This regulation sets out requirements for assessing quality criteria and testing methods for radio equipment in civil aviation, including transmitters, receivers, and auxiliary equipment. It specifies criteria A, B, and C related to the normal operation of equipment when subjected to electromagnetic (EM) interference or power interruption.
적용 범위
Radio equipment in civil aviation such as transmitters, receivers, and auxiliary equipment related to the communication and navigation information system.
핵심 사항
- General requirements for assessing quality criteria
- Quality criterion A applies to continuous phenomena for transmitters and receivers
- Quality criterion B applies to transient phenomena for transmitters and receivers
- Quality criterion C applies to tests with power interruptions
- Assessing quality criteria for equipment that does not provide information connection or continuous work cycle
🌐 이 문서의 사회적 영향
- Minimizing electromagnetic interference caused by radio equipment in civil aviation.
- Improving the stability and operational capability of the communication and navigation information system.
- Ensuring flight safety through the control of electromagnetic compatibility (EMC) quality of equipment.
❓ 자주 묻는 질문
What do criteria A, B, and C in this regulation mean?
Criterion A evaluates the stability of equipment under continuous exposure to EM environment. Criterion B evaluates the recovery ability after transient EM environment impact. Criterion C evaluates the self-recovery ability or recovery due to external influence after power interruption.
How can it be ensured that the equipment operates normally after testing?
After testing, the equipment must not lose functionality and should be able to self-recover or recover due to external influence (according to criterion C). The sound quality level and technical parameters must return to nominal values.
What requirements are there for manufacturers in this regulation?
Manufacturers need to provide additional information such as service connector lists, manual recovery instructions, and software versions used in testing.
전문
|
MINISTRY OF INFORMATION AND COMMUNICATIONS |
SOCIALIST REPUBLIC OF VIET NAM |
|
Number: 29/2016/TT-BTTTT |
Hanoi, December 7, 2016 |
CIRCULAR
ISSUING "NATIONAL TECHNICAL REGULATION ON ELECTROMAGNETIC COMPATIBILITY FOR GROUND-BASED RADIO EQUIPMENT IN THE AERONAUTICAL MOBILE SERVICE IN THE FREQUENCY BAND 117,975-137 MHZ"
FOR AIR MOBILE SERVICE WIRELESS DEVICES
FREQUENCY BAND 117,975-137 MHZ FOR GROUND USE”
Pursuant to the Law on Standards and Technical Regulations dated June 29, 2006;
Pursuant to the Law on Telecommunications 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;
Based on Decree No. 132/2013/ND-CP dated October 16, 2013 of the Government on 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 issues this Circular to stipulate the national technical regulation on electromagnetic compatibility for ground-based radio equipment in the aeronautical mobile service in the frequency band 117,975-137 MHz.
Article 1. Attached to this Circular is the national technical regulation on electromagnetic compatibility for ground-based radio equipment in the aeronautical mobile service in the frequency band 117,975-137 MHz (QCVN 106:2016/BTTTT).
Article 2. This Circular takes effect from July 1, 2017.
Article 3. The Heads of the Office, Department of Science and Technology, Heads of agencies and units under the Ministry of Information and Communications, Directors of Provincial Departments of Information and Communications, and organizations and individuals related to this matter shall be responsible for implementing this Circular./.
|
THE MINISTER |
QCVN 106:2016/BTTTT
NATIONAL TECHNICAL REGULATION ON ELECTROMAGNETIC COMPATIBILITY FOR GROUND-BASED RADIO EQUIPMENT IN THE AERONAUTICAL MOBILE SERVICE IN THE FREQUENCY BAND 117,975-137 MHZ
National technical regulation on electromagnetic compatibility for ground-based radio equipment for aeronautical mobile service in the frequency band 117,975-137 MHz
TABLE OF CONTENTS
Chapter 1. GENERAL PROVISIONS
1.1. Scope of Application
1.2. Applicability
1.3. Referenced Documents
1.4. Terms and Definitions
1.5. Abbreviations
Chapter 2. TECHNICAL PROVISIONS
2.1. Radiation
2.1.1. General Requirements
2.1.2. Specific Conditions
2.2. Immunity
2.2.1. General Requirements
2.2.2. Specific Conditions
3. MANAGEMENT PROVISIONS
4. RESPONSIBILITIES OF ORGANIZATIONS AND INDIVIDUALS
Chapter 5. ORGANIZATION OF IMPLEMENTATION
ANNEX A (Provisions) Measurement Conditions
ANNEX B (Provisions) Evaluation Criteria
ANNEX C (Provisions) Quality Criteria
Foreword
QCVN 106:2016/BTTTT is based on the European Telecommunications Standards Institute (ETSI) standard ETSI EN 301 489-22 V1.3.1 (2003-11).
