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15072259 001 Seite 2 von 25 Page 2 of 25 TEST SUMMARY 4.1.1 HARMONICS ON AC MAINS 4.1.2 VOLTAGE FLUCTUATIONS ON AC MAINS 4.1.3 MAINS TERMINAL CONTINUOUS DISTURBANCE VOLTAGE 4.1.4 DISCONTINUOUS INTERFERENCE ON AC MAINS N/A 4.2.1 DISTURBANCE POWER 4.2.2 RADIATED EMISSION 5.1.1 ELECTROSTATIC DISCHARGE 5.2.1 FAST TRANSIENTS ON AC POWER LINES 5.2.2 INJECTED CURRENT INTO AC POWER PORT 5.2.3 SURGES TO AC POWER PORT 5.2.4 VOLTAGE DIPS AND INTERRUPTIONS TO AC POWER PORT

15072259 001 Seite 3 von 25 Page 3 of 25 Contents 1 TEST SITES... 4 1.1 TEST FACILITIES... 4 1.2 LIST OF TEST AND MEASUREMENT INSTRUMENTS... 4 2 GENERAL PRODUCT INFORMATION... 5 2.1 PRODUCT FUNCTION AND INTENDED USE... 5 2.2 RATINGS AND SYSTEM DETAILS... 5 2.3 INDEPENDENT OPERATION MODES... 5 2.4 NOISE GENERATING AND NOISE SUPPRESSING PARTS... 5 2.5 SUBMITTED DOCUMENTS... 5 3 TEST SET-UP AND OPERATION MODES... 6 3.1 PRINCIPLE OF CONFIGURATION SELECTION... 6 3.2 PHYSICAL CONFIGURATION FOR TESTING... 6 3.3 TEST OPERATION AND TEST SOFTWARE... 6 3.4 SPECIAL ACCESSORIES AND AUXILIARY EQUIPMENT... 6 3.5 COUNTERMEASURES TO ACHIEVE EMC COMPLIANCE... 6 4 TEST RESULTS E M I S S I O N... 7 4.1 EMISSION IN THE FREQUENCY RANGE UP TO 30 MHZ... 7 4.1.1 Harmonics on AC Mains... 7 4.1.2 Voltage Fluctuations on AC Mains... 8 4.1.3 Mains Terminal Continuous Disturbance Voltage... 9 4.1.4 Discontinuous Interference on AC Mains... 12 4.2 EMISSION IN THE FREQUENCY RANGE ABOVE 30 MHZ... 13 4.2.1 Disturbance Power... 13 4.2.2 Radiated emission... 15 5 TEST RESULTS I M M U N I T Y... 16 5.1 ENCLOSURE... 17 5.1.1 Electrostatic Discharge... 17 5.2 INPUT AND OUTPUT AC POWER PORTS... 18 5.2.1 Fast Transients on AC Power Lines... 18 5.2.2 Injected Current into AC Power Port... 19 5.2.3 Surges to AC Power Port... 20 5.2.4 Voltage dips and interruptions to AC Power Port... 21 6 PHOTOGRAPHS OF THE TEST SET-UP... 22 7 LIST OF TABLES... 25 8 LIST OF FIGURES... 25 9 LIST OF PHOTOGRAPHS... 25

15072259 001 Seite 4 von 25 Page 4 of 25 1 Test Sites 1.1 Test Facilities Laboratory: TÜV Rheinland (Shanghai) Co., Ltd. Address: B1-13/F No.177, Lane 777, West Guangzhong Road, Zhabei District, Shanghai 200072, P. R. China The used test equipment is in accordance with CISPR 16-1 series standards for measurement of radio interference. 1.2 List of Test and Measurement Instruments Table 1: List of Test and Measurement Equipment No. Equipment Model Serial no. Cal. due date 1 EMI test receiver ESIB26 100227 21.05.2015 2 Artificial mains network NNB 42 04/10048 27.05.2015 3 Absorbing clamp MDS-21 100239 17.10.2014 4 ESD generator NSG 435 5506 03.07.2015 5 Barometer DYM3 08102717 08.04.2015 6 EMC test system NSG 3040 1705 03.12.2014 7 RF generator NSG 2070 1083 21.05.2015 8 Coupling/decoupling network CDN-M016 20580 07.07.2015 9 Three-phase voltage dips/interruption simulator VDS-1132D VDS113201001 24.10.2016

