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DRV8353RSRGZR

IC MTR DRV MULTIPHAS 6-95V 48QFN

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Consulta le specifiche del prodotto per i dettagli del prodotto.

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DRV8353RSRGZR

IC MTR DRV MULTIPHAS 6-95V 48QFN

Gli ordini superiori a $ 200 hanno diritto a un regalo in stile cinese in edizione limitata.

Gli ordini superiori a $ 200 hanno diritto a un regalo in stile cinese in edizione limitata.

Gli ordini superiori a $ 1000 beneficiano di un'esenzione dalle spese di spedizione di $ 30.

Gli ordini superiori a $ 5000 beneficiano dell'esenzione dalle spese di spedizione e di transazione.

Queste offerte sono applicabili sia ai clienti nuovi che a quelli esistenti e sono valide dal 1 gennaio 2024 al 31 dicembre 2024.

  • Produttore:

    TI

  • Scheda dati:

    DRV8353RSRGZR datasheet

  • Pacchetto/custodia:

    VQFN-48

  • categoria di prodotto:

    Circuiti integrati RF

  • RoHS Status: Stato RoHS Lead free/RoHS Compliant

Invia la tua richiesta di preventivo adesso e prevediamo di fornirti un preventivo entro maggio 04, 2024. Effettua ora il tuo ordine e prevediamo di completare la transazione entro maggio 08, 2024. Ps: L'orario è secondo GMT+8:00.

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Azione:2500 PCS

Il nostro impegno è fornire preventivi tempestivi entro 12 ore. Per ulteriore assistenza, contattaci all'indirizzo sales@censtry.com.

DRV8353RSRGZR Dettagli del prodotto

1 Features

• 9 to 100-V, Triple Half-Bridge Gate Driver

– Optional Integrated Buck Regulator

– Optional Triple Low-Side Current Shunt Amplifiers

• Smart Gate Drive Architecture

– Adjustable Slew Rate Control For EMI Performance

– VGS Handshake and Minimum Dead-Time Insertion to Prevent Shoot-Through

– 50-mA to 1-A Peak Source Current

– 100-mA to 2-A Peak Sink Current

– dV/dt Mitigation Through Strong Pulldown

• Integrated Gate Driver Power Supplies

– High-Side Doubler Charge Pump For 100% PWM Duty Cycle Control

– Low-Side Linear Regulator

• Integrated LM5008A Buck Regulator

– 6 to 95-V Operating Voltage Range

– 2.5 to 75-V, 350-mA Output Capability

• Integrated Triple Current Shunt Amplifiers

– Adjustable Gain (5, 10, 20, 40 V/V)

– Bidirectional or Unidirectional Support

• 6x, 3x, 1x, and Independent PWM Modes

– Supports 120° Sensored Operation

• SPI or Hardware Interface Available

• Low-Power Sleep Mode (20 µA at VVM = 48-V)

• Integrated Protection Features

– VM Undervoltage Lockout (UVLO)

– Gate Drive Supply Undervoltage (GDUV)

– MOSFET VDS Overcurrent Protection (OCP)

– MOSFET Shoot-Through Prevention

– Gate Driver Fault (GDF)

– Thermal Warning and Shutdown (OTW/OTSD)

– Fault Condition Indicator (nFAULT)


2 Applications

• 3-Phase Brushless-DC (BLDC) Motor Modules

• Fans, Blowers, and Pumps

• E-Bikes, E-Scooters, and E-Mobility

• Power and Garden Tools, Lawn Mowers

• Drones, Robotics, and RC Toys

• Factory Automation and Textile Machines


3 Description

The DRV835x family of devices are highly-integrated gate drivers for three-phase brushless DC (BLDC) motor applications. These applications include fieldoriented control (FOC), sinusoidal current control, and trapezoidal current control of BLDC motors. The device variants provide optional integrated current shunt amplifiers to support different motor control schemes and a buck regulator to power the gate driver or external controller.

The DRV835x uses smart gate drive (SGD) architecture to decrease the number of external components that are typically necessary for MOSFET slew rate control and protection circuits. The SGD architecture also optimizes dead time to prevent shoot-through conditions, provides flexibility in decreasing electromagnetic interference (EMI) by MOSFET slew rate control, and protects against gate short circuit conditions through VGS monitors. A strong gate pulldown circuit helps prevent unwanted dV/dt parasitic gate turn on events.

Various PWM control modes (6x, 3x, 1x, and independent) are supported for simple interfacing to the external controller. These modes can decrease the number of outputs required of the controller for the motor driver PWM control signals. This family of devices also includes 1x PWM mode for simple sensored trapezoidal control of a BLDC motor by using an internal block commutation table.

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