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Samsung SHR-7162P

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Comments to date: 7. Page 1 of 1. Average Rating:
tinker123 5:22am on Saturday, October 16th, 2010 
I gave this a better than average rating. The sound is good as long as the headpiece is near the phone, the sound is good for clarity. Horses for courses. This Bluetooth is perfect for what I need it for- communication during physical work in stables.
Jayant Marathe 9:09am on Tuesday, August 31st, 2010 
This is my review on the Plantronics Explorer 320 Bluetooth Wireless Headset. In order to comply with the new law about cell phone use and driving.
jefflief 10:07pm on Tuesday, August 10th, 2010 
We have this same model at our business and when we needed a replacement Newegg beat everyones price. Great product. ships properly and on time and in pristince condition like promised by newegg.
$lolita_87 6:41am on Wednesday, July 7th, 2010 
I would not recommend these as after a short whilethey become very uncomfortable due to the very small and stiff vinyl ear cups. Basic, reasonably priced. A good deal for the money. This product made me so happy that I now have 2 I live on the Blue Tooth!
thimk 2:13am on Wednesday, May 19th, 2010 
The Plantronics Discovery 610 far exceeded my expectations. Comfortable and affordable, this is handsfree at its best. Great bluetooth headset for the price.Stylish FunctionalityPros:Battery life, stylish, comfortableCons:Ear loop, ear pieces turn yellow Great game...fun fun funCrash and Burn Fest ..A Real StressbusterPros:Great graphicsCons:The music can be annoying
Vladimir 4:06am on Saturday, May 15th, 2010 
Very good device, the best I ever owned. Has multiple adapters that are interchangeable so you only need one charger for cell phone and handfree.
marcosruano 2:29am on Wednesday, April 28th, 2010 
Other than the range limitation I have on my bluetooth earbud I would recommend this product for anyone wanting to get into the wireless accessories a... good headset for the money,fits ear very well. Rubber earpiece comes off very easy, and i lost it. Cant find out how to get another rubber earpiece. After going through 2 Motorola Bluetooth units, the Plantronics unit was a breath of fresh air.

Comments posted on www.ps2netdrivers.net are solely the views and opinions of the people posting them and do not necessarily reflect the views or opinions of us.

 

Documents

doc0

EU Declaration of Conformity (EMC)
Type of equipment: Model Name: Variant Model Name: Applicant: Address: Manufacturer: Address: DIGITAL VIDEO RECORDER SHR-8162P SHR-8082P, SHR-7082P, SHR-7162P, SHR-8080P, SHR-8160P, SHR-7080P, SHR-7160P
SAMSUNG ELECTRONICS CO., LTD.
416, Maetan3-dong, Yeongtong-gu, Suwon-si, Gyeonggi-do, Korea
TIANJIN FENGGUANG ELECTRONICS CO., LTD.
No.10-1 FUSHENG ROAD, ZHONGBEI INDUSTRY DISTRICT, XIQING DISTRICT, TIANJIN, CHINA
We hereby declare, that all major safety requirements, concerning to CE Mark Directive (93/68/EEC) Electromagnetic Compatibility Directives (2004/108/EC, 92/31/EEC) are fulfilled, as laid out in the guideline set down by the member states of the EEC Commission. This declaration is valid for all samples that are part of this declaration, which are manufactured according to the production charts appendix.
The standards relevant for the evaluation of EMC requirements are as follows : EN 55022:2006, EN 50130-4:1995+A1+1998+A2:2003 EN 61000-3-2:2006, EN 61000-3-3/A2:2005
1. Certificate of conformity / Test report issued by: EMC : EMC Compliance Laboratory Report No : EMC-CE-1518
2. Technical documentation kept at: SAMSUNG ELECTRONICS CO., LTD. which will be made available upon request.
SAMSUNG ELECTRONICS CO., LTD. 416, Maetan3-dong, Yeongtong-gu, Suwon-si, Gyeonggi-do, Korea (place and date of issue)
---------------------------------------------------------(name and signature of authorized person)
Report No.: EMC-CE-1518 Page: 1 of 70

http://www.emc2000.co.kr

EMC TEST REPORT
Test report No: Type of Equipment : Model Name: Variant Model Name: EMC-CE-1518 DIGITAL VIDEO RECORDER SHR-8162P SHR-8082P, SHR-7082P, SHR-7162P, SHR-8080P, SHR-8160P, SHR-7080P, SHR-7160P Applicant: SAMSUNG ELECTRONICS CO., LTD. 416, Maetan3-dong, Yeongtong-gu, Suwon-si, Gyeonggi-do, Korea TIANJIN FENGGUANG ELECTRONICS CO., LTD. No.10-1 FUSHENG ROAD, ZHONGBEI INDUSTRY DISTRICT, XIQING DISTRICT, TIANJIN, CHINA

Manufacturer:

Test standards : EN 55022:2006, Class A, EN 50130-4:1995+A1:1998+A2:2003 EN 61000-3-2:2006, EN 61000-3-3/A2:2005 Testing Laboratory: Test result : EMC Compliance Ltd.

