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Model
ENCOUNTER (serv.man6)
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82
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3.02 MB
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PDF
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EMC - CB Certificate
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Device
Audio
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encounter-sm6.pdf
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JBL ENCOUNTER (serv.man6) EMC - CB Certificate ▷ View online

IEC 60950
Clause
Requirement 
 Test
Result - Remark
Verdict
TRF No.:
 I950___D
TRF originator: FIMKO
Page 27 of 74
<E 2060978E01>
4.4.6
Fire enclosure construction
Protection against emission of
flame, molten metal, flaming or
glowing particles or drops by
fire enclosure.
There are no openings at
whole enclosure.
P
4.4.7
Doors and covers
No door or cover.
N
4.4.8
Flammable liquids
No flammable liquids in this
unit.
N
5
THERMAL AND ELECTRICAL REQUIREMENTS
P
5.1
Heating
P
Heating tests
(see appended table)
P
5.2
Earth leakage current
P
5.2.1
General
The leakage current was
measured from supply to
conductive parts (AC/DC
output connector) and to 10cm
by 20cm metal foil wrapped on
accessible non-conductive
parts (plastic enclosure).
P
5.2.2
Leakage current
P
Test voltage (V) ..................................................... : (see attached table)
Measured current (mA) ......................................... : (see attached table)
Max. allowed current (mA) .................................... : 0.25mA
5.2.3
Single-phase equipment
See 5.2.2
P
Test voltage (V) ..................................................... :
Measured current (mA) ......................................... :
Max. allowed current (mA) .................................... :
5.2.4
Three-phase equipment
Single phase equipment.
N
Test voltage (V) ..................................................... :
Measured current (mA) ......................................... :
Max. allowed current (mA) .................................... :
5.2.5
Equipment with earth leakage current exceeding
3,5 mA
Class II equipment.
N
Test voltage (V) ..................................................... :
IEC 60950
Clause
Requirement 
 Test
Result - Remark
Verdict
TRF No.:
 I950___D
TRF originator: FIMKO
Page 28 of 74
<E 2060978E01>
Measured current (mA) ......................................... :
Max. allowed current (mA) .................................... :
Cross-sectional area (mm²) of internal protective
earthing conductor  ................................................ :
Warning label
N
5.3
Electric strength
P
5.3.1
General
All tests voltages were applied
for 1 minute in the chamber
after the humidity test of 2.2.3
and in warm conditions after
the heating test of 5.1.
No isolation breakdown was
observed (results see
appended tables).
P
5.3.2
Test procedure
(see appended table)
P
5.4
Abnormal operating and fault conditions
P
5.4.2
Motors
No motor.
N
5.4.3
Transformers
With the shorted o/p of the
transformers, the unit will
heated up until the thermal fuse
inside the transformer opened
(rated 115°C or 130°C thermal
fuse used).
Result of the short tests see
5.4.6 appended table.
P
5.4.4
Compliance of operational insulation
P
Method used ............................................................: Short Circuit test
Results see 5.4.6 appended
table.
P
5.4.5
Electromechanical components in secondary
circuits
No electromechanical
components.
N
5.4.6
Other components and circuits
The power supply is protected
by the following means:
- Over temperature and over   
current protection by           
thermal fuse build inside      
transformer
Results see appended table.
P
IEC 60950
Clause
Requirement 
 Test
Result - Remark
Verdict
TRF No.:
 I950___D
TRF originator: FIMKO
Page 29 of 74
<E 2060978E01>
5.4.7
Test in any expected condition and foreseeable
misuse
With the output overloaded, the
unit will heated up until the
thermal fuse inside the
transformer opened
(115/130°C thermal fuse used).
See appended table 5.4
P
5.4.8
Unattended use of equipment having thermostats,
temperature limiters etc.
None of them are used.
N
5.4.9
Compliance
No fire propagated beyond the
equipment. No molten metal
was emitted. Electric strength
test primary 
 SELV was
passed.
P
5.4.10
Ball-pressure test of thermoplastic parts;
impression shall not exceed 2 mm
Results see 5.4.10 Table
P
6
CONNECTION TO TELECOMMUNICATION NETWORKS
Equipment is not intended be connected to TNV.
N
6.1
General
N
6.2
TNV circuits
N
6.2.1.1
Limits of the TNV circuits
N
6.2.1.1 a)
TNV-1 circuits
N
6.2.1.1 b)
TNV-2 and TNV-3 circuits
N
6.2.1.2
Separation from other circuits and from accessible
parts
N
Voltage (V) in SELV circuits, TNV-1 circuits and
accessible conductive parts in event of single 
insulation fault or component failure .......................:
N
6.2.1.3
Operating voltages generated externally
N
Voltage (V) in SELV circuit, TNV-1 circuit or
accessible conductive part ......................................:
N
6.2.1.4
Separation from hazardous voltages ......................:
N
Insulation between TNV circuit and circuit at
hazardous voltage
N
Method used ............................................................:
N
6.2.1.5
Connection of TNV circuits to other circuits
N
IEC 60950
Clause
Requirement 
 Test
Result - Remark
Verdict
TRF No.:
 I950___D
TRF originator: FIMKO
Page 30 of 74
<E 2060978E01>
TNV circuit supplied conductively from a secondary
circuit .......................................................................:
N
6.2.2.1
Protection against contact with bare conductive
parts of TNV-2 and TNV-3 circuits
N
Test with test finger
N
Test with test probe
N
6.2.2.2
Battery compartments
N
Marking next to door/on door
N
6.3
Protection of telecommunication network service personnel, and users of other
equipment connected to the telecommunication network, from hazards in the
equipment
N
6.3.1
Protection from hazardous voltages
N
6.3.2
Use of protective earthing
N
Language of installation instructions .......................:
N
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