ECA 377-1970 Metallized Dielectric Capacitors in Metallic and Non-Metallic Cases for Direct Current Application (ANSI C83 62-71).pdf
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1、- - -1 EIA 377 70 323i.1600 00bb859 T m 5- ANSI C8 3.6 2-1 97 1 Approved July 14, 1971 AM ER ICAN NATION A 1 STAND AR D S INSTITUTE ElA STANDARD h h 9 VI Metallised Dielectric Capacitors ? ? in Metallic and Non-Metallic Cases for Direct C u r ren t App 1 ca t ion 9 Y RS1377 1 July 1970 Engineering D
2、epartment ELECTRONIC INDUSTRIES ASSOCIATION P EIA 377 70 m 3234600 OObbbO b m . * NOTICE EIA engineering standards are designed to serve the public interest through eliminating mis- understandings between manufacturers and purchasers, facilitating interchangeability and improve- ment of products, an
3、d assisting the purchaser in selecting and obtaining with minimum delay the proper product for his particular need. Existence of such standards shall not in any respect pre- clude any member or non-member of EIA from manufacturing or selling products not conforming to such standards, nor shall the e
4、xistence of such standards preclude their voluntary use by those other than EIA members whether the standard is to be used either domestically or internationally. Recommended standards are adopted by EIA without regard to whether or not their adoption may involve patents on articles, materials, or p
5、rocesses. By such action, EIA does not assume any liability to any patent owner, nor does it assume any obligation whatever to parties adopting the recommended standards. Published by ELECTRONIC INDUSTRI ES ASSOCIATION Engineering Department 2001 Eye Street, N.W., Washington, D. C. 20006 Electronics
6、 Industries Association 1970 All rights reserved PRICE: $4.20 Printed in U.S.A. O _- EIA 377 70 W 3234b00 OObb8bL 8 W * :- , METALLIZED DIELECTRIC CAPACITORS IN METALLIC AND NON-METALLIC CASES FOR DIRECT CURRENT APPLICATION (From Standards Proposal No. 1045, formulated under the cognizance of EIA Wo
7、rking Group P-2.2 on Film, Paper and Plastic Dielectric Capacitors.) 1. SCOPE 1.1 This standard covers the general requirements for direct current (D.C.) metalized electrode, fim and/or paper dielectric fixed capacitors in metallic and non-metallic cases. Capacitors listed in this standard are used
8、primarily for filtering, bypass, coupling and blocking purposes where D.C. voltages predominate. They are characterized by small size (compared to metal foil electrode capacitors) and by the ability to “clear”, or resume functioning, within specification limits, following momentary breakdowns. Appli
9、cations using capacitors described in this standard should be those where high values of insulation resistance are not essential and where momentary breakdowns can be tolerated. A.C. application info-m+tion is given in paragraph 5.0. 1.2 Portions of EIA Standards RS-186 and RS-178, when specified fo
10、rm a part of this standard. a 2. STANDARD DESIGNATION AND STYLES 2.1 The EIA Standard designation shall consist of eight constituent parts as illustrated below. K. - 104 - B - L - 1 - A - 26 - 377c Class Style Terminal Circuit Characteristic Voltage Capacitance Tolerance 2.1.1 2.1.2 2.1.3 2.1.4 2.1.
