Amendment 1 - Specification for radio disturbance and immunity measuring apparatus and methods - Part 1-3: Radio disturbance and immunity measuring apparatus - Ancillary equipment - Disturbance power

Amendement 1 - Spécifications des méthodes et des appareils de mesure des perturbations radioélectriques et de l'immunité aux perturbations radioélectriques - Partie 1-3: Appareils de mesure des perturbations radioélectriques et de l'immunité aux perturbations radioélectriques - Matériels auxiliaires - Puissance perturbatrice

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Status
Published
Publication Date
30-Mar-2016
Current Stage
PPUB - Publication issued
Start Date
15-Jul-2016
Completion Date
31-Mar-2016
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CISPR 16-1-3:2004/AMD1:2016 - Amendment 1 - Specification for radio disturbance and immunity measuring apparatus and methods - Part 1-3: Radio disturbance and immunity measuring apparatus - Ancillary equipment - Disturbance power
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CISPR 16-1-3 ®
Edition 2.0 2016-03
INTERNATIONAL
STANDARD
NORME
INTERNATIONALE
IN TERNATIONAL SPECIAL COMMITTEE ON RADIO INTERFERENCE
C OMITÉ INTERNATIONAL SPÉCIAL DES PERTURBATIONS RADIOÉLECTRIQUES

AMENDMENT 1
AMENDEMENT 1
Specification for radio disturbance and immunity measuring apparatus and
methods –
Part 1-3: Radio disturbance and immunity measuring apparatus – Ancillary
equipment – Disturbance power
Spécifications des méthodes et des appareils de mesure des perturbations
radioélectriques et de l'immunité aux perturbations radioélectriques –
Partie 1-3: Appareils de mesure des perturbations radioélectriques et de
l'immunité aux perturbations radioélectriques – Matériels auxiliaires – Puissance
perturbatrice
CISPR 16-1-3:2004-06/AMD1:2016-03(en-fr)

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CISPR 16-1-3 ®
Edition 2.0 2016-03
INTERNATIONAL
STANDARD
NORME
INTERNATIONALE
IN TERNATIONAL SPECIAL COMMITTEE ON RADIO INTERFERENCE

C OMITÉ INTERNATIONAL SPÉCIAL DES PERTURBATIONS RADIOÉLECTRIQUES

AMENDMENT 1
AMENDEMENT 1
Specification for radio disturbance and immunity measuring apparatus and

methods –
Part 1-3: Radio disturbance and immunity measuring apparatus – Ancillary

equipment – Disturbance power
Spécifications des méthodes et des appareils de mesure des perturbations

radioélectriques et de l'immunité aux perturbations radioélectriques –

Partie 1-3: Appareils de mesure des perturbations radioélectriques et de

l'immunité aux perturbations radioélectriques – Matériels auxiliaires – Puissance

perturbatrice
INTERNATIONAL
ELECTROTECHNICAL
COMMISSION
COMMISSION
ELECTROTECHNIQUE
INTERNATIONALE
ICS 33.100.10, 33.100.20 ISBN 978-2-8322-3244-6

– 2 – CISPR 16-1-3:2004/AMD1:2016
© IEC 2016
FOREWORD
This amendment has been prepared by CISPR subcommittee A: Radio-interference
measurements and statistical methods, of IEC technical committee CISPR: International
special committee on radio interference.
The text of this amendment is based on the following documents:
CDV Report on voting
CIS/A/1111/CDV CIS/A/1138/RVC
Full information on the voting for the approval of this amendment can be found in the report
on voting indicated in the above table.
The committee has decided that the contents of this amendment and the base publication will
remain unchanged until the stability date indicated on the IEC website under
"http://webstore.iec.ch" in the data related to the specific publication. At this date, the
publication will be
• reconfirmed,
• withdrawn,
• replaced by a revised edition, or
• amended.
_____________
© IEC 2016
3.2 Abbreviations
Delete, from the existing list, the abbreviation "RTF" and associated term "Reference transfer
factor".
4.3 The absorbing clamp assembly calibration methods and their relations
Replace, in the existing second paragraph, the two occurrences of the word “three” by the
word “two”.
Replace, in the last sentence of the existing fourth paragraph, the word “three” by the word
“two”.
Delete the entire item c) (entitled “The reference device method”) and all corresponding text,
including Equations (9) and (10).
Replace, in the paragraph immediately following the existing item c), the two occurrences of
the word “three” by the word “two”.
Delete, in the fourth paragraph following the existing item c), the last sentence “Similarly, the
reference transfer factor RTF is determined by” and corresponding Equation (12).
Delete the entire paragraph immediately following Equation (12).
Replace, in the last paragraph of this subclause, the second sentence by the following new
sentence:
The jig method gives the CF , from which the original absorbing clamp factor can be
jig
calculated using Equation (11).
Add, at the end of this subclause, the following new paragraph:
Absorbing clamps with different geometries, different arrangement and material of ferrites,
different current probes as well as different housing material do require a separate
determination of the JTF. A new determination is also required if a different type of jig is used,
e.g. larger geometry.
4.5.3 Requirements for the ACTS
Add, after the first sentence of item e), the following new text:
It is also permissible to use clamp factors provided on a calibration certificate by a calibration
laboratory. However, such clamp factors that are used as a reference for an ACTS validation
shall be determined only using the original calibration method.

