LTC2393-16
16
239316fa
APPLICATIONS INFORMATION
Parallel Modes
The parallel output data interface is active when the
SER/PAR pin is tied low and when both CS and RD are low.
The output data can be read as a 16-bit word as shown
in Figures 8, 9 and 10 or it can be read as two 8-bit bytes
by using the BYTESWAP pin. As shown in Figure 11, with
the BYTESWAP pin low, the first eight MSBs are output on
the D15 to D8 pins and the eight LSBs are output on the
D7 to DO pins. When BYTESWAP is taken high, the eight
LSBs now are output on the D15 to D8 pins and the eight
MSBs are output on the D7 to D0 pins.
Serial Modes
The serial output data interface is active when the
SER/PAR pin is tied high and when both CS and RD are low.
The serial output data will be clocked out on the SDOUT
pin when an external clock is applied to the SCLK pin.
Clocking out the data after the conversion will yield the
best performance. With a shift clock frequency of at least
40MHz, a 1Msps throughput is still achieved. The serial
output data changes state on the rising edge of SCLK and
can be captured on the falling edge of SCLK. D15 remains
valid till the first rising edge of shift clock after the first
falling edge of shift clock. The non-active digital outputs
are high impedance when operating in the serial mode.
If CS and RD are used to gate the serial output data, the
full conversion result should be read before CS and RD
are returned to a high level.
The SDIN input pin is used to daisy chain multiple con-
verters. This is useful for applications where hardware
constraints may limit the number of lines needed to
interface to a large number of converters. For example,
if two devices are cascaded, the MSB of the first device
will appear at the output after 17 SCLK cycles. The first
MSB is clocked in on the falling edge of the first SCLK.
See Figure 12.
Data Format
When OB/2C is high, the digital output is offset binary.
When low, the MSB is inverted resulting in two’s comple-
ment output. This pin is active in both the parallel and
serial modes of operation.
Reset
When the RESET pin is high, the LTC2393-16 is reset, and
if this occurs during a conversion, the conversion is halted
and the data bus is put into Hi-Z mode. In reset, requests
for new conversions are ignored. Once RESET returns
low, the LTC2393-16 is ready to start a new conversion
after the acquisition time has been met. See Figure 13.
Figure 8. Read the Parallel Data Continuously.
The Data Bus is Always Driven and Can’t Be Shared
CS = RD = 0
t
4
t
6
t
16
t
CONV
CNVST
BUSY
DATA BUS D[15:0]
PREVIOUS CONVERSION NEW
239316 F08
LTC2393-16
17
239316fa
APPLICATIONS INFORMATION
Figure 9. Read the Parallel Data After the Conversion
Figure 10. Read the Parallel Data During the Conversion
Figure 11. 8-Bit Parallel Interface Using the BYTESWAP Pin
RD
BUSY
DATA BUS D[15:0]
Hi-Z
CURRENT
CONVERSION
t
17
t
18
239316 F09
Hi-Z
CS
CS = 0
CNVST, RD
BUSY
DATA BUS D[15:0]
Hi-Z
t
6
t
17
t
18
t
4
t
CONV
PREVIOUS
CONVERSION
Hi-Z
239316 F09
CS, RD
BYTESWAP
D[15:8]
HIGH BYTE LOW BYTE
8-BIT INTERFACE
Hi-Z Hi-Z
239316 F11
t
17
t
17
t
18
LTC2393-16
18
239316fa
RD = 0
CS
BUSY
t
15
SCLK STARTS LOW
SCLK STARTS HIGH
t
9
t
10
t
13
123
D15
2
D15
1
D14
1
D13
1
D1
1
D0
1
239316 F12
D14
2
D13
2
D1
2
D0
2
D15
1
D14
1
415161718
t
8
SCLK
SDOUT
(ADC 2)
Hi-Z
SDIN
(ADC 2)
t
12
t
14
t
11
RD = 0
CS
BUSY
t
9
t
10
t
13
123
D15
2
D15
1
D14
1
D13
1
D1
1
D0
1
D14
2
D13
2
D1
2
D0
2
D15
1
D14
1
415161718
t
8
SCLK
SDOUT
(ADC 2)
Hi-Z
SDIN
(ADC 2)
t
12
t
14
t
11
LTC2393-16
ADC 1 ADC 2
SDOUT
CNVST IN
CS IN
RD IN
SCLK IN
CNVST
CS
RD
SCLK
SDIN
LTC2393-16
SDOUT DATA OUT
CNVST
CS
RD
SCLK
SDIN
APPLICATIONS INFORMATION
Figure 12. Serial Interface with External Clock. Read After the Conversion. Daisy Chain Multiple Converters
Figure 13. RESET Pin Timing
RESET
DATA BUS D[15:0]
Hi-Z
CVNST
t
7
t
ACQ
239316 F13

LTC2393IUK-16#PBF

Mfr. #:
Manufacturer:
Analog Devices Inc.
Description:
Analog to Digital Converters - ADC 5V 16-bit 1Msps Int Ref Parallel / Serial SAR ADC in QFN-48
Lifecycle:
New from this manufacturer.
Delivery:
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