Complied

This product complies with the requirements of the EMC Directive 2004/108/EC. The results in this report apply only to the sample tested. This test report shall not be reproduced except in full, without the written approval of EMC compliance Laboratory.
Receipt date: 2008. 10. 20 Issued date: 2008. 11. 05
Date of testing: 2008. 10. 20 ~ 10. 29

Tested by:

SUNG, GI-MUN

Approved by:

CHUNG, MIN-SEOK
EMC Compliance Ltd. 82-1 Jeil-ri, Yangji-myun, Churingu, Yongin-city, Kyunggi-do 449-825, Korea TEL: FAX : This test report shall not be reproduced except in full, Without the written approval.
Report No.: EMC-CE-1518 Page: 2 of 70

Contents

1. Applicant information....3 2. Laboratory information....4 3. Test system configuration....5 3.1 Operation environment 3.2 Measurement Uncertainty 4. Description of E.U.T....7 4.1 General information 4.2 Product description 4.3 Auxiliary equipments 4.4 Test configuration 4.5 Operating conditions 5. Summary of test results....10 5.1 Modification to the E.U.T. 5.2 Summary of EMI emission test results 5.3 Summary of immunity test results 5.4 Performance criteria 6. Test results....13 6.1 Conducted Emission 6.2 Radiated Emission 6.3 Harmonics 6.4 Flicker 6.5 Electrostatic Discharge test result 6.6 Radio Frequency Electromagnetic Fields 6.7 Electric Fast Transient/BURST 6.8 Surge 6.9 Conducted Immunity 6.10 Dips and Interruptions 6.11 Mains supply voltage variations 7. E.U.T. photographs

Report No.: EMC-CE-1518 Page: 3 of 70

1. Applicant information

Applicant: Address: Telephone: E-mail: Contact name: SAMSUNG ELECTRONICS CO., LTD. 416, Maetan3-dong, Yeongtong-gu, Suwon-si, Gyeonggi-do, Korea +82-31-277-3695 js2002.kang@samsung.com Kang Je Soon

Manufacturer: Address:

TIANJIN FENGGUANG ELECTRONICS CO., LTD. No.10-1 FUSHENG ROAD, ZHONGBEI INDUSTRY DISTRICT, XIQING DISTRICT, TIANJIN, CHINA
Report No.: EMC-CE-1518 Page: 4 of 70
2. Laboratory information
Address EMC compliance Ltd. 82-1 Jeil-ri, Yangji-myun, Churingu, Yongin-city, Kyunggi-do 449-825, Korea Telephone Number: Facsimile Number: CBTL Testing Laboratory FCC Filing No.: 793334 FCC CAB.: KR0040 VCCI Registration No. : C-1713, R-2710, T-258 KOLAS NO.: 231 SITE MAP

Yongin city

EMC compliance
Report No.: EMC-CE-1518 Page: 5 of 70
3. Test system configuration
3.1 Operation environment
Temperature OATS Shielded room Immunity area : : : 8 C 22 C 23 C Humidity 50 % 53 % 48 % Pressure 998 hPa
Test site These testing items were performed following locations; Shielded Room OATS (10 m) Immunity area : Conducted Emission : Radiated Emission (#4) : ESD, EFT/Burst, Surge, CS, Dip/Interruption, Harmonics, Flicker, Voltage variation
Anechoic chamber (3 m) : RS
Report No.: EMC-CE-1518 Page: 6 of 70
3.2 Measurement Uncertainty
All measurements involve certain levels of uncertainties, especially in field of EMC. The factors contributing to uncertainties are test receiver, cable loss, antenna factor calibration, Antenna directivity, antenna factor variation with height, antenna phase center variation, antenna frequency interpolation, measurement distance variation, site imperfection, mismatch, and system repeatability. Based on CISPR 16-4-2, the measurement uncertainty level with a 95 % confidence level was applied. Conducted emission measurement :(k = 2, 95 %) 9 kHz ~ 150 kHz : 3.052 [dBuV] 150 kHz ~ 30 MHz : 2.532 [dBuV] Radiated Emission measurement 30 ~ 300 MHz :(k = 2, 95 %)
: 3 m: 3.53 [dBuV/m], 10 m: 3.52 [dBuV/m]
300 ~ 1000 MHz :3 m: 3.70 [dBuV/m], 10 m: 3.69 [dBuV/m] Radio Frequency Electromagnetic Fields 1.0234 [dBuV/m] :(k = 2, 95 %)
Report No.: EMC-CE-1518 Page: 7 of 70

