Circular No. 22/2022/TT-BTTTT promulgates the National Technical Regulation on Electromagnetic Compatibility for Radio Communication Equipment, stipulating technical requirements regarding emission and immunity of such equipment. The document applies to organizations and individuals producing and importing radio communication equipment.
Scope of application
Organizations and individuals producing and importing radio communication equipment
Key points
- Organizations and individuals producing and importing radio communication equipment must comply with the emission EMC requirements (Article 2.1)
- Organizations and individuals producing and importing radio communication equipment must comply with the immunity EMC requirements (Article 2.2)
- Terminal devices within the scope regulated by QCVN 18:2022/BTTTT imported and produced domestically from July 1, 2023, must meet the requirements set forth in the Standard (Article 3)
- Encourages the application of the Standard from the date the Circular takes effect
- Organizations and individuals violating electromagnetic compatibility regulations shall bear responsibility under the law
🌐 Social impact of this document
- Enhance quality management of radio communication equipment, protect the electromagnetic environment
- Minimize interference risks and impact on other devices' operations
- Requires high technology investment for businesses producing and importing radio communication equipment
❓ Frequently asked questions
Which equipment must comply with the National Technical Regulation on Electromagnetic Compatibility?
Radio communication equipment such as mobile phones, tablets, satellite television devices...
When will this Standard be implemented?
From July 1, 2023
What penalties will businesses face if they violate electromagnetic compatibility regulations?
Organizations and individuals violating the regulations shall bear responsibility under current laws
Does this Standard encourage early adoption before the mandatory deadline?
Encourages enterprises, organizations, and individuals producing and importing radio communication equipment to apply the Standard from the date the Circular takes effect
What contents does the emission EMC regulation in this Standard include?
Includes measurement capability, measurement configuration, emissions from enclosure ports, DC power supply ports, AC power supply ports...
Full text
CIRCULAR
Issued "National Technical Regulation on Electromagnetic Compatibility for Radio Communication Equipment
___________________________
Pursuant to the Law on Standards and Technical Regulations dated June 29, 2006;
Pursuant to the Law on Telecommunications dated November 23, 2009;
WHEREAS, the Law on Radio Frequency Spectrum dated November 23, 2009;
WHEREAS, Decree No. 127/2007/NĐ-CP dated August 1, 2007 of the Government detailing and guiding the implementation of certain provisions of the Law on Technical Standards and Regulations;
Pursuant to Decree No. 78/2018/NĐ-CP dated May 16, 2018 of the Government amending and supplementing certain articles of Decree No. 127/2007/NĐ-CP dated August 1, 2007 of the Government detailing the implementation of some provisions of the Law on Standards and Technical Regulations;
Pursuant to Decree No. 48/2022/NĐ-CP dated July 26, 2022 of the Government stipulating the functions, tasks, powers, and organizational structure of the Ministry of Information and Communications;
Pursuant to the proposal of the Director of the Science and Technology Department,
The Minister of Information and Communications promulgates this Circular stipulating the National Technical Regulation on Electromagnetic Compatibility for Radio Communication Equipment.
Article 1. Attached herewith is the National Technical Regulation on Electromagnetic Compatibility for Radio Communication Equipment (QCVN 18:2022/BTTTT).
Article 2. Effectiveness
1. This Circular shall take effect from May 1, 2023.
2. Circular No. 21/2014/TT-BTTTT dated December 16, 2014 of the Minister of Information and Communications promulgating the "National Technical Regulation on Electromagnetic Compatibility for Radio Communication Equipment" shall cease to be effective from July 1, 2023.
Article 3. Tar Content
1. From July 1, 2023, terminal radio communication equipment (within the scope regulated by QCVN 18:2022/BTTTT) imported and produced domestically must comply with the requirements set forth in QCVN 18:2022/BTTTT.
2. It is encouraged that enterprises, organizations, and individuals producing and importing terminal radio communication equipment (within the scope regulated by QCVN 18:2022/BTTTT) apply QCVN 18:2022/BTTTT from the date this Circular takes effect.
Article 4. The Director of the Office, Heads of Science and Technology Departments, Heads of agencies and units under the Ministry of Information and Communications, Directors of Provincial Departments of Information and Communications, and relevant organizations and individuals are responsible for implementing this Circular./.
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Place of receipt: - Prime Minister, Deputy Prime Ministers (for circulation); - Ministries, agencies equivalent to ministries, and government agencies; - Provincial and municipal People's Committees directly under the central government; - Provincial Departments of Information and Communications; - Legal Documents Supervision Bureau (Ministry of Justice); - Official Gazette, Government Electronic Portal; - Ministry of Information and Communications: Ministers, Deputy Ministers, departments and units under the Ministry, the Ministry's electronic portal; - To be filed: VT, KHCN (250). |
THE MINISTER (Signed)
Nguyen Manh Hung |
SOCIALIST REPUBLIC OF VIETNAM
QCVN 18:2022/BTTTT
AMENDMENT 1:2025 QCVN 07:2023/BXD
ON ELECTROMAGNETIC COMPATIBILITY FOR RADIO EQUIPMENT
National technical regulation
on Electromagnetic Compatibility for Radio Equipment
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Table of Contents
1. GENERAL PROVISIONS... 5
1.1. Scope of Application. 5
1.2. Applicability Objectives. 5
1.3. Referenced Documents. 5
1.4. Definitions. 6
1.5. Symbols. 9
1.6. Abbreviations. 10
2. TECHNICAL REQUIREMENTS. 11
2.1. Emission EMC.. 11
2.1.1. Applicability of Emission Measurement Techniques. 11
2.1.2. Measurement Configuration. 12
2.1.3. Emission from Enclosure Ports. 13
2.1.4. Emission from DC Power Supply Ports. 13
2.1.5. Emission from AC Power Supply Ports. 14
2.1.6. Harmonic Current Emission (AC Grid Power Supply Port). 15
2.1.7. Voltage Fluctuation and Flicker (AC Grid Power Supply Input Port). 15
2.1.8. Emission from Wired Network Ports. 15
2.2. Immunity. 16
2.2.1. Applicability of Immunity Tests. 16
2.2.2. Test Configuration. 17
2.2.3. Immunity in Radio Frequency Electromagnetic Fields (80 MHz to 6,000 MHz). 18
2.2.4. Immunity to Electrostatic Discharge. 18
2.2.5. Immunity to Fast Transients, Common Mode. 19
2.2.6. Immunity to Radio Frequency, Common Mode. 19
2.2.7. Immunity to Transients and Overvoltages in Transport Environment. 20
2.2.8. Immunity to Voltage Sags and Interruptions. 21
2.2.9. Immunity to Overvoltages. 22
3. MANAGEMENT PROVISIONS.. 23
4. RESPONSIBILITIES OF ORGANIZATIONS AND INDIVIDUALS.. 23
5. IMPLEMENTATION ORGANIZATION.. 23
Appendix A (Provisions) Measurement Conditions.. 24
Appendix B (Provisions) Auxiliary Equipment.. 27
Appendix C (Provisions) Quality Criteria.. 28
Appendix D (Provisions) Relevant Parts of the EN 301 489 Standard Series.. 29
Appendix E (Reference) Information Provided to Testing Laboratories.. 31
Appendix F (Reference) Application of Harmonized EMC Standards to Multi-Radio Equipment and Multi-Standard Radio Equipment.. 32
Appendix G (Provisions) HS Codes for Radio Communication Equipment.. 33
Bibliography. 38
Foreword
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QCVN 18:2022/BTTTT replaces QCVN 18:2014/BTTTT. The technical requirements and measurement methods of QCVN 18:2022/BTTTT are consistent with the European Telecommunications Standards Institute (ETSI) standard ETSI EN 301 489-1 V2.2.3 (2019-11). QCVN 18:2022/BTTTT was compiled by the Post and Telecommunications Science and Technology Institute, reviewed by the Ministry of Science and Technology, and promulgated by the Ministry of Information and Communications through Circular No. /TT-BTTTT dated /month/year 2022. |
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AMENDMENT 1:2025 QCVN 07:2023/BXD
ON ELECTROMAGNETIC COMPATIBILITY FOR RADIO EQUIPMENT
National technical regulation
on Electromagnetic Compatibility for Radio Equipment
Chapter 1. GENERAL PROVISIONS
1.1. Scope of Application
This regulation sets out general requirements for electromagnetic compatibility (EMC) for radio equipment and related auxiliary equipment, excluding broadcasting receiving equipment.
Technical parameters related to the antenna port of radio equipment and emission from the enclosure port of radio equipment and combinations of radio equipment and auxiliary equipment are not within the scope of this regulation.
The arrangement of EMC measurements and the method of evaluating measurement results suitable for each type of radio equipment are specified in the relevant Specific Conditions sections of the ETSI EN 301 489 series standards.
In cases where there are differences (for example, specific conditions, definitions, abbreviations) between this regulation and the relevant Specific Conditions sections of the ETSI EN 301 489 series standards, the Specific Conditions sections of the ETSI EN 301 489 series standards shall be applied.
In cases where there is no technical regulation specifying specific conditions for particular radio equipment/services, such as when initiating a new radio service or application, this regulation may be used together with specific information provided by the manufacturer to test the EMC requirements as stated in this regulation.
