TPS61030

現行

採用 TSSOP-16、具有 20µA Iq 的 1.8Vin、4-A 開關、96% 高效升壓轉換器

產品詳細資料

Rating Catalog Operating temperature range (°C) -40 to 125 Topology Boost Type Converter Vin (min) (V) 1.8 Vin (max) (V) 5.5 Switching frequency (min) (kHz) 500 Switching frequency (max) (kHz) 700 Features Synchronous Rectification Vout (min) (V) 1.8 Vout (max) (V) 5.5 Iq (typ) (µA) 20 Duty cycle (max) (%) 100 Switch current limit (typ) (A) 4
Rating Catalog Operating temperature range (°C) -40 to 125 Topology Boost Type Converter Vin (min) (V) 1.8 Vin (max) (V) 5.5 Switching frequency (min) (kHz) 500 Switching frequency (max) (kHz) 700 Features Synchronous Rectification Vout (min) (V) 1.8 Vout (max) (V) 5.5 Iq (typ) (µA) 20 Duty cycle (max) (%) 100 Switch current limit (typ) (A) 4
HTSSOP (PWP) 16 32 mm² 5 x 6.4 VQFN (RSA) 16 16 mm² 4 x 4
  • 96% Efficient Synchronous Boost Converter With
    1000-mA Output Current From 1.8-V Input
  • Device Quiescent Current: 20-µA (Typ)
  • Input Voltage Range: 1.8-V to 5.5-V
  • Fixed and Adjustable Output Voltage Options Up
    to 5.5-V
  • Power Save Mode for Improved Efficiency at Low
    Output Power
  • Low Battery Comparator
  • Low EMI-Converter (Integrated Antiringing Switch)
  • Load Disconnect During Shutdown
  • Over-Temperature Protection
  • Available in a Small 4 mm × 4 mm QFN-16 or in a
    TSSOP-16 Package
  • 96% Efficient Synchronous Boost Converter With
    1000-mA Output Current From 1.8-V Input
  • Device Quiescent Current: 20-µA (Typ)
  • Input Voltage Range: 1.8-V to 5.5-V
  • Fixed and Adjustable Output Voltage Options Up
    to 5.5-V
  • Power Save Mode for Improved Efficiency at Low
    Output Power
  • Low Battery Comparator
  • Low EMI-Converter (Integrated Antiringing Switch)
  • Load Disconnect During Shutdown
  • Over-Temperature Protection
  • Available in a Small 4 mm × 4 mm QFN-16 or in a
    TSSOP-16 Package

The TPS6103x devices provide a power supply solution for products powered by either a one-cell Li-Ion or Li-polymer, or a two to three-cell alkaline, NiCd or NiMH battery. The converter generates a stable output voltage that is either adjusted by an external resistor divider or fixed internally on the chip. It provides high efficient power conversion and is capable of delivering output currents up to 1 A at 5 V at a supply voltage down to 1.8 V. The implemented boost converter is based on a fixed frequency, pulse-width- modulation (PWM) controller using a synchronous rectifier to obtain maximum efficiency. At low load currents the converter enters Power Save mode to maintain a high efficiency over a wide load current range. The Power Save mode can be disabled, forcing the converter to operate at a fixed switching frequency. It can also operate synchronized to an external clock signal that is applied to the SYNC pin. The maximum peak current in the boost switch is limited to a value of 4500 mA.

The converter can be disabled to minimize battery drain. During shutdown, the load is completely disconnected from the battery. A low-EMI mode is implemented to reduce ringing and, in effect, lower radiated electromagnetic energy when the converter enters the discontinuous conduction mode.

The TPS6103x devices provide a power supply solution for products powered by either a one-cell Li-Ion or Li-polymer, or a two to three-cell alkaline, NiCd or NiMH battery. The converter generates a stable output voltage that is either adjusted by an external resistor divider or fixed internally on the chip. It provides high efficient power conversion and is capable of delivering output currents up to 1 A at 5 V at a supply voltage down to 1.8 V. The implemented boost converter is based on a fixed frequency, pulse-width- modulation (PWM) controller using a synchronous rectifier to obtain maximum efficiency. At low load currents the converter enters Power Save mode to maintain a high efficiency over a wide load current range. The Power Save mode can be disabled, forcing the converter to operate at a fixed switching frequency. It can also operate synchronized to an external clock signal that is applied to the SYNC pin. The maximum peak current in the boost switch is limited to a value of 4500 mA.

The converter can be disabled to minimize battery drain. During shutdown, the load is completely disconnected from the battery. A low-EMI mode is implemented to reduce ringing and, in effect, lower radiated electromagnetic energy when the converter enters the discontinuous conduction mode.

