Common Mode Chokes
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High reliability multilayer chip inductor microgate MGLB2012M101T2R0-LF for automotive communication and OA devices
Product OverviewThe MGLB series are multilayer chip large current, higher loss inductors designed for high reliability and high permissible current applications. They feature a monolithic construction, high impedance over a wide frequency range, and are suitable for video, audio, automotive electrical, communication, and OA equipment.Product AttributesBrand: (Microgate)Origin: China (implied by company name and website)Material: Not specifiedColor: Not specifiedCertifications
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High current multilayer chip inductor microgate MGLB3216M301T2R2-LF with lead free compliant design
Product OverviewThe MGLB series is a multilayer chip inductor designed for high current and higher loss applications. It features a multilayer monolithic construction for high reliability and a unique terminal electrode structure that ensures a high permissible current of up to 4A. These inductors offer high impedance over a wide frequency range, making them suitable for various electronic equipment.Product AttributesBrand: (Microgate)Origin: China (implied by company name
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Compact SMD Chip Common Mode Filter MetalLions ACM3216-2P-142TF for High Frequency Noise Suppression
SMD Chip Common Mode Filters - ACM3216 Series These high-frequency common mode filters are designed with a winding type to achieve a small size and low profile, making them ideal for compact electronic devices. They effectively prevent common mode noise in high-frequency applications, offering excellent solderability and a wide operating temperature range of -40 to +125. Applications include USB2.0 interfaces for PCs and peripherals, small digital AV equipment, and LVDS and
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Multilayer Chip Ferrite Inductor Microgate MGGB2012M121HT-LF with High Reliability and Heat Resistance
Multilayer Chip Ferrite Higher Loss InductorThe Multilayer Chip Ferrite Higher Loss Inductor features a multilayer monolithic construction for high reliability, excellent solderability, and heat resistance. It provides substantial EMI suppression over a wide frequency range, making it suitable for noise suppression in digital equipment such as computers and their peripherals, DVD players, cameras, and OA equipment.Product AttributesBrand: (Microgate)Origin: ChinaMaterial:
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Wire Wound Chip Common Mode Filter MetalLions ACM4532-2P-121TF for USB 2 0 and LVDS Noise Prevention
Product OverviewThe ACM4532 Series Wire Wound Chip Common Mode Filters are designed for high-frequency noise prevention in applications like USB 2.0 and LVDS lines. Their winding type enables a small size and low profile, while offering excellent solderability and a wide operating temperature range of -40 to +125. These filters are available in a no-polarity design.Product AttributesProduct Series: Wire Wound Chip Common Mode FiltersHazardous Substance Free Products: FBrand:
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Versatile microgate MGGB2012M301HT-LF part optimized for seamless industrial equipment compatibility
2304140030_microgate-MGGB2012M301HT-LF_C281165.pdf
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Electronic noise suppression component microgate MGLB3216M300T6R0-LF multilayer chip large current bead
Product OverviewThe MGLB series of multilayer chip large current beads are designed for effective noise suppression in electronic circuits. These components offer high current handling capabilities and are suitable for various applications requiring reliable filtering performance.Product AttributesBrand: MICROGATEOrigin: Shenzhen, ChinaMaterial: Ferrite (Base Material), Silver (Internal Conductor, Terminal Electrode), Ni-Sn (Terminal Electrode)Certifications: RoHS compliant
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Noise Suppression Wire Wound Common Mode Filter MetalLions ACW5040-191T50 with Ferrite Core Material
Product OverviewThe ACW5040-SERIES is a Wire Wound Type Common Mode Filter designed for noise suppression. It offers effective filtering for various electronic applications.Product AttributesBrand: MeledOrigin: (Not specified)Material: Ferrite Core, P180 Wire, Epoxy Resin Adhesive, Sn99.3:Cu0.7 Solder, Black InkColor: Black (Ink)Certifications: (Not specified)Technical SpecificationsMeled P/NCommon mode Impedance @100MHz ()Inductance (uH) @100KHz/0.1VRated Voltage (V)MAX DCR
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Wire Wound Chip Common Mode Filters MetalLions ACM4532-2P-201TF with Excellent Solderability and Compact Design
Wire Wound Chip Common Mode Filters ACM4532 Series The ACM4532 Series Wire Wound Chip Common Mode Filters are designed for high-frequency noise suppression in digital interfaces. Their compact size and low profile, achieved through a wire-wound construction, make them ideal for space-constrained applications. These filters effectively prevent common mode noise, contributing to signal integrity. They offer excellent solderability and are rated for an operating temperature
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Performance Microgate MGGB1608M252HT-LF Component Suitable for Industrial Automation and Electronics
2304140030_microgate-MGGB1608M252HT-LF_C281147.pdf
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Large Current Inductor Microgate MGLB1005M121T1R2-LF Designed for Automotive Electrical Equipment
Product OverviewThe MGLB series are multilayer chip large current, higher loss inductors designed for high reliability and high permissible current applications. They feature a unique terminal electrode structure and offer high impedance over a wide frequency range. Ideal for video equipment, audio equipment, automotive electrical equipment, communication equipment, and OA equipment.Product AttributesBrand: Microgate ()Origin: ChinaCertifications: Lead-free productsTechnical
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SMD Common Mode Filters MetalLions ACM4520F-901T21 Designed for USB IEEE 1394 and LVDS Signal Lines
SMD Common Mode Line FiltersChip common mode filters designed for large current applications, featuring a low profile of 2.0 mm, optimal for surface mounting. These filters are suitable for use up to 2.0A and operate within a temperature range of -40 to +125 (including self-temperature rise). They are ideal for USB lines in personal computers and peripherals, IEEE 1394 lines in PCs, DVCs, and STBs, and LVDS/panel lines for liquid crystal display panels and graphics cards. The