TPS61241
- Efficiency > 90% at Nominal Operating Conditions
- Total DC Output Voltage Accuracy 5.0 V±2%
- Typical 30-μA Quiescent Current
- Best in Class Line and Load Transient
- Wide VIN Range From 2.3 V to 5.5 V
- Output Current up to 450 mA
- Automatic PFM/PWM Mode Transition
- Low Ripple Power Save Mode for Improved
Efficiency at Light Loads - Internal Softstart, 250-μs Typical Start-Up Time
- 3.5-MHz Typical Operating Frequency
- Load Disconnect During Shutdown
- Current Overload and Thermal Shutdown
Protection - Three Surface-Mount External Components
Required (One MLCC Inductor, Two Ceramic
Capacitors) - Total Solution Size <13 mm2
- Available in a 6-Pin DSBGA and 2-mm × 2-mm
WSON Package
The TPS6124x device is a highly efficient synchronous step-up DC-DC converter optimized for products powered by either a three-cell alkaline, NiCd or NiMH, or one-cell Li-Ion or Li-Polymer battery. The TPS6124x supports output currents up to 450 mA. The TPS61240 has an input valley current limit of 500 mA, and the TPS61241 has an input valley current of 600 mA.
With an input voltage range of 2.3 V to 5.5 V, the device supports batteries with extended voltage range and are ideal to power portable applications like mobile phones and other portable equipment. The TPS6124x boost converter is based on a quasi-constant on-time valley current mode control scheme.
The TPS6124x presents a high impedance at the VOUT pin when shut down. This allows for use in applications that require the regulated output bus to be driven by another supply while the TPS6124x is shut down.
During light loads the device will automatically pulse skip allowing maximum efficiency at lowest quiescent currents. In the shutdown mode, the current consumption is reduced to less than 1 µA.
TPS6124x allows the use of small inductors and capacitors to achieve a small solution size. During shutdown, the load is completely disconnected from the battery. The TPS6124x is available in a 6-pin DSBGA and 2-mm × 2-mm WSON package.
技術文檔
| 類型 | 標題 | 下載最新的英語版本 | 日期 | |||
|---|---|---|---|---|---|---|
| * | 數據表 | TPS6124x 3.5-MHz High Efficiency Step-Up Converter 數據表 (Rev. D) | PDF | HTML | 2015年 12月 15日 | ||
| 應用手冊 | Basic Calculation of a Boost Converter's Power Stage... (Rev. D) | PDF | HTML | 2022年 11月 21日 | |||
| 應用手冊 | 升壓轉換器功率級的基本計算 (Rev. D) | PDF | HTML | 英語版 (Rev.D) | PDF | HTML | 2022年 11月 11日 | |
| 應用手冊 | Performing Accurate PFM Mode Efficiency Measurements (Rev. A) | 2018年 12月 11日 | ||||
| 選擇指南 | 電源管理指南 2018 (Rev. K) | 2018年 7月 31日 | ||||
| 選擇指南 | 電源管理指南 2018 (Rev. R) | 2018年 6月 25日 | ||||
| 應用手冊 | Five Steps to a Good PCB Layout of the Boost Converter | PDF | HTML | 2016年 5月 3日 | |||
| 應用手冊 | Design of UVLO for LM27313 (Rev. B) | 2014年 4月 8日 | ||||
| 模擬設計期刊 | IQ:它是什么、不是什么以及如何使用 | 英語版 | 2011年 8月 17日 |
設計和開發
如需其他信息或資源,請點擊以下任一標題進入詳情頁面查看(如有)。
| 封裝 | 引腳 | CAD 符號、封裝和 3D 模型 |
|---|---|---|
| DSBGA (YFF) | 6 | Ultra Librarian |
訂購和質量
- RoHS
- REACH
- 器件標識
- 引腳鍍層/焊球材料
- MSL 等級/回流焊峰值溫度
- MTBF/時基故障估算
- 材料成分
- 鑒定摘要
- 持續可靠性監測
- 制造廠地點
- 封裝廠地點
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