Abstract
A micro-reed switch with high current carrying capacity comprises a first reed and a second reed. The first reed comprises a first metal electrode and a first hydrophobic area. The first metal electrode comprises a liquid metal. The second reed comprises a second metal electrode and a second hydrophobic area. The first reed and second reed is paralleled each other and have a gap. When a magnetic field existed, the liquid metal and the second metal electrode is touched each other by a magnetic force of the magnet. The present invention also discloses a manufacturing method of a micro-reed switch with high current carrying capacity.