产品详情

Rating Catalog Architecture Integrated FET Control topology Sensorless, Sinusoidal Control interface 1xPWM, Analog, Serial Vs (min) (V) 8 Vs ABS (max) (V) 30 Features Buck Step Down Converter, Initial Position Detect (IPD), Integrated FETs, Integrated Motor Control, Rotor Lock Protection, SPI/I2C, Tach/FG Feedback Operating temperature range (°C) -40 to 125
Rating Catalog Architecture Integrated FET Control topology Sensorless, Sinusoidal Control interface 1xPWM, Analog, Serial Vs (min) (V) 8 Vs ABS (max) (V) 30 Features Buck Step Down Converter, Initial Position Detect (IPD), Integrated FETs, Integrated Motor Control, Rotor Lock Protection, SPI/I2C, Tach/FG Feedback Operating temperature range (°C) -40 to 125
HTSSOP (PWP) 24 49.92 mm² (7.8 mm × 6.4 mm)
  • Input Voltage Range: 8 to 28 V
  • Total Driver H + L rDS(on): 250 mΩ
  • Drive Current: 2-A Continuous Winding Current (3-A Peak)
  • Sensorless Proprietary Back Electromotive Force (BEMF) Control Scheme
  • Continuous Sinusoidal 180° Commutation
  • No External Sense Resistor Required
  • For Flexibility User May Include External Sense Resistor to Monitor Power Delivered to Motor
  • Flexible User Interface Options:
    • I2C Interface: Access Registers for Command and Feedback
    • Dedicated SPEED Pin: Accepts Either Analog or PWM Input
    • Dedicated FG Pin: Provides TACH Feedback
    • Spin-Up Profile Customizable With EEPROM
    • Forward-Reverse Control With DIR Pin
  • Integrated Step-Down Regulator to Efficiently Provide Voltage (5 V or 3.3 V) for Internal and External Circuits
  • Supply Current 3 mA With Standby Version (DRV10983)
  • Supply Current 180 µA With Sleep Version (DRV10983Z)
  • Overcurrent Protection
  • Lock Detection
  • Voltage Surge Protection
  • UVLO Protection
  • Thermal Shutdown Protection
  • Thermally-Enhanced 24-Pin HTSSOP
  • Input Voltage Range: 8 to 28 V
  • Total Driver H + L rDS(on): 250 mΩ
  • Drive Current: 2-A Continuous Winding Current (3-A Peak)
  • Sensorless Proprietary Back Electromotive Force (BEMF) Control Scheme
  • Continuous Sinusoidal 180° Commutation
  • No External Sense Resistor Required
  • For Flexibility User May Include External Sense Resistor to Monitor Power Delivered to Motor
  • Flexible User Interface Options:
    • I2C Interface: Access Registers for Command and Feedback
    • Dedicated SPEED Pin: Accepts Either Analog or PWM Input
    • Dedicated FG Pin: Provides TACH Feedback
    • Spin-Up Profile Customizable With EEPROM
    • Forward-Reverse Control With DIR Pin
  • Integrated Step-Down Regulator to Efficiently Provide Voltage (5 V or 3.3 V) for Internal and External Circuits
  • Supply Current 3 mA With Standby Version (DRV10983)
  • Supply Current 180 µA With Sleep Version (DRV10983Z)
  • Overcurrent Protection
  • Lock Detection
  • Voltage Surge Protection
  • UVLO Protection
  • Thermal Shutdown Protection
  • Thermally-Enhanced 24-Pin HTSSOP

The DRV10983 device is a three-phase sensorless motor driver with integrated power MOSFETs, which can provide continuous drive current up to 2 A. The device is specifically designed for cost-sensitive, low-noise, low-external-component-count applications.

The DRV10983 device uses a proprietary sensorless control scheme to provide continuous sinusoidal drive, which significantly reduces the pure tone acoustics that typically occur as a result of commutation. The interface to the device is designed to be simple and flexible. The motor can be controlled directly through PWM, analog, or I2C inputs. Motor speed feedback is available through either the FG pin or I2C.

The DRV10983 device features an integrated step-down regulator to efficiently step down the supply voltage to either 5 or 3.3 V for powering both internal and external circuits. The device is available in either a sleep mode or a standby mode version to conserve power when the motor is not running. The standby mode (3-mA) version leaves the regulator running and the sleep mode (180-µA) version shuts it off. Use the standby mode version in applications where the regulator is used to power an external microcontroller.

TI provides DRV10983 tuning Guide for quick setup and tuning of the device for optimal performance.

An I2C interface allows the user to reprogram specific motor parameters in registers and program the EEPROM to help optimize the performance for a given application. The DRV10983 device is available in a thermally efficient HTSSOP, 24-pin package with an exposed thermal pad. The operating temperature is specified from –40°C to 125°C.

The DRV10983 device is a three-phase sensorless motor driver with integrated power MOSFETs, which can provide continuous drive current up to 2 A. The device is specifically designed for cost-sensitive, low-noise, low-external-component-count applications.

