DOWNLOAD Harman Kardon AVR 270 (serv.man4) Service Manual ↓ Size: 2.49 MB | Pages: 57 in PDF or view online for FREE

Model
AVR 270 (serv.man4)
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57
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2.49 MB
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PDF
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EMC - CB Certificate
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Device
Audio
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avr-270-sm4.pdf
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Harman Kardon AVR 270 (serv.man4) EMC - CB Certificate ▷ View online

 
Anam Electronics Co., Ltd.                                    Page 29 of 57 
AVR270/230
 
EMC Test Report 
Reference No.: NK-12-E-569 
 
 
 
Tested by : Wonho Son
 
Anam Electronics Co., Ltd.                                    Page 30 of 57 
AVR270/230
 
EMC Test Report 
Reference No.: NK-12-E-569 
 
 
Network Internet Radio mode 
 
 
Anam Electronics Co., Ltd.                                    Page 31 of 57 
AVR270/230
 
EMC Test Report 
Reference No.: NK-12-E-569 
 
 
 
Tested by : Wonho Son
 
Anam Electronics Co., Ltd.                                    Page 32 of 57 
AVR270/230
 
EMC Test Report 
Reference No.: NK-12-E-569 
 
9. Electrostatic Discharges   
 
9.1 Test 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 a 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 plane. 
    A horizontal coupling plane (HCP) of 1.6 m x 0.8 m was placed on the table, and connected to the reference 
plane via a cable with 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 m x 0.5 m was located 0.1 m from each sides of 
the EUT. The VCP was connected to the reference plane in the same matter as the HCP.   
The test was done by applying contact and air discharges to the EUT itself, and contact discharges to the HCP   
and VCP. When applying the discharges to the HCP, the tip of the generator was located at the front edge of 
each HCP opposite the center point of the EUT, at 0.1m distance. When applying the discharges to the VCP 
the tip of the generator was located at the middle edge of the VCP. The VCP was located 0.1 m from each 
side of the EUT. Contact discharges up to  ±4 kV were applied to various points of the EUT at conductive 
surfaces, and to the HCP/VCP. Air discharges up to  ±2 kV,  ±4 kV,  ±8 kV were applied to various points 
of the EUT at non-conductive surfaces. 
Ungrounded equipment, or ungrounded part(s) of equipment, cannot discharge itself similarly to class I 
mains-supplied equipment. If the charge is not removed before the next ESD pulse is applied, it is possible 
that the EUT or part(s) of the EUT be stressed up to twice the intended test voltage. Therefore, double-
insulated equipment could be charged at an unrealistically high charge, by accumulating several ESD 
discharges on the capacitance of the class II insulation, and then discharge at the breakdown voltage of the 
insulation with a much higher energy. In the case of class II & III equipment, to avoid of unrealistically high 
charge, it is possible to ionize “using ionizer” before each discharge. 
Instrumentation used during this session:   
 
Instruments Manufacturer 
Model 
Serial number 
Due to Calibration 
ESD Simulator   
Noiseken 
ESS-2000 
0199C02406 
2012. 11 
Discharge Gun 
Noiseken 
TC-815P 
1199C02485 
2012. 11 
 
9.2 Test Parameters   
 
Port: 
Enclosure 
Test Engineer: 
Wonho Son 
Applied Standards: 
EN 55024:1998+A1:2001+A2:2003, 
 
 
EN 55020:2007 
 
Basic Standard: 
EN 61000-4-2:2009 
Performance Criteria: 
Performance Results : 
Test Level 
Air Discharge: 
 2 kV,  4 kV,  8 kV 
 
 Contact 
Discharge: 
 4 kV 
 
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