SGS-CSTC Standards Technical Services Co., Ltd.

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1 198 Kezhu Road, Scientech Park, Guangzhou Economic & Technological Development District, Guangzhou, China Telephone: +86 (0) Fax: +86 (0) of 43 Cover Pager T E S T R E P OR T Application No.: GZEM RF Applicant: Shantou Double Eagle Toys Industry Co., Ltd. Product Name: Engineering vehicle series Product Description: Radio control toys with MHz as carrier. Model No.: E , E , E , E , E , E , E , E , E , E , E , E , E , E , E , E , E , E , E , E , E , E , E , E , E , E , E , E , E , E Please refer to section 3 of this report for details Standards: EN V1.6.1 ( ); EN V1.9.2 ( ) Date of Receipt: Date of Test: to Date of Issue: Test Result: Pass* * In the configuration tested, the EUT detailed in this report complied with the standards specified above. Please refer to section 3 of this report for further details. * The other tests (e.g. Low Voltage Directive 2006/95/EC) required in R&TTE Directive 99/5/EC were not included in the report, only part tests related to EMC were performed and reported in this report. Hence to clarify compliance with R&TTE directive 99/5/EC shall comply with the other essential required tests additionally. This report GZEM supersedes the previous report GZEM , issued on , which is hereby deemed null and void. The CE mark as shown below can be used, under the responsibility of the manufacturer, after completion of an EC Declaration of Conformity and compliance with all relevant EC Directives. Richard Li Manager The manufacturer should ensure that all products in series production are in conformity with the product sample detailed in this report. If the product in this report is used in any configuration other than that detailed in the report, the manufacturer must ensure the new system complies with all relevant standards. The report must not be used by the client to claim product certification, approval, or endorsement by NVLAP, NIST, or any agency of the federal government. All test results in this report can be traceable to National or International Standards. This document is issued by the Company subject to its General Conditions of Service printed overleaf, available on request or accessible at and, for electronic format documents, subject to Terms and Conditions for Electronic Documents at Attention is drawn to the limitation of liability, indemnification and jurisdiction issues defined therein. Any holder of this document is advised that information contained hereon reflects the Company s findings at the time of its intervention only and within the limits of Client s instructions, if any. The Company s sole responsibility is to its Client and this document does not exonerate parties to a transaction from exercising all their rights and obligations under the transaction documents. This document cannot be reproduced except in full, without prior written approval of the Company. Any unauthorized alteration, forgery or falsification of the content or appearance of this document is unlawful and offenders may be prosecuted to the fullest extent of the law. Unless otherwise stated the results shown in this test report refer only to the sample(s) tested and such sample(s) are retained for 90 days only

2 2 of 43 2 Version Revision Record Version Chapter Date Modifier Remark Original Modify report: update standard Modify Report No. Authorized for issue by: Tested By to (Lambert Tang) /Project Engineer Date Prepared By (Zoe Yang) /Clerk Checked By Date (Storm Shu)/Reviewer Date

3 3 of 43 3 Test Summary Electromagnetic Interference (EMI) Test Test Requirement Conducted Emission (150 khz to 30 MHz) EN clause 7.1 Radiated Emission, 30 MHz to 6 GHz EN clause 7.1 Harmonic Emission on AC, 100 Hz to 2 khz EN clause 7.1 Flicker Emission on AC EN clause 7.1 Test Method EN : clause 8.4 & EN 55022:2010 EN : clause 8.2 & EN 55022:2010 EN : clause 8.6 & EN :2006+ A1:2009+A2:2009 EN :clause 8.6 & EN :2008 Class / Severity Application Result Table 1 row 3 & row 4 AC mains input/output PASS Table 1 row 2 Enclosure of ancillary equipment PASS** Table 1 row 5 <75W Table 1 row 6 <1.5A PASS Class / Severity Application Result Table 2 row 3 Enclosure PASS Table 2 row 2 Enclosure PASS Electromagnetic Susceptibility(EMS) Test Test Requirement ESD (ElectroStatic Discharge) EN clause 7.2 Radiated Immunity, 80 MHz to 1 GHz 1.4 GHz to 2.7 GHz EN clause 7.2 EFT (Electrical Fast Transients EN clause 7.2 Surges EN clause 7.2 Injected Currents 150 khz to 80 MHz EN clause 7.2 Voltage Dips and Interruptions EN clause 7.2 Test Method EN : clause 9.3 & EN :2009 EN : clause 9.2 & EN :2006+ A1:2008+A2:2010 EN : clause 9.4 & EN : 2004+A1:2010 EN : clause 9.8 & EN :2006 EN : clause 9.5 & EN :2009 EN : clause 9.7 & EN :2004 Table 2 row 4 AC mains ports PASS Table 2 row 8 AC mains ports PASS Table 2 row 5 AC mains ports PASS Table 2 row 7 AC mains ports PASS Remark: Not applicable, please refer to Section of this report for details. Model No.: E , E , E , E , E , E , E , E , E , E , E , E , E , E , E , E , E , E , E , E , E , E , E , E , E , E , E , E , E , E According to the declaration of the applicant, the electrical circuit design, layout, components used and internal wiring were identical for above models, with only difference being the model names and appearance. Therefore only one model E was tested in this report.

