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PCSD93501QRYCTQ1中文资料

厂家型号

PCSD93501QRYCTQ1

文件大小

915.47Kbytes

页面数量

13

功能描述

CSD93501-Q1 Synchronous Buck Monolothic Smart Power Stage

数据手册

下载地址一下载地址二到原厂下载

生产厂商

TI

PCSD93501QRYCTQ1数据手册规格书PDF详情

1 Features

• 30A TDC current, 60A peak operating current

capability

• 91.2 peak system efficiency at 2MHz, 5Vin, 1Vo

• High-frequency operation (up to 2.2 MHz)

• Temperature compensated bi-directional current

sense

• Analog temperature output

• 3.3-V and 5-V PWM signal compatible

• Tri-state PWM input

• Integrated bootstrap switch

• Optimized dead-time for shoot-through protection

• Fault Protection

– Over temperature (OT)

– Pulse-by-pulse over current limiting

– Catatraphic Over Current Protection (OCP)

• Fault Detection

– High-Side Short (HSS)

– Pulse-by-pulse negative Over Current (negOC)

detection

• Body Breaking (BB) mode and Diode Emulation

Mode (DEM) operation

• 3.5 x 6.25 mm QFN package

• Ultra-low-inductance package

• System optimized PCB footprint

• AEC-Q100 Grade 1 qualified

2 Applications

• Multiphase synchronous buck converters

– High-frequency applications

– High-current, low-duty cycle applications

3 Description

CSD93501-Q1 is a highly optimized smart power

stage for use in a high power, high density

applications with 5V input, including automotive. This

product integrates the driver IC and power MOSFETs

in one silicon die to complete the power stage

switching function. It also integrates the accurate

current sensing and temperature sensing functionality

to simplify system design and improve accuracy. The

monolithic design enables high switching frequency

with high efficiency, lower noise, and high current- and

temperature-sensing accuracy. This product has a

small 3.5 x 6.25 mm QFN package. The PCB footprint

has been optimized to help reduce design time and

simplify the completion of the overall system design.

CSD93501-Q1 provides key differentiating features

including cycle-by-cycle current limiting/protection

based on high-side FET current sense, over

temperature protection, negative over current

detection, and open pin detection, which improve

system reliability.