15072259 001 Seite 5 von 25 Page 5 of 25 2 General Product Information 2.1 Product Function and Intended Use The EUT (equipment under test) is an ordinary saltwater system for household and similar use. For the further information, refer to the user s manual. 2.2 Ratings and System Details System input voltage : AC 220-230V 50Hz for ECO7220 ECO7220G AC 230-240V 50Hz for ECO7230 ECO7230G Rated input : 65W Protection class : II Identities and differences: The above models are same in electrical characteristics, the differences between them are mechanical aspects and rated voltage on rating labels. According to the electrical characteristics of them, the EMC tests were performed on ECO7230. Refer to the Constructional Data Form for further information. 2.3 Independent Operation Modes The basic operation modes are: On or Off, without power regulation. Refer to the Constructional Data Form for further information. 2.4 Noise Generating and Noise Suppressing Parts Refer to the Constructional Data Form for further information. 2.5 Submitted Documents Constructional Data Form for EMC, circuit diagram and rating labels.

15072259 001 Seite 6 von 25 Page 6 of 25 3 Test Set-up and Operation Modes 3.1 Principle of Configuration Selection Emission: The equipment under test (EUT) was configured to measure its highest possible emission level. The test conditions were adapted accordingly in reference to the instructions for use. Refer to the related paragraph of this report. Immunity: The equipment under test (EUT) was configured to have its highest possible susceptibility against the tested phenomena. The test conditions were adapted accordingly in reference to the instructions for use. Refer to the related paragraph of this report. 3.2 Physical Configuration for Testing Refer to the related paragraph of this report. 3.3 Test Operation and Test Software Refer to the related paragraph of this report. No software was used. 3.4 Special Accessories and Auxiliary Equipment None. 3.5 Countermeasures to achieve EMC Compliance No special measure is employed to achieve the requirement.

15072259 001 Seite 7 von 25 Page 7 of 25 4 Test Results E M I S S I O N 4.1 Emission in the Frequency Range up to 30 MHz 4.1.1 Harmonics on AC Mains Basic standard : EN 61000-3-2:2006+A1+A2 Frequency range : 0 2kHz According to the Clause 7 in the EN 61000-3-2:2006+A1+A2, For the following categories of equipment limits are not specified in this edition of the standard. - equipment with a rated power of 75W or less, other than lighting equipment, The rated input of EUT is less than 75W, so the limits of harmonics on AC main are not applicable to the EUT. Therefore, the sample is deemed to meet the requirements of EN 61000-3-2:2006+A1+A2 without actual test.

15072259 001 Seite 8 von 25 Page 8 of 25 4.1.2 Voltage Fluctuations on AC Mains Basic standard : EN 61000-3-3:2013 According to the electrical characteristics of EUT, low power and without power regulation, it cannot produce voltage fluctuations and flicker which might exceed the related limits.

15072259 001 Seite 9 von 25 Page 9 of 25 4.1.3 Mains Terminal Continuous Disturbance Voltage Test Setup Date of testing : 28.05.2014 Test procedure : EN 55014-1:2006+A1+A2 and CISPR 16-1 series standards Frequency range : 0.15-30MHz Kind of test site : shielded room Ambient condition : Temperature: 23.4ºC; Relative humidity: 47% Expanded measurement uncertainty (k=2) : 3.58dB (150kHz 30MHz) Input voltage Operational mode Artificial hand Earthing : AC 264V, 50Hz : On with water flow : N/A : No earthing. (as class II equipment) The measurement setup was made according to EN 55014-1:2006+A1+A2 in a shielded room. The measurement equipment like test receivers, quasi-peak detector and Artificial Mains Network (AMN) are in compliance with CISPR 16-1 series standards. The tested object was operated under its rated voltage and its rated frequency. Prior to the measurements the test object operated about 15 minutes (warm-up) in order to stabilize its operating conditions and to ensure reliable measurement values. Furthermore an internal calibration with the test receiver was conducted prior to each measurement. The tested object was set-up on a wooden table. The EUT was set 0.8m away from the AMN. The cord longer than necessary to be connected to the AMN was folded forth and back parallel so as to form a bundle with a length between 0.3m and 0.4m. The disturbance voltage was determined according to clause 5 of EN 55014-1:2006+A1+A2 while measuring the line and neutral conductor by turns. The following figures and tables were those measured by an automatic measuring system. Both Quasi-peak and Average value were measured. Quasi-peak and Average value were measured and listed respectively where they had a maximum in previous scanning survey. In the figures, means Quasi-peak value and + means Average value which was measured in final measurement.

