A novel resolver-to-DC converter based on OTA-based inverse-sine function circuit

Anucha Kaewpoonsuk, Wandee Petchmaneelumka, Apinai Rerkratn, Sirichai Tammaruckwattana, Vanchai Riewruja · 2008

A new technique for realizing the resolver-to-DC converter using the OTA-based inverse-sine function circuit is presented. The proposed converter comprises the demodulator, absolute detector, minimum detector, plusmn unity-gain amplifier, controlled signal logic circuit, and OTA-based inverse-sine function circuit. The output voltage is linearly proportional to the resolver angle with maximum absolute error of about 0.195%, which is less than the error from the conventional resolver-to-DC converter based on the similar OTA-based inverse-sine function circuit. PSPICE simulation and experimental results verifying the performances of the proposed circuit are in close agreement with the expected values.

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