ECA TEP 42-1963 Application Notes for Pulse Magnetrons ( )《脉冲磁控管应用记录》.pdf
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1、APPLICATION NOTES ON PULSE MAGNETRONS FORMULATED BY JEDEC ELECTRON TUBE COUNCIL JEDEC PUBLICATION NO. 42 PRICE $2.00 EIA TEPY2 b3 W 3234b00 0008797 T 9 . This material was prepared by JT-13.1 Subcommittee on Magnetrons and represents the thoughts of industry repre- sentatives of magnetron manufactur
2、ers. Considerable material in this document was found in the WADC Technical Report 58-446 entitled “Techniques for Application of Electron Tubes in Military Equipment“. The committee hopes this information will be useful to users of magnetrons and especially system designers planning to employ magne
3、trons. Published by ELECTRONIC INDUSTRIES ASSOCIATION Eq$neering Department 11 WEST Mnd STREEX, NEW YO= 36, Ne Y. 1 EIA TEP42 b3 3234b00 0008798 I W SECTION 1.1 1.2 1.3 1d-t TABLE OF CONTENTS TITLE INTRODUCTION (Definition, Description, General Cons truc t i on) MAGNETRON TEST SPECIFICATIONS (Notes
4、about types of tests) ESSENTIAL TUBE INFORMATION (Needed by Tube Manufacturers) 1.3.2 Primary Magnetron Properties 1.3.3 Type of Environment-Secondary Magnetron Properties 1.3.4 Environmental Conditions und.er which the tube must operate 1.3.10 Electrical 1.3.41 1.3.49 1.3.61 EFFECT 1.4.1 1.4.24 1,4
5、.27 1.4.30 Mechanical Thermal Magnet i c OF THE SYSTEM ON THE TUBE Electrical Mechanical Thermal Measurements of System and Tubes as a Unit PAGE - 1 3 7 7 7 8 9 16 17 19 20 20 24 25 25 EIA TEP42 63 W 3234600 0008799 3 = SECTION le1 - INTRODUCTION 1.1.1 DEFINITION AND FUNCTION OF THE TUBE . 1.1.2 Mag
6、netrons are defined as :* electron tubes “characterized by the interaction of electrons with the electric.field of a to produce a-.e power output.“ This type of tube is often used - when there is need for a device that will generate high power *t at microwave frequencies, as, for example, in the tra
7、nsmitter of a microwave radar system. Although such a transmitter may operate only in very short pulses and at a low duty factor, the peak power required during this operation may be very .high. For such applications, the magnetron-type oscillator is well suited. - q circuit element in crossed stead
8、y electric and magnetic fields 1.1.3 The choice of transmitter tube for a radar system under design largely influences the ultimate capability of that system. It determines the peak and average power available, the pulse shape, the spectral purity that can be achieved, and. many other of the limitin
9、g characteristics of the system. It does not, however, determine.whether or not, nor to what extent, these limiting features are actually achieved. To obtain the desired reliability in performance of a system being designed, it is necessary not only that a tube with the required inherent capability
10、be chosen, but also that the system be so designed and operated that this capability can be realized, O 1-.1,4 A magnetron is an extremely nonlinear device, its character- istics being functionally dependent on the instantaneous values of the imposed cond.itions, It is responsive to many phenomena w
11、hich characterize its electrical and mechanical environment, some of the relations between response and stimulus being quite subtle. Some of the stimuli have in fact not yet been firmly kdentified, and ther-efore all cause and effect relationships cannot be precisely defined. Al- though magnetrons o
12、f many different designs have been used with considerable success, the designer incorporating these into systems being designed to meet new requirements must relate all available knowledge of their properties to his equipment requirements if he is to avoid the many possible pitfalls. c 1.15 DESCRIPT
13、ION AND GENERAL CONSTRUCTION OF TUBE 1.1.6 Structurally, a magnetron is a vacuum diode on which a magnetic field is imposed. The genera of magnetrons to be discussed. here, utilize a cylind.rica1 cath0d.e coaxial with an annular anode in whic,h a number of resonant cavities are . formed. Electrons e
14、mitted by the cathode move in the inter- action space between cath0d.e and. anode under the combined O %IRE Standards on Electron Tubes: Definitions of Terms, 1957, (57IRET.S2), Proc. IRE, 524 983-3.010(1957) e - 1 . EIA TEP42 63 W 3234b00 0008800 b W influence of the radLa1 d-c electric field and a
15、n axial, ex- ternally supplied., static magnetic field Unlike electron tube types of more general applicability, such as triodes and tetrodes, the magnetron is a complete energy-converting package, requiring only a power supply, usually direct current, and a load to absorb the r-f output. With most
16、lower-frequency tube types, the design of the associated, circuitry is largely under the control of the circuit designer. The magnetron, like certain other microwave tubes providing in one package a source of electrons, a means of influencing their motion, an electromagnetic resonabor, an interactio
17、n mechanism for con- verting d.-c power to r-f power, and a means for coupling the r-f power out, removes many details of the overall circuitry design of a magnetron system from the reach of the circuit designer. EIA TEP42 b3 3234600 0008801 = SECTION L2 MAGNETRON TEST SPECIFICATION 1.2.1 Magnetron
18、Specifications are commonly published in the form of absolute maximum and minimum ratings, simultaneous oper- ating conditions, and test conditions, all in one document. . It has now become customary in military specifications to corresponding entry in the test specification. However, in many other
19、specifications there are absolute ratings not .% exclude from the ratings any item which is not verified by a -. . conforming to this rule, 1.2.2 ABSOLUTE RATINGS 1.2.2.1 The absolute ratings are values which must not be exceeded under any foreseeable combination of measurement errors, line voltage
20、variations, and envkronmental changes, They must, therefore, not be used as design center values. They are limiting values beyond which operation of the tube may be unsatisfactory, and may cause permanent damage to the tube. or equipment. Operation below,.minimum ratings may be just as unsatisfactor
21、y as operatzlonabove maximum ratings. Each parameter is to be considered individually and must not be exceeded even if all other parameters are well within their . limits, The new philosophy which requires testing at the maximum ratings allows simultaneous operation at the maximum ratings provided n
22、o other rating is exceeded, The older O specifications do not allow this condition, 1 2.2.2 I. 1.2.3 1.2.3.1 O 1*283*2 In some cases, absolute ratings represent the limits to which adequate testing has been carried rather than physical limita- tion of the tubeo For special applications it may then b
23、e possible to establish higher limits after suitable tests have been run tio demonstrate satisfactory performance and life. But it must be remembered that extensive and costly testing may be required to establish new limitso In other cases absolute ratings have been arbitrarily established and may o
24、r may not represent permissible opemting points. Absolute ratings are now sometimes d.ivided into i.nd.ependent and de- pendent parameters. This division 5s for convenience in setting out the limits, both of which are equally mandatory. SIMULTANEOUS OPERATING CONDITIONS When published, these represe
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- ECATEP421963APPLICATIONNOTESFORPULSEMAGNETRONS 脉冲 磁控管 应用 记录 PDF

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