QCVN 106:2016/BTTTT was drafted by the Telecommunications Administration, reviewed by the Department of Science and Technology, and issued by the Ministry of Information and Communications pursuant to Circular No. 29/2016/TT-BTTTT dated December 7, 2016.
NATIONAL TECHNICAL REGULATION ON ELECTROMAGNETIC COMPATIBILITY FOR GROUND-BASED RADIO EQUIPMENT IN THE AERONAUTICAL MOBILE SERVICE IN THE FREQUENCY BAND 117,975 - 137 MHZ
National technical regulation on electromagnetic compatibility for ground-based aeronautical radio equipment operating in the frequency band 117,975 - 137 MHz
Chapter 1. GENERAL PROVISIONS
1.1. Scope of Application
This regulation sets forth requirements for electromagnetic compatibility (EMC), measurement conditions, evaluation criteria, and quality standards for ground-based base stations (including VDL Mode 2 and VDL Mode 4 base stations), mobile devices, handheld devices, portable devices, and associated auxiliary equipment used in the aeronautical mobile service on the ground within the VHF frequency band.
Equipment covered by this regulation has the following characteristics:
a) Operating in the frequency range from 117.975 MHz to 137 MHz with channel spacing of 8.33 kHz or 25 kHz;
b) Using double-sideband amplitude modulation (DSB AM), amplitude modulation A3E, Gaussian frequency shift keying (GFSK), or 8-level phase-shift keying differential encoding (D8PSK) modulation techniques.
Technical specifications related to antenna ports and emissions from the device housing are not within the scope of this regulation but are defined in the corresponding equipment technical standards.
1.2. Applicability
This regulation applies to organizations and individuals, both domestic and foreign, engaged in the production and business of equipment within the scope of this regulation on the territory of Vietnam.
1.3. Referenced Documents
QCVN 18:2014/BTTTT, National technical regulation on electromagnetic compatibility for radio equipment - General technical requirements.
ITU Radio Regulations 2012: Radio Regulations 2012.
ITU-T Recommendation P.53: "Psophometer for use on telephone-type circuits".
1.4. Terms and Definitions
1.4.1 Base Station (base station)
Radio equipment used in the aeronautical mobile service, employing external antennas and located at fixed positions.
1.4.2 VDL Mode 2 Ground Base Station (VDL Mode 2 ground base station)
Data transmission equipment using D8PSK modulation and carrier sense multiple access (CSMA) technology.
1.4.3 VDL Mode 4 Ground Base Station (VDL Mode 4 ground base station)
Data transmission equipment using GFSK modulation and time division multiple access self-organizing channel (STDMA) technology.
1.4.4 Mobile Station (mobile station)
Radio equipment designed, installed, and operated either permanently or temporarily on vehicles, powered by DC, connected to external antennas, equipped with push-to-talk (PTT) buttons, microphones, speakers, and/or headphones.
1.4.5 Handheld (hand held)
Portable radio equipment powered by batteries, designed to be carried and operated by hand.
1.4.6 Portable Station (portable station)
Battery-powered radio equipment used independently and carried by hand.
1.4.7 Center Frequency (Fc) (centre frequency (Fc))
The frequency at the center of the necessary bandwidth of the transmitter.
