specified at TJ = –40°C to +150°C,
VIN = 13.5 V, IOUT = 100 µA, COUT = 2.2 µF, 1
mΩ < COUT ESR < 2 Ω, CIN = 1 µF (unless otherwise noted)
Figure 6-1 Accuracy vs
Temperature
Figure 6-3 Line
Regulation vs VIN
Figure 6-5 Load Regulation vs
IOUT
Figure 6-7 Line Regulation at 100
mA![PSRR vs Frequency and
IOUT GUID-20201130-CA0I-CHLS-XSV0-FSKXMDTLKTWJ-low.gif](/ods/images/ZHCSMK9/GUID-20201130-CA0I-CHLS-XSV0-FSKXMDTLKTWJ-low.gif)
COUT = 10 µF (X7R 50 V), VOUT
= 5 V |
Figure 6-9 PSRR vs Frequency and
IOUT![Noise vs Frequency GUID-20201110-CA0I-SWLR-HT7S-BSP53KHL3JZK-low.gif](/ods/images/ZHCSMK9/GUID-20201110-CA0I-SWLR-HT7S-BSP53KHL3JZK-low.gif)
COUT = 10 µF (X7R 50 V), VOUT
= 3.3 V |
Figure 6-11 Noise vs Frequency![Line Transients GUID-35E533E2-0E92-4CA0-B82C-1006AF8E9AFE-low.gif](/ods/images/ZHCSMK9/GUID-35E533E2-0E92-4CA0-B82C-1006AF8E9AFE-low.gif)
VOUT = 5 V, IOUT = 1 mA,
VIN = 13.5 V to 45 V, slew rate = 2.7 V/µs |
Figure 6-13 Line Transients![Load Transient, No Load to
100 mA GUID-20201007-CA0I-FSKW-WKPD-JCF9J7V48ZKN-low.gif](/ods/images/ZHCSMK9/GUID-20201007-CA0I-FSKW-WKPD-JCF9J7V48ZKN-low.gif)
VOUT = 5 V, IOUT = 0 mA to
100 mA, slew rate = 1 A/µs, COUT = 10 µF |
Figure 6-15 Load Transient, No Load to
100 mA![Load Transient, 45 mA to
105 mA GUID-20201007-CA0I-XXDB-P5P2-KJBVXVQCXJ7T-low.gif](/ods/images/ZHCSMK9/GUID-20201007-CA0I-XXDB-P5P2-KJBVXVQCXJ7T-low.gif)
VOUT = 5 V, IOUT = 45 mA to
105 mA, slew rate = 0.1 A/µs, COUT = 10 µF |
Figure 6-17 Load Transient, 45 mA to
105 mA![Load
Transient, No Load to 150-mA GUID-20201007-CA0I-18PB-ZCVC-V2MGLJCQXZCX-low.gif](/ods/images/ZHCSMK9/GUID-20201007-CA0I-18PB-ZCVC-V2MGLJCQXZCX-low.gif)
VOUT = 5 V, IOUT = 0 mA to
150 mA, slew rate = 1 A/µs, COUT = 10 µF |
Figure 6-19 Load
Transient, No Load to 150-mA![Load
Transient, 150-mA to 350-mA GUID-20201130-CA0I-XCQM-S32M-J3NRHRCMKZGG-low.gif](/ods/images/ZHCSMK9/GUID-20201130-CA0I-XCQM-S32M-J3NRHRCMKZGG-low.gif)
VOUT = 5 V, IOUT = 150 mA to
350 mA, slew rate = 0.1 A/µs, COUT = 10 µF |
Figure 6-21 Load
Transient, 150-mA to 350-mA![Load
Transient, No Load to 500-mA Rising Edge GUID-20201110-CA0I-MGWM-BFBS-34N5WWZ9XW7D-low.gif](/ods/images/ZHCSMK9/GUID-20201110-CA0I-MGWM-BFBS-34N5WWZ9XW7D-low.gif)
VOUT = 5 V, IOUT = 0 mA to
500 mA, slew rate = 1 A/µs, COUT = 10 µF |
|
Figure 6-23 Load
Transient, No Load to 500-mA Rising Edge
Figure 6-25 Quiescent Current
(IQ) vs VIN
Figure 6-27 Ground Current
(IGND) vs IOUT
Figure 6-29 Ground Current at 500
µA
Figure 6-31 Undervoltage Lockout
(UVLO) Threshold vs Temperature
Figure 6-33 Thermal Shutdown![Line Regulation vs
VIN GUID-93C70F71-1601-4E17-A3C7-6357BB18FD59-low.gif](/ods/images/ZHCSMK9/GUID-93C70F71-1601-4E17-A3C7-6357BB18FD59-low.gif)
