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AM400 Datasheet(PDF) 11 Page - Analog Devices

Part # AM400
Description  UNIVERSAL AMPLIFIER IC
PDF  21 Pages
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Manufacturer  AD [Analog Devices]
Direct Link  http://www.analog.com
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AM400 Datasheet(HTML) 11 Page - Analog Devices

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UNIVERSAL AMPLIFIER IC
AM400
analog microelectronics
October 2005
Analog Microelectronics GmbH
Phone:
+49 (0)6131/91 073 – 0
11/21
An der Fahrt 13, D – 55124 Mainz
Fax:
+49 (0)6131/91 073 – 30
Rev.: 4.2
Internet: http://www.analogmicro.de
Email:
info@analogmicro.de
Setting the voltage gain using the voltage output
When using the IA and amplifier stages OP1 and OP2 for further signal conditioning the overall
gain can be set using the suitably selected external resistors R1 and R2. The transfer function for the
output voltage is calculated by multiplying Equations 1, 2 and 3 to:
()
OP
GAIN
ZA
IN
IA
OUT
G
G
V
V
G
V
⋅
⋅
+
=
(7)
with GIA = 5, GGAIN = (R1 /R2) + 1 and GOP = 2.2 and the externally set voltage VZA at pin ZA.
Setting the output current range and compensating for the offset using the current output
When using the IA together with amplifier stage OP1 and the V/I converter for further signal
conditioning the offset of the output current should first be compensated for. To this end the two IA
inputs must be short-circuited (VIN = 0) and connected up to a permitted potential (cf. CMIR in the
electrical specifications on page 5). With the short circuit at the input the values of the output
current according to Equation 4 and an external voltage divider (e.g. Figure 5) are as follows:
()
SET
IN
OUT
I
V
I
=
= 0
with
4
3
4
0
2
R
R
R
R
V
I
REF
SET
+
⋅
=
(8)
The output current range is set in conjunction with the selected external resistors R1 and R2 (or fine
adjustment with R0 ). Using Equations 2, 4 and 8 the following is calculated for output current IOUT :
SET
I
IN
OUT
I
R
G
V
I
+
=
0
8
with
GAIN
IA
I
G
G
G
⋅
=
and
0
=
ZA
V
(9)
Selecting the supply voltage
System supply voltage VS needed to operate AM400 is dependent on the selected mode of
operation.
• When using voltage output pin VOUT the minimum supply voltage VS necessary for the
operation of the device depends on the maximum output voltage VOUTmax required by the
application. The following applies:
V
5
max +
≥
OUT
S
V
V
(10)
• When using current output pin IOUT (in conjunction with the external transistor) the value of VS
is dependent on that of the relevant load resistor RL (max. 600Ω) used by the application. The
minimum system supply voltage VS is then:
min
max
CC
L
OUT
S
V
R
I
V
+
≥
(11)



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