ADS7828-Q1
www.ti.com.......................................................................................................................................... SBAS456A –DECEMBER 2008–REVISED OCTOBER 2009
The example in Figure 9 can be generalized for an HS mode conversion cycle by changing the timing of the
conversion cycle. If using an external reference, PD1 must be set to 0, and the external reference must be
settled. The typical sequence in Figure 7 or Figure 8 can then be used.
PCB Layout
For optimum performance, care should be taken with the physical layout of the ADS7828 circuitry. The basic
SAR architecture is sensitive to glitches or sudden changes on the power supply, reference, ground connections,
and digital inputs that occur just prior to latching the output of the analog comparator. Therefore, during any
single conversion for an "n-bit" SAR converter, there are n "windows" in which large external transient voltages
can easily affect the conversion result. Such glitches might originate from switching power supplies, nearby
digital logic, and high-power devices.
With this in mind, power to the ADS7828 should be clean and well-bypassed. A 0.1-μF ceramic bypass capacitor
should be placed as close to the device as possible. A 1-μF to 10-μF capacitor may also be needed if the
impedance of the connection between +VDD and the power supply is high.
The ADS7828 architecture offers no inherent rejection of noise or voltage variation in regards to using an
external reference input. This is of particular concern when the reference input is tied to the power supply. Any
noise and ripple from the supply will appear directly in the digital results. While high-frequency noise can be
filtered out, voltage variation due to line frequency (50 Hz or 60 Hz) can be difficult to remove.
The GND pin should be connected to a clean ground point. In many cases, this will be the "analog" ground.
Avoid connections that are too near the grounding point of a microcontroller or digital signal processor. The ideal
layout will include an analog ground plane dedicated to the converter and associated analog circuitry.
Copyright © 2008–2009, Texas Instruments Incorporated
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