15072259 001 Seite 10 von 25 Page 10 of 25 Figure 1: Spectral Diagrams, Conducted Emission, 150kHz - 30MHz, L Level [dbµv] Final quasi-peak measurement results: Final average measurement results:

15072259 001 Seite 11 von 25 Page 11 of 25 Figure 2: Spectral Diagrams, Conducted Emission, 150kHz - 30MHz, N Level [dbµv] Final quasi-peak measurement results: Final average measurement results:

15072259 001 Seite 12 von 25 Page 12 of 25 4.1.4 Discontinuous Interference on AC Mains N/A

15072259 001 Seite 13 von 25 Page 13 of 25 4.2 Emission in the Frequency Range above 30 MHz 4.2.1 Disturbance Power Test Setup Date of testing : 28.05.2014 Port : Mains Basic standard : EN 55014-1:2006+A1+A2 Frequency range : 30-300MHz Limit : EN 55014-1:2006+A1+A2, clause 4.1.2 Ambient condition : Temperature: 23.8ºC; Relative humidity: 48% Expanded : 3.6dB measurement uncertainty (k=2) Input voltage Operational mode Earthing : AC 264V; 50Hz : On with water flow : No earthing. (as class II equipment) Measuring configuration and description The measurement setup was made according to EN 55014-1:2006+A1+A2. The measurement equipment like test receivers and absorption clamp are in compliance with CISPR 16-1 series standards. The test object has been operated under its rated voltage and rated frequency. Prior to the measurements the test objects operated about 10 minutes (warm-up) in order to stabilize their operating conditions and to ensure reliable measurement values. Furthermore an internal calibration with the test receiver was conducted prior to each measurement. The disturbance power was determined according to clause 6 of EN 55014-1:2006+A1+A2. The length of power cord of EUT plus that of the extension cord was 6.0m. The measurement was performed by operating the EUT in normal operation mode. The figures and tables below were those measured in the operation mode. Both Quasi-Peak and Average Value were measured. In final measurement, by moving the absorption clamp along the power supply cord and the extension-power cord from the test object, Quasi-Peak and Average Value were measured and listed respectively where they had a maximum in previous scanning survey. In the Figures, means Quasi-Peak Value and + means Average Value which was measured in final measurement.

15072259 001 Seite 14 von 25 Page 14 of 25 Figure 3: Spectral Diagrams, Disturbance Power, Mains, 30-300MHz Final quasi-peak measurement results: Final average measurement results:

15072259 001 Seite 15 von 25 Page 15 of 25 4.2.2 Radiated emission Test procedure : EN 55014-1:2006+A1+A2 and CISPR 16-2-3 Test port : Enclosure Frequency range : 30-1000MHz Limit : Quasi-peak limits (3m test distance): 30-230MHz, 40dBµV/m; 230-1000MHz, 47dBµV/m; According to a) of Clause 4.1.2.3.2 of EN 55014-1:2006+A1+A2: Appliances are deemed to comply in the frequency range from 300MHz to 1000MHz if both the following conditions 1) and 2) are fulfilled: 1) all emission readings from the equipment under test shall be lower than the applicable limits (Table 2a) reduced by the margin (Table 2b); 2) the maximum clock frequency shall be less than 30MHz. The EUT is deemed to meet the requirements without actual testing, as the EUT fulfilled the two conditions from test results of Clause 4.2.1 and the circuit diagram.

