MCF8316D

AKTIV

Sensorloser FOC-Dreiphasen-BLDC-Motortreiber, max. 40 V, 8 A Spitze, mit UL-zertifizierter Variante

Produktdetails

Rating Catalog Architecture Integrated FET Control topology Field-oriented control (FOC), Sensorless Control interface 1xPWM, Analog, Serial Vs (min) (V) 4.5 Vs ABS (max) (V) 40 Features 5-point configurable speed profile support, Anti-voltage surge protections prevents overvoltage, Code-free Field Oriented Control (FOC), Configurable motor startup and stop options, Improved acoustic performance with automatic dead time compensation, Offline motor parameters measurement with Motor Parameter Extraction Tool (MPET), Variable monitoring through DACOUT, Windmilling support through forward resynchronization and reverse drive Operating temperature range (°C) -40 to 125
Rating Catalog Architecture Integrated FET Control topology Field-oriented control (FOC), Sensorless Control interface 1xPWM, Analog, Serial Vs (min) (V) 4.5 Vs ABS (max) (V) 40 Features 5-point configurable speed profile support, Anti-voltage surge protections prevents overvoltage, Code-free Field Oriented Control (FOC), Configurable motor startup and stop options, Improved acoustic performance with automatic dead time compensation, Offline motor parameters measurement with Motor Parameter Extraction Tool (MPET), Variable monitoring through DACOUT, Windmilling support through forward resynchronization and reverse drive Operating temperature range (°C) -40 to 125
VQFN (RGF) 40 35 mm² (7 mm × 5 mm)
  • Functional Safety Quality-Managed Targeted (only MCF8316DULVRGFR)
    • Documentation available to aid IEC-60730-1 functional safety system design
  • Safety-Related Certifications (only MCF8316DULVRGFR)
    • UL recognized component: UL 60730-1 (File Number: E546206)
  • Safety functions (only MCF8316DULVRGFR)
    • Locked rotor protection
    • Over current (over load) protection
    • Loss of phase (no motor)
  • Three-phase BLDC motor driver with integrated sensorless motor control algorithm
    • Code-free Field Oriented Control (FOC)
    • Speed, current, power, or voltage control
    • Forward and reverse windmilling support
    • Configurable power and speed limit
    • Lead angle adjustment for high efficiency
    • Improved acoustic performance with soft-start, soft-stop and dead time compensation
    • Offline motor parameter measurement (MPET)
    • Analog, PWM, frequency, or I2C speed input
    • Configurable motor start-up and stop options
    • Flux weakening for high-speed operation
    • Anti-voltage surge (AVS) protection
  • 4.5 to 35V operating voltage (40V abs max)
  • High output current capability: 8A peak
  • Low MOSFET on-state resistance
    • RDS(ON) (HS + LS) at TA = 25°C : 95mΩ (typ.)
  • Low power sleep mode: Refer
    • 5µA (maximum) at VVM = 24V, TA = 25°C
  • Speed loop accuracy: 3% with internal clock and 1% with external clock reference
  • Configurable EEPROM with R/W security to store device configuration
  • Built-in current sensing
  • Built-in 3.3V/5V, 170mA buck regulator
  • Built-in 3.3V, 20mA LDO regulator
  • Dedicated DRVOFF pin to disable (Hi-Z) outputs
  • Spread spectrum, PWM dithering, and slew rate for EMI reduction
  • Suite of integrated protection features
    • Supply under voltage lockout (UVLO)
    • Supply over voltage protection (OVP)
    • Motor lock detection
    • Configurable current limit
    • Thermal warning and shutdown (OTW/TSD)
    • Fault condition indication pin (nFAULT)
    • Optional fault diagnostics over I2C interface
  • Functional Safety Quality-Managed Targeted (only MCF8316DULVRGFR)
    • Documentation available to aid IEC-60730-1 functional safety system design
  • Safety-Related Certifications (only MCF8316DULVRGFR)
    • UL recognized component: UL 60730-1 (File Number: E546206)
  • Safety functions (only MCF8316DULVRGFR)
    • Locked rotor protection
    • Over current (over load) protection
    • Loss of phase (no motor)
  • Three-phase BLDC motor driver with integrated sensorless motor control algorithm
    • Code-free Field Oriented Control (FOC)
    • Speed, current, power, or voltage control
    • Forward and reverse windmilling support
    • Configurable power and speed limit
    • Lead angle adjustment for high efficiency
    • Improved acoustic performance with soft-start, soft-stop and dead time compensation
    • Offline motor parameter measurement (MPET)
    • Analog, PWM, frequency, or I2C speed input
    • Configurable motor start-up and stop options
    • Flux weakening for high-speed operation
    • Anti-voltage surge (AVS) protection
  • 4.5 to 35V operating voltage (40V abs max)
  • High output current capability: 8A peak
  • Low MOSFET on-state resistance
    • RDS(ON) (HS + LS) at TA = 25°C : 95mΩ (typ.)
  • Low power sleep mode: Refer
    • 5µA (maximum) at VVM = 24V, TA = 25°C
  • Speed loop accuracy: 3% with internal clock and 1% with external clock reference
  • Configurable EEPROM with R/W security to store device configuration
  • Built-in current sensing
  • Built-in 3.3V/5V, 170mA buck regulator
  • Built-in 3.3V, 20mA LDO regulator
  • Dedicated DRVOFF pin to disable (Hi-Z) outputs
  • Spread spectrum, PWM dithering, and slew rate for EMI reduction
  • Suite of integrated protection features
    • Supply under voltage lockout (UVLO)
    • Supply over voltage protection (OVP)
    • Motor lock detection
    • Configurable current limit
    • Thermal warning and shutdown (OTW/TSD)
    • Fault condition indication pin (nFAULT)
    • Optional fault diagnostics over I2C interface

The MCF8316D provides a single-chip, code-free sensorless FOC device for driving 12 to 24V brushless-DC motors (BLDC) or Permanent Magnet Synchronous motor (PMSM) up to 8A peak current. The MCF8316D integrates three ½-bridges with 40V absolute maximum capability and a very low RDS(ON) of 95mΩ (HS+LS FETs). MCF8316D integrates a buck regulator (3.3V/5V, 170mA) and LDO (3.3V, 20mA) that can be used to power external circuits.

