ZHCSMI4
november 2020
TAS6424MS-Q1
PRODUCTION DATA
1
1
特性
2
应用
3
说明
4
Revision History
5
Device Options
6
Pin Configuration and Functions
7
Specifications
7.1
Absolute Maximum Ratings
7.2
ESD 等级
7.3
Recommended Operating Conditions
7.4
Thermal Information
7.5
Electrical Characteristics
7.6
Typical Characteristics
8
Parameter Measurement Information
9
Detailed Description
9.1
Overview
9.2
Functional Block Diagram
9.3
Feature Description
9.3.1
Serial Audio Port
9.3.1.1
I2S Mode
9.3.1.2
Left-Justified Timing
9.3.1.3
Right-Justified Timing
9.3.1.4
TDM Mode
9.3.1.5
Supported Clock Rates
9.3.1.6
Audio-Clock Error Handling
9.3.2
High-Pass Filter
9.3.3
Volume Control and Gain
9.3.4
High-Frequency Pulse-Width Modulator (PWM)
9.3.5
Channel-to-Channel Phase Control
9.3.6
Gate Drive
9.3.7
Power FETs
9.3.8
Load Diagnostics
9.3.8.1
DC Load Diagnostics
9.3.8.2
Line Output Diagnostics
9.3.8.3
AC Load Diagnostics
9.3.8.3.1
Impedance Magnitude Measurement
9.3.8.3.2
Impedance Phase Reference Measurement
9.3.8.3.3
Impedance Phase Measurement
9.3.9
Protection and Monitoring
9.3.9.1
Overcurrent Limit (ILIMIT)
9.3.9.2
Overcurrent Shutdown (ISD)
9.3.9.3
DC Detect
9.3.9.4
Clip Detect
9.3.9.5
Global Overtemperature Warning (OTW), Overtemperature Shutdown (OTSD)
9.3.9.6
Channel Overtemperature Warning [OTW(i)] and Shutdown [OTSD(i)]
9.3.9.7
Undervoltage (UV) and Power-On-Reset (POR)
9.3.9.8
Overvoltage (OV) and Load Dump
9.3.10
Power Supply
9.3.10.1
Vehicle-Battery Power-Supply Sequence
9.3.10.2
Power-Down Sequence
9.3.10.3
Boosted Power-Supply Sequence
9.3.11
Hardware Control Pins
9.3.11.1
FAULT
9.3.11.2
WARN
9.3.11.3
MUTE
9.3.11.4
STANDBY
9.4
Device Functional Modes
9.4.1
Operating Modes and Faults
9.5
Programming
9.5.1
I2C Serial Communication Bus
9.5.2
I2C Bus Protocol
9.5.3
Random Write
9.5.4
Sequential Write
9.5.5
Random Read
9.5.6
Sequential Read
9.6
Register Maps
9.6.1
Mode Control Register (address = 0x00) [default = 0x00]
9.6.2
Miscellaneous Control 1 Register (address = 0x01) [default = 0x32]
9.6.3
Miscellaneous Control 2 Register (address = 0x02) [default = 0x62]
9.6.4
SAP Control (Serial Audio-Port Control) Register (address = 0x03) [default = 0x04]
9.6.5
Channel State Control Register (address = 0x04) [default = 0x55]
9.6.6
Channel 1 Through 4 Volume Control Registers (address = 0x05–0x08) [default = 0xCF]
9.6.7
DC Load Diagnostic Control 1 Register (address = 0x09) [default = 0x00]
9.6.8
DC Load Diagnostic Control 2 Register (address = 0x0A) [default = 0x11]
9.6.9
DC Load Diagnostic Control 3 Register (address = 0x0B) [default = 0x11]
9.6.10
DC Load Diagnostic Report 1 Register (address = 0x0C) [default = 0x00]
9.6.11
DC Load Diagnostic Report 2 Register (address = 0x0D) [default = 0x00]
9.6.12
DC Load Diagnostics Report 3 Line Output Register (address = 0x0E) [default = 0x00]
9.6.13
Channel State Reporting Register (address = 0x0F) [default = 0x55]
9.6.14
Channel Faults (Overcurrent, DC Detection) Register (address = 0x10) [default = 0x00]
