ECA EIA-198-2-E-1998 Ceramic Dielectric Capacitors Classes I II III and IV Part II Test Methods《陶瓷介电电容器 I、II、III和IV级 第II部分 测试方法 替代 EIA 198-D》.pdf
《ECA EIA-198-2-E-1998 Ceramic Dielectric Capacitors Classes I II III and IV Part II Test Methods《陶瓷介电电容器 I、II、III和IV级 第II部分 测试方法 替代 EIA 198-D》.pdf》由会员分享,可在线阅读,更多相关《ECA EIA-198-2-E-1998 Ceramic Dielectric Capacitors Classes I II III and IV Part II Test Methods《陶瓷介电电容器 I、II、III和IV级 第II部分 测试方法 替代 EIA 198-D》.pdf(128页珍藏版)》请在麦多课文档分享上搜索。
1、 EIA STANDARD Ceramic Dielectric Capacitors Classes I, II, III, and IV Part II: Test Methods EIA-198-2-E (Revision of EIA-198-D) April 2014 EIA-198-2-E ANSI/EIA-198-2-E Approved: December 12, 1997 Reaffirmed: April 4, 2014 NOTICE EIA Engineering Standards and Publications are designed to serve the p
2、ublic 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 the proper product for his particular need. Existence of such Standards an
3、d Publications shall not in any respect preclude any member or nonmember of ECIA from manufacturing or selling products not conforming to such Standards and Publications, nor shall the existence of such Standards and Publications preclude their voluntary use by those other than ECIA members, whether
4、 the standard is to be used either domestically or internationally. Standards and Publications are adopted by ECIA in accordance with the American National Standards Institute (ANSI) patent policy. By such action, ECIA does not assume any liability to any patent owner, nor does it assume any obligat
5、ion whatever to parties adopting the Standard or Publication. This EIA Standard is considered to have International Standardization implication, but the International Electrotechnical Commission activity has not progressed to the point where a valid comparison between the EIA Standard and the IEC do
6、cument can be made. This Standard does not purport to address all safety problems associated with its use or all applicable regulatory requirements. It is the responsibility of the user of this Standard to establish appropriate safety and health practices and to determine the applicability of regula
7、tory limitations before its use. (From Standards Proposal No. 5262, formulated under the cognizance of the P-2.1 Committee on Ceramic Dielectric Capacitors Standards). Published by Electronic Components Industry Association 2014 Engineering Department 2214 Rock Hill Road, Suite 265 Herndon, VA 20170
8、 PLEASE! DONT VIOLATE THE LAW! This document is copyrighted by the ECIA and may not be reproduced without permission. Organizations may obtain permission to reproduce a limited number of copies through entering into a license agreement. For information, contact: IHS 15 Inverness Way East Englewood,
9、CO 80112-5704 or call USA and Canada (1-877-413-5184), International (303-397-7956) i Ceramic Dielectric Capacitors Classes I,II,Ill,and IV Contents Page PART 1: Characteristics and Requirements Description of changes v Forward 1 Clarification statement 1 1 Scope 3 1.1 Dielectric classification 3 1.
