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Specifically, we exploit the flux-dependent resonance frequency of the (Omega_{1}) mode and operate our device as a flux-driven parametric amplifier by applying an additional drive tone at (omega_{mathrm{D}} = 2Omega_{1}) to the input line.
Therefore the likelihood of cross-talk measurement occuring was simply minimized by collecting EMG data according to SENIAM guidelines and applying a double differential signal amplifier which has been shown effective in minimizing cross talk [ 29].
The overall gain of the A250 preamplifier and shaping amplifier is determined by applying a 5 mV trapezoidal waveform, with rise and fall times similar to those of the waveforms induced by the oscillating particles, through a 1.5 pF capacitor attached directly to the ICD pickup.
Measure the pipette resistance by applying a 50 mV pulse in the voltage-clamp mode of the amplifier.
The resulting voltage was subsequently filtered on-board using a 2nd-order low-pass filter with a cutoff-frequency of 1 kHz and an additional signal amplification stage with a gain of 2. This second amplifier stage allowed to apply an offset voltage in order to keep the range of the preamplified voltage level within the input swing of the subsequent ADC.
The patch clamp amplifier applied a voltage pulse to the cell and the corresponding current between the electrode inside the pipette and the signal ground was then recorded.
The AGC loop applies a novel digital variable gain amplifier (VGA) basing on a gm-boosting DVGA (digital VGA).
Validated for a simulated nonlinear amplifier, our algorithm has been first applied to a real amplifier (GaN PA polarized in AB-class) for a QPSK-OFDM signal [5].
A comparison is made between two design methodology applied to an analog amplifier design.
In the cell-attached patch configuration, the transmembrane voltage across the patch is a sum of the cell membrane potential and voltage applied by the amplifier.
The proposed method is based on four HE sensors in two couples with 180° distance, where the outputs of the each complementary sensor are applied to a differential amplifier.
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