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High Efficiency EQ40 High Frequency Transformer LED SMPS Switched-Mode Power Supply

High Efficiency EQ40 High Frequency Transformer LED SMPS Switched-Mode Power Supply

Marchio: ZXY
Numero di modello: ZXY-EQ40
MOQ: Negoziabile
prezzo: Negoziabile
Dettagli dell' imballaggio: Cartone
Condizioni di pagamento: T/t
Informazione dettagliata
Luogo di origine:
Huizhou.China
Certificazione:
RoHS、ISO9001、CE
Modello:
EQ40
Utilizzo:
LED/alimentazione
Nome:
Trasformatore ad alta frequenza EQ40
Caratteristica:
Alta efficienza
Qualità:
Test al 100%
via di conduzione:
Spillo
Descrizione del prodotto

High Efficiency EQ40 High Frequency Transformer LED SMPS Switched-Mode Power Supply

1.Product Description

The High Efficiency EQ40 High-Frequency Transformer is a critical component specifically engineered for LED Switched-Mode Power Supplies (SMPS). Utilizing an EQ40 ferrite core, it operates at elevated frequencies to achieve superior power density and minimal energy loss through heat. This enables the design of compact, reliable, and energy-efficient LED drivers that deliver stable performance, essential for applications ranging from commercial lighting and industrial systems to high-luminosity LED arrays, while significantly reducing the overall size and thermal footprint of the power supply unit.

 

1. Efficient energy transmission and conversion (core electrical energy function)

Reduce losses: High frequency ferrite EQ40 magnetic core is used, optimized for high-frequency switching frequencies ranging from tens of kHz to hundreds of kHz, with extremely low core loss. By combining multiple stranded windings such as Leeds wire to reduce copper loss, the energy conversion efficiency can be increased to over 90% (such as 90% -95%), significantly reducing energy waste and heat generation.

Improving power density: High frequency allows for the use of smaller magnetic cores and fewer copper wires to transmit the same power, significantly reducing the size of the transformer itself and the entire power supply, achieving miniaturization and lightweighting of the power supply.

 

2. Critical safety isolation (protective function)

Electrical isolation: The physical structure of a transformer completely isolates the input side (primary, usually connected to high voltage alternating current AC) and the output side (secondary, connected to LED beads). This ensures that users will not be electrocuted when touching the LED light body, ensuring personal safety.

Suppression of interference: This isolation can effectively prevent the transmission of interference noise such as surges and spikes in the input power grid to the precision LED load end, and also prevent switch noise inside the power supply from polluting the power grid, improving the electromagnetic compatibility (EMC) of the system.

 

3. Voltage Conversion and Adaptation (Voltage Matching Function)

Voltage reduction function: LED chips usually require low voltage direct current (such as 12V, 24V, 36V) to operate. The transformer precisely reduces the rectified high-voltage DC bus voltage to the safe voltage level required by the LED load through the turns ratio of the primary and secondary coils.

Constant drive: In conjunction with the backend circuit, it provides constant current or constant voltage output for the LED, ensuring stable brightness, unaffected by input voltage fluctuations, and extending the lifespan of the LED.

 

4. Implementation of Circuit Topology Function (System Level Function)

As the core component, its design determines the topology structure of the SMPS. EQ40 transformer is commonly used for:

Flyback topology: simple structure, low cost, very suitable for<100W LED driver power supply. Transformers simultaneously achieve energy storage and transmission functions.

Forward topology: Higher efficiency, commonly used in higher power LED lighting systems with>100W.

