TLV75801 Series
500-mA, low-IQ, high-accuracy, adjustable ultra-low-dropout voltage regulator with enable
Manufacturer: Texas Instruments
Catalog(2 parts)
Part | Output Type | Protection Features | Control Features | Supplier Device Package | Voltage Dropout (Max)▲▼ | Mounting Type | Operating Temperature▲▼ | Operating Temperature▲▼ | Number of Regulators▲▼ | Voltage - Output (Min/Fixed)▲▼ | Output Configuration | Voltage - Output (Max)▲▼ | Package / Case | PSRR▲▼ | PSRR▲▼ | Current - Quiescent (Iq)▲▼ | Current - Output▲▼ | Voltage - Input (Max)▲▼ |
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Texas Instruments TLV75801PDBVTLinear Voltage Regulator IC Positive Adjustable 1 Output 500mA SOT-23-5 | Adjustable | Over Current, Over Temperature, UVLO | Enable | SOT-23-5 | 0.8799999952316284 V | Surface Mount | 125 °C | -40 °C | 1 ul | 0.550000011920929 V | Positive | 5.5 V | SC-74A, SOT-753 | 30 ul | 50 ul | 0.000035000000934815034 A | 0.5 A | 6 V |
Texas Instruments TLV75801PDRVTLinear Voltage Regulator IC Positive Adjustable 1 Output 500mA 6-WSON (2x2) | Adjustable | Over Current, Over Temperature, UVLO | Enable | 6-WSON (2x2) | 0.8799999952316284 V | Surface Mount | 125 °C | -40 °C | 1 ul | 0.550000011920929 V | Positive | 5.5 V | 30 ul | 50 ul | 0.000035000000934815034 A | 0.5 A | 6 V |
Key Features
• Input voltage range: 1.5 V to 6.0 VAdjustable output voltage:0.55 V to 5.5 VLow dropout:130 mV (max) at 500 mA (3.3 V OUT)High output accuracy: 0.7% (typical) and 1% (maximum over temperature)I Q: 25 µA (typical)Built-in soft-start with monotonic V OUT risePackages:2-mm × 2-mm WSON-6 (DRV)SOT23-5 (DBV)Active output dischargeInput voltage range: 1.5 V to 6.0 VAdjustable output voltage:0.55 V to 5.5 VLow dropout:130 mV (max) at 500 mA (3.3 V OUT)High output accuracy: 0.7% (typical) and 1% (maximum over temperature)I Q: 25 µA (typical)Built-in soft-start with monotonic V OUT risePackages:2-mm × 2-mm WSON-6 (DRV)SOT23-5 (DBV)Active output discharge
Description
AI
The TLV758P is an adjustable 500-mA low-dropout (LDO) regulator . This device is available in a small, 6-pin, 2-mm × 2-mm WSON package and a 5-pin SOT23 package and consumes very low quiescent current and provides fast line and load transient performance. The TLV758P features an ultra-low dropout of 130 mV at 500 mA that can help improve the power efficiency of the system.
The TLV758P is optimized for a wide variety of applications by supporting an input voltage range from 1.5 V to 6.0 V and an externally adjustable output range of 0.55 V to 5.5 V. The low output voltage enables this LDO to power the modern microcontrollers with lower core voltages.
The TLV758P is stable with small ceramic output capacitors, allowing for a small overall solution size. A precision band-gap and error amplifier provides high accuracy of 0.7% (max) at 25°C and 1% (max) over temperature (85°C). This device includes integrated thermal shutdown, current limit, and undervoltage lockout (UVLO) features. The TLV758P has an internal foldback current limit that helps reduce the thermal dissipation during short-circuit events.
The TLV758P is an adjustable 500-mA low-dropout (LDO) regulator . This device is available in a small, 6-pin, 2-mm × 2-mm WSON package and a 5-pin SOT23 package and consumes very low quiescent current and provides fast line and load transient performance. The TLV758P features an ultra-low dropout of 130 mV at 500 mA that can help improve the power efficiency of the system.
The TLV758P is optimized for a wide variety of applications by supporting an input voltage range from 1.5 V to 6.0 V and an externally adjustable output range of 0.55 V to 5.5 V. The low output voltage enables this LDO to power the modern microcontrollers with lower core voltages.
The TLV758P is stable with small ceramic output capacitors, allowing for a small overall solution size. A precision band-gap and error amplifier provides high accuracy of 0.7% (max) at 25°C and 1% (max) over temperature (85°C). This device includes integrated thermal shutdown, current limit, and undervoltage lockout (UVLO) features. The TLV758P has an internal foldback current limit that helps reduce the thermal dissipation during short-circuit events.