ZHCSOU8B
August 2021 – February 2022
MCT8316A
PRODUCTION DATA
1
特性
2
应用
3
说明
4
Revision History
5
Device Comparison Table
6
Pin Configuration and Functions
7
Specifications
7.1
Absolute Maximum Ratings
7.2
ESD Ratings
7.3
Recommended Operating Conditions
7.4
Thermal Information
7.5
Electrical Characteristics
7.6
Characteristics of the SDA and SCL bus for Standard and Fast mode
7.7
Typical Characteristics
8
Detailed Description
8.1
Overview
8.2
Functional Block Diagram
8.3
Feature Description
8.3.1
Output Stage
8.3.2
Device Interface Modes
8.3.2.1
Interface - Control and Monitoring
8.3.2.2
I2C Interface
8.3.2.3
Hardware Interface - Pin Configuration
8.3.3
Step-Down Mixed-Mode Buck Regulator
8.3.3.1
Buck in Inductor Mode
8.3.3.2
Buck in Resistor mode
8.3.3.3
Buck Regulator with External LDO
8.3.3.4
AVDD Power Sequencing from Buck Regulator
8.3.3.5
Mixed Mode Buck Operation and Control
8.3.3.6
Buck Undervoltage Protection
8.3.3.7
Buck Overcurrent Protection
8.3.4
AVDD Linear Voltage Regulator
8.3.5
Charge Pump
8.3.6
Slew Rate Control
8.3.7
Cross Conduction (Dead Time)
8.3.8
SPEED Control
8.3.8.1
Analog-Mode Speed Control
8.3.8.2
PWM-Mode Speed Control
8.3.8.3
I2C based Speed Control
8.3.8.4
Frequency-Mode Speed Control
8.3.9
Starting the Motor Under Different Initial Conditions
8.3.9.1
Case 1 – Motor is Stationary
8.3.9.2
Case 2 – Motor is Spinning in the Forward Direction
8.3.9.3
Case 3 – Motor is Spinning in the Reverse Direction
8.3.10
Motor Start Sequence (MSS)
8.3.10.1
Initial Speed Detect (ISD)
8.3.10.2
Motor Resynchronization
8.3.10.3
Reverse Drive
8.3.10.4
Motor Start-up
8.3.10.4.1
Align
8.3.10.4.2
Double Align
8.3.10.4.3
Initial Position Detection (IPD)
8.3.10.4.3.1
IPD Operation
8.3.10.4.3.2
IPD Release Mode
8.3.10.4.3.3
IPD Advance Angle
8.3.10.4.4
Slow First Cycle Startup
8.3.10.4.5
Open loop
8.3.10.4.6
Transition from Open to Closed Loop
8.3.11
Closed Loop Operation
8.3.11.1
120o Commutation
8.3.11.1.1
High-Side Modulation
8.3.11.1.2
Low-Side Modulation
8.3.11.1.3
Mixed Modulation
8.3.11.2
Variable Commutation (Available only in MCT8316AV)
8.3.11.3
Lead Angle Control
8.3.11.4
Closed loop accelerate
8.3.12
Speed Loop (Available only in MCT8316AV)
8.3.13
Input Power Regulation (Available only in MCT8316AV)
8.3.14
Anti-Voltage Surge (AVS)
8.3.15
Output PWM Switching Frequency
8.3.16
Fast Start-up (< 50 ms)
8.3.16.1
BEMF Threshold
8.3.16.2
Dynamic Degauss
8.3.17
Fast Deceleration
8.3.18
Active Demagnetization
8.3.18.1
Active Demagnetization in action
8.3.19
Motor Stop Options
8.3.19.1
Coast (Hi-Z) Mode
8.3.19.2
Recirculation Mode
8.3.19.3
Low-Side Braking
8.3.19.4
High-Side Braking
8.3.19.5
Active Spin-Down
8.3.20
FG Configuration
8.3.20.1
FG Output Frequency
8.3.20.2
FG Open-Loop and Lock Behavior
8.3.21
Protections
8.3.21.1
VM Supply Undervoltage Lockout
8.3.21.2
AVDD Undervoltage Lockout (AVDD_UV)
8.3.21.3
BUCK Undervoltage Lockout (BUCK_UV)
8.3.21.4
VCP Charge Pump Undervoltage Lockout (CPUV)
8.3.21.5
Overvoltage Protection (OVP)
8.3.21.6
Overcurrent Protection (OCP)
8.3.21.6.1
OCP Latched Shutdown (OCP_MODE = 00b)
8.3.21.6.2
OCP Automatic Retry (OCP_MODE = 01b)
8.3.21.6.3
OCP Report Only (OCP_MODE = 10b)
8.3.21.6.4
OCP Disabled (OCP_MODE = 11b)
8.3.21.7
Buck Overcurrent Protection
8.3.21.8
Cycle-by-Cycle (CBC) Current Limit (CBC_ILIMIT)
8.3.21.8.1
CBC_ILIMIT Automatic Recovery next PWM Cycle (CBC_ILIMIT_MODE = 000xb)
8.3.21.8.2
CBC_ILIMIT Automatic Recovery Threshold Based (CBC_ILIMIT_MODE = 001xb)
8.3.21.8.3