2.Performance Characteristics

Feature Category Performance Characteristic Description & Benefit
Core Efficiency High Operating Frequency Optimized for operation in the tens to hundreds of kHz range, enabling significant size reduction of magnetic components.
Low Core Losses EQ40 ferrite core material minimizes hysteresis and eddy current losses at high frequencies, reducing heat generation and improving overall efficiency.
Low Copper Losses Utilizes optimized winding techniques (e.g., Litz wire) to reduce skin and proximity effect losses, further enhancing efficiency.
Thermal Performance High Efficiency Rating Achieves conversion efficiency typically >90% (e.g., 90%-95%), directly resulting in lower power waste and reduced heat dissipation.
Reduced Thermal Footprint Lower losses translate to less heat generated within the power supply, improving long-term reliability and simplifying thermal management.
Power Density & Size Compact Form Factor The high-frequency operation allows for a smaller core size and fewer windings to transfer the same power, leading to a much smaller transformer.
High Power Density Enables the design of very compact and lightweight LED driver solutions, ideal for integration into space-constrained lighting fixtures.
Electrical Performance Excellent Isolation Provides reliable galvanic isolation between primary (high-voltage AC) and secondary (low-voltage DC) sides, ensuring user safety and meeting safety standards (UL, CE, IEC).
Precise Voltage Transformation The turns ratio can be precisely designed to step down the rectified high-voltage DC to the exact low voltage required by the LED array (e.g., 12V, 24V, 36V).
Reliability & Application Robust Construction Designed for high reliability and stable performance over a long lifespan, matching the longevity expectations of LED lighting systems.
Wide Application Range Ideal for a broad spectrum of LED lighting applications, from commercial and industrial fixtures to high-power outdoor and horticultural lighting, typically in the 50W to 150W power range.

 

 

High Efficiency EQ40 High Frequency Transformer LED SMPS Switched-Mode Power Supply 0High Efficiency EQ40 High Frequency Transformer LED SMPS Switched-Mode Power Supply 1High Efficiency EQ40 High Frequency Transformer LED SMPS Switched-Mode Power Supply 2High Efficiency EQ40 High Frequency Transformer LED SMPS Switched-Mode Power Supply 3High Efficiency EQ40 High Frequency Transformer LED SMPS Switched-Mode Power Supply 4High Efficiency EQ40 High Frequency Transformer LED SMPS Switched-Mode Power Supply 5

3.Other Recommended Produtcs

High Efficiency EQ40 High Frequency Transformer LED SMPS Switched-Mode Power Supply 6

4.Company Profile

High Efficiency EQ40 High Frequency Transformer LED SMPS Switched-Mode Power Supply 7High Efficiency EQ40 High Frequency Transformer LED SMPS Switched-Mode Power Supply 8High Efficiency EQ40 High Frequency Transformer LED SMPS Switched-Mode Power Supply 9

Un buon prezzo.  in linea

Dettagli dei prodotti

Casa. > prodotti >
trasformatore ad alta frequenza
>
High Efficiency EQ40 High Frequency Transformer LED SMPS Switched-Mode Power Supply

High Efficiency EQ40 High Frequency Transformer LED SMPS Switched-Mode Power Supply

Marchio: ZXY
Numero di modello: ZXY-EQ40
MOQ: Negoziabile
prezzo: Negoziabile
Dettagli dell' imballaggio: Cartone
Condizioni di pagamento: T/t
Informazione dettagliata
Luogo di origine:
Huizhou.China
Marca:
ZXY
Certificazione:
RoHS、ISO9001、CE
Numero di modello:
ZXY-EQ40
Modello:
EQ40
Utilizzo:
LED/alimentazione
Nome:
Trasformatore ad alta frequenza EQ40
Caratteristica:
Alta efficienza
Qualità:
Test al 100%
via di conduzione:
Spillo
Quantità di ordine minimo:
Negoziabile
Prezzo:
Negoziabile
Imballaggi particolari:
Cartone
Tempi di consegna:
3-4 settimane
Termini di pagamento:
T/t
Descrizione del prodotto

High Efficiency EQ40 High Frequency Transformer LED SMPS Switched-Mode Power Supply

1.Product Description

The High Efficiency EQ40 High-Frequency Transformer is a critical component specifically engineered for LED Switched-Mode Power Supplies (SMPS). Utilizing an EQ40 ferrite core, it operates at elevated frequencies to achieve superior power density and minimal energy loss through heat. This enables the design of compact, reliable, and energy-efficient LED drivers that deliver stable performance, essential for applications ranging from commercial lighting and industrial systems to high-luminosity LED arrays, while significantly reducing the overall size and thermal footprint of the power supply unit.

 

1. Efficient energy transmission and conversion (core electrical energy function)

Reduce losses: High frequency ferrite EQ40 magnetic core is used, optimized for high-frequency switching frequencies ranging from tens of kHz to hundreds of kHz, with extremely low core loss. By combining multiple stranded windings such as Leeds wire to reduce copper loss, the energy conversion efficiency can be increased to over 90% (such as 90% -95%), significantly reducing energy waste and heat generation.

Improving power density: High frequency allows for the use of smaller magnetic cores and fewer copper wires to transmit the same power, significantly reducing the size of the transformer itself and the entire power supply, achieving miniaturization and lightweighting of the power supply.