10、2 Mechanical classification 4 1.3 Type designation 5 2Marking 11 2.1 Leaded, coated devices 11 2.2 Unleaded multilayer capacitors 11 3 Test Sequence 15 3.1 Sampling plans 15 3.2 Test requirements 16 Annex A Other pertinent ANSI standards 19 A.1 Scope 19 A.2 Document sourcing 19 A.3 Pertinent EIA and
11、 ANSIIEIA documents 19 Annex B Pertinent U.S. military standards 21 B.1 Scope 21 B.2 Document sourcing 21 B.3 Pertinent U.S. military specification documents 21 Annex C Pertinent international standards 23 C.1 Scope 23 C.2 Document sourcing 23 C.3 Pertinent IEC and CECC documents 24 C.4 Pertinent EI
12、AJ and JIS documents 26 C.5 Pertinent ISO documents 26 ii Ceramic Dielectric Capacitors Classes I,II,Ill,and IV Contents (continued) Page PART II: Test Methods Description of changes iv Forward 1 Clarification statement 1 1 Introduction 3 1.1 Scope 3 1.2 Numbering system 3 2 General Requirements 4 2
13、.1 Test requirements 4 2.2 Test conditions 4 3 Numerical list of test methods 5 Parametric conformance tests (100 class) Method 101: Capacitance and dissipation factor 7 Method 102: Quality factor 9 Method 103: Dielectric or case withstanding voltage 11 Method 104: Insulation resistance 15 Method 10
14、5: Voltage-temperature characteristic of capacitance 17 Method 106: High frequency measurements 21 Environmental performance tests (200 class) Method 201: Life (at elevated ambient temperature) 23 Method 202: Thermalshock 27 Method 203: Immersion 31 Method 204: Moisture resistance 33 Method 205: Hum
15、idity (steady state) 37 Method 206: Damp heat (steady state) 39 Method 207: Barometric pressure (reduced) 43 Method 208: Flammability (external flame) 45 Method 209: Seal 47 Method 210: Marking resistance to solvents 57 iii Ceramic Dielectric Capacitors Classes I, II, III, and IV Contents (continued
16、) Page PART II: Test Methods -cont. Physical conformance tests (300 class) Method 301: Solderability 59 Method 302: Resistance to soldering heat 67 Method 303: Terminal strength 73 Method 304: Vibration, high frequency 79 Method 305: Shock (specified pulse) 87 Method 306: Destructive physical analys
17、is (DPA) 97 Method 307: Surface mount thermal shock 99 Annex A Other pertinent ANSI standards 109 A.1 Scope 109 A.2 Document sourcing 109 A.3 Pertinent EIA and ANSI/EIA documents 109 A.4 Pertinent IPC documents 111 Annex B Pertinent U.S. military standards 113 B.1 Scope 113 B.2 Document sourcing 113
18、 B.3 Pertinent U.S. military specification documents 113 Annex C Pertinent international standards 115 C.1 Scope 115 C.2 Document sourcing 115 C.3 Pertinent IEC and CECC documents 116 C.4 Pertinent EIAJ and JIS documents 117 C.5 Pertinent ISO documents 117 iv Ceramic Dielectric Capacitors Classes I,
19、 II, III, and IV Contents (continued) Page Part III: Individual Specifications Description of changes v Forward 1 Clarification statement 1 1 Individual product specifications 3 Annex A Other pertinent ANSI specifications 5 A.1 Scope 5 A.2 Document sourcing 5 A.3 Pertinent EIA and ANSIIEIA documents
20、 5 Annex B Pertinent U.S. military standards 9 B.1 Scope 9 B.2 Document sourcing 9 B.3 Pertinent U.S. military specification documents 9 Annex C Other international documents 11 C.1 Scope 11 C.2 Document sourcing 11 C.3 Pertinent IEC and CECC documents 12 C.4 Pertinent EIAJ and JIS documents 13 C.5
21、Pertinent ISO documents 13 Section 1 Radial-leaded, disc capacitors Section 2 Radial-leaded 500 V tubular capacitors Section 3 Unleaded multilayer chip capacitors Section 4 Radial-leaded, conformally coated capacitors Section 5 Radial-leaded, molded capacitors Section 6 Axial-leaded, conformally coa
22、ted capacitors Section 7 Axial-leaded, glass encapsulated capacitors Section 8 Two-pin, dual-in-line, encapsulated capacitors Section 9 High voltage, multilayer capacitors v Spec#- Rev Description of Changes Pages Date EIA-198-E Title Page:Modify Part II title.Title 2124/97EIA-198-E Part II General:
23、 Add method number and title to each page of all test methods; correct various typographical errors .All 2124/97 EIA-198-E Part II General: Redraw Figures as graphics files.Var. 2/24/97EIA-198-E Add new section2.2.1 Sample Conditioning with deaging requirements. At 2.2 define room temperature.4 10/3
24、1/97 EIA-198-E Method 101: Modify “Purpose“ paragraph to clarify Class-1 TCC requirements. Reformat Tables for clarity; add specification for measurement of Y5V at 1.0 V ac. 7,8 2/24/97 EIA-198-E Method 105: add note at 2.4 note that cap shall be measured per voltage and frequency specified in Metho
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