Texas Instruments SWIFT™, D-CAP3™, Eco-Mode™ series Voltage Regulators

Introduction, stock information and FAQs of SWIFT™, D-CAP3™, Eco-Mode™ series DC DC Voltage Regulators

In this article, you will be informed about the features, applications, PDF datasheets, alternative items, and the most recent stock and cost data of Texas Instruments SWIFT™, D-CAP3™, Eco-Mode™ series DC DC Voltage Regulators.

Applications

  • Advanced driver assistance systems (ADAS)
  • Factory automation & control
Associated Products

Part NumberDescriptionStockRFQ
TPS62090RGTRConv DC-DC 2.5V to 6V Synchronous Step Down Single-Out 0.8V to 6V 3A 16-Pin VQFN EP T/R45000RFQ
TPS54527DDARIC REG BUCK ADJ 5A SYNC 8SOPWR87500RFQ
TPS62086RLTRVoltage Regulators - Switching Regulators 3A SD Cnvtr w/ DCS-Control78RFQ
TPS62745DSSRIC REG BUCK PROG 0.3A 12WSON30000RFQ
TPS62095RGTRIC REG BUCK ADJ 4A SYNC 16QFN3250RFQ
TPS62150AQRGTRQ1IC REG BUCK ADJ 1A SYNC 16QFN2150RFQ
TPS62177DQCTIC REG BUCK 3.3V 0.5A 10WSON1500RFQ
TPS54628DDARIC REG BUCK SYNC ADJ 6A 8SOPWR30000RFQ
TPS62150RGTTIC REG BUCK ADJ 1A SYNC 16QFN985RFQ
TPS54295PWPRIC REG BUCK ADJ 2A DL 16HTSSOP6200RFQ
TPS54318RTETIC REG BUCK ADJ 3A SYNC 16QFN0RFQ
TPS62142RGTTIC REG BUCK 3.3V 2A SYNC 16QFN6000RFQ
TPS57040QDRCRQ1IC REG BUCK ADJ 0.5A 10SON2685RFQ
TPS62140RGTTIC REG BUCK ADJ 2A SYNC 16QFN198RFQ
TPS54320RHLRIC REG BUCK ADJ 3A SYNC 14QFN30000RFQ
TPS54060ADGQRIC REG BCK SPLIT RAIL ADJ 10MSOP12610RFQ
TPS53318DQPTVoltage Regulators - Switching Regulators Hi Eff 8A SD Reg12RFQ
TPS561208DDCT4.5V TO 17V INPUT, 2A OUTPUT, SY4000RFQ
TPS549A20RVETIC REG BUCK ADJ 15A 28VQFN7RFQ
TPS54560BDDA4.5-V to 60-V input, 5-A, step-down DC-DC converter with Eco-mode™ 8-SO PowerPAD -40 to 1502789RFQ
Technical Documents

Texas Instruments SWIFT™, D-CAP3™, Eco-Mode™ series PMIC - Voltage Regulators are advanced power management integrated circuits (PMICs) designed to provide efficient, reliable, and cost-effective power solutions for a wide range of applications. The SWIFT™ series offers a wide range of features, including high-efficiency synchronous buck regulators, low-noise linear regulators, and a wide range of protection features. The D-CAP3™ series provides high-efficiency, low-noise, and low-dropout (LDO) regulators with a wide range of output current and voltage options. The Eco-Mode™ series provides a wide range of features, including high-efficiency synchronous buck regulators, low-noise linear regulators, and a wide range of protection features. All of these series offer a wide range of features, including high-efficiency, low-noise, and low-dropout (LDO) regulators with a wide range of output current and voltage options.


Features


• Texas Instruments SWIFT™, D-CAP3™, Eco-Mode™ series PMIC - Voltage Regulators - DC DC Switching Regulators offer high efficiency, low quiescent current, and fast transient response.

• They feature a wide input voltage range, adjustable output voltage, and a wide range of output current capabilities.

• The devices are available in a variety of packages, including SOT-23, SOIC, and DIP.

• They are designed to meet the needs of a wide range of applications, including automotive, industrial, and consumer.

• The devices are designed to be highly reliable and are protected against over-voltage, over-current, and short-circuit conditions.


Applications


• Automotive: The devices are suitable for use in automotive applications, such as powertrain, body electronics, and infotainment systems.

• Industrial: The devices are suitable for use in industrial applications, such as motor control, power supplies, and lighting.

• Consumer: The devices are suitable for use in consumer applications, such as portable electronics, home appliances, and consumer electronics.


Frequently Asked Questions

What are the Alternative Products of Texas Instruments SWIFT™, D-CAP3™, Eco-Mode™ series PMIC - Voltage Regulators?

1. Linear Technology LT8610 Series 2. ON Semiconductor NCP15XB Series 3. STMicroelectronics STEVAL-ISA100V1 Series 4. Microchip Technology MCP19111 Series 5. NXP Semiconductors MC33932 Series 6. Renesas Electronics R2A20500 Series 7. Infineon Technologies BCR401 Series 8. Analog Devices ADP5090 Series 9. Maxim Integrated MAX17263 Series 10. Fairchild Semiconductor FAN5093 Series

What are the differences between the types of Texas Instruments SWIFT™, D-CAP3™, Eco-Mode™ series PMIC - Voltage Regulators?

Texas Instruments SWIFT™ series PMIC - Voltage Regulators:  The SWIFT™ series of PMICs are designed to provide high-efficiency, low-noise power management solutions for a wide range of applications. These devices feature a wide input voltage range, low quiescent current, and high-efficiency power conversion. The SWIFT™ series also offers a variety of features such as programmable output voltage, adjustable current limit, and over-temperature protection.  Texas Instruments D-CAP3™ series PMIC - Voltage Regulators:  The D-CAP3™ series of PMICs are designed to provide high-efficiency, low-noise power management solutions for a wide range of applications. These devices feature a wide input voltage range, low quiescent current, and high-efficiency power conversion. The D-CAP3™ series also offers a variety of features such as programmable output voltage, adjustable current limit, and over-temperature protection. Additionally, the D-CAP3™ series offers a unique “Dynamic-CAP” feature which allows the device to dynamically adjust the output voltage based on the load current.  Texas Instruments Eco-Mode™ series PMIC - Voltage Regulators:  The Eco-Mode™ series of PMICs are designed to provide high-efficiency, low-noise power management solutions for a wide range of applications. These devices feature a wide input voltage range, low quiescent current, and high-efficiency power conversion. The Eco-Mode™ series also offers a variety of features such as programmable output voltage, adjustable current limit, and over-temperature protection. Additionally, the Eco-Mode™ series offers a unique “Eco-Mode” feature which allows the device to dynamically adjust the output voltage based on the load current, while also reducing the quiescent current to save power.