4 4 of 43 **: The EUT passed Radiated Emission test after modification as below: Radiated Emission 1. Add two inductors L1, L2 and three capacitors C1, C2 and C3 for each motor as the following figure shown. Cut off all the pins of the inductors and capacitors as short as possible.

5 5 of 43 4 Contents 1 COVER PAGER VERSION TEST SUMMARY CONTENTS GENERAL INFORMATION Client Information... 7 General Description of E.U.T... 7 Details of E.U.T Description of Support Units... 7 Deviation from Standards... 7 Abnormalities from Standard Conditions... 7 Other Information Requested by the Customer... 7 Monitoring of EUT for the Immunity Test... 7 Test Location... 7 Test Facility EQUIPMENT USED DURING TEST EMC REQUIREMENTS SPECIFICATION IN EN General Information...12 Independent Operation Modes...13 EMI Test Results Conducted Emissions on mains terminals, 150 khz to 30 MHz Radiated Emission Harmonic Emission on AC, 100 Hz to 2 khz Flicker emissions on AC E.U.T. Operation Test Setup and Procedure Measurement Data EMS Test Results Special conditions for EMC immunity tests in EN table ESD Radiated Immunity 80 MHz to 1 GHz, 1.4 GHz to 2.7 GHz Electrical Fast Transients (EFT) Surges Injected Currents 150 khz to 80 MHz Voltage Dips and Interruptions...36

6 6 of 43 8 PHOTOGRAPHS Radiated Emission below 1GHz Test Setup...38 Radiated Immunity Test Setup...39 Conducted Emissions on mains terminals, 150 KHz to 30 MHz...40 EFT, Surges, Voltage Dip and Interruptions Test Setup...40 Flicker Test Setup...41 ESD Test Setup...42 Injected Currents Test Setup...43 EUT Constructional Details...43

7 7 of 43 5 General Information 5.1 Client Information Applicant: Address of Applicant: Shantou Double Eagle Toys Industry Co., Ltd. XINGDA INDUSTRIAL PARK, CHENGHAI, SHANTOU CITY, GUANGDONG PROVINCE, CHINA General Description of E.U.T. Product Name: Engineering vehicle series Model No.: E Details of E.U.T. Modulation and Antenna Type: The Tx was a narrow-band ASK modulation by internal signal, no voice application and with a dedicated antenna. The antenna for the Rx is an integral antenna. Power Supply: DC 3V size AA batteries 1.5V x 2 for Tx DC 4.8V rechargeable batteries 1.2V x 4 for Rx Adapter details: Model: YTDE Input: AC V 50Hz Output: DC 4.8V 0.25A Normal Test Voltage: The same as power supply. Power cord: 1.5m unscreened DC cord Description of Support Units The EUT was tested as an independent unit. 5.5 Deviation from Standards None. 5.6 Abnormalities from Standard Conditions The EUT passed the Radiated Emission test after modifications. 5.7 Other Information Requested by the Customer None Monitoring of EUT for the Immunity Test Visual: Monitored the sound and motor action of the EUT. Other: Monitored the Spectrum Analyser for any unintentional responses. Test Location All tests were performed at:, Guangzhou EMC Laboratory, 198 Kezhu Road, Scientech Park, Guangzhou Economic & Technology Development District, Guangzhou, China Tel: Fax: No tests were sub-contracted.

8 8 of Test Facility The test facility is recognized, certified, or accredited by the following organizations: NVLAP (Lab Code: ), Guangzhou EMC Laboratory is recognized under the National Voluntary Laboratory Accreditation Program (NVLAP/NIST). NVLAP Code: ACMA, EMC Laboratory can also perform testing for the Australian C-Tick mark as a result of our NVLAP accreditation. SGS UK(Certificate No.: 32), SGS-TUV SAARLAND and SGS-FIMKO Have approved, EMC Laboratory as a supplier of EMC TESTING SERVICES and SAFETY TESTING SERVICES. CNAS (Lab Code: L0167), EMC Laboratory has been assessed and in compliance with CNAS-CL01:2006 accreditation criteria for testing laboratories (identical to ISO/IEC 17025:2005 General Requirements) for the Competence of Testing Laboratories. FCC (Registration No.: ), EMC Laboratory has been registered and fully described in a report filed with the (FCC) Federal Communications Commission. The acceptance letter from the FCC is maintained in our files. Registration , May 31, Industry Canada (Registration No.: 4620B-1) The 3m/10m Alternate Semi-anechoic chamber of, has been registered by Certification and Engineering of Industry Canada for radio equipment testing with Registration No. 4620B-1. VCCI (Registration No.: R-2460, C-2584, G-449 and T-1179) The 10m Semi-anechoic chamber and Shielded Room of SGS-CSTC Standards Technical Services Co., Ltd. have been registered in accordance with the Regulations for Voluntary Control Measures with Registration No.: R-2460, C-2584 G-449 and T-1179 respectively. CBTL (Lab Code: TL129), E&E Laboratory has been assessed and fully comply with the requirements of ISO/IEC 17025:2005, the Basic Rules, IECEE 01: and Rules of procedure IECEE 02: , and the relevant IECEE CB-Scheme Operational documents.

