ECA 191-D-1985 Measurement of Direct Interelectrode Capacitances of Electron Tubes《电子管的直接电极间电容的测量》.pdf
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1、EIA 171-D 85 m 3234600 0028647 7 m ANSI/EIA-191-D-1984 APPROVED NOVEMBER 28, 1984 MEASUREMENT OF DIRECT INTERELECTRODE CAPACITANCES OF ELECTRON TUBES EI A- l 9 l -D (Revision of RS-191-C) JANUARY, 19 8 5 Engineering Department. I ELECTRONIC INDUSTRIES ASSOCIATION EIA 171-D 85 323qbOO 0028650 3 NOTIC
2、E EIA Engineering Standards and Publications are designed to serve the public interest through eliminating misunderstandings between manufacturers and purchasers, facilitating interchangeability and improvement of products, and assisting the purchaser in selecting and obtaining with minimum delay th
3、e proper product for his particular need. Existence of such Standards and Pub- iications shall not in any respect preclude any member or non-member of EIA from manufacturing or -selling products not conforming to such Standards and Publications, nor shall the existence of such Standards and Publicat
4、ions preclude standard is to be used either domestically or internationally. Recommended Standards and Publications are adopted by IA without regard to whether or not their adoption may involve patents on articles, materials, or processes. By such action, EIA does not assume any liability to any pat
5、ent owner, nor does it assume any obligation whatever to parties adopting the Recom- mended Standard or Publication. This Standard contains the major technical contents of International Elec- trotechnical Commission miblication No. 100, Methods for the Measurement ofDirect Interelectrode Capacitance
6、s of Electronic Tubes and Valves (1962). It differs from Publication No. 100 in certain important respects: a) EIA- 191-D contains, as an addition, definitions of bridge operating frequency ranges for the RF and transmission methods and a new range definition for an audio frequency method; b) it con
7、tains a method of measuring capacitance using standard commercial equipment sockets; and c it contains a technical statement added in para. 1.4 to define when to use the audio frequency method in lieu of the RF or transmission methods, particularly when measuring low capacitances in an electron tube
8、 wherein exceptionally high shunting tube capacitances simultaneously exist in the same tube. These differences have been called.to the attention of the U.S.N.C. Technical Advisory Group (TAG) for IEC Technical Committee 39 (Electronic Tubes), and resolution of these differences will be sought in fu
9、ture meetings of TC39, their voluntary use by those other than EIA members, whether the A . Published by . Electronic Industries Association Engineering Department 2001 Eye Street, N.W. Washington, D.C. 20006 Copyright 1985 ,Electronic Industries Association PRICE: $9.00 Q NOTE: The prefix “RS“ is b
10、eing deleted in favor of “EIA.“ eventually be reflected in all EIA Standards. editorial change to provide more positive identification of the source for the standard - there is no technical significance to the change. This change will This is simply an EIA 193-D 5 3234600 0028653 5 = EIA- 191-D MEAS
11、UREMENT OF DIRECT -ODE CAPACITANCES OF ELWON TBES INDEX Item 1. Methods of Teats . . . . . . . . . . . . 1.1 Definitions . . , . . . . . . . . . 1.2 Measurement of Interelectrode Capacitances of Tubes Tables of Connections of Electrodes of Tube Sections Table I - Receiving Tuba . . . . . . , Table I
12、I-CathodeRayTubes . . . - - Table III - Gas Tubes . . . . . . . . . Table IV - Phototubes and Multipher Phabtubes , Table V-HighPowerVacuumTubes . , . . 1.3 Conditions of Tests . . . . . . . . . . 1.4 CapacitanceMeasuring Circuits . . . . , . 2. Standard Capacitance Sockets . . . . . . . , Page . .
13、1 . . . . . . . . . .1 , . . . . . . . . 1 1 . . . . . . . . . .4 . . . . . . . . , .5 . ;5 5 . . . . . . . . . .6 ,. 7 . , . . . . . . . .9 3, Standard Shields . . . . . . . . . . . . . . . . . . . . . . 10 4. Standard Cap Connectors . . . . . . . , , . . . . . . . . . . 15 5. SpecialTypes . . . .
14、, . . . . , . . . . . . . . . 15 i capacitance to other objects shall be kept at a minimum. On all types, for elements terminated in two or more pins or leads, all such pins or leads shall be connected together. In those cases where two or more elements are internally connected,. the combination sha
15、ll be treated as the major element of the combination. For example, a suppressor grid internally connected to the cathode shall be considered the cathode in the tables of connections, For directly heated filament types, the filament is the cathode electrode. The application of these principles to th
16、e capacitance normally measured in various types of tubes are indicated in Tables I to V inclusive. applications. TABLES OF CONNECTIONS OF ELECXRODES OF TUBE SEClTONS FOR MEASURING DIRECT INTERELECTRODE CAPACITANCES TABLE 1-RECEIVING TUBES. Capacitance Measure Between Ground Indirectly Heated Heater
17、-Cathode Heater and cathode All other elements, Cathode Types Diode Plate-All Illate and (cathode Other units shields, metal parts, etc. -f- heater + shields + metal parts, etc. ) e EIA LSL-D 85 m 3234600 0028b53 7 EIA-I91 -D Page 2 . Tupe of Tube Capacitance Measure Between Ground Diode (contd) Cat
18、hode-Diode Plate Cathode and (diode Other units date 4- heater 4- hields + metal parts, etc.) Coupling (Between Diode plate and plate All other elements, Units) of other unit (8) shields, metal parta, etc. Coupling (Between Diode plate and (contct) Input (2) Signalgrid (2) and (all other elementa, s
19、hields, metal parta, etc.) output Plate and (all other elementa, shields, metal parts, etc.) Coupling Signal grid (I) and Ail other elements, signalgrid (2) shields, metal Signal Grid-Mixer Signal grid and All other elements, Plate mixer plate shields, metal parts, etc. R.F. Input Signal grid and (a
20、ll other elements, shields, metal parts, etc.) Mixer plate and (all other elements, shields, metal parts, etc.) parts, etc. Mixer Output Converter Osc. Grid-Osc. Plate Osc. Input Osc. grid and (cathode Osc. plate Osc. grid and osc. plate All other elements, shields, metal parts, etc. + heater -t- mi
21、xerplate + signal grid + shields + metal parts, etc.) + heater + mixer plate + signal grid + shields + metalparts, etc.) osc. output Osc. plate and (cathode Osc. grid O Osc. Input* Oso. grid and (all other elements, shields, metal parts, etc.) osc. output* Cathode and (heater + Ose. grid mixer plate
22、 + signal grid + osc. plate + shields + metalparts etc,) Osc. Grid-Cathode* Osc. grid and cathode All other elements, shields, metal parts, etc. Osc. Grid-Mixer Plate* Osc. grid and mixer All other elements, plate shields, metal parts, etc. Osc. Grid-All Except Osc. grid and (mixer Cathode Cathode p
23、late + signalgrid + osc. plate + heater + shields + metal parts, etc,) Coupling Osc. double- sided deflection , parts, tc.) ._-. -.- Grid 1 - All Grid 1 and (all other elements, shields, metal . parts, etc.) D1 -c D2 D1 and D2 All other elements, D3-D4 D3 and D4 All other elements, fsld hll D1 and (
24、all other elements, shieds, shields, metal parts, etc., except D1 and D2 rrhields, metal parts, etc, except D3 and D4 - D3 and (all other elements, shields, dements, shields, metal Pam, etc. ) Electros single+ metal parts, eh.) sided deflection _-_-._F_ .,- 0% - Alt DI and (ail other dements, shield
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