9.6.15
Global Faults 1 Register (address = 0x11) [default = 0x00]
9.6.16
Global Faults 2 Register (address = 0x12) [default = 0x00]
9.6.17
Warnings Register (address = 0x13) [default = 0x20]
9.6.18
Pin Control Register (address = 0x14) [default = 0x00]
9.6.19
AC Load Diagnostic Control 1 Register (address = 0x15) [default = 0x00]
9.6.20
AC Load Diagnostic Control 2 Register (address = 0x16) [default = 0x00]
9.6.21
AC Load Diagnostic Impedance Report Ch1 through Ch4 Registers (address = 0x17–0x1A) [default = 0x00]
9.6.22
AC Load Diagnostic Phase Report High Register (address = 0x1B) [default = 0x00]
9.6.23
AC Load Diagnostic Phase Report Low Register (address = 0x1C) [default = 0x00]
9.6.24
AC Load Diagnostic STI Report High Register (address = 0x1D) [default = 0x00]
9.6.25
AC Load Diagnostic STI Report Low Register (address = 0x1E) [default = 0x00]
9.6.26
Miscellaneous Control 3 Register (address = 0x21) [default = 0x00]
9.6.27
Clip Control Register (address = 0x22) [default = 0x01]
9.6.28
Clip Window Register (address = 0x23) [default = 0x14]
9.6.29
Clip Warning Register (address = 0x24) [default = 0x00]
9.6.30
ILIMIT Status Register (address = 0x25) [default = 0x00]
9.6.31
Miscellaneous Control 4 Register (address = 0x26) [default = 0x40]
10
Application Information Disclaimer
10.1
Application Information
10.1.1
AM-Radio Band Avoidance
10.1.2
Parallel BTL Operation (PBTL)
10.1.3
Demodulation Filter Design
10.1.4
Line Driver Applications
10.2
Typical Applications
10.2.1
BTL Application
10.2.1.1
Design Requirements
10.2.1.1.1
Communication
10.2.1.2
Detailed Design Procedure
10.2.1.2.1
Hardware Design
10.2.1.2.2
Digital Input and the Serial Audio Port
10.2.1.2.3
Bootstrap Capacitors
10.2.1.2.4
Output Reconstruction Filter
10.2.2
PBTL Application
10.2.2.1
Design Requirements
10.2.2.1.1
Detailed Design Procedure
11
Power Supply Recommendations
12
Layout
12.1
Layout Guidelines
12.2
Layout Example
12.3
Thermal Considerations
13
Device and Documentation Support
13.1
Documentation Support
13.2
Related Documentation
13.3
Receiving Notification of Documentation Updates
13.4
支持资源
13.5
商标
13.6
静电放电警告
13.7
术语表
14
Mechanical, Packaging, and Orderable Information
封装选项
机械数据 (封装 | 引脚)
DKQ|56
MPDS378A
散热焊盘机械数据 (封装 | 引脚)
DKQ|56
PPTD313E
订购信息
zhcsmi4_oa
zhcsmi4_pm
1
特性
符合面向汽车应用的 AEC-Q100 标准
温度等级 1:–40°C 至 +125°C T
A
高级负载诊断
直流诊断功能,无需输入时钟即可执行
交流诊断功能,可通过阻抗和相位响应实现高频扬声器检测
可轻松满足 CISPR25-L5 EMC 规范
音频输入
4 通道 I
2
S 或 4/8 通道 TDM 输入
输入采样率:44.1kHz、48kHz、96kHz
输入格式:16 位至 32 位 I
2
S 和 TDM
音频输出
四通道桥接式负载 (BTL)
双通道并行 BTL (PBTL)
最高可达 2.1MHz 的输出开关频率
在 4Ω 负载、14.4V BTL 条件下,输出功率为 27W,THD 为 10%
在 2Ω 负载、14.4V BTL 条件下,输出功率为 45W,THD 为 10%
在 2Ω 负载、18V PBTL 条件下,输出功率为 80W,THD 为 10%
在 4Ω 负载、14.4V BTL 条件下的音频性能
输出功率为 1W 时,THD+N < 0.02%
42µV
RMS
输出噪声
–90dB 串扰
负载诊断功能
开路和短路输出负载
输出至电池短路或接地短路
线路输出检测能力高达 6kΩ
独立于主机运行
保护
输出电流限制和短路保护
40V 负载突降
可承受接地开路和电源开路
直流失调电压
温度过高
欠压和过压
常规运行
4.5V 至 18V 的电源电压
I
2
C 控制,具有 4 个地址选项
锁存或非锁存削波检测