9 9 of 43 6 Equipment Used during Test Conducted Emission Test Equipment Manufacturer Model No. EMC0306 Shielding Room Zhong Yu 8 x 3 x 3.8 m EMC0118 Two-line v-netwok R&S ENV EMC0102 LISN SCHAFFNER CHASE MN2050D/ S.N EMC2046 Artificial Mains Network AFJ Instruments (LISN) 3 LT32C Serial No. Cal.Due date Calibration Interval No. (YYYY-MM-DD) EMC0506 EMI Test Receiver Rohde & Schwarz ESCS EMC0107 Coaxial Cable SGS 2m Y EMC0106 Voltage Probe SGS Fischer Custom Communications Inc. Fischer Custom FCC-TLISN-T FCC-TLISN-T FCC-TLISN-T L-801:AF Y L-801:M2/M Y HP 8491A SGS-EMC Y Test Equipment Manufacturer Model No. Serial No. EMC2071 ESD Simulator TESEQ AG NSG EMC0804 ESD Ground Plane SGS 3m x 3m EMC0078 Temperature, & Humidity Shanghai Meteorological Instrument factory Co., Ltd. ZJ1-2B EMC Line ISN EMC Line ISN EMC Line ISN EMC2047 CDN EMC2048 CDN EMC2062 6dB Attenuator EMC167 Conical metal housing Communications Inc. Fischer Custom Communications Inc. ElektronikFeinmechanik ElektronikFeinmechanik Electrostatic Discharge No. Cal.Due date Calibration Interval (YYYY-MM-DD) Harmonics / Flicker test Cal.Due date Calibration Interval (YYYY-MM-DD) No. Test Equipment Manufacturer Model No. Serial No. EMC0608 AC Power Source California 50001iX EMC0607 Power Analyzer California PACS

10 10 of 43 RE in Chamber No. EMC0525 EMC0522 EMC0056 EMC0528 Cal.Due date (YYYY-MM-DD) Calibration Interval Y ESIB Rohde & Schwarz ESCI SGS 20 m Test Equipment Manufacturer Compact SemiAnechoic Chamber EMI Test Receiver ChangZhou ZhongYu Rohde & Schwarz EMI Test Receiver RI High frequency Cable Model No. Serial No. EMC2025 Trilog Broadband Antenna MHz SCHWARZBECK MESSELEKTRONIK VULB Y EMC0524 EMC0519 Bi-log Type Antenna Bilog Type Antenna Schaffner -Chase Schaffner -Chase CBL6112B CBL Y 2Y EMC2026 Horn Antenna 1-18GHz 9120D Y EMC0518 EMC0521 EMC2065 EMC2063 Horn Antenna GHz Pre-Amplifier Amplifier 1-26GHz Pre Amplifier SCHWARZBECK MESSBBHA 9120D ELEKTRONIK Rohde & Schwarz HF Y Agilent 8449B 3008A HP 8447F Compliance Direction System PAP-1G26-48 Inc. 310N Amplifier Active Loop Antenna Broad-Band Horn Antenna (14) (40)GHz Sonama 310N EMCO SCHWARZBECK MESSELEKTRONI Y BBHA Y EMC GHz filter Micro-Tronics BRM EMC m SemiAnechoic Chamber ETS Y EMC0075 EMC0523 EMC2041 EFT, Surge, Voltage dips and Interruption No. EMC2059 EMC2060 Test Equipment Modular lmpulse Surge Generator High speed signal Surge CDN Cal.Due date Calibration (YYYY-MM-DD) Interval Manufacturer Model No. Serial No. EMC PARTNER MIG0603EN 259 EMC PARTNER CDN-UTP EMC2072 EMC Immunity Test System TESEQ AG NSG 3060 CDN3061 INA 6502 CIB CND3425 EMC2012 Oscilloscope Tektronix TDS 744A CDN-UTP

11 11 of 43 Radiated Immunity Cal.Due date Calibration Interval (YYYY-MM-DD) No: Test Equipment Manufacturer Model No. Serial No. EMC0525 Compact 3m SemiAnechoic Chamber Changzhou zhongyu Y EMC0516 Signal Generator Rohde & Schwarz SMR EMC0915 Amplifier 20M-1GHz EMPOWER SEL0065 Amplifier Research BBS2E4ALP 60S1G RF Amplifier GHz EMC0904 EMC0071 Power Meter URV5-Z2 Insert. Unit Rohde & Schwarz R&S NRVS URV5-Z / EMC0917 Dual Directional Coupler EMCA EMC0907 Electric Field Probe Wandel & Goltermann EMC-20 M EMC2055 Oscilloscope Tektronix TDS3052C C EMC0909 Monitor System Mitsubish Corp. M-0552AB EMC0524 Bi-log Type Antenna Schaffner -Chase Y SEL0075 High Gain Horn Antenna (0.8-5GHz) Amplifier Research CBL6112B AT4002A Conducted Immunity Cal.Due date Calibration (YYYY-MM-DD) Interval No. Test Equipment Manufacturer Model No. Serial No. EMC1101 Signal Generator Rohde & Schwarz SMY / EMC1102 Amplifier MHz Ophirrf GRF NRVS URV5-Z / Werlatone Inc. C EMC1103 Power Meter Rohde & Schwarz EMC0071 URV5-Z2 Insert. Unit R&S EMC1105Dual Directional coupler EMC2012 Oscilloscope Tektronix TDS 744A EMC2048 CDN ElektronikFeinmechanik L-801:M2/M Y EMC1107 CDN M2 Schaffner Chase CDN-M Y EMC1116 Current Probe Schaffner Chase CIP Y EMC1117 Current Probe Schaffner Chase CSP Y General used equipment Cal.Due date Calibration Interval (YYYY-MM-DD) No. Test Equipment Manufacturer Model No. Serial No. EMC0006 DMM Fluke EMC0007 DMM Fluke

