ZHCSJB8
February 2019
TAS6424M-Q1
PRODUCTION DATA.
1
特性
2
应用
3
说明
PCB 区域
4
修订历史记录
5
说明(续)
6
Device Options
7
Pin Configuration and Functions
Pin Functions
8
Specifications
8.1
Absolute Maximum Ratings
8.2
ESD Ratings
8.3
Recommended Operating Conditions
8.4
Thermal Information
8.5
Electrical Characteristics
8.6
Timing Requirements
8.7
Typical Characteristics
9
Parameter Measurement Information
10
Detailed Description
10.1
Overview
10.2
Functional Block Diagram
10.3
Feature Description
10.3.1
Serial Audio Port
10.3.1.1
I2S Mode
10.3.1.2
Left-Justified Timing
10.3.1.3
Right-Justified Timing
10.3.1.4
TDM Mode
10.3.1.5
Supported Clock Rates
10.3.1.6
Audio-Clock Error Handling
10.3.2
High-Pass Filter
10.3.3
Volume Control and Gain
10.3.4
High-Frequency Pulse-Width Modulator (PWM)
10.3.5
Gate Drive
10.3.6
Power FETs
10.3.7
Load Diagnostics
10.3.7.1
DC Load Diagnostics
10.3.7.2
Line Output Diagnostics
10.3.7.3
AC Load Diagnostics
10.3.7.3.1
Impedance Magnitude Measurement
10.3.7.3.2
Impedance Phase Reference Measurement
10.3.7.3.3
Impedance Phase Measurement
10.3.8
Protection and Monitoring
10.3.8.1
Overcurrent Limit (ILIMIT)
10.3.8.2
Overcurrent Shutdown (ISD)
10.3.8.3
DC Detect
10.3.8.4
Clip Detect
10.3.8.5
Global Overtemperature Warning (OTW), Overtemperature Shutdown (OTSD)
10.3.8.6
Channel Overtemperature Warning [OTW(i)] and Shutdown [OTSD(i)]
10.3.8.7
Undervoltage (UV) and Power-On-Reset (POR)
10.3.8.8
Overvoltage (OV) and Load Dump
10.3.9
Power Supply
10.3.9.1
Vehicle-Battery Power-Supply Sequence
10.3.9.2
Boosted Power-Supply Sequence
10.3.10
Hardware Control Pins
10.3.10.1
FAULT
10.3.10.2
WARN
10.3.10.3
MUTE
10.3.10.4
STANDBY
10.4
Device Functional Modes
10.4.1
Operating Modes and Faults
10.5
Programming
10.5.1
I2C Serial Communication Bus
10.5.2
I2C Bus Protocol
10.5.3
Random Write
10.5.4
Sequential Write
10.5.5
Random Read
10.5.6
Sequential Read
10.6
Register Maps
10.6.1
Mode Control Register (address = 0x00) [default = 0x00]
Table 10.
Mode Control Field Descriptions
10.6.2
Miscellaneous Control 1 Register (address = 0x01) [default = 0x32]
Table 11.
Misc Control 1 Field Descriptions
10.6.3
Miscellaneous Control 2 Register (address = 0x02) [default = 0x62]
Table 12.
Misc Control 2 Field Descriptions
10.6.4
SAP Control (Serial Audio-Port Control) Register (address = 0x03) [default = 0x04]
Table 13.
SAP Control Field Descriptions
10.6.5
Channel State Control Register (address = 0x04) [default = 0x55]
Table 14.
Channel State Control Field Descriptions
10.6.6
Channel 1 Through 4 Volume Control Registers (address = 0x05–0x08) [default = 0xCF]
Table 15.
Ch x Volume Control Field Descriptions
10.6.7
DC Load Diagnostic Control 1 Register (address = 0x09) [default = 0x00]
Table 16.
DC Load Diagnostics Control 1 Field Descriptions
10.6.8
DC Load Diagnostic Control 2 Register (address = 0x0A) [default = 0x11]
Table 17.
DC Load Diagnostics Control 2 Field Descriptions
10.6.9
DC Load Diagnostic Control 3 Register (address = 0x0B) [default = 0x11]
Table 18.
DC Load Diagnostics Control 3 Field Descriptions
10.6.10
DC Load Diagnostic Report 1 Register (address = 0x0C) [default = 0x00]
Table 19.
DC Load Diagnostics Report 1 Field Descriptions
10.6.11
DC Load Diagnostic Report 2 Register (address = 0x0D) [default = 0x00]
Table 20.
DC Load Diagnostics Report 2 Field Descriptions
10.6.12
DC Load Diagnostics Report 3 Line Output Register (address = 0x0E) [default = 0x00]
Table 21.
DC Load Diagnostics Report 3 Line Output Field Descriptions
10.6.13
Channel State Reporting Register (address = 0x0F) [default = 0x55]
Table 22.
State-Reporting Field Descriptions
10.6.14
Channel Faults (Overcurrent, DC Detection) Register (address = 0x10) [default = 0x00]
Table 23.
Channel Faults Field Descriptions
10.6.15
Global Faults 1 Register (address = 0x11) [default = 0x00]
Table 24.
