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LTC2335-16 Datenblatt(PDF) 37 Page - Linear Technology

Teilenummer LTC2335-16
Bauteilbeschribung  16-Bit, 1Msps 8-Channel Differential 짹10.24V Input SoftSpan ADC with Wide Input Common Mode Range
PDF  40 Pages
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Hersteller  LINER [Linear Technology]
Direct Link  http://www.linear.com
Logo LINER - Linear Technology

LTC2335-16 Datenblatt(HTML) 37 Page - Linear Technology

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LTC2335-16
37
233516f
For more information www.linear.com/LTC2335-16
applicaTions inForMaTion
ThedataonSDOareformattedasa24-bitpacketconsisting
of a 16-bit conversion result followed by two zeros, 3-bit
analog channel ID, and 3-bit SoftSpan code, all presented
MSB first. As suggested in Figures 19 and 20, if more than
24 SCKI clocks are applied, the 24-bit packet is repeated
indefinitely on SDO.
The LTC2335-16 guarantees a minimum data transfer
window(tACQ–tQUIET)of400nswhileconvertingat1Msps.
Thus, if an application needs to read the full 24-bit packet
of conversion result plus channel ID and SoftSpan, the
minimum usable SCKI frequency is 30MHz (60Mbps). Ap-
plications needing to read only the conversion result may
send only 16 SCKI edges and thus have a minimum SCKI
frequencyof20MHz(40Mbps).TheLTC2335-16supports
LVDS SCKI frequencies up to 250MHz (500Mbps).
Configuring the Multiplexer and SoftSpan Range in
LVDS I/O Mode
On power-up and after a reset, the LTC2335-16 defaults
to converting channels 0 through 7 sequentially, all in
SoftSpan 7. If this configuration does not need to be
changed, simply hold SDI at an LVDS low level.
The LTC2335-16 multiplexer and SoftSpan range may be
controlled in two ways, depending on the needs of the ap-
plication.IfthedesiredsequenceofchannelsandSoftSpan
rangesareknownaheadoftime,theLTC2335-16’sinternal
sequencer may be programmed with a sequence of up to
16 configurations, and will cycle through those configu-
rations on subsequent conversions without further user
intervention.Alternatelyifultimateflexibilityisdesired,the
LTC2335-16 may be directly controlled by overwriting the
sequencereachconversionwiththechannelandSoftSpan
range for the following conversion. This reconfiguration
has no latency and requires no additional settling time or
digital I/O overhead.
Using the Sequencer
To use the internal sequencer of the LTC2335-16, first
program it as described below with the desired sequence
of up to 16 configurations. Each of these configurations
specifies the desired channel number and SoftSpan range
for one conversion. The LTC2335-16 will then apply the
first configuration to the first conversion, the second
configuration to the second conversion, and so on until
the end of the programmed sequence is reached, at which
point the cycle will start again from the beginning.
Eachdatatransactionwindowisanopportunitytoprogram
thesequencerbyclockinginaseriesof8-bitcontrolwords
on SDI, each specifying a channel number and SoftSpan
range, as shown in Figures 19 and 20. To program the
sequencer with a series of up to 16 conversion configu-
rations, write in the corresponding control words in the
desired conversion order during a single data transaction.
Words beyond the 16th valid word will be ignored.
The control word format is as follows:
C[7]
C[6]
C[5]
C[4]
C[3]
C[2]
C[1]
C[0]
V
0
CH[2] CH[1] CH[0] SS[2] SS[1] SS[0]
The V bit (C[7]) controls whether the LTC2335-16 should
consider this a valid word. Any words which have V =
0 are considered invalid and are ignored (though valid
words will still be accepted after an invalid word). Words
which have V = 1 will be added to the sequencer in the
order provided. The C[6] bit is reserved for future use and
should be set to 0. The CH[2:0] (C[5:3]) bits are a binary
value 0 to 7 controlling the channel to be converted. The
SS[2:0] (C[2:0]) bits specify the desired SoftSpan range
for the conversion, as described in Table 1.
Sequencer programming is completed when the next
conversion is started. At this time, any incomplete words
are considered invalid and discarded. If one or more
valid words were provided, the sequencer is completely
overwritten with the new sequence, and the just-initiated
conversion employs the first provided configuration.
If no valid words were provided during the data transac-
tion window, the sequencer program is unchanged, and
the pointer advances to the next entry in the previously
programmed cycle to configure the next conversion.



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