The FOC algorithm configuration can be stored in non-volatile EEPROM, which allows the device to operate stand-alone once the device has been configured. The device receives a speed command through a PWM input, analog voltage, variable frequency square wave or I2C command. There are a large number of protection features integrated into the MCF8316D, intended to protect the device, motor, and system against fault events.

Documentation for reference:

The MCF8316D provides a single-chip, code-free sensorless FOC device for driving 12 to 24V brushless-DC motors (BLDC) or Permanent Magnet Synchronous motor (PMSM) up to 8A peak current. The MCF8316D integrates three ½-bridges with 40V absolute maximum capability and a very low RDS(ON) of 95mΩ (HS+LS FETs). MCF8316D integrates a buck regulator (3.3V/5V, 170mA) and LDO (3.3V, 20mA) that can be used to power external circuits.

The FOC algorithm configuration can be stored in non-volatile EEPROM, which allows the device to operate stand-alone once the device has been configured. The device receives a speed command through a PWM input, analog voltage, variable frequency square wave or I2C command. There are a large number of protection features integrated into the MCF8316D, intended to protect the device, motor, and system against fault events.

Documentation for reference:

Herunterladen Video mit Transkript ansehen Video

Technische Dokumentation

Keine Ergebnisse gefunden. Bitte geben Sie einen anderen Begriff ein und versuchen Sie es erneut.
Alle anzeigen 8
Top-Dokumentation Typ Titel Format-Optionen Neueste englische Version herunterladen Datum
* Datenblatt MCF8316D Sensorless Field Oriented Control (FOC) Integrated FET BLDC Driver datasheet (Rev. A) PDF | HTML 13.05.2025
Anwendungshinweis Getting Started with MOTORSTUDIO (Rev. A) PDF | HTML 09.06.2026
Anwendungshinweis Develop algorithms and tools based on MSPM0 MCU that supports MCF831x offline burning PDF | HTML 10.06.2025
Anwendungshinweis MCF83xx - Open Loop to Closed Loop Handoff Tuning PDF | HTML 15.04.2025
Anwendungshinweis How to Program I2C for MCx83xx Device Family PDF | HTML 24.03.2025
Anwendungshinweis Motor Pre-Startup Tuning for MCx83xx PDF | HTML 24.03.2025
Anwendungshinweis How to Optimize MCF8315 Hardware Design in Fan Application PDF | HTML 17.03.2025
Anwendungshinweis MCF83xx and MCT83xx EEPROM Read and Write Procedure PDF | HTML 13.03.2025

Design und Entwicklung

Weitere Bedingungen oder erforderliche Ressourcen enthält gegebenenfalls die Detailseite, die Sie durch Klicken auf einen der unten stehenden Titel erreichen.

Evaluierungsplatine

MCF8316DEVM — MCF8316D – Evaluierungsmodul

Das Evaluierungsmodul (EVM) MCT8316D erlaubt eine einfache Evaluierung der Leistung des Motortreibers MCT8316D. Das EVM umfasst einen integrierten FTDI-Chip auf der Platine zur Umwandlung der USB-Kommunikation vom Micro-USB-Anschluss in UART. Ein auf der Platine integrierter (...)

Benutzerhandbuch: PDF | HTML
Unterstützte Produkte und Hardware
Vorrätig
Limit:
??asset.out-of-stock-ti_de_DE??
Nicht verfügbar
GUI für Evaluierungsmodul (EVM)

MOTORSTUDIO — Motor Studio GUI for tuning and evaluating BLDC motor drivers

Motor Studio ist eine benutzerfreundliche grafische Benutzeroberfläche (GUI), die den Tuning-Prozess unserer Treiber für bürstenlose Gleichstrommotoren (BLDC) vereinfacht, um die Geräteevaluierung und die Produktentwicklungszeit zu verkürzen. Die GUI ermöglicht Benutzern den schnellen Motoranlauf (...)

Unterstützte Produkte und Hardware
Berechnungstool

BLDC-MCF831XC-TO-MCF831XD-CONVERSION-CALC — Register Map conversion tool - from MCF831xC to MCF831xD

Excel-based register map converter to automatically convert register contents from MCF831xC to MCF831xD. Input the register map of MCF831xC to generate the converted register map and use the output values directly for the MCF831xD.
Unterstützte Produkte und Hardware
Berechnungstool

BLDC-MOSFET-THERMAL-CALC — BLDC integrated MOSFET driver thermal calculator tool

Calculates the thermals of a BLDC integrated MOSFET driver based on user input system parameters
Unterstützte Produkte und Hardware
Gehäuse Pins CAD-Symbole, Footprints und 3D-Modelle
VQFN (RGF) 40 Ultra Librarian

Bestellen & Qualität

Support und Schulungen

TI E2E™-Foren mit technischem Support von TI-Ingenieuren

Inhalte werden ohne Gewähr von TI und der Community bereitgestellt. Sie stellen keine Spezifikationen von TI dar. Siehe Nutzungsbedingungen.

Bei Fragen zu den Themen Qualität, Gehäuse oder Bestellung von TI-Produkten siehe TI-Support. ​​​​​​​​​​​​​​

Videos