AD632AD Analog Devices Inc, AD632AD Datasheet - Page 2

IC MULTIPLIER MONO PREC 14-CDIP

AD632AD

