1 M
:
1 M
:
LPF
AIN_0P
AIN_0GND
4.096 V
AVDD = 5 V
ADS8698
18-Bit
ADC
C
0
R
0P
R
0M
Mu
lt
ip
le
xe
r
FPGA
SITARA
DDR
U
SB
Simple Capture Card
x
x
x
x
x
Ph
ase
Comp
ensa
tion
GU
I
AGND
PGA
1 M
:
1 M
:
LPF
AIN_7P
AIN_7GND
C
7
R
7P
R
7M
PGA
Typical 50-Hz
Sine-Wave from CT/PT
Balanced RC Filter
on Each Input
Angle (
)
¨
r1
¨
rn
(n = 1 to 7)
Reference
Input, V
R
Ch1 Input, V
1
Ch n Input, V
n
(n = 1 to 7)
¨
= Measured Phase Difference
Between Channels
SBAS686 – JULY 2015
9 Application and Implementation
NOTE
Information in the following applications sections is not part of the TI component
specification, and TI does not warrant its accuracy or completeness. TI’s customers are
responsible for determining suitability of components for their purposes. Customers should
validate and test their design implementation to confirm system functionality.
9.1 Application Information
The ADS8694 and ADS8698 devices are fully-integrated data acquisition systems based on a 18-bit SAR ADC.
The devices include an integrated analog front-end for each input channel and an integrated precision reference
with a buffer. As such, this device family does not require any additional external circuits for driving the reference
or analog input pins of the ADC.
9.2 Typical Applications
9.2.1 Phase-Compensated, 8-Channel, Multiplexed Data Acquisition System for Power Automation
Figure 108. 8-Channel, Multiplexed Data Acquisition System for Power Automation
9.2.1.1 Design Requirements
In modern power grids, accurately measuring the electrical parameters of the various areas of the power grid is
extremely critical. This measurement helps determine the operating status and running quality of the grid. Such
accurate measurements also help diagnose potential problems with the power network so that these problems
can be resolved quickly without having any significant service disruption. The key electrical parameters include
amplitude, frequency, and phase, which are important for calculating the power factor, power quality, and other
parameters of the power system.
Copyright © 2015, Texas Instruments Incorporated
63
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