4. Description of E.U.T.

4.1 General information
SHR-8162P is a digital video recorder.

4.2 Product description

Type of product: Model name (Basic): Model name (Variant): Difference: Serial no: Trade name : Testing Voltage: Product rating: Note : DIGITAL VIDEO RECORDER SHR-8162P SHR-8082P, SHR-7082P, SHR-7162P, SHR-8080P, SHR-8160P, SHR-7080P, SHR-7160P Buyer model names 230 Vac, 50 Hz 100 ~ 240 Vac, 4 ~ 1.5 A, 50 / 60 Hz This test was done with SHR-8162P.

4.3 Auxiliary equipments

Monitor Camera Notebook USB mouse 1 USB mouse 2 USB keyboard

Model / Part #

3008WFPt 260X E8210 SMH-2104B SMH-210UB SK-8115 FKL-GP3

Serial number

7735432490POB 482678041377 M2UBTAKQ335303N M2UBAKQ335310Z -

Manufacturer

DELL KOCOM FUJITSU SAMSUNG SAMSUNG DELL Calmee
Report No.: EMC-CE-1518 Page: 8 of 70

4.4 Test configuration

Power Signal Signal BNC

Description

AC main D-SUB cable HDMI cable CH16 cable USB cable 1

Connection (To)

EUT Monitor Monitor Monitor USB mouse 1 USB mouse 2 USB keyboard Loop 75 termination 75 termination Camera
Non-Shield Shield Shield Shield Shield Shield Shield Shield Shield Shield Shield

Length(m)

1.5 1.6 2.0 3.0 1.9 1.9 2.0 1.5 3.0 3.0 3.0

Note *

Signal

USB cable 2 USB cable 3

BNC Signal BNC
CH1~CH16 cable STOP cable 1~4 Video out cable CH1 cable
Report No.: EMC-CE-1518 Page: 9 of 70
LAN cable Audio in cable 1~4 Audio out cable Audio cable 5~16 Signal Console cable RS-232 cable SATA cable 1 SATA cable 2 Tx-Rx cable Alarm cable
Notebook Open Open Open Open Open Open HDD enclosure Open Open
Shield Shield Shield Shield Non-Shield Shield Shield Shield Non-Shield Non-Shield
3.0 1.4 1.4 2.0 1.2 1.6 1.0 1.0 3.0 3.0

4.5 Operating conditions

The EUT was configured as normal intended use.

Test mode

Recording mode

Normal operating

Web monitoring mode using notebook pc.
Report No.: EMC-CE-1518 Page: 10 of 70
5. Summary of test results
5.1 Modification to the E.U.T.
5.2 Summary of EMI emission test results

Application

Conducted emission - AC main port - LAN port Radiated emission Harmonics current Voltage fluctuations and flickers

Report No.: EMC-CE-1518 Page: 12 of 70
or changes to programmable settings etc.): (b) at U = 130 dBuV, any deterioration of the picture is so minor that the system could still be used; and (c) there in no observable deterioration of the picture at U + 120 dBuV. Conducted RF immunity There shall be no damage, malfunction or change of status due to the conditioning. Flickering of an indicator during the application of discharge is permissible, providing That there is no residual is permissible, providing that there is no residual change in the EUT or any change in outputs, which could be interpreted by associated equipment as a change, and no such flickering of indicators oeuvres at U = 130 DBuv. For component of CCTV systems, where the status is monitored by observing the TV picture, then deterioration of the picture is allowed at U = 140 dBuV, providing: (d) there is no permanent damage or change to the EUT (e.g. no corruption of memory or changes to programmable settings etc.): (e) at U = 130 dBuV, any deterioration of the picture is so minor that the system could still be used; and (f) there in no observable deterioration of the picture at U + 120 dBuV. Voltage dip/interruption, Voltage variation There shall be no damage, malfunction or change of status due to the conditioning. Flickering of an indicator during the conditioning is perishable, providing that there is no residual change in the EUT or any change in outputs, which could be interpreted by associated equipment as a change. The EUT shall meet the acceptance criteria for the functional test, after the conditioning.
Report No.: EMC-CE-1518 Page: 13 of 70

