Satellite Earth Stations and Systems (SES); Harmonized EN for Satellite Interactive Terminals (SIT) and Satellite User Terminals (SUT) transmitting towards geostationary satellites in the 27,5 GHz to 29,5 GHz frequency bands covering essential requirements under article 3.2 of the R&TTE Directive

The present document applies to Satellite Interactive Terminals (SIT) and Satellite User Terminals (SUT) operating as part of a bi-directional satellite network. Satellite Terminal (ST) is used in the present document as a generic name that refers equally to a SIT and/or a SUT. In such a network a Network Control Facility (NCF) is responsible for the monitoring and control of the transmit functions of the STs. These STs have the following characteristics:
in the case of SITs reception is in the Fixed Satellite Service (FSS) frequency ranges from 10,70 GHz to 11,70 GHz and from 12,50 GHz to 12,75 GHz as well as the Broadcast Satellite Service (BSS) frequency range from 11,70 GHz to 12,50 GHz;
in the case of SUTs reception is in the Fixed Satellite Service (FSS) frequency ranges from 19,70 GHz to 20,20 GHz and from 17,70 GHz to 19,70 GHz as well as the Broadcast Satellite Service (BSS) frequency range from 21,40 GHz to 22,00 GHz;
in all cases ST transmission is in the frequency band allocated to FSS from 27,50 GHz to 29,50 GHz;
STs transmit towards geostationary satellites with spacing down to 2° away from any other geostationary satellite operating in the same frequency band and covering the same area;
linear or circular polarization is used for transmission or reception;
the received signals may be analogue and/or digital;
the transmitted signals are always of digital nature;
the ST antenna diameter does not exceed 1,8 m, or equivalent effective area;
the ST is designed for unattended operations.
The equipment considered in the present document comprises both the outdoor unit, usually composed of the antenna subsystem and associated upconverter, power amplifier and Low Noise Block (LNB) downconverter, and the indoor unit, usually composed of receive and transmit logic as well as the modulator, including cables between these two units. The present document applies to the ST with its ancillary equipment and its various ports and when operated within the boundary limits of all the operational environmental profile declared by the applicant and when installed as required by the applicant by declaration or in the user documentation. All parts of the indoor unit related to reception, processing and presentation of the received information except the control channel are not within the scope of the present document. The syntax of the control channel messages is outside the scope of the present document. The present document is intended to cover the provisions of Directive 1999/5/EC [1] (R&TTE Directive) article 3.2, which states that "… radio equipment shall be so constructed that it effectively uses the spectrum allocated to terrestrial/space radio communications and orbital resources so as to avoid harmful interference". In addition to the present document, other ENs that specify technical requirements in respect of essential requirements under other parts of article 3 of the R&TTE Directive [1] may apply to equipment within the scope of the present document.

Satelitske zemeljske postaje in sistemi (SES) – Harmonizirani EN za interaktivne satelitske terminale (SIT) in uporabniške satelitske terminale (SUT), oddajajoče v smeri geostacionarnih satelitov v frekvenčnih pasovih od 27,5 GHz do 29,5 GHz, ki zajema bistvene zahteve člena 3.2 direktive R&TTE

General Information

Status
Published
Publication Date
31-May-2006
Current Stage
6060 - National Implementation/Publication (Adopted Project)
Start Date
01-Jun-2006
Due Date
01-Jun-2006
Completion Date
01-Jun-2006
Mandate

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SLOVENSKI STANDARD
SIST EN 301 360 V1.2.1:2006
01-junij-2006
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VDWHOLWVNHWHUPLQDOH 6,7 LQXSRUDEQLãNHVDWHOLWVNHWHUPLQDOH 687 RGGDMDMRþHY
VPHULJHRVWDFLRQDUQLKVDWHOLWRYYIUHNYHQþQLKSDVRYLKRG*+]GR*+]NL
]DMHPDELVWYHQH]DKWHYHþOHQDGLUHNWLYH5 77(
Satellite Earth Stations and Systems (SES); Harmonized EN for Satellite Interactive
Terminals (SIT) and Satellite User Terminals (SUT) transmitting towards geostationary
satellites in the 27,5 GHz to 29,5 GHz frequency bands covering essential requirements
under article 3.2 of the R&TTE Directive
Ta slovenski standard je istoveten z: EN 301 360 Version 1.2.1
ICS:
33.060.30 Radiorelejni in fiksni satelitski Radio relay and fixed satellite
komunikacijski sistemi communications systems
SIST EN 301 360 V1.2.1:2006 en
2003-01.Slovenski inštitut za standardizacijo. Razmnoževanje celote ali delov tega standarda ni dovoljeno.

