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1ch 150mA CMOS LDO Regulators_BH31RB1WGUT

ROHM的用于便携式设备的LDO稳压器利用本公司的CMOS工艺实现了低功耗和高精度。适合超高密度贴片的芯片尺寸封装CMOS LDO稳压器系列是在±1%高精度、高稳定输出电压下实现了150mA输出电流的CMOS稳压器。利用独创的技术,使负载调节达到2mV那么小而输入输出电压差只有100mV;封装采用超小型新式封装VCSP60N1(1.0 mm×1.04mm),而且足够完备的保护电路有利于提高整机的安全性。

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型号
Status
封装
包装数量
最小独立包装数量
包装形态
RoHS
BH31RB1WGUT-E2 供应中 VCSP60N1 3000 3000 Taping Yes
 
特性:
Grade Standard
Breakdown Voltage(Max.)[V] 6.5
ch 1
Vin(Min.)[V] 2.5
Vin(Max.)[V] 5.5
Vout (Typ.) [V] 3.1
Vout Precision ±1.0
Iout(Max.)[A] 0.15
Circuit Current[mA] 0.034
Output Short Current[mA] 40
Shutdown Function Yes
Thermal Shut-down Yes
Over Current Protection Yes
Over Voltage Protection No
Discharge Function No
Soft Start No
I/O Voltage Difference (Typ.)[V] 0.1(Io=0.1A)
Ripple Rejection [dB] 63.0
Load Regulation[mV] 2(Io=1 to 100mA)
Input Capacitor[µF] 1.0
Output Capacitor[µF] 1.0
Operating Temperature (Min.)[°C] -40
Operating Temperature (Max.)[°C] 85
特点:
  • ・±1%高精度输出电压
    ・输入输出电压差:100mV(100mA时)
    ・适合小型陶瓷电容器
 
 
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技术信息
Table of resistance for output voltage setting on linear regulator Ics

This application notes provide tables for each series so that it is easy to set the resistance value for the output voltage setting from various internal reference voltages VREF.

Thermal Resistance

The definition and how to use thermal resistance and thermal characterization parameter of packages for ROHM’s integrated circuit are described in this application note.

BHxxRB1, BHxxSA3, BUxxSA4, BUxxSA5 Series PCB Layout

The basic terminal configuration of a linear regulator IC consists of four parts: input, output, GND, and feedback…

Basics of Linear Regulators

A linear regulator, also referred to as a "three-terminal regulator" or "dropper," is a power supply long known to many designers owning to its simple circuitry and ease of use...

Linear Regulator Specifications

Very important information such as maximum ratings, operating conditions and characteristic graphs are described in the table.

Reverse Voltage Protection

A linear regulator integrated circuit (IC) is a DC-to-DC buck converter system that reduces a DC supply from higher voltage level to a lower voltage level...

Simple Test Method for Estimating the Stability of Linear Regulators

Low drop-out (LDO) regulators developed back in the age when large-capacitance multi-layer ceramic capacitors (hereinafter, MLCCs) were uncommon cause a phase delay, leading to oscillation when connected to a low-ESR capacitor like an MLCC...

Thermal Calculation for Linear Regulator

The loss in linear regulators increases as the difference between the input and output voltages increases. Since most of the loss is converted to heat, a very large amount of heat may be generated in some conditions...

Power Source ON/OFF Characteristics for Linear Regulator

When a linear regulator IC is turned ON, the electric charge is stored in the output capacitor and the output voltage increases up to the specified value.

BAxxCC0 Series Circuit Using a Ceramic Output Capacitor

This application note proposes a circuit using an output ceramic capacitor that allows a stable phase compensation.

Measurement Method for Phase Margin with Frequency Response Analyzer (FRA)

This application note introduces a method for easily measuring the phase margin with a Frequency Response Analyzer (FRA) made by NF Corporation.

Connecting LDOs in Parallel

Provides some hints on how to connect LDOs in parallel.