The DRV10983 device uses a proprietary sensorless control scheme to provide continuous sinusoidal drive, which significantly reduces the pure tone acoustics that typically occur as a result of commutation. The interface to the device is designed to be simple and flexible. The motor can be controlled directly through PWM, analog, or I2C inputs. Motor speed feedback is available through either the FG pin or I2C.

The DRV10983 device features an integrated step-down regulator to efficiently step down the supply voltage to either 5 or 3.3 V for powering both internal and external circuits. The device is available in either a sleep mode or a standby mode version to conserve power when the motor is not running. The standby mode (3-mA) version leaves the regulator running and the sleep mode (180-µA) version shuts it off. Use the standby mode version in applications where the regulator is used to power an external microcontroller.

TI provides DRV10983 tuning Guide for quick setup and tuning of the device for optimal performance.

An I2C interface allows the user to reprogram specific motor parameters in registers and program the EEPROM to help optimize the performance for a given application. The DRV10983 device is available in a thermally efficient HTSSOP, 24-pin package with an exposed thermal pad. The operating temperature is specified from –40°C to 125°C.

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技术文档

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顶层文档 类型 标题 格式选项 下载最新的英语版本 日期
* 数据表 DRV10983 12- to 24-V, Three-Phase, Sensorless BLDC Motor Driver 数据表 (Rev. H) PDF | HTML 2020-6-30
应用手册 电机驱动器电路板布局的最佳实践 (Rev. B) PDF | HTML 英语版 (Rev.B) PDF | HTML 2021-8-5
更多文献资料 TI Motor Drives Automotive Body Motors Webinar 2021-7-2
应用手册 When to Use DRV10987 or DRV10983 PDF | HTML 2018-10-19
用户指南 DRV109xxEVM Quick Start Guide (Rev. C) 2018-3-7
技术文章 Cut the power and complexity of your appliance designs PDF | HTML 2018-2-6
设计指南 DRV10983、DRV10975、DRV10983-Q1 和DRV10987 EEPROM 编程工具参考设计 (Rev. A) 英语版 (Rev.A) 2017-12-27
技术文章 Integrated intelligence part 2: motor startup open loop acceleration PDF | HTML 2017-12-4
技术文章 Brush up on the latest motor design considerations for appliances PDF | HTML 2017-10-26
用户指南 User's Guide For The TIDA-01373 (Rev. A) 2017-10-10
用户指南 DRV10983 and DRV10975 Tuning Guide (Rev. D) 2017-6-23
用户指南 DRV10983x, DRV10975x, and DRV10987 IPD Tuning Guide (Rev. A) 2017-5-30
应用手册 How to Design a Thermally-Efficient Integrated BLDC Motor Drive PCB (Rev. A) 2017-2-5
技术文章 How to avoid motor and system overvoltage using AVS technology without external co PDF | HTML 2016-10-14
应用手册 Speed-Control Techniques in AC-DC Operated BLDC Applications PDF | HTML 2016-8-11
白皮书 Replacing single-phase ACIMs with three-phase BLDC motors saves energy 2016-4-14
技术文章 What happens when low-voltage BLDC motors drive appliance subsystems PDF | HTML 2016-3-17
技术文章 Next-generation ceiling and exhaust fans leverage BLDC drive technology for increa PDF | HTML 2016-3-10
技术文章 Designing an energy-efficient BLDC ceiling fan solution PDF | HTML 2015-4-24
应用手册 DRV10983EVM-TB Target Board Programming Guide 2014-10-7
应用手册 Tuning Lead Angle in DRV10x Sensorless BLDC Drivers PDF | HTML 2012-10-9

设计与开发

如需其他信息或资源,请点击以下任一标题进入详情页面查看(如有)。

评估板

DRV10983EVM — DRV10983 三相无刷电机驱动器评估模块

DRV10983EVM(评估模块)作为一款用户友好型评估套件,可用于演示 TI 步进电机驱动器 DRV10983。提供了 GUI 软件和用户指南,可帮助客户调优和配置无传感器 BLDC 电机以确保正常运行。此 EVM 是一种高性能、低功耗且具有成本效益的平台,可加速开发过程,从而缩短面市时间。

用户指南: PDF
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评估板

DRV10983EVM-TB — DRV10983EVM 目标板

DRV10983EVM-TB(目标板)提供了一种对有限数量的器件进行快速编程的方法。这使得器件的初始试运行易于实施。目标板包含升压转换器,可产生所需的电压,从而在器件中对设置进行重新编程。目标板需要 MSP-EXP430G2553 Launchpad 才能正常工作。

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评估模块 (EVM) 用 GUI

SLOC345 — DRV109xx Software

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软件编程工具

SLOC316 — DRV10983 Programming Tool

支持的产品和硬件
参考设计

TIDA-00297 — 冰箱风门和风扇电机控制解决方案

冰箱通常使用风门来控制气流,并借助风扇实现空气循环。  虽然分立式解决方案已沿用多年,但本参考设计采用了集成式电机驱动器,可提供简便的控制、高性能及全面的保护功能。  DRV8848 驱动步进电机风门,DRV10983 通过安静的 180° 换向驱动 BLDC 风扇。  BLDC 采用闭环速度控制,通过 MSP430G2553 和 DRV8812 实现基于 PWM 的电源供应。  该设计采用单层 PCB。  MCU 固件中提供了 BLDC 和步进电机控制示例代码。  过流、过温和欠压保护功能均集成在 DRV 器件中。