The HS codes for equipment within the scope of this regulation are specified in Appendix G.
1.2. Applicability
This technical regulation applies to Vietnamese and foreign agencies, organizations, and individuals engaged in production, business, and operation of equipment within the scope of this regulation on Vietnamese territory.
1.3. Referenced Documents
QCVN 118:2018/BTTTT, National Technical Regulation on Electromagnetic Compatibility for Multimedia Equipment - Emission Requirements.
TCVN 7909-4-2:2015 Electromagnetic Compatibility (EMC) - Part 4-2: Measurement and Test Methods - Immunity Test for Electrostatic Discharge Phenomena.
TCVN 7909-4-3:2015 Electromagnetic Compatibility (EMC) - Part 4-3: Measurement Methods - Immunity Test for Conducted Susceptibility to Radiated Electromagnetic Fields at Radio Frequencies.
IEC 61000-4-4:2012 Electromagnetic Compatibility (EMC) - Part 4-4: Testing and Measurement Techniques - Electrical Fast Transient/Burst Immunity Test.
IEC 61000-4-5:2014/AMD1:2017 Electromagnetic Compatibility (EMC) - Part 4-5: Testing and Measurement Techniques - Surge Immunity Test.
IEC 61000-4-11:2004 Electromagnetic Compatibility (EMC) - Part 4-11: Testing and Measurement Techniques - Voltage Dip, Short Interruption and Voltage Variation Immunity Tests.
ISO 7637-2 (2011), Road Vehicles - Electrical Disturbances from Conduction and Coupling - Part 2: Electrical Transient Conduction Along Supply Lines Only.
IEC 61000-3-3:2013/A1:2017 Electromagnetic Compatibility (EMC) - Part 3-3: Limits - Limitation of Voltage Changes, Voltage Fluctuations and Flicker in Public Low-Voltage Supply Systems for Equipment with Rated Current ≤ 16 A Per Phase and Not Subject to Conditional Connection.
CISPR 25, Radio Disturbance Characteristics for the Protection of Receivers Used on Board Vehicles, Boats, and Devices - Limits and Methods of Measurement.
IEC 61000-3-12:2011 Electromagnetic Compatibility (EMC) - Part 3-12: Limits - Limits for Harmonic Currents Produced by Equipment Connected to Public Low-Voltage Systems with Input Current > 16 A and ≤ 75 A Per Phase.
IEC 61000-3-11:2000 Electromagnetic Compatibility (EMC) - Part 3-11: Limits - Limitation of Voltage Changes, Voltage Fluctuations and Flicker in Public Low-Voltage Supply Systems - Equipment with Rated Current ≤ 75 A and Subject to Conditional Connection.
EN 50561-3 (2016): Power Line Communication Apparatus Used in Low-Voltage Installations - Radio Disturbance Characteristics - Limits and Methods of Measurement - Part 3: Apparatus Operating Above 30 MHz.
EN 50561-1:2013/AC:2015 Power Line Communication Apparatus Used in Low-Voltage Installations - Radio Disturbance Characteristics - Limits and Methods of Measurement - Part 1: Apparatus for In-Home Use.
IEC 61000-3-2:2014 Electromagnetic Compatibility (EMC) - Part 3-2: Limits - Limits for Harmonic Current Emissions (Equipment Input Current ≤ 16 A Per Phase).
IEC 61000-4-34:2005/A1:2009 Electromagnetic Compatibility (EMC) - Part 4-34: Testing and Measurement Techniques - Voltage Dip, Short Interruption and Voltage Variation Immunity Tests for Equipment with Main Current More Than 16 A Per Phase.
1.4. Terms and Definitions
1.4.1 Ancillary Equipment
Equipment used in conjunction with a receiver or transmitter.
NOTE 1: An ancillary equipment is considered when:
- The equipment is used in combination with a receiver or transmitter to provide additional operational and/or control features for the radio equipment (for example, to extend control to another location or area); and
- The equipment cannot be used independently to create independent usage functions of a receiver or transmitter; and
- The receiver/transmitter it connects to has the capability to generate certain operations such as transmission and/or reception without ancillary equipment (that is, it is not a sub-component essential to maintain the basic function of the main equipment).
1.4.2 Antenna Port
Port for connecting a transmitting and/or receiving RF energy antenna.
1.4.3 Associated Equipment
Equipment necessary to perform and/or monitor the operation of the EUT.
1.4.4 Base Station Equipment
Radio and/or ancillary equipment used at a fixed location and powered directly or indirectly (that is, through the power grid or AC/DC power converter) by the power grid or local DC power network.
1.4.5 Broadcast Receivers
Equipment containing tuning circuits used to receive broadcast services.
NOTE: These broadcast services typically include radio and television broadcasts, including terrestrial and satellite broadcasting services.
1.4.6 Conditional Connection
Connection of equipment requiring the user-supplied source impedance at the interface point to be lower than impedance Zref so that the emission of the equipment complies with the limits in IEC 61000-3-11.
NOTE: Compliance with voltage change limits is not the sole condition for connection; compliance with emission limits for other phenomena such as harmonics may also be required.
1.4.7 Continuous Phenomena (Continuous Noise)
Electromagnetic noise whose effect on specific equipment or apparatus cannot be classified under known effects.
NOTE: See IEC 60050-161.
1.4.8 Enclosure Port
Physical boundary of the equipment where electromagnetic fields can radiate and cause interference.
NOTE: In cases where the equipment has an integral antenna, this port is not isolated from the antenna port.
1.4.9 Exclusion Band
Frequency bands not tested or evaluated.
1.4.10 Fixed-Use
Use of equipment at a fixed location regularly or at a location connected to a temporary AC power converter.
1.4.11 Integral Antenna
Antenna designed to be permanently connected to the equipment and considered part of the connection port. NOTE: An integrated antenna may be installed inside or outside.
1.4.12 Multi-Radio Equipment
Radio equipment comprising two or more transmitters and/or receivers using different technologies that can operate simultaneously.
a. Short-sleeved shirt for men 1- Multi-Radio Equipment
1.4.13 Multi-Standard Radio
Radio equipment having receivers and transmitters capable of processing simultaneously two or more carrier frequencies within common RF components operating over a specific bandwidth, with at least one carrier frequency differing in access technology from the others.
Figure 2 - Multi-Standard Radio Equipment
1.4.14 Occupied Bandwidth
The bandwidth is defined as the ratio β/2 percent of the average total power of a specific emission between the lower frequency limit and the upper frequency limit; unless otherwise specified for the appropriate type of emission, the value of β/2 should be taken as 0.5%.
1.4.15. Operating frequency range
(The) Radio frequency band(s) determined by the equipment under test (EUT) with its complete modules.
1.4.16. Port
A specific interface of a known device with the electromagnetic environment.
NOTE 1: For example, any point of connection on a device used to connect cables to/from the device is considered a port (see Figure 3).
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Figure 3 - Examples of ports
NOTE 2: An interface that only uses optical fibers with non-conductive coatings is not a test port because it does not interact with the electromagnetic environment within the applicable frequency bands of this standard. Optical fiber interfaces may still be used to evaluate performance.
NOTE 3: In the case of devices with built-in antennas, the antenna port is the enclosure port.
1.4.17. Portable equipment
Radio and/or auxiliary equipment used for mobile operation (e.g., handheld devices) powered by its own battery.
NOTE: These devices are typically handheld.
1.4.18. Radio equipment
Electrical or electronic products capable of emitting and/or receiving radio waves for wireless communication and/or radio transmitters, or electrical or electronic products that must have an accessory such as an antenna to emit and/or receive radio waves for wireless communication and/or radio transmission.
NOTE: The equipment may operate with auxiliary equipment, but in such cases it does not depend on the auxiliary equipment for its basic function.
1.4.19. Removable antenna
An antenna that can be detached during testing according to the manufacturer's instructions.
1.4.20. Signal/control port
A port for connecting components of the EUT, or between the EUT and associated equipment, and used according to relevant specifications (e.g., maximum length of cable connected to it).
1.4.21. Test jig
Related equipment (AE) to support the EUT during testing according to its intended use.
1.4.22. Transient phenomena (Noise transient)
A phenomenon of change between two consecutive stable states over a short period of time compared to the observation period.
NOTE: See IEC 60050-16.
1.4.23. Vehicle use
Radio equipment designed for installation and use on vehicles and powered by the vehicle's main battery.
1.4.24. Wired network port
A wired network port is a point of connection for transferring voice, data, and signaling signals to link wide-area distributed systems through direct connections to user or multi-user communication networks (e.g., cable television networks (CATV), public switched telephone networks (PSTN), integrated services digital networks (ISDN), digital subscriber lines (xDSL), local area networks (LAN), and similar networks).
NOTE: This port may support cables with or without metallic shielding and also transmit AC or DC electrical power, and it is an integral part of telecommunications technical regulations.