12 12 of 43 7 EMC Requirements Specification in EN General Information Type of SRD Equipment in EN , subclause 4.1 table 1 Equipment Type Technical nature of the primary function I Transfer of messages (digital or analogue signals) II Transfer of audio (speech or music) III Others Classification of SRD Equipment in EN , subclause 6.1 table 3 Class of SRD Equipment Risk assessment of Rx performance Highly reliable SRD communication media; e.g. serving human life inherent system (may result in a physical risk to a person). Medium reliable SRD communication media; e.g. causing inconvenience to persons, which cannot simply overcome by other means. Standard reliable SRD communication media; e.g. causing inconvenience to persons, which can simply overcome by other means. Remark: The EUT belong to Type I, class 3. Special conditions for EMC emission measurements EN table 5 Reference to clauses in Special product-related conditions, additional to or modifying the EN and 8.4.2: Test method; DC power input/output ports, and AC mains input/output ports test conditions in EN , clause 8 Attention: The exclusion band for transmitters shall be considered for transmitters operating at frequencies below 30 MHz. (see clause 4.3.2)

13 13 of Independent Operation Modes The basic operation modes are: Modes Describe 1 Tx in operating mode 2 Tx in standby mode 3 Rx in motor running mode with sound 4 Rx in standby mode 5 Rx in charging mode by adapter For further information refer to User Manual

14 14 of EMI Test Results Conducted Emissions on mains terminals, 150 khz to 30 MHz Test Requirement: EN Test Method: EN & EN Frequency Range: 150 khz to 30 MHz Detector: Peak for pre-scan Quasi-Peak and Average for final test 9 khz resolution bandwidth between 150 khz & 30 MHz Limit: Limits for conducted disturbance at the mains ports of class B Frequency range MHz Limits db (µv) Quasi-peak Average 0.15 to to to to to NOTE 1 The limit decreases linearly with the logarithm of the frequency in the range 0,15 MHz to 0,50 MHz. NOTE 2: The lower limit is applicable at the transition frequency E.U.T. Operation Operating Environment: Temperature: 25.0 C Humidity: 45 % RH Atmospheric Pressure: 1008 mbar EUT Operation: Status: Test the EUT in mode 5. (please refer to Section 7.2 this report for details)

15 15 of Test Setup and Procedure 1. The mains terminal disturbance voltage test was conducted in a shielded room. 2. The EUT was connected to AC power source through a LISN 1 (Line Impedance Stabilization Network) which provides a 50 /50µH + 5 linear impedance. The power cables of all other units of the EUT were connected to a second LISN 2, which was bonded to the ground reference plane in the same way as the LISN 1 for the unit being measured. A multiple socket outlet strip was used to connect multiple power cables to a single LISN provided the rating of the LISN was not exceeded. 3. The tabletop EUT was placed upon a non-metallic table 0.8m above the ground reference plane. And for floor-standing arrangement, the EUT was placed on the horizontal ground reference plane, but separated from metallic contact with the ground reference plane by 0.1m of insulation. 4. The test was performed with a vertical ground reference plane. The rear of the EUT shall be 0,4 m from the vertical ground reference plane. The vertical ground reference plane was bonded to the horizontal ground reference plane. The LISN 1 was placed 0,8 m from the boundary of the unit under test and bonded to a ground reference plane for LISNs mounted on top of the ground reference plane. This distance was between the closest points of the LISN 1 and the EUT. All other units of the EUT and associated equipment was at least 0,8 m from the LISN 2.

