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TLV75518PDBVR データシート(PDF) 9 Page - Texas Instruments

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部品番号 TLV75518PDBVR
部品情報  500-mA, Low IQ, Small Size, Low Dropout Regulator
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メーカー  TI1 [Texas Instruments]
ホームページ  http://www.ti.com
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TLV75518PDBVR データシート(HTML) 9 Page - Texas Instruments

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TLV755P
www.ti.com
SBVS320 – NOVEMBER 2017
Product Folder Links: TLV755P
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Copyright © 2017, Texas Instruments Incorporated
Feature Description (continued)
7.3.3 Internal Foldback Current Limit
The TLV755P has an internal current limit that protects the regulator during fault conditions. The current limit is a
hybrid brick-wall scheme until the output voltage is less than 0.4 × VOUT(NOM). When the voltage drops below 0.4
× VOUT(NOM), a foldback current limit is implemented that scales back the current as the output voltage
approaches GND. When the output shorts, the LDO supplies a typical current of ISC. The output voltage is not
regulated when the device is in current limit. In this condition, the output voltage is the product of the regulated
current and the load resistance. When the device output shorts, the PMOS pass transistor dissipates power
[(VIN – VOUT) × ISC] until thermal shutdown is triggered and the device turns off. After the device cools down, the
internal thermal shutdown circuit turns the device back on. If the fault condition continues, the device cycles
between current limit and thermal shutdown.
The foldback current-limit circuit limits the current that is allowed through the device to current levels lower than
the minimum current limit at nominal VOUT current limit (ICL) during start up. Figure 6 shows typical current limit
values. If the output is loaded by a constant-current load during start up, or if the output voltage is negative when
the device is enabled, then the load current demanded by the load may exceed the foldback current limit and the
device may not rise to the full output voltage. For constant-current loads, disable the output load until the output
rises to the nominal voltage.
Figure 6. TLV755 Current Limit vs VOUT
7.3.4 Thermal Shutdown
Thermal shutdown protection disables the output when the junction temperature rises to approximately 165°C.
Disabling the device eliminates the power dissipated by the device, allowing the device to cool. When the
junction temperature cools to approximately 155°C, the output circuitry is enabled again. Depending on power
dissipation, thermal resistance, and ambient temperature, the thermal protection circuit may cycle on and off.
This cycling limits regulator dissipation and protects the circuit from damage as a result of overheating.
Activating the thermal shutdown feature usually indicates excessive power dissipation as a result of the product
of the (VIN – VOUT) voltage and the load current. For reliable operation, limit junction temperature to a maximum
of 125°C. To estimate the margin of safety in a complete design, increase the ambient temperature until the
thermal protection is triggered; use worst-case loads and signal conditions.
The internal protection circuitry protects against overload conditions but is not intended to be activated in normal
operation. Continuously running the device into thermal shutdown degrades device reliability.


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