at TA = 25°C, VIN = 1.4 V or
VIN = VOUT(nom) + 0.4 V (whichever is greater),
VBIAS = open, VOUT(nom) = 0.5 V, VEN = 1.1 V,
CIN = 10 μF, COUT = 47 μF, CNR/SS = 0 nF, no
CFF, and PG pin pulled up to VIN with 100 kΩ (unless
otherwise noted)
![PSRR
vs Frequency and IOUT GUID-32E86519-C7C6-41F3-A83C-97900667CE3C-low.gif](/ods/images/SBVS291C/GUID-32E86519-C7C6-41F3-A83C-97900667CE3C-low.gif)
VIN = 1.1 V, VBIAS = 5 V,
COUT = 47 μF || 10 μF || 10 μF, CNR/SS = 10 nF,
CFF = 10 nF |
Figure 6-43 PSRR
vs Frequency and IOUT![PSRR
vs Frequency and VBIAS GUID-AB2A3807-DAC1-4263-9C30-E20527FF8F6D-low.gif](/ods/images/SBVS291C/GUID-AB2A3807-DAC1-4263-9C30-E20527FF8F6D-low.gif)
VIN = 1.4 V, IOUT = 1 A,
COUT = 47 μF || 10 μF || 10 μF, CNR/SS = 10 nF,
CFF = 10 nF |
Figure 6-45 PSRR
vs Frequency and VBIAS![PSRR
vs Frequency and VOUT With Bias GUID-04B2AB2C-BA5B-4F42-A04C-C43FEFFF1283-low.gif](/ods/images/SBVS291C/GUID-04B2AB2C-BA5B-4F42-A04C-C43FEFFF1283-low.gif)
VIN = VOUT + 0.3 V or
VIN = 1.1 V (whichever is greater),
VBIAS = 5 V, IOUT = 3 A,
COUT = 47 μF || 10 μF || 10 μF, CNR/SS = 10 nF,
CFF = 10 nF |
Figure 6-47 PSRR
vs Frequency and VOUT With Bias![PSRR
vs Frequency and COUT GUID-B5E49F9D-AB08-4BBB-91EC-DB95D724CA92-low.gif](/ods/images/SBVS291C/GUID-B5E49F9D-AB08-4BBB-91EC-DB95D724CA92-low.gif)
VIN = 1.4 V, VBIAS = 5 V,
VOUT = 1 V, IOUT = 3 A, CNR/SS = 10 nF,
CFF = 10 nF |
Figure 6-49 PSRR
vs Frequency and COUT![PSRR
vs Frequency and IOUT
(VOUT = 5 V) GUID-689EA635-4789-4B45-8B7B-30A4781DD0C4-low.gif](/ods/images/SBVS291C/GUID-689EA635-4789-4B45-8B7B-30A4781DD0C4-low.gif)
VIN = 5.5 V, VOUT = 5 V,
IOUT = 3 A, COUT = 47 μF || 10
μF || 10 μF, CNR/SS = 10 nF, CFF =
10 nF |
Figure 6-51 PSRR
vs Frequency and IOUT
(VOUT = 5 V)![Output Voltage Noise vs VOUT GUID-EF15EB22-619A-4AFA-99AE-19255FC35E5E-low.gif](/ods/images/SBVS291C/GUID-EF15EB22-619A-4AFA-99AE-19255FC35E5E-low.gif)
VIN = VOUT + 0.3 V or
VIN = 1.1 V (whichever is greater),
VBIAS = 5 V for VIN ≤ 2.2 V,
COUT = 47 μF || 10 μF || 10 μF,
CNR/SS = 10 nF, CFF = 10 nF,
RMS noise BW = 10 Hz to 100 kHz |
|
Figure 6-53 Output Voltage Noise vs VOUT![Output Noise vs Frequency and VIN GUID-20200826-CA0I-X1CR-13GM-QJJZWD58TPDL-low.gif](/ods/images/SBVS291C/GUID-20200826-CA0I-X1CR-13GM-QJJZWD58TPDL-low.gif)
VOUT = 0.7 V, IOUT = 3 A,
COUT = 47 μF || 10 μF || 10 μF,
CNR/SS = 10 nF, CFF = 10 nF,
RMS noise BW = 10 Hz to 100 kHz |