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参考设计

TIDA-00386 — 具有无传感器正弦电流控制功能的 BLDC 吊式风扇控制器

此参考设计是一款通过交流电源供电的无刷直流吊扇控制器。  它采用 DRV10983 24V 三相电机驱动器,通过正弦电流和无传感器控制来驱动电机。  UCC28630 可将 90-265VAC 转换为 24VDC。  MSP430G2201 经济型处理器负责解码红外信号以实现转速控制。  随附的固件支持轻松集成基于 NEC 传输协议的标准红外遥控器。

支持的产品和硬件
参考设计

TIDA-00447 — 24V、100W/30W 双通道无传感器无刷直流电机驱动器参考设计

TIDA-00447 是一款 24V 双通道无刷直流 (BLDC) 电机驱动器参考设计,适用于大型家用电器,可驱动泵和风扇等低压 BLDC 电机,例如驱动洗碗机中的循环泵和排水泵。电机驱动器的功率级分别设计为实现 100W 和 30W 连续运行。30W 驱动基于具有集成功率 MOSFET 的单芯片、低外部元件数三相电机驱动器,并提供专有的无传感器控制方案,以实现连续正弦驱动。它还具有一个集成降压/线性稳压器,可高效地将电源电压降低至 5V 或 3.3V,从而为内外部电路供电。100W 驱动通过分立式方法实现,该方法包含一个 MCU、具有保护和电流检测功能的外部 MOSFET (...)

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参考设计

TIDA-00652 — 90-265VAC、91% 效率、功率因数大于 0.94 的降压 PFC + 24V、30W 无刷直流电机驱动器参考设计

为了达到能效要求,吊扇和通风扇正从使用简单的交流感应电机转变为使用无刷直流 (BLDC) 电机。通过交流电源供电运行 BLDC 电机时,需要实现具有高效率和高功率因数的交流/直流转换。它还需要一个受到有效控制的逆变器来实现低噪声运行。参考设计 TIDA-00652 通过使用单级电源将交流市电输入转换为低压直流输出,有助于更简单地应对提高效率和功率因数等挑战。它还结合了完全集成且受到良好保护的单芯片无传感器正弦无刷电机控制器,可实现低噪声运行。

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参考设计

TIDA-00656 — 面向空气净化器风扇的 24V、50W BLDC 电机正弦驱动器参考设计

TIDA-00656 参考设计是一款具有成本效益的小尺寸 (SFF) 三相正弦电机驱动器,适用于 24V 电压下功率高达 50W 的无刷直流 (BLDC) 电机。该板在输入端接受 24V 电压,并提供三个电机输出,从而以正弦方式驱动 BLDC 电机。通过使用微控制器 (MCU)(在本例中为 MSP430G2303),在接受通过 IR(红外)传感器发出的速度命令后,该速度环路从外部闭合。

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参考设计

TIDA-01223 — 适用于电器的单层180°正弦 24V/2A 无传感器 BLDC 驱动参考设计

此单层参考设计用于落地扇和其他类似电器,具有 2 英寸直径的板尺寸和可减少元件数量的集成控制器。此外,无传感器控制不再需要霍尔传感器,并且拥有多种保护功能,例如过流保护、欠压闭锁、过热保护,每项功能均可增强该设计的稳健性。  此参考设计适用于 8V 至 24V 输入电压、并能够提供 3A(峰值)/2A (rms) 相电流。
支持的产品和硬件
参考设计

TIDA-01373 — EEPROM 编程工具参考设计

TIDA-01373 是一款可扩展编程工具的参考硬件和软件示例,适用于 DRV10983、DRV10975、DRV10983-Q1 和 DRV10987 集成型 BLDC 电机驱动器。这些器件配备可配置 EEPROM 寄存器,需根据电机特定参数进行设置。此参考设计详细展示如何一次性为最多 8 个电机驱动器件编程用户指定的 EEPROM 电机参数值。
支持的产品和硬件
参考设计

TIDA-01417 — 具有 90 至 265V 交流输入的集成 30W 无传感器 BLDC 电机驱动器改良参考设计

此参考设计可驱动具有通用交流电源输入的低电压无刷直流 (BLDC) 电机。此设计具有板载增强型隔离式交流/直流开关电源,可将交流干线输入转换为隔离式低电压直流输出。它还结合了完全集成且受到良好保护的单芯片无传感器正弦无刷电机控制器,可实现低可闻噪声运行。此设计经过优化,外形尺寸极小,并且效率高,可轻松置入电机中。
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封装 引脚 CAD 符号、封装和 3D 模型
HTSSOP (PWP) 24 Ultra Librarian

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