VOUT = 5 V, IOUT = 150
mA |
Figure 6-2 Line Regulation vs
VIN
Figure 6-4 Line
Regulation vs VIN
Figure 6-6 Line Regulation at 50
mA
Figure 6-8 Dropout Voltage
(VDO) vs IOUT![Noise vs Frequency GUID-20201110-CA0I-S5VB-XBQ6-QXC5QRT30CJS-low.gif](/ods/images/ZHCSMK9/GUID-20201110-CA0I-S5VB-XBQ6-QXC5QRT30CJS-low.gif)
COUT = 10 µF (X7R 50 V), VOUT
= 5 V |
Figure 6-10 Noise vs Frequency![PSRR vs Frequency and
VIN GUID-20201203-CA0I-J2HR-C3ZJ-R81B48TGRMB1-low.gif](/ods/images/ZHCSMK9/GUID-20201203-CA0I-J2HR-C3ZJ-R81B48TGRMB1-low.gif)
COUT = 10 µF (X7R 50 V), IOUT
= 500 mA, VOUT = 5 V |
Figure 6-12 PSRR vs Frequency and
VIN![Line Transients GUID-20201110-CA0I-RPCJ-PGK3-H80MQP1DJN1X-low.gif](/ods/images/ZHCSMK9/GUID-20201110-CA0I-RPCJ-PGK3-H80MQP1DJN1X-low.gif)
VOUT = 5 V, IOUT = 100 mA,
VIN = 5.5 V to 6.5 V, rise time = 1 µs |
Figure 6-14 Line Transients![Load
Transient, No Load to 100-mA Rising Edge GUID-20201007-CA0I-W14F-5C3L-LKPXN4MCRBNS-low.gif](/ods/images/ZHCSMK9/GUID-20201007-CA0I-W14F-5C3L-LKPXN4MCRBNS-low.gif)
VOUT = 5 V, IOUT = 0 mA to
100 mA, slew rate = 1 A/µs, COUT = 10 µF |
Figure 6-16 Load
Transient, No Load to 100-mA Rising Edge![Load
Transient, 45-mA to 105-mA Rising Edge GUID-20201007-CA0I-CCDT-KMW0-VHVXRW627VWF-low.gif](/ods/images/ZHCSMK9/GUID-20201007-CA0I-CCDT-KMW0-VHVXRW627VWF-low.gif)
VOUT = 5 V, IOUT = 45 mA to
105 mA, slew rate = 0.1 A/µs, COUT = 10 µF |
Figure 6-18 Load
Transient, 45-mA to 105-mA Rising Edge![Load
Transient, No Load to 150-mA Rising Edge GUID-20201007-CA0I-FJZJ-DHRN-FX7XBHP8LVSD-low.gif](/ods/images/ZHCSMK9/GUID-20201007-CA0I-FJZJ-DHRN-FX7XBHP8LVSD-low.gif)
VOUT = 5 V, IOUT = 0 mA to
150 mA, slew rate = 1 A/µs, COUT = 10 µF |
Figure 6-20 Load
Transient, No Load to 150-mA Rising Edge![Load
Transient, No Load to 500 mA GUID-20201109-CA0I-SDXJ-PRJK-HDFZW8CMC5GN-low.gif](/ods/images/ZHCSMK9/GUID-20201109-CA0I-SDXJ-PRJK-HDFZW8CMC5GN-low.gif)
VOUT = 5 V, IOUT = 0 mA to
500 mA, slew rate = 1 A/µs, COUT = 10 µF |
Figure 6-22 Load
Transient, No Load to 500 mA![Output Current Limit vs
Temperature GUID-20201110-CA0I-4XJR-X0VW-MXRV8WN2KNJM-low.gif](/ods/images/ZHCSMK9/GUID-20201110-CA0I-4XJR-X0VW-MXRV8WN2KNJM-low.gif)
VIN = VOUT + 1 V,
VOUT = 90% × VOUT(NOM) |
Figure 6-24 Output Current Limit vs
Temperature
Figure 6-26 Quiescent Current
(IQ) vs VIN
Figure 6-28 Ground Current at 100 mA ![Startup Plot Inrush
Current GUID-20201202-CA0I-S178-SQ58-2QTXZHM3QF22-low.gif](/ods/images/ZHCSMK9/GUID-20201202-CA0I-S178-SQ58-2QTXZHM3QF22-low.gif)
VIN = 13.5 V, VOUT = 5 V,
IOUT = 150 mA, COUT = 10
µF |
|
Figure 6-30 Startup Plot Inrush
Current
Figure 6-32 Output Voltage vs Injected
Current
Figure 6-34 Stability, ESR vs
COUT