Image shown is a representation only. Exact specifications should be obtain- ed from the product data sheet.

Texas Instruments LP873222RHDRQ1

Produttore Numero parte : LP873222RHDRQ1
Produttore : Texas Instruments
Descrizione : AUTOMOTIVE - MULTI PHASE
Stato senza piombo / Stato RoHS : Lead free / RoHS Compliant
Datasheet : LP873222RHDRQ1.PDF LP873222RHDRQ1 PDF
EDA / CAD Models : LP873222RHDRQ1 by SnapEDA
Quantità:
1 153 4012405 /Datasheets/IntegratedCircuits/lp873222-q1.pdf Texas-Instruments/LP873222RHDRQ1 4012405

Request for Quotation

Technical Parameters of LP873222RHDRQ1

Topology:Step-Down (Buck) (2), Linear (LDO) (2)
Function:Automotive
Frequency - Switching:2MHz
Voltage/Current - Output 1:0.7 V ~ 3.36 V, 2A
Voltage/Current - Output 2:0.7 V ~ 3.36 V, 2A
Voltage/Current - Output 3:0.8 V ~ 3.3 V, 300mA
w/LED Driver:No
w/Supervisor:No
w/Sequencer:No
Voltage - Supply:2.8 V ~ 5.5 V
Operating Temperature:-40~C ~ 125~C (TA)
Mounting Type:-
Package / Case:-
Supplier Device Package:-

Dettagli del prodotto

Overview

The LP873222RHDRQ1 is a high-performance Power Management Integrated Circuit (PMIC) designed and manufactured by Texas Instruments. It belongs to the PMIC - Voltage Regulators - Linear + Switching product type, offering exceptional power management capabilities for a wide range of applications. This versatile PMIC combines linear and switching voltage regulators, ensuring efficient power delivery and seamless transitions.

Features

1. Multiple Voltage Regulators: The LP873222RHDRQ1 integrates multiple voltage regulators, providing precise and reliable power supply for various components in a system.

2. High Efficiency: With advanced power management techniques, this PMIC achieves high efficiency, minimizing power losses and extending battery life.

3. Wide Input Voltage Range: The PMIC supports a wide input voltage range, allowing it to operate with different power sources and adapt to various system requirements.

4. Seamless Transitions: The LP873222RHDRQ1 enables seamless transitions between different power modes, ensuring smooth and uninterrupted operation of the system.

5. Protection Mechanisms: Built-in protection mechanisms such as overvoltage protection, overcurrent protection, and thermal shutdown safeguard the system and its components from potential damage.

6. Programmability: The PMIC offers programmability features, allowing system designers to customize power management parameters to optimize performance and meet specific application requirements.

7. Compact Package: The LP873222RHDRQ1 is available in a compact package, saving valuable board space and enabling integration into space-constrained designs.

Applications

The LP873222RHDRQ1 PMIC finds extensive applications in various industries and systems, including:

- Automotive Systems: It provides efficient power management for automotive electronic systems, such as infotainment systems, advanced driver-assistance systems (ADAS), and lighting systems.

- Industrial Equipment: The PMIC delivers reliable power supply and control for industrial equipment, including factory automation systems, robotics, and motor control applications.

- Consumer Electronics: It enables efficient power management in consumer electronic devices such as smartphones, tablets, portable gaming consoles, and wearable devices.

- Embedded Systems: The LP873222RHDRQ1 is well-suited for embedded systems, including IoT devices, smart home automation systems, and industrial IoT applications, ensuring optimal power delivery and performance.

With its versatile features, high efficiency, and comprehensive protection mechanisms, the LP873222RHDRQ1 PMIC from Texas Instruments is an excellent choice for demanding power management applications across various industries.

LP873222RHDRQ1 Related Products

Vendita calda

Indice delle parti elettroniche
Di più
# 0 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z

We value your privacy

Our website uses cookies to ensure you are getting the best browsing experience, serve personalized content, and analyze our traffic.
By clicking "Accept Cookies", you consent to our use of cookies. Privacy Policy