VI Chip® DCM® (150W) Series, DC DC Converters

Results:
2
Manufacturer
Series
Operating Temperature
Features
Applications
Voltage - Output 2
Voltage - Output 3
Voltage - Input (Max)
Voltage - Output 4
Voltage - Isolation
Approval Agency
Voltage - Output 1
Mounting Type
Size / Dimension
Current - Output (Max)
Supplier Device Package
Number of Outputs
Voltage - Input (Min)
Power (Watts)
Control Features
Type
Package / Case
Efficiency
Standard Number
Results remaining2
Applied Filters:
VI Chip® DCM® (150W)
Select
ImageProduct DetailPriceAvailabilityECAD ModelSupplier Device PackageMounting TypeApproval AgencyApplicationsStandard NumberPower (Watts)Voltage - Output 1Voltage - Output 2Voltage - Output 3Voltage - Output 4Voltage - IsolationEfficiencyNumber of OutputsTypeVoltage - Input (Min)Voltage - Input (Max)Operating TemperatureSeriesCurrent - Output (Max)FeaturesPackage / CaseSize / DimensionControl Features
DCM4623TD2K04A5T00
DC DC CONVERTER 3.3V 150W
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
Through Hole
-
ITE (Commercial)
-
150 W
3.3V
-
-
-
4.242 kV
88.8%
1
Isolated Module
160V
420V
-40°C ~ 125°C (With Derating)
VI Chip® DCM® (150W)
45.46A
Remote On/Off, OCP, OTP, OVP, SCP, UVLO
9-DIP Module
1.89" L x 0.90" W x 0.29" H (47.9mm x 22.8mm x 7.3mm)
-
DCM4623TD2K04A5M00
DC DC CONVERTER 3.3V 150W
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
Through Hole
-
ITE (Commercial)
-
150 W
3.3V
-
-
-
4.242 kV
88.8%
1
Isolated Module
160V
420V
-55°C ~ 125°C
VI Chip® DCM® (150W)
45.46A
OCP, OTP, OVP, SCP, UVLO
9-DIP Module
1.89" L x 0.90" W x 0.29" H (47.9mm x 22.8mm x 7.3mm)
-

DC DC Converters

A device that is specifically designed to convert a direct current voltage input level into one or more different direct current voltage output levels is commonly known as a DC voltage converter. These converters typically use electronic circuits to alter the voltage levels of the input signal to match the desired output voltage. The conversion process involves the use of various electrical components such as capacitors, inductors, and transformers. DC voltage converters can be classified into different types, depending on the specific application and the output voltage range required. Some common types of DC voltage converters include buck converters, boost converters, buck-boost converters, flyback converters, and forward converters. Buck converters are designed to produce an output voltage that is lower than the input voltage, while boost converters produce an output voltage that is higher than the input voltage. Buck-boost converters can produce either a higher or lower output voltage than the input voltage, depending on the specific configuration. Flyback converters and forward converters are primarily used for high-power applications and can produce multiple output voltages simultaneously. DC voltage converters are widely used in various electronic devices and systems, including power supplies, battery chargers, LED drivers, and motor control circuits. They are essential components in many modern technologies, enabling efficient and reliable power delivery and management. In summary, DC voltage converters are specialized devices that are designed to alter the voltage level of a direct current input signal to one or more different output voltage levels. They utilize electronic circuits to perform the necessary voltage conversion, and are an essential component in many modern electronic devices and systems.