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ADS5294IPFPR датащи(PDF) 66 Page - Texas Instruments

номер детали ADS5294IPFPR
подробное описание детали  ADS5294 Octal-Channel 14-Bit 80-MSPS High-SNR and Low-Power ADC
PDF  82 Pages
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производитель  TI2 [Texas Instruments]
домашняя страница  https://www.ti.com
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ADS5294IPFPR датащи(HTML) 66 Page - Texas Instruments

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INP
INM
10
0.1uF
10
2 pF
0.1uF
Differential
Input
ADS529x
66
ADS5294
SLAS776E – NOVEMBER 2011 – REVISED APRIL 2018
www.ti.com
Product Folder Links: ADS5294
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Copyright © 2011–2018, Texas Instruments Incorporated
Typical Application (continued)
10.2.1 Design Requirements
The ADS5294 is a high-speed, multi-channel ADC suitable for medical imaging, communication systems, multi-
channel data acquisition, and so on. In all applications, the signal dynamic range, center frequency, and
bandwidth are the key requirements for the ADC selection.
The ADS5294 has a noise level of approximately 20 nV/
√Hz referred to its input, assuming of a sampling rate of
80 MHz, a 2-Vpp input, and 75.5-dBFS SNR. Suitable ADS5294 driver circuit shall be designed to achieve better
than 20 nV/
√Hz output referred noise.
10.2.2 Detailed Design Procedure
Use the following steps to design a typical data acquistion system:
1. Use the signal center frequency and signal bandwidth to select an appropriate ADC sampling frequency.
2. Use the transducer or sensor noise level and maximum input signal amplitude to select appropriate pre-
driver amplifiers.
3. Select appropriate low jitter clock for the ADC.
4. Determine whether to use the on-chip digital filters or decimation filters based on required SNR and pass
band shaping.
10.2.2.1 Large and Small Signal Input Bandwidth
The small signal bandwidth of the analog input circuit is high, around 550 MHz. When using an amplifier to drive
the ADS5294, consider the total noise of the amplifier up to the small signal bandwidth. The large signal
bandwidth of the device depends on the amplitude of the input signal. The ADS5294 supports 2 VPP amplitude
for input signal frequency up to 80 MHz. For higher frequencies (80 MHz), the amplitude of the input signal must
be decreased proportionally. For example, at 160 MHz, the device supports a maximum of 1 VPP signal.
10.2.2.2 Drive Circuit
For optimum performance, the analog inputs must be driven differentially which improves the common-mode
noise immunity and even order harmonic rejection. A 5-Ω to 15-Ω resistor in series with each input pin is
recommended to damp-out ringing caused by package parasitic.
The drive circuit shows an R-C filter across the analog input pins. The purpose of the filter is to absorb the
glitches caused by the opening and closing of the sampling capacitors.
The output of the driver circuit referred noise shall be considered in order to maximize SNR of the ADS5294.
Figure 63. Analog Input Drive Circuit
10.2.2.3 Clock Selection
To ensure that the aperture delay and jitter are the same for all channels, the ADS5294 uses a clock tree
network to generate individual sampling clocks for each channel. The clock, for all the channels, are matched
from the source point to the sampling circuit of each of the eight internal ADCs. The variation on this delay is
described in the aperture delay parameter of the output interface timing. Its variation is given by the aperture jitter
number of the same table.



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