April 10, 2026
As switching power supplies (SMPS) become more compact and efficient, selecting the right SMD current transformer is critical for accurate current sensing and system stability.
Engineers and designers are increasingly searching for high-performance current sensing transformers that can operate efficiently in high-frequency and high-current environments.
In SMPS designs, current sensing is essential for:
Compared with shunt resistors, current transformers provide isolation and lower power loss, making them ideal for high-performance systems.
Choosing the right current transformer for SMPS requires careful evaluation of several factors:
The transformer must support the required load current.
For example, solutions supporting up to 50A are suitable for high-power applications.
The turns ratio determines signal scaling and measurement accuracy.
Typical options such as 1:30 to 1:200 provide flexibility for different circuit designs.
Modern SMPS operate at high switching frequencies.
A transformer with a 20kHz to 1MHz range ensures compatibility with various designs.
Lower DCR reduces power loss and heat generation, improving overall efficiency.
High isolation (e.g., 5000Vdc) is critical for protecting sensitive circuits and ensuring safety.
Surface-mount current transformers are becoming the preferred choice due to:
These benefits make SMD current transformers ideal for next-generation power electronics.
The ACSTER11.5 Series SMD Current Transformer is designed specifically for SMPS and high-frequency applications.
This makes it a reliable choice for engineers seeking stable and efficient current sensing solutions.
Selecting the right SMD current transformer for SMPS directly impacts system efficiency, reliability, and safety.
With its combination of high current capability, low loss, and strong isolation, the ACSTER11.5 Series provides an effective solution for modern power electronics design.