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TSA1203IF 数据表(PDF) 25 Page - STMicroelectronics |
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TSA1203IF 数据表(HTML) 25 Page - STMicroelectronics |
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25 / 30 page ![]() TSA1203 Definitions of specified parameters 25/30 10 Definitions of specified parameters Static parameters Static measurements are performed using the histograms method on a 2 MHz input signal, sampled at 50 Msps, which is high enough to fully characterize the test frequency response. The input level is +1 dBFS to saturate the signal. Differential non linearity (DNL) The average deviation of any output code width from the ideal code width of 1 LSB. Integral non linearity (INL) An ideal converter exhibits a transfer function which is a straight line from the starting code to the ending code. The INL is the deviation from this ideal line for each transition. Dynamic parameters Dynamic measurements are performed by spectral analysis, applied to an input sine wave of various frequencies sampled at 40 Msps. The input level is -1dBFS to measure the linear behavior of the converter. All the parameters are given without correction for the full scale amplitude performance except the calculated ENOB parameter. Spurious free dynamic range (SFDR) The ratio between the power of the worst spurious signal (not always an harmonic) and the amplitude of fundamental tone (signal power) over the full Nyquist band. It is expressed in dBc. Total harmonic distortion (THD) The ratio of the rms sum of the first five harmonic distortion components to the rms value of the fundamental line. It is expressed in dB. Signal to noise ratio (SNR) The ratio of the rms value of the fundamental component to the rms sum of all other spectral components in the Nyquist band (fs/2) excluding DC, fundamental and the first five harmonics. SNR is reported in dB. Signal to noise and distortion ratio (SINAD) Similar ratio as for SNR but including the harmonic distortion components in the noise figure (not DC signal). It is expressed in dB. The effective number of bits (ENOB) is easily deduced from the SINAD, using the formula: SINAD= 6.02 × ENOB + 1.76 dB. When the applied signal is not full scale (FS), but has an A0 amplitude, the SINAD expression becomes: SINAD2Ao=SINADFull Scale+ 20 log (2A0/FS) Obsolete Product(s) - Obsolete Product(s) |
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