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MAX31790ATI+
+Lista de MateriaisIC MOTOR DRIVER 3V-5.5V 28TQFN
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FabricanteAnalog Devices Inc./Maxim Integrated
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Peça do Fabricante #MAX31790ATI+
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Pacote 28-WFQFN
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Em Estoque1838
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Especificações
| Atributo | Valor |
| Package | Tube |
| ProductStatus | Active |
| MotorType-ACDC | Brushless DC (BLDC) |
| Function | Driver - Fully Integrated, Control and Power Stage |
| OutputConfiguration | Low Side (6) |
| Interface | I²C |
| Technology | Power MOSFET |
| Applications | Fan Motor Driver |
| Voltage-Supply | 3V ~ 5.5V |
| OperatingTemperature | -40°C ~ 125°C (TA) |
| MountingType | Surface Mount |
| Package/Case | 28-WFQFN Exposed Pad |
Visão Geral
Description
Key features include closed-loop RPM control, which maintains precise fan speeds by adjusting power to the fans based on feedback. The IC also supports PWM control for varying fan speeds and includes tachometer inputs to monitor each fan's speed. Additionally, it offers programmable spin-up and spin-down rates, ensuring smooth fan operation and extending fan life.
The MAX31790ATI+ includes temperature measurement capabilities to adjust fan speeds dynamically based on system temperature. This contributes to energy efficiency and noise reduction. The chip comes in a compact TQFN package, making it suitable for space-constrained applications like servers, telecom equipment, and industrial systems. Overall, the MAX31790ATI+ is a versatile solution for sophisticated thermal management requirements.
Equivalent
1. LTC2977 - A 16-channel monitor/controller by Analog Devices.
2. NCT7802Y - A Super I/O chip by Nuvoton featuring fan control.
3. ADN8834 - From Analog Devices, suitable for cooling applications.
4. EMC2301 - A fan controller by Microchip Technology.
5. LTC2991 - An 8-channel temperature/voltage monitoring IC by Analog Devices.
Ensure compatibility based on specific application requirements.
Features
1. Six-Channel PWM Outputs: It supports up to six independent PWM fan outputs, enabling control of multiple fans in a system.
2. I²C/SMBus Interface: The device communicates via I²C/SMBus, allowing for easy integration into existing systems.
3. Closed-Loop Control: Provides closed-loop control for accurate fan speed regulation based on temperature inputs.
4. Thermal Monitoring: It can monitor up to six temperature inputs, including external diode-connected transistors or thermistors, for comprehensive thermal management.
5. Wide PWM Frequency Range: Offers a wide PWM frequency range (from 9.5Hz to 38kHz) for flexible fan speed control.
6. Fault Detection: Features comprehensive fault detection, including fan failure and over-temperature alarms, enhancing system reliability.
7. Programmable Features: Includes programmable spin-up and ramp rates, making it adaptable to various thermal environments.
8. Low Power Consumption: Designed for energy efficiency, minimizing power use while providing effective cooling solutions.
These features make the MAX31790ATI+ ideal for complex systems requiring efficient and reliable thermal management, such as servers, telecommunications equipment, and high-performance computing.
Pinout
1. Fan Speed Control: It can independently control the speed of six fans using PWM (Pulse Width Modulation) signals.
2. Tachometer Inputs: The device supports tachometer inputs for each fan, allowing for precise speed monitoring.
3. I²C/SMBus Interface: It includes an I²C/SMBus-compatible interface for communication with a host controller, facilitating configuration and monitoring.
4. Temperature Monitoring: The IC incorporates temperature sensing capabilities to adjust fan speeds based on thermal conditions.
5. Fault Detection: It provides fault alerts for conditions such as fan failure or over-temperature, enhancing reliability and protection.
This combination of features makes the MAX31790ATI+ suitable for applications requiring efficient thermal management, such as servers, telecommunications equipment, and industrial systems.
Manufacturer
Application
1. Data Centers: For efficient cooling of servers and networking equipment.
2. Telecommunications: In managing heat in telecom infrastructure equipment.
3. Industrial Automation: For controlling the thermal environment in industrial machines and robotics.
4. Consumer Electronics: Managing heat in high-performance consumer devices like gaming consoles and PCs.
5. Medical Equipment: Ensuring optimal operating temperatures for sensitive medical devices.
These applications benefit from the MAX31790ATI+ due to its ability to control multiple fans precisely, optimizing system cooling and power consumption.