TPS562210ADDFR

Buck Switching Regulator IC Positive Adjustable 0.76V 1 Output 2A SOT-23-8


  • Manufacturer: Texas Instruments
  • NO: 815-TPS562210ADDFR
  • Package: SOT-23-8
  • Datasheet: pdf
  • Stock: 589
  • Description: Buck Switching Regulator IC Positive Adjustable 0.76V 1 Output 2A SOT-23-8(Kg)

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SPECIFICATIONS

Parameters
Function Step-Down
Voltage - Input (Max) 17V
Output Type Adjustable
Input Voltage-Nom 12V
Output Configuration Positive
Voltage - Output (Min/Fixed) 0.76V
Frequency - Switching 650kHz
Synchronous Rectifier Yes
Length 2.9mm
Thickness 850μm
Type Parameter
Factory Lead Time 16 Weeks
Mounting Type Surface Mount
Surface Mount YES
Operating Temperature -40°C~85°C TA
Series D-CAP2™, Eco-Mode™
Pbfree Code yes
Moisture Sensitivity Level (MSL) 1 (Unlimited)
Terminal Finish Matte Tin (Sn)
Terminal Form GULL WING
Base Part Number TPS562210
Number of Outputs 1
Output Voltage 7V
Voltage - Input (Min) 4.5V
Analog IC - Other Type SWITCHING REGULATOR
Current - Output 2A
Topology Buck
Control Technique PULSE WIDTH MODULATION
Height 1.1mm
Width 1.6mm
RoHS Status ROHS3 Compliant
Lifecycle Status ACTIVE (Last Updated: 4 days ago)
Package / Case SOT-23-8 Thin, TSOT-23-8
Number of Pins 8
Packaging Tape & Reel (TR)
JESD-609 Code e3
Part Status Active
Number of Terminations 8
Terminal Position DUAL
Terminal Pitch 0.65mm

Product Description: TPS562210ADDFR Synchronous Step-Down Voltage Regulator


The TPS562210ADDFR is a highly efficient synchronous step-down voltage regulator designed to provide reliable power conversion and regulation for a wide range of applications. With its advanced features, compact form factor, and exceptional performance, this voltage regulator empowers designers to achieve efficient power management and improved system reliability.


Key Features:


Synchronous Buck Conversion: The TPS562210ADDFR uses synchronous buck conversion to efficiently step down input voltage to the desired output voltage, minimizing energy loss and heat generation.


Wide Input Voltage Range: With its wide input voltage range, the regulator can handle a variety of power sources, including batteries, adapters, and industrial power supplies.


High Efficiency: The voltage regulator offers high conversion efficiency, ensuring that a greater portion of input power is delivered to the load, resulting in less wasted energy.


Voltage Accuracy: The device provides accurate output voltage regulation, maintaining a stable output voltage despite variations in input voltage and load conditions.


Overcurrent and Thermal Protection: Built-in protection mechanisms such as overcurrent protection and thermal shutdown enhance the reliability of the regulator and safeguard against potential faults.


Applications:


The TPS562210ADDFR synchronous step-down voltage regulator finds applications across various industries and use cases, including:


Power Management: Integrate the regulator in power management circuits, voltage regulators, and DC-DC converters to efficiently regulate and deliver power to critical components.


Battery-Powered Devices: Implement the regulator in battery-powered devices, portable electronics, and IoT devices to efficiently manage and regulate power consumption.


Automotive Electronics: Utilize the regulator in automotive applications such as infotainment systems, lighting controls, and sensors to achieve stable and efficient power delivery.


Industrial Equipment: Incorporate the regulator in industrial automation systems, control panels, and motor drives to ensure consistent and reliable power supply.


Keyboard Compatibility:


The TPS562210ADDFR synchronous step-down voltage regulator is not directly associated with keyboard functionality, as its primary role is power conversion and regulation. However, in advanced keyboard systems that incorporate power management components or require efficient power utilization, the regulator could contribute to overall energy efficiency by optimizing power delivery to related subsystems.


In summary, the TPS562210ADDFR synchronous step-down voltage regulator offers efficient power conversion, voltage accuracy, and versatile applications. While not directly tied to typical keyboard functionality, it can indirectly play a role in enhancing energy efficiency and power management within advanced keyboard setups involving power-intensive components or subsystems.

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