11、5 2.1.6 2.1.7 2.1.8 2.1.1 Class Designation 2.1.1.1 Class designation signifies the component is a capacitor made to the requirements of EIA Standard RS-377. 2.1.2 Style Designation 2.1.2.1 Style designation distinguishes the configuration and construction features. A detailed parts specification wi
12、th pertinent data on each listed style is contained in the appendices of this Standard. 2.1.2.1.1 Style 08 is a hermetically sealed, metal cased tubular capacitor with axial leads and uninsulated case. RS-377 Page 1 ,- y. EIA 377 70 W 3234600 0066862 T W RS-377 Page 2 2.1.2.1.2 Style 09 is a hermeti
13、cally sealed, metal cased tubular capacitor with axial leads and insulated case. 2.1.2.1.3 Style 24 is a round, plastic film wrapped capacitor with plastic end seals and radial leads. 2.1.2.1.4 Style 25 is a round, plastic film wrapped capacitor with plastic end seals and axial leads. 2.1.2.1.5 Styl
14、e 26 is a flat oval, plastic film wrapped capacitor with plastic end seals and axial leads. 2.1.2.1.6 Style 27 is a flat oval, plastic film wrapped capacitor with plastic end seals and radial leads. 2.1.2.1.7 Style 30 iS a round, plastic tube cased capacitor with plastic end seals and axial leads. 2
15、.1.2.1.8 Style 3 1 is a pre-molded, plastic cased, rectangular capacitor with plastic end seals and axial leads. 2.1.2.1.9 Style 32 is a pre-molded, plastic cased, rectangular capacitor with plastic end seals and radial leads. 2.1.2.1.1 O Style 40 is a plastic pre-molded or fully molded, round capac
16、itor with axial leads. 2.1.2.1.1 1 Style 42 is a plastic molded, flat oval capacitor with radial leads and standoff feet. 2.1.2.1.12 Style 50 is a dip coated or plastic cased, round capacitor with radial leads. 2.1.2.1.13 Style 52 is a dip coated or plastic cased, flat oval capacitor with radial lea
17、ds. 2.1.2.1.14 Style 53 is a hermetically sealed, metallic cased rectangular bathtub capacitor with mounting feet and side terminals. 2.1.2.1.15 Style 72 is a hermetically sealed, drawn metallic cased, rectangu- lar capacitor with solder lug or pillar terminals. 2.1.3 Terminai Style 2.1.3.1 Terminal
18、 Style shall be designated as follows: A. - Axial wire lead. EIA 377 70 M 323qbOO 00bbb3 L M B. - Non-removable solder lug. E. - Pillar insulator with threaded stud. L. - Pillar insulator with non-removable solder lug. R. - Radial wire lead. 2.1.4 Schematic Circuit 2.1.4.1 The schematic diagram shal
19、l be designated by a number as follows: Circuit 1 - Both terminals insulated from case Circuit 3 - One terminal connected to case. (Metal cases only) - - - 2.1.5 Characteristic 2.1.5.1 The characteristic letter designates the pertinent electrical parameters and operating temperature range as shown i
20、n Table I. 2.1.6 Voltage Rating 2.1.6.1 The voltage rating is designated by the following descriptive letter. Voltage Letter Rating A Y B V C E F 50 75 1 O0 150 200 400 600 2. I .7 Capacitance Value 2.1.7.1 The nominal capacitance value is described by three digits; the fiist and second digits are t
21、he first and second significant figures of the nominal capacitance expressed in picofarads (pF.). The third digit states the number of zeros following the two significant figures. Example: 5 6 2 5 6 O OpF.or.0056uF. RS-377 Page 3 EIA 377 70 M 3234b00 00bb8b4 3 M I +2% +lo% +lo% +lo% -1.0% +6% -1% RS
22、-377 Page 4 Charac- teristic Letter B K L N Q S R *NOTE: B K L N Q S R Maximum Operating Temp. 125C 125C 125OC 125C 85C 85C 1 7OoC TABLE I CHARACTERISTIC* Maximum Dissipation Factor At 25C 0.6% 1.5% 1 .O% 1.25% o. 1% 2.5% 0.25% At Hi-Temp. 0.6% 2.0% 2.5% 2.0% o. 2% 2.5% 0.5% Maximum Capacitance Chan
23、ge At-55C 1 At85C I3% -10% -10% -10% +1.5% -12% +2% Insulation resistance variation with temperature is shown in detailed parts specifications in appendices of this standard. defines Metallized Polycarbonate or equal. defines Metallized Paper or equal. defines Metallized Polyethylene Terephthalate o
24、r equal. defines Metallized Paper and Polyester Film Combination or equal. defines Metallized Polystyrene or equal. defines Metallized Cellulose Acetate or equal. defines Metallized Polyfluoroethylene or equal. At Hi-Temp. +2% +15% +2wo +15% -3% EIA 377 70 m 3234600 0066865 5 m RS-377 page5 2.1.8 Ca
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