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ADS5231IPAG Datasheet(PDF) 13 Page - Texas Instruments

Part # ADS5231IPAG
Description  Dual, 12-Bit, 40MSPS, 3.3V Analog-to-Digital Converter
PDF  32 Pages
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Manufacturer  TI2 [Texas Instruments]
Direct Link  https://www.ti.com
Logo TI2 - Texas Instruments

ADS5231IPAG Datasheet(HTML) 13 Page - Texas Instruments

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DEFINITION OF SPECIFICATIONS
Minimum Conversion Rate
Analog Bandwidth
Signal-to-Noise and Distortion (SINAD)
Aperture Delay
SINAD + 10Log10
P
S
P
N
) PD
Aperture Uncertainty (Jitter)
Clock Duty Cycle
Signal-to-Noise Ratio (SNR)
Differential Nonlinearity (DNL)
SNR + 10Log10
P
S
P
N
Spurious-Free Dynamic Range
Effective Number of Bits (ENOB)
Two-Tone, Third-Order Intermodulation
ENOB +
SINAD * 1.76
6.02
Integral Nonlinearity (INL)
Maximum Conversion Rate
ADS5231
SBAS295A – JULY 2004 – REVISED JANUARY 2007
This is the minimum sampling rate where the ADC
still works.
The analog input frequency at which the spectral
power of the fundamental frequency (as determined
by FFT analysis) is reduced by 3dB.
SINAD is the ratio of the power of the fundamental
(PS) to the power of all the other spectral
components including noise (PN) and distortion (PD),
The delay in time between the rising edge of the
but not including dc.
input sampling clock and the actual time at which the
sampling occurs.
SINAD is either given in units of dBc (dB to carrier)
The sample-to-sample variation in aperture delay.
when the absolute power of the fundamental is used
as the reference, or dBFS (dB to full-scale) when the
power of the fundamental is extrapolated to the
full-scale range of the converter.
Pulse width high is the minimum amount of time that
the ADCLK pulse should be left in logic ‘1’ state to
achieve rated performance. Pulse width low is the
minimum time that the ADCLK pulse should be left in
SNR is the ratio of the power of the fundamental (PS)
a low state (logic ‘0’). At a given clock rate, these
to the noise floor power (PN), excluding the power at
specifications define an acceptable clock duty cycle.
dc and the first eight harmonics.
An ideal ADC exhibits code transitions that are
exactly 1 LSB apart. DNL is the deviation of any
SNR is either given in units of dBc (dB to carrier)
single LSB transition at the digital output from an
when the absolute power of the fundamental is used
ideal 1 LSB step at the analog input. If a device
as the reference, or dBFS (dB to full-scale) when the
claims to have no missing codes, it means that all
power of the fundamental is extrapolated to the
possible codes (for a 12-bit converter, 4096 codes)
full-scale range of the converter.
are present over the full operating range.
The ratio of the power of the fundamental to the
The ENOB is a measure of converter performance
highest other spectral component (either spur or
as compared to the theoretical limit based on
harmonic). SFDR is typically given in units of dBc
quantization noise.
(dB to carrier).
Distortion
Two-tone IMD3 is the ratio of power of the
fundamental (at frequencies f1 and f2) to the power of
INL is the deviation of the transfer function from a
the
worst
spectral
component
of
third-order
reference line measured in fractions of 1 LSB using a
intermodulation distortion at either frequency 2f1 – f2
best straight line or best fit determined by a least
or 2f2 – f1. IMD3 is either given in units of dBc (dB to
square curve fit. INL is independent from effects of
carrier) when the absolute power of the fundamental
offset, gain or quantization errors.
is used as the reference, or dBFS (dB to full-scale)
when the power of the fundamental is extrapolated to
the full-scale range of the converter.
The encode rate at which parametric testing is
performed. This is the maximum sampling rate where
certified operation is given.
13
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