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SIST EN 301 360 V1.2.1:2006

---------------------- Page: 2 ----------------------

SIST EN 301 360 V1.2.1:2006

ETSI EN 301 360 V1.2.1 (2006-02)
Candidate Harmonized European Standard (Telecommunications series)

Satellite Earth Stations and Systems (SES);
Harmonized EN for Satellite Interactive Terminals (SIT)
and Satellite User Terminals (SUT)
transmitting towards geostationary satellites
in the 27,5 GHz to 29,5 GHz frequency bands
covering essential requirements
under article 3.2 of the R&TTE Directive

---------------------- Page: 3 ----------------------

SIST EN 301 360 V1.2.1:2006
 2 ETSI EN 301 360 V1.2.1 (2006-02)



Reference
REN/SES-00277
Keywords
earth station, BSS, FSS, regulation, satellite
ETSI
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Sous-Préfecture de Grasse (06) N° 7803/88

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Copyright Notification
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The copyright and the foregoing restriction extend to reproduction in all media.

© European Telecommunications Standards Institute 2006.
All rights reserved.

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ETSI

---------------------- Page: 4 ----------------------

SIST EN 301 360 V1.2.1:2006
 3 ETSI EN 301 360 V1.2.1 (2006-02)
Contents
Intellectual Property Rights.6
Foreword.6
Introduction .7
1 Scope.9
2 References.10
3 Definitions and abbreviations.10
3.1 Definitions.10
3.2 Abbreviations.12
4 Technical requirements specifications.13
4.1 General.13
4.1.1 Environmental profile.13
4.1.2 ST states and radio states .13
4.2 Conformance requirements.14
4.2.1 General.14
4.2.2 Off-axis spurious radiation .14
4.2.2.1 Purpose.14
4.2.2.2 Specification.14
4.2.2.3 Conformance tests.15
4.2.3 On-axis spurious radiation .15
4.2.3.1 Purpose.15
4.2.3.2 Specification.16
4.2.3.2.1 "Carrier-on" radio state.16
4.2.3.2.2 "Carrier-off" and "Emissions disabled" radio states.16
4.2.3.3 Conformance tests.16
4.2.4 Off-axis e.i.r.p. emission density within the band.16
4.2.4.1 Purpose.16
4.2.4.2 Specification.17
4.2.4.3 Conformance tests.18
4.2.5 Carrier suppression.18
4.2.5.1 Purpose.18
4.2.5.2 Specification.18
4.2.5.3 Conformance tests.18
4.2.6 Antenna pointing accuracy .18
4.2.6.1 Purpose.18
4.2.6.2 Specification.18
4.2.6.3 Conformance tests.19
4.2.7 Control and Monitoring Functions (CMF).19
4.2.7.1 General.19
4.2.7.2 Processor monitoring.20
4.2.7.2.1 Purpose.20
4.2.7.2.2 Specification.20
4.2.7.2.3 Conformance tests.20
4.2.7.3 Transmit subsystem monitoring.21
4.2.7.3.1 Purpose.21
4.2.7.3.2 Specification.21
4.2.7.3.3 Conformance tests.21
4.2.7.4 Power-on/Reset.21
4.2.7.4.1 Purpose.21
4.2.7.4.2 Specification.21
4.2.7.4.3 Conformance tests.21
4.2.7.5 Control Channel (CC) reception .21
4.2.7.5.1 Purpose.21
4.2.7.5.2 Specification.21
ETSI

