Data Sheet AD8253
Rev. B | Page 21 of 24
APPLICATIONS INFORMATION
DIFFERENTIAL OUTPUT
In certain applications, it is necessary to create a differential
signal. High resolution analog-to-digital converters often require a
differential input. In other cases, transmission over a long distance
can require differential signals for better immunity to interference.
Figure 61 shows how to configure the AD8253 to output a
differential signal. An op amp, the AD8675, is used in an
inverting topology to create a differential voltage. V
REF
sets the
output midpoint according to the equation shown in the figure.
Errors from the op amp are common to both outputs and are
thus common mode. Likewise, errors from using mismatched
resistors cause a common-mode dc offset error. Such errors are
rejected in differential signal processing by differential input
ADCs or instrumentation amplifiers.
When using this circuit to drive a differential ADC, V
REF
can be
set using a resistor divider from the ADC reference to make the
output ratiometric with the ADC.
SETTING GAINS WITH A MICROCONTROLLER
+15
V
MICRO-
CONTROLLER
–15V
A0
A1
WR
+IN
IN
10F0.1µF
10F0.1µF
REF
AD8253
+
DGNDDGND
06983-059
Figure 60. Programming Gain Using a Microcontroller
+15
V
–15V
A0
A1
WR
+IN
10F
0.1F
10F
0.1F
AD8253
REF
G = 1
0.1µF
4.99k
4.99k
AD8675
0.1µF
+15V
–15V
V
REF
0V
V
OUT
A = V
IN
+ V
REF
2
2
V
OUT
B = –V
IN
+ V
REF
+2.5V
–2.5V
0V
+2.5V
–2.5V
0V
TIME
AMPLITUDE
0V
TIME
AMPLITUDE
+5
V
–5V
AMPLITUDE
56pF
+15V
–15V
V
IN
+
+
DGND
DGND
06983-060
Figure 61. Differential Output with Level Shift
AD8253 Data Sheet
Rev. B | Page 22 of 24
DATA ACQUISITION
The AD8253 makes an excellent instrumentation amplifier
for use in data acquisition systems. Its wide bandwidth, low
distortion, low settling time, and low noise enable it to
condition signals in front of a variety of 16-bit ADCs.
Figure 63 shows the AD825x as part of a total data acquisition
system. The quick slew rate of the AD8253 allows it to condition
rapidly changing signals from the multiplexed inputs. An FPGA
controls the AD7612, AD8253, and ADG1209. In addition,
mechanical switches and jumpers allow users to pin strap the
gains when in transparent gain mode.
This system achieved −116 dB of THD at 1 kHz and a signal-to-
noise ratio of 91 dB during testing, as shown in Figure 62.
–70
–80
–90
–100
–110
–120
–130
–140
–150
–160
–170
–60
–10
–20
–30
–40
–50
0
050
06983-062
FREQUENCY (kHz)
AMPLITUDE (dB)
5 1015202530354045
Figure 62. FFT of the AD825x in a Total Data Acquisition System
Using the AD8253 1 kHz Signal
AD8253
2
+IN
–IN
A1
A0
VOUT
REF
–V
S
+V
S
DGND
5
3
4
9
1
7
10
11
12
13
14
15
16
6
2
S1A
EN
DA
DB
GND
S2A
S3A
S4A
S1B
S2B
S3B
S4B
A0
A1
V
SS
V
DD
JMP
JMP
JMP
+12V –12V
+12V
–12V
JMP
JMP
–V
S
+5V
+5V
DGND
806
806
806
806
806
806
806
806
0
0 49.9
0
–CH1
+CH1
+CH2
–CH2
+CH3
–CH3
+CH4
–CH4
1nF
2k
2k
0.1µF
GND
+12V
–12V
+
+
10µF 10µF
0.1µF
C
D
C
C
C
C
C3
0.1µF
C4
0.1µF
+5V
+5V
DGND
DGND
R8
2k
+IN
AD7612
ADR435
ADG1209
DGND
ALTERA
EPF6010ATC144-3
8
0
0
1
10
6
WR
9
4
5
8
3
7
+
DGND
2k
DGND
06983-067
Figure 63. Schematic of ADG1209, AD8253, and AD7612 Used with the AD825x in a Total Data Acquisition System
Data Sheet AD8253
Rev. B | Page 23 of 24
OUTLINE DIMENSIONS
COMPLIANT TO JEDEC STANDARDS MO-187-BA
091709-A
0.70
0.55
0.40
5
10
1
6
0.50 BSC
0.30
0.15
1.10 MAX
3.10
3.00
2.90
COPLANARITY
0.10
0.23
0.13
3.10
3.00
2.90
5.15
4.90
4.65
PIN 1
IDENTIFIER
15° MAX
0.95
0.85
0.75
0.15
0.05
Figure 64. 10-Lead Mini Small Outline Package [MSOP]
(RM-10)
Dimensions shown in millimeters
ORDERING GUIDE
Model
1
Temperature Range Package Description Package Option Branding
AD8253ARMZ –40°C to +85°C 10-Lead MSOP RM-10 Y0K
AD8253ARMZ-RL –40°C to +85°C 10-Lead MSOP RM-10 Y0K
AD8253ARMZ-R7 –40°C to +85°C 10-Lead MSOP RM-10 Y0K
AD8253-EVALZ Evaluation Board
1
Z = RoHS Compliant Part.

AD8253ARMZ

Mfr. #:
Manufacturer:
Analog Devices Inc.
Description:
Instrumentation Amplifiers Programmable Gain Hi Speed IC
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
T/T Paypal Visa MoneyGram Western Union

Products related to this Datasheet