WE-FB, MID-OLLT Series, Switching Converter, SMPS Transformers

Results:
8
Manufacturer
Series
Inductance @ Frequency
Footprint
Height - Seated (Max)
Size / Dimension
Frequency
Voltage - Primary
Voltage - Auxiliary
Operating Temperature
Intended Chipset
Chipset Manufacturer
Applications
Voltage - Isolation
Mounting Type
Type
Style
Results remaining8
Applied Filters:
WE-FB, MID-OLLT
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ImageProduct DetailPriceAvailabilityECAD ModelTypeMounting TypeSize / DimensionOperating TemperatureHeight - Seated (Max)Voltage - PrimaryFrequencyVoltage - IsolationSeriesApplicationsIntended ChipsetChipset ManufacturerVoltage - AuxiliaryInductance @ FrequencyFootprintStyle
750817020
TRANSFORMER FLYBACK MID-OLLT
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Surface Mount
-
-40°C ~ 85°C
-
-
-
-
WE-FB, MID-OLLT
Flyback Converters
-
On Semiconductor
12V @ 100mA
4mH @ 10kHz
-
Planar
750813134
TRANSFORMER FLYBACK LT3799
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Quantity
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PCB Symbol, Footprint & 3D Model
For AC/DC Converters
Through Hole
0.709" L x 0.650" W (18.00mm x 16.50mm)
-40°C ~ 125°C
0.714" (18.14mm)
90 ~ 265V
100kHz
4500Vrms
WE-FB, MID-OLLT
Flyback Converters
LT3799
Linear Technology
18V @ 10mA
600µH @ 10kHz
0.709" L x 0.650" W (18.00mm x 16.50mm)
-
750811330
TRANSFORMER FLYBACK LT3799
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Quantity
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PCB Symbol, Footprint & 3D Model
For AC/DC Converters
Through Hole
1.559" L x 1.700" W (39.60mm x 43.18mm)
-
1.205" (30.61mm)
120 ~ 375V
200kHz
4500Vrms
WE-FB, MID-OLLT
Flyback Converters
LT3799
Linear Technology
-
300µH @ 10kHz
1.559" L x 1.700" W (39.60mm x 43.18mm)
-
750813002
TRANSFORMER FLYBACK LT3799
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Quantity
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PCB Symbol, Footprint & 3D Model
For AC/DC Converters
Through Hole
0.591" L x 0.620" W (15.00mm x 15.75mm)
-40°C ~ 125°C
0.732" (18.59mm)
90 ~ 265V
1MHz
4500Vrms
WE-FB, MID-OLLT
Flyback Converters
LT3799
Linear Technology
-
2mH @ 10kHz
0.591" L x 0.620" W (15.00mm x 15.75mm)
-
750813144
TRANS OFFLINE600UH LT3799 LT4180
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Quantity
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PCB Symbol, Footprint & 3D Model
For AC/DC Converters
Through Hole
0.728" L x 0.650" W (18.50mm x 16.50mm)
-40°C ~ 125°C
0.740" (18.80mm)
85 ~ 265V
100kHz
4500Vrms
WE-FB, MID-OLLT
LED Drivers, AC/DC SMPS
LT3799, LT4180
Linear Technology
20V @ 10mA
600µH @ 10kHz
0.728" L x 0.650" W (18.50mm x 16.50mm)
-
750811291
TRANSFORMER FLYBACK LT3799
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Quantity
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PCB Symbol, Footprint & 3D Model
For AC/DC Converters
Through Hole
1.220" L x 1.220" W (31.00mm x 31.00mm)
-40°C ~ 125°C
0.989" (25.12mm)
85 ~ 265V
-
4500Vrms
WE-FB, MID-OLLT
Flyback Converters
LT3799
Linear Technology
20V @ 10mA
400µH @ 100kHz
1.220" L x 1.220" W (31.00mm x 31.00mm)
-
750813390
TRANSFORMER FLYBACK LT3799
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
For AC/DC Converters
Through Hole
1.559" L x 1.700" W (39.60mm x 43.18mm)
-
1.205" (30.61mm)
120 ~ 375V
75kHz
4500Vrms
WE-FB, MID-OLLT
Flyback Converters
LT3799
Linear Technology
-
100µH @ 10kHz
1.559" L x 1.700" W (39.60mm x 43.18mm)
-
750811290
TRANSFORMER FLYBACK LT3799
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
For AC/DC Converters
Through Hole
1.220" L x 1.220" W (31.00mm x 31.00mm)
-40°C ~ 125°C
0.989" (25.12mm)
85 ~ 265V
150kHz
4500Vrms
WE-FB, MID-OLLT
Flyback Converters
LT3799
Linear Technology
-
461µH @ 10kHz
1.220" L x 1.220" W (31.00mm x 31.00mm)
-

About  Switching Converter, SMPS Transformers

Switching Converter Transformers, also known as SMPS Transformers, are essential components in the construction of switch mode power supplies (SMPS). Unlike traditional linear power supplies, SMPS utilize semiconductor switching techniques to efficiently regulate and provide the required output voltage. The key components of a switching converter include a power switching stage and a control circuit, which may be designed to work with specific chipsets. The primary function of the switching converter transformer is to transfer electrical energy between different voltage levels and provide isolation between input and output circuits. It achieves this through the principles of electromagnetic induction. The transformer consists of two or more coils of wire wound around a magnetic core, which may be made of ferrite, powdered iron, or other suitable materials. The power switching stage typically includes power transistors or MOSFETs (Metal-Oxide-Semiconductor Field-Effect Transistors) that rapidly switch on and off to control the flow of electrical energy. The control circuit intelligently modulates the switching frequency and duty cycle of these transistors based on feedback signals from the output voltage and current sensors. This ensures that the desired output voltage is maintained within the specified range, even under varying load conditions. SMPS transformers are specifically designed to meet the unique requirements of switching power supplies. They are carefully engineered to handle high-frequency operation and minimize energy losses. These transformers are typically smaller and lighter compared to their linear counterparts, making them suitable for applications where space and weight are critical factors. The design of SMPS transformers takes into account factors such as input and output voltage levels, power handling capacity, current ratings, and efficiency requirements. They are optimized to provide efficient power transfer, low electromagnetic interference (EMI), and reliable performance. Additionally, these transformers may be customized to work with specific chipsets or controller ICs, ensuring seamless integration and compatibility. In summary, Switching Converter Transformers, or SMPS Transformers, play a crucial role in switch mode power supplies. They facilitate efficient energy transfer, provide voltage level conversion, and enable isolation between input and output circuits. These transformers are designed to work in conjunction with the power switching stage and control circuitry of the SMPS, offering high efficiency, compact size, and reliable operation.