16 16 of Measurement Data Uncertainty: ±±1.5dB Live Line: Peak Scan: Level (dbµv) Quasi-peak and Average measurement:

17 17 of 43 Neutral Line Peak Scan: Level (dbµv) Quasi-peak and Average measurement:

18 18 of Radiated Emission Test Requirement: EN Test Method: EN & EN Frequency Range: 30 MHz to 6 GHz Measurement Distance: 3m Detector: Peak for pre-scan 120 khz resolution bandwidth for 30 MHz to 1 GHz 1 MHz resolution bandwidth for 1 GHz to 6 GHz Limit Frequency range MHz Quasi-peak db (µv/m) Peak db (µv/m) Average db (µv/m) 30 to to to to At the transition frequency, the more stringent limit shall apply E.U.T. Operation Operating Environment: Temperature: 26.0 C Humidity: 59 % RH Atmospheric Pressure: 1009 mbar EUT Operation: Status: Pre-test in mode 3 & 5 to find the worse case, compliance test in mode 3 as the worse case was found. (please refer to Section 7.2 this report for details) Test Setup and Procedure

19 19 of 43 Figure 1.30 MHz to 1 GHz Figure 2. Above 1 GHz i) From 3 0 MHz to 1 GHz: 1. The radiated emissions test was conducted in a semi-anechoic chamber. 2. The tabletop EUT was placed upon a non-metallic table 0.8m above the ground reference plane. And for floor-standing arrangement, the EUT was placed on the horizontal ground reference plane, but separated from metallic contact with the ground reference plane by 0.1m of insulation. 3. Before final measurements of radiated emissions, a pre-scan was performed in the spectrum mode with the peak detector to find out the maximum emissions spectrum plots of the EUT. 4. The frequencies of maximum emission were determined in the final radiated emissions measurement. At each frequency, the EUT was rotated 360, and the antenna was raised and lowered from 1 to 4 meters in order to determine the maximum disturbance. Measurements were performed for both horizontal and vertical antenna polarization. ii) Above 1 GHz: 1. The radiated emissions test was conducted in a fully-anechoic chamber. 2. The tabletop EUT was placed upon a non-metallic table 0.8m above the ground reference plane. And for floor-standing arrangement, the EUT was placed on the horizontal ground reference plane, but separated from metallic contact with the ground reference plane by 0.1m of insulation. 3. Before final measurements of radiated emissions, a pre-scan was performed in the spectrum mode with the peak detector to find out the maximum emission spectrum plots of the EUT. 4. The frequencies of maximum emission were determined in the final radiated emissions measurement. At each frequency, the EUT was rotated 360, and the antenna was raised and lowered from 1 to 4 meters in order to determine the maximum disturbance. Measurements were performed for both horizontal and vertical antenna polarization.

20 20 of Measurement Record Uncertainty: ±±6dB Vertical: Peak scan Level (dbµv/m) Quasi-peak measurement

21 21 of 43 Horizontal: Peak scan Level (dbµv/m) Quasi-peak measurement Level = Read Level + Antenna Factor + Cable Loss Preamp Factor. For Radiated Emission above 1GHz, there was not any unwanted emission detected.

22 22 of Harmonic Emission on AC, 100 Hz to 2 khz Test Requirement: EN Test Method: : See Remark Below Frequency Range: 100 Hz to 2 khz There is no need for Harmonics test to be performed on this product (rated power is less than 75 W) in accordance with EN For further details, please refer to Clause 7, Note 1 of EN which states: For the following categories of equipment limits are not specified in this edition of the standard. Note 1: Equipment with a rated power of 75 W or less, other than lighting equipment.

23 23 of Flicker emissions on AC Test Requirement: EN Test Method: EN Measurement Time: 10 mins Detector: As per EN Class / Limit: Clause 5 of EN E.U.T. Operation Test the EUT in mode 5. (please refer to Section 7.2 this report for details) Test Setup and Procedure 1. The test supply voltage (open-circuit voltage) was the rated voltage of the EUT. The test voltage was maintained within ±2 % of the nominal value. The frequency was 50 Hz ±0.5 %. 2. The voltage fluctuations and flicker were measured at the supply terminals of the EUT. 3. The observation period, Tp, for the assessment of flicker values by flicker measurement, flicker simulation, or analytical method was: for Pst, Tp = 10 min; for Plt, Tp = 2 h. The observation period included that part of the whole operation cycle in which the EUT produces the most unfavorable sequence of voltage changes.

24 24 of Measurement Data Flicker Test Summary per EN (Run time) Test Result: Pass Status: Test Completed Pst and limit line European Limits Pst :25:30 Parameter values recorded during the test: Vrms at the end of test (Volt): Highest dt (%): 0.28 Test limit (%): Time(mS) > dt: 0.00 Test limit (ms): Highest dc (%): 0.00 Highest dmax (%): 0.20 Highest Pst (10 min. period): Pass Pass Test limit (%): 3.30 Pass Test limit (%): 4.00 Pass Test limit: Pass