1.4.8 Integral Antenna Equipment (integral antenna equipment)
Radio communication equipment with built-in antennas that do not require external connectors, and such antennas are considered part of the equipment.
NOTE: Built-in antennas may be mounted inside or outside the equipment. For such equipment, there must be a 50 Ω RF connection point for testing purposes.
1.4.9 Necessary Bandwidth (necessary bandwidth)
For each type of emission, the bandwidth must be sufficient to ensure information transmission at the required speed and quality under specified conditions (ITU Radio Regulations 2012).
1.4.10 Occupied Bandwidth (occupied bandwidth)
The width of the frequency band where the average power emitted at frequencies below the lower limit and above the upper limit of that band equals a predetermined percentage β/2 of the total average power of the emission.
Unless otherwise specified, the value of β/2 is selected as 0.5%.
1.4.11 Simplex (simplex)
One-way communication link at a given time.
1.4.12 Product Standard (product standard)
A standard specifying performance criteria for the frequency spectrum of the equipment.
1.4.13 Operational Frequency Range Outdoor radio transceivers with subscriber interfaces.
The continuous frequency range(s) of the radio equipment under test (EUT).
1.4.14 A3E
A type of emission characterized by:
A: Main carrier modulation type (double sideband)
3: Single-channel analog signal modulating the main carrier (containing voice information)
E: Type of information transmitted (telephone (including broadcasting))
1.5. Abbreviations
|
AC |
Continuous phenomenon applicable to receivers |
Alternating Current |
|
AM |
Article |
Amplitude Modulation |
|
BER |
Bit Error Rate |
Bit Error Ratio |
|
BW |
Bandwidth |
BandWidth |
|
CSMA |
Carrier Sense Multiple Access |
Carrier Sense Multiple Access |
|
D8PSK |
8-level phase-shift keying differential encoding |
Differentially encoded 8 Phase Shift Keying |
|
DC |
Discontinuous phenomenon applicable to transmitters |
Direct Current (feeding, signalling) |
|
Double Side Band |
Double Side Band |
Double Side Band |
|
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. |
ElectroMagnetic |
|
EMC |
ElectroMagnetic Compatibility |
ElectroMagnetic Compatibility |
|
EUT |
Equipment requiring measurement and testing |
Equipment Under Test |
|
Centre Frequency |
Centre Frequency |
Gaussian Frequency Shift Keying |
|
Peak Envelope Power |
Press To Talk |
Gaussian Frequency Shift Keying |
|
Peak Envelope Power |
Press To Talk |
Self-Organized Time Division Multiple Access |
|
Very High Frequency Digital Link |
Very High Frequency Digital Link |
Very High Frequency |
|
RF |
Radio Frequency |
Radio Frequency |
|
rms |
Root Mean Square |
Root Mean Square |
|
Very High Frequency |
The emission requirements for the radio equipment ports and/or related auxiliary equipment are specified in Table 1 of QCVN 18:2014/BTTTT. |
Measurement conditions are defined in Appendix A of this standard. |
|
The specific conditions presented below supplement Section 2.1.2 of QCVN 18:2014/BTTTT. |
Table 1 - Specific Conditions for Emission Measurements |
Scope of Application of Specific Conditions |
|
Specific Conditions |
2.1.2. Test Configuration |
Operating mode for survey: |
Chapter 2. TECHNICAL PROVISIONS
2.1. Radiation
2.1.1. General Requirements
- On a transmitter, measurements are performed at the highest rated power and in standby mode;
- A single tone or a bit stream is used to modulate the transmitter as specified in Section A.5 of Appendix A of this standard.
2.1.2. Specific Conditions
The immunity requirements for the radio equipment ports and/or related auxiliary equipment are specified in Table 4 of QCVN 18:2014/BTTTT.
