產品詳細資料

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 x 6.4
  • 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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類型 標題 日期
* Data sheet DRV10983 12- to 24-V, Three-Phase, Sensorless BLDC Motor Driver datasheet (Rev. H) PDF | HTML 2020年 6月 30日
Application note Best Practices for Board Layout of Motor Drivers (Rev. B) PDF | HTML 2021年 10月 14日
More literature TI Motor Drives Automotive Body Motors Webinar 2021年 7月 2日
Application note When to Use DRV10987 or DRV10983 2018年 10月 19日
User guide DRV109xxEVM Quick Start Guide (Rev. C) 2018年 3月 7日
Technical article Cut the power and complexity of your appliance designs PDF | HTML 2018年 2月 6日
EVM User's guide DRV10983EVM and DRV10975EVM User's Guide (Rev. E) 2018年 1月 2日
Technical article Integrated intelligence part 2: motor startup open loop acceleration PDF | HTML 2017年 12月 4日
Technical article Brush up on the latest motor design considerations for appliances PDF | HTML 2017年 10月 26日
Design guide DRV10983, DRV10975, DRV10983-Q1, and DRV10987 Programming Tool Reference Design (Rev. A) 2017年 10月 17日
User guide User's Guide For The TIDA-01373 (Rev. A) 2017年 10月 10日
User guide DRV10983 and DRV10975 Tuning Guide (Rev. D) 2017年 6月 23日
User guide DRV10983x, DRV10975x, and DRV10987 IPD Tuning Guide (Rev. A) 2017年 5月 30日
Application note How to Design a Thermally-Efficient Integrated BLDC Motor Drive PCB (Rev. A) 2017年 2月 5日
Technical article How to avoid motor and system overvoltage using AVS technology without external co PDF | HTML 2016年 10月 14日
Application note Speed-Control Techniques in AC-DC Operated BLDC Applications PDF | HTML 2016年 8月 11日
White paper Replacing single-phase ACIMs with three-phase BLDC motors saves energy 2016年 4月 14日
Technical article What happens when low-voltage BLDC motors drive appliance subsystems PDF | HTML 2016年 3月 17日
Technical article Next-generation ceiling and exhaust fans leverage BLDC drive technology for increa PDF | HTML 2016年 3月 10日
Technical article Designing an energy-efficient BLDC ceiling fan solution PDF | HTML 2015年 4月 24日
Application note DRV10983EVM-TB Target Board Programming Guide 2014年 10月 7日
Application note Tuning Lead Angle in DRV10x Sensorless BLDC Drivers PDF | HTML 2012年 10月 9日

設計與開發

如需其他條款或必要資源,請按一下下方的任何標題以檢視詳細頁面 (如有)。

開發板

DRV10983EVM — DRV10983 三相無刷馬達驅動器評估模組

The DRV10983EVM (evaluation module) serves as a user-friendly evaluation kit to demonstrate TI’s brushless motor driver DRV10983. A GUI  software and user guide are provided to help customers tune and configure Sensorless BLDC motors for proper operation. This EVM is a high-performance, (...)

使用指南: PDF
TI.com 無法提供
開發板

DRV10983EVM-TB — DRV10983EVM 目標基板

The DRV10983EVM-TB (target board) provides a method to quickly program a limited quantity of devices. This makes initial pilot runs of the device easy to implement. The target board contains a boost converter to create the necessary voltage required to reprogram the settings in the device. The (...)

TI.com 無法提供
開發模組 (EVM) 的 GUI

SLOC345 DRV109xx Software

支援產品和硬體

支援產品和硬體

產品
整合式控制 BLDC 驅動器
DRV10975 12-V 額定、2-A 峰值無感測器正弦控制 3 相 BLDC 馬達驅動器 DRV10983 24-V 額定、3-A 峰值無感測器正弦控制 3 相 BLDC 馬達驅動器 DRV10983-Q1 汽車 12-V 電池、3.5-A 峰值無感測器正弦控制 3 相 BLDC 馬達驅動器 DRV10987 12-V 至 24-V 額定、3.5-A 峰值無感測器正弦控制 3 相 BLDC 馬達驅動器
硬體開發
開發板
DRV10975EVM 適用於三相無刷馬達驅動器的 DRV10975EVM 評估模組 DRV10983EVM DRV10983 三相無刷馬達驅動器評估模組 DRV10983Q1EVM DRV10983-Q1 評估板、12-V、24-V 車用三相、無感測器無刷 DC 馬達 DRV10987EVM DRV10987 評估模組、12-V/24-V 三相、無感測器無刷 DC 馬達驅動器
軟體程式設計工具