6. Test results

6.1 Conducted Emission
Test specification Test mode Date: Power supply Test facility Temperature (C) Remarks EN 55022 Section 5, Class A REC & web viewer mode 2008. 10. V, 50 Hz Shielded room (CE#2) 22 C Humidity (%) 53 % Complied Minimum limit margin is 19.17 dB at 0.207 MHz. (Average) Telecommunication Minimum limit margin is 33.06 dB at 19.595 MHz (Average)
6.1.1 Limits of conducted emission measurement

- AC main Frequency [MHz] 0.15 ~ 0.5 0.5 ~ ~ 30
Class A (dBuV) Quasi-peak Average 73 60
Class B (dBuV) Quasi-peak Average 66 ~ 56 * 56 ~ 46* 60 50
*The limit decreases linearly with the logarithm of frequency.
- Telecommunication Frequency [MHz] 0.15 ~ 0.5 0.5 ~ 30 Class A Voltage Limits (dBuV) Quasi-Peak 97 to Average 84 to Current Limits (dBuA) Quasi-Peak 53 to Average 40 to 30 30
* The limits decrease linearly with the logarithm of the frequency in the range 0.15 MHz to 0.5 MHz * The current and voltage disturbance limits are derived for use with an impedance stabilization Network (ISN) which presents a common mode(asymmetric mode) impedance of 150 to the telecommunication port under test (conversion factor is 20 log10 150/I = 44 dB).
Report No.: EMC-CE-1518 Page: 14 of 70
6.1.2 Measurement procedure
The measurements were performed in a shielded room. EUT was setup as shown in photograph and placed on a non-metallic table height of 0.8 m above the reference ground plane. The rear of table was located 0.4 m to the vertical conducted plane. EUT was power through the LISN, which was bonded to the ground plane. The LISN power was filtered. Each EUT power lead, except ground (safety) lead was individually connected through a LISN to input power source. EUT signal cables that hung closer than 0.4 m to the Horizontal metal ground 0.3 ~ 0.4 m long. The power cord was bundles in the center. All peripheral equipment was powered from a sub LISN. The LISN and ISN were positioned 0.8 m from the EUT. Peak and Average detection were used in preliminary testing and Quasi-peak and Average detections were used at final measurement. Both lines of power cord, hot and neutral, were measured.

6.1.3 Used equipments

Equipment
Test Receiver LISN LISN 4WIRE ISN
ESHS30 ESH3-Z5 L3-32 T800

Serial No.

844827/011 846125/024 0120J20305 24314

Makers

R&S R&S PMM TESEQ

Next Cal. Date

09.08.19 09.08.06 09.06.05
Report No.: EMC-CE-1518 Page: 15 of 70
6.1.4 Photographs of test setup
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Telecommunication

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6.1.5 Conducted emission measurement result
Correction Factor [MHz] 0.150 0.171 0.207 0.312 0.417 2.601 5.210 11.150 14.800 19.920 20.010 LISN 0.09 0.07 0.09 0.09 0.10 0.16 0.25 0.39 0.77 0.67 0.93 Cable 0.4 0.4 0.4 0.5 0.5 0.6 0.5 0.5 0.6 0.6 0.6 H N H H H N H N H N H 73.00 79.00 Line Limit [dBuV] Quasi-peak Reading [dBuV] 45.26 41.04 55.16 34.37 23.22 24.39 20.85 31.90 31.58 42.58 38.75 Result [dBuV] 45.75 41.51 55.65 34.96 23.82 25.15 21.60 32.79 32.95 43.85 40.28 60.00 66.00 Limit [dBuV] Average Reading [dBuV] 33.53 30.08 46.34 26.77 16.27 13.47 16.30 25.74 28.67 28.81 23.13 Result [dBuV] 34.02 30.55 46.83 27.36 16.87 14.23 17.05 26.63 30.04 30.08 24.66

Frequency

Report No.: EMC-CE-1518 Page: 18 of 70
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* Telecommunication port

* LCL 65dB (LAN Port) Frequency [MHz] 0.393 19.595 Correction Factor Cable 0.4 0.4 Limit [dBuV] 89.00 87.00 Quasi-peak Reading [dBuV] 40.90 49.40 Result [dBuV] 41.30 49.80 Limit [dBuV] 76.00 74.00 Average Reading [dBuV] 35.60 40.54 Result [dBuV] 36.00 40.94
Note. QP = Quasi-Peak, AV= Average.
Report No.: EMC-CE-1518 Page: 21 of 70
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6.2 Radiated Emission

