The present invention relates to an ear
microphone for providing clear sound by preventing echo and howling phenomena by blocking
external noise, and for providing an effective
telephone call in a noisy environment by improving the recognition ability of a voice-recognizing device. For the ear
microphone, a connector for connection to an external device, a
control unit for controlling the ear
microphone overall, and an earphone unit to be worn by a user for outputting or inputting voice are electrically connected to each other through cables. The earphone unit consists of a first earphone unit which includes first and second speakers wearable on the ear, a first microphone having
directivity, and a second earphone unit which includes a third speaker. For the
control unit, a grounding terminal and one terminal of the
control unit are connected to the connector such that the other terminal is connected to the first to third speakers, and one terminal is connected to the connector such that the other terminal is connected to the first microphone. The microphone output terminal is configured to be connected to a
resistor in series. The third speaker is configured as a
voltage-dividing
resistor on a speaker input terminal. Each
voltage dividing
resistor is differently designed for the first and second speakers such that the second speaker has phase characteristics that are opposite those of the first speaker, and at the same time has a
voltage different from the first speaker. A negative terminal of the first speaker and a positive terminal of the second speaker connected to the speaker output terminal are connected to a volume-adjusting unit.