具切換模式充電器的完全整合式電源管理 IC (PMIC)

TWL6030 不建議用於新設計
儘管為了支援以前的設計而繼續生產此項產品,但我們並不建議用在新設計上。考量下列其中一項替代產品:
open-in-new 比較替代產品
功能相似於所比較的產品
TPS65218D0 現行 適用於 ARM® Cortex™-A8/A9 SOC 和 FPGA 的整合電源管理 IC (PMIC) Lowest power consumption PMIC for powering Sitara™ AM437x processors in EPOS applications.

產品詳細資料

Vin (min) (V) 2.5 Vin (max) (V) 4.8 Vout (min) (V) 0.6 Vout (max) (V) 3.3 Iout (max) (A) 2 Features Comm control Rating Catalog Operating temperature range (°C) -40 to 85 Processor supplier Texas Instruments Processor name OMAP Product type Processor and FPGA
Vin (min) (V) 2.5 Vin (max) (V) 4.8 Vout (min) (V) 0.6 Vout (max) (V) 3.3 Iout (max) (A) 2 Features Comm control Rating Catalog Operating temperature range (°C) -40 to 85 Processor supplier Texas Instruments Processor name OMAP Product type Processor and FPGA
FCCSP (CMR) 187 49 mm² 7 x 7
  • Seven highly efficient 6-MHz buck converters
    • Two 0.6 to 2.1 V @ 1.6 A
    • Five 0.6 to 2.1 V @ 1.0 A
  • 11 General-purpose LDOs
    • Six 1.0 to 3.3 V @ 0.2 A with battery or preregulated supply
      (One can be used as a vibrator driver.)
    • One 1.0 to 3.3 V @ 50 mA with battery or preregulated supply
    • One low noise 1.0 to 3.3 V @ 50 mA with battery or preregulated supply
    • 3.3 V @ 35 mA USB LDO
    • One LDO for TWL6030 internal use
    • One LDO for internal and external use
  • USB OTG module
  • Backup battery charger
  • 10-bit ADC with 17 input channels
  • 13-bit Coulomb counter with four programmable integration periods
  • Low power consumption
    • 5 µA in backup mode
    • 20 µA in wait-on mode
    • 110 µA in deep sleep, with two DCDCs active
  • RTC with alarm wake-up mechanism
  • SIM and MMC card detections
  • Two digital PWM outputs
  • Thermal monitoring
    • High-temperature warning
    • Thermal shutdown
  • Control
    • Configurable power-up and power-down sequences (EPROM programmable)
    • Three output signals that can be included in the start-up sequence
    • Two I2C™ interfaces
    • All resources configurable by I2C
  • Clock management
    32-kHz output
  • Battery charger 1.5 A
    • Charger for single-cell Li-Ion and Li-Polymer battery packs
    • Switched mode charger with integrated power FET for up to 1.5-A current
    • High-accuracy voltage and current regulation
    • Safety timer and reset control
    • Thermal regulation protection
    • Input/output overvoltage protection
    • Charging indicator LED driver
    • Boost mode operation for USB OTG
    • Compliant with:
      • USB 2.0
      • OTG and EH 2.0
      • YD/T 1591-2006
      • USB battery charging 1.1 and 1.2
      • Japanese battery charging requirements
  • Package 7 mm × 7 mm 187-pin nFBGA
  • Seven highly efficient 6-MHz buck converters
    • Two 0.6 to 2.1 V @ 1.6 A
    • Five 0.6 to 2.1 V @ 1.0 A
  • 11 General-purpose LDOs
    • Six 1.0 to 3.3 V @ 0.2 A with battery or preregulated supply
      (One can be used as a vibrator driver.)
    • One 1.0 to 3.3 V @ 50 mA with battery or preregulated supply
    • One low noise 1.0 to 3.3 V @ 50 mA with battery or preregulated supply
    • 3.3 V @ 35 mA USB LDO
    • One LDO for TWL6030 internal use
    • One LDO for internal and external use
  • USB OTG module
  • Backup battery charger
  • 10-bit ADC with 17 input channels
  • 13-bit Coulomb counter with four programmable integration periods
  • Low power consumption
    • 5 µA in backup mode
    • 20 µA in wait-on mode
    • 110 µA in deep sleep, with two DCDCs active
  • RTC with alarm wake-up mechanism
  • SIM and MMC card detections
  • Two digital PWM outputs
  • Thermal monitoring
    • High-temperature warning
    • Thermal shutdown
  • Control
    • Configurable power-up and power-down sequences (EPROM programmable)
    • Three output signals that can be included in the start-up sequence
    • Two I2C™ interfaces
    • All resources configurable by I2C
  • Clock management
    32-kHz output
  • Battery charger 1.5 A
    • Charger for single-cell Li-Ion and Li-Polymer battery packs
    • Switched mode charger with integrated power FET for up to 1.5-A current
    • High-accuracy voltage and current regulation
    • Safety timer and reset control
    • Thermal regulation protection
    • Input/output overvoltage protection
    • Charging indicator LED driver
    • Boost mode operation for USB OTG
    • Compliant with:
      • USB 2.0
      • OTG and EH 2.0
      • YD/T 1591-2006
      • USB battery charging 1.1 and 1.2
      • Japanese battery charging requirements
  • Package 7 mm × 7 mm 187-pin nFBGA

