DOWNLOAD Harman Kardon HK 3480 Service Manual ↓ Size: 2.61 MB | Pages: 49 in PDF or view online for FREE

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HK 3480
Pages
49
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2.61 MB
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PDF
Document
EMC - CB Certificate
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Device
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hk-3480.pdf
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Harman Kardon HK 3480 EMC - CB Certificate ▷ View online

 - 
IEC 60065, 6th edition : 1998
 - 
- Page 8 of 36 - 
 
 
   
 Order 
No. 
14648
 
 
 
7.1  
 
 
 Loudspeaker 
system(s) 
 
Right and Left for SPEAKER 1,
 
 
 
 
 
Right and Left for SPEAKER 2.
 
 
Marking of loudspeaker terminals   
SPEAKER 1 ( 8 
Ω ), 
 
 
 
SPEAKER 2 ( 8 
Ω ).
 
 
U =
 254,4 
V 
6 Ohm 
8 Ohm 
16 Ohm 
 
 
 
 
left left right 
right 
left 
right 
left 
right
Measured max. output voltage    in Vp 
 
 
SP. 1) 39,1 
SP. 2) 39,1 
SP. 1) 39,1 
SP. 2) 39,1 
 
 
 
 
Measured max. output power    in W
 
 
 
 
SP. 1) 95,6 
SP. 2) 95,6 
SP. 1) 95,6 
SP. 2) 95,6 
 
 
 
 
Measured max. mains power in W 
 816 
 
 
 
7.1 
Operation of protective devices     
No fuse links operate during normal operating condition 
7.1.1 
Temperature rise of accessible parts 
(see table next page) 
7.1.2 
Temperature rise of parts providing 
electrical insulation   
(see table next page) 
7.1.3 
Temperature rise of parts acting as a 
support or as a mechanical barrier   
(see table next page) 
7.1.4 
Temperature rise of windings   
(see table next page) 
7.1.5 
Parts not subject to a limit under 
7.1.1 to 7.1.4   
(see table next page) 
 
 
 - 
IEC 60065, 6th edition : 1998
 - 
- Page 9 of 36 - 
 
 
   
 Order 
No. 
14648
 
 
 
HEATING  
 
∆t =    ( R2 - R1)        x (234,5 + t1) - (t2 - t1) 
                              R1 
t1 =   
25,3 °C 
25,3 °C
 
 
t2 =   
26,5 °C 
25,3 °C
 
 
Test voltage   
207 V 
254,4 V
 
 
Winding 
R1/
Ω R2/Ω 
∆t measured 
∆t allowed *) 
Insulation 
class 
  Main transf. pr. winding (207V) 
3,88 
4,97 
71,8 
95 
Class B 
  Sub transf. pr. winding (207V) 
2846 
3274 
37,9 
85 
Class E 
 
 
 
 
 
 
  Main transf. pr. winding (254,4V) 
3,88 
5,12 
83,0 
95 
Class B 
  Sub transf. pr. winding (254,4V) 
2846 
3401 
50,7 
85 
Class E 
Other measured parts 
∆t measured 
at 207V 
∆t measured 
at 254,4V 
∆t allowed *) 
Main transformer core 
54,4 
62,5 
95 
Sub transformer core 
32,7 
41,1 
85 
Diode, D601 body 
58,0 
62,7 
PWB near D601 
47,2 
50,0 
85 
PWB near Q321 
49,3 
62,7 
85 
Regulator, IC65 heat-sink 
32,1 
46,6 
TR, Q319 body 
54,5 
71,0 
PWB near Q319 
38,1 
48,1 
85 
E. Capacitor, C601 body 
24,1 
27,4 
Main heat-sink 
51,9 
64,9 
Power cord bushing 
17,8 
19,6 
60 
Top enclosure above main heat-sink 
30,5 
36,1 
65 **) 
Top enclosure above main transformer 
24,0 
28,0 
40 
Switch button 
0,4 
0,8 
50 
Comments  
 
 
No other parts were observed to create any hazard due to temperature rise.   
 
