이미지는 참조용입니다.
L2293QTR
+BOMIC BRIDGE DRIVER ON/OFF 32VFQFPN
-
제조업체ST마이크로일렉트로닉스(주)
-
제조업체 부품 #L2293QTR
-
데이터시트 L2293QTR DataSheet
-
패키지 VFQFN-32
-
재고2372
365 1일 품질 보증
7*24 영업 시간 서비스 보증
90-판매 후 1일 보증
정품 보증
사양
| 속성 | 가치 |
| Package | Tape & Reel (TR),Cut Tape (CT) |
| ProductStatus | Active |
| OutputConfiguration | Half Bridge (4) |
| Applications | DC Motors, Relays, Solenoids, Stepper Motors |
| Interface | Logic |
| LoadType | Inductive |
| Current-Output/Channel | 600mA |
| Current-PeakOutput | 1.2A |
| Voltage-Supply | 2.8V ~ 36V |
| Voltage-Load | 2.8V ~ 36V |
| OperatingTemperature | -20°C ~ 125°C (TJ) |
| FaultProtection | Over Temperature |
| MountingType | Surface Mount |
| Package/Case | 32-VFQFN Exposed Pad |
개요
Description
Generally, an "introduction" course, regardless of the subject, is designed to familiarize students with fundamental concepts, terminology, and methodologies relevant to the field of study. It usually provides a comprehensive overview that prepares students for more advanced topics.
If "L2293QTR" pertains to a specialized subject, such as a technology, business strategy, or scientific discipline, the introduction would cover the foundational aspects of that subject, including key theories, historical development, and practical applications. Students may engage in lectures, discussions, assignments, and projects designed to develop a basic understanding and skills necessary for progression.
For specific details, including syllabus and objectives, consulting the institution offering the course or related academic materials would be essential.
Equivalent
1. L293D
2. L298N (though it has different package and current specifications)
3. SN754410 by Texas Instruments
4. ULN2003 (for different applications)
5. TB6612FNG by Toshiba
Ensure to check the datasheets for pin compatibility and electrical characteristics before substituting.
Features
1. Quadruple Half-Bridge Configuration: It consists of four half-bridge drivers, which can be used to drive various loads like DC motors, relays, and solenoids.
2. High-Voltage Tolerance: The IC can handle high operating voltages, making it suitable for automotive applications.
3. Protection Features: It typically includes built-in protection mechanisms such as over-temperature, over-current, and short-circuit protection to ensure reliability and prevent damage.
4. Control Interface: It may feature a digital control interface, enabling easy integration with microcontrollers or other digital systems.
5. Low Power Consumption: Designed to be power-efficient, minimizing the impact on the overall energy consumption of the system.
6. Compact Package: The IC is available in a compact package, which helps in saving space on the PCB and facilitates miniaturization of the end product.
These features make the L2293QTR a versatile choice for controlling various electromechanical components in challenging environments.
Pinout
- Dual Full-Bridge Driver: Capable of driving two DC motors or one stepper motor.
- Output Capability: Can provide output current up to 1A per channel.
- Enable and Control Inputs: Separate inputs for controlling each half of the bridge, allowing for various control schemes.
- Overtemperature Protection: Built-in protection against overheating.
- Diode Protection: Internal diodes for protection against back EMF.
The pin layout typically includes power supply pins, ground pins, input control pins for each motor channel, enable pins for activating the channels, and output pins connected to the motors. Always refer to the specific datasheet for accurate pin assignments and electrical characteristics, as they can sometimes vary between manufacturers or specific IC versions.
Manufacturer
Application
1. DC Motor Control: Widely used for controlling the direction and speed of DC motors in robotics and automation systems.
2. Stepper Motor Drivers: Utilized in driving stepper motors for precise control in printers and other precision devices.
3. Relay and Solenoid Control: Useful in activating relays and solenoids in industrial and automotive systems.
4. Actuator Control: Employed in applications requiring control of linear actuators or other mechanical systems.
5. Power Management: Used in power management applications to drive inductive loads efficiently.
These features make it suitable for consumer electronics, automotive, industrial automation, and more.