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BD433S5FP-CE2

BD433S5FP-CE2

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Rohm Semiconductor

AUTOMOTIVE 500MA 3.3V, FIXED OUTPUT LDO REGULATORS

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BD433S5FP-CE2

BD433S5FP-CE2

Active
Rohm Semiconductor

AUTOMOTIVE 500MA 3.3V, FIXED OUTPUT LDO REGULATORS

Find alt

Description

General part information

BD433S5FP-C Series

BD433S5FP-C is low quiescent regulators featuring 45V absolute maximum voltage, and output voltage accuracy of ±2% (3.3V or 5V: Typ), 500mA output current and 38µA (Typ) current consumption. This regulator is therefore ideal for applications requiring a direct connection to the battery and a low current consumption. Ceramic capacitors can be used for compensation of the output capacitor phase. Furthermore, this IC also feature overcurrent protection to protect the device from damage caused by short-circuiting and an integrated thermal shutdown to protect the device from overheating at overload conditions.This IC uses different production line against series model BD433M5FP-C for the purpose of improving production efficiency. We recommend using this IC for your new development. Electric characteristics noted in Datasheet does not differ between Production Line. In addition, the data of BD433M5FP-C is disclosed for documents and design models unless otherwise specified.

Technical Specifications

Parameters and characteristics for this part

SpecificationBD433S5FP-CE2
Current - Output500 mA
Current - Quiescent (Iq)95 µA
Current - Supply (Max)175 µA
GradeAutomotive
Mounting TypeSurface Mount
Number of Regulators1
Operating Temperature (Max)150 °C
Operating Temperature (Min)-40 °C
Output ConfigurationPositive
Output TypeFixed
Package / CaseSC-63, DPAK (2 Leads + Tab), TO-252-3
Package NameTO-252-3
Protection FeaturesOver Current, Short Circuit, Over Temperature
PSRR60 dB
QualificationAEC-Q100
Voltage - Input (Max)42 V
Voltage - Output (Min/Fixed)3.3 V
Voltage Dropout (Max)0.75 V

Pricing

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CAD

3D models and CAD resources for this part

Documents

Technical documentation and resources

Precautions When Measuring the Rear of the Package with a Thermocouple
Reverse Voltage Protection
Judgment Criteria of Thermal Evaluation
Thermal Resistance
How to Use the Thermal Resistance and Thermal Characteristics Parameters
Solder Joint Rate and Thermal Resistance of Exposed Pad
Usage of SPICE Macromodel (for LDO)
Overview of ROHM's Simulation Models(for ICs and Discrete Semiconductors)
Measurement Method for Phase Margin with Frequency Response Analyzer (FRA)
Method for Calculating Junction Temperature from Transient Thermal Resistance Data
Five Steps for Successful Thermal Design of IC
Simple Test Method for Estimating the Stability of Linear Regulators
Design Guide and Example of Stencil for Exposed Pad
Power Supply Sequence Circuit with General Purpose Power Supply IC
Thermal Calculation for Linear Regulator
Impedance Characteristics of Bypass Capacitor
How to Use the Two-Resistor Model
What Is Thermal Design
Calculating Junction Temperature from Inrush Current
Basics of Thermal Resistance and Heat Dissipation
TO252-3 Package Information
PCB Layout Thermal Design Guide
How to Select Reverse Current Protection Diodes for LDO Regulators
θ<sub>JC</sub> and Ψ<sub>JT</sub>
Problem Situations: Power Supply Does Not Start
Connecting LDOs in Parallel
Power Source ON/OFF Characteristics for Linear Regulator
θ<sub>JA</sub> and Ψ<sub>JT</sub>
Suppression Method of Switching Noise Using Linear Regulator and Low Pass Filter
BD433S5FP-C Data Sheet
Table of resistance for output voltage setting on linear regulator Ics
EMC Measures for LDOs
TO252 Package Thermal Resistance Information
Basics of Linear Regulators
Heat Dissipation Effect of Thermal Via in Exposed Pad Type Package
Six Steps for Successful Thermal Design of LDO Regulator ICs
Factory Information