Global Faults 1 Field Descriptions
10.6.16
Global Faults 2 Register (address = 0x12) [default = 0x00]
Table 25.
Global Faults 2 Field Descriptions
10.6.17
Warnings Register (address = 0x13) [default = 0x20]
Table 26.
Warnings Field Descriptions
10.6.18
Pin Control Register (address = 0x14) [default = 0x00]
Table 27.
Pin Control Field Descriptions
10.6.19
AC Load Diagnostic Control 1 Register (address = 0x15) [default = 0x00]
Table 28.
AC Load Diagnostic Control 1 Field Descriptions
10.6.20
AC Load Diagnostic Control 2 Register (address = 0x16) [default = 0x00]
Table 29.
AC Load Diagnostic Control 2 Field Descriptions
10.6.21
AC Load Diagnostic Impedance Report Ch1 through CH4 Registers (address = 0x17–0x1A) [default = 0x00]
Table 30.
Chx AC LDG Impedance Report Field Descriptions
10.6.22
AC Load Diagnostic Phase Report High Register (address = 0x1B) [default = 0x00]
Table 31.
AC LDG Phase High Report Field Descriptions
10.6.23
AC Load Diagnostic Phase Report Low Register (address = 0x1C) [default = 0x00]
Table 32.
AC LDG Phase Low Report Field Descriptions
10.6.24
AC Load Diagnostic STI Report High Register (address = 0x1D) [default = 0x00]
Table 33.
AC LDG STI High Report Field Descriptions
10.6.25
AC Load Diagnostic STI Report Low Register (address = 0x1E) [default = 0x00]
Table 34.
Chx AC LDG STI Low Report Field Descriptions
10.6.26
Miscellaneous Control 3 Register (address = 0x21) [default = 0x00]
Table 35.
Misc Control 3 Field Descriptions
10.6.27
Clip Control Register (address = 0x22) [default = 0x01]
Table 36.
Clip Control Field Descriptions
10.6.28
Clip Window Register (address = 0x23) [default = 0x14]
Table 37.
Clip Window Field Descriptions
10.6.29
Clip Warning Register (address = 0x24) [default = 0x00]
Table 38.
Clip Warning Field Descriptions
10.6.30
ILIMIT Status Register (address = 0x25) [default = 0x00]
Table 39.
ILIMIT Status Field Descriptions
10.6.31
Miscellaneous Control 4 Register (address = 0x26) [default = 0x40]
Table 40.
Misc Control 4 Field Descriptions
11
Application and Implementation
11.1
Application Information
11.1.1
AM-Radio Band Avoidance
11.1.2
Parallel BTL Operation (PBTL)
11.1.3
Demodulation Filter Design
11.1.4
Line Driver Applications
11.2
Typical Applications
11.2.1
BTL Application
11.2.1.1
Design Requirements
11.2.1.2
Communication
11.2.1.3
Detailed Design Procedure
11.2.1.3.1
Hardware Design
11.2.1.3.2
Digital Input and the Serial Audio Port
11.2.1.3.3
Bootstrap Capacitors
11.2.1.3.4
Output Reconstruction Filter
11.2.1.4
Application Curves
11.2.2
PBTL Application
11.2.2.1
Design Requirements
11.2.2.1.1
Detailed Design Procedure
11.2.2.2
Application Curves
12
Power Supply Recommendations
13
Layout
13.1
Layout Guidelines
13.1.1
Electrical Connection of Thermal pad and Heat Sink
13.1.2
EMI Considerations
13.1.3
General Guidelines
13.2
Layout Example
13.3
Thermal Considerations
14
器件和文档支持
14.1
文档支持
14.1.1
相关文档
14.2
接收文档更新通知
14.3
社区资源
14.4
商标
14.5
静电放电警告
14.6
术语表
15
机械、封装和可订购信息
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
PPTD313D
订购信息
zhcsjb8_oa
zhcsjb8_pm
1
特性
符合面向汽车应用的 AEC-Q100 应用
器件温度等级 1:
–40°C 至 +125°C T
A
高级负载诊断
无需输入时钟即可进行直流诊断
交流诊断可进行高频扬声器检测,提供阻抗和相位响应
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
通道并联桥接式负载 (PBTL)
高达 2.1MHz 的输出开关频率
在 4Ω 负载、14.4V 电源电压和 10% THD 的条件下,输出功率为 27W
BTL
在 2Ω 负载、14.4V 电源电压和 10% THD 条件下,输出功率为 45W
BTL
在 2Ω 负载、18V PBTL 和 10% THD 的条件下,输出功率为 80W
在 4Ω 负载和 14.4V 电源电压条件下的音频性能 BTL
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
输出负载开路和短路
输出至电池短路或接地短路
线路输出检测高达 6kΩ
独立于主机运行
保护
输出限流
输出短路保护
40V 负载突降
可承受接地开路和电源开路
直流偏移
过热
欠压和过压
常规运行
4.5V 至
18V
电源电压
I
2
C 控制具有 4 个地址选项
削波检测 及热告警
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