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TLV70130DBVT Datasheet(PDF) 13 Page - Texas Instruments

Part # TLV70130DBVT
Description  TLV701 24-V, 150-mA, 3.2-μA Quiescent Current, Low-Dropout Linear Regulator
PDF  29 Pages
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Manufacturer  TI2 [Texas Instruments]
Direct Link  https://www.ti.com
Logo TI2 - Texas Instruments

TLV70130DBVT Datasheet(HTML) 13 Page - Texas Instruments

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7.4 Device Functional Modes
Table 7-1 provides a quick comparison between the normal and dropout modes of operation.
Table 7-1. Device Functional Mode Comparison
OPERATING MODE
PARAMETER
VIN
IOUT
Normal
VIN > VOUT(nom) + VDO
IOUT < ICL
Dropout
VIN < VOUT(nom) + VDO
IOUT < ICL
7.4.1 Normal Operation
The device regulates to the nominal output voltage under the following conditions:
• The input voltage is greater than the nominal output voltage plus the dropout voltage (VOUT(nom) + VDO)
• The output current is less than the current limit (IOUT < ICL)
• The device junction temperature is greater than –40°C and less than +125°C
7.4.2 Dropout Operation
If the input voltage is lower than the nominal output voltage plus the specified dropout voltage, but all other
conditions are met for normal operation, the device operates in dropout mode. In this mode, the output voltage
tracks the input voltage. During this mode, the transient performance of the device becomes significantly
degraded because the pass transistor is in the ohmic or triode region, and acts as a switch. Line or load
transients in dropout can result in large output voltage deviations.
When the device is in a steady dropout state (defined as when the device is in dropout, VIN < VOUT(NOM) + VDO,
directly after being in a normal regulation state, but not during start up), the pass transistor is driven into the
ohmic or triode region. When the input voltage returns to a value greater than or equal to the nominal output
voltage plus the dropout voltage (VOUT(NOM) + VDO), the output voltage can overshoot for a short period of time
while the device pulls the pass transistor back into the linear region.
www.ti.com
TLV701
SBVS161A – NOVEMBER 2011 – REVISED APRIL 2023
Copyright © 2023 Texas Instruments Incorporated
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