
RBR2LAM60ATFTR
ActiveRohm Semiconductor
LOW VF, 60V, 2A, SOD-128, SCHOTTKY BARRIER DIODE FOR AUTOMOTIVE

RBR2LAM60ATFTR
ActiveRohm Semiconductor
LOW VF, 60V, 2A, SOD-128, SCHOTTKY BARRIER DIODE FOR AUTOMOTIVE
Description
General part information
RBR2LAM60ATF Series
RBR2LAM60ATFis the high reliability Automotive Schottky Barrier Diode, suitable for general rectification.
Technical Specifications
Parameters and characteristics for this part
| Specification | RBR2LAM60ATFTR |
|---|---|
| Current - Average Rectified (Io) | 2 A |
| Current - Reverse Leakage | 75 µA |
| Grade | Automotive |
| Mounting Type | Surface Mount |
| Operating Temperature - Junction (Max) | 150 °C |
| Package / Case | SOD-128 |
| Package Name | PMDTM |
| Qualification | AEC-Q101 |
| Speed - Fast Recovery (Maximum) | 500 ns |
| Speed - Fast Recovery (Minimum) | 200 mA |
| Technology | Schottky |
| Voltage - DC Reverse (Vr) (Max) | 60 V |
Pricing
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CAD
3D models and CAD resources for this part
Documents
Technical documentation and resources
PMDTM Part Marking
Diode Flammability
AEC-Q101 Automotive Requirements
Datasheet
Constitution Materials List
About Export Regulations
Measurement Method and Usage of Thermal Resistance RthJC
ESD Data
Package Dimensions
How to Create Symbols for PSpice Models
Judgment Criteria of Thermal Evaluation
List of Diode Package Thermal Resistance
What is a Thermal Model? (Diode)
Condition of Soldering / Land Pattern Reference
How to Select Reverse Current Protection Diodes for LDO Regulators
Compliance of the RoHS directive
Inner Structure
Method for Monitoring Switching Waveform
How to Use LTspice® Models: Tips for Improving Convergence
Notes for Calculating Power Consumption:Static Operation
Diode Selection Method for Asynchronous Converter
Reliability Test Result
Taping Information
Precautions When Measuring the Rear of the Package with a Thermocouple
Overview of ROHM's Simulation Models(for ICs and Discrete Semiconductors)
Moisture Sensitivity Level - Diodes
Part Explanation
Report of SVHC under REACH Regulation
Diode Types and Applications
Power Loss and Thermal Design of Diodes
θ<sub>JA</sub> and Ψ<sub>JT</sub>
θ<sub>JC</sub> and Ψ<sub>JT</sub>
Basics of Thermal Resistance and Heat Dissipation
ROHM's SBD Lineup Contributes to Greater Miniaturization and Lower Loss in Automotive, Industrial, and Consumer Equipment
How to Use the Thermal Resistance and Thermal Characteristics Parameters
Notes for Temperature Measurement Using Thermocouples
What Is Thermal Design
How to Use LTspice® Models
PCB Layout Thermal Design Guide
Absolute Maximum Rating and Electrical Characteristics of Diodes
Anti-Whisker formation - Diodes
Method for Calculating Junction Temperature from Transient Thermal Resistance Data
Notes for Temperature Measurement Using Forward Voltage of PN Junction
Importance of Probe Calibration When Measuring Power: Deskew
Two-Resistor Model for Thermal Simulation
How to Select Rectifier Diodes
Impedance Characteristics of Bypass Capacitor