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LAN Transformers for 760390014, Isolated Interface rj45 rj111
Product Parameters
Inductance |
340uH |
Turns Ratio(±5%) |
1:1.1 |
Dimensions L*W*H(mm) |
12.7*9.2*7.7 |
Switch frequency(Khz) |
300-620 |
Package |
12X9 |
Product Description
The EPF-1209-13734 is a push-pull transformer that falls into the categories of push-pull audio transformer and low loss push-pull transformer—proving to be a versatile and efficient component for diverse electronic systems. As a standard push-pull transformer, it features a center-tapped winding design (with a turns ratio of 2:1, tolerance ±3%),which enables efficient energy transfer and symmetric signal conversion. This design ensures balanced current distribution across windings, minimizing waveform distortion and making it suitable for a range of electronic systems, from consumer electronics to industrial power units.
As a push-pull audio transformer, it is well-suited for use in audio amplifiers (such as tube amplifiers and solid-state audio amps), where its symmetric structure helps maintain audio signal integrity across a frequency range of 20Hz to 20kHz—the critical spectrum for human hearing. It delivers a low total harmonic distortion (THD ≤0.1% at 1kHz), ensuring clear and balanced sound output without unwanted noise or distortion. Its design also makes it compatible with related audio equipment like preamps and mixers, supporting stable signal transmission in audio circuits and enhancing overall sound quality.
Engineered as a low loss push-pull transformer, it minimizes energy dissipation through its high-grade magnetic core material (Mn-Zn ferrite) and optimized winding layout—typical power loss is ≤2% at full load, which is beneficial for improving the efficiency of electronic systems. This characteristic makes it applicable in power inverters (for converting DC to AC in off-grid systems), DC-DC converters (in automotive electronics), and switching power supplies (for consumer devices like laptops), where reducing energy loss is crucial for lowering operating temperatures and boosting overall system performance.
Additionally, it features a compact, encapsulated housing (dimensions: 12mm × 9mm × 8mm) with leaded terminals for easy soldering, simplifying integration into both through-hole and hybrid circuit boards. The component exhibits strong environmental resilience: it operates reliably from -25°C to +105°C, resisting temperature fluctuations in harsh industrial or automotive environments, and complies with RoHS standards for hazardous substance restrictions. It can also be integrated into telecom power modules (for stable voltage conversion in communication towers) and renewable energy systems (like solar inverters), where its reliable conversion capabilities and low loss performance contribute to the stable operation of these systems. Overall, the EPF-1209-13734 meets the practical needs of various electronic applications through its functional design and performance attributes.
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