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NCV47821 Datasheet(PDF) 5 Page - ON Semiconductor

Part # NCV47821
Description  3.3 V to 20 V Adjustable Dual LDO with Adjustable Current Limit and Diagnostic Features
PDF  15 Pages
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Manufacturer  ONSEMI [ON Semiconductor]
Direct Link  http://www.onsemi.com
Logo ONSEMI - ON Semiconductor

NCV47821 Datasheet(HTML) 5 Page - ON Semiconductor

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NCV47821
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Table 6. ELECTRICAL CHARACTERISTICS Vin = 13.5 V, VEN1,2 = 3.3 V, VDE = 0 V, RCSO1,2 = 0 W, CCSO1,2 = 1 mF, Cin = 1 mF,
Cout1,2 = 10 mF, Min and Max values are valid for temperature range −40°C v TJ v +150°C unless noted otherwise and are guaranteed
by test, design or statistical correlation. Typical values are referenced to TJ = 25°C (Note 8)
Parameter
Test Conditions
Symbol
Min
Typ
Max
Unit
REGULATOR OUTPUTS
Output Voltage (Accuracy %) (Note 9)
Vin = Vin_min to 40 V
Iout1,2 = 5 mA to 200 mA
Vout1,2
−3
+3
%
Line Regulation (Note 9)
Vin = Vin_min to (Vout_nom1,2 + 20 V)
Iout1,2 = 5 mA
Regline1,2
0.1
1.0
%
Load Regulation
Vin = (Vout_nom1,2 + 8.5 V)
Iout1,2 = 5 mA to 200 mA
Regload1,2
0.4
1.4
%
Dropout Voltage (Note 10)
Vout_nom1,2 = 5 V, Iout1,2 = 200 mA
VDO1,2 = Vin − Vout1,2
VDO1,2
250
500
mV
DISABLE AND QUIESCENT CURRENTS
Disable Current
VEN1,2 = 0 V, Vout_nom1,2 = 5 V,
−40
°C v TJ v +125°C
IDIS
0.1
10
mA
Quiescent Current, Iq = Iin − (Iout1 +Iout2) Iout1 = Iout2 = 500 mA, Vin = (Vout_nom + 8.5 V)
Iq
0.6
1.0
mA
Quiescent Current, Iq = Iin – (Iout1 +Iout2) Iout1 = Iout2 = 200 mA, Vin = (Vout_nom + 8.5 V)
Iq
15.5
25
mA
CURRENT LIMIT PROTECTION
Current Limit
Vout1,2 = 0.9 x Vout_nom1,2
Vin = (Vout_nom1,2 + 8.5 V)
ILIM1,2
300
mA
PSRR & NOISE
Power Supply Ripple Rejection (Note 11) f = 100 Hz, 0.5 Vp−p1,2
PSRR1,2
75
dB
Output Noise Voltage (Note 11)
f = 10 Hz to 100 kHz, Cb1,2 = 10 nF
Vn1,2
137
mVrms
ENABLE
Enable Input Threshold Voltage
Logic Low (OFF)
Logic High (ON)
Vout1,2 v 0.1 V
Vout1,2 w 0.9 x Vout_nom1,2 (Vout_nom1,2 = 5 V)
Vth(EN1,2)
0.99
1.8
1.9
2.31
V
Enable Input Current
VEN1,2 = 3.3 V, Vout_nom1,2 = 5 V
IEN1,2
2
8
20
mA
Turn On Time
from Enable ON to 90 % of Vout
Iout1,2 = 100 mA, Cb1,2 = 10 nF,
Rn1 = 82 kW, Rn2 = 27 kW
ton
1.7
ms
OUTPUT CURRENT SENSE
CSO Voltage Level at Current Limit
Vout1,2 = 0.9 x Vout_nom1,2,
(Vout_nom1,2 = 5 V) RCSO1,2 = 1 kW
VCSO_Ilim1,2
2.448
(−4%)
2.55
2.652
(+4%)
V
CSO Transient Voltage Level
CCSO1,2 = 4.7 mF, RCSO1,2 = 1 kW
Iout1,2 pulse from 10 mA to 300 mA, tr = 1 ms
VCSO1,2
3.3
V
Output Current to CSO Current Ratio
(Note 12)
VCSO1,2 = 2 V, Iout1,2 = 10 mA to 300 mA
(Vout_nom1,2 = 5 V)
Iout1,2/
ICSO1,2
(−5%)
100
(+5%)
CSO Current at no Load Current
VCSO1,2 = 0 V, Iout1,2 = 0 mA,
(Vout_nom1,2 = 5 V)
ICSO_off1,2
10
mA
Product parametric performance is indicated in the Electrical Characteristics for the listed test conditions, unless otherwise noted. Product
performance may not be indicated by the Electrical Characteristics if operated under different conditions.
8. Performance guaranteed over the indicated operating temperature range by design and/or characterization tested at TA [ TJ. Low duty
cycle pulse techniques are used during testing to maintain the junction temperature as close to ambient as possible.
9. Minimum input voltage Vin_min is 4.4 V or (Vout_nom1,2 + 1 V) whichever is higher. Vout_nom1,2 measured at ADJ1,2 pin due to excluding
Rn1 and Rn2 accuracy.
10. Measured when the output voltage Vout1,2 has dropped by 2% of Vout_nom1,2 from the nominal valued obtained at Vin = Vout1,2 + 8.5 V.
11. Values based on design and/or characterization.
12. Not guaranteed in dropout.



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