CBC_ILIMIT Automatic Recovery after 'n' PWM Cycles (CBC_ILIMIT_MODE = 010xb)
8.3.21.8.4
CBC_ILIMIT Report Only (CBC_ILIMIT_MODE = 0110b)
8.3.21.8.5
CBC_ILIMIT Disabled (CBC_ILIMIT_MODE = 0111b or 1xxxb)
8.3.21.9
Lock Detection Current Limit (LOCK_ILIMIT)
8.3.21.9.1
LOCK_ILIMIT Latched Shutdown (LOCK_ILIMIT_MODE = 00xxb)
8.3.21.9.2
LOCK_ILIMIT Automatic Recovery (LOCK_ILIMIT_MODE = 01xxb)
8.3.21.9.3
LOCK_ILIMIT Report Only (LOCK_ILIMIT_MODE = 1000b)
8.3.21.9.4
LOCK_ILIMIT Disabled (LOCK_ILIMIT_MODE = 1xx1b)
8.3.21.10
Thermal Warning (OTW)
8.3.21.11
Thermal Shutdown (TSD)
8.3.21.12
Motor Lock (MTR_LCK)
8.3.21.12.1
MTR_LCK Latched Shutdown (MTR_LCK_MODE = 00xxb)
8.3.21.12.2
MTR_LCK Automatic Recovery (MTR_LCK_MODE= 01xxb)
8.3.21.12.3
MTR_LCK Report Only (MTR_LCK_MODE = 1000b)
8.3.21.12.4
MTR_LCK Disabled (MTR_LCK_MODE = 1xx1b)
8.3.21.13
Motor Lock Detection
8.3.21.13.1
Lock 1: Abnormal Speed (ABN_SPEED)
8.3.21.13.2
Lock 2: Loss of Sync (LOSS_OF_SYNC)
8.3.21.13.3
Lock3: No-Motor Fault (NO_MTR)
8.3.21.14
IPD Faults
8.4
Device Functional Modes
8.4.1
Functional Modes
8.4.1.1
Sleep Mode
8.4.1.2
Standby Mode
8.4.1.3
Fault Reset (CLR_FLT)
8.5
External Interface
8.5.1
DRVOFF Functionality
8.5.2
DAC outputs
8.5.3
SOX Output
8.5.4
Oscillator Source
8.5.4.1
External Clock Source (Available for MCT8316AV)
8.5.5
External Watchdog (Available only in MCT836AV)
8.6
EEPROM access and I2C interface
8.6.1
EEPROM Access
8.6.1.1
EEPROM Write
8.6.1.2
EEPROM Read
8.6.2
I2C Serial Interface (Available only in MCT8316AV)
8.6.2.1
I2C Data Word
8.6.2.2
I2C Write Operation
8.6.2.3
I2C Read Operation
8.6.2.4
Examples of MCT8316A I2C Communication Protocol Packets
8.6.2.5
Internal Buffers
8.6.2.6
CRC Byte Calculation
8.7
EEPROM (Non-Volatile) Register Map
8.7.1
Algorithm_Configuration Registers
8.7.2
Fault_Configuration Registers
8.7.3
Hardware_Configuration Registers
8.7.4
Gate_Driver_Configuration Registers
8.8
RAM (Volatile) Register Map
8.8.1
Fault_Status Registers
8.8.2
System_Status Registers
8.8.3
Algo_Control Registers
8.8.4
Device_Control Registers
9
Application and Implementation
9.1
Application Information
9.2
Typical Applications
9.2.1
Application curves
9.2.1.1
Motor startup
9.2.1.2
120o and variable commutation
9.2.1.3
Faster startup time
9.2.1.4
Setting the BEMF threshold
9.2.1.5
Maximum speed
9.2.1.6
Faster deceleration
10
Power Supply Recommendations
10.1
Bulk Capacitance
11
Layout
11.1
Layout Guidelines
11.2
Layout Example
11.3
Thermal Considerations
11.3.1
Power Dissipation
12
Device and Documentation Support
12.1
支持资源
12.2
Trademarks
12.3
Electrostatic Discharge Caution
12.4
术语表
13
Mechanical, Packaging, and Orderable Information
13.1
Tape and Reel Information
封装选项
机械数据 (封装 | 引脚)
RGF|40
MPQF173F
散热焊盘机械数据 (封装 | 引脚)
RGF|40
QFND672
订购信息
zhcsou8b_oa
zhcsou8b_pm
1
特性
采用集成无传感器电机控制算法的三相 BLDC 电机驱动器
无代码高速梯形控制
支持高达 3kHz(电气频率)
非常短的启动时间(< 50ms)
快速减速 (< 150ms)
支持 120° 或 150° 调制,以改善声学性能
通过正向重新同步和反向驱动支持风力机
模拟,PWM,频率或基于 I
2
C 的速度输入
主动消磁支持减少功率损耗
可配置的电机启动和停止选项
可选闭环速度控制
抗电压浪涌保护可防止过压
通过 DACOUT 进行变量监控
4.5V 至 35V 工作电压(绝对最大值 40V)
高输出电流能力:8A 峰值
低 MOSFET 导通状态电阻
T
A
= 25°C 时,R
DS(ON)
(HS + LS) 为 95mΩ
低功耗睡眠模式
V
VM
= 24V、T
A
= 25°C 时为 3µA(最大值)
速度环路精度:3% 使用内部时钟,1% 使用外部时钟参考
灵活的器件配置选项
MCT8316AV:I
2
C 接口 (EEPROM)
MCT8316AT:基于硬件引脚的配置
支持高达 100kHz 的 PWM 频率,以支持低电感电机
不需要外部电流检测电阻器
内置 3.3V ±5%、20mA LDO 稳压器
内置 3.3V/5V、170mA 降压稳压器
专用 DRVOFF 引脚以禁用(高阻态)输出
展频和压摆率,用于降低 EMI
整套集成保护特性
电源欠压锁定 (UVLO)
电机锁定检测(5 种不同类型)
过流保护 (OCP)
热警告和热关断 (OTW/TSD)
故障条件指示引脚 (nFAULT)
可选择通过 I
2
C 接口进行故障诊断
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