GB/T 17737.101-2018 PDF in English
GB/T 17737.101-2018 (GB/T17737.101-2018, GBT 17737.101-2018, GBT17737.101-2018)
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Coaxial communication cables -- Part 1-101: Electrical test methods -- Test for conductor d.c. resistance of cable
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GB/T 17737.101-2018: PDF in English (GBT 17737.101-2018) GB/T 17737.101-2018
Coaxial communication cables--Part 1-101. Electrical test methods--Test for conductor dcresistance of cable
ICS 33.120.10
L26
National Standards of People's Republic of China
Coaxial communication cable
Part 1-101. Electrical test methods
Conductor DC resistance test
Coaxialcommunicationcables-Part 1-101. Electricaltestmethods-
(IEC 61196-1-101.2005, IDT)
Published on.2018-03-15
2018-10-01 implementation
General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China
China National Standardization Administration issued
Foreword
GB/T 17737 "Coax Cable" has been or is planned to release the following parts.
--- Part 1. General rules, definitions and requirements;
---Part 1-100. General requirements for electrical test methods;
--- Part 1-101. Electrical test method Conductor DC resistance test;
--- Part 1-102. Electrical test method cable dielectric insulation resistance test;
--- Part 1-1-3. Electrical test method for cable capacitance test;
--- Part 1-1-4. Electrical test method for the capacitance stability test of cables;
--- Part 1-105. Electrical test method for withstand voltage test of cable media;
---Parts 1-106. Electrical test method - Withstand voltage test for cable sheathing;
--- Part 1-107. Electrical test method cable trembling charge level (mechanical induction noise) test;
--- Part 1-108. Electrical test methods for characteristic impedance, phase delay, group delay, electrical length and propagation speed test;
--- Part 1-110. Electrical test method continuity;
--- Part 1-111. Stability test of phase constants of electrical test methods;
--- Part 1-112. Electrical test method return loss (impedance consistency) test;
--- Part 1-113. Electrical test method attenuation constant test;
--- Part 1-114. Electrical test method inductance;
--- Part 1-115. Electrical test method impedance uniformity (pulse/step function return loss) test;
--- Part 1-161. Electrical test method TDR method to measure characteristic impedance;
--- Part 1-119. Electrical test methods - RF rated power;
--- Part 1-122. Electrical test method Crosstalk test between coaxial cables;
This part is part 1-101 of GB/T 17737.
This part is drafted in accordance with the rules given in GB/T 1.1-2009.
This part uses the translation method equivalent to IEC 61196-1-101.2005 "Coaxial Communication Cables Part 1-101. Electrical Test Side
French conductor DC resistance test.
The documents of our country that have a consistent correspondence with the international documents referenced in this part are as follows.
Coaxial communication cables - Part 1 . General rules, definitions and requirements (IEC 61196-1.
2005, IDT).
This section has made the following editorial changes.
--- For the convenience of use, give the formula number.
Please note that some of the contents of this document may involve patents. The issuing organization of this document is not responsible for identifying these patents.
This part was proposed by the Ministry of Industry and Information Technology of the People's Republic of China.
This part is under the jurisdiction of the National High-Tech Cable and Connector Standardization Technical Committee for Electronic Equipment (SAC/TC190).
This section was drafted. The 23rd Research Institute of China Electronics Technology Group Corporation.
The main drafters of this section. Yu Zhenfei, Fang Xu, Tian Xin.
Coaxial communication cable
Part 1-101. Electrical test methods
Conductor DC resistance test
1 Scope
This part of GB/T 17737 applies to coaxial communication cables. It specifies the test method for determining the DC resistance of a coaxial cable conductor.
2 Normative references
The following documents are indispensable for the application of this document. For dated references, only dated versions apply to this article.
Pieces. For undated references, the latest edition (including all amendments) applies to this document.
Coaxial communication cables - Part 1. General specification, definitions and requirements (Coaxialcommunication
cables-Part 1. Genericspecification-General, definitionsandrequirements)
3 Terms and definitions
The terms and definitions defined in IEC 61196-1 apply to this document.
4 Test methods
4.1 Test equipment
The DC resistance test shall use equipment with an accuracy of ±0.5% of the measured value. Bridge circuits or current sources and voltmeters should be used.
The bridge circuit can adopt a two-terminal or four-terminal method according to the magnitude of the DC resistance value. The test current density of the conductor should not exceed 1A/mm2 to
Avoid causing a significant increase in temperature during the test.
4.2 Sample
The length of the cable under test (CUT) should be no less than 100m and the error should be no more than 1%. If the length of the cable under test is less than 100m, it should be tested.
Indicated in the test report. Both ends of the cable to be tested shall be prepared so that the current in the test can flow through all the components in the circuit under test and contact with electricity.
The effect of the resistance on the results is negligible. The tested cable should be pretreated in a normal temperature environment of 15 ° C ~ 35 ° C for a long enough time to make the sample temperature
Stable.
4.3 Test procedure
Measure the DC resistance between the connected leads when the bridge is shorted (the circuit itself is connected) and record this value as RL.
Ensure that the end of one end of the bridge is well connected to the inner conductor at one end of the cable, and that the other end of the bridge is directly connected to the other end of the cable.
Inner conductor. The DC resistance at this time was measured and recorded as R1.
Take the same steps, connect one end of the bridge to the outer conductor at one end of the cable, and connect the other end directly to the outer conductor at the other end of the cable.
Measure the DC resistance and record it as R2.
The current density flowing through the conductor must not exceed 1 A/mm2 to avoid causing a significant increase in temperature during the test.
The ambient temperature should be recorded.
5 representation of test results
5.1 Calculation of loop resistance
RCC=R1-RL (1)
ROC=R2-RL (2)
RLOOP=RCC ROC (3)
In the formula.
RCC --- DC resistance of the inner conductor in ohms (Ω);
ROC --- DC resistance of the outer conductor in ohms (Ω);
RLOOP---circuit DC resistance in ohms (Ω);
RL --- DC resistance between leads, in ohms (Ω).
5.2 Normalization
The test results are normalized to a value at the base length N.
R=
Rm
LN
(4)
In the formula.
R --- DC resistance of the reference length cable at test temperature, in ohms per reference length (Ω/N);
Rm---the measured resistance value of the tested cable, the unit is ohm (Ω);
L --- sample length in meters (m);
N --- reference length in meters (m).
5.3 Temperature correction
The measured value should be corrected to a value at a standard temperature of 20 °C. The DC resistance value at the standard temperature is the measured value (RCC, ROC) multiplied by the factor k.
k=
1 CT (T-20 ° C)
(5)
In the formula.
T ---test cable test temperature in degrees Celsius (°C);
CT --- Temperature coefficient of electrical resistivity of the conductor material.
Typical value is (1/°C).
Copper (annealed) 0.00385
Copper (hard-drawn state) 0.00393
Aluminum 0.00396
Copper clad aluminum 0.00413
Copper clad steel 0.00378
For other conductor materials, the factor k or CT should be specified in the sub-specification or detailed specification.
6 test report
Test conditions should be given in the test report.
--- Ambient temperature (°C);
--- Test cable length (m).
And record the correction value of the reference length at 20 ° C.
--- Internal conductor DC resistance (Ω/N);
---Outer conductor DC resistance (Ω/N);
---Circuit DC resistance (Ω/N).
Meet the requirements of the relevant sub-specification or detailed specification.
...... Source: Above contents are excerpted from the PDF -- translated/reviewed by: www.chinesestandard.net / Wayne Zheng et al.
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