The TWL6030 device is an integrated power-management integrated circuit (IC) for applications powered by a rechargeable battery. The device provides seven configurable step-down converters with up to 1.6A capability for memory, processor core, I/O, auxiliary, preregulation for LDOs, etc. The device also contains 11 LDO regulators that can be supplied from a battery or a preregulated supply. Power-up/power-down controller is configurable and can support any power-up/power-down sequences (EPROM based). The real-time clock (RTC) provides a 32-kHz output buffer, second/minute/hour/day/month/year information, and alarm wake up. The TWL6030 supports 32-kHz clock generation based on a crystal oscillator. The device integrates a switched-mode charger allowing faster battery charge, higher efficiency, and less power dissipation.

The TWL6030 device generates power supplies for OMAP™ 4 processors and operates together with the TWL6040 device, which includes all audio and related detection features. For audio IC parameters, see the TWL6040 datasheet. In addition, the TWL6030 device can be used as a power management multichannel IC (PMIC) for several other processors, thanks to the programmable startup/shutdown controller and default supply voltage levels. The TWL6030 is available in an nFBGA package, 7.0 mm x 7.0 mm, with a 0.4-mm ball pitch.

shows the TWL6030 block diagram.

The TWL6030 device is an integrated power-management integrated circuit (IC) for applications powered by a rechargeable battery. The device provides seven configurable step-down converters with up to 1.6A capability for memory, processor core, I/O, auxiliary, preregulation for LDOs, etc. The device also contains 11 LDO regulators that can be supplied from a battery or a preregulated supply. Power-up/power-down controller is configurable and can support any power-up/power-down sequences (EPROM based). The real-time clock (RTC) provides a 32-kHz output buffer, second/minute/hour/day/month/year information, and alarm wake up. The TWL6030 supports 32-kHz clock generation based on a crystal oscillator. The device integrates a switched-mode charger allowing faster battery charge, higher efficiency, and less power dissipation.

The TWL6030 device generates power supplies for OMAP™ 4 processors and operates together with the TWL6040 device, which includes all audio and related detection features. For audio IC parameters, see the TWL6040 datasheet. In addition, the TWL6030 device can be used as a power management multichannel IC (PMIC) for several other processors, thanks to the programmable startup/shutdown controller and default supply voltage levels. The TWL6030 is available in an nFBGA package, 7.0 mm x 7.0 mm, with a 0.4-mm ball pitch.

shows the TWL6030 block diagram.

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技術文件

star =TI 所選的此產品重要文件
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類型 標題 日期
* Data sheet TWL6030 DM Version C datasheet (Rev. C) 2011年 7月 4日
Selection guide Power Management Guide 2018 (Rev. R) 2018年 6月 25日
Design guide TWL6030 PCB Guidelines (Rev. A) 2011年 7月 31日
Application note TWL6030 Gas Gauging Basics (Rev. A) 2011年 7月 31日
Application note TWL6030 Battery Charging (Rev. A) 2011年 7月 31日

設計與開發

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驅動程式或資料庫

TWL4030SW-LINUX — 適用於 TWL4030 的 Linux 驅動程式

The Linux driver supports the TWL4030 series of Integrated Power Management ICs. The Linux driver supports communication through the I2C bus and interfaces with various sub-systems.

 

Linux Mainline Status

Available in Linux Main line: Yes
Available through git.ti.com: N/A

Supported Devices:

  • twl4030
  • (...)
封裝 引腳 下載
FCCSP (CMR) 187 檢視選項

訂購與品質

內含資訊:
  • RoHS
  • REACH
  • 產品標記
  • 鉛塗層/球物料
  • MSL 等級/回焊峰值
  • MTBF/FIT 估算值
  • 材料內容
  • 資格摘要
  • 進行中可靠性監測
內含資訊:
  • 晶圓廠位置
  • 組裝地點

支援與培訓

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