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SIST EN 301 360 V1.2.1:2006
 4 ETSI EN 301 360 V1.2.1 (2006-02)
4.2.7.5.3 Conformance tests.22
4.2.7.6 Network control commands .22
4.2.7.6.1 Purpose.22
4.2.7.6.2 Specification.22
4.2.7.6.3 Conformance test.22
4.2.7.7 Initial burst transmission .22
4.2.7.7.1 Purpose.22
4.2.7.7.2 Specification.22
4.2.7.7.3 Conformance tests.22
5 Testing for compliance with technical requirements.23
5.1 Environmental conditions for testing .23
5.2 Essential radio test suites.23
6 Test method.23
6.1 General.23
6.2 Off-axis spurious radiation.24
6.2.1 Test method.24
6.2.1.1 General.24
6.2.1.2 Multi-carrier operation.24
6.2.2 Up to 1 000 MHz .25
6.2.2.1 Test site.25
6.2.2.2 Measuring receivers.25
6.2.2.3 Procedure.25
6.2.3 Above 1 000 MHz .25
6.2.3.1 Identification of the significant frequencies of spurious radiation .26
6.2.3.1.1 Test site.26
6.2.3.1.2 Procedure.26
6.2.3.2 Measurement of radiated power levels of identified spurious radiation.26
6.2.3.2.1 Test site.26
6.2.3.2.2 Procedure.27
6.2.3.3 Measurement of conducted spurious radiation at the antenna flange.28
6.2.3.3.1 Test site.28
6.2.3.3.2 Procedure.28
6.3 On-axis spurious radiation.29
6.3.1 Test method.29
6.3.1.1 Test site.29
6.3.1.2 Method of measurement.29
6.3.1.2.1 General.29
6.3.1.2.2 Method of measurement at the antenna flange .29
6.3.1.2.3 Method of measurement for an EUT with antenna.30
6.4 Off-axis e.i.r.p. emission density within the band .31
6.4.1 Test method.31
6.4.1.1 Transmit output power density.31
6.4.1.1.1 General.31
6.4.1.1.2 Test site.31
6.4.1.1.3 Method of measurement.32
6.4.1.2 Antenna transmit gain.33
6.4.1.2.1 General.33
6.4.1.2.2 Test site.33
6.4.1.2.3 Method of measurement.33
6.4.1.3 Antenna transmit radiation patterns .34
6.4.1.3.1 General.34
6.4.1.3.2 Test site.34
6.4.1.3.3 Test arrangement.34
6.4.1.3.4 Co-polar radiation pattern - azimuth.34
6.4.1.3.5 Co-polar radiation pattern - elevation.35
6.4.1.3.6 Cross-polar radiation pattern - azimuth .36
6.4.1.3.7 Cross-polar radiation pattern - elevation .36
6.4.2 Computation of results.37
6.5 Carrier suppression.37
6.6 Antenna pointing for STs .37
ETSI

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SIST EN 301 360 V1.2.1:2006
 5 ETSI EN 301 360 V1.2.1 (2006-02)
6.7 ST Control and Monitoring Functions (CMF).38
6.7.1 Test arrangement.38
6.7.2 Processor monitoring - Test method .39
6.7.3 Transmit subsystem monitoring - Test method.39
6.7.4 Power-on/Reset - Test method.40
6.7.5 Control Channel (CC) reception - Test method .40
6.7.6 Network Control commands - Test method.41
6.7.7 Initial burst transmission - Test method.42
Annex A (normative): The EN Requirements Table (EN-RT) .44
Annex B (informative): Pointing stability methodology .45
Annex C (informative): The EN title in the official languages .46
Annex D (informative): Bibliography.48
History .49

ETSI

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SIST EN 301 360 V1.2.1:2006
 6 ETSI EN 301 360 V1.2.1 (2006-02)
Intellectual Property Rights
IPRs essential or potentially essential to the present document may have been declared to ETSI. The information
pertaining to these essential IPRs, if any, is publicly available for ETSI members and non-members, and can be found
in ETSI SR 000 314: "Intellectual Property Rights (IPRs); Essential, or potentially Essential, IPRs notified to ETSI in
respect of ETSI standards", which is available from the ETSI Secretariat. Latest updates are available on the ETSI Web
server (http://webapp.etsi.org/IPR/home.asp).
Pursuant to the ETSI IPR Policy, no investigation, including IPR searches, has been carried out by ETSI. No guarantee
can be given as to the existence of other IPRs not referenced in ETSI SR 000 314 (or the updates on the ETSI Web
server) which are, or may be, or may become, essential to the present document.
Foreword
This Candidate Harmonized European Standard (Telecommunications series) has been produced by ETSI Technical
Committee Satellite Earth Stations and Systems (SES).
The present document has been produced by ETSI in response to a mandate from the European Commission issued
under Council Directive 98/34/EC [3] (as amended) laying down a procedure for the provision of information in the
field of technical standards and regulations.
The present document is intended to become a Harmonized Standard, the reference of which will be published in the
Official Journal of the European Communities referencing the Directive 1999/5/EC of the European Parliament and of
the Council of 9 March 1999 on radio equipment and telecommunications terminal equipment and the mutual
recognition of their conformity ("the R&TTE Directive") [1].
Technical specifications relevant to Directive 1999/5/EC [1] are given in annex A.