Figure 6-55 Output Noise vs Frequency and VIN![Output Noise vs Frequency and CFF GUID-20200826-CA0I-PP1W-DZCZ-BJBRD6FVQQSP-low.gif](/ods/images/SBVS291C/GUID-20200826-CA0I-PP1W-DZCZ-BJBRD6FVQQSP-low.gif)
VOUT = 0.7 V, VIN = 1.1 V,
VBIAS = 5 V, IOUT = 3 A,
COUT = 47 μF || 10 μF || 10 μF,
CNR/SS = 10 nF, RMS noise BW = 10 Hz to
100 kHz |
Figure 6-57 Output Noise vs Frequency and CFF![Start-Up Waveform vs Time and CNR/SS GUID-56997569-58A1-410E-BA51-33A5044AC97E-low.gif](/ods/images/SBVS291C/GUID-56997569-58A1-410E-BA51-33A5044AC97E-low.gif)
VIN = 1.2 V, VOUT = 0.7 V,
VBIAS = 5 V, IOUT = 3 A, COUT = 47 μF ||
10 μF || 10 μF, CFF = 10 nF |
|
Figure 6-59 Start-Up Waveform vs Time and CNR/SS![Load
Transient vs Time and VOUT With Bias GUID-B20ABF10-3826-4A0D-9797-2FB4E6FEF21E-low.gif](/ods/images/SBVS291C/GUID-B20ABF10-3826-4A0D-9797-2FB4E6FEF21E-low.gif)
VIN = VOUT + 0.5 V,
VBIAS = 5 V, IOUT = 3 A to 100
mA, slew rate = 1 A/μs,
CNR/SS = CFF = 10 nF, COUT = 47 μF ||
10 μF || 10 μF |
Figure 6-61 Load
Transient vs Time and VOUT With Bias![Load
Transient vs Time and VOUT Without Bias GUID-A3044997-1BDA-44C6-B6D2-C2E4A664BD18-low.gif](/ods/images/SBVS291C/GUID-A3044997-1BDA-44C6-B6D2-C2E4A664BD18-low.gif)
VIN = VOUT + 0.5 V,
VOUT = 0.7 V, IOUT = 3 A to
100 mA, COUT =
47 μF || 10 μF || 10 μF, CNR/SS =
CFF = 10 nF, slew rate = 1 A/μs |
Figure 6-63 Load
Transient vs Time and VOUT Without Bias![Load
Transient vs Time and DC Load GUID-2B2CCD73-193D-4A91-B6F0-6D7976306F0B-low.gif](/ods/images/SBVS291C/GUID-2B2CCD73-193D-4A91-B6F0-6D7976306F0B-low.gif)
VIN = 1.2 V, VOUT = 0.7 V,
VBIAS = 5 V, slew rate = 1 A/μs, COUT = 47 μF ||
10 μF || 10 μF, CNR/SS = CFF = 10
nF |
Figure 6-65 Load
Transient vs Time and DC Load![Dropout Voltage vs VIN With Bias GUID-2AE3AD04-C37F-49F6-9F2E-C263C2A4622D-low.gif](/ods/images/SBVS291C/GUID-2AE3AD04-C37F-49F6-9F2E-C263C2A4622D-low.gif)
IOUT = 3 A, VBIAS = 5.0
V |
Figure 6-67 Dropout Voltage vs VIN With Bias![Dropout Voltage vs IOUT With Bias GUID-10C4ACC6-4FE4-4DBA-9889-5FFA8A8BEA61-low.gif](/ods/images/SBVS291C/GUID-10C4ACC6-4FE4-4DBA-9889-5FFA8A8BEA61-low.gif)
VIN = 1.1 V, VBIAS = 5.0
V |
Figure 6-69 Dropout Voltage vs IOUT With Bias
Figure 6-71 Load
Regulation vs VOUT
Figure 6-73 Load
Regulation vs IOUT (3.3-V Output)![Line
Regulation vs VIN GUID-B7CCED47-B84E-418E-A253-B050B99A72CE-low.gif](/ods/images/SBVS291C/GUID-B7CCED47-B84E-418E-A253-B050B99A72CE-low.gif)
