Datasheet
DCV01 Series
www.ti.com
SBVS014A –AUGUST 2000–REVISED DECEMBER 2013
ELECTRICAL CHARACTERISTICS
At T
A
= +25°C, unless otherwise noted.
PARAMETER TEST CONDITIONS MIN TYP MAX UNIT
OUTPUT
Power 100% full load 0.97 W
Ripple O/P capacitor = 1-μF, 50% load 20 mV
PP
Room to cold 0.046 %/°C
Voltage vs temperature
Room to hot 0.016 %/°C
INPUT
Voltage range on V
S
–10% 10%
ISOLATION
1-s flash test 1.5 kVrms
Voltage
UL1950
(1)
1.5 kVrms
LINE
Regulation 1 %/1% of V
S
SWITCHING/SYNCHRONIZATION
Oscillator frequency (f
OSC
) Switching frequency = f
OSC
/ 2 800 kHz
Sync input low
(2)
0 0.4 V
Sync input current
(2)
V
SYNC
= +2 V 75 μA
Disable time 2 μs
Capacitance loading on SYNC
IN
pin External 3 pF
RELIABILITY
Demonstrated T
A
= +55°C 75 FITS
THERMAL SHUTDOWN
IC temperature at shutdown +150 °C
Shutdown current 3 mA
TEMPERATURE
Operating range –40 +85 °C
(1) During UL1950 recognition test only. UL file # E199929.
(2) For more information on synchronization, refer to Application Report SBAA035., External Synchronization of the DCP01/02, DCR01/02,
and DCV01 Series of DC/DC Converters.
ELECTRICAL CHARACTERISTICS PER DEVICE
At T
A
= +25°C, unless otherwise noted.
INPUT OUTPUT LOAD NO LOAD BARRIER LEAKAGE
VOLTAGE VOLTAGE REGULATION CURRENT EFFICIENCY CAPACITANCE CURRENT
(V) (V) (%) (mA) (%) (pF) (μA)
V
S
V
NOM
I
Q
C
ISO
10% TO 100%
75% LOAD
(1)
LOAD
(2)
0% LOAD 100% LOAD V
ISO
= 750 Vrms V
ISO
= 750 Vrms
PRODUCT MIN TYP MAX MIN TYP MAX TYP MAX TYP TYP TYP TYP
DCV010505 4.5 5 5.5 4.75 5 5.25 23 31 20 78 3.6 0.9
DCV010505D 4.5 5 5.5 ±4.25 ±5 ±5.75 19 32 23 80 3.8 0.9
DCV010512 4.5 5 5.5 11.4 12 12.6 23 38 30 85 5.1 1.2
DCV010512D 4.5 5 5.5 ±11.4 ±12 ±12.6 19 37 40 82 4.0 1.0
DCV010515 4.5 5 5.5 14.25 15 15.75 30 42 34 84 3.8 0.9
DCV010515D 4.5 5 5.5 ±14.25 ±15 ±15.75 27 41 42 85 4.7 1.1
DCV011512D 13.5 15 16.5 ±11.4 ±12 ±12.6 11 39 19 78 4.2 1.0
DCV011515D 13.5 15 16.5 ±14.25 ±15 ±15.75 12 39 20 79 4.2 1.0
DCV012405 21.6 24 26.4 4.75 5 5.25 13 23 14 77 3.8 0.9
DCV012415D 21.6 24 26.4 ±14.25 ±15 ±15.75 12 35 17 76 5.3 1.3
(1) 100% load current = 1 W/V
NOM
typical.
(2) Load regulation = (V
OUT
at 10% – V
OUT
at 100%)/V
OUT
at 75%.
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