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技術文件

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類型 標題 日期
* Data sheet TPS6103x 96% Efficient Synchronous Boost Converter With 4A Switch datasheet (Rev. G) PDF | HTML 2015年 3月 10日
Application note QFN and SON PCB Attachment (Rev. C) PDF | HTML 2023年 12月 6日
Application note Basic Calculation of a Boost Converter's Power Stage (Rev. D) PDF | HTML 2022年 10月 28日
White paper Extending Battery Life in Smart E-Locks (Rev. A) 2020年 6月 4日
Application note Performing Accurate PFM Mode Efficiency Measurements (Rev. A) 2018年 12月 11日
Application note PowerPAD™ Thermally Enhanced Package (Rev. H) 2018年 7月 6日
Selection guide Power Management Guide 2018 (Rev. R) 2018年 6月 25日
Application note Optimizing Transient Response of Internally Compensated DC-DC Converters (Rev. B) 2017年 11月 29日
Application note Extending the Soft Start Time Without a Soft Start Pin (Rev. B) 2017年 6月 15日
EVM User's guide TPS6103x EVM-208 For High Efficient Output Current Boost Converter (Rev. B) 2016年 9月 12日
Application note Five Steps to a Good PCB Layout of the Boost Converter PDF | HTML 2016年 5月 3日
Application note Practical Feedback Loop Analysis for Voltage-Mode Boost Converter 2014年 2月 4日
Analog Design Journal Design considerations for a resistive feedback divider in a DC/DC converter 2012年 4月 26日
Application note Choosing an Appropriate Pull-up/Pull-down Resistor for Open Drain Outputs 2011年 9月 19日
Analog Design Journal IQ: What it is, what it isn’t, and how to use it 2011年 6月 17日
Application note Voltage Mode Boost Converter Small Signal Control Loop Analysis Using TPS61030 (Rev. A) 2009年 1月 7日
Application note Minimizing Ringing at the Switch Node of a Boost Converter 2006年 9月 15日
EVM User's guide TPS61030EVM-029 User's Guide 2003年 10月 31日

設計與開發

如需其他條款或必要資源,請按一下下方的任何標題以檢視詳細頁面 (如有)。

開發板

TPS61030EVM-029 — TPS61030 評估模組 (QFN 封裝)

The TPS61030EVM-029 is an evaluation tool for the TPS61030 inductive step-up converter in QFN-16 package which can supply voltages up to 5.5V from a 1.8-V to 5.5-V input. The TPS61030EVM-029 uses a TPS61030 adjustable output step-up converter and the appropriate external components to provide a 5-V (...)

使用指南: PDF
TI.com 無法提供
開發板

TPS61030EVM-208 — TPS61030 評估模組

The TPS61030EVM-208 is an evaluation tool for the TPS61030 inductive boost converter in a TSSOP-16 package that can supply voltages up to 5.5 V from input voltages in the range of 1.8 V to 5.5 V. The EVM is configured to supply an output voltage of 5 V at up to 1000 mA. The EVM can also be used to (...)

使用指南: PDF
TI.com 無法提供
開發板

TPS61031EVM-208 — TPS61031 評估模組

The TPS61031EVM-208 is an evaluation tool for the TPS61031 inductive boost converter in a TSSOP-16 package that can supply an output voltage of 3.3 V at up to 1000 mA from input voltages in the range of 1.8 V to 5.5 V.

使用指南: PDF
TI.com 無法提供
開發板

TPS61032EVM-208 — TPS61032 評估模組

The TPS61032EVM-208 is an evaluation tool for the TPS61032 inductive boost converter in a TSSOP-16 package that can supply an output voltage of 5V at up to 1000 mA from input voltages in the range of 1.8V to 5.5V.

使用指南: PDF
TI.com 無法提供
模擬型號

TPS61030 TINA-TI Transient Reference Design

SLVM099.TSC (909 KB) - TINA-TI Reference Design
模擬型號

TPS61030 TINA-TI Transient Spice Model

SLVM098.ZIP (93 KB) - TINA-TI Spice Model
模擬型號

TPS61030 Unencrypted PSpice Transient Model Package (Rev. A)

SLIM126A.ZIP (57 KB) - PSpice Model
Gerber 檔案

TPS6103xVM Gerber Files

SLVC140.ZIP (353 KB)
參考設計

TIDA-00676 — 適用於電池供電類儀錶 (30dBm wM-Bus/169 MHz) 的電源解決方案參考設計

此電源管理解決方案可透過各種電池類型提供 900mA @3.6V,適用於智慧流量測量應用 (家用瓦斯表和水表)。TIDA-00676 包含 ETSI Cat.適用於 wM-Bus @ 169 MHz 且支援 1 個接收器的 RF 子系統,傳輸功率高達 +30 dBm,符合義大利和法國 169MHz RF 連結的所有技術要求。電源管理和 RF 子系統可同樣有效運用於具 wM-Bus@ 169 MHz 鏈路的資料收集器和其他終端節點 (E 電表或屋內顯示器)。
Design guide: PDF
電路圖: PDF
封裝 針腳 CAD 符號、佔位空間與 3D 模型
HTSSOP (PWP) 16 Ultra Librarian
VQFN (RSA) 16 Ultra Librarian

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
  • 認證摘要
  • 進行中持續性的可靠性監測
內含資訊:
  • 晶圓廠位置
  • 組裝地點

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