Test specification Test mode Date Power supply Test facility Temperature (C) Remarks EN 55022 Sections 5, Class A REC & web viewer mode 2008. 10. V, 50 Hz Semi-anechoic chamber # 4, 10m OATS 8 C Humidity (%) 50 % Complied Minimum limit margin is 2.26 dB at 375.02 MHz.
6.2.1 Limits of radiated emission measurement
Frequency [MHz] 30 ~ ~ 1000 Above 1000 MHz Class A (dBuV/m) @ 10 m Class B (dBuV/m) @ 10 m 30 37
6.2.2 Measurement procedure
A pretest was performed at 3 m distance in a semi-anechoic chamber for searching correct frequency. The final test was done at a 10 m open area test site with a quasi-peak detector. EUT was placed on a non-metallic table height of 0.8 m above the reference ground plane. Cables were folded back and forth forming a bundle 0.3 m to 0.4 m long and were hanged at a 0.4 m height to the ground plane. Cables connected to EUT were fixed to cause maximum emission. Test was made with the antenna positioned in both the horizontal and vertical planes of polarization. The measurement antenna was varied in height above the conducting ground plane to obtain the maximum signal strength.
Report No.: EMC-CE-1518 Page: 23 of 70

6.2.3 Used equipments

Test Receiver TRILOG SUPER BROADBAND ANT Antenna Mast Turn Table 10m OATS

Model no.

ESCI VULB9160 A109 TS25 -

Serial no.

N/A N/A -
R&S Schwarz beck DAEIL DAEIL EMC Compliance

Next cal. date

09.08.18 10.02.21 -

6.2.4 Sample calculation

The field strength is calculated adding the antenna Factor, cable loss and, Antenna pad adding, subtracting the amplifier gain from the measured reading. The sample calculation is as follow: FS = MR + AF + CL + AT - AG MR = Meter Reading AF = Antenna Factor CL = Cable Loss AP = Antenna Pad AG= Amplifier Gain If MR is 30 dB, AF 12 dB, CL 5 dB, AP 10 dB, AG 35 dB The result (MR) is 30 + 12 + 5 + = 22 dBuV/m
Report No.: EMC-CE-1518 Page: 24 of 70
6.2.5 Photographs of test setup
Report No.: EMC-CE-1518 Page: 25 of 70
6.2.6 Radiated emission measurement result
*3 m Semi-anechoic chamber Pre-scan Data (#4) -Horizontal

-Vertical

Report No.: EMC-CE-1518 Page: 26 of 70

*10 m OATS measurement data
Frequency [MHz] 125.01 150.00 192.00 375.02 378.01 432.02 659.98 923.99 Reading [dBuV/m] 10.8 11.0 10.3 24.1 21.3 18.2 13.7 7.1 Pol. Height [m] 4.0 4.0 1.0 3.2 3.3 4.0 4.0 3.6 angle Correction Factor Antenna Cable 11.71 2.91 13.18 3.14 11.10 3.64 15.37 5.27 15.42 5.30 16.27 5.74 19.65 7.30 22.38 9.05 Limits [dBuV/m] 40.0 40.0 40.0 47.0 47.0 47.0 47.0 47.0 Result [dBuV/m] 25.42 27.32 25.04 44.74 42.02 40.21 40.64 38.53 Margin [dB] 14.58 12.68 14.96 2.26 4.98 6.79 6.36 8.47

H H V H H H H H

* Note : Reading = Test Receiver value,
Report No.: EMC-CE-1518 Page: 27 of 70

6.3 Harmonics

Test specification Test mode Date Power supply Test facility Temperature(C) Remarks EN 61000-3-2:2006 REC & web viewer mode 2008. 10. V, 50 Hz Immunity area 22 C Complied Humidity (%) 49 % Pressure (mb) 999 mb
6.3.1 Measurement procedure
The equipment is supplied in series with shunt(s) Rm or current transformer(s) from a source having the same nominal voltage and frequency as the rated supply voltage and frequency of the equipment. Measurements shall be made under normal load, or conditions for adequate heat discharge, and under normal operating conditions. Users operation controls or automatic programmers shall be set to produce the maximum harmonic component, for each successive harmonic component in turn. For the purpose of harmonic current limitation, equipment is classified as follows : Class A: Equipment not specified in one of the three other Classes shall be considered as Class A equipment. Balanced three-phase equipment; Household appliances excluding equipment identified as Class D; Tools excluding portable tools; Dimmers for incandescent lamps; Audio equipment.
Class B: Portable tools; Arc welding equipment which is not professional equipment. Class C: Lighting equipment. Class D: Equipment having a specified power according to 6.2.2 less than or equal to 600 w, of the following types: - Personal computers and personal computer monitors; - Television receivers.
Report No.: EMC-CE-1518 Page: 28 of 70

