參數(shù)資料
型號(hào): PKS4110SI
廠(chǎng)商: ERICSSON POWER MODULES AB
元件分類(lèi): 電源模塊
英文描述: 1-OUTPUT 13 W DC-DC REG PWR SUPPLY MODULE
封裝: 36.80 X 41.70 X 9.70 MM, POWER, METAL, MODULE-6
文件頁(yè)數(shù): 5/12頁(yè)
文件大小: 1323K
代理商: PKS4110SI
2
EN/LZT 146 29 R1A (Replaces EN/LZT 137 11 R6) Ericsson Microelectronics AB, June 2000
General
Absolute Maximum Ratings
Characteristics
min
max
Unit
TC
Case temperature1)
– 40
+100
°C
TS
Storage temperature
– 40
+110
°C
VI
Input voltage
0
75
V dc
VRC
Remote control voltage pin 1
0
7.0
V dc
VISO
Input to output isolation
1,500
V dc
Characteristics
Conditions
min
typ
max
Unit
VI
Input voltage range
36
72
V
VIoff
Turn-off input voltage
(See Operating Information)
VIon
Turn-on input voltage
(See Operating Information)
CI
Input capacitance
0.47
mF
IO =0
1.4
W
A
IIrush
Input idling power
PIi
Inrush current
VI = 53V
t = 5 ms
1
PRC
Input stand-by power
0.7
W
RC connected to pin 2
Input
TC < TCmax unless otherwise specified
Environmental Characteristics
Characteristics
Test procedure & conditions
Peak acceleration
50 g
Shock duration
1 ms
Number of cycles
5 in each axis
Temperature
– 40 °C …+125 °C
Number of cycles
200
Shock
(Half sinus)
Temperature
change
Vibration
(Sinusoidal)
MIL-STD-883D
Method 2007.2
Frequency
20…2000 Hz, 2 minutes
Acceleration
10 g
Number of cycles
8 in each axis
MIL-STD-883D
Method 2002.3
MIL-STD-202F
Method 107
Accelerated
damp heat
MIL-STD-202F
Method 103
with bias
Temperature
85 °C
Humidity
85% RH
Duration
1000 hours
The PKS Series DC/DC power modules are
designed in accordance with EN 60 950,
Safety of information technology equipment
including electrical business equipment.
The PKS power modules are recognized by
UL and meet the applicable requirements in
UL 1950 Safety of information technology equip-
ment and the applicable Canadian safety re-
quirements.
The DC/DC power module shall be installed
in an end-use equipment and considerations
should be given to measuring the case tem-
perature to comply with TCmax when in op-
eration. Abnormal component tests are con-
ducted with the input protected by an exter-
nal 3 A fuse. The need for repeating these
tests in the end-use appliance shall be con-
sidered if installed in a circuit having higher
rated devices.
When the supply to the DC/DC power mod-
ule is isolated and meets all the requirements
for SELV (<60Vdc), the output is considered
to remain within SELV limits (level 3). The
isolation is an operational insulation in ac-
cordance with EN 60 950.
The DC/DC power module is intended to be
supplied by isolated secondary circuitry and
shall be installed in compliance with the re-
quirements of the ultimate application. If
they are connected to a 60 V DC system re-
inforced insulation must be provided in the
power supply that isolates the input from
the mains. The power module is evaluated
with the secondary output referenced to
earth.
The terminal pins are only intended for
connection to mating connectors of internal
wiring inside the end-use equipment.
The galvanic isolation is verified in an
electric strength test. Test voltage (VISO)
between input and output is 1,500 Vdc for
60 s. In production the test duration may be
decreased to 1 s.
The capacitor between input and output has
a value of 1 nF and the leakage current is less
than 5 A @ 50 Vdc.
Safety
Stress in excess of Absolute Maximum
Ratings may cause permanent damage. Ab-
solute Maximum Ratings, sometimes re-
ferred to as no destruction limits, are nor-
mally tested with one parameter at a time
exceeding the limits of Output data or Elec-
trical Characteristics. If exposed to stress
above these limits, function and performance
may degrade in an unspecified manner.
1)
Corresponding ambient temperature range
(TA) at full output power is – 40 to +85 °C
mounted on a printed circuit board in free
convection. See also Thermal Data and
Thermal Derating in free convection.
2)
The input voltage range 36…72 V dc meets
the European Telecom Standard prETS 300
132-2 Nominal input voltage range in 48 V
and 60 V dc power systems, – 40.5…–57.0 V
and –50.0… – 72.0 V respectively. At input
voltages exceeding 72 V (abnormal voltage)
the power loss will be higher than at normal
input voltage and TC must be limited to max
+85 °C. Absolute max continuous input
voltage is 75 V dc. Output characteristics will
be marginally affected at input voltages
exceeding 72 V.
Note:
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