TPS77515-EP 增强型产品快速瞬态响应 500Ma 低压降稳压器

The TPS775xx devices are designed to have a fast transient response and be stable with a 10-µF low ESR capacitors. This combination provides high performance at a reasonable cost.

Because the PMOS device behaves as a low-value resistor, the dropout voltage is very low (typically 169 mV at an output current of 500 mA for the TPS77x33) and is directly proportional to the output current. Additionally, since the PMOS pass element is a voltage-driven device, the quiescent current is very low and independent of output loading (typically 85 µA over the full range of output current, 0 mA to 500 mA). These two key specifications yield a significant improvement in operating life for battery-powered systems. This LDO family also features a sleep mode; applying a TTL high signal to EN\ (enable) shuts down the regulator, reducing the quiescent current to 1 µA at TJ = 25°C.

TPS77515-EP
Iout (Max) (A) 0.5    
Vdo (Typ) (mV) 169    
Iq (Typ) (mA) 0.08    
Vin (Min) (V) 2.7    
Vin (Max) (V) 10    
Vout Adj (Min) (V) 1.5    
Vout Adj (Max) (V) 1.5    
Accuracy (%) 2    
Output Capacitor Type Tantalum    
Fixed Output Options (V) 1.5    
Vout (Min) (V) 1.5    
Vout (Max) (V) 1.5    
Pin/Package 20HTSSOP    
Rating HiRel Enhanced Product
Regulated Outputs (#) 1
TPS77515-EP 特性
TPS77515-EP 芯片订购指南
器件 状态 温度 (oC) 价格(美元) 封装 | 引脚 封装数量 | 封装载体 丝印标记
TPS77515MPWPREP ACTIVE -55 to 125 3.05 | 100u HTSSOP (PWP) | 20 2000 | LARGE T&R  
V62/03631-02XE ACTIVE -55 to 125 3.05 | 100u HTSSOP (PWP) | 20 2000 | LARGE T&R  
TPS77515-EP 质量与无铅数据
器件 环保计划* 铅/焊球涂层 MSL 等级/回流焊峰 环保信息与无铅 (Pb-free) DPPM / MTBF / FIT 率
TPS77515MPWPREP Green (RoHS & no Sb/Br)   CU NIPDAU   Level-2-260C-1 YEAR TPS77515MPWPREP TPS77515MPWPREP
V62/03631-02XE Green (RoHS & no Sb/Br)   CU NIPDAU   Level-2-260C-1 YEAR V62/03631-02XE V62/03631-02XE
TPS77515-EP 工具与软件
培训内容 型号 软件/工具类型
最常用开关模式电源的功率级设计器 POWERSTAGE-DESIGNER 分析软件
TPS77515-EP 应用技术支持与电子电路设计开发资源下载
  1. TPS77515-EP数据资料 dataSheet 下载.PDF
  2. TI 德州仪器电源管理选型与价格参考 . xls
  3. 简化的 LDO PSRR 测量
  4. LDO Noise Demystified