BP5034 Series, AC DC Converters

Results:
5
Manufacturer
Series
Voltage - Output 1
Efficiency
Current - Output (Max)
Power (Watts)
Operating Temperature
Applications
Voltage - Output 2
Voltage - Output 3
Voltage - Output 4
Approval Agency
Mounting Type
Size / Dimension
Number of Outputs
Type
Package / Case
Standard Number
Features
Voltage - Input
Results remaining5
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BP5034
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ImageProduct DetailPriceAvailabilityECAD ModelFeaturesMounting TypeApproval AgencyPower (Watts)Current - Output (Max)ApplicationsStandard NumberTypeVoltage - Output 1Voltage - Output 2Voltage - Output 3Voltage - Output 4EfficiencyOperating TemperatureNumber of OutputsPackage / CaseSeriesVoltage - InputSize / Dimension
BP5034D12
AC/DC CONVERTER 12V 1W
1+
$7.6056
5+
$7.1831
10+
$6.7606
Quantity
1,550 Available
Can ship immediately
Ships from: HK
PCB Symbol, Footprint & 3D Model
-
Through Hole
-
1 W
100mA
ITE (Commercial)
-
Enclosed
12V
-
-
-
68%
-20°C ~ 80°C (With Derating)
1
10-DIP Module, 9 Leads
BP5034
80 ~ 138 VAC
1.11" L x 0.39" W x 0.62" H (28.2mm x 10.0mm x 15.7mm)
BP5034D15
AC/DC CONVERTER 15V 1W
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
Through Hole
-
1 W
80mA
ITE (Commercial)
-
Enclosed
15V
-
-
-
70%
-20°C ~ 80°C (With Derating)
1
10-DIP Module, 9 Leads
BP5034
80 ~ 138 VAC
1.11" L x 0.39" W x 0.62" H (28.2mm x 10.0mm x 15.7mm)
BP5034D5
AC/DC CONVERTER 5V 1W
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
Through Hole
-
1 W
100mA
ITE (Commercial)
-
Enclosed
5V
-
-
-
56%
-20°C ~ 80°C (With Derating)
1
10-DIP Module, 9 Leads
BP5034
80 ~ 138 VAC
1.11" L x 0.39" W x 0.62" H (28.2mm x 10.0mm x 15.7mm)
BP5034D24
AC/DC CONVERTER 24V 1W
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
Through Hole
-
1 W
50mA
ITE (Commercial)
-
Enclosed
24V
-
-
-
72%
-20°C ~ 80°C (With Derating)
1
10-DIP Module, 9 Leads
BP5034
80 ~ 138 VAC
1.11" L x 0.39" W x 0.62" H (28.2mm x 10.0mm x 15.7mm)
BP5034B20
AC/DC CONVERTER 20V 2W
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
Through Hole
-
2 W
80mA
ITE (Commercial)
-
Enclosed
20V
-
-
-
72%
-20°C ~ 80°C (With Derating)
1
10-DIP Module, 9 Leads
BP5034
80 ~ 138 VAC
1.11" L x 0.39" W x 0.62" H (28.2mm x 10.0mm x 15.7mm)

AC DC Converters

A device that is specifically designed to convert an alternating current (AC) voltage input into a direct current (DC) voltage output is commonly known as an AC to DC voltage converter. AC to DC voltage converters, also known as rectifiers, are utilized in various applications where a DC voltage is required for proper operation. These converters typically employ diodes or other semiconductor devices to rectify the AC input waveform, resulting in a unidirectional flow of electrical current. The conversion process involves several stages. The AC input voltage is first passed through a rectifier circuit, which converts the alternating voltage into a pulsating DC voltage. The pulsating DC voltage still contains fluctuations and ripples, which need to be smoothed out for many applications. To accomplish this, a filter circuit is employed, typically consisting of capacitors and inductors, to remove the unwanted AC components and produce a more stable DC voltage output. AC to DC voltage converters can be further categorized based on their configuration and functionality. Some common types include single-phase and three-phase rectifiers, half-wave rectifiers, full-wave rectifiers, and bridge rectifiers. Each type has its own advantages and is selected based on the specific requirements of the application. AC to DC voltage converters find wide usage in various electronic devices and systems, such as power supplies for consumer electronics, battery chargers, computer peripherals, and LED lighting. They provide a reliable and efficient means of converting AC power from the mains supply into a DC voltage suitable for powering electronic circuits and devices. In summary, an AC to DC voltage converter is a specialized device that converts an AC voltage input into a DC voltage output. By utilizing rectifier and filtering circuits, these converters ensure a unidirectional flow of current and produce a stable DC voltage for powering electronic devices and systems. They are integral components in numerous applications, enabling the efficient and reliable conversion of AC power to DC power.