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SC418 Datasheet(PDF) 6 Page - Semtech Corporation

Part # SC418
Description  EcoSpeedTM DC-DC Buck Controller with Programmable LDO
PDF  30 Pages
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Manufacturer  SEMTECH [Semtech Corporation]
Direct Link  http://www.semtech.com
Logo SEMTECH - Semtech Corporation

SC418 Datasheet(HTML) 6 Page - Semtech Corporation

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SC418
6
Electrical Characteristics (continued)
Parameter
Conditions
Min
Typ
Max
Units
High-Side Driver (DH, BST, LX)
Peak Current(2)
VDDP = 5V
2.0
A
On Resistance
R
DH_PULL-UP, LX < 0.5V, VDDP = 5V
3.0
6.0
Ω
R
DH_PULL-UP, LX > 0.5V, VDDP = 5V
1.0
2.0
Ω
R
DH_PULL-DOWN, VDDP = 5V
0.6
1.2
Ω
Rise Time(2)
C
DH-LX = 3nF, VDDP = 5V
22
ns
Fall Time(2)
C
DH-LX = 3nF, VDDP = 5V
12
ns
Propagation Delay(2)
From FB Comparator Input to DH
30
45
60
ns
Shoot-thru Protection Delay(2)
10
20
30
ns
Bootstrap Switch Resistance
10
Ω
Low-Side Driver (DL, VDDP, PGND)
Peak Current(2)
VDDP = 5V
4.0
A
On Resistance
R
DL_PULL-UP, VDDP = 5V
1.3
2.1
Ω
R
DL_PULL-DOWN, VDDP = 5V
0.50
0.86
Ω
Rise Time(2)
C
DL = 3nF, VDDP = 5V
7
ns
Fall Time(2)
C
DL = 3nF, VDDP = 5V
3.5
ns
Notes:
(1) VIN UVLO is programmable using a resistor divider from VIN to ENL to AGND. The ENL voltage is compared to an internal reference.
(2) Guaranteed by design.
(3) For VDDA less than 4.5V, the On-Time may be limited by the VDDA supply voltage and by V
IN. See the TON Limitations and VDDA Supply
Voltage section in the Applications Information.
(4) The Zero Cross Detector and the Power-Save and Ultrasonic Power-Save features are not supported for VDDA less than 4.5V.
(5) The ENL pin will enable the LDO with 1.0V typical. The ENL pin’s VIN ULVO function will disable the switcher unless the ENL pin exceeds the
V
IN UVLO Threshold.
(6) The switch-over threshold is the maximum voltage differential between the VLDO and VOUT pins which ensures that VLDO will internally
switch-over to VOUT. The non-switch-over threshold is the minimum voltage differential between the VLDO and VOUT pins which ensures
that VLDO will not switch-over to VOUT.
(7) The LDO drop out voltage is the voltage at which the LDO output drops 2% below the nominal regulation point.



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