SLOSE32A
April 2019 – October 2019
TAS6421-Q1
PRODUCTION DATA.
1
Features
2
Applications
3
Description
Functional Block Diagram
4
Revision History
5
Device Options
6
Pin Configuration and Functions
Pin 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
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
DC Blocking
9.3.3
Volume Control and Gain
9.3.4
High-Frequency Pulse-Width Modulator (PWM)
9.3.5
Gate Drive
9.3.6
Power FETs
9.3.7
Load Diagnostics
9.3.7.1
DC Load Diagnostics
9.3.7.2
Line Output Diagnostics
9.3.7.3
AC Load Diagnostics
9.3.7.3.1
Impedance Magnitude Measurement
9.3.7.3.2
Impedance Phase Reference Measurement
9.3.7.3.3
Impedance Phase Measurement
9.3.8
Protection and Monitoring
9.3.8.1
Overcurrent Limit (ILIMIT)
9.3.8.2
Overcurrent Shutdown (ISD)
9.3.8.3
DC Detect
9.3.8.4
Clip Detect
9.3.8.5
Global Overtemperature Warning (OTW), Overtemperature Shutdown (OTSD)
9.3.8.6
Channel Overtemperature Warning [OTW(i)] and Shutdown [OTSD(i)]
9.3.8.7
Undervoltage (UV) and Power-On-Reset (POR)
9.3.8.8
Overvoltage (OV) and Load Dump
9.3.9
Power Supply
9.3.9.1
Vehicle-Battery Power-Supply Sequence
9.3.9.1.1
Power-Up Sequence
9.3.9.1.2
Power-Down Sequence
9.3.9.2
Boosted Power-Supply Sequence
9.3.10
Hardware Control Pins
9.3.10.1
FAULT
9.3.10.2
WARN
9.3.10.3
MUTE
9.3.10.4
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]
Table 9.
Mode Control Field Descriptions
9.6.2
Miscellaneous Control 1 Register (address = 0x01) [default = 0x32]
Table 10.
Misc Control 1 Field Descriptions
9.6.3
Miscellaneous Control 2 Register (address = 0x02) [default = 0x62]
Table 11.
Misc Control 2 Field Descriptions
9.6.4
SAP Control (Serial Audio-Port Control) Register (address = 0x03) [default = 0x04]
Table 12.
SAP Control Field Descriptions
9.6.5
Channel State Control Register (address = 0x04) [default = 0x55]
Table 13.
Channel State Control Field Descriptions
9.6.6
Channel 1 Volume Control Register (address = 0x05) [default = 0xCF]
Table 14.
Ch 1 Volume Control Field Descriptions
9.6.7
DC Load Diagnostic Control 1 Register (address = 0x09) [default = 0x00]
Table 15.
DC Load Diagnostics Control 1 Field Descriptions
9.6.8
DC Load Diagnostic Control 2 Register (address = 0x0A) [default = 0x11]
Table 16.
DC Load Diagnostics Control 2 Field Descriptions
9.6.9
DC Load Diagnostic Report 1 Register (address = 0x0C) [default = 0x00]
Table 17.
DC Load Diagnostics Report 1 Field Descriptions
9.6.10
DC Load Diagnostics Report 3 Line Output Register (address = 0x0E) [default = 0x00]
Table 18.
DC Load Diagnostics Report 3 Line Output Field Descriptions
9.6.11
Channel State Reporting Register (address = 0x0F) [default = 0x40]
Table 19.
State-Reporting Field Descriptions
9.6.12
Channel Faults (Overcurrent, DC Detection) Register (address = 0x10) [default = 0x00]
Table 20.
Channel Faults Field Descriptions
9.6.13
Global Faults 1 Register (address = 0x11) [default = 0x00]
Table 21.
Global Faults 1 Field Descriptions
9.6.14
Global Faults 2 Register (address = 0x12) [default = 0x00]
Table 22.
Global Faults 2 Field Descriptions
9.6.15
Warnings Register (address = 0x13) [default = 0x20]
Table 23.
Warnings Field Descriptions
9.6.16
Pin Control Register (address = 0x14) [default = 0x00]
Table 24.
Pin Control Field Descriptions
9.6.17
AC Load Diagnostic Control 1 Register (address = 0x15) [default = 0x00]
Table 25.
