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MIC33050-4YHL-EV - MIC33050-4YHL EV

MIC33050-4YHL-EV

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Microchip Technology

EVAL BOARD HIGH EFF BUCK REG

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MIC33050-4YHL-EV - MIC33050-4YHL EV

MIC33050-4YHL-EV

Active
Microchip Technology

EVAL BOARD HIGH EFF BUCK REG

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Technical Specifications

Parameters and characteristics commom to parts in this series

SpecificationMIC33050-4YHL-EVMIC33050 Series
Board TypeFully PopulatedFully Populated
Current - Output600 mA600 mA
Frequency - Switching4 MHz4 MHz
Function-Step-Down
Main PurposeDC/DC, Step DownDC/DC, Step Down
Mounting Type-Surface Mount
Number of Outputs-1
Operating Temperature--40 °C
Operating Temperature-125 ¯C
Output Configuration-Positive
Output Type-1.81 mOhm
Output Type-Adjustable
Outputs and TypeNon-IsolatedNon-Isolated
Outputs and Type11
Package / Case-12-VFDFN Exposed Pad, 12-MLF®
Regulator TopologyBuckBuck
Supplied ContentsBoard(s)Board(s)
Supplier Device Package-12-MLF™ (3x3)
Synchronous Rectifier-True
Topology-Buck
Utilized IC / PartMIC33050MIC33050
Voltage - Input (Max)-5.5 V
Voltage - Input (Min)-2.7 V
Voltage - Input [Max]5.5 V5.5 V
Voltage - Input [Min]2.7 V2.7 V
Voltage - Output1.2 V1 - 3.3 V
Voltage - Output (Max)-4.9 V
Voltage - Output (Min/Fixed)-0.4 - 3.3 V

MIC33050 Series

High Efficiency 600mA Inductor-less Buck Regulator Power Module w/Hyper Light Load™

PartVoltage - Input [Min]Voltage - Input [Max]Regulator TopologyVoltage - OutputCurrent - OutputFrequency - SwitchingUtilized IC / PartSupplied ContentsMain PurposeOutputs and TypeOutputs and TypeBoard TypeSupplier Device PackageOperating Temperature [Min]Operating Temperature [Max]Output TypeOutput ConfigurationMounting TypeSynchronous RectifierFunctionPackage / CaseVoltage - Input (Min) [Min]Voltage - Input (Max) [Max]Number of OutputsVoltage - Output (Min/Fixed)TopologyVoltage - Output (Max) [Max]Output Type
Microchip Technology
MIC33050-SYHL-EV
2.7 V
5.5 V
Buck
3.3 V
600 mA
4 MHz
MIC33050
Board(s)
DC/DC, Step Down
Non-Isolated
1
Fully Populated
Microchip Technology
MIC33050-CYHL-EV
2.7 V
5.5 V
Buck
1 V
600 mA
4 MHz
MIC33050
Board(s)
DC/DC, Step Down
Non-Isolated
1
Fully Populated
Microchip Technology
MIC33050-SYHL-TR
600 mA
4 MHz
12-MLF™ (3x3)
-40 °C
125 ¯C
1.81 mOhm
Positive
Surface Mount
Step-Down
12-MLF®, 12-VFDFN Exposed Pad
2.7 V
5.5 V
1
3.3 V
Buck
Microchip Technology
MIC33050-CYHL-TR
600 mA
4 MHz
12-MLF™ (3x3)
-40 °C
125 ¯C
1.81 mOhm
Positive
Surface Mount
Step-Down
12-MLF®, 12-VFDFN Exposed Pad
2.7 V
5.5 V
1
1 V
Buck
Microchip Technology
MIC33050-AYHL-TR
600 mA
4 MHz
12-MLF™ (3x3)
-40 °C
125 ¯C
Positive
Surface Mount
Step-Down
12-MLF®, 12-VFDFN Exposed Pad
2.7 V
5.5 V
1
0.4 V
Buck
4.9 V
Adjustable
Microchip Technology
MIC33050-4YHL-TR
600 mA
4 MHz
12-MLF™ (3x3)
-40 °C
125 ¯C
1.81 mOhm
Positive
Surface Mount
Step-Down
12-MLF®, 12-VFDFN Exposed Pad
2.7 V
5.5 V
1
1.2 V
Buck
Microchip Technology
MIC33050-AYHL-T5
600 mA
4 MHz
12-MLF™ (3x3)
-40 °C
125 ¯C
Positive
Surface Mount
Step-Down
12-MLF®, 12-VFDFN Exposed Pad
2.7 V
5.5 V
1
0.4 V
Buck
4.9 V
Adjustable
Microchip Technology
MIC33050-GYHL-EV
2.7 V
5.5 V
Buck
1.8 V
600 mA
4 MHz
MIC33050
Board(s)
DC/DC, Step Down
Non-Isolated
1
Fully Populated
Microchip Technology
MIC33050-4YHL-EV
2.7 V
5.5 V
Buck
1.2 V
600 mA
4 MHz
MIC33050
Board(s)
DC/DC, Step Down
Non-Isolated
1
Fully Populated
Microchip Technology
MIC33050-GYHL-TR
600 mA
4 MHz
12-MLF™ (3x3)
-40 °C
125 ¯C
1.81 mOhm
Positive
Surface Mount
Step-Down
12-MLF®, 12-VFDFN Exposed Pad
2.7 V
5.5 V
1
1.8 V
Buck

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

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Description

General part information

MIC33050 Series

The MIC33050 is a high efficiency 600mA PWM synchronous buck (step-down) regulator with internal inductor featuring HyperLight Load®, a patent-pending switching scheme that offers best-in-class light load efficiency and transient performance while providing very small external components and low output ripple at all loads.

The MIC33050 also has a very low typical quiescent current draw of 20µA and can achieve over 83% efficiency even at 1mA.

In contrast to traditional light load schemes, the HyperLight Load® architecture does need not trade off control speed to obtain low standby currents and in doing so, the device only needs a small output capacitor to absorb the load transient as the powered device goes from light load to full load.

Documents

Technical documentation and resources