MAX1400 Maxim, MAX1400 Datasheet - Page 32

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MAX1400

Manufacturer Part Number
MAX1400
Description
%V / 18-Bit / Low-Power / Multichannel / Oversampling Sigma-Delta ADC
Manufacturer
Maxim
Datasheet

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+5V, 18-Bit, Low-Power, Multichannel,
Oversampling (Sigma-Delta) ADC
Figure 17. Thermocouple Application with MAX1400
Figure 18. 4–20mA Transmitter
32
THERMOCOUPLE
JUNCTION
______________________________________________________________________________________
SENSOR
+5V
+2.5V
R
R
C
GND
V+
SPI
4
ISOLATION
C
BARRIER
AIN1
AIN2
REFIN+
REFIN-
AGND
SWITCHING
NETWORK
SPI
4
P/ C
MAX1400
DGND
BUFFER
SPI
3
GND
DAC
V+
PGA
R
GAIN
Low power, single-supply operation, and easy interfac-
ing with optocouplers make the MAX1400 ideal for
loop-powered 4–20mA transmitters. Loop-powered
transmitters draw their power from the 4–20mA loop,
limiting the transmitter circuitry to a current budget of
4mA. Tolerances in the loop further limit this current
budget to 3.5mA. Since the MAX1400 consumes only
250µA, a total of 3.25mA remains to power the remain-
ing transmitter circuitry. Figure 18 shows a block dia-
gram for a loop-powered 4–20mA transmitter.
No specific power sequence is required for the
MAX1400; either the V+ or the V
up first. While the latchup performance of the MAX1400
is good, it is important that power be applied to the
MAX1400 before the analog input signals (AIN_) or the
CLKIN inputs, to avoid latchup. If this is not possible,
then the current flow into any of these pins should be
limited to 50mA. If separate supplies are used for the
MAX1400 and the system digital circuitry, then the
MAX1400 should be powered up first.
R
R
OFST
FDBK
C
C
4–20mA Loop-Powered Transmitters
REGULATOR
VOLTAGE
R
Y
R
R
X
SENSE
DD
4–20mA LOOP
INTERFACE
Power Supplies
supply can come
V
V
IN+
IN-

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