NAVY MIL-HDBK-802-1990 DESIGN OF ELECTRICAL EQUIPMENT WITH SMALL STRAY MAGNETIC FIELDS (METRIC)《小型杂散电容天电磁带电设备的设计(衡量标准)》.pdf
《NAVY MIL-HDBK-802-1990 DESIGN OF ELECTRICAL EQUIPMENT WITH SMALL STRAY MAGNETIC FIELDS (METRIC)《小型杂散电容天电磁带电设备的设计(衡量标准)》.pdf》由会员分享,可在线阅读,更多相关《NAVY MIL-HDBK-802-1990 DESIGN OF ELECTRICAL EQUIPMENT WITH SMALL STRAY MAGNETIC FIELDS (METRIC)《小型杂散电容天电磁带电设备的设计(衡量标准)》.pdf(248页珍藏版)》请在麦多课文档分享上搜索。
1、- - MIL-HDBK-802 - 17 W 9999970 0058338 L W 2 Julv 1990 SUPERSEDING February 1957 NAVSEA 0981-LP-052-8140 MILITARY HANDBOOK DESIGN OF ELECTRICAL EQUIPMENT WITH SMALL STRAY MAGNETIC FIELDS (METRIC) AMSC N/A DISTRIBUTION STATEMENT A. Approved for public release; distribution is unlimited. A Licensed b
2、y Information Handling ServicesMIL-HDBK-02 19 M 7777770 0058337 3 MIL-HDBK-802(SH) 2 July 1990 FOREWORD 1. This military handbook is approved for use by the Naval Sea Systems Command, Department of the Navy, and is available for use by all Departments and Agencies of the Department of Defense, 2. Be
3、neficial comments (recommendations, additions, deletions) and any pertinent data which may be of use in improving this document should be addressed to: Commander, Naval Sea Systems Command, SEA 5523, Department of the Navy, Washington, DC 20362-5101 by using the self-addressed Standardization Docume
4、nt Improvement Proposal (DD Form 1426) appearing at the end of this document or by letter. ii Licensed by Information Handling Services MIL-HDBK-802 17 7979970 00583qO T W . MIL-HDBK-802(SH) 2 July 1990 CONTENTS Page 1.2 fl I L . 3 . 3.1 3.2 3.2.1 3.3 3.3.1 3.3.2 3.3.2.1 3.3.2.2 3.3.2.3 3.3.2.4 3.3.
5、2.5 3.3.3 3.3.3.1 3.3.3.1.1 3.3.4 3.3.5 3.3.6 3.4 3.4.1 3 i4.1.1 3.4.1.1.1 3.4.1.2 3.4.1.2.1 3.4.1.2.2 3.4.1.3 3.4.1.3.1 3.4.1.3.2 SCOPE . General Application APPLICABLE DOCUMENTS (not applicable) . GENERAL DESIGN CONSIDERATIONS . Introduction . Definition of a stray magnetic field . Measuring stray
6、 magnetic field . Design for smallest stray magnetic field . General The effect of a ferromagnetic material on a magnetic field The magnetic field of a ferromagnetic material The effects of ferromagnetic materials on the magnetic field of a conductor . The effect of ferromagnetic material on a solen
7、oid Avoid enclosure of magnetic material in current loops . Magnetic material between two current loops of opposite polarity Shielding Shielding effectiveness Using relative permeability to approximate shielding effectiveness . Calculating stray magnetic field . Theory of design for small stray magn
8、etic field Organization of handbook . Illustration and measurement of stray magnetic field The effect of conductor shapes on stray magnetic fields . Introduction . Right-hand rule Straight wire Infinitely long straight wire Finite length straight wire Loops Square loop Circular loop 1 1 1 1 2 2 2 3
9、4 5 5 6 6 7 7 7 8 8 8 8 8 8 9 10 10 11 . iii Licensed by Information Handling ServicesParagraph 3.4.1.4 3.4.1.5 3.4.1.5.1 3.4.1.5.2 3.5 3.6 3.7 3.8 4 . 4.1 4.1.1 4.1.1.1 4.1.2 4.1.2.1 4.1.2.2 4.1.2.3 4.1.3 4.1.4 4.1.5 4.2 4.2.1 4.2.1.1 4.2.1.1.1 4.2.1.2 4.2.1.2.1 4.2.1.2.2 4.2.1.2.2.1 4.2.1.2.2.2 4,
10、2.1.2.3 4.2.1.2.3.1 4.2.1.2.4 4.2.1.2.5 4.2.1,2.5,1 4.2.1.3 4.2.1.4 4.2.1.4.1 CONTENTS . Continued Page MIL-HDBK-80Z 37 m 7777770 0058343 3 m MLL-HDBK-a02(SH) 2 July 1990 Summary . Examples A simple experiment . A large-scale experiment How a magnetic mine works . How a magnetic mine can be defeated
11、 . How a ship magnetic field can be made equal to zero Practical ways of minimizing ship magnetic fields 12 12 12 13 14 14 14 14 MAGNETIC FIELDS PRODUCED BY CURRENT LOOPS General information . Current loop Coil Small and large current loops . Example using small and large loop formulas . Comparison
12、of small and large loop formulas . Small loop formulas . Coordinate axes . Conventions on sign . Notation Magnetic field produced by single current loop . Small current loops . Small current loops and magnetic dipoles Representations of current loops Computation of magnetic dipole moment . Current l
13、oops of equal area . Current loops of differing areas Example . Magnetic moment of loops of differing Vector character of magnetic moment . Vertical component Magnetic moment of an inclined current loop . Magnetic fields of noncoplanar current loops Splitting current loops into smaller loops Magneti
14、c field contours . Magnetic field of a dipole Magnetic field of an X dipole . areas 15 15 15 15 15 15 16 17 17 17 ia ia ia ia 19 19 19 19 20 20 20 21 21 21 22 22 23 23 iv Licensed by Information Handling ServicesParagraph 4.2.1.4.1.1 4.2.1.4.1.2 4.2 1.4.1.3 4.2.1.4.1.4 4.2.1.4.2 4.2.1.4.2.1 4.2.1.4.
