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Experimental conditions were as follows: experiment 1 control, test frequencies 9 kHz and 10 kHz; experiment 2, exposure 8 kHz 20 h, test frequencies 9 kHz and 10 kHz; experiment 3 control, test frequencies 11 kHz and 13 kHz; experiment 4, exposure 10 kHz 20 h, test frequencies 11 kHz and 13 kHz.
The model is aimed at evaluating explicitly the effects of different test frequencies and strategies (i.e. simultaneous, sequential and staggered).
The need for interpolation is lessened greatly if the sampling rate is chosen to be unrelated to the test frequencies (ideally so that the number of samples in each sinusoidal period is an irrational number).
The model is able to model explicitly common cause failure and diagnostic coverage, as well as different test frequencies and strategies.
The tantalum capacitors showed excellent capacitance temperature linearity between 220 and 310 K for test frequencies of 120 Hz and 1 kHz.
Moreover, the control strategy has the ability to cover a wide range of cable capacitances, desired amplitudes of the output voltage and desired test frequencies.
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§ 51.355 Test frequency and convenience.
A significant influence of test frequency was not found.
The test conditions were as in Fig.2.6, i.e., the highest test frequency was fmax =, and the number of samples in each test sinusoid was tmax.
The R ratio was 0.1 and the test frequency was 10 Hz.
Figure 2.4: Input and output signals for the sixth test frequency in the simulated sine-wave analysis of the simplest lowpass filter.
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