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AD7986BCPZ Datasheet(PDF) 19 Page - Analog Devices

Part # AD7986BCPZ
Description  15 mW ADC in LFCSP
PDF  29 Pages
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Manufacturer  AD [Analog Devices]
Direct Link  http://www.analog.com
Logo AD - Analog Devices

AD7986BCPZ Datasheet(HTML) 19 Page - Analog Devices

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AD7986
Data Sheet
Rev. D | Page 18 of 28
DATA READING OPTIONS
There are three different data reading options for the AD7986.
There is the option to read during conversion, to split the read
across acquisition and conversion (see Figure 25 and Figure 26),
and in normal mode, to read during acquisition. The desired
SCK frequency largely determines which reading option to
pursue.
Reading During Conversion, Fast Hosts (Turbo or
Normal Mode)
When reading during conversion (n), conversion results are for
the previous (n − 1) conversion. Reading must only occur up to
tDATA and, because this time is limited, the host must use a
fast SCK.
The required SCK frequency is calculated by
EN
CNVH
DATA
SCK
t
t
t
Edges
SCK
Number
f
−
−
≥
_
_
To determine the SCK frequency, follow these examples to read
data from conversion (n − 1).
Turbo mode (2 MSPS),
Number_SCK_Edges = 18; tDATA = 200 ns; tCNVH = 10 ns; tEN = 10 ns
fSCK = 18/(200 ns − 10 ns − 10 ns) = 100 MHz
Normal mode (1.5 MSPS),
Number_SCK_Edges = 18; tDATA = 300 ns; tCNVH = 10 ns; tEN = 10 ns
fSCK = 18/(300 ns − 10 ns − 10 ns) = 64.3 MHz
The time between tDATA and tCONV is an input/output quiet time
where digital activity must not occur, or sensitive bit decisions
may be corrupt.
Split-Reading, Any Speed Host (Turbo or Normal Mode)
To allow for slower SCK, there is the option of a split read where
data access starts at the current acquisition (n) and spans into the
conversion (n). Conversion results are for the previous (n − 1)
conversion.
Similar to reading during conversion, split-reading must only
occur up to tDATA. For the maximum throughput, the only time
restriction is that split-reading take place during the tACQ
(minimum) + tDATA − tQUIET time. The time between the falling
edge of SCK and CNV rising is an acquisition quiet time, tQUIET.
To determine how to split the read for a particular SCK frequency,
follow these examples to read data from conversion (n − 1).
For turbo mode (2 MSPS),
fSCK = 75 MHz; tDATA = 200 ns; tCNVH = 10 ns; tEN = 10 ns
Number_SCK_Edges = 75 MHz × (200 ns − 10 ns − 10 ns) = 13.5
Thirteen bits are read during conversion (n), and five bits are
read during acquisition (n).
For normal mode (1.5 MSPS),
fSCK = 50 MHz; tDATA = 300 ns; tCNVH = 10 ns; tEN = 10 ns
Number_SCK_Edges = 50 MHz × (300 ns − 10 ns − 10 ns) = 14
Fourteen bits are read during conversion (n), and four bits are
read during acquisition (n).
For slow throughputs, the time restriction is dictated by the
required throughput by the user, and the host is free to run at
any speed. Similar to the reading during acquisition, for slow
hosts, the data access must take place during the acquisition
phase with additional time into the conversion.
Note that data access spanning conversion requires the CNV to
be driven high to initiate a new conversion, and data access is
not allowed when CNV is high. Thus, the host must perform
two bursts of data access when using this method.
Reading During Acquisition, Any Speed Hosts (Turbo or
Normal Mode)
When reading during acquisition (n), conversion results are
for the previous (n − 1) conversion. Maximum throughput is
achievable in normal mode (1.5 MSPS); however, in turbo
mode, 2 MSPS throughput is not achievable.
For the maximum throughput, the only time restriction is that the
reading takes place during the tACQ (minimum) time. For slow
throughputs, the time restriction is dictated by throughput required
by the user, and the host is free to run at any speed. Thus for slow
hosts, data access must take place during the acquisition phase.



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