VOUT = 0.5 V, IOUT = 5
mA |
Figure 6-75 Line
Regulation vs VIN
Figure 6-77 Line
Regulation vs VIN (5.15-V Output)
Figure 6-79 Bias
Pin Current With Bias
Figure 6-81 Shutdown Current vs VIN With Bias
Figure 6-83 VIN UVLO vs Temperature
Figure 6-85 Enable Threshold vs Temperature
Figure 6-87 PG
Voltage vs PG Current Sink![PSRR
vs Frequency and VIN With Bias GUID-2895A1B7-637D-41B7-9464-3EE45C177B83-low.gif](/ods/images/SBVS291C/GUID-2895A1B7-637D-41B7-9464-3EE45C177B83-low.gif)
IOUT = 3 A, VBIAS = 5 V,
COUT = 47 μF || 10 μF || 10 μF, CNR/SS = 10 nF,
CFF = 10 nF |
Figure 6-44 PSRR
vs Frequency and VIN With Bias![PSRR
vs Frequency and VIN GUID-17DAABC1-237E-4110-88BF-CE5FAA9369A4-low.gif](/ods/images/SBVS291C/GUID-17DAABC1-237E-4110-88BF-CE5FAA9369A4-low.gif)
IOUT = 1 A, COUT = 47 μF ||
10 μF || 10 μF, CNR/SS = 10 nF, CFF = 10
nF |
Figure 6-46 PSRR
vs Frequency and VIN![PSRR
vs Frequency and VIN
(VOUT = 3.3 V) GUID-FADB61CB-6FFB-4FA9-8783-ADF022C42D0D-low.gif](/ods/images/SBVS291C/GUID-FADB61CB-6FFB-4FA9-8783-ADF022C42D0D-low.gif)
IOUT = 3 A, COUT = 47 μF ||
10 μF || 10 μF, CNR/SS = 10 nF, CFF = 10
nF |
|
Figure 6-48 PSRR
vs Frequency and VIN
(VOUT = 3.3 V)![PSRR
vs Frequency and VIN
(VOUT = 5 V) GUID-C719FFDD-1B58-4B28-9616-9CAE05FB73C8-low.gif](/ods/images/SBVS291C/GUID-C719FFDD-1B58-4B28-9616-9CAE05FB73C8-low.gif)
VOUT = 5 V, IOUT = 3 A,
COUT = 47 μF || 10 μF || 10 μF, CNR/SS = 10 nF,
CFF = 10 nF |
Figure 6-50 PSRR
vs Frequency and VIN
(VOUT = 5 V)![VBIAS PSRR vs Frequency GUID-FF93C709-BF09-498D-8046-7DCAD6001F34-low.gif](/ods/images/SBVS291C/GUID-FF93C709-BF09-498D-8046-7DCAD6001F34-low.gif)
VIN = VOUT + 0.3 V,
VOUT = 1 V, IOUT = 3 A,
COUT = 47 μF || 10 μF || 10 μF,
CNR/SS = 10 nF, CFF = 10
nF |
Figure 6-52 VBIAS PSRR vs Frequency![Output Noise vs Frequency and VOUT GUID-20200826-CA0I-VGHW-TQ8Q-JS2G9QT0VVVD-low.gif](/ods/images/SBVS291C/GUID-20200826-CA0I-VGHW-TQ8Q-JS2G9QT0VVVD-low.gif)
VIN = VOUT + 0.3 V or
VIN = 1.1 V (whichever is greater),
VBIAS = 5 V for VIN ≤ 2.2 V,
IOUT = 3 A, COUT = 47 μF || 10
μF || 10 μF, CNR/SS = 10 nF, CFF =
10 nF, RMS noise BW = 10 Hz to 100 kHz |
Figure 6-54 Output Noise vs Frequency and VOUT![Output Noise vs Frequency and CNR/SS GUID-20200826-CA0I-49JN-SFT8-XPWWMHJ9MPGD-low.gif](/ods/images/SBVS291C/GUID-20200826-CA0I-49JN-SFT8-XPWWMHJ9MPGD-low.gif)
VOUT = 0.7 V, VIN = 1.1 V,
