LTC2415-1CGN Linear Technology, LTC2415-1CGN Datasheet - Page 22

IC ADC 24BIT DIFFINPUT/REF16SSOP

LTC2415-1CGN

Manufacturer Part Number
LTC2415-1CGN
Description
IC ADC 24BIT DIFFINPUT/REF16SSOP
Manufacturer
Linear Technology
Datasheet

Specifications of LTC2415-1CGN

Number Of Bits
24
Sampling Rate (per Second)
13.75
Data Interface
MICROWIRE™, Serial, SPI™
Number Of Converters
2
Power Dissipation (max)
1mW
Voltage Supply Source
Single Supply
Operating Temperature
0°C ~ 70°C
Mounting Type
Surface Mount
Package / Case
16-SSOP (0.150", 3.90mm Width)
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

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APPLICATIO S I FOR ATIO
LTC2415/LTC2415-1
by an external oscillator of (LTC2415-1) frequency f
then t
t
sion result is held in the internal static shift register.
If CS remains LOW longer than t
edge of SCK will occur and the conversion result is serially
shifted out of the SDO pin. The data output cycle begins on
this first rising edge of SCK and concludes after the 32nd
rising edge. Data is shifted out the SDO pin on each falling
edge of SCK. The internally generated serial clock is output
to the SCK pin. This signal may be used to shift the
conversion result into external circuitry. EOC can be
latched on the first rising edge of SCK and the last bit of the
conversion result on the 32nd rising edge of SCK. After the
32nd rising edge, SDO goes HIGH (EOC = 1), SCK stays
HIGH and a new conversion starts.
Typically, CS remains LOW during the data output state.
However, the data output state may be aborted by pulling
CS HIGH anytime between the first and 32nd rising edge
of SCK, see Figure 12. On the rising edge of CS, the device
aborts the data output state and immediately initiates a
22
EOCtest
(INTERNAL)
EOCtest
, the device remains in the sleep state. The conver-
SDO
SCK
CS
Hi-Z
is 3.6/f
SLEEP
> t
EOCtest
BIT 0
EOC
U
EOSC
. If CS is pulled HIGH before time
CONVERSION
Hi-Z
U
DATA OUTPUT
TEST EOC
Figure 12. Internal Serial Clock, Reduced Data Output Length
Hi-Z
EOCtest
W
TEST EOC
SLEEP
ANALOG INPUT RANGE
, the first rising
Hi-Z
–0.5V
<t
EOCtest
REF
1, 7, 8, 9, 10, 15, 16
BIT 31
0.1V TO V
REFERENCE
U
EOC
TO 0.5V
VOLTAGE
1 F
2.7V TO 5.5V
EOSC
REF
CC
BIT 30
,
2
3
4
5
6
V
REF
REF
IN
IN
GND
CC
LTC2415-1
+
LTC2415/
new conversion. This is useful for systems not requiring
all 32 bits of output data, aborting an invalid conversion
cycle, or synchronizing the start of a conversion. If CS is
pulled HIGH while the converter is driving SCK LOW, the
internal pull-up is not available to restore SCK to a logic
HIGH state. This will cause the device to exit the internal
serial clock mode on the next falling edge of CS. This can
be avoided by adding an external 10k pull-up resistor to
the SCK pin or by never pulling CS HIGH when SCK is LOW.
Whenever SCK is LOW, the LTC2415/LTC2415-1 internal
pull-up at pin SCK is disabled. Normally, SCK is not
externally driven if the device is in the internal SCK timing
mode. However, certain applications may require an exter-
nal driver on SCK. If this driver goes Hi-Z after outputting
a LOW signal, the LTC2415/LTC2415-1 internal pull-up
remains disabled. Hence, SCK remains LOW. On the next
falling edge of CS, the device is switched to the external
SCK timing mode. By adding an external 10k pull-up
resistor to SCK, this pin goes HIGH once the external driver
goes Hi-Z. On the next CS falling edge, the device will
remain in the internal SCK timing mode.
+
BIT 29
SIG
SDO
SCK
CS
F
O
14
13
12
11
DATA OUTPUT
BIT 28
MSB
3-WIRE
SPI INTERFACE
V
BIT 27
CC
= 50Hz REJECTION (LTC2415)
= EXTERNAL OSCILLATOR
= 60Hz REJECTION (LTC2415)
= 50Hz/60Hz REJECTION (LTC2415-1)
BIT 26
BIT 8
V
CONVERSION
CC
Hi-Z
10k
TEST EOC
sn2415 24151fs
2415 F12

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