6.3.2 Used equipments

Harmonics/Flicker meter

5001x-CTS-400413

Next Cal. date

09.05.13

6.3.3 Photographs of test setup

Report No.: EMC-CE-1518 Page: 29 of 70

6.3.4 Measurement result

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6.4 Flicker

Test specification Test mode Date Power supply Test facility Temperature(C) Remarks EN 61000-3-3/A2:2005 REC & web viewer mode 2008. 10. V, 50 Hz Immunity area 22 C Complied Humidity (%) 49 % Pressure (mb) 999 mb
6.4.1 Measurement procedure
EUT was connected to the power analyzer system. Measurement was performed to obtain the desired flicker parameters. The measuring time depends on which parameters are to be measured. Plt Pst =2h = 10 min
Controls and automatic programs shall be set to produce the most unfavorable sequence of voltage changes, using only those combinations of controls and programs are mentioned by the manufacturer in the instruction manual.

6.4.2 Used equipments

Report No.: EMC-CE-1518 Page: 33 of 70
6.4.3 Photographs of test setup
Report No.: EMC-CE-1518 Page: 34 of 70

6.4.4 Measurement result

Report No.: EMC-CE-1518 Page: 35 of 70
6.5 Electrostatic Discharge test result
Test specification Test level Discharge impedance Date Power supply Number of discharge Interval between discharges Temperature(C) Remarks EN 61000-4-2:2001 Contact: 2, 4, 6 kV Air: 2, 4, 8 kV HCP / VCP : 2, 4, 6 kV 330 / 150 2008. 10. V, 50 Hz 10 :1s 23 C Humidity (%) 48 % Pressure (mb) 998 mb
Complied - There was no change of operation status during above testing.
6.5.1 Measurement procedure
A ground reference plane was located on the floor, and connected to earth via a low Impedance connection. The return cable of the ESD generator was connected to the reference plane. In case of floor standing equipment, EUT was placed on the reference plane on 0.1 m of insulating Support. In case of table top equipment, EUT was placed on a wooden table 0.8 m above the reference grounded floor. A horizontal coupling plane(HCP) was placed on the table, and Connected to the reference plane via a 470 resistor located in each end (0.5 mm insulating support between EUT and HCP). In both cases a vertical coupling plane(VCP) OF 0.5 X 0.5 m was located 10 cm from the EUTs sides. The VCP was connected to the reference plane in the same matter as the HCP.

Report No.: EMC-CE-1518 Page: 36 of 70

6.5.2 Used equipments

ESD Tester HCP VCP

Model No.

PESD 1600 -

HAEFELY -

08.12.24 -
6.5.2 Photographs of test setup
Report No.: EMC-CE-1518 Page: 37 of 70

6.5.4 Measurement result

Electrostatic Discharge (Test Point)
Air discharge Contact discharge
Report No.: EMC-CE-1518 Page: 38 of 70
Contact discharge Location(EUT) C1 Case (metal) C2 Screw C3 BNC port C4 D-SUB port C5 Console port C6 HDMI port C7 Audio 5 ~ 16 port C8 LAN port C9 Audio port C10 RS-232C port HCP (All 4 sides) VCP (All 4 sides) Air discharge A1 A2 A3 A4 A5 Location(EUT) Case (not matal) Button LED USB port Alarm port
Applied level () 2, 4, 6 kV 2, 4, 6 kV 2, 4, 6 kV 2, 4, 6 kV 2, 4, 6 kV 2, 4, 6 kV 2, 4, 6 kV 2, 4, 6 kV 2, 4, 6 kV 2, 4, 6 kV 2, 4, 6 kV 2, 4, 6 kV
Result Complied Complied Complied Complied Complied Complied Complied Complied Complied Complied Complied Complied
Applied level () 2, 4, 8 kV 2, 4, 8 kV 2, 4, 8 kV 2, 4, 8 kV 2, 4, 8 kV
Result Complied Complied Complied Complied Complied
Report No.: EMC-CE-1518 Page: 39 of 70
6.6 Radio Frequency Electromagnetic Fields
Test specification Tested frequency Test level & Modulation Distance Dwell time Step size Power supply Date Temperature(C) Remarks EN 61000-4-3:MHz ~ 2000 MHz log 1 % step 1, 3, 10 V/m, 80 % Amplitude Modulation (1 kHz) 1, 3, 10 V/m, Pulse Modulation (1 Hz (0.5 s ON: 0.5 s OFF)) 3m from EUT to tip of antenna 3s log 1 % step 230 V, 50 Hz 2008. 10. C Humidity (%) 46 % Pressure (mb) 997 mb
6.6.1 Measurement procedure
The test was performed at 3 m full anechoic chamber. For floor standing equipment, the EUT was standing on the floor. For tabletop equipment, the EUT was located on a wooden table 0.8 m above the floor. The EUT was tested all sides, horizontal and vertical polarization. The field uniformity was calibrated for 1 V/m, 3 V/m, 10 V/m.