Measurement conditions, evaluation criteria, and quality standards are defined respectively in Appendices A, B, and C of this standard.
|
The specific conditions presented below supplement and/or amend Sections 2.2.3, 2.2.5, 2.2.6, 2.2.8, and Section 2.2.9 of QCVN 18:2014/BTTTT. |
Table 2 - Specific Conditions for Immunity Tests |
|
2.2.3. Immunity to Radio Frequency Electromagnetic Fields |
RF Immunity Test Signal Level - The test level on the frequency range from 80 MHz to 1,400 MHz is 10 V/m (unmodulated). - The test level on the frequency range from 1,400 MHz to 2,000 MHz is 3 V/m (unmodulated). |
2.2. Immunity
2.2.1. General Requirements
2.2.5. Immunity to Fast Transients, General Mode
Immunity Test Signal Level
2.2.2. Specific Conditions
- The test level for signal ports, telecommunications ports, and control ports is 1 kV, open circuit voltage;
- The test level for DC power port inputs is 2 kV, open circuit voltage;
|
The specific conditions presented below supplement and/or amend Sections 2.2.3, 2.2.5, 2.2.6, 2.2.8, and Section 2.2.9 of QCVN 18:2014/BTTTT. |
Table 2 - Specific Conditions for Immunity Tests |
|
- The test level for AC power port inputs is 2 kV, open circuit voltage; Testing method |
Test Signal Characteristics and Application: - The test signal has characteristics of 5/50 ns and 5 kHz; - For AC and DC power ports, the transient test must be applied to all wires of the reference cable connected to ground. Source impedance is 50 Ω; |
|
- When AC and DC power supplies are provided simultaneously, the DC power supply must be turned off. Testing method |
2.2.6. Immunity to Radio Frequency, General Mode - The test level is 10 V rms; - When testing DC power ports, the AC power supply must be turned off. 2.2.8. Immunity to Voltage Sags and Interruptions Test Signal Characteristics and Application 2.2.9. Immunity to Overvoltages - The test level for telecommunications ports directly connected to the telecommunications network is 1 kV line-to-ground. In this case, the total output impedance of the overvoltage generator is 2 Ω; - The test level for the main AC power port input is 2 kV line-to-ground and 1 kV line-to-line, with the overvoltage generator characteristics being 1.2/50 μs and 8/20 μs. |
|
Radio equipment and related auxiliary equipment within the scope of regulation specified in Section 1.1 must comply with technical regulations stipulated in this standard. Testing method |
Test Signal Characteristics and Application: Organizations and individuals related have the responsibility to implement conformity certification and announcement for equipment within the scope of regulation of this standard and are subject to state management agency inspection according to current regulations. - The test level for the main AC power port input is 2 kV line-to-ground and 1 kV line-to-line, with the overvoltage generator characteristics being 1.2/50 μs and 8/20 μs. The Telecommunications Administration and Provincial Departments of Information and Communications are responsible for guiding and organizing the implementation of management of equipment within the scope of regulation specified in Section 1.1 according to this standard. |
|
In cases where the provisions set out in this standard are changed, supplemented, or replaced, they shall be implemented according to the new document./. Testing method |
Signal test characteristics and application - The test level for the main AC power port input is 2 kV line-to-ground and 1 kV line-to-line, with the overvoltage generator characteristics being 1.2/50 μs and 8/20 μs. |
|
2.2.9. Immunity to overvoltage Testing method |
2.2.6. Immunity to Radio Frequency, General Mode - The test level for communication ports directly connected to the telecommunications network is 1 kV line-to-ground. In this case, the total output impedance of the overvoltage generator is 2 Ω; - The test level for the main AC power input port is 2 kV line-to-ground and 1 kV line-to-line, the characteristics of the overvoltage generator are 1,2/50 μs and 8/20 μs. Signal test characteristics and application - The test level for the main AC power port input is 2 kV line-to-ground and 1 kV line-to-line, with the overvoltage generator characteristics being 1.2/50 μs and 8/20 μs. |
3. MANAGEMENT PROVISIONS
Radio devices and related auxiliary equipment within the scope regulated under Section 1.1 must comply with the technical regulations set forth in this standard.
4. RESPONSIBILITIES OF ORGANIZATIONS AND INDIVIDUALS
Relevant organizations and individuals are responsible for implementing certification and conformity declaration for devices within the scope regulated by this standard and are subject to inspection by state management authorities according to current regulations.
