AD7899ARZ-1 Analog Devices Inc, AD7899ARZ-1 Datasheet - Page 9

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AD7899ARZ-1

Manufacturer Part Number
AD7899ARZ-1
Description
14-BIT BIPOLAR INPUT SINGLE SUPPLY ADC
Manufacturer
Analog Devices Inc
Datasheet

Specifications of AD7899ARZ-1

Rohs Compliant
YES
Number Of Bits
14
Sampling Rate (per Second)
400k
Data Interface
Parallel
Number Of Converters
1
Power Dissipation (max)
125mW
Voltage Supply Source
Single Supply
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
28-SOIC (0.300", 7.50mm Width)
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With
EVAL-AD7899CBZ - BOARD EVAL FOR AD7899
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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For the AD7899-1, R1 = 4 kΩ, R2 = 16 kΩ, R3 = 16 kΩ and
R4 = 8 kΩ. The resistor input stage is followed by the high
input impedance stage of the track/hold amplifier.
The designed code transitions take place midway between suc-
cessive integer LSB values (i.e., 1/2 LSB, 3/2 LSBs, 5/2 LSBs
etc.) LSB size is given by the formula, 1 LSB = FSR/16384. For
the ±5 V range, 1 LSB = 10 V/16384 = 610.4 µV. For the ±10 V
range, 1 LSB = 20 V/16384 = 1.22 mV. Output coding is
two’s complement binary with 1 LSB = FSR/16384. The ideal
input/output transfer function for the AD7899-1 is shown in
Table I.
Analog Input
+FSR/2 – 3/2 LSB
+FSR/2 – 5/2 LSB
+FSR/2 – 7/2 LSB
GND + 3/2 LSB
GND + 1/2 LSB
GND – 1/2 LSB
GND – 3/2 LSB
–FSR/2 + 5/2 LSB
–FSR/2 + 3/2 LSB
–FSR/2 + 1/2 LSB
NOTES
1
2
FSR is full-scale range and is 20 V for the ±10 V range and 10 V for the ±5 V
1 LSB = FSR/16384 = 1.22 mV (±10 V – AD7899-1) and 610.4 µV (±5 V –
range, with V
AD7899-1) with V
Table I. Ideal Input/Output Code Table for the AD7899-1
V
V
V
REF
INB
INA
REF
6k
1
= 2.5 V.
REF
= 2.5 V.
2
R2
R3
REFERENCE
R1
R4
2.5V
GND
Digital Output
Code Transition
011 . . . 110 to 011 . . . 111
011 . . . 101 to 011 . . . 110
011 . . . 100 to 011 . . . 101
000 . . . 001 to 000 . . . 010
000 . . . 000 to 000 . . . 001
111 . . . 111 to 000 . . . 000
111 . . . 110 to 111 . . . 111
100 . . . 010 to 100 . . . 011
100 . . . 001 to 100 . . . 010
100 . . . 000 to 100 . . . 001
TRACK/HOLD
TO ADC
REFERENCE
CIRCUITRY
AD7899-1
TO INTERNAL
COMPARATOR
AD7899-2
Figure 3 shows the analog input section of the AD7899-2. Each
input can be configured for 0 V to 5 V operation or 0 V to 2.5 V
operation. For 0 V to 5 V operation, the V
GND and the input voltage is applied to the V
0 V to 2.5 V operation, the V
and the input voltage is applied to both. The V
inputs are symmetrical and fully interchangeable.
For the AD7899-2, R1 = 4 kΩ and R2 = 4 kΩ. Once again, the
designed code transitions occur on successive integer LSB values.
Output coding is straight (natural) binary with 1 LSB = FSR/
16384 = 2.5 V/16384 = 0.153 mV, and 5 V/16384 = 0.305 mV,
for the 0 to 2.5 V and the 0 to 5 V options respectively. Table
II shows the ideal input and output transfer function for the
AD7899-2.
Analog Input
+FSR – 3/2 LSB
+FSR – 5/2 LSB
+FSR – 7/2 LSB
GND + 5/2 LSB
GND + 3/2 LSB
GND + 1/2 LSB
NOTES
1
2
FSR is Full-Scale Range and is 0 to 2.5 V and 0 to 5 V for AD7899-2 with V
= 2.5 V.
1 LSB = FSR/16384 and is 0.153 mV (0 to 2.5 V) and 0.305 mV (0 to 5 V) for
AD7899-2 with V
Table II. Ideal Input/Output Code Table for the AD7899-2
V
V
V
REF
INB
INA
6k
1
REF
2
= 2.5 V.
R1
R2
REFERENCE
INA
2.5V
and V
Digital Output
Code Transition
111 . . . 110 to 111 . . . 111
111 . . . 101 to 111 . . . 110
111 . . . 100 to 111 . . . 101
000 . . . 010 to 000 . . . 011
000 . . . 001 to 000 . . . 010
000 . . . 000 to 000 . . . 001
TRACK/HOLD
TO ADC
REFERENCE
CIRCUITRY
INB
inputs are tied together
INB
AD7899-2
TO INTERNAL
COMPARATOR
INA
AD7899
input is tied to
INA
and V
input. For
INB
REF

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