6.6.2 Used equipments

Power meter Power sensor (with adapter) Power sensor (with adapter) Directional coupler Signal generator Amplifier Directional Coupler

PM2002 PH2000 PH2000 DC6180 E4421B 150W1000M2 DC7144M1

GB320279

AR AR AR AR AGILENT AR AR
09.05.08 09.05.08 09.05.08 09.05.08 09.10.25 09.04.11 09.02.19
Report No.: EMC-CE-1518 Page: 40 of 70
Amplifier BiconiLog Ant. BiconiLog Antenna Field monitor Controller Turn table Antenna mast
60S1G3M2 LPDA-0803 3142B SI-300 HD 100 DS 412S MA 220

1786 -

AR ETS EMCO TDK Deisel Deisel Deisel

09.04.11 -

6.6.3 Photographs of test setup

6.6.4 Measurement result

Location(EUT) Front side Rear side Left side Right side Antenna polarization Horizontal Vertical Horizontal Vertical Horizontal Vertical Horizontal Vertical Result Complied Complied Complied Complied Complied Complied Complied Complied
Report No.: EMC-CE-1518 Page: 41 of 70
6.7 Electric Fast Transient/BURST
Test specification Coupling Test level Repetition frequency Coupling time Power supply Date Temperature(C) Remarks EN 61000-4-4:2004 AC main Signal: clamp Telecommunication: clamp AC Power : 2 kV Peak Signal : 1 kV Peak Telecommunication: 1 kV Peak 5 kHz, Tr/Th = 5/50 nS 60 s 230 V, 50 Hz 2008.10. C Humidity (%) 45 % Pressure (mb) 996 mb
6.7.1 Measurement procedure
A ground reference plane was located on the floor. EFT generator was connected to reference ground plane via low impedance connection. For floor standing equipment, EUT was placed on a 0.1 m wooden table. For tabletop equipment, EUT was placed on a 0.8 m above the ground reference plane. Test generator and coupling/decoupling network was placed on, and bounded to, the ground reference plane. When using the coupling clamp, the minimum distance between the coupling plates and all other conductive surfaces, except the ground reference plane beneath the coupling clamp, Shall be 0.5 m.

6.7.2 Used equipments

Generator Capacitive Coupling Clamp

UCS 500M6 -

0701-03 -

EM TEST EM TEST

09.06.03 -
Report No.: EMC-CE-1518 Page: 42 of 70
6.7.3 Photographs of test setup
Report No.: EMC-CE-1518 Page: 43 of 70

6.7.4 Measurement result

AC main

EFT coupling point

Live Neutral PE Live + Neutral Live + PE Neutral + PE Live + Neutral + PE Signal
+ 2 kV + 2 kV + 2 kV + 2 kV + 2 kV + 2 kV + 2 kV
- 2 kV - 2 kV - 2 kV - 2 kV - 2 kV - 2 kV - 2 kV

Result

Complied Complied Complied Complied Complied Complied Complied
BNC cable Tx-Rx cable Alarm cable Telecommunication

+ 1 KV + 1 KV + 1 KV

- 1 KV - 1 KV - 1 KV
Complied Complied Complied

LAN cable

+ 1 KV

- 1 KV

Report No.: EMC-CE-1518 Page: 44 of 70

6.8 Surge

Test specification Coupling EN 61000-4-5 :2001 AC main Signal: clamp AC main Differential mode : 0.5, 1 kV Common mode : 0.5, 1, 2 kV Signal line: 0.5, 1 kV Tr/Th = 1.2 / 50 uS Differential mode: 18 Common mode: 10 + 9 BNC: Direct Tx-Rx, Alram : , 90 , 180 , T / 1 min 230 V, 50 Hz 2008. 10. C Humidity (%) 50 % Pressure (mb) 1000 mb
Test level Surge pulse shape Coupling Impedance Angles Number of surge & Coupling time Power supply Date Temperature(C) Remarks
6.8.1 Measurement procedure
A ground reference plane was located on the floor. SURGE generator was connected to reference ground plane via low impedance connection. For floor standing equipment, EUT was placed on a 0.8 m wooden table. For tabletop equipment, EUT was placed on a wooden table (0.8 m) above the reference plane.