25 25 of EMS Test Results Special conditions for EMC immunity tests in EN table 6 Reference to clauses in Special product-related conditions, additional to or modifying EN the test conditions in EN , clause : Test method; Radio Attention: The width of the steps for the test frequency increments frequency electromagnetic is class-dependent: -for SRDs of class 1 or class 2, the stepped field frequency increments shall be 1 % of the momentary used test frequency; -for SRDs of class 3, the stepped frequency increments shall be 10 % of the momentary used test frequency : Test method; Radio Attention: The width of the steps for the test frequency increments frequency, common mode is class-dependent: -for SRDs of class 1 or class 2, the stepped frequency increments shall be 1 % of the momentary used test frequency in the frequency range 5 MHz to 80 MHz; -for SRDs of class 3, the stepped frequency increments shall be10 % of the momentary used test frequency in the frequency range 5 MHz to 80 MHz : Performance criteria; Voltage dips and interruptions Attention: The performance criteria are equipment class dependent: For a voltage dip corresponding to a reduction of the supply voltage of 30 % for 10 ms the performance criteria CT or CR specified in clauses 6.4 or 6.6 shall apply as appropriate. For a voltage dip corresponding to a reduction of the supply voltage of 60 % for 100 ms the following class-dependent performance criteria shall apply: -for transmitters, belonging to class 1 equipment, the performance criteria CT (see clause 6.4); -for transmitters, belonging to class 2 or 3 equipment, the performance criteria TT (see clause 6.5); -for receivers, belonging to class 1 equipment, the performance criteria CR (see clause 6.6); -for receivers, belonging to class 2 or 3 equipment, the performance criteria TR (see clause 6.7). For a voltage interruption corresponding to a reduction of the supply voltage of > 95 % for ms the performance criteria TT or TR specified in clauses 6.5 or 6.7 shall apply as appropriate. Performance Criteria of EN , subclause 6.3 table 4. Class 3 SRD Equipment Criteria During Test After Test Operate as intended, for equipment type II the A&B May be loss of function (one or more) No unintentional responses communication link may be lost, but shall be recoverable by user No degradation of performance Lost functions shall be self-recoverable Remark: The EUT belonged to Type I, class 3.

26 26 of ESD Test Requirement: EN Test Method: EN & EN Criterion Required: B Discharge Impedance: 330 Ω / 150 pf Discharge Voltage: Air Discharge: 2, 4, 8 kv Contact Discharge: 4 kv HCP&VCP: 4 kv Polarity: Positive & Negative Number of Discharge: Minimum 10 times at each test point Discharge Mode: Single Discharge Discharge Period: 1 second minimum E.U.T. Operation Operating Environment: Temperature: 25.0 C EUT Operation: Test the EUT in all modes. (please refer to Section 7.2 this report for details) Humidity: 54 % RH Atmospheric Pressure: 1007 mbar Test Setup and Procedure

27 27 of Contact discharge was applied only to conductive surfaces of the EUT. Air discharge was applied only to non-conducted surfaces of the EUT. 2. The EUT was put on a 0.8m high wooden table for table-top equipment or 0.1m high for floor standing equipment standing on the ground reference plane (GRP). 3. A horizontal coupling plane(hcp) 1.6m by 0.8m in size was placed on the table, and the EUT with its cables were isolated from the HCP by an insulating support thick than 0.5mm. The VCP 0.5m by 0.5m in size while HCP were constructed from the same material type and thickness as that of the GRP, and connected to the GRP via a 470k resistor at each end. The distance between EUT and any of the other metallic surface except the GRP, HCP and VCP was greater than 1m. 4. During the contact discharges, the tip of the discharge electrode touched the EUT before the discharge switch is operated. During the air discharges, the round discharge tip of the discharge electrode was approached as fast as possible to touch the EUT. 5. After each discharge, the ESD generator was removed from the EUT, the generator was then retriggered for a new single discharge. For ungrounded product, a discharge cable with two resistances were used after each discharge to remove remnant electrostatic voltage.10 times of each polarity single discharge were applied to HCP and VCP Test Results Direct Application Test Results Observations: Test Point: 1. All insulated enclosure & seams. 2. All accessible metal parts of the enclosure. Direct Application Test Results Discharge Level (kv) Polarity (+/-) Test Point Contact Discharge Air Discharge 2, 4, 8 +/- 1 A 4 +/- 2 A Indirect Application Test Results Observations: Test Point: 1. All sides. Indirect Application Test Results Discharge Level (kv) Polarity (+/-) Test Point Horizontal Coupling Vertical Coupling 4 +/- 1 A A Remark: A: No degradation in the performance of the EUT was observed. No unintentional transmissions were observed. : Not applicable (floor mounted EUT or not requested by Standard)

28 28 of Radiated Immunity 80 MHz to 1 GHz, 1.4 GHz to 2.7 GHz Test Requirement: EN Test Method: EN & EN Criterion Required: A Frequency Range: 80 MHz to 1 GHz, 1.4GHz to 2.7GHz Test level: 3 V/m on enclosure Modulation: 80 %, 1 khz Amplitude Modulation E.U.T. Operation Operating Environment: Temperature: 24.0 C EUT Operation: Test the EUT in all modes. (please refer to Section 7.2 this report for details) Humidity: 49 % RH Atmospheric Pressure: 1018 mbar Test Setup and Procedure