4.6.1 Overview
Delete, in the second paragraph, the phrases “and the reference device calibration method”
as well as “and the reference device clamp factor”.

– 4 – CISPR 16-1-3:2004/AMD1:2016
© IEC 2016
Figure 1 − Overview of the absorbing clamp measurement method and the associated
calibration and validation procedures
In the figure, delete the entire item d).

Table 1 − Overview of the characteristics of the three-clamp calibration methods and
their relation
In the title, replace the phrase “three-clamp” by the new phrase “two clamp”.
In the table, delete the entire third row (the row having the name “The reference device
method”).
Figure 3 – Schematic overview of the clamp calibration methods
Delete Figure 3d.
Delete, from the key in this figure, the symbol “CF ”
ref
In the note, delete "and 3d", and replace the word “three” by the new word “two”.

B.2 Calibration methods of the absorbing clamp assembly
Replace, in the first sentence of the first paragraph, the words “For all three” by the new word
“Both”.
B.2.1.1 Calibration set-up and equipment
Replace, in the first sentence of the second dashed item, the phrase “larger than” by the new
word “of”.
Add, after the second sentence of the third dashed point, the following new sentence:
For practical reasons it is recommended to use a flexible lead under test.
Add, after the dashed list, the following new note:
NOTE A good match with the requirement of 4 mm diameter can be achieved by using the outer screen of a
coaxial cable (for example RG-58).

B.2.1.2 Calibration procedure
Add, after the second sentence of the third paragraph, the following new third sentence:
The receiver cable shall be suspended such that it is always spaced at a minimum of 200 mm
from the horizontal ground plane throughout the entire calibration process.

© IEC 2016
B.2.2.2 Calibration procedure
Add, after the last sentence of the fourth paragraph, the following new sentence:
The receiver cable shall be treated with a SAD. The SAD shall be positioned as shown in
Figures B.3 and B.4.
B.2.3 The reference device calibration method
Delete this entire subclause.
B.2.4 Measurement uncertainty of the absorbing clamp calibration
Add, immediately after the second bulleted list (pertaining to the jig calibration method) the
following new note:
NOTE It is assumed that the measurement instrumentation uncertainty of the required correlation process with the
original calibration method is sufficiently small such that there is no appreciable contribution to the uncertainty of
the jig calibration method.
Delete the entire third dashed list (“The reference device calibration method”).
Replace the last paragraph of this subclause by the following new paragraph:
Detailed guidance on the treatment of the measurement instrumentation uncertainty for
disturbance power measurements is given in CISPR 16-4-2.

Figure B.3 − Side view of the calibration jig
Replace the existing Figure B.3 by the following new figure:
Dimensions in millimetres
(From jig flange to CRP)
Lead 4 mm diameter*
Absorbing clamp
SAD on LUT
Receiver cable
SAD on receiver cable
Jig flange type B Jig flange type A
Electromagnetically neutral spacer
electrically bonded electrically bonded
to adjust the height of the clamp
to the groundplane to the groundplane
above the metallic groundplane
*Without insulation
IEC
Figure B.3 – Side view of the calibration jig

– 6 – CISPR 16-1-3:2004/AMD1:2016
© IEC 2016
Figure B.4 − Top view of the jig
Replace the existing Figure B.4 by the following new figure:
Dimensions in millimetres
≥1 700
≤400
SAD on receiver cable
Absorbing clamp SAD on LUT
Jig flange type B Jig flange type A
Metallic groundplane
electrically bonded electrically bonded
to the groundplane to the groundplane
IEC
Figure B.4 – Top view of the jig
Figure B.5 − View of the jigs vertical flange
Replace the existing Figure B.5 by the following new Figure B.5, consisting of Figures B.5a
and B.5b:
Dimensions in millimetres
Teflon
N-connector
Metallic, about 3 mm thick
(For the receiver
cable)
> 100
IEC
The bottom sides have to be elec
...

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