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PDF PKC2113 Data sheet ( Hoja de datos )

Número de pieza PKC2113
Descripción (PKC2111 / PKC2113) DC/DC Converter
Fabricantes Ericsson Microelectronics 
Logotipo Ericsson Microelectronics Logotipo



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No Preview Available ! PKC2113 Hoja de datos, Descripción, Manual

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• Regulated single, dual and
triple outputs
• Low profile 10.7 mm (0.42 in.),
allows 0.8" board pitch – 0.6 in. if
recessed in the printed board
• Proven MTBF >2,000,000 hours at
+75 °C case temperature and a rugged
mechanical construction
• Efficiency 85% typ, at full load. No
extra heatsink up to +85°C ambient.
Max.+115°C case
• Low EMI in conformance with class A
in EN 55022 and
FCC part 15J
PKC 2000 I
15–18 W DC/DC Power Modules
24 V Input Series
The 15–18 watts PKC series DC/DC power modules
are especially designed for decen-tralized 24 and
28 Vdc systems with distributed on-board DC/DC
converters. Their low profile allows very narrow board
pitches and slim designs. By using thickfilm tech-
nology, which provides a high degree of integration
as well as efficient thermal management, and by
utilizing a 300 kHz switching frequency based on
proprietary drive & control circuits, these highly
reliable products can be used in demanding
applications within e.g. cellular radio, medical,
industrial and aircraft industry.
By using magnetic integration of the output voltages
in the feedback loop, all outputs are kept within a
±3% total tolerance band. Input to output isolation is
500 Vdc and mechanical ruggedness – specified in
conformance with IEC 68-2 – is close to requirements
for discrete components. Extreme temperature
conditions can be met since the PKC power modules
can operate with full output power in ambient
temperatures from –45 to +85°C, or up to +115°C
case temperature also making the products ideal for
applications within not temperature controlled
environments.
The PKC series are manufactured using highly
automated manufacturing lines with a world-class
quality commitment and a five-year warranty.
Ericsson Microelectronics AB has been an ISO 9001
certified supplier since 1991. For a complete product
program please reference the back cover.
E

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PKC2113 pdf
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PKC 2111 PI
TC = 0 …+95°C, VI = 18...36 V unless otherwise specified.
Output
Characteristics
Conditions
Output voltage initial
VOi setting and accuracy
Output voltage
VO tolerance band
Idling circuit voltage
Line regulation
Load regulation
ttr
Load transient
recovery time
Vtr Load transient voltage
Tcoeff
tr
Short term drift
Temperature coefficient
Ramp-up time
ts Start-up time
IO
PO max
Ilim
Isc
Output current
Max output power
Current limiting
threshold
Short curcuit current
VO ac
Output ripple & noice
SVR
Supply voltage
rejection (ac)
* See also Power derating p. 12
TC = +25°C, IO = 3 A, VI = 26 V
IO= 0.1 … 1.0 ´ IOmax
and long term drift
IO = 0 A
IO = IO max
IO= 0.1 … 1.0 ´ IOmax, VI = 26 V
IO=0.1 … 1.0 ´ IOmax, VI = 26 V
load step = 2.4 A
di
dt
<1A/ms
t = 0...10 minutes
IO =IO max, TC < TC max
IO=
0.1… 1.0 ´ IO max,
VI = 26 V
0.1 … 0.9 ´ VO
From VI connection
to VO = 0.9 ´ VOi
*
TC < TC max
VO = 0.2 … 0.5 V, TA = 25°C Hick-up
20 Hz … 5 MHz
IO = IO max
DC … 50 MHz
1 MHz bandwidth
f = 100 Hz sine wave, 1 Vp-p, VI = 26 V
(SVR = 20 log (1 Vp-p/VOp-p))
min
5.02
4.90
0
15
3.1
50
Output 1
typ
5.06
100
+250
–250
–15
– 0.5
20
30
<0.5
max
5.11
5.25
5.25
90
150
3.0
100
120
35
Unit
V
V
V
mV
mV
ms
mV
mV
mV
mV/°C
ms
ms
A
W
A
A
mVp-p
mVp-p
mVrms
dB
Miscellaneous
Characteristics
h Efficiency
Pd Power dissipation
Conditions
IO = IOmax, VI = 26 V
IO = IO max
EN/LZT 146 24 R1A (Replaces EN/LZT 137 01 R3) © Ericsson Microelectronics AB, June 2000
min
80.5
typ
81.5
3.4
max
Unit
%
W
5

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PKC2113 arduino
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PKC 2135 PI
TC = 0…+95°C, VI = 18...36V unless otherwise specified. IO1nom = 2.0A, IO2nom = 0.2A, IO3nom = 0.5A
Output
Characteristics
Conditions
Output voltage initial
VOi setting and accuracy TC = +25 °C, IO = IO nom, VI = 26 V
Output 1
min typ max
Output 2
min typ max
Output 3
min typ max
Unit
5.03 5.06 5.10 11.90 12.10 12.30 –4.99 –5.06 –5.14
V
Output voltage
VO tolerance band
Idling voltage
IO = 0.1 … 1.0 ´ IOnom, IO 2, 3= IO nom
and long term drift
IO = 0 A
4.90
5.25 11.52
12.36 4.75
5.25
5.25
15.00 16.00
6.00 6.50
V
V
Line regulation
Load regulation
IO = IO nom
IO1= 0.1 … 1.0 ´ IO nom, IO2, 3 = IO nom,
VI = 26 V
90 336 110 mV
190 mV
ttr
Load transient
recovery time
IO= 0.1 … 1.0 ´ IO nom, VI = 26 V
load step = 80% of IOnom
Vtr
Load transient voltage
di
dt
<1A/ms
100
+250
–250
200
+600
–600
100
+250
–250
ms
mV
mV
Short term drift
t = 0...10 minutes
–15
mV
Tcoeff
tr
ts
IO
Temperature coefficient IO =IOnom, TC < TC max
Ramp-up time
Start-up time
IO= 0.1 … 0.9 ´ VO
0.1 … 1.0 ´ IO nom, From VI
VI = 26 V
connection to
VO = 0.9 ´ VOi
Output current
PO max Max total output power *
– 0.5
20
30
0 3.0
–1.0
20
30
0 0.6
min 15
–0.5 mV/°C
20 ms
30 ms
0 1.0 A
W
Ilim
Current limiting
threshold
TC < TC max
min 1.02 ´ PO max**
Isc Short curcuit current
VOac Output ripple & noice
VO =0.2 … 0.5 V, TA= 25°C Hick-up
20 Hz… 5 MHz
IO = IO nom
DC … 50 MHz
<0.5
100
130
<0.5
110
150
<0.5
100
120
A
mVp-p
mVp-p
SVR
Supply voltage
rejection (ac)
1 MHz bandwidth
f = 100 Hz sine wave, 1 Vp-p, VI = 26 V
(SVR = 20 log (1 Vp-p/VOp-p))
50
40
43
40
50
35 mVrms
dB
* See also Power derating p. 13. Max output power on output 2 and 3 jointly is min 10 W
** Ilim on each output is set by the total load
Miscellaneous
Characteristics
h Efficiency
Pd Power dissipation
Conditions
IO = IOnom, VI = 26 V
IO = IO nom
min
typ
max
Unit
79.5
81
3.5
%
W
EN/LZT 146 24 R1A (Replaces EN/LZT 137 01 R3) © Ericsson Microelectronics AB, June 2000
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