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<t>Crosstalk</t> analysis in frequency domain. ( a ) Fast axis; ( b ) slow axis. The data was obtained when the scanner was oscillating with the maximum scan angles at 902 Hz and 60 Hz for the fast and slow axes, respectively. Rectangle (brown color), triangle (green color), and circle (pink color) represent actuation signal of one axis, coupled signal affected by the other axis, and the n th harmonics, respectively. Note that electrical noise at 60 Hz is negligible (0.1% of actuation signal at 60 Hz), which was verified by the <t>FFT</t> processing of data without slow-axis actuation.
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<t>Crosstalk</t> analysis in frequency domain. ( a ) Fast axis; ( b ) slow axis. The data was obtained when the scanner was oscillating with the maximum scan angles at 902 Hz and 60 Hz for the fast and slow axes, respectively. Rectangle (brown color), triangle (green color), and circle (pink color) represent actuation signal of one axis, coupled signal affected by the other axis, and the n th harmonics, respectively. Note that electrical noise at 60 Hz is negligible (0.1% of actuation signal at 60 Hz), which was verified by the <t>FFT</t> processing of data without slow-axis actuation.
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<t>Crosstalk</t> analysis in frequency domain. ( a ) Fast axis; ( b ) slow axis. The data was obtained when the scanner was oscillating with the maximum scan angles at 902 Hz and 60 Hz for the fast and slow axes, respectively. Rectangle (brown color), triangle (green color), and circle (pink color) represent actuation signal of one axis, coupled signal affected by the other axis, and the n th harmonics, respectively. Note that electrical noise at 60 Hz is negligible (0.1% of actuation signal at 60 Hz), which was verified by the <t>FFT</t> processing of data without slow-axis actuation.
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<t>Crosstalk</t> analysis in frequency domain. ( a ) Fast axis; ( b ) slow axis. The data was obtained when the scanner was oscillating with the maximum scan angles at 902 Hz and 60 Hz for the fast and slow axes, respectively. Rectangle (brown color), triangle (green color), and circle (pink color) represent actuation signal of one axis, coupled signal affected by the other axis, and the n th harmonics, respectively. Note that electrical noise at 60 Hz is negligible (0.1% of actuation signal at 60 Hz), which was verified by the <t>FFT</t> processing of data without slow-axis actuation.
Fast Fourier Transform (Fft) Algorithm, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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<t>Crosstalk</t> analysis in frequency domain. ( a ) Fast axis; ( b ) slow axis. The data was obtained when the scanner was oscillating with the maximum scan angles at 902 Hz and 60 Hz for the fast and slow axes, respectively. Rectangle (brown color), triangle (green color), and circle (pink color) represent actuation signal of one axis, coupled signal affected by the other axis, and the n th harmonics, respectively. Note that electrical noise at 60 Hz is negligible (0.1% of actuation signal at 60 Hz), which was verified by the <t>FFT</t> processing of data without slow-axis actuation.
Matlab Software R2018b, supplied by MathWorks Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Crosstalk analysis in frequency domain. ( a ) Fast axis; ( b ) slow axis. The data was obtained when the scanner was oscillating with the maximum scan angles at 902 Hz and 60 Hz for the fast and slow axes, respectively. Rectangle (brown color), triangle (green color), and circle (pink color) represent actuation signal of one axis, coupled signal affected by the other axis, and the n th harmonics, respectively. Note that electrical noise at 60 Hz is negligible (0.1% of actuation signal at 60 Hz), which was verified by the FFT processing of data without slow-axis actuation.

Journal: Micromachines

Article Title: Gimbal-Less Two-Axis Electromagnetic Microscanner with Twist Mechanism

doi: 10.3390/mi9050219

Figure Lengend Snippet: Crosstalk analysis in frequency domain. ( a ) Fast axis; ( b ) slow axis. The data was obtained when the scanner was oscillating with the maximum scan angles at 902 Hz and 60 Hz for the fast and slow axes, respectively. Rectangle (brown color), triangle (green color), and circle (pink color) represent actuation signal of one axis, coupled signal affected by the other axis, and the n th harmonics, respectively. Note that electrical noise at 60 Hz is negligible (0.1% of actuation signal at 60 Hz), which was verified by the FFT processing of data without slow-axis actuation.

Article Snippet: Finally, the acquired data was converted from the time domain to the frequency domain with 1 Hz interval using FFT processing (MATLAB, version R2013b, MathWorks, Inc., Natick, MA, USA). shows the crosstalk analysis in the frequency domain (optical half scan angle versus frequency).

Techniques: