ZHCSQY3
march 2023
TPS546D24S
PRODUCTION DATA
1
特性
2
应用
3
说明
4
Revision History
5
Pin Configuration and Functions
6
Specifications
6.1
Absolute Maximum Ratings
6.2
ESD Ratings
6.3
Recommended Operating Conditions
6.4
Thermal Information
6.5
Electrical Characteristics
6.6
Typical Characteristics
7
Detailed Description
7.1
Overview
7.2
Functional Block Diagram
7.3
Feature Description
7.3.1
Average Current-Mode Control
7.3.1.1
On-Time Modulator
7.3.1.2
Current Error Integrator
7.3.1.3
Voltage Error Integrator
7.3.2
Linear Regulators
7.3.3
AVIN and PVIN Pins
7.3.4
Input Undervoltage Lockout (UVLO)
7.3.4.1
Fixed AVIN UVLO
7.3.4.2
Fixed VDD5 UVLO
7.3.4.3
Programmable PVIN UVLO
7.3.4.4
EN/UVLO Pin
7.3.5
Start-Up and Shutdown
7.3.6
Differential Sense Amplifier and Feedback Divider
7.3.7
Set Output Voltage and Adaptive Voltage Scaling (AVS)
7.3.7.1
Reset Output Voltage
7.3.7.2
Soft Start
7.3.8
Prebiased Output Start-Up
7.3.9
Soft Stop and (65h) TOFF_FALL Command
7.3.10
Power Good (PGOOD)
7.3.11
Set Switching Frequency
7.3.12
Frequency Synchronization
7.3.13
Loop Follower Detection
7.3.14
Current Sensing and Sharing
7.3.15
Telemetry
7.3.16
Overcurrent Protection
7.3.17
Overvoltage/Undervoltage Protection
7.3.18
Overtemperature Management
7.3.19
Fault Management
7.3.20
Back-Channel Communication
7.3.21
Switching Node (SW)
7.3.22
PMBus General Description
7.3.23
PMBus Address
7.3.24
PMBus Connections
7.4
Device Functional Modes
7.4.1
Programming Mode
7.4.2
Standalone, Loop Controller, Loop Follower Mode Pin Connections
7.4.3
Continuous Conduction Mode
7.4.4
Operation With CNTL Signal (EN/UVLO)
7.4.5
Operation with (01h) OPERATION Control
7.4.6
Operation with CNTL and (01h) OPERATION Control
7.5
Programming
7.5.1
Supported PMBus Commands
7.5.2
Pin Strapping
7.5.2.1
Programming MSEL1
7.5.2.2
Programming MSEL2
7.5.2.3
Programming VSEL
7.5.2.4
Programming ADRSEL
7.5.2.5
Programming MSEL2 for a Loop Follower Device (GOSNS Tied to BP1V5)
7.5.2.6
Pin-Strapping Resistor Configuration
7.6
Register Maps
7.6.1
Conventions for Documenting Block Commands
7.6.2
(01h) OPERATION
7.6.3
(02h) ON_OFF_CONFIG
7.6.4
(03h) CLEAR_FAULTS
7.6.5
(04h) PHASE
7.6.6
(10h) WRITE_PROTECT
7.6.7
(15h) STORE_USER_ALL
7.6.8
(16h) RESTORE_USER_ALL
7.6.9
(19h) CAPABILITY
7.6.10
(1Bh) SMBALERT_MASK
7.6.11
(1Bh) SMBALERT_MASK_VOUT
7.6.12
(1Bh) SMBALERT_MASK_IOUT
7.6.13
(1Bh) SMBALERT_MASK_INPUT
7.6.14
(1Bh) SMBALERT_MASK_TEMPERATURE
7.6.15
(1Bh) SMBALERT_MASK_CML
7.6.16
(1Bh) SMBALERT_MASK_OTHER
7.6.17
(1Bh) SMBALERT_MASK_MFR
7.6.18
(20h) VOUT_MODE
7.6.19
(21h) VOUT_COMMAND
7.6.20
(22h) VOUT_TRIM
7.6.21
(24h) VOUT_MAX
7.6.22
(25h) VOUT_MARGIN_HIGH
7.6.23
(26h) VOUT_MARGIN_LOW
7.6.24
(27h) VOUT_TRANSITION_RATE
7.6.25
(29h) VOUT_SCALE_LOOP
7.6.26
(2Bh) VOUT_MIN
7.6.27
(33h) FREQUENCY_SWITCH
7.6.28
(35h) VIN_ON
7.6.29
(36h) VIN_OFF
7.6.30
(37h) INTERLEAVE
7.6.31
(38h) IOUT_CAL_GAIN
7.6.32
(39h) IOUT_CAL_OFFSET
7.6.33
(40h) VOUT_OV_FAULT_LIMIT
7.6.34
(41h) VOUT_OV_FAULT_RESPONSE
7.6.35
(42h) VOUT_OV_WARN_LIMIT
7.6.36
(43h) VOUT_UV_WARN_LIMIT
7.6.37
(44h) VOUT_UV_FAULT_LIMIT
7.6.38
(45h) VOUT_UV_FAULT_RESPONSE
7.6.39
(46h) IOUT_OC_FAULT_LIMIT
7.6.40
(47h) IOUT_OC_FAULT_RESPONSE
7.6.41
(4Ah) IOUT_OC_WARN_LIMIT
7.6.42
(4Fh) OT_FAULT_LIMIT
7.6.43
(50h) OT_FAULT_RESPONSE
7.6.44
(51h) OT_WARN_LIMIT
7.6.45
(55h) VIN_OV_FAULT_LIMIT
7.6.46
(56h) VIN_OV_FAULT_RESPONSE
7.6.47
(58h) VIN_UV_WARN_LIMIT
7.6.48
(60h) TON_DELAY
7.6.49
(61h) TON_RISE
7.6.50
(62h) TON_MAX_FAULT_LIMIT
7.6.51
(63h) TON_MAX_FAULT_RESPONSE
7.6.52
(64h) TOFF_DELAY
7.6.53
(65h) TOFF_FALL
7.6.54
(78h) STATUS_BYTE
7.6.55
(79h) STATUS_WORD
7.6.56
(7Ah) STATUS_VOUT
7.6.57
(7Bh) STATUS_IOUT
7.6.58
(7Ch) STATUS_INPUT
7.6.59
(7Dh) STATUS_TEMPERATURE
7.6.60
(7Eh) STATUS_CML
7.6.61
(7Fh) STATUS_OTHER
7.6.62
(80h) STATUS_MFR_SPECIFIC
7.6.63
(88h) READ_VIN
7.6.64
(8Bh) READ_VOUT
7.6.65
(8Ch) READ_IOUT
7.6.66
(8Dh) READ_TEMPERATURE_1
7.6.67
(98h) PMBUS_REVISION
7.6.68
(99h) MFR_ID
7.6.69
(9Ah) MFR_MODEL
7.6.70
(9Bh) MFR_REVISION
7.6.71
(9Eh) MFR_SERIAL
7.6.72
(ADh) IC_DEVICE_ID
7.6.73
(AEh) IC_DEVICE_REV
7.6.74
(B1h) USER_DATA_01 (COMPENSATION_CONFIG)
7.6.75
(B5h) USER_DATA_05 (POWER_STAGE_CONFIG)
7.6.76
(D0h) MFR_SPECIFIC_00 (TELEMETRY_CONFIG)
7.6.77
(DAh) MFR_SPECIFIC_10 (READ_ALL)
7.6.78
(DBh) MFR_SPECIFIC_11 (STATUS_ALL)
7.6.79
(DCh) MFR_SPECIFIC_12 (STATUS_PHASE)
7.6.80
(E3h) MFR_SPECIFIC_19 (PGOOD_CONFIG)
7.6.81
(E4h) MFR_SPECIFIC_20 (SYNC_CONFIG)
7.6.82
(ECh) MFR_SPECIFIC_28 (STACK_CONFIG)
7.6.83
(EDh) MFR_SPECIFIC_29 (MISC_OPTIONS)
7.6.84
(EEh) MFR_SPECIFIC_30 (PIN_DETECT_OVERRIDE)
7.6.85
(EFh) MFR_SPECIFIC_31 (DEVICE_ADDRESS)
7.6.86
(F0h) MFR_SPECIFIC_32 (NVM_CHECKSUM)
7.6.87
(F1h) MFR_SPECIFIC_33 (SIMULATE_FAULT)
7.6.88
(FAh) MFR_SPECIFIC_42 (PASSKEY)
7.6.89
(FBh) MFR_SPECIFIC_43 (EXT_WRITE_PROTECT)
7.6.90
(FCh) MFR_SPECIFIC_44 (FUSION_ID0)
7.6.91
(FDh) MFR_SPECIFIC_45 (FUSION_ID1)
8
Application and Implementation
8.1
Application Information
8.2
Typical Application
8.2.1
Design Requirements
8.2.2
Detailed Design Procedure
8.2.2.1
Custom Design With WEBENCH® Tools
8.2.2.2
Switching Frequency
8.2.2.3
Inductor Selection
8.2.2.4
Output Capacitor Selection