15072259 001 Seite 16 von 25 Page 16 of 25 5 Test Results I M M U N I T Y During the immunity tests, the EUT was operated under conditions specified by clause 3.1 of this report. Performance criterion A: The apparatus shall continue to operate as intended during the test. No degradation of performance or loss of function is allowed below a performance level (or permissible loss of performance) specified by the manufacturer, when the apparatus is used as intended. Performance criterion B: The apparatus shall continue to operate as intended after the test. No degradation of performance or loss of function is allowed below a performance level (or permissible loss of performance) specified by the manufacturer, when the apparatus is used as intended. During the test, degradation of performance is allowed. Performance criterion C: Temporary loss of function is allowed, provided the function is self-recoverable or can be restored by the operation of the controls, or by any operation specified in the instructions for use. Date of testing: 29.05.2014 Room Temperature : 23.2-24.2ºC Relative Humidity : 47-50% According to the electrical characteristics and EN 55014-2:1997+A1+A2, the EUT belongs to category II equipment.

15072259 001 Seite 17 von 25 Page 17 of 25 5.1 Enclosure 5.1.1 Electrostatic Discharge The immunity against electrostatic discharge was tested in accordance with EN 55014-2:1997+A1+A2. Test setup and ESD-Generator are according to IEC 61000-4-2 which is specified by EN 55014-2:1997+A1+A2. The EUT is placed on 0.8m wood support above the ground plane. And the minimum distance between the EUT and all other conductive structures except the ground plane beneath the EUT is more than 0.5m. The reference ground plane is an aluminium sheet of 0.25mm minimum thickness. The reference ground plane is connected to the protective earth. The size of the ground plane is 2m x 2m. A horizontal coupling plane (HCP) 1.6m x 0.8m, placed on the table and isolate the EUT 0.5mm thick. Vertical coupling plane of dimensions 0.5m x 0.5m is placed parallel to and positioned at a distance of 0.1m from the EUT. Charge voltage Polarity Number of discharges Performance criteria Table 2: ESD, Positive / Negative Polarity : ±4.0kV (Contact Discharge), ±8.0kV (Air Discharge) : positive / negative : 10 : B Position Kind of Discharge Result Remarks Panel Air discharge ±8kV Pass No disturbance of function Seam Air discharge ±8kV Pass Ditto Surface Air discharge ±8kV Pass Ditto Screw Contact discharge ±4kV Pass Ditto Coupling plane (Both HCP and VCP) Contact discharge ±4kV Pass Ditto

15072259 001 Seite 18 von 25 Page 18 of 25 5.2 Input and Output AC Power Ports 5.2.1 Fast Transients on AC Power Lines The immunity against fast transients on AC power lines was tested in accordance to EN 55014-2:1997+A1+A2. Test setup and the fast transient noise generator were according to IEC 61000-4-4 which is specified by EN 55014-2:1997+A1+A2. The EUT is placed on 0.1m wood table above the ground plane. And the minimum distance between the EUT and all other conductive structures except the ground plane beneath the EUT is more than 0.5m. The length between the coupling device and the EUT is about 0.5m. The excess length was folded to avoid a flat coil and situated at a distance of 0.1m above the ground reference plane. The reference ground plane is an aluminium sheet of 0.25mm minimum thickness. The reference ground plane is connected to the protective earth. The size of the ground plane is 2m x 2m. Test voltage Polarity Repetition frequency Test duration Tr/Tn Performance criteria : 1kV : negative/positive : 5kHz : 120sec : 5ns/50ns : B Table 3: Burst, AC Power lines, Positive and Negative Polarity Line Result Remarks AC Input ports ±1kV Pass No disturbance of function