Chapter 5. ORGANIZATION OF IMPLEMENTATION
5.1. The Telecommunications Administration and Provincial Departments of Information and Communications are responsible for guiding and organizing the implementation of management for devices within the scope regulated under Section 1.1 in accordance with this standard.
5.2. In the event that the provisions set out in this standard are amended, supplemented, or replaced, they shall be implemented in accordance with the new document./.
A.1. Measurement Server
Product Name, Goods According to QCVN
Measurement Conditions
The measurement conditions for radio communication equipment within the scope regulated by this standard are specified in Appendix A of QCVN 18:2014/BTTTT. Additionally, the following provisions are supplemented:
A.1. General Requirements
For emission and immunity measurements, information related to signal modulation for testing, test arrangement... is specifically detailed from Section A.2 to Section A.5 of this standard.
A.2. Test Signal Arrangement
Apply the provisions at Section A.2 of Appendix A of QCVN 18:2014/BTTTT with the following changes:
For radio communication equipment with built-in antennas, there must be a 50 Ω RF connection point for testing purposes.
A.2.1. Test Signal Arrangement at the Input of the Transmitter
Apply the provisions at Section A.2.1 of Appendix A of QCVN 18:2014/BTTTT with the following changes:
The transmitter must be modulated in normal test mode from an internal or external signal source capable of generating appropriate control signals.
A.2.2. Test Signal Arrangement at the Output of the Transmitter
Apply the provisions at Section A.2.2 of Appendix A of QCVN 18:2014/BTTTT with the following changes:
The transmitter must operate at the maximum rated RF output power level (PEP), or not less than -6 dB below the power level within the published temperature limits.
The RF output signal of the transmitter must be delivered to the measuring device via a protected cable such as coaxial cable. The measuring device includes a modulation analyzer and a sound distortion meter.
For transmitters with built-in antennas, there must be a 50 Ω RF connection point for testing purposes.
A.2.3. Test Signal Arrangement at the Input of the Receiver
Apply the provisions at Section A.2.3 of Appendix A of QCVN 18:2014/BTTTT with the following changes:
The desired RF signals fed into the receiver must be modulated in normal test mode (see Section A.5).
For receivers with built-in antennas, there must be a 50 Ω RF connection point for testing purposes.
A.2.4. Test Signal Arrangement at the Output of the Receiver
Apply the provisions at Section A.2.4 of Appendix A of QCVN 18:2014/BTTTT.
A.2.5. Test Arrangement for Transmitter and Receiver (as a System)
Apply the provisions at Section A.2.5 of Appendix A of QCVN 18:2014/BTTTT.
A.3. Exclusion Band
Apply the provisions at Section A.3 of Appendix A of QCVN 18:2014/BTTTT.
The operating frequencies of the equipment must be excluded from the immunity tests with RF radiation signals.
The test RF band exclusion is called the "Exclusion Band" and is detailed below for different cases.
A.3.1. Exclusion Band for Transmitter Emission Measurements
The exclusion band is applied when measuring the transmitter in operation mode. The exclusion band does not apply when measuring the transmitter in standby mode.
The exclusion bands for the transmitter are listed in Table A.1.
Table A.1 - Exclusion Band for Transmitter Emission Measurements
|
Type of EUT |
Width of the Exclusion Band |
Center Frequency of the Exclusion Band |
|
Channel Spacing 8.33 kHz |
2.042 MHz or 2.442 MHz |
Centre Frequency |
|
Channel Spacing 25 kHz |
2.125 MHz or 2.525 MHz |
Centre Frequency |
|
NOTE 1: The width of the exclusion band is determined by five times the receiver bandwidth plus twenty times the measurement bandwidth (i.e., 100 kHz, or 120 kHz) within the measurement range of 30 MHz to 1 GHz. NOTE 2: The exclusion band width for the transmitter is expanded by twenty times the measurement bandwidth to accommodate the transition bandwidths of filters used in measuring devices. Narrower measurement bandwidths may be used. The exclusion bands and measurement bandwidths must be recorded in the test report. |
||
A.3.2. Exclusion Band for Receiver Emission Measurements
The exclusion band is not applied for emission measurements of the receiver or auxiliary equipment.
