ECA EIA-225-A-2018 Rigid Coaxial Transmission Lines and Connectors - 50 Ohms.pdf
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1、EIA SPECIFICATIONRigid Coaxial Transmission Lines and Connectors - 50 OhmsEIA-225-A (Revision of EIA-RS-225) April 2018 Electronic Components Industry Association ANSI/EIA-225-A-2018 Approved: April 5, 2018 EIA-225-ANOTICEEIA Engineering Specifications and Publications are designed to serve the publ
2、ic 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 Specifications
3、and Publications shall not in any respect preclude any member or nonmember of ECIA from manufacturing or selling products not conforming to such Specifications and Publications, nor shall the existence of such Specifications and Publications preclude their voluntary use by those other than ECIA memb
4、ers, whether the Specification is to be used either domestically or internationally. NOTE The users attention is called to the possibility that compliance with this standard may require use of an invention covered by patent rights. By publication of this standard, no position is taken with respect t
5、o the validity of any such claim(s) or of any patent rights in connection therewith. If a patent holder has filed a statement of willingness to grant a license under these rights on reasonable and nondiscriminatory terms and conditions to applicants desiring to obtain such a license, then details ma
6、y be obtained from the standards developer Neither the standards developer nor ANSI is responsible for identifying patents for which a license may be required by an American National Standard or for conducting inquiries into the legal validity or scope of those patents that are brought to their atte
7、ntion.This EIA Specification is considered to have International Standardization implications, but the International Electrotechnical Commission activity has not progressed to the point where a valid comparison between the EIA Specification and the IEC document can be made. This Specification does n
8、ot purport to address all safety problems associated with its use or all applicable regulatory requirements. It is the responsibility of the user of this Specification to establish appropriate safety and health practices and to determine the applicability of regulatory limitations before its use. (F
9、rom Standards Proposal No. 5370, formulated under the cognizance of the CE-2.2 Committee on RF Connectors and Rigid Coax Connectors and previously published in EIA-RS-225) Published by Electronic Components Industry Association 2018 EIA Standards the drawings define the necessary mechanical limits n
10、ecessary for mechanical interchangeability. 1.2 Size: 1.2.1 Definition: The size of a coaxial line is defined as the nominal outside diameter of the line, expressed in inches. The size of the connector is defined by the nominal outside diameter of the line with which it is used. Metric dimensions ar
11、e for reference only and are based upon 1.0 inch equals 25.4 mm. 1.2.2 Standard: The standard line sizes are specified in Table 1. The standard connector sizes are given in Figures 1, 2, 3 and 4. 2. Dimensions 2.1 Definitions: 2.2 Average Wall Thickness: Is one-half the difference between the corres
12、ponding inside and outside diameters. 2.3 Maximum Deviation: The wall thickness from the average wall thickness is the difference between the average wall thickness and either the maximum or minimum wall thickness measurement, whichever difference is greater. EIA-225-A Page 2 2.4 Standard: Dimension
13、s and tolerances for the lines are specified in Table 1. Dimensions and tolerances for the connectors are shown on Figure 1 thru Figure 3. EIA-225-A Page 3 3. Characteristic Impedance 3.1 Definition: The characteristic impedance of a coaxial transmission line is the driving impedance of the transmit
14、ted transverse electromagnetic wave. 3.2 Standard: The characteristic impedance for each line size is shown in Table 2. 3.3 Method of Determination: For a structurally uniform transmission line, the characteristic impedance shall be calculated from the appropriate formula. For a structurally non-uni
15、form line with transparent individual supports, the characteristic impedance shall be determined experimentally with measuring equipment or conventional transmission line and network theory of the necessary accuracy. For a structurally non-uniform line achieving electrical transparency by means of a
16、 systematic supporting structure, the characteristic impedance shall be determined between groups of supports. NOTE: Connectors shall be included as part of the transmission line and shall comply with the requirements specified for the transmission line. 4. Attenuation per Unit Length 4.1 Definition
17、: Attenuation is a reduction in signal strength occurring while transmitting signals over distances 4.2 Standard: Attenuation shall be expressed as a power ratio in decibels per unit length of line at a specified frequency and with specified conductor temperature. 4.3 Method of Determination: Attenu
18、ation shall be determined by a suitable method of measurement. 5. Standing Wave Ratio (SWR) 5.1 Definition: The standing wave ratio is the ratio between transmitted and reflected waves in a transmission line. Note: The standing wave ratio S in a uniform transmission line is given by: = 1 + 1Where p
19、is the magnitude of the reflection coefficient of the load. EIA-225-A Page 4 5.2 Standard: Standing wave ratio shall be expressed as a voltage ratio and shall be as required for the application. 5.3 Method of Determination: The standing wave ratio of any line section with connectors shall be determi
20、ned by connecting it between a uniform line and a load which are equal respectively to the nominal characteristic impedances of the line under test. The SWR of the section under test shall be that SWR measured in the uniform line. 6. Power Ratings 6.1 Definition: The peak power rating of a line and
21、connectors is that level of transmitted power which permits satisfactory operation of the assembly and provides an adequate safety factor below the level where injury or appreciably shortened life will occur. Power rating has two applications: continuous wave power and peak power. Peak power rating
22、is limited by the voltage breakdown ratio between transmitted and reflected waves (See Voltage Rating, Para 7.) The RMS value of a pulse of RF power passing through the transverse section of the coax, which if exceeded, will cause voltage breakdown; see Voltage Rating, see Para 7. The peak power han
23、dling can be recalculated in kW peak. The peak power rating defines ability of the line to handle the pulse operations. The continuous wave power handling is limited by condition when the dielectric temperature around center conductor exceeds the maximum value (thermal breakdown or that point where
24、the materials of construction used are degraded by the temperature rise). 6.2 Standard: The continuous wave power rating, at unity standing wave ratio unless otherwise limited, shall not exceed power that results in an inner conductor temperature of 100 C for copper conductors at an ambient temperat
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