ECA EIA-772-A-2008 USER’S APPLICATION GUIDE TO FUSES《用户保险丝应用指南》.pdf
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1、 EIA STANDARD USERS APPLICATION GUIDE TO FUSES EIA-772-A JUNE 2008 EIA Standards Electronic Components Association NOTICE EIA Engineering Standards and Publications are designed to serve the public interest through eliminating misunderstandings between manufacturers and purchasers, facilitating inte
2、rchangeability 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 and Publications shall not in any respect preclude any member or nonmember of ECA from manufacturing or sellin
3、g 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 ECA members, whether the standard is to be used either domestically or internationally. Standards and Publications are adopted by
4、EIA in accordance with the American National Standards Institute (ANSI) patent policy. By such action, EIA does not assume any liability to any patent owner, nor does it assume any obligation whatever to parties adopting the Standard or Publication. This EIA Standard is considered to have Internatio
5、nal Standardization implication, but the International Electro-technical Commission activity has not progressed to the point where a valid comparison between the EIA Standard and the IEC document can be made. This Standard does not purport to address all safety problems associated with its use or al
6、l 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 regulatory limitations before its use. (From Project Number 5074 formulated under the cognizance of the P-14 Committe
7、e on Overcurrent Protective Devices). Published by Electronic Components Association EIA Standards and Technology Department 2500 Wilson Boulevard, Suite 310 Arlington, VA 22201 PRICE: Global Engineering Documents, USA and Canada (1-800-854-7179) International (303-397-7956) All rights reserved Prin
8、ted in U.S.A. EIA-772-A Users application guide to fuses Page 1 1 Scope This guide has been prepared to aid the circuit and system designer in the selection of supplemental fuses. Traditionally, these have been fuses that interrupt the primary equipment power source when an overcurrent condition dev
9、elops in a device or product. This guide will cover only fuses intended for electronic applications. 1.1 Introduction Fuses that are covered in this Application Guide typically range in physical size up to 10.4 X 40 mm. These fuses fall within the ANCE-248 (Mexico)/CSA C22.2, 248 / UL 248, Supplemen
10、tal Fuse Standard for North American applications. Current ratings covered by this Standard range from milliamperes to as high as 60 amperes, with voltage ratings up to 600 volts AC or DC. These devices are available in a variety of mounting schemes including plug-in, cartridge, through-hole and sur
11、face mount. Fuses are quite complex despite their simple appearance. Each fuse type and current rating will have unique operating characteristics, maximum operating limits and internal construction. Subtle variations between manufacturers designs will affect equivalency even between two seemingly id
12、entical devices. Further, any given type of fuse from a single manufacturer will have electrical and mechanical parameter variations that result from slight production variations during processing within a given lot and from lot to lot. Safety agency approvals, e.g., ANCE, CSA, and UL, are related t
13、o parameters for fuses employed in worst case applications. EIA will set minimum, non-safety related, requirements for fuses that will not serve to diminish minimum requirements set by the safety agencies. These will be comprised of additional requirements not associated with safety-related paramete
14、rs. The goal of EIA is to standardize qualification performance and characteristics of equivalent fuses, manufactured by multiple sources in an effort to accommodate interchangeability. Careful investigation by the design engineer must be carried out to determine what type of fuse is best for a give
15、n application. It may be beneficial to use both a fuse and some other device to provide more complete circuit or component protection. Typically, an engineer designs a circuit to meet specified requirements. During the design phase it is important to consider circuit protection needs. The engineer s
16、hould always assume that some type of circuit protection will be required. The fuse may ultimately be determined to be unnecessary, resulting in cost savings. However, the proper spacing will have been made available to safely accommodate the fuse, if it is required, and the product development can
17、proceed on schedule within the initially budgeted costs. EIA-772-A Users application guide to fuses Page 2 1.2 Design parameter considerations to be addressed safety agency approvals; open circuit voltage; short circuit current potentially available (Interrupting current rating) steady state circuit
18、 current; space limitation; worst case current inrush or current spikes (peak current, time duration and multiple event time intervals must be anticipated); maximum permitted voltage drop across the fuse at the standard steady state circuit current; mounting method (clips, soldered leads, holders, s
19、urface mount, etc.); plating compatibility with clips, holders and solder; environmental issues: temperature, humidity, shock I2t limitations; processing requirements (wave solder, IR reflow, aqueous detergent cleaning); open circuit indication (local and/or remote); RoHS compliance; These are only
20、a few of the preliminary considerations before beginning circuit design. After a specific fuse is selected, the next step is to determine if the choice was the proper one. Fuses are somewhat unique in the realm of electronic components; if they function properly during stress testing, they are eithe
21、r weakened or made inoperable. Nondestructive test results, as well as tight production control, must be used to predict whether or not a given fuse will continue to perform as desired in a given application. This usually requires significant testing of a given fuse in the final product. Testing in
22、the actual application is essential in many cases even though it is both a time consuming and costly part of the development process. A critical task, often left unfinished when any fuse is finally selected, is adhering to approved parameters. This should be done using a specification that sets limi
23、ts on critical electrical and mechanical properties. EIA-772-A Users application guide to fuses Page 3 The Application Guide that follows will help in avoiding the pitfalls associated with erroneous fuse selection and sizing parameters. If problems should arise that have not been covered in this App
24、lication Guide, (fuseholder selection), the fuse manufacturers are available to assist in the selection and optimization process. EIA-772-A Users application guide to fuses Page 4 1.3 Standards organizations Fuse standards have been developed on a national, regional, and international level. However
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