Product attributes
SGM6012-AJYTN5G/TR is an efficient buck DC-DC converter launched by SGMicro. It is designed specifically for applications that require stable low voltage output from a high voltage source, with extremely high conversion efficiency and compact packaging, suitable for a variety of small electronic devices.
Main characteristics
Input voltage range: This power IC allows an input voltage range of 2.5V to 5.5V, making it compatible with various power sources, especially suitable for applications powered by lithium batteries.
Output current: SGM6012 can provide a load current of up to 800mA, meeting the needs of most low-power devices.
Switching frequency: Its switching frequency is 1.6MHz, which can effectively reduce the volume of external inductors and capacitors, making the design more compact.
Adjustment method: It supports adjustable output voltage and is widely applicable to different voltage requirements. Users can flexibly set the output voltage according to the application scenario.
Packaging form: This IC adopts TSOT-23-5 packaging, which has excellent heat dissipation performance and compact size, suitable for designs with limited space.
Performance advantages
High efficiency: SGM6012 has a conversion efficiency of up to 95%, providing stable output under various load conditions, reducing heat generation, and improving the overall reliability of the system.
Low standby power consumption: This IC has extremely low standby power consumption, reducing energy consumption when not in operation, making it particularly suitable for wearable devices and portable electronic products.
Short circuit protection: The built-in short circuit protection function can prevent equipment damage caused by short circuits, increasing the overall design safety.
Overheating protection: Equipped with an overheating protection mechanism, it automatically reduces output when the working temperature is too high, avoiding potential problems caused by overheating.
EMI suppression: Adopting sliding mode modulation technology, effectively reducing electromagnetic interference (EMI) and improving product compliance and stability.
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