6.8.2 Used equipments

Surge generator CDN

UCS 500 M6 CNV 508 S1

V0545100858 0302-01

09.01.07 -

Report No.: EMC-CE-1518 Page: 45 of 70
6.8.3 Photographs of test setup
Report No.: EMC-CE-1518 Page: 46 of 70

6.8.4 Measurement result

Coupling point

L-N L-PE N-PE Signal

+ 0.5, 1 kV + 0.5, 1, 2 kV + 0.5, 1, 2 kV
- 0.5, 1 kV - 0.5, 1, 2 kV - 0.5, 1, 2 kV
BNC cable Tx-Rx cable Alarm cable
+ 0.5, 1 kV + 0.5, 1 kV + 0.5, 1 kV
- 0.5, 1 kV - 0.5, 1 kV - 0.5, 1 kV
Report No.: EMC-CE-1518 Page: 47 of 70

6.9 Conducted Immunity

Test specification Tested frequency Test level & Modulation Coupling method Power supply Step size Date Temperature(C) Remarks EN 61000-4-6:KHz ~ 100 MHz log 1 % step 1, 3, 10 V/m, 80 % Amplitude Modulation (1 kHz) 1, 3, 10 V/m, Pulse Modulation (1 Hz (0.5 s ON: 0.5 s OFF)) AC main : M3 Signal : clamp Telecommunication: clamp 230 V, 50 Hz log 1 % step 2008. 10. C Humidity (%) 48 % Pressure (mb) 998 mb

Complied - There was no change of operation status during above testing.(1V,3V)
6.9.1 Measurement procedure
A ground reference plane was located on the floor. The test was performed on a ground reference plane on a 0.1 m wooden table. This test were performed using CDN for mains, clamp for signal and injection probe. The frequency range was swept from 150 kHz to 100 MHz.This frequency range was Modulated with 1 kHz sine wave at 80 %. The signal generators provided the modulated frequency at a 1 % step size. The power and all network cable, I/O cables longer than 3 m in length were tested.
Report No.: EMC-CE-1518 Page: 48 of 70

6.9.2 Used equipments

CS generator CDN Attenuator EM Clamp EM Clamp Current probe
CWS 500 C S1 CDN M2/M3 73-6-34 KEMZ 801 KEMA 801 MD720
V0635101750 0906-12 MU17899 W1345167/M6/ 0068
EM TEST EM TEST MCE/WEINSC HEL Schaffner Scahffner Schaffner
09.10.13 09.10.13 09.03.24 09.04.01 -
6.9.3 Photographs of test setup
Report No.: EMC-CE-1518 Page: 49 of 70
6.9.4 Measurement result Coupling point
Power BNC cable Tx-Rx cable Alarm cable LAN cable

Coupling method

CDN(M3) Clamp Clamp Clamp Clamp
Complied Complied Complied Complied Complied
Report No.: EMC-CE-1518 Page: 50 of 70
6.10 Dips and Interruptions
Test specification Number of dips Duration Phase Power supply Date Temperature (C) Remarks EN 61000-4-11:2004 3T 60 s Zero crossing (0 , 180 ) 100 Vac / 240 Vac 2008. 10. C Humidity (%) 49 % Pressure (mb) 1000 mb
6.10.1 Measurement procedure
The dips/interruption test is only applicable to AC mains. The dips/interruptions were applied at zero crossing.

6.10.2 Used equipments

dips/interruption generator

UCS 500M6

V0545100858

EM TEST

09.01.07
Report No.: EMC-CE-1518 Page: 51 of 70
6.10.3 Photographs of test setup
6.10.4 Measurement result

- 240 V Test Level (%UT)

0% 70 % 40 %

Dip/Int. (%UT)

100% 30 % 60 %

Duration /Period

0.5 / 1 / 5 Period 0.5 / 1 / 5 / 10 Period 0.5 / 1 / 5 / 10 Period

Phase ()

0 / / / 180

Count number

3T 3T 3T
Comment: There was no change of operation status during above testing.
Report No.: EMC-CE-1518 Page: 52 of 70

- 100 V Test Level (%UT)

Report No.: EMC-CE-1518 Page: 53 of 70
6.11 Mains supply voltage variations
Test specification Tested Voltage Power supply Date Temperature(C) Remarks EN 50130-4:2003 U nom + 10 %, U nom -15 % 100 Vac / 240 Vac 2008. 10. C Humidity (%) 49 % Pressure (mb) 1000 mb

 

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