A.3.3. Exclusion Band for Transmitter Immunity Tests
The width of the exclusion band is defined as ± 2 times the occupied bandwidth (BW) from the center frequency (Fc ± 2BW).
For equipment with channel spacing of 25 kHz, the exclusion band is ± 50 kHz from the center frequency; for equipment with channel spacing of 8.33 kHz, the exclusion band is ± 16.7 kHz from the center frequency (Fc).
A.3.4. Exclusion Band for Receiver Immunity Tests
The exclusion band is the operational frequency range, extended at each end by ± 5% of the center frequency (Fc).
Example: For a center frequency of 127.5 MHz, the exclusion band ranges from 111.625 MHz (i.e., 118 MHz minus 6.375 MHz) to 143.35 MHz (i.e., 136.975 MHz plus 6.375 MHz).
A.4. Narrow Band Response of the Receiver
The responses on the receiver occurring during immunity testing are defined in Section A.4 of Appendix A of QCVN 18:2014/BTTTT, they are considered narrow band responses and are specified in the false response suppression test of the corresponding technical standards.
A.5. Normal Test Modulation
Article 1 ||| Normal test measurement rules are detailed as follows:
- Analog telephone equipment:
+ The input signal to the receiver is set at the designated frequency, modulated with a 1 kHz sine wave audio tone at a modulation depth of 30%, with a SINAD ratio magnitude of 20 dB, measured at the receiver output using a sound network noise filter as described in ITU-T Recommendation P.53;
+ The transmitter must be modulated with a 1 kHz sine wave audio tone. The level of this audio signal is set so that the RF output signal achieves a modulation depth of at least 80%.
- VDL Mode 2 and VDL Mode 4 base station equipment:
+ The input signal to the receiver is set at the designated frequency of the receiver, modulated with a test signal indicated by the manufacturer, to describe normal operating conditions;
+ The transmitter must be modulated with a test signal indicated by the manufacturer, to describe normal operating conditions;
+ The manufacturer may provide modulation/demodulation devices for testing;
+ The test signal generator (modulated) must allow the creation of a continuous data stream or repeating message as appropriate;
+ In the case of data equipment, the test devices must allow the creation of:
▪ Displaying the value of BER with a continuous data stream; or
▪ Repeating message display or a data rate indicator in cases where the system has error correction capability.
ANNEX B
Product Name, Goods According to QCVN
Evaluation of criteria
B.1 General Requirements
Apply the provisions of Section B.1 of Appendix B of QCVN 18.2014/BTTTT, in which the manufacturer must provide additional information as follows:
- List of service or program connection ports;
- The user manual must contain detailed instructions on manual recovery mechanisms to bring the device back to normal operation;
- The software version of the EUT used in the tests.
B.2 Equipment Capable of Providing Continuous Information Connection
Apply the provisions of Section B.2 of Appendix B of QCVN 18:2014/BTTTT, with the following changes:
- For transmitter immunity tests, the transmitter must be modulated in normal test mode (see Section A.5). A continuous information connection is established at the start of testing and the quality criteria specified in Appendix C of this standard are applied.
- For receiver immunity tests, the desired RF signal at the receiver input must be normally modulated for testing (see Section A.5). A continuous information connection is established at the start of testing and the quality criteria specified in Appendix C of this standard are applied.
B.3 Equipment Unable to Provide Continuous Information Connection
For radio equipment unable to provide a continuous or periodic information connection, apply the provisions of Section B.3 of Appendix B and Section C.3 of Appendix C of QCVN 18:2014/BTTTT.
B.4 Auxiliary Equipment
Apply the provisions of Section B.4 of Appendix B of QCVN 18:2014/BTTTT.
B.5 Equipment Classification
Apply the provisions of Section B.5 of Appendix B of QCVN 18:2014/BTTTT.