29 29 of For table-top equipment, the EUT was placed in the chamber on a non-conductive table 0.8m high. For arrangement of floor-standing equipment, the EUT was mounted on a non-conductive support 0.1m above the supporting plane. For human body-mounted equipment, the EUT may be tested in the same manner as table top items. 2. If possible, a minimum of 1 m of cable is exposed to the electromagnetic field. Excess length of cables interconnecting units of the EUT shall be bundled low-inductively in the approximate center of the cable to form a bundle 30 cm to 40 cm in length. 3. The EUT was initially placed with one face coincident with the calibration plane. The EUT face being illuminated was contained within the UFA (Uniform Field Area). 4. The frequency ranges to be considered were swept with the signal modulated and pausing to adjust the RF signal level or to switch oscillators and antennas as necessary. Where the frequency range was swept incrementally, the step size was not exceed 1 % of the preceding frequency value. 5. The dwell time of the amplitude modulated carrier at each frequency was not be less than the time necessary for the EUT to be exercised and to respond, and was not less than 0.5 s. 6. The test normally was performed with the generating antenna facing each side of the EUT. 7. The polarization of the field generated by each antenna necessitates testing each selected side twice, once with the antenna positioned vertically and again with the antenna positioned horizontally. 8. The EUT was performed in a configuration to actual installation conditions, a video camera and/or an audio monitor were used to monitor the performance of the EUT Test Results: Frequency Level Modulation Antenna Polarization V H V H 80MHz -1GHz, 1.4G 2.7GHz 1 khz, 3 V/m 80 % Amp. Mod, 10 %increment V H V H V H V H EUT Face Front Rear Left Right Top Bottom Result / Observations A A A A A A A A Remarks: Front: The front of the EUT faces to transmitting antenna (refer to Radiated Immunity test setup photo) A: No degradation in the performance of the E.U.T. was observed. No unintentional transmissions were observed. : not applicable

30 30 of Electrical Fast Transients (EFT) Test Requirement: EN Test Method: EN & EN Criterion Required: B Test Level: 0.5, 1.0 kv on AC Polarity: Positive & Negative Repetition Frequency: 5 khz Burst Duration: 300 ms Test Duration: 2 minute per level & polarity E.U.T. Operation Operating Environment: Temperature: 24.0 C EUT Operation: Test the EUT in mode 5. (please refer to Section 7.2 this report for details) Humidity: 63 % RH Atmospheric Pressure: 1018 mbar Test Setup and Procedure

31 31 of The EUT was placed on a ground reference plane(grp) insulated by an insulating support 0,1 m thick and the GRP was placed on a 0.8m high wooden table for table-top equipment. For floor standing equipment, the EUT was placed on a 0.1m high wooden support above the GRP. 2. The GRP shall project beyond the EUT and the clamp by at least 0.1m on all sides. The distance between the EUT and any other of the metallic surface except the GRP was greater than 0.5m. All cables to the EUT was placed on the insulation support 0.1m above GRP. Cables not subject to EFT was routed as far as possible from cable under test to minimize the coupling between the cables. 3. The length of signal and power cable between the EUT and EFT generator was 0.5m. If the cable is a non-detachable supply cable more than 0.5m, the excess length of this cable shall be folded to avoid a flat coil and situated at a distance of 0.1m above the GRP. 4. The EUT was conducted the below specified test voltages for line and neutral or line, neutral and earth simultaneously (for signal line with capacitive coupling clamp), 120 seconds duration. If the equipment contains identical ports, only one was tested; multiconductor cables, such as a 50-pair telecommunication cable, was tested as a single cable. Cables did not be split or divided into groups of conductors for this test; interface ports, which were intended by the manufacturer to be connected to data cables not longer than 3 m, did not be tested Test Results On AC Supply Lead under Test Level (±± kv) Coupling Direct/Clamp Observations (Performance Criterion) Live + Neutral ± 0.5, 1.0 Direct (A) Remark: A: No degradation in the performance of the EUT was observed. No unintentional transmissions were observed.

32 32 of Surges Test Requirement: EN Test Method: EN & EN Criterion Required: B Test Level: Polarity: ±1kV Live to Neutral Positive & Negative Generator source impedance: 2 Trigger Mode: Internal No. of surges: 5 positive, 5 negative at 0, 90, 180, E.U.T. Operation Operating Environment: Temperature: 20.0 C EUT Operation: Test the EUT in mode 5. (please refer to Section 7.2 this report for details) Humidity: 42 % RH Atmospheric Pressure: 1024 mbar Test Setup and Procedure

33 33 of The EUT was placed on a ground reference plane(grp) insulated by an insulating support 0,1 m thick and the GRP was placed on a 0.8m high wooden table for table-top equipment. For floor standing equipment, the EUT was placed on a 0.1m high wooden support above the GRP. 2. The 1,2/50 µs surge was to be applied to the EUT power supply terminals via the capacitive coupling network. Decoupling networks were required in order to avoid possible adverse effects on equipment not under test that may be powered by the same lines and to provide sufficient decoupling impedance to the surge wave so that the specified wave may be applied on the lines under test. 3. The power cord between the EUT and the coupling/decoupling network was not exceed 2 m in length. The interconnection line between the EUT and the coupling/ decoupling network shall not exceed 2 m in length. 4. The EUT was conducted 0.5 kv and 1 kv test voltage for line to line and line to neutral and conducted 0.5 kv, 1 kv and 2 kv test voltage for line to earth and neutral to earth, five positive pulses and five negative pulses each at 0, 90, 180 and 270 for a.c. power ports and five positive pulses and five negative surge pulses for d.c. power ports. The test levels were applied on the EUT with a 2 generator source impedance for power supply terminals and 40 output impedance for interconnection lines. The tests were done at repetition rate one per minute Test Results: Pulse No LineLine L-N L-N L-N L-N L-N L-N L-N L-N Level (kv) Surge Interval 60s 60s 60s 60s 60s 60s 60s 60s Phase (deg) Observation (Performance Criterion) No Loss of Function (A) (A) (A) (A) (A) (A) (A) (A) Remarks: A: No degradation in the performance of the EUT was observed. No unintentional transmissions were observed.