AC Load Diagnostic Control 1 Field Descriptions
9.6.18
AC Load Diagnostic Control 2 Register (address = 0x16) [default = 0x00]
Table 26.
AC Load Diagnostic Control 2 Field Descriptions
9.6.19
AC Load Diagnostic Impedance Report Ch1 Register (address = 0x17) [default = 0x00]
Table 27.
Ch1 AC LDG Impedance Report Field Descriptions
9.6.20
AC Load Diagnostic Phase Report High Register (address = 0x1B) [default = 0x00]
Table 28.
AC LDG Phase High Report Field Descriptions
9.6.21
AC Load Diagnostic Phase Report Low Register (address = 0x1C) [default = 0x00]
Table 29.
AC LDG Phase Low Report Field Descriptions
9.6.22
AC Load Diagnostic STI Report High Register (address = 0x1D) [default = 0x00]
Table 30.
AC LDG STI High Report Field Descriptions
9.6.23
AC Load Diagnostic STI Report Low Register (address = 0x1E) [default = 0x00]
Table 31.
Ch1 AC LDG STI Low Report Field Descriptions
9.6.24
Miscellaneous Control 3 Register (address = 0x21) [default = 0x00]
Table 32.
Misc Control 3 Field Descriptions
9.6.25
Clip Control Register (address = 0x22) [default = 0x01]
Table 33.
Clip Control Field Descriptions
9.6.26
Clip Window Register (address = 0x23) [default = 0x14]
Table 34.
Clip Window Field Descriptions
9.6.27
Clip Warning Register (address = 0x24) [default = 0x00]
Table 35.
Clip Warning Field Descriptions
9.6.28
ILIMIT Status Register (address = 0x25) [default = 0x00]
Table 36.
ILIMIT Status Field Descriptions
9.6.29
Miscellaneous Control 4 Register (address = 0x26) [default = 0x40]
Table 37.
Misc Control 4 Field Descriptions
10
Application and Implementation
10.1
Application Information
10.1.1
AM-Radio Band Avoidance
10.1.2
Demodulation Filter Design
10.1.3
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
Application Curves
11
Power Supply Recommendations
12
Layout
12.1
Layout Guidelines
12.1.1
Electrical Connection of Thermal pad and Heat Sink
12.1.2
EMI Considerations
12.1.3
General Guidelines
12.2
Layout Example
12.3
Thermal Considerations
13
Device and Documentation Support
13.1
Documentation Support
13.1.1
Related Documentation
13.2
Receiving Notification of Documentation Updates
13.3
Community Resources
13.4
Trademarks
13.5
Electrostatic Discharge Caution
13.6
Glossary
Package Options
Mechanical Data (Package|Pins)
DKQ|56
MPDS378A
Thermal pad, mechanical data (Package|Pins)
DKQ|56
PPTD313D
Orderable Information
slose32a_oa
slose32a_pm
1
Features
Advanced load diagnostics
DC Diagnostics run without input clocks
AC Diagnostic for tweeter detection with impedance and phase response
Easily meet CISPR25-L5 EMC specification
AEC-Q100 Qualified for automotive applications
Temperature grade: –40°C to +125°C
Audio inputs
I
2
S or 4/8-channel TDM input
Input sample rates: 44.1 kHz, 48 kHz, 96 kHz
Input formats: 16-bit to 32-Bit I
2
S, and TDM
Audio outputs
Single-channel bridge-tied load (BTL)
Up to 2.1 MHz output switching frequency
27 W, 10% THD Into 4 Ω at 14.4 V BTL
45 W, 10% THD Into 2 Ω at 14.4 V BTL
Audio performance Into 4 Ω at 14.4 V BTL
THD+N < 0.02% at 1 W
42 µV
RMS
Output Noise
–90 dB Crosstalk
Load diagnostics with Host-independent operation
Output open and shorted load
Output-to-battery or ground shorts
Line output detection Up to 6 kΩ
Protection
Output current limiting and short protection
40 V Load dump
Open ground and power tolerant
Overtemperature warning and shutdown
Undervoltage and overvoltage, DC Offset
General operation
4.5 V to 26.4 V supply voltage
I
2
C control with 4 address options
Clip detection (latching or non-latching)