1.5. Symbols
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β |
Bandwidth |
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Bandrx (lower) |
Lower limit of the receiver frequency band to be evaluated |
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Bandrx (upper) |
Upper limit of the receiver frequency band to be evaluated |
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BWRX |
Receiver bandwidth (or receiver in a transmitter-receiver) |
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ChWRX |
Receiver channel bandwidth (or receiver in a transmitter-receiver) |
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Exband (lower) |
Lower limit of the excluded band |
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Exband (upper) |
Upper limit of the excluded band |
1.6. Abbreviations
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AC |
Continuous phenomenon applicable to receivers |
Alternating Current |
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AE |
Associated Equipment |
Associated Equipment |
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AMN |
Artificial mains network |
Artificial Mains Network |
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AN |
Artificial network |
Artificial Network |
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BS |
Base Station |
Base Station |
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Amateur band |
Citizens Band |
CDMA |
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Code division multiple access |
Code Division Multiple Access |
CDN |
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Coupling/decoupling network |
Coupling/Decoupling Network |
CISPR |
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Special international committee on radio interference |
International Special Committee on Radio Interference (from the French: Comité International Spécial des Perturbations Radioélectriques) |
EFTA |
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DC |
Discontinuous phenomenon applicable to transmitters |
2.1 Electromagnetic Compatibility (EMC) Emission |
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European Free Trade Association |
European Free Trade Association |
EG |
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ETSI guide |
ETSI Guide |
ElectroMagnetic |
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2.1.1 General Requirements |
The requirements for EMC emission at the ports of radio devices and/or associated equipment are specified in Table 1 of QCVN 18:2014/BTTTT. |
EPS |
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EMC |
ElectroMagnetic Compatibility |
ElectroMagnetic Compatibility |
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External power supply |
External Power Supply |
EU |
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EU |
European Union |
European Union |
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EUT |
Equipment requiring measurement and testing |
Equipment Under Test |
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FSS |
Fixed satellite service |
Fixed Satellite Service |
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GNSS |
Global navigation satellite system |
Global Navigation Satellite Systems |
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ISDN |
Integrated services digital network |
Integrated Services Digital Networks |
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ISO |
ISO |
International Organization for Standardization |
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ITU-R |
International Telecommunication Union - Radiocommunication Sector |
International Telecommunication Union - Radio |
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LAN |
LAN |
Local area network |
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Local Area Network |
MEDS |
Medical data service devices |
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Medical Data Service Devices |
MES |
Mobile earth station |
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Mobile Earth Station |
MSS |
Mobile satellite service |
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Mobile Satellite Services |
PLC |
Powerline communications |
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PowerLine Communications |
PMR |
Private mobile radio |
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Private Mobile Radio |
PSTN |
Public switched telephone network |
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RF |
Radio Frequency |
Radio Frequency |
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rms |
Root Mean Square |
Root Mean Square |
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Public Switched Telecommunications Networks |
RNSS |
Radio navigation satellite service |
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Radio Navigation Satellite Service |
ROMES |
Receive-only mobile earth station |
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Receive Only Mobile Earth Station |
SRD |
Short-range device |
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TV |
Video player |
Short Range Device |
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Television |
UWB |
Ultra-wideband |
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Ultra Wide Band |
VHF |
Very high frequency |
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Very High Frequency |
xDSL |
x-type digital subscriber line |
Chapter 2. TECHNICAL PROVISIONS
2.1. Electromagnetic Compatibility Emission
x-Type Digital Subscriber Line
Table 1 lists the emissions measurements required for radio equipment and/or related auxiliary equipment to be tested.
Table 1 - Emission requirements
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Phenomenon |
Port |
Applicability |
Reference in this standard |
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Fixed use |
Vehicle use |
Portable use |
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Radiated emissions |
Enclosure port of auxiliary equipment |
Applies |
Applies |
Applies |
2.1.3
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Conducted emissions |
DC power port |
Applies |
Applies |
e) Skills in guiding techniques, disseminating experience, and participating in scientific research in the field of social work; recognizing the needs of assistance recipients and determining appropriate measures to address them. |
2.1.4 |
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Conducted emissions |
AC power port |
Applies |
e) Skills in guiding techniques, disseminating experience, and participating in scientific research in the field of social work; recognizing the needs of assistance recipients and determining appropriate measures to address them. |
e) Skills in guiding techniques, disseminating experience, and participating in scientific research in the field of social work; recognizing the needs of assistance recipients and determining appropriate measures to address them. |
2.1.5 |
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Harmonic current emissions |
AC Input Port
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Applies |
e) Skills in guiding techniques, disseminating experience, and participating in scientific research in the field of social work; recognizing the needs of assistance recipients and determining appropriate measures to address them. |
e) Skills in guiding techniques, disseminating experience, and participating in scientific research in the field of social work; recognizing the needs of assistance recipients and determining appropriate measures to address them. |
2.1.6 |
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Voltage Fluctuations and Flicker |
AC Input Port |
Applies |
e) Skills in guiding techniques, disseminating experience, and participating in scientific research in the field of social work; recognizing the needs of assistance recipients and determining appropriate measures to address them. |
e) Skills in guiding techniques, disseminating experience, and participating in scientific research in the field of social work; recognizing the needs of assistance recipients and determining appropriate measures to address them. |
2.1.7 |
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Conducted emissions |
Wired Network Port |
Applies |
e) Skills in guiding techniques, disseminating experience, and participating in scientific research in the field of social work; recognizing the needs of assistance recipients and determining appropriate measures to address them. |
e) Skills in guiding techniques, disseminating experience, and participating in scientific research in the field of social work; recognizing the needs of assistance recipients and determining appropriate measures to address them. |
2.1.8 |
2.1.2. Measurement Configuration
Conduct the conducted emission measurement for all wireless devices with wired connections.
It is not mandatory to perform the radiated emission measurement on the antenna port and/or housing port (see 2.1.3) for wireless devices.
- Perform measurements when the Equipment Under Test (EUT) operates correctly and at the mode generating the highest emissions within the frequency band under investigation.
- The equipment configuration must be set to normal operating conditions as they would occur in practice.
- If the device being tested is part of a system or connected to auxiliary equipment, it must be measured while connected to the auxiliary equipment with the minimum representative configuration necessary to test the ports.
- If the device has multiple ports, select enough ports to simulate actual operating conditions and ensure testing of all types of connectors.
- Connect the ports either to parts of the equipment that are normally connected during normal operation or to sections of cable with appropriate connectors to simulate the impedance of the connected equipment.
- Record the configuration and operating mode of the equipment during testing in the measurement report.
2.1.3. Emission from Housing Ports
2.1.3.1. Overview
This measurement applies only to housing ports of auxiliary equipment not permanently attached to the wireless device and evaluated independently from its associated wireless device.
Conduct the measurement on a representative configuration of the auxiliary equipment.
2.1.3.2. Measurement Method
The measurement method must comply with QCVN 118:2018/BTTTT, Article 2.2.
2.1.3.3. Limits
Auxiliary equipment must meet the limits for Class B equipment specified in Tables 4 and 5 of QCVN 118:2018/BTTTT.
Additionally, for auxiliary equipment used exclusively in industrial environments or telecommunications centers, the equipment must meet the emission limits for Class A equipment specified in Tables 2 and 3 of QCVN 118:2018/BTTTT.
2.1.4. Emission from DC Power Supply Ports
2.1.4.1. Overview
This measurement applies to wireless devices and auxiliary equipment intended for fixed use and connected to nearby DC power networks or batteries through cables longer than 3 meters (see Appendix E).
If the DC power supply cables of the wireless device and/or auxiliary equipment are shorter than or equal to 3 meters and directly connected to a separate AC/DC power supply unit, conduct the measurement on the AC power supply input port of this power supply unit as specified in 2.1.5. If the DC power supply cables are longer than 3 meters, additional measurements must be performed on the DC power supply ports of the mobile wireless device and/or auxiliary equipment.
If the DC power supply cables between the wireless device and/or auxiliary equipment and a separate DC/DC power supply unit are shorter than or equal to 3 meters, the measurement can be limited to the DC power supply input port of this power supply unit. If the DC power supply cables are longer than 3 meters, additional measurements must be performed on the DC power supply ports of the mobile wireless device and/or auxiliary equipment.
Conduct this measurement on a representative configuration of the wireless device, related auxiliary equipment, or a representative configuration of the combination of the wireless device and auxiliary equipment.
This measurement evaluates the level of internal electrical noise appearing on the DC power supply input/output ports.
2.1.4.2. Measurement Method
For mobile wireless devices and auxiliary equipment connected to the main DC circuit board of a vehicle, a dummy network (AN) as specified in CISPR 25 must be used and connected to the DC power supply.
For all other devices, apply the requirements specified in 2.3, QCVN 118:2018/BTTTT for measuring the AC power supply ports.
The measurement frequency range extends from 150 kHz to 30 MHz. When the EUT is a transmitter operating below 30 MHz, the exclusion band for the transmitter (see A.3, Appendix A) applies to the transmission mode measurement.
For emission measurements on DC output ports, the relevant ports must be connected to a load through the AMN/AN.
2.1.4.3. Limits
The equipment must meet the following conducted emission limit values including both peak and average limits corresponding to the use of average and peak receivers and appropriate measurements as described in the measurement method 2.1.4.2 above. If the peak receiver limit is met, the equipment is considered to meet both limits and there is no need to perform the measurement with the average receiver.
The equipment must meet the limits in Table 2 below.
