IEC 61196-1-113:2018
(Main)Coaxial communication cables - Part 1-113: Electrical test methods - Test for attenuation constant
Coaxial communication cables - Part 1-113: Electrical test methods - Test for attenuation constant
IEC 61196-1-113:2018(E) applies to coaxial communications cables. It specifies a test method for determining the attenuation constant of coaxial cables for use in communications systems. The test is applicable preferably at frequencies ≥ 5 MHz, but also for lower frequencies if the magnitude of the complex characteristic impedance is approximately equal to the nominal characteristic impedance of the specimen or if a form fitting function is applied.
This second edition cancels and replaces the first edition published in 2009. This edition constitutes a technical revision.
This edition includes the following significant technical changes with respect to the previous edition: diverse form fitting equations are provided.
General Information
- Status
- Published
- Publication Date
- 11-Jan-2018
- Technical Committee
- SC 46A - Coaxial cables
- Drafting Committee
- WG 3 - TC 46/SC 46A/WG 3
- Current Stage
- DELPUB - Deleted Publication
- Start Date
- 23-Sep-2024
- Completion Date
- 05-Oct-2023
Relations
- Effective Date
- 05-Sep-2023
- Effective Date
- 05-Sep-2023
Overview
IEC 61196-1-113:2018 specifies a standardized test method for determining the attenuation constant of coaxial communication cables used in communications and RF systems. Applicable preferably at frequencies ≥ 5 MHz, the standard defines equipment, calibration, measurement procedures, result expression and correction methods. This second edition (2018) updates the technical content of the 2009 edition and provides diverse form fitting equations to address ripple and noise in measured attenuation curves.
Key Topics
- Scope and applicability: Test method for coaxial cables used in communications; lower frequencies are permitted when the complex characteristic impedance magnitude approximates the nominal impedance or when a form fitting is applied.
- Equipment: Vector Network Analyser (VNA) for S21, scalar network analyser, or separate signal generator and receiver. Use impedance-matching adapters to limit reflection loss errors (matching tolerance indicated in the standard).
- Specimen preparation: Physical length must be determined with ≤1% uncertainty. A round-trip loss of ~40 dB across the test band is recommended to avoid multiple reflections, or apply form fitting if not achievable.
- Calibration and measurement: Calibration data for the test setup (including adapters and connectors) must be recorded and used to correct measured attenuation. The cable under test should stabilize at ambient temperature for a minimum of 4 hours; record ambient temperature.
- Result expression and temperature correction: Attenuation constant is reported in dB/100 m and calculated from measured and calibration attenuations divided by specimen length. When required, correct to a reference temperature (20 °C) using a correction factor K defined in the relevant cable specification (example: for copper coax with non-polar insulation K = 0.2 %/°C).
- Form fitting: To smooth ripples from impedance mismatch or measurement noise, a least-squares form fitting (polynomial/physics-based terms) is applied to corrected attenuation values. The edition adds diverse form fitting equations and prescribes least-square coefficient calculations.
Applications
- Verification of coaxial cable loss characteristics for RF links, broadcast, telecom and test lab qualification.
- Supporting cable specification compliance and procurement acceptance testing.
- Providing corrected attenuation data for system design, link-budget calculations and component matching.
Related Standards
- IEC 61196-1 (generic) – definitions and general requirements for coaxial communication cables.
- IEC 61196-1-108 – test methods for characteristic impedance, phase/group delay and propagation velocity.
- IEC TR 62152 – guidance on impedance matching and transmission properties of cascaded two-ports.
Following IEC 61196-1-113:2018 ensures repeatable, comparable attenuation measurements across laboratories and supports reliable RF and communications system performance analyses by addressing calibration, impedance matching, temperature correction and form fitting of measured attenuation curves.
Frequently Asked Questions
IEC 61196-1-113:2018 is a standard published by the International Electrotechnical Commission (IEC). Its full title is "Coaxial communication cables - Part 1-113: Electrical test methods - Test for attenuation constant". This standard covers: IEC 61196-1-113:2018(E) applies to coaxial communications cables. It specifies a test method for determining the attenuation constant of coaxial cables for use in communications systems. The test is applicable preferably at frequencies ≥ 5 MHz, but also for lower frequencies if the magnitude of the complex characteristic impedance is approximately equal to the nominal characteristic impedance of the specimen or if a form fitting function is applied. This second edition cancels and replaces the first edition published in 2009. This edition constitutes a technical revision. This edition includes the following significant technical changes with respect to the previous edition: diverse form fitting equations are provided.
IEC 61196-1-113:2018(E) applies to coaxial communications cables. It specifies a test method for determining the attenuation constant of coaxial cables for use in communications systems. The test is applicable preferably at frequencies ≥ 5 MHz, but also for lower frequencies if the magnitude of the complex characteristic impedance is approximately equal to the nominal characteristic impedance of the specimen or if a form fitting function is applied. This second edition cancels and replaces the first edition published in 2009. This edition constitutes a technical revision. This edition includes the following significant technical changes with respect to the previous edition: diverse form fitting equations are provided.
IEC 61196-1-113:2018 is classified under the following ICS (International Classification for Standards) categories: 33.120.10 - Coaxial cables. Waveguides. The ICS classification helps identify the subject area and facilitates finding related standards.
IEC 61196-1-113:2018 has the following relationships with other standards: It is inter standard links to IEC 61196-1-113:2024, IEC 61196-1-113:2009. Understanding these relationships helps ensure you are using the most current and applicable version of the standard.
You can purchase IEC 61196-1-113:2018 directly from iTeh Standards. The document is available in PDF format and is delivered instantly after payment. Add the standard to your cart and complete the secure checkout process. iTeh Standards is an authorized distributor of IEC standards.
Standards Content (Sample)
IEC 61196-1-113 ®
Edition 2.0 2018-01
INTERNATIONAL
STANDARD
Coaxial communication cables –
Part 1-113: Electrical test methods – Test for attenuation constant
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IEC 61196-1-113 ®
Edition 2.0 2018-01
INTERNATIONAL
STANDARD
Coaxial communication cables –
Part 1-113: Electrical test methods – Test for attenuation constant
INTERNATIONAL
ELECTROTECHNICAL
COMMISSION
ICS 33.120.10 ISBN 978-2-8322-5257-4
– 2 – IEC 61196-1-113:2018 © IEC 2018
CONTENTS
FOREWORD . 3
INTRODUCTION . 5
1 Scope . 6
2 Normative references . 6
3 Terms and definitions . 6
4 Attenuation constant . 6
5 Test method . 7
5.1 Equipment . 7
5.2 Test specimen . 7
5.3 Procedure . 7
5.3.1 Calibration . 7
5.3.2 Measurement . 8
6 Expression of test results . 8
6.1 Expression . 8
6.2 Temperature correction . 8
7 Form fitting . 8
Bibliography . 10
INTERNATIONAL ELECTROTECHNICAL COMMISSION
____________
COAXIAL COMMUNICATION CABLES –
Part 1-113: Electrical test methods –
Test for attenuation constant
FOREWORD
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International Standard IEC 61196-1-113 has been prepared by subcommittee 46A: Coaxial
cables, of IEC technical committee 46: Cables, wires, waveguides, RF connectors, RF and
microwave passive components and accessories.
This second edition cancels and replaces the first edition published in 2009. This edition
constitutes a technical revision.
This edition includes the following significant technical changes with respect to the previous
edition:
a) diverse form fitting equat
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