 

2. Critical safety isolation (protective function)

Electrical isolation: The physical structure of a transformer completely isolates the input side (primary, usually connected to high voltage alternating current AC) and the output side (secondary, connected to LED beads). This ensures that users will not be electrocuted when touching the LED light body, ensuring personal safety.

Suppression of interference: This isolation can effectively prevent the transmission of interference noise such as surges and spikes in the input power grid to the precision LED load end, and also prevent switch noise inside the power supply from polluting the power grid, improving the electromagnetic compatibility (EMC) of the system.

 

3. Voltage Conversion and Adaptation (Voltage Matching Function)

Voltage reduction function: LED chips usually require low voltage direct current (such as 12V, 24V, 36V) to operate. The transformer precisely reduces the rectified high-voltage DC bus voltage to the safe voltage level required by the LED load through the turns ratio of the primary and secondary coils.

Constant drive: In conjunction with the backend circuit, it provides constant current or constant voltage output for the LED, ensuring stable brightness, unaffected by input voltage fluctuations, and extending the lifespan of the LED.

 

4. Implementation of Circuit Topology Function (System Level Function)

As the core component, its design determines the topology structure of the SMPS. EQ40 transformer is commonly used for:

Flyback topology: simple structure, low cost, very suitable for<100W LED driver power supply. Transformers simultaneously achieve energy storage and transmission functions.

Forward topology: Higher efficiency, commonly used in higher power LED lighting systems with>100W.

2.Performance Characteristics

Feature Category Performance Characteristic Description & Benefit
Core Efficiency High Operating Frequency Optimized for operation in the tens to hundreds of kHz range, enabling significant size reduction of magnetic components.
Low Core Losses EQ40 ferrite core material minimizes hysteresis and eddy current losses at high frequencies, reducing heat generation and improving overall efficiency.
Low Copper Losses Utilizes optimized winding techniques (e.g., Litz wire) to reduce skin and proximity effect losses, further enhancing efficiency.
Thermal Performance High Efficiency Rating Achieves conversion efficiency typically >90% (e.g., 90%-95%), directly resulting in lower power waste and reduced heat dissipation.
Reduced Thermal Footprint Lower losses translate to less heat generated within the power supply, improving long-term reliability and simplifying thermal management.
Power Density & Size Compact Form Factor The high-frequency operation allows for a smaller core size and fewer windings to transfer the same power, leading to a much smaller transformer.
High Power Density Enables the design of very compact and lightweight LED driver solutions, ideal for integration into space-constrained lighting fixtures.
Electrical Performance Excellent Isolation Provides reliable galvanic isolation between primary (high-voltage AC) and secondary (low-voltage DC) sides, ensuring user safety and meeting safety standards (UL, CE, IEC).
Precise Voltage Transformation The turns ratio can be precisely designed to step down the rectified high-voltage DC to the exact low voltage required by the LED array (e.g., 12V, 24V, 36V).
Reliability & Application Robust Construction Designed for high reliability and stable performance over a long lifespan, matching the longevity expectations of LED lighting systems.
Wide Application Range Ideal for a broad spectrum of LED lighting applications, from commercial and industrial fixtures to high-power outdoor and horticultural lighting, typically in the 50W to 150W power range.

 

 

High Efficiency EQ40 High Frequency Transformer LED SMPS Switched-Mode Power Supply 0High Efficiency EQ40 High Frequency Transformer LED SMPS Switched-Mode Power Supply 1High Efficiency EQ40 High Frequency Transformer LED SMPS Switched-Mode Power Supply 2High Efficiency EQ40 High Frequency Transformer LED SMPS Switched-Mode Power Supply 3High Efficiency EQ40 High Frequency Transformer LED SMPS Switched-Mode Power Supply 4High Efficiency EQ40 High Frequency Transformer LED SMPS Switched-Mode Power Supply 5

3.Other Recommended Produtcs

High Efficiency EQ40 High Frequency Transformer LED SMPS Switched-Mode Power Supply 6

4.Company Profile

High Efficiency EQ40 High Frequency Transformer LED SMPS Switched-Mode Power Supply 7High Efficiency EQ40 High Frequency Transformer LED SMPS Switched-Mode Power Supply 8High Efficiency EQ40 High Frequency Transformer LED SMPS Switched-Mode Power Supply 9