VBIAS = 5 V, IOUT = 3 A,
COUT = 47 μF || 10 μF || 10 μF,
CFF = 10 nF, RMS noise BW = 10 Hz to 100
kHz |
Figure 6-56 Output Noise vs Frequency and CNR/SS![Output Noise vs Frequency (5-V
Output) GUID-20200826-CA0I-GDGF-PGPS-LTCPKKVTSTMF-low.gif](/ods/images/SBVS291C/GUID-20200826-CA0I-GDGF-PGPS-LTCPKKVTSTMF-low.gif)
VIN = VOUT + 0.3 V,
VBIAS = 5 V, IOUT = 3 A,
COUT = 47 μF || 10 μF || 10 μF,
CFF = 10 nF, RMS noise BW = 10 Hz to 100
kHz |
Figure 6-58 Output Noise vs Frequency
(5-V
Output)![Load
Transient vs Time and VOUT With Bias GUID-CDD62893-2F3F-44E5-AE3F-22EBAA88B1FA-low.gif](/ods/images/SBVS291C/GUID-CDD62893-2F3F-44E5-AE3F-22EBAA88B1FA-low.gif)
VIN = VOUT + 0.5 V,
VBIAS = 5 V, IOUT = 100 mA to
3 A, slew rate = 1 A/μs,
CNR/SS = CFF = 10 nF, COUT = 47 μF ||
10 μF || 10 μF |
Figure 6-60 Load
Transient vs Time and VOUT With Bias![Load
Transient vs Time and VOUT Without Bias GUID-0BE1D923-9854-4EB5-A2A3-3E14D7A92CF6-low.gif](/ods/images/SBVS291C/GUID-0BE1D923-9854-4EB5-A2A3-3E14D7A92CF6-low.gif)
VIN = VOUT + 0.5 V,
VOUT = 0.7 V, IOUT = 100 mA to
3 A, COUT = 47
μF || 10 μF || 10 μF, CNR/SS = CFF
= 10 nF, slew rate = 1 A/μs |
Figure 6-62 Load
Transient vs Time and VOUT Without Bias![Load
Transient vs Time and Slew Rate GUID-6D5B64D8-393B-4518-966B-23149B4D009F-low.gif](/ods/images/SBVS291C/GUID-6D5B64D8-393B-4518-966B-23149B4D009F-low.gif)
VOUT = 5 V, IOUT, DC = 100
mA, IOUT = 100 mA to 3 A, COUT = 47 μF ||
10 μF || 10 μF, CNR/SS = CFF = 10
nF |
Figure 6-64 Load
Transient vs Time and Slew Rate
Figure 6-66 Dropout Voltage vs VIN Without Bias
Figure 6-68 Dropout Voltage vs IOUT Without Bias
Figure 6-70 Dropout Voltage vs IOUT (High VIN)
Figure 6-72 Load
Regulation vs IOUT![Load
Regulation vs IOUT (5-V Output) GUID-AF6C57CF-018F-44A6-8F2A-D2083E601523-low.gif](/ods/images/SBVS291C/GUID-AF6C57CF-018F-44A6-8F2A-D2083E601523-low.gif)
VIN = 5.55 V, VOUT = 5.15
V |
Figure 6-74 Load
Regulation vs IOUT (5-V Output)![Line
Regulation With Bias GUID-62BF2410-9777-4E40-9381-A16E0B3CBA3C-low.gif](/ods/images/SBVS291C/GUID-62BF2410-9777-4E40-9381-A16E0B3CBA3C-low.gif)
VOUT = 0.5 V, VIN = 1.1 V,
IOUT = 5 mA |
Figure 6-76 Line
Regulation With Bias
Figure 6-78 Ground Pin Current vs VIN
Figure 6-80 Shutdown Current vs VIN
Figure 6-82 INR/SS Current vs VIN
Figure 6-84 VBIAS UVLO vs Temperature
Figure 6-86 PG
Voltage vs PG Current Sink
Figure 6-88 PG
Threshold vs Temperature