TPS61012
- Integrated Synchronous Rectifier for Highest
Power Conversion Efficiency (> 95%) - Start-Up Into Full Load With Supply Voltages as
Low as 0.9 V, Operating Down to 0.8 V - 200-mA Output Current From 0.9-V Supply
- Powersave-Mode for Improved Efficiency at Low
Output Currents - Autodischarge Allows to Discharge Output
Capacitor During Shutdown - Device Quiescent Current Less Than 50 µA
- Ease-of-Use Through Isolation of Load From
Battery During Shutdown of Converter - Integrated Antiringing Switch Across Inductor
- Integrated Low Battery Comparator
- Micro-Small 10-Pin MSOP or 3 mm × 3 mm QFN
Package - EVM Available (TPS6101xEVM-157)
The TPS6101x devices are boost converters intended for systems that are typically operated from a single- or dual-cell nickel-cadmium (NiCd), nickel-metal hydride (NiMH), or alkaline battery.
The converter output voltage can be adjusted from 1.5 V to a maximum of 3.3 V, by an external resistor divider or, is fixed internally on the chip. The devices provide an output current of 200 mA with a supply voltage of only 0.9 V. The converter starts up into a full load with a supply voltage of only 0.9 V and stays in operation with supply voltages down to 0.8 V.
The converter is based on a fixed frequency, current mode, pulse-width-modulation (PWM) controller that goes automatically into power save mode at light load. It uses a built-in synchronous rectifier, so, no external Schottky diode is required and the system efficiency is improved. The current through the switch is limited to a maximum value of 1300 mA. The converter can be disabled to minimize battery drain. During shutdown, the load is completely isolated from the battery.
An autodischarge function allows discharging the output capacitor during shutdown mode. This is especially useful when a microcontroller or memory is supplied, where residual voltage across the output capacitor can cause malfunction of the applications. When programming the ADEN-pin, the autodischarge function can be disabled. A low-EMI mode is implemented to reduce interference and radiated electromagnetic energy when the converter enters the discontinuous conduction mode. The device is packaged in the micro-small space saving 10-pin MSOP package. The TPS61010 is also available in a 3 mm × 3 mm 10-pin QFN package.
技术文档
类型 | 标题 | 下载最新的英语版本 | 日期 | |||
---|---|---|---|---|---|---|
* | 数据表 | TPS6101x High-Efficiency, 1-Cell and 2-Cell Boost Converters 数据表 (Rev. F) | PDF | HTML | 2015年 8月 4日 | ||
应用手册 | Basic Calculation of a Boost Converter's Power Stage... (Rev. D) | PDF | HTML | 2022年 11月 21日 | |||
应用手册 | 升压转换器功率级的基本计算 (Rev. D) | PDF | HTML | 英语版 (Rev.D) | PDF | HTML | 2022年 11月 11日 | |
应用手册 | Performing Accurate PFM Mode Efficiency Measurements (Rev. A) | 2018年 12月 11日 | ||||
应用手册 | Optimizing Transient Response of Internally Compensated DC-DC Converters (Rev. B) | 2017年 11月 29日 | ||||
应用手册 | Extending the Soft Start Time Without a Soft Start Pin (Rev. B) | 2017年 6月 15日 | ||||
应用手册 | Choosing an Appropriate Pull-up/Pull-down Resistor for Open Drain Outputs | 2011年 9月 19日 | ||||
模拟设计期刊 | IQ:它是什么、不是什么以及如何使用 | 英语版 | 2011年 8月 17日 | |||
应用手册 | 优化具有内部补偿功能的 DC-DC 转换器的瞬态响应 | 最新英语版本 (Rev.B) | 2008年 7月 15日 | |||
应用手册 | 最小化升压转换器开关节点处的振铃 | 英语版 | 2008年 7月 15日 | |||
更多文献资料 | Seminar 400 Topic 1 - Current-Mode Control of Switching Power Supplies | 2001年 2月 15日 |
设计和开发
如需其他信息或资源,请点击以下任一标题进入详情页面查看(如有)。
封装 | 引脚 | CAD 符号、封装和 3D 模型 |
---|---|---|
VSSOP (DGS) | 10 | Ultra Librarian |
订购和质量
- RoHS
- REACH
- 器件标识
- 引脚镀层/焊球材料
- MSL 等级/回流焊峰值温度
- MTBF/时基故障估算
- 材料成分
- 鉴定摘要
- 持续可靠性监测
- 制造厂地点
- 封装厂地点