3、ly 1970. 1, 2. Beneficial .comments (recommendations, additions, deletions) and any . : pertinent data which may be of use in improving this do.cument should be 1 addressed to: Commanding Officer, Naval Air Engineering Center, Engineering Specificatipns and Standards Department, Code 53, Lakehurst,
4、NJ 08733-5100, by using the self-addressed. Standardization Document Improvement Proposal (DD Form 1426) appearing at the end of this document or by letter. 3. This handbook provides basic and fundamental information- on .encoder techniques, terminology, operation, and number systems. It will provid
5、e valuable information and guidance to personnel conc:erned with the preparation of specifications and the procurement of encoders. The handbook is not intended to be ref-erenced in purchase specifications except for informational purpose,s , nor shall. it supersede. any: specification requirements.
6、 4. An encoder is a device for sensing the rotatdon or position of a shaft and providing a means. for indicating that posjltion. A rudimentary application of the basic encoder Goncept, which is still widely used today in the maintenance of automobile engines, employs a simple index mark on the. flyw
7、heel and a fixed reference mark adjacent to the flywheel. Rotation of the flywheel results in movement of the index mark relative to the reference mark and is a function of engine op.eration and main shaft position. The, reference mark and the index mark are placed so that alignment.of the two. - -
8、indicates that a selected piston is sitting at top dead center. Another common example of the encoder principle is the familiar automobile speedometer and odometer. This device senses the rotation-af the drive shaft of the vehicle, thereby providing the operator with an indication of . shaft -speed
9、in analog.form calibrated in miles per hour (speedometer needle), as well as a digital count of shaft revolutions-calibrated in - linear miles to an accuracy of 0.1 mile (odometer). In general, any variable which can be. represented as a function of the-rotation of a shaft (pressure, speed, flow rat
10、e, positioning, distance,-time, and sio.on) can be . sensed using an encoder and a representative indication or signal can be .-. . provided for a broad variety of uses including control, operation, maintenance, and sequencing. i. . .E 5. The dramatic advancement in weapon systems during World War I
11、I .- emphasized the need for rapid and accurate transmi.ssion of shaft position - data to remote devices. Fire control systems were developed for automatlc, high-speed gun laying which required a means for transmitting radar posi- tional data to a remote gun position to aim and fire the weapon. The
12、. . . primary solution was, of necessity, an analog approach .using.synchro devices - Although adequate for the applications of that time, the analog technique has inherent inaccuracies due to deviations from linear input-output characteristics. However, development in this area led to the subsequen
13、t development of fast, accurate, and compact digital shaft encoders. ii ! ? Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-MIL-HDBK-231A CONTENTS PARAGRAPH 1.0 SCOPE 1.1 Scope . 1.2 Applicability . 1.3 Purpose 2.0 REFERENCED DOCUMENTS b . * . b p 2.
14、1 . Government documents . 2.1.2 Specifications. standards. and handbooks . 2.2 Non-Government publications 2.3 Order of precedence 3.0 DEFINITIONS . o e e 4.0 GENERAL REQUIREMENTS m b o o s e o o 4.1 Need for computer control . 4.2 Survey of encoder8 - general . . PAGE 1 . 1 3 1 3 9 9 9 5.0 . DETAI
15、LED REQUIREMENTS. . . . . . 9 5.1 Encoder description 9 5.2.1 Contact encoder 10 5.2.2 Non-contact encoder 10 Functional systems of encoder 11 5.3 5.3.1 input function 11 5.3.2 Detection function 13 5.3.3 Logic processing function 17 . Encoder classification . 10 . 9 52 . 5.3.4 Output function 20 5.
16、3.5 Summary of interrelation of functions 22 5.3.6 Conclusion - functional systems 23 . . . 5.4 Encoder types - 23 5.4.1 Encoder techniques 23 5.4.2 Encoders 24 5.4.3 Contact encoders 25 5.4.4 Magnetic encoders . 27 31 5.4.5 Capacitive encoders 5.4.6 Optical encoder 34 5.4.7 Special devices 39 5.4.8
17、 Comparisons and summaries - encoders 41 5.5 Construction of encoders -44 5.5.1 Size. shape and performance 44 5.5.2 Structural design and housing 45 5.5.4 Mountings and physical interfaces . 51 . . 5.5.3 Weight of encoders 50 5.5.5 EnvironmentaL determinants 51 ii Provided by IHSNot for ResaleNo re
18、production or networking permitted without license from IHS-,-,-. MIL-HDBK-23LA 59 = 9999970 0069784 2 I! PARAGRAPH 5.5.6 5.6 5.6.2 5.6.3 5.6.4 5.7 5.7.1 5.7.2 5.7.3 5.7.4 5.7.5 5.8 5.8.1 5,8.2 5s8.3 5.9 5,g.l 5.9e2 5.9.3 5,9.4 5.9.5 5.9.6 5.9.7 5.9.9 5.9.10 5.9.11 5,9.12 5.10 5.10.1 5.19.2 5.11 5.6
19、1 5.9.8 . 5.10,3 5s11.1 5,11.2 MIL-HDBK-231A CONTENTS Comparative evaluation of size and structure . . . . Systems technology Input mechanics Detection mechanics Logic mechanics Output mechanics . Testing and evaluation Test requirements and criteria Quality assurance methods . Mechanical inspection
20、 Electrical tests . Typical test sequence. Research and development . Performance problem areas . Research - current programs Encoder of the future . Number systems and codes . Number systems Coding techniques . Binary decimal system . Nonweighted binary codes . Cyclic decimal code Combination codes
21、 . Gray coded Excess-3 BCD Two-out-of-five-codes . Special purpose codes . Code selection criteria Encoder logic . Applications. tradeoffs. and error Noncyclic codes - nonreflected codes . Applications . Tradeoffs . Accuracy factors. encoder error. and minimization . Selection of an encoder Encoder
22、characteristics - general . Selection of encoders for military use PAGE 53 54 54 59 67 77 81 81 82 83 84 86 92 94 97 99 99 92 105 107 108 111 113 114 116 117 118 119 119 125 125 130 144 -136 144 147 iv Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-
23、4 MIL-HDBK-23LA 59 9999970 0069785 4 li I . II . III . . IV . V . VI . VI11 . IX . .X . XI . xy1 . XII1 . XIV . XV . hysteresis loop and readout voltage . . Capcitve encoder, cutaway view . . . . . . . . . . Capacitive encoer . . . . . . . , . . . . Inductive encoder symbolized by resolver windings.
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