Test wall condition: 50 cm at top, 10 cm at other side 
 
 
*) Temperature rise limits for Singapore is 10K less. 
 
 
**) Directly covering part for heat-sink.    The top cover is supplied with ventilation 
openings covering most of the top cover. This indicate emission of heat from internal 
parts and the opening area is therefore not likely to be touched during normal use.
 
 
 
 
 - 
IEC 60065, 6th edition : 1998
 - 
- Page 10 of 36 - 
 
 
   
 Order 
No. 
14648
 
 
 
7.2 
Softening temperature of insulating 
material supporting parts 
conductively connected to the mains 
carrying a current > 0,2 A at least 
150 
°C  
No temperature measured during heating test and fault 
cond. tests requires this test (7.2) to be performed. 
Tested parts 
Temperature   
under normal 
operating con- 
ditions (°C) 
Temperature  
under fault 
conditions  
            (°C) 
Softening 
temperature 
            (°C) 
 
 
 
 
 
 
 
 
 
 
 
 
 
8 CONSTRUCTIONAL 
REQUIREMENTS WITH REGARD 
TO THE PROTECTION AGAINST 
ELECTRIC SHOCK   
 
8.1 
Conductive parts covered by 
lacquer, paper, untreated textile 
oxide films and beads etc. 
considered to be bare   
Considered 
8.2 
Shock hazard when changing 
voltage setting device, fuse-links or 
handling drawers etc.   
Operation “By hand” not possible 
8.3 
Insulation of hazardous live parts not 
provided by hygroscopic material   
No hygroscopic materials 
8.4 
Risk of electric shock from 
accessible parts, including when 
covers are removed by hand. 
No cover removable by hand. 
8.5 
Class I equipment 
 
Class II equipment 
 
Basic insulation between hazardous 
live parts and earthed accessible 
parts  
 
 
Resistors bridging basic insulation 
complying with 14.1 a)   
 
 
Capacitors bridging basic insulation 
complying with 14.2.1 a)   
 
 
Basic insulation bridged by 
components complying with 14.3.4.3 
 
 
Protective earth contact 
 
 
 - 
IEC 60065, 6th edition : 1998
 - 
- Page 11 of 36 - 
 
 
   
 Order 
No. 
14648
 
 
 
8.6 
Class II equipment and Class II 
constructions within Class I 
equipment 
 
 
 
Reinforced or double insulation 
between hazardous live parts and 
accessible parts   
Double/Reinforced insulation complies with requirements 
specified in clause 10 and 13. 
 
Components bridging reinforced or 
double insulation complying with 
14.1 a) or 14.3   
The apparatus has an isolating transformer 
 
Basic and supplementary insulation 
each being bridged by a capacitor 
complying with 14.2.1 a)   
 
 
Reinforced or double insulation 
being bridged by 2 capacitors in 
series complying with 14.2.1 a)   
 
 
Reinforced or double insulation 
being bridged by a single capacitor 
complying with 14.2.1 b)   
 
8.7 
Basic insulation between parts at 
35 V to 71 V (peak) a.c. or 60 V to 
120 V d.c. and accessible parts   
No parts at 35-71V(peak) a.c. or 60-120V d.c. 
 
 
Reinforced or double insulation 
between circuits operating at 
voltages between 35 V and 71 V 
(peak) a.c. or between 60 V and 
120 V d.c. and hazardous live parts 
at higher voltage   
No parts at 35-71V(peak) a.c. or 60-120V d.c. 
 
 
Separation by Class II isolating 
transformer  
Isolating transformer according to 14.3.2. (Class II) 
 
Separation by Class I transformer   
 
 
Separation by earthed conductive 
part  
 
8.8 
Basic or supplementary insulation 
≥ 0,4 mm (mm)      
 
 
Reinforced insulation 
≥ 0,4 mm 
(mm) 
Insulation in transformer, ref. 14.3. 
 
Thin sheet insulation used inside the 
enclosure
 
 
 
Basic or supplementary insulation, at 
least two layers, each meeting 10.3 
 
 
Basic or supplementary insulation, 
three layers any two of which meet 
10.3  
 
 
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