Table 2 - Conducted Emission Limits
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Frequency Band |
Peak, dBµV |
Average, dBµV |
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0.15 MHz - 0.5 MHz |
79 |
66 |
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0.5 MHz - 30 MHz |
73 |
60 |
2.1.5. Emission from AC Power Supply Ports
2.1.5.1. Overview
This measurement applies to fixed-use wireless devices and/or auxiliary equipment powered by AC mains.
Conduct this measurement on a representative configuration of the wireless device, related auxiliary equipment, or a representative configuration of the combination of the wireless device and auxiliary equipment.
This measurement evaluates the level of internal electrical noise appearing on the AC power supply input/output ports.
2.1.5.2. Measurement Method
The measurement method must comply with QCVN 118:2018/BTTTT, Clause 2.3 and use a dummy power network (AMN) to connect to the AC mains.
The measurement frequency range extends from 150 kHz to 30 MHz. When the EUT is a transmitter operating below 30 MHz, the exclusion band for the transmitter (see Appendix A, Section A.3) applies to the transmission mode measurement.
For emission measurements at the AC output ports of the EUT, the relevant ports must be connected through the AMN to a load. In cases where the AC output port is directly connected (or through a switch) to the AC input port of the EUT, there is no need to measure the AC output port.
2.1.5.3. Limits
2.1.5.3.1. Overview
The equipment must meet the values below including both peak and average limits when using average and peak receivers and appropriate measurements as described in the measurement method 2.1.5.2 above. If the average limit is met with the peak receiver, the equipment is considered to meet both limits and there is no need to perform the measurement with the average receiver.
2.1.5.3.2. The AC power supply port shall only be used for powering devices.
Devices must comply with the emission limits for Class B equipment specified in Table 10 of QCVN 118:2018/BTTTT.
For devices that are only used in industrial environments or telecommunications centers, the emission limits for Class A equipment specified in Table 9 of QCVN 118:2018/BTTTT shall apply.
2.1.5.3.3. The AC power input port may also be used for PLC communication information.
When the AC power port of the device is also used for PLC communication between 1.6 MHz and 30 MHz, the EUT must comply with the requirements set forth in Article 6 of EN 50561-1:2013/AC:2015 instead of those in Clause 2.1.5.3.2 of this standard.
When the AC power port of the device is also used for PLC communication above 30 MHz, the EUT must comply with the requirements set forth in Article 6 of EN 50561-3 instead of those in Clause 2.1.5.3.2 of this standard.
2.1.6. Harmonic current emissions (AC mains input port)
For devices with input current up to and including 16 A per phase, classified according to Article 5 of IEC 61000-3-2:2014, the limits in Article 7 of IEC 61000-3-2:2014 shall apply, along with the evaluation requirements in Article 6 of IEC 61000-3-2:2014.
For devices with input current greater than 16 A per phase, the harmonic current emission limits according to Article 5 of IEC 61000-3-12:2011 and the evaluation requirements in Article 7 of IEC 61000-3-12:2011 shall apply.
2.1.7. Voltage flicker and variation (AC mains input port)
For devices with input current up to and including 16 A per phase, if conditional connection is not required, the limits in Article 5 of IEC 61000-3-3:2013/A1:2017 and the evaluation requirements in Article 6 of IEC 61000-3-3:2013/A1:2017 shall apply.
For devices with input current up to and including 16 A per phase requiring conditional connection, and for devices with input current equal to or greater than 16 A and up to 75 A per phase, the limits in Article 5 of IEC 61000-3-11 and the evaluation requirements in Article 6 of IEC 61000-3-11 shall apply.
2.1.8. Emission from wired network ports
2.1.8.1. Overview
This test applies to fixed wireless and/or auxiliary equipment using wired network ports.
Conduct this measurement on a representative configuration of the wireless device, related auxiliary equipment, or a representative configuration of the combination of the wireless device and auxiliary equipment.
This test evaluates unwanted emissions at wired network ports.
2.1.8.2. Measurement method
The measurement method must conform to Article 2.3 of QCVN 118:2018/BTTTT.
The measurement frequency range extends from 150 kHz to 30 MHz. If the EUT is a transmitter operating below 30 MHz, the transmitter exclusion band (see Appendix A, Section A.3) shall be applied during transmission mode measurements.
2.1.8.3. Limits
Wired network ports must comply with the emission limits for Class B equipment in Table 12 of QCVN 118:2018/BTTTT.
Additionally, for devices used exclusively in industrial environments or telecommunications centers, the emission limits for Class A equipment in Table 11 of QCVN 118:2018/BTTTT shall apply.
2.2. Immunity
2.2.1. Applicability of immunity tests
Immunity tests for wireless and/or auxiliary equipment related to the equipment are specified in Table 4.
Table 4 - Immunity requirements Fixed use
|
Phenomenon |
Port |
Applicability |
Reference in this standard |
||
|
RF electromagnetic field (from 80 MHz to |
Vehicle use |
Portable use |
|||
|
6,000 MHz) Electrostatic discharge |
Enclosure port |
Applies |
Applies |
Applies |
2.2.3 |
|
Enclosure |
Fast transient, common mode |
Applies |
e) Skills in guiding techniques, disseminating experience, and participating in scientific research in the field of social work; recognizing the needs of assistance recipients and determining appropriate measures to address them. |
Applies |
2.2.4 |
|
Signals, wired network ports, control ports, DC and AC power ports |
RF, common mode from 0.15 MHz to 80 MHz |
Applies |
e) Skills in guiding techniques, disseminating experience, and participating in scientific research in the field of social work; recognizing the needs of assistance recipients and determining appropriate measures to address them. |
e) Skills in guiding techniques, disseminating experience, and participating in scientific research in the field of social work; recognizing the needs of assistance recipients and determining appropriate measures to address them. |
2.2.5 |
|
Signals, wired network ports, control ports, DC and AC power ports |
Transient overvoltage on transport means |
Applies |
e) Skills in guiding techniques, disseminating experience, and participating in scientific research in the field of social work; recognizing the needs of assistance recipients and determining appropriate measures to address them. |
e) Skills in guiding techniques, disseminating experience, and participating in scientific research in the field of social work; recognizing the needs of assistance recipients and determining appropriate measures to address them. |
2.2.6 |
|
DC power input port |
Voltage dips and interruptions |
e) Skills in guiding techniques, disseminating experience, and participating in scientific research in the field of social work; recognizing the needs of assistance recipients and determining appropriate measures to address them. |
Applies |
e) Skills in guiding techniques, disseminating experience, and participating in scientific research in the field of social work; recognizing the needs of assistance recipients and determining appropriate measures to address them. |
2.2.7 |
|
AC power input port |
Line-to-line, line-to-ground overvoltage |
Applies |
e) Skills in guiding techniques, disseminating experience, and participating in scientific research in the field of social work; recognizing the needs of assistance recipients and determining appropriate measures to address them. |
e) Skills in guiding techniques, disseminating experience, and participating in scientific research in the field of social work; recognizing the needs of assistance recipients and determining appropriate measures to address them. |
2.2.8 |
|
AC mains power input port, wired network ports |
2.2.2. Test configuration |
Applies |
e) Skills in guiding techniques, disseminating experience, and participating in scientific research in the field of social work; recognizing the needs of assistance recipients and determining appropriate measures to address them. |
e) Skills in guiding techniques, disseminating experience, and participating in scientific research in the field of social work; recognizing the needs of assistance recipients and determining appropriate measures to address them. |
2.2.9 |
2.2.2. Configuration test
This Section sets out the requirements for the configuration for immunity testing as follows:
- The immunity test must take into account the test conditions specified in Appendix A;
- The test must be conducted within the operational environment as prescribed and with equipment supplied from a designated power source;
- If the equipment is part of a system or connected to auxiliary devices, it must be tested while connected to the auxiliary device with a minimum representative configuration sufficient to test all ports;
- If the equipment has built-in antennas, it must be tested with the antenna as when operating normally;
- For immunity tests of auxiliary devices that do not have separate pass/fail criteria, the results of the receiver or transmitter paired with the auxiliary device shall be used to assess whether the auxiliary device passes or fails the immunity test;
- If the equipment has multiple ports, enough ports must be selected to simulate actual operating conditions and ensure testing of all types of end connections;
- Ports that are not connected to cables during normal operation, such as service ports, programming ports, temporary ports, etc., shall not be connected to any cable during electromagnetic compatibility (EMC) testing. If it is necessary to connect cables to these ports or extend internal connection cables to test the Equipment Under Test (EUT), preventive measures must be applied to avoid any impact on the evaluation of the EUT;
- The configuration and operating mode of the equipment during the test must be recorded in the measurement report;
2.2.3. Immunity in Radio Frequency Electromagnetic Fields (80 MHz to 6,000 MHz);
2.2.3.1. Overview;
This test applies to radio equipment and related auxiliary devices;
The test must be performed on a representative configuration of the radio equipment, related auxiliary devices, or a representative configuration of the combination of radio equipment and auxiliary devices;
This test evaluates the ability of the Equipment Under Test (EUT) to operate normally under radio frequency electromagnetic field interference;
2.2.3.2. Testing Method;