15、2.2 4.2.1.4.2.3 4.2.1.4.3 4.2.1.4.3.1 4.2.1.4.3.2 MIL-HDBK-802(SH) 2 July 1990 CONTENTS - Continued Page The x component of the magnetic field of an X dipole 24 The y component of the magnetic field of an X dpoie 25 The z component of the magnetic field of an X dipole 26 Total magnetic field produce
16、d by an X dipole . 26 The magnetic field produced by a Y dipole . 26 The x component of the magnetic field of The y component of the magnetic field of The z component of the magnetic field of The magnetic field produced by a 2 dipole . 28 The x component of the magnetic field of a Z dipole . 28 The
17、y component of the magnetic field of a Z dipole . 28 The z component of the magnetic field of a Z dipole . 29 Large current loops . 29 General 29 Horizontal rectangular loop . 29 Narrow horizontal rectangular loop 31 Vertical rectangular loop . 32 Magnetic field produced by two or more a Y dipole .
18、27 a Y dipole . 27 a Y dipole . 27 . Narrow vertical rectangular loop 33 small current loops 34 General . 34 Principle of superposition 34 Simple example of superposition . 34 Principle of compensation . 35 Compensation with two current loops . 35 Compensation with more than two current loops Exampl
19、e of compensation Validity Vector character of compensation General information on formulas . Convenience . Accuracy Formulas for dipole arrays Contour maps of dipole arrays . Two dipole arrays . 35 36 36 37 37 38 38 38 38 38 Licensed by Information Handling ServicesMIL-HDBK-802 19 7977770 0058343 5
20、 MIL-HDBK-802(SH) 2 July 1990 CONTENTS . Continued Paragraph 4.3.2.5.2 4.3.2.5.3 4.3.2.6 4.3.2.7 4.3.2.8 4.3.3 4.3.3.1 4.3.3.1.1 4.3.3.2 4.3.3.3 4.3.3.4 4.3.3.5 4.3.3.6 4.3.3.7 4.3.3.8 4.3.3.9 4.3.3.10 4.3,3.11 4.3.3.12 4.3.3 13 4.3.3.14 4.3.3.15 4.3.3.16 4.3.3,17 4.3.3.18 4.3.3.18,l 4.3,3.19 4.3.3
21、e 20 4.3.3.21 4.3.3 * 22 4.3.3.23 4.3.3.24 4.3.3.25 4.3.3.26 4.3.4 4.3.4.1 4.3.4.2 4.3.4.3 4.3.4.4 Arrays with more than two dipoles . Computation of contour maps . Dimensions Radial dipole arrays Dipole configurations . Two X dipoles on the x axis . Example of the use of parallel dipole Two X dipol
22、es on the y axis . Two X dipoles on the z axis . Two Z dipoles on the x axis . Y dipoles . configuration equations Two Z dipoles on the z axis Four X dipoles on the x axis Four X dipoles on the x axis - case 2 Four X dipoles on the y axis Four X dipoles on the z axis Four X dipoles on the xy plane F
23、our X dipoles on the xz plane Four Z dipoles on the z axis - case 1 Four Z dipoles on the z axis - case 2 . - case 1 . . Four X dipoles on the yz plane Four Z dipoles on the x axis . . Four Z dipoles on the xy plane Four Z dipoles on the yz plane Four radial dipoles on the xz plane - case 1 . Exampl
24、e of the use of radial dipole configuration equations Four radial dipoles on the xz plane case 2 . Six radial dipoles on the xz plane case 1 . Six radial dipoles on the xz plane case 2 . Eight radial dipoles on the xz plane - case 1 . Eight radial dipoles on the xz plane . case 2 . Four radial dipol
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