The BLM15GA750SN1G is a ferrite bead from Murata Electronics, designed for effective noise suppression in electronic circuits. It is part of the BLM15 series, known for its compact size and reliable performance in mitigating unwanted high-frequency noise.
Applications:
- Noise suppression in mobile communication devices such as smartphones and tablets.
- EMI filtering in various electronic devices, including laptops and digital cameras.
- Signal line noise reduction in audio and video equipment.
- Power line noise filtering in DC-DC converters and power supplies.
- General noise countermeasure for electronic circuits operating in the GHz range.
Features:
- Small Size: EIA 0402 (1005 Metric) case size allows for high-density mounting.
- High Impedance: Provides effective noise suppression at the specified frequency.
- High Rated Current: Capable of handling substantial current without saturation.
- Excellent Reliability: Manufactured with high-quality materials ensuring long-term stability.
- Lead-Free Construction: Compliant with RoHS standards, making it environmentally friendly.
Benefits:
- Effective Noise Suppression: Reduces unwanted noise, improving signal integrity and overall circuit performance.
- Space Saving: Its miniature size allows for efficient use of board space in compact electronic devices.
- Increased Reliability: Enhances the reliability of electronic circuits by mitigating noise-related issues.
- Reduced EMI: Minimizes electromagnetic interference, ensuring compliance with regulatory standards.
- Simplified Design: Simplifies circuit design by providing a readily available noise suppression solution.
Specifications:
The BLM15GA750SN1G has an impedance of 75 Ohms at 100 MHz. It has a rated current of 200 mA and a DC resistance of 1.2 Ohms. The operating temperature range is -55°C to +125°C. It is available in a 0402 (1005 Metric) package. The part is designed for high-frequency noise suppression, particularly in the GHz range. Its small size and high performance make it suitable for various applications where space is limited and effective noise filtering is required.