The measurement method must comply with TCVN 7909-4-3:2015;
Apply the following requirements and evaluate the measurement results;
- The test level (test field strength) is 3 V/m (unmodulated measurement). The test signal must be amplitude modulated with a modulation depth of 80% using a 1,000 Hz low-frequency sine wave signal. If the desired signal is modulated at 1,000 Hz, a 400 Hz low-frequency signal must be used;
- The measurement must be carried out over the frequency range from 80 MHz to 6,000 MHz, applying appropriate exclusion bands for transmitters, receivers, and dual transceivers (see A.3, Appendix A);
- The frequency step increment is 1% of the current operating frequency;
- The dwell time of the immunity test phenomenon at each frequency must not be less than the time required to check the EUT and the response time of the EUT;
NOTE: The dwell time depends on the equipment;
- The selected and used frequencies in the test must be recorded in the measurement report;
2.2.3.3. Quality Criteria;
Continuous phenomena quality criteria must be applied (as specified in C.2, Appendix C);
2.2.4. Immunity to Electrostatic Discharge;
2.2.4.1. Overview;
This test applies to radio equipment and related auxiliary devices;
The test must be performed on a representative configuration of the radio equipment, related auxiliary devices, or a representative configuration of the combination of radio equipment and auxiliary devices;
This test evaluates the ability of the Equipment Under Test (EUT) to operate normally in the event of electrostatic discharge phenomena;
2.2.4.2. Testing Method;
Comply with the requirements of Article 6, 7, and 8 of IEC EN 61000-4-2:2009;
For radio equipment and auxiliary devices, apply the following requirements and evaluate the test results;
The test level (test voltage level) for contact discharge must be ±4 kV, and for air discharge ±8 kV. All other details including average test levels are as per TCVN 7909-4-2:2015;
Electrostatic discharge testing must be applied to all exposed surfaces of the EUT unless the user manual specifies appropriate protective measures (as per 8.3.2 and 8.3.3 of IEC EN 61000-4-2:2009);
2.2.4.3. Quality Criteria;
Continuous phenomena quality criteria must be applied (as specified in C.2, Appendix C);
2.2.5. Immunity to Fast Transients, General Mode;
2.2.5.1. Overview;
This test must be performed on the AC mains power port (if present) of the radio equipment and related auxiliary devices;
This test must also be performed on signal ports, information ports, control ports, and DC power ports of the radio equipment and related auxiliary devices if the cables exceed 3 meters;
In cases where the ports cannot be used with cables longer than 3 meters, this test shall not be performed on those ports, and a list of these ports must be recorded in the measurement report;
This test evaluates the ability of the Equipment Under Test (EUT) to operate normally in the event of fast transient phenomena occurring on one of the input/output ports;
2.2.5.2. Testing Method;
The measurement method must comply with IEC 61000-4-4:2012;
Apply the following requirements and evaluate the measurement results;
- The test level for signal ports, wired network ports (including xDSL networks) and control ports must be an open-circuit voltage of 0.5 kV with a repetition rate of 5 kHz as specified in Article 5 of IEC 61000-4-4:2012;
- The test level for xDSL wired network ports must be an open-circuit voltage of 0.5 kV with a repetition rate of 100 kHz as specified in Article 5 of IEC 61000-4-4:2012;
- The test level for DC power input ports must be an open-circuit voltage of 0.5 kV with a repetition rate of 5 kHz as specified in Article 5 of IEC 61000-4-4:2012;
- The test level for AC mains power input ports must be an open-circuit voltage of 1 kV with a repetition rate of 5 kHz as specified in Article 5 of IEC 61000-4-4:2012;
2.2.5.3. Quality Criteria;
Apply quality criteria for transient phenomena (as per C.3, Appendix C);
2.2.6. Immunity to Radio Frequency, General Mode;
2.2.6.1. Overview;
This test must be performed on the AC mains power port (if present) of the radio equipment and related auxiliary devices;
This supplementary test must be performed on signal ports, wired network ports, control ports, and DC power ports of the radio equipment and related auxiliary devices if the cables exceed 3 meters;
In cases where the ports cannot be used with cables longer than 3 meters, this test shall not be performed on those ports, and a list of these ports must be recorded in the measurement report;
The test must be performed on a representative configuration of the radio equipment, related auxiliary devices, or a representative configuration of the combination of radio equipment and auxiliary devices;
This test evaluates the ability of the Equipment Under Test (EUT) to operate normally when subjected to radio frequency electromagnetic interference on the input/output ports;
2.2.6.2. Testing Method;
The measurement method must be consistent with TCVN 7909-4-6:2015.
Apply the requirements and evaluate the results of the following test measurements:
- The test level must be level 2 as specified in TCVN 7909-4-6:2015 corresponding to 3V rms unmodulated. The test signal must be amplitude modulated with a modulation depth of 80% by a 1000 Hz sine wave signal. If the desired signal is modulated at 1000 Hz, then a test signal modulated at 400 Hz must be used.
- The test must be conducted over the frequency range from 150 kHz to 80 MHz, excluding the frequency bands excluded for transmitters, receivers, and duplex transceivers (see Appendix A).
- For receivers and transmitters, the frequency step must equal 1% of the current frequency value within the 150 kHz to 80 MHz range;
- The injection method must be selected in accordance with TCVN 7909-4-6:2015.
- Narrowband responses (false responses) occurring on the receiver or the receiver part of the transceiver at discrete frequencies must be disregarded during the test (see Appendix A).
The dwell time of the immunity test phenomenon at each frequency must not be less than the time required to check the EUT and the response time of the EUT;
- The frequencies of the immune test signals chosen and used in the test must be recorded in the measurement report.
2.2.6.3. Quality Criteria
Continuous phenomena must be evaluated according to quality criteria (see C.2, Appendix C).
2.2.7. Immunity to Transients and Overvoltages in Transport Vehicles
2.2.7.1. Overview
This test applies to radio equipment and accessories used in transport vehicles.
This test must be performed on the DC power supply inputs of 12 V and 24 V of mobile radio equipment and accessories also used in transport vehicles.
This test must be performed on configurations representative of mobile radio equipment, related accessories, or configurations representing combinations of radio equipment and accessories.
This test evaluates the normal operation capability of the EUT when transient and overvoltage phenomena occur on the DC power supply inputs of the equipment in the transport vehicle environment.
2.2.7.2. Test Method
The measurement method must comply with ISO 7637-2:2004 for equipment using 12 V and 24 V DC power supplies.
The test method must comply with ISO 7637-2:2004 when using pulses types 1, 2a, 2b, 3a, 3b, 4, and applying immunity levels III. For EMC testing purposes, each pulse type (1, 2a, 2b, 4) must be tested ten times, while for pulse types 3a and 3b, a 20-minute interval must be applied between tests.
2.2.7.3. Quality Criteria
When using pulses 3a and 3b, apply quality criteria for continuous phenomena (see C.2, Appendix C).
When using pulses 1, 2a, 2b, 4, apply quality criteria for transient phenomena (see C.3, Appendix C), except that communication links need not be maintained during EMC exposure and may need to be re-established.
2.2.8. Immunity to Voltage Sags and Interruptions
2.2.8.1. Overview
This test must be performed on the AC mains power supply inputs of radio equipment and related accessories.
The test must be performed on a representative configuration of the radio equipment, related auxiliary devices, or a representative configuration of the combination of radio equipment and auxiliary devices;
This test evaluates the normal operation capability of the EUT when voltage sags and interruptions occur on the AC mains power supply inputs.
2.2.8.2. Test Method
Apply the requirements and evaluate the results of the following test measurements:
Comply with IEC 61000-4-11 or IEC 61000-4-34:2005/A1:2009 for equipment requiring a power supply current greater than 16 A.
The test levels must be:
- Sag: remaining voltage 0% for 0.5 cycles;
- Sag: remaining voltage 0% for 1 cycle;
- Sag: remaining voltage 70% for 25 cycles (at 50 Hz);
- Interruption: remaining voltage 0% for 250 cycles (at 50 Hz).
2.2.8.3. Quality Criteria
For voltage sag tests where the remaining voltage is 0%, apply the following quality criteria for voltage sags:
- Apply quality criteria for transient phenomena (see C.3, Appendix C).
For voltage sag and interruption tests where the remaining voltage is 70%, apply the following quality criteria:
- In cases where the equipment is equipped with or connected to a backup battery, apply quality criteria for transient phenomena as specified in C.3, Appendix C.
- In cases where the equipment is powered solely from the grid (without using a backup battery), user data may be lost and if necessary, communication links and lost functions can be restored by users or operators;
- There must be no unintended responses occurring at the end of the test when the voltage returns to its nominal level;
- In cases where functions or user data are lost, these factors must be recorded in the measurement report.
2.2.9. Immunity to Overvoltages
2.2.9.1. Overview
This test must be performed on the AC mains power supply inputs of radio equipment and related accessories.
This supplementary test must be performed on network ports, if present.
The test must be performed on a representative configuration of the radio equipment, related auxiliary devices, or a representative configuration of the combination of radio equipment and auxiliary devices;
This test evaluates the normal operation capability of the EUT when overvoltages occur on the AC mains power supply inputs and network ports.
2.2.9.2. Test Method
2.2.9.2.1. Overview
Comply with the requirements set forth in Article 7 and 8 of IEC 61000-4-5:2014/AMD1:2017.
Apply the requirements and evaluate the test results as specified in 2.2.9.2.2 (network ports connected to outdoor cables), 2.2.9.2.3 (network ports connected to indoor cables), and 2.2.9.2.4 (mains power ports), but do not require tests that cannot be performed due to the impact of common mode choke circuits on the EUT.