15072259 001 Seite 19 von 25 Page 19 of 25 5.2.2 Injected Current into AC Power Port The immunity against injected current into AC power port was tested according to EN 55014-2:1997+A1+A2 in a shielded room. The Test setup and the test generator were according to IEC 61000-4-6 which is specified by EN 55014-2:1997+A1+A2. The EUT is placed on a ground reference plane and shall be insulated from it by an insulating support 0.1m thick. And the minimum distance between the EUT and all other conductive structures except the ground plane beneath the EUT is more than 0.5m. The EUT comprised a single unit. The coupling and decoupling networks were inserted on the power supply connection. The coupling and decoupling networks was placed on the ground reference plane, making direct contact with it at about 0.1-0.3 meter from EUT. The cable between EUT and CDN is as short as possible and not bundled nor wrapped. The height of cable between the EUT and the coupling and decoupling networks above the ground reference plane was 50mm. Voltage level : 3V(rms)(unmodulated) Environmental phenomena : r.f. current, common mode, 1kHz, 80%AM Source impedance : 150 Ω Frequency range : 0.15-230 MHz Frequency step : 1% Dwell time : 3s Performance criteria : A Table 4: Injected current, AC Power Port Line Result Remarks AC Input port Pass No disturbance of function

15072259 001 Seite 20 von 25 Page 20 of 25 5.2.3 Surges to AC Power Port The immunity against surges to AC power port was tested in accordance to EN 55014-2:1997+A1+A2. Test setup and the Combination Wave Generator (CWG) were according to IEC 61000-4-5 which is specified by EN 55014-2:1997+A1+A2. The EUT is placed on 0.1m wood table above the ground plane. Open-circuit test voltage Tr/Tn Test numbers Repetition rate Performance criteria Table 5: Surges to AC Power lines, positive/negative : 1kV (phase to neutral) : 1.2/50µs (open-circuit voltage) 8/20µs (short-circuit current) : 5 positive and 5 negative pulses : 1 surge/min : A Line Result Remarks Phase to neutral 1kV Pass No disturbance of function

15072259 001 Seite 21 von 25 Page 21 of 25 5.2.4 Voltage dips and interruptions to AC Power Port The immunity against voltage dips and interruptions to AC power port was tested in accordance to EN 55014-2:1997+A1+A2. Test setup and the test generator were according to IEC 61000-4-11 which is specified by EN 55014-2:1997+A1+A2. The EUT was placed directly on the ground. Performance criteria Test level (in % U T ) and duration (in periods of the rated frequency) : C 0 0.5 periods : 40 10 periods 70 25 periods Table 6: Test condition and Test Result for Voltage dips Test level Duration Performance Result Remarks (in % U T ) criteria 0 0.5 (10ms) C Pass No disturbance of function 40 10 (200ms) C Pass Ditto 70 25(500ms) C Pass Ditto

15072259 001 Seite 22 von 25 Page 22 of 25 6 Photographs of the Test Set-Up Photograph 1: Set-up for measurement of disturbance voltage Photograph 2: Set-up for measurement of disturbance power

15072259 001 Seite 23 von 25 Page 23 of 25 Photograph 3: Set-up for ESD Photograph 4: Set-up for EFT and Surge

15072259 001 Seite 24 von 25 Page 24 of 25 Photograph 5: Set-up for injected current Photograph 6: Set-up for voltage dips

15072259 001 Seite 25 von 25 Page 25 of 25 7 List of Tables Table 1: List of Test and Measurement Equipment... 4 Table 2: ESD, Positive / Negative Polarity... 17 Table 3: Burst, AC Power lines, Positive and Negative Polarity... 18 Table 4: Injected current, AC Power Port... 19 Table 5: Surges to AC Power lines, positive/negative... 20 Table 6: Test condition and Test Result for Voltage dips... 21 8 List of Figures Figure 1: Spectral Diagrams, Conducted Emission, 150kHz - 30MHz, L... 10 Figure 2: Spectral Diagrams, Conducted Emission, 150kHz - 30MHz, N... 11 Figure 3: Spectral Diagrams, Disturbance Power, Mains, 30-300MHz... 14 9 List of Photographs Photograph 1: Set-up for measurement of disturbance voltage... 22 Photograph 2: Set-up for measurement of disturbance power... 22 Photograph 3: Set-up for ESD... 23 Photograph 4: Set-up for EFT and Surge... 23 Photograph 5: Set-up for injected current... 24 Photograph 6: Set-up for voltage dips... 24