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DRV2605YZFR
+Lista de MateriaisIC MOTOR DRIVER 2.5V-5.5V 9DSBGA
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FabricanteTexas Instruments
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Peça do Fabricante #DRV2605YZFR
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Pacote DSBGA (YZF)-9
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Em Estoque5415
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Especificações
| Atributo | Valor |
| Package | Tape & Reel (TR),Cut Tape (CT) |
| ProductStatus | Active |
| MotorType-ACDC | ERM, LRA |
| Function | Driver - Fully Integrated, Control and Power Stage |
| OutputConfiguration | Half Bridge (2) |
| Interface | I²C |
| Technology | Power MOSFET |
| Applications | Haptic Feedback |
| Voltage-Supply | 2.5V ~ 5.5V |
| Voltage-Load | 2.5V ~ 5.5V |
| OperatingTemperature | -40°C ~ 150°C (TJ) |
| MountingType | Surface Mount |
| Package/Case | 9-UFBGA, DSBGA |
Visão Geral
Description
Key features of the DRV2605YZFR include its wide supply voltage range (2 to 5.2V), low power consumption, and support for both ERM (Eccentric Rotating Mass) and LRA (Linear Resonant Actuator) vibration motors. It includes an I2C interface for easy communication and quick configuration with a host processor. The device also incorporates an automatic overdrive and braking feature to optimize motor performance and reduce start/stop times, enhancing the user experience through precise and responsive haptic feedback.
The DRV2605YZFR's compact package makes it suitable for space-constrained applications, and its robust performance and flexibility make it a popular choice for developers looking to integrate advanced haptic feedback into their products.
Equivalent
1. ADI ADUX1001 - Provides similar haptic feedback capabilities.
2. Maxim Integrated MAX11801 - Offers comparable vibration motor drive features.
3. NXP Semiconductors PCA9955B - Supports LED and motor control, suitable for haptic feedback.
4. Microchip Technology MCP1640 - Though primarily a boost converter, it can be adapted for motor driving in specific applications.
Ensure compatibility with your specific application requirements when selecting an equivalent.
Features
1. Wide Compatibility: Supports both Linear Resonant Actuators (LRAs) and Eccentric Rotating Mass (ERM) motors, offering flexibility in haptic feedback implementation.
2. Built-in Waveforms: Includes a library of pre-programmed waveform sequences, enabling quick and easy integration of haptic effects without extensive coding.
3. I2C Interface: Offers an I2C compatible interface for communication, allowing for seamless integration with microcontrollers and other digital systems.
4. Auto-resonance Detection: Automatically detects and tracks the resonant frequency of LRAs, optimizing performance and efficiency.
5. Smart Loop Architecture: Ensures consistent haptic feedback by adjusting for variations in voltage and temperature.
6. Low Power Consumption: Designed for efficient operation, making it suitable for battery-powered devices.
7. Small Package: Available in a compact package, which is ideal for portable and space-constrained applications.
These features make the DRV2605YZFR a versatile solution for enhancing user experience with tactile feedback in consumer electronics, wearable devices, and other applications.
Pinout
The primary functions of the DRV2605YZFR include:
1. Haptic Effect Library: It features an integrated library of haptic effects, which can be used to create advanced tactile feedback.
2. I2C Interface: The device is controlled through an I2C interface, allowing for communication with a host controller.
3. PWM and Analog Input Modes: It supports both PWM and analog input modes for flexible driving of various haptic motors.
4. Auto-Resonance Detection: The driver can automatically detect and tune to the resonance frequency of LRAs, optimizing performance.
5. Wide Supply Voltage Range: It operates over a wide voltage range, suitable for battery-powered applications.
6. Over-Current and Thermal Protection: The device includes built-in protections to ensure reliability during operation.
These features make the DRV2605YZFR well-suited for mobile devices, wearables, and other applications requiring tactile feedback.
Manufacturer
Application
1. Consumer Electronics: Enhances user experience in smartphones, tablets, and wearables through haptic feedback for notifications and user interactions.
2. Automotive: Provides tactile feedback in touch interfaces, improving user interaction and safety.
3. Gaming: Used in controllers and VR devices to deliver immersive, responsive feedback.
4. Medical Devices: Offers tactile alerts and confirmations in handheld medical equipment.
5. White Goods and Appliances: Adds feedback to touch controls, enhancing user interfaces.
These applications benefit from the device's ability to generate diverse vibration patterns and support multiple actuators.