8.2.2.4.1
Output Voltage Deviation During Load Transient
8.2.2.4.2
Output Voltage Ripple
8.2.2.5
Input Capacitor Selection
8.2.2.6
AVIN, BP1V5, VDD5 Bypass Capacitor
8.2.2.7
Bootstrap Capacitor Selection
8.2.2.8
R-C Snubber
8.2.2.9
Output Voltage Setting (VSEL Pin)
8.2.2.10
Compensation Selection (MSEL1 Pin)
8.2.2.11
Soft Start, Overcurrent Protection, and Stacking Configuration (MSEL2 Pin)
8.2.2.12
Enable and UVLO
8.2.2.13
ADRSEL
8.2.2.14
Pin-Strapping Resistor Selection
8.2.2.15
BCX_CLK and BCX_DAT
8.2.3
Application Curves
8.3
Two-Phase Application
8.3.1
Design Requirements
8.3.2
Switching Frequency
8.3.3
Inductor Selection
8.3.4
Output Capacitor Selection
8.3.5
Input Capacitor Selection
8.3.6
AVIN, BP1V5, VDD5 Bypass Capacitor
8.3.7
Bootstrap Capacitor Selection
8.3.8
R-C Snubber
8.3.9
Output Voltage Setting (VSEL Pin)
8.3.10
Compensation Selection (MSEL1 Pin)
8.3.11
GOSNS/FLWR Pin of Loop Follower Devices
8.3.12
Soft Start, Overcurrent Protection, and Stacking Configuration (MSEL2 Pin)
8.3.13
Enable, UVLO
8.3.14
VSHARE Pin
8.3.14.1
ADRSEL Pin
8.3.15
SYNC Pin
8.3.16
VOSNS Pin of Loop Follower Devices
8.3.17
Unused Pins of Loop Follower Devices
8.3.18
Two-phase Application Curves
8.4
Four-Phase Application
8.5
Power Supply Recommendations
8.6
Layout
8.6.1
Layout Guidelines
8.6.2
Layout Example
8.6.3
Mounting and Thermal Profile Recommendation
9
Device and Documentation Support
9.1
Device Support
9.1.1
第三方米6体育平台手机版_好二三四免责声明
9.1.2
Development Support
9.1.2.1
Custom Design With WEBENCH® Tools
9.1.2.2
Texas Instruments Fusion Digital Power Designer
9.2
Documentation Support
9.2.1
Related Documentation
9.3
接收文档更新通知
9.4
支持资源
9.5
Trademarks
9.6
静电放电警告
9.7
术语表
10
Mechanical, Packaging, and Orderable Information
封装选项
机械数据 (封装 | 引脚)
RVF|40
MPQF268C
散热焊盘机械数据 (封装 | 引脚)
RVF|40
QFND333E
订购信息
zhcsqy3_oa
1
特性
集成扩展安全功能
支持双电源:
2.95V
至
16V
PVIN;2.95V 至 18V AVIN(4V
IN
VDD5 开关电压)
集成
4.5mΩ/0.9mΩ
MOSFET
具有可选内部补偿的平均电流模式控制
可堆叠 2 个、3 个、4 个,电流共享高达
160A
,每个输出可支持单个地址
通过引脚搭接的可选输出电压范围为 0.5V 至 5.5V,使用 PMBus VOUT_COMMAND 的电压范围为 0.25V 至 5.5V
广泛的 PMBus 命令集,可遥测 V
OUT
、I
OUT
和内部裸片温度
通过内部反馈分压器实现差分遥感,可检测到小于 1% 的 V
OUT
误差,T
J
为 –40°C 至 +150°C
通过 PMBus 实现 AVS 和裕量调节
采用 MSEL 引脚,引脚编程 PMBus 默认值
12 种介于 225kHz 和 1.5MHz 之间的可选开关频率(8 个引脚搭接选项)
频率同步输入/同步输出
支持预偏置输出
7mm × 5mm × 1.5mm、40 引脚 QFN
与
TPS546D24A
直接兼容
使用 TPS546D24S 并借助
WEBENCH®
Power Designer
创建定制设计方案
相关信息
https://www.ti.com/lit/ds/symlink/tps546b24a.pdf
https://www.ti.com/lit/ds/symlink/tps546a24a.pdf
https://www.ti.com/lit/ds/symlink/tps546d24a.pdf
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