SLOC316 DRV10983 Programming Tool

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支援產品和硬體

產品
整合式控制 BLDC 驅動器
DRV10983 24-V 額定、3-A 峰值無感測器正弦控制 3 相 BLDC 馬達驅動器
硬體開發
開發板
DRV10983EVM-TB DRV10983EVM 目標基板
參考設計

TIDA-00386 — 具有無感測器正弦電流控制的 BLDC 吸頂風扇控制器

This reference design is a brushless DC ceiling fan controller that runs from AC power.  It features the DRV10983 24-V three-phase motor driver to drive motors with sinusoidal current and sensorless control.  The UCC28630 converts 90-265 VAC into 24 VDC.  The MSP430G2201 value-line (...)
Test report: PDF
電路圖: PDF
參考設計

TIDA-00652 — 90-265VAC、91% 效率、>0.94 PF 降壓 PFC 以及 24V、30W 無刷 DC 馬達驅動參考設計

For achieving energy efficiency, ceiling fans and ventilation fans are moving from simple AC induction motors to brushless DC motors (BLDC). Operation of BLDC motors from AC supply requires AC-DC conversion with high efficiency and power factor. It also needs an inverter which is controlled (...)
Design guide: PDF
電路圖: PDF
參考設計

TIDA-00447 — 24V、100W/30W 雙無感測器無刷 DC 馬達驅動參考設計

TIDA-00447 is a 24V, dual Brushless DC (BLDC) motor drive reference design to be used in major home appliances to drive low voltage BLDC motors such as pumps and fans, e.g. for circulation pump and drain pump of dishwashers. The power stages of motor drive are designed for 100W and 30W of (...)
Design guide: PDF
電路圖: PDF
參考設計

TIDA-01417 — 具有 90V 至 265V AC 輸入的整合式 30W 無感測器 BLDC 馬達驅動改裝參考設計

This reference design drives the low-voltage brushless DC (BLDC) motor with universal AC power supply input. The design has an onboard, reinforced isolated AC/DC switch power supply to convert the AC main input to isolated low-voltage DC output. It also combines a fully-integrated and (...)
Design guide: PDF
電路圖: PDF
參考設計

TIDA-01373 — EEPROM 編程工具參考設計

The TIDA-01373 is a reference hardware and software example of a scalable programming tool for the DRV10983, DRV10975, DRV10983-Q1, and DRV10987 integrated BLDC motor drivers. These devices feature configurable EEPROM registers that need to be set to motor-specific parameters. This reference (...)
Design guide: PDF
電路圖: PDF
參考設計

TIDA-01223 — 適用於電器的單層 180° 正弦 24V/2A 無感測器 BLDC 驅動器參考設計

This single layer reference design is for pedestal fan and other similar appliances and has board size of 2-inch diameter and an integrated controller that reduces the component count. In addition, sensorless control eliminates the need for hall sensors and has multiple protection features such as (...)
Design guide: PDF
電路圖: PDF
參考設計

TIDA-00656 — 適用於空氣清淨機風扇的 24V、50W BLDC 馬達正弦驅動參考設計

The TIDA-00656 reference design is a cost-effective, small form-factor (SFF),  three-phase sinusoidal motor drive for brushless DC (BLDC) motor up to a power of 50 W at 24 V. The board accepts 24 V at the input and provides three motor outputs to drive the BLDC motor sinusoidally. By using a (...)
Design guide: PDF
電路圖: PDF
參考設計

TIDA-00297 — 冰箱阻尼器和風扇馬達控制解決方案

Refrigerators often use a damper to control airflow and a fan to provide circulation.  While discrete solutions have been used for years, this reference design uses integrated motor drivers that provide easy control, high performance and full protection.  DRV8848 drives the stepper motor (...)
Test report: PDF
電路圖: PDF
封裝 針腳 CAD 符號、佔位空間與 3D 模型
HTSSOP (PWP) 24 Ultra Librarian

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