National transposition dates
Date of adoption of this EN: 3 February 2006
Date of latest announcement of this EN (doa): 31 May 2006
Date of latest publication of new National Standard
or endorsement of this EN (dop/e): 30 November 2006
Date of withdrawal of any conflicting National Standard (dow): 30 November 2006

ETSI

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SIST EN 301 360 V1.2.1:2006
 7 ETSI EN 301 360 V1.2.1 (2006-02)
Introduction
The present document is part of a set of standards designed to fit in a modular structure to cover all radio and
telecommunications terminal equipment under the R&TTE Directive [1]. Each standard is a module in the structure.
The modular structure is shown in figure 1.

Disability*
3.3f
Emergency*
3.3e
Fraud*
3.3d
3.3c
Privacy*
No harm to the network*
3.3b
* If needed
Scoped by
Interworking via the network*
equipment
3.3a class or type
Interworking with the network
Use of spectrum
3.2
New radio harmonized standards
Spectrum
Scoped by frequency and/or equipment type
Radio Product EMC
EN 301 489 multi-part EMC standard
3.1b
EMC
Generic and product standards also notified under EMC Directive
- If needed, new standards for human exposure to
Electromagnetic Fields,
- if needed, new standards for acoustic safety
3.1a
Standards also notified under LV Directive
Safety
Non-radio Radio (RE)
TTE Non-TTE

Figure 1: Modular structure for the various standards used under the R&TTE Directive [1]
ETSI

---------------------- Page: 9 ----------------------

SIST EN 301 360 V1.2.1:2006
 8 ETSI EN 301 360 V1.2.1 (2006-02)
The left hand edge of the figure 1 shows the different clauses of article 3 of the R&TTE Directive [1].
For article 3.3 various horizontal boxes are shown. Dotted lines indicate that at the time of publication of the present
document essential requirements in these areas have to be adopted by the Commission. If such essential requirements
are adopted, and as far and as long as they are applicable, they will justify individual standards whose scope is likely to
be specified by function or interface type.
The vertical boxes show the standards under article 3.2 for the use of the radio spectrum by radio equipment. The
scopes of these standards are specified either by frequency (normally in the case where frequency bands are
harmonized) or by radio equipment type.
For article 3.1b the diagram shows EN 301 489, the multi-part product EMC standard for radio used under the
EMC Directive [4].
For article 3.1a the diagram shows the existing safety standards currently used under the LV Directive [5] and new
standards covering human exposure to electromagnetic fields. New standards covering acoustic safety may also be
required.
The bottom of the figure shows the relationship of the standards to radio equipment and telecommunications terminal
equipment. A particular equipment may be radio equipment, telecommunications terminal equipment or both. A radio
spectrum standard will apply if it is radio equipment. An article 3.3 standard will apply as well only if the relevant
essential requirement under the R&TTE Directive is adopted by the Commission and if the equipment in question is
covered by the scope of the corresponding standard. Thus, depending on the nature of the equipment, the essential
requirements under the R&TTE Directive may be covered in a set of standards.
The modularity principle has been taken because:
- it minimizes the number of standards needed. Because equipment may, in fact, have multiple interfaces and
functions it is not practicable to produce a single standard for each possible combination of functions that may
occur in an equipment;
- it provides scope for standards to be added:
- under article 3.2 when new frequency bands are agreed; or
- under article 3.3 should the Commission take the necessary decisions
without requiring alteration of standards that are already published;
- it clarifies, simplifies and promotes the usage of Harmonized Standards as the relevant means of conformity
assessment.
Remarks on the present document
The present document applies to Satellite Interactive Terminals (SITs) and Satellite User Terminals (SUTs) either for
individual or collective use.
The present document deals with the specification defined to protect other users of the frequency spectrum, both
satellite and terrestrial, from unacceptable interfe
...

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