APPENDIX C
Product Name, Goods According to QCVN
Quality Criteria
The EUT must meet the quality criteria outlined in Table C.1 including Notes 1, Note 2, and Note 3 related, detailed in Sections C.1, C.2, C.3, and C.4.
Quality criteria A, B, and C shown in Table C.1 are used as follows:
- Criterion A applies to immunity tests against continuous phenomena;
- Criterion B applies to immunity tests against sudden phenomena or at specific points defined in this standard;
- Criterion C applies to immunity tests against power interruptions.
Table C.1 - Quality Criteria
|
Criteria |
During Testing |
After Testing |
|
A |
Normal Operation Quality Degradation (Note 1) No Loss of Functionality |
Normal Operation No Quality Degradation (Note 2) No Loss of Functionality |
|
B |
Loss of Function(s) |
Normal Operation No Quality Degradation (Note 2) Self-Recovery of Functions |
|
C |
Loss of Function(s) |
Normal Operation No Quality Degradation (Note 2) Recovery of Functions through External Influence (Note 3) |
|
NOTE 1: Quality degradation during testing is understood as degradation to a level not lower than the minimum quality level determined by the manufacturer to ensure proper operation of the equipment. In some cases, the minimum quality level may be replaced by an allowable quality degradation level. NOTE 2: No quality degradation after testing is understood as no reduction below the minimum quality level determined by the manufacturer. In some cases, the minimum quality level may be replaced by an allowable quality degradation level. The test must not cause actual operational data or user recoverable data to change. NOTE 3: The EUT together with its testing auxiliary devices must provide necessary indications for the operator to restore normal function of the equipment after EM impact. When such indications are present, detailed actions required for recovery and symptoms of the EUT must be recorded in the test report. |
||
C.1 Quality Criterion A for Continuous Phenomena Applied to Transmitters and Receivers
Establish a connection at the input during testing, maintained throughout the test period, and evaluate recovered information signals, for example, an audio signal will be used as a criterion to ensure that essential functions of the EUT are evaluated both during and after testing.
Criterion A detailed in Table C.1 must be applied.
If during RF immunity testing, an unwanted signal causes degradation at the receiver output resulting in a SINAD ratio reduced to 14 dB or less, or causing data output errors, this phenomenon is considered an EMC issue and the tested equipment fails.
If during RF immunity testing, an unwanted signal causes degradation at the transmitter output resulting in received audio distortion exceeding 10%, or causing transmitted data errors, this phenomenon is considered an EMC issue and the tested equipment fails.
In the case where the EUT is only a transmitter, the test must be repeated with the EUT in standby mode. The transmitter must not operate unintentionally during the test.
In the case where the EUT is a transceiver, the transmitter must not operate unintentionally throughout the entire testing process.
C.2. Quality Criterion B for the phenomenon of voltage surge applicable to the transmitter and receiver.
Quality Criterion B detailed in Table C.1 shall be applied.
In the case where the EUT is only a transmitter, the test must be repeated with the EUT in standby mode. The transmitter must not operate unintentionally during the test.
In the case where the EUT is a transceiver, the transmitter must not operate unintentionally throughout the entire testing process.
C.3. Quality Criterion C for tests with power interruption.
Criterion C applies to the interruption of supply voltage corresponding to a reduction of more than 95% for 5 seconds:
- During the EMC testing process:
+ Information connection may be lost and one or more functions may be lost;
+ There must be no unintended transmission during the test.
- After the EMC testing:
+ Information connection must be restored automatically or by user control as published by the manufacturer;
+ The sound quality level must return to a level no lower than that specified by the manufacturer and/or the parameter must return to its nominal value;
+ There must be no unintended transmission.
C.4. Quality Criteria for equipment that does not provide information connection or continuous operation cycle.
Apply the provisions set forth in Section C.3 of Appendix C of QCVN 18:2014/BTTTT.
C.5. Quality Criteria for auxiliary equipment tested independently.
Apply the provisions set forth in Section C.4 of Appendix C of QCVN 18:2014/BTTTT.
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