34 34 of Injected Currents 150 khz to 80 MHz Test Requirement: EN Test Method: EN & EN Criterion Required: A Frequency Range: 150 khz to 80 MHz Test level: 3V rms on AC Ports (unmodulated emf into 150 Ω ) Modulation: 80%, 1kHz Amplitude Modulation E.U.T. Operation Operating Environment: Temperature: 24.0 C EUT Operation: Test the EUT in mode 5. (please refer to Section 7.2 this report for details) Humidity: 63 % RH Atmospheric Pressure: 1018 mbar Test Setup and Procedure For AC port

35 35 of The EUT was placed on an insulating support of 0.1m height above a ground reference Plane, arranged and connected to satisfy its functional requirement. All cables exiting the EUT was supported at a height of at least 30 mm above the ground reference plane. 2. The coupling and decoupling devices were required, they were located between 0,1 m and 0,3 m from the EUT. This distance was to be measured horizontally from the projection of the EUT on to the ground reference plane to the coupling and decoupling device. 3. Each AE, used with clamp injection, shall be placed on an insulating support 0,1 m above the ground reference plane. A decoupling network shall be installed on each cable between the EUT and AE except the cable under test. All cables connected to each AE, other than those being connected to the EUT, shall be provided with decoupling networks. The decoupling networks connected to each AE (except those on cables between the EUT and AE) shall be applied no further than 0,3 m from the AE. The cable(s) between the AE and the decoupling network (s) or in between the AE and the injection clamp shall not be bundled nor wrapped and shall be kept between 30 mm and 50 mm above the ground reference plane 4. The frequency range was swept from 150 khz to 80 MHz, using the signal levels established during the setting process, and with the disturbance signal 80 % amplitude modulated with a 1 khz sine wave, pausing to adjust the RF signal level or to change coupling devices as necessary. Where the frequency was swept incrementally, the step size do not exceed 1 % of the preceding frequency value. The dwell time of the amplitude modulated carrier at each frequency was not less than the time necessary for the EUT to be exercised and to respond, and was not less than 0.5 s Test Results: Frequency Line Test Level Modulation Step Size Dwell Time Observation (Performance Criterion) 150 khz to 2 Wires AC 80 %, 1 khz 3 Vrms 10% 1s No Loss of Function (A) 80 MHz Supply Cable Amp. Mod. Remarks: A: No degradation in the performance of the EUT was observed. No unintentional transmissions were observed.

36 36 of Voltage Dips and Interruptions Test Requirement: EN Test Method: EN & EN Criterion Required: A for 0 % UT* for 0.5 per and 0% UT* for 1per and 70 % UT* for 25per B for 0 % UT* for 250per Test voltage: Refer to UT Test Level: 0 % UT* for 0.5 per 0% UT* for 1per 0 % UT* for 250per 70 % UT* for 25per No. of Dips / Interruptions: 3 per Level E.U.T. Operation Operating Environment: Temperature: 24.0 C EUT Operation: Test the EUT in mode 5. (please refer to Section 7.2 this report for details) Humidity: 63 % RH Atmospheric Pressure: 1018 mbar Test Setup and Procedure

37 37 of The EUT was placed on a ground reference plane(grp) insulated by an insulating support 0,1 m thick and the GRP was placed on a 0.8m high wooden table for table-top equipment. For floor standing equipment, the EUT was placed on a 0.1m high wooden support above the GRP. 2. The test was performed with the EUT connected to the test generator with the shortest power supply cable as specified by the EUT manufacturer. 3. The EUT was tested for each selected combination of test level and duration with a sequence of three dips /interruptions with intervals of 10 s minimum. Each representative mode of operation was tested. 4. For EUT with more than one power cord, each power cord was tested individually Test Results UT= 230V AC Test Level % UT Phase Duration of drop out in Periods No of drop out s (A) s (A) s (A) s (A) Time between Observations drop out (Performance Criterion) Remark: UT= the nominal supply voltage A: No degradation in the performance of the EUT was observed. No unintentional transmissions were observed.

38 38 of 43 8 Photographs 8.1 Radiated Emission below 1GHz Test Setup

39 39 of Radiated Immunity Test Setup

40 40 of Conducted Emissions on mains terminals, 150 KHz to 30 MHz 8.4 EFT, Surges, Voltage Dip and Interruptions Test Setup

41 41 of Flicker Test Setup

42 42 of ESD Test Setup

43 43 of Injected Currents Test Setup 8.8 EUT Constructional Details Please refer to report GZEM for more details. --End of Report--

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