2.2.9.2.2. Test Method for Network Ports Directly Connected to Outdoor Cables
The test level for active symmetrical network ports directly connected to outdoor cables must be 1 kV (line-to-ground) as specified in Article 5 of IEC 61000-4-5:2014/AMD1:2017. The test signal generator must provide 10/700 µs pulses as specified in Appendix A.2 of IEC 61000-4-5:2014/AMD1:2017.
The test level for asymmetric operation twisted pair network ports directly connected to outdoor telecommunications cable networks must be 1 kV (line-to-ground or with shielding from ground) and 0.5 kV (line-to-line) as specified in Article 5 of CENELEC EN 61000-4-5: 2014, A1:2017. The signal generator must provide pulses of 1.2/50 µs as specified in Clause 6.2 of IEC 61000-4-5:2014/AMD1:2017.
The output impedance of the overvoltage generator must comply with the provisions of Clause 6.2 and Annex A.2 of IEC 61000-4-5:2014/AMD1:2017.
2.2.9.2.3. Test method for twisted pair network ports connected to indoor cables
The test level for twisted pair network ports used to connect with indoor cables (cable length over 30 meters) must be 0.5 kV (line-to-ground or with shielding from ground). In this case, the total output impedance of the overvoltage generator including the CDN circuit must comply with the provisions of Clause 6.2 and 6.3 of IEC 61000-4-5:2014/AMD1:2017. The signal generator must provide pulses of 1.2/50 µs as specified in Clause 6.2 of IEC 61000-4-5:2014/AMD1:2017.
2.2.9.2.4. Test method for power grid ports
The test level for power grid input ports must be 2 kV line-to-ground and 1 kV line-to-line with the output impedance of the overvoltage generator including the CDN circuit as specified in Clause 6.2 and 6.3 of IEC 61000-4-5:2014/AMD1:2017.
In telecommunications centers, the test level must be 1 kV line-to-ground and 0.5 kV line-to-line.
The signal generator must provide pulses of 1.2/50 µs as specified in Clause 6.2 of IEC 61000-4-5:2014/AMD1:2017.
2.2.9.3. Quality criteria
Apply quality criteria to transient phenomena (see C.3, Annex C).
3. MANAGEMENT PROVISIONS
3.1. Radio equipment and related auxiliary devices within the scope of regulation as specified in 1.1 must comply with the technical regulations set forth in this standard.
3.2. In cases where radio equipment has its own technical standards, any technical requirements related to antenna ports and device housing ports in those standards shall take precedence over corresponding technical requirements in this standard. The remaining technical requirements of this standard must still be applied to evaluate the electromagnetic compatibility (EMC) compliance of the equipment.
4. RESPONSIBILITIES OF ORGANIZATIONS AND INDIVIDUALS
Relevant organizations and individuals are responsible for implementing conformity declarations and are subject to inspection by state management authorities according to current regulations.
Chapter 5. ORGANIZATION OF IMPLEMENTATION
5.1. The Telecommunications Authority, the Radio Frequency Management Department, and Provincial Departments of Information and Communications are responsible for guiding and managing electromagnetic compatibility for radio equipment according to this standard.
5.2. This standard replaces QCVN 18:2014/BTTTT National Technical Regulations on Electromagnetic Compatibility for Radio Equipment.
5.3. In cases where the provisions set forth in this Standard are changed, supplemented, or replaced, they shall be implemented according to the new document.
5.4. During the implementation of this standard, if any issues arise, relevant organizations and individuals should report them in writing to the Ministry of Information and Communications (Science and Technology Department) for guidance and resolution.
ANNEX A
(Provisions) Conditions for Testing
A.1. Overview
The configuration and operating mode of the test must be recorded in the test report, representing the intended use of the equipment.
A.2. Signal Arrangement for Testing
A.2.1. Overview
Independent transmitters and receivers must be tested separately. Transceiver equipment must be tested to confirm each direction of operation of the equipment.
A.2.2. Signal Arrangement for Testing at the Input of the Transmitter
The transmitter must be tested with a signal that represents the intended use of the Equipment Under Test (EUT).
When the test signal is generated by an external source, the signal generator must be placed outside the test environment.
A.2.3. Signal Arrangement for Testing at the RF Output of the Transmitter
The monitoring equipment (AE) for the desired RF output signal from the transmitter under test must be placed outside the test environment.
For transmitters with built-in antennas, the desired RF output signal to establish a communication link must be provided by the EUT to an antenna placed within the test environment. This antenna must be connected to the RF output signal monitoring equipment (AE) using means not affected by signals within the test environment.
For transmitters with detachable antennas, the desired RF output signal to establish a communication link must be provided from the antenna connector to the monitoring equipment (AE) via shielded wire such as coaxial cable.
The level of the desired RF output signal in the transmission mode must be set to the maximum apparent power level of the EUT.
A.2.4. Signal Arrangement for Testing at the RF Input of the Receiver
The source providing the desired RF input signal for the receiver under test must be placed outside the test environment.
For receivers with built-in antennas, the desired RF input signal to establish a communication link must be delivered to the EUT from an antenna placed within the test environment. This antenna must be connected to the external RF signal source using means not affected by signals within the test environment.
For receivers with detachable antennas, the desired RF input signal to establish a communication link must be delivered to the antenna connector of the EUT via shielded wire such as coaxial cable. This cable must be connected to the external RF signal source.
The level of the desired RF input signal must be set to 40 dB above the minimum signal level at which the receiver can operate. For immunity tests against radiated emissions, this signal level is measured while the power amplifiers generating the electromagnetic interference are activated but without stimulation.
NOTE: The desired level of RF input signal increase is used to indicate the normal operating signal level and sufficient to avoid broadband interference from amplifiers that cause EM interference affecting measurement.
A.2.5. Signal Measurement Arrangement at Receiver Output
The signal monitoring equipment (AE) for the RF output signal from the receiver under test must be placed outside the testing environment.
For receivers with an output connector or a desired output signal port, this port must be used together with a cable suitable for the standard cable used during normal operation and connected to the external signal monitoring equipment (AE) outside the testing environment.
For receivers without an output connector to provide audio or visual indication of the received signal, the output must be coupled through a non-conductive medium to the external signal monitoring equipment (AE) outside the testing environment (for example, via a camera to read the display).
A test fixture may be used to perform the measurement.
A.3. Excluded RF Bandwidth of Radio Equipment
A.3.1 Overview
The excluded bandwidths must be determined using the methods detailed in clauses A.3.2 and A.3.3 of this Standard.
Whenever excluded bandwidths are applied, the specific frequency bands excluded from evaluation must be detailed in the technical documentation.
A.3.2 Excluded Bandwidth for Transmitters or Transmitting Sections in Transceivers
A.3.2.1 Overview
Excluded bandwidths shall not be applied when measuring transmitters in standby mode.
A.3.2.2 Channelized Equipment
For channelized equipment, the excluded bandwidth must extend 250% of the channel width on both sides of the transmitter's central frequency.
NOTE: The excluded bandwidth is extended to 250% based on ITU-R Regulations 1.146, 1.146A, and 1.146B.
A.3.2.3 Non-channelized Equipment
For non-channelized equipment, the excluded bandwidth must extend 250% of the occupied bandwidth on both sides of the transmitter's central frequency.
NOTE: The 250% excluded bandwidth is based on ITU-R Regulations 1.146, 1.146A, and 1.146B.
A.3.3 Excluded Bandwidth for Receivers or Receiving Sections in Transceivers
A.3.3.1 Applicability
Excluded bandwidths shall not be applied when testing the emission of receivers or receiving sections in transceivers.
A.3.3.2 Channelized Equipment
For channelized equipment, the excluded bandwidth is calculated using the following formulas:
For the lower limit of the excluded bandwidth:
EXband(lower) = Band(lower) – nChWRXFor the upper limit of the excluded bandwidth:RX
EXband(upper) = Band(upper) + nChW
Where n = the number of channel widths required for the excluded bandwidth.RXNOTE: For equipment supporting multiple channel widths, the channel width used must be the largest channel width supported by the EUT.RX
In case this Standard is used independently, the value of n must be 1.
A.3.3.3 Non-channelized Equipment
For non-channelized equipment, the excluded bandwidth is calculated using the following formulas:
EXband(lower) = Band(lower) – nBW
EXband(upper) = Band(upper) + nBW
For the lower limit of the excluded bandwidth:
EXband(lower) = Band(lower) – nChWRXWhere n = the multiple of the total bandwidth required to determine the excluded bandwidth.RX
EXband(upper) = Band(upper) + nChW
Where n = the number of channel widths required for the excluded bandwidth.RXThe receiver bandwidth is the bandwidth occupied by the corresponding transmitter signal.RX
[H2]
(Regulation)
For non-channelized equipment, the excluded bandwidth is calculated using the following formulas:
Auxiliary Equipment
Provisions on the HS Code of Terrestrial Mobile Radio Equipment and Terrestrial Radio Relay Equipment
B.1 Auxiliary Equipment
Auxiliary equipment is tested and evaluated in one of the following two ways:
Separating the auxiliary equipment from the radio equipment outside the test area but still connected to the auxiliary equipment; or
- As a combination of auxiliary equipment and radio equipment, both within the test area.
- If the first option is chosen, excluded bandwidths shall not be applied to the auxiliary equipment.
(Regulation)
Annex C
Quality Criteria
C.1 Introduction
Quality criteria are used to determine whether a radio device passes immunity tests.
Two types of quality criteria are applied in this Standard:
- Quality criteria for continuous phenomena;
- Quality criteria for transient phenomena.
NOTE: Typically, quality criteria depend on the type of radio equipment. Therefore, this Standard only includes general quality criteria commonly used to evaluate radio equipment. More specific quality criteria related to a particular type of radio equipment are included in the relevant section of the EN 301 489 standard.
C.2 Quality Criteria for Continuous Phenomena
During testing, the equipment must:
- Continue to operate as intended;
- Not emit unintentionally;
- Not change the equipment's operational state unintentionally;
- Not alter stored important data unintentionally.
C.3 Quality Criteria for Transient Phenomena
For all ports, the application of the mutation phenomenon, except as described below, shall be as follows:
- The application of the mutation phenomenon must not lead to changes in the operational mode (such as unintended transmission) or loss of important stored data.
- After applying the mutation phenomenon, the device must operate as intended.
For the overvoltage test applied to symmetrical ports in operation aimed at direct connection to outdoor lines, the following criteria shall be applied:
- For products with only one symmetrical port for connecting to outdoor lines, the loss of function is allowed, provided that such function can self-recover, or can be recovered by other means. Information stored in memory shall not be lost, or shall be protected by a backup battery source.
- For products with more than one symmetrical port for connecting to outdoor lines, the loss of function on the port being tested is allowed, provided that such function can self-recover. Information stored in memory shall not be lost, or shall be protected by a backup battery source.
Appendix D
(Provision) Relevant sections of the EN 301 489 standard
This standard is Part 1 of the multi-part EMC Standard for radio equipment and has the following structure:
- An EMC standard for all radio equipment is composed of several standard sections.
- All general technical requirements regarding emission and immunity have been placed in the common standard section, which is this standard.
- Specific standard sections include specific requirements related to testing conditions, test organization, performance evaluation criteria, quality criteria, etc., for a particular radio equipment.
- The "Specific Conditions" section in all specific radio equipment standard sections is used to supplement additional or different requirements of each radio equipment to the general requirements stipulated in this standard.
To fully demonstrate EMC requirements, this standard will be used together with the specific conditions section for a particular radio equipment.
The EN 301 489 standard includes:
Part 1: General Technical Requirements;
Part 2: Specific Conditions for Radio Messaging Equipment;
Part 3: Specific Conditions for Short Range Equipment operating in the frequency range from 9 kHz to 40 GHz;
Part 4: Specific Conditions for Fixed Radio Links; Stations, Auxiliary Equipment, and Broadband Data Transmission Services.
Part 5: Specific conditions for ground-based private radio mobile equipment (PRM) and auxiliary equipment (voice and non-voice);
Part 6: Specific conditions for improved wireless digital communication equipment (DECT);
Part 9: Specific conditions for wireless microphones, similar audio connecting devices at radio frequencies, sound equipment, and wireless monitoring headphones;
Part 11: Specific conditions for terrestrial broadcasting transmitters;
Part 12: Specific conditions for Very Small Aperture Terminal (VSAT) and terrestrial satellite stations operating in the frequency band from 4 GHz to 30 GHz in Fixed Satellite Service (FSS);
Part 13: Specific conditions for amateur band (CB) radio and auxiliary equipment (voice and non-voice);
Part 14: Specific conditions for terrestrial digital and analog television transmitters;
Part 15: Specific conditions for commercially available amateur radio equipment;
Part 17: Specific conditions for broadband data transmission systems;
Part 19: Specific conditions for terrestrial mobile receiving stations operating in the 1.5 GHz band for providing data information (ROMES);
Part 20: Specific conditions for mobile earth stations (MES) used in Mobile Satellite Services (MSS);
Part 22: Specific conditions for fixed and mobile aviation VHF radio equipment;
Part 27: Specific conditions for ultra-low power active medical implantable devices (ULP-AMI) and related peripheral devices (ULP-AMI-P);
Part 28: Specific conditions for wireless digital video connections;
Part 29: Specific conditions for medical devices (MEDS) operating in the frequency bands from 401 MHz to 402 MHz and 405 MHz to 406 MHz;
Part 31: Specific conditions for ultra-low power active medical implantable devices (ULP-AMI) and related peripheral devices (ULP-AMI-P) operating in the frequency band from 9 kHz to 315 kHz;
Part 33: Specific conditions for ultra-wideband (UWB) communication equipment;
Part 34: Specific conditions for external power supply units (EPS) for mobile phones;
Part 35: "Specific requirements for low-power active medical implants (LP-AMI) operating in frequency bands from 483.5 MHz to 2500 MHz";
Part 50: "Specific conditions for base stations (BS), repeaters, and auxiliary equipment in mobile communications";
Part 51: "Specific conditions for automotive vehicles and surveillance radars using the frequency bands from 24.05 GHz to 24.25 GHz, 24.05 GHz to 24.5 GHz, 76 GHz to 77 GHz, and 77 GHz to 81 GHz";
Part 52: "Specific conditions for mobile and portable equipment (UE) and auxiliary equipment in mobile communications";
Appendix E
(Reference) Information provided for testing laboratories
Manufacturers must provide the following information to be recorded in the test report when submitting the equipment application:
- The main functions of the radio equipment to be evaluated during and after exposure to electromagnetic compatibility (EMC);
- The intended features of the radio equipment must comply with the technical documentation accompanying the equipment;
- User monitoring functions, data storage necessary for the operation of the equipment, and methods of use to evaluate whether these functions and data storage are lost after the equipment is exposed to EMC;
- Modulation type (normal test modulation), transmission characteristics used for testing (random bit stream, message format, etc.), and testing equipment required to evaluate the Equipment Under Test (EUT);
- Auxiliary equipment combined with the radio equipment for testing (if applicable);
- A complete list of ports with the maximum allowed cable length, classified according to power source or telecommunications/signal/supervision. Power ports must be further classified as AC power ports or DC power ports;
- Frequency bands in which the equipment will operate;
- Any temperature limits of the equipment that prevent continuous testing of the EUT;
- Operating environment of the equipment;
- Bandwidth occupied by the corresponding transmitter signal for non-channelized equipment;
If this standard is used to demonstrate compliance with the European Directive 2014/53/EU for a specific type of radio equipment when the corresponding specific conditions part of the EN 301 489 standard cannot be determined for this type of radio equipment, the manufacturer must provide the following information to be recorded in the test report when submitting the equipment application:
- Testing conditions, Appendix A;
- The value of n used to determine the excluded bands in section A.3 of Appendix A;
Annex F
(Reference)
Application of harmonized EMC standards to multi-radio equipment and multi-standard radio equipment
F.1. Introduction
Section this considers supplementing issues related to multi-radio equipment and multi-standard radio equipment.
F.2. Multi-part radio equipment capable of independent operation
If individual radio products and their corresponding radio connections operate independently during normal use, separate testing shall be applied. When conducting separate tests, individual radio products must be evaluated according to applicable harmonized EMC standards.
F.3. Multi-radio equipment and multi-standard radio equipment incapable of independent operation
In cases where the operation of individual radio products and their corresponding radio communication lines is simultaneous during normal use, separate measurement tests shall not be used. In such cases, testing must be conducted on the complete radio equipment. Overall quality criteria will be required for these radio devices. This can be achieved by checking the individual quality criteria of the relevant radio products. The quality criteria used must be recorded in the test report.
In the case of multiple operating frequencies, exclusion bands must be determined for each operating band and these bands must be used during the testing period.
F.4. Multi-radio equipment including multiple identical radio transmitters
Typically, this situation exists where the original band amplifier is used to supply multiple radio pre-amplifiers, which may be placed at different locations to amplify the original band signal. In this scenario, individual parts may be tested separately according to the appropriate harmonized EMC standards applicable to that product.
Appendix G
(Provisions)
Harmonized System (HS) code for radio communication equipment
|
No. |
Terrestrial Mobile Radio Equipment with Integrated Antennas Used for Analog Voice Communication |
Carnidazole |
(a) |
|
1 |
Wireless telephone extension device (type with extended subscription) |
8517.11.00 |
- Central unit (also known as base station or mother unit): fixedly installed and connected to the public switched telephone network (PSTN) pair telephone lines; uses integrated antenna or external antenna; - Mobile unit (also known as child unit): handheld device using integrated antenna and desk-mounted or vehicle-mounted device using external antenna. This unit carries the telephone subscription number of the central unit and can conduct internal calls with the central unit. |
|
2 |
Single-sideband and/or double-sideband amplitude-modulated radio equipment in the 27 MHz civilian band |
8517.61.00 |
Base station (equipment with antenna socket, used in a fixed location); |
|
8517.14.00 |
Mobile equipment (equipment with antenna socket, typically used in vehicles or mobile stations) for data and voice transmission; Handheld mobile equipment (with antenna socket; or without external antenna socket) for data and voice transmission; |
||
|
8517.62.59 |
Mobile equipment (equipment with antenna socket, typically used in vehicles or mobile stations) for data transmission; Handheld mobile equipment (with antenna socket; or without external antenna socket) for data transmission. |
||
|
3 |
Low-speed data transmission equipment in the 5.8 GHz frequency band for transportation applications |
8517.62.59 |
Low-speed data transmission equipment in the 5.8 GHz band used in road transport (transmitting equipment combined with receiving equipment); - Has wireless output and antenna or integrated antenna; - Used only for data transmission; - Upstream and downstream data rate up to 31.5 kbit/s; - Operates at radio frequencies in the range from 5725 MHz to 5875 MHz. |
|
4 |
VSAT equipment operating in the C band |
8517.62.59 |
VSAT equipment (transmitting equipment combined with receiving equipment) operating in the C band of the geostationary orbit satellite information service. |
|
5 |
VSAT Equipment Operating in the Ku Band |
8517.62.59 |
VSAT equipment (transmitting equipment combined with receiving equipment) operating in the Ku band of the geostationary orbit satellite information service. |
|
6 |
Mobile ground terminal of non-geostationary satellite-based global mobile information system in the 1 GHz - 3 GHz band |
8517.62.59 |
Mobile ground terminal (device) of the non-geostationary satellite-based global mobile information system in the 1 GHz - 3 GHz band (transmitting equipment combined with receiving equipment). |
|
7 |
Radio glide slope indicator equipment in the air navigation system |
8526.91.10 |
Radio glide slope indicator equipment in the civil air navigation system used on the ground operating in the frequency band from 328.6 MHz to 335.4 MHz. |
|
8 |
Radio transmitting and receiving equipment specifically designed for positioning and remote sensing (excluding equipment used offshore for the oil and gas industry) |
8517.62.59 8517.62.69
|
Radio transmitting and receiving equipment specifically designed for positioning and remote sensing (excluding offshore equipment for the oil and gas industry) but not for telegraph/telephone. |
|
9 |
Radio navigation equipment |
8526.91.10 8526.91.90
|
Radio navigation equipment used for navigation purposes, obstacle warning in the satellite-based radio navigation service, air navigation, and satellite-based air navigation. |
|
10 |
|
8517.62.59 8517.13.00 8517.14.00
|
Mobile phone or mobile terminal device (transmitting equipment combined with receiving equipment) using fifth generation (5G) mobile information technology, with or without integration of one or more of the following functions: - Ground-based mobile information terminal; - Radio transceiver using spread spectrum technique in the 2.4 GHz band; - 5 GHz radio access; - Short-range radio transmission and reception. |
|
11 |
Fifth generation (5G) mobile information base station equipment |
8517.61.00 |
Fifth generation (5G) mobile information base station (BTS) equipment of the mobile information network, with or without integration of one or more of the following functions: - GSM mobile information base station equipment; - W-CDMA FDD mobile information base station equipment; - E-UTRA FDD mobile information base station equipment. |
|
12 |
|
8517.62.59 |
Equipment with the function of receiving and retransmitting signals of the fifth generation (5G) mobile information network, with or without integration of one or more of the following functions: - GSM mobile information repeater; - W-CDMA FDD mobile information repeater; - E-UTRA FDD mobile information repeater. |
|
13 |
Low-power wide-area network (LPWAN) radio equipment |
8517.61.00 8517.62.21 8517.62.59 8517.62.69 8517.62.99 8517.69.00 |
Base station equipment, radio access equipment, or terminal equipment with sensor, measurement, recording, and transmission functions of parameters to be measured through a radio interface. |
|
9015.10.90 9026.80.20
|
Sensors with measurement functions of environmental parameters, recording and transmitting parameters to be measured through a radio interface. |
||
|
14 |
Radar devices (except radar devices for marine vessels and short-range radio transmitting and receiving equipment) |
8526.10.10 8526.10.90
|
All types of ground-based radar devices or those installed on civil aircraft, except radar devices for marine vessels and short-range radio transmitting and receiving equipment. |
|
15 |
Microwave Number Equipment |
8517.62.59 |
Transmission devices combined with reception devices using microwave technology. |
|
16 |
Portable terrestrial wireless devices with integrated antennas for similar voice communication.
|
8517.14.00
|
Handheld wireless devices with integrated antennas using angle modulation technology for terrestrial mobile communications, primarily for similar voice communication, operating within the radio frequency band from 30 MHz to 1,000 MHz with channel spacings of 12.5 kHz and 25 kHz. |
|
17 |
Portable terrestrial wireless devices with detachable antennas for data transmission (and voice communication). |
8517.61.00 |
Base station equipment (with antenna connectors used at fixed locations); |
|
8517.14.00 |
Mobile stations (with antenna connectors typically used on a transport vehicle or as a portable base station) or handheld devices for data transmission and/or voice communication. |
||
|
18 |
Terrestrial Mobile Radio Equipment with Detachable Antennas Used for Data Transmission (and Voice) |
8517.14.00 |
Terrestrial mobile wireless devices using constant envelope angle modulation operating in the radio frequency band from 30 MHz to 1 GHz, with channel spacings of 12.5 kHz and 25 kHz, including digital handheld wireless devices or hybrid analog/digital wireless devices with integrated antennas for data transmission and/or voice communication. |
|
19 |
Portable terrestrial wireless devices with detachable antennas for similar voice communication. |
|
Devices in the angle modulation system used in terrestrial mobile operations, operating at radio frequencies between 30 MHz and 1,000 MHz, with channel spacings of 12.5 kHz and 25 kHz for similar voice communication, including: |
|
8517.61.00 |
- Base station equipment (with antenna connectors); |
||
|
8517.14.00 |
- Mobile station (with antenna plug); - Handheld devices with antenna connectors; or without antenna connectors (integrated antenna devices) but with internal RF 50 Ω connectors that allow temporary connection to the transmitter output and receiver input ports. |
||
|
20 |
Short-range wireless transmitting and receiving equipment for general purposes |
8517.62.59 8517.62.69 8517.62.59 8526.10.10 8526.10.90 8526.92.00 |
Equipment with external antenna connectors and/or integrated antennas for transmitting or receiving sound, images, or other forms of data, including devices using active Near Field Communication (NFC) technology. Radio warning devices, remote control radio devices, radio distance measuring devices, general data transmission devices, operating in the frequency range from 40 GHz to 246 GHz for the following cases: - With radio output connectors to separate antennas or integrated antennas; - Using any type of modulation; - Fixed, mobile, and handheld devices. |
|
21 |
Emergency location radio beacons (ELTs) |
8517.62.61 |
Emergency position-indicating radio beacons specifically used on aircraft (ELT devices). |
|
22 |
Radio navigation equipment |
8526.91.10 8526.91.90 |
Radio navigation equipment used for navigation purposes, obstacle warning in the satellite-based radio navigation service, air navigation, and satellite-based air navigation. |
|
23 |
Radar devices applied in road or rail traffic |
8526.10.10 8526.10.90
|
Short-range radar devices used in traffic information applications (road or rail) such as cruise control, detection, warning, and collision avoidance between vehicles and surrounding objects. |
|
24 |
Other short-range radio transmitting and receiving equipment |
8517.62.59 8526.10.10 8526.10.90 8526.92.00 |
Short-range radio transmitting and receiving equipment not listed in Item 2 of the List in Appendix I of this Circular and Item 4 of the List in Appendix II of this Circular; - Short-range radio transmitting and receiving equipment listed in Item 2 of the List in Appendix I of this Circular and Item 4 of the List in Appendix II of this Circular but not within the scope of the corresponding technical regulations. |
|
25 |
Other equipment |
8517.62.59 8517.62.69 8517.62.99 8517.69.00 8526.10.10 8526.10.90 8526.91.10 8526.91.90 8526.92.00 |
Radio transmitting and receiving equipment with bandwidths ranging from 9 kHz to 400 GHz and transmission power of 60 mW or more, not listed in Item 1 of the List in Appendix I and Item 3 of the List in Appendix II of this Circular. - Radio transmitting and receiving equipment with bandwidths ranging from 9 kHz to 400 GHz and transmission power of 60 mW or more, listed in Item 1 of the List in Appendix I and Item 3 of the List in Appendix II of this Circular but not within the scope of the corresponding technical regulations. |
Bibliography
EN 301 489-1 V2.2.3 (2019-11) ElectroMagnetic Compatibility (EMC) standard for radio equipment and services; Part 1: Common technical requirements; Harmonised Standard covering the essential requirements of Article 3.1(b) of Directive 2014/53/EU and the essential requirements of Article 6 of Directive 2014/30/EU[H4].
[a1]Review
[H2]Modulated test signals must be suitable for normal use and may include formatted data, identifying information, and error correction.
Qcvn18 (2014) does not match the original version
[H3]Consider
NOTE: Parts 7, 8, 10, 16, 18, 23, 24, 25, 26 and 32 of this multi-part deliverable have been removed from this listing as they do not cover the new Directives in force, Directive 2014/53/EU [i.1] and Directive 2014/30/EU [i.2].
[H4]V1.9.2 (2011-09) Electromagnetic compatibility and Radio spectrum Matters (ERM); ElectroMagnetic Compatibility (EMC) standard for radio equipment and services; Part 1: Common technical requirements
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