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LTC2668 датащи(PDF) 32 Page - Linear Technology

номер детали LTC2668
подробное описание детали  Octal, 16-Bit, 200ksps Differential 짹10.24V Input SoftSpan ADC with Wide Input Common Mode Range
PDF  40 Pages
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производитель  LINER [Linear Technology]
домашняя страница  http://www.linear.com
Logo LINER - Linear Technology

LTC2668 датащи(HTML) 32 Page - Linear Technology

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LTC2348-16
32
234816fa
For more information www.linear.com/LTC2348-16
Just prior to the falling edge of BUSY and the opening of
a new data transaction window, SCKO is forced low and
SDO0 to SDO7 are updated with the latest conversion
results from analog input channels 0 to 7, respectively.
Rising edges on SCKI serially clock conversion results
and analog input channel configuration information out
on SDO0 to SDO7 and trigger transitions on SCKO that
are skew-matched to the data on SDO0 to SDO7. The
resulting SCKO frequency is half that of SCKI. SCKI
rising edges also latch SoftSpan configuration words
provided on SDI, which are used to program the internal
24-bit SoftSpan configuration register. See the section
Programming the SoftSpan Configuration Register in
CMOS I/O Mode for further details. SCKI is allowed to
idle either high or low in CMOS I/O mode. As shown in
Figure 18, the CMOS bus is enabled when CS is low and
is disabled and Hi-Z when CS is high, allowing the bus
to be shared across multiple devices.
The data on SDO0 to SDO7 are grouped into 24-bit
packets consisting of a 16-bit conversion result plus
2-bit trailing zero pad, 3-bit analog channel ID, and 3-bit
SoftSpan code, all presented MSB first. As suggested in
Figures 17 and 18, each SDO lane outputs these packets
for all analog input channels in a sequential, circular
manner. For example, the first 24-bit packet output on
SDO0 corresponds to analog input channel 0, followed
by the packets for channels 1 through 7. The data output
on SDO0 then wraps back to channel 0, and this pattern
repeats indefinitely. Other SDO lanes follow a similar cir-
cular pattern, except the first packet presented on each
lane corresponds to its associated analog input channel.
When interfacing the LTC2348-16 with a standard SPI
bus, capture output data at the receiver on rising edges of
SCKI. SCKO is not used in this case. Multiple SDO lanes
are also usually not useful in this case. In other applica-
tions, such as interfacing the LTC2348-16 with an FPGA
or CPLD, rising and falling edges of SCKO may be used
to capture serial output data on SDO0 to SDO7 in double
data rate (DDR) fashion. Capturing data using SCKO adds
robustnesstodelayvariationsovertemperatureandsupply.
Full Eight Lane Serial CMOS Output Data Capture
As shown in Table 3, full 200ksps per channel throughput
canbeachievedwitha45MHzSCKIfrequencybycapturing
the first packet (24 SCKI cycles total) from all eight serial
data output lanes SDO0 to SDO7. This configuration also
allows conversion results from all channels to be captured
using as few as 16 SCKI cycles if the 3-bit analog channel
ID and 3-bit SoftSpan code are not needed and the device
SoftSpan configuration is not being changed. Multi-lane
data capture is usually best suited for use with FPGA
or CPLD capture hardware, but may be useful in other
application-specific cases.
applicaTions inForMaTion
CS
PD = 0
DON’T CARE
BUSY
SDO7
SCKO
SDO0
SCKI
SDI
DON’T CARE
DON’T CARE
DON’T CARE
234816 F18
Hi-Z
Hi-Z
CHANNEL 0 PACKET
CHANNEL 1 PACKET
CHANNEL 2 PACKET
CHANNEL 3 PACKET
(PARTIAL)
Hi-Z
Hi-Z
Hi-Z
Hi-Z
CHANNEL 7 PACKET
CHANNEL 0 PACKET
CHANNEL 1 PACKET
CHANNEL 2 PACKET
(PARTIAL)
NEW SoftSpan CONFIGURATION WORD
(OVERWRITES INTERNAL CONFIG REGISTER)
TWO ALL-ZERO WORDS AND ONE PARTIAL WORD
(INTERNAL CONFIG REGISTER RETAINS CURRENT VALUE)
tEN
tDIS
Figure 18. Internal SoftSpan Configuration Register Behavior. Serial CMOS Bus Response to CS



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