The ST7093-001 is a surface mount power inductor manufactured by Pulse Electronics. This inductor is designed for use in a variety of power supply applications where efficient energy storage and filtering are required. Its compact size and surface mount design make it suitable for high-density circuit board layouts.
Applications
- DC-DC converters
- Power supplies for portable devices
- Voltage regulators
- Filtering applications
- LED lighting
Features
- Surface mount design for automated assembly
- High current carrying capacity
- Low DC resistance (DCR) for minimal power loss
- Shielded construction to reduce electromagnetic interference (EMI)
- Compact size
- RoHS compliant
Benefits
- Efficient Power Conversion: The low DCR of the ST7093-001 inductor minimizes power loss, leading to more efficient DC-DC conversion and improved overall system efficiency.
- Reduced EMI: The shielded construction helps to contain electromagnetic interference, ensuring stable operation and preventing interference with other sensitive components.
- Space Saving: The compact size allows for use in densely populated circuit boards, making it suitable for portable devices and space-constrained applications.
- Reliable Performance: Designed and manufactured by Pulse Electronics, the ST7093-001 provides consistent and reliable performance in demanding power supply environments.
- Easy Integration: The surface mount design simplifies the assembly process, reducing manufacturing costs and time.
Additional Details
The ST7093-001 inductor typically features a ferrite core material that provides high saturation current capability. The specific inductance value, saturation current, and DCR are available in the datasheet provided by Pulse Electronics. The operating temperature range and storage temperature range also can be found within the datasheet. It is crucial to consult the official datasheet for precise electrical characteristics and application guidelines to ensure optimal performance and reliability.
When selecting the ST7093-001 for a particular application, it is important to consider the inductor's current rating, inductance value, and operating frequency to ensure that it meets the specific requirements of the circuit. Proper thermal management may also be necessary to prevent overheating, especially in high-current applications.