Изображения являются только для ссылки
DRV8303DCAR
+БОМIC MOTOR DRIVER 6V-60V 48HTSSOP
-
ПроизводительТехасские инструменты
-
Мфр. Часть #DRV8303DCAR
-
Пакет HTSSOP (DCA)-48
-
В наличии7273
365 Дни гарантии качества
7*24 часы обслуживания каранти
90-гарантия послепродажного дня
Гарантия подлинного продукта
Спецификации
| Атрибут | Ценность |
| Package | Tape & Reel (TR),Cut Tape (CT) |
| ProductStatus | Active |
| MotorType-ACDC | Brushless DC (BLDC) |
| Function | Controller - Commutation, Direction Management |
| OutputConfiguration | Pre-Driver - Half Bridge (3) |
| Interface | SPI |
| Technology | NMOS |
| Applications | General Purpose |
| Voltage-Supply | 6V ~ 60V |
| OperatingTemperature | -40°C ~ 125°C (TA) |
| MountingType | Surface Mount |
| Package/Case | 48-TFSOP (0.240, 6.10mm Width) Exposed Pad |
Обзор
Description
This device is capable of driving up to 60V and can handle current up to 1.7A per channel. The DRV8303DCAR features a dual-current shunt amplifier for current sensing, allowing precise motor control. Its SPI interface facilitates easy configuration and monitoring, enhancing its versatility in various applications.
Key characteristics include integrated protection against over-current, under-voltage, and over-temperature, ensuring reliability and safety. The device supports both sensored and sensorless motor control, providing flexibility in design.
The DRV8303DCAR’s compact design, with a small footprint, is ideal for space-constrained applications. Its high switching frequency capability ensures efficient motor operation, reducing electromagnetic interference (EMI) and improving performance. Overall, the DRV8303DCAR is a robust solution for high-performance motor control applications.
Equivalent
1. TI DRV8323: Another motor driver from Texas Instruments with enhanced features.
2. Infineon TLE7189F Designed for automotive and industrial applications.
3. ON Semiconductor NCV7535: Offers similar functionalities for BLDC motor control.
4. Allegro A4915: Comparable gate driver for three-phase motors.
Each alternative may have different specifications, so it’s important to review their datasheets to ensure suitability for specific applications.
Features
1. Three-Phase Gate Driver: It supports up to three N-channel MOSFET half-bridges.
2. Integrated Current Shunt Amplifiers: Two amplifiers provide accurate current sensing for motor control and protection.
3. Wide Supply Voltage Range: Operates from 8 V to 60 V, suitable for various applications.
4. SPI Interface: Allows for flexible configuration and diagnostics of the device.
5. Protection Features: Includes overcurrent, overtemperature, and undervoltage protection to safeguard the motor and driver.
6. Adjustable Dead Time: Offers customizable dead time control for optimizing performance.
7. Low Power Consumption: Features low standby and active power consumption for energy-efficient operation.
8. Compact Package: Comes in a space-efficient HTSSOP package, making it suitable for compact designs.
These features make the DRV8303DCAR ideal for applications like drones, e-bikes, power tools, and other motor control applications requiring efficient and reliable operation.
Pinout
The key functions of the DRV8303 include:
1. Gate Driver: It provides gate drive capability for six external N-channel MOSFETs used to control three-phase motors.
2. Dual Current Shunt Amplifiers: These are used for current sensing, allowing accurate monitoring and control of motor current.
3. SPI Interface: This interface allows for configuration and status reporting, giving users the ability to control various aspects of the driver and read diagnostic information.
4. Integrated Protection: The DRV8303 includes a range of protection features such as overcurrent protection (OCP), overtemperature protection (OTP), and undervoltage lockout (UVLO) to enhance the safety and reliability of motor control applications.
This combination of features makes the DRV8303DCAR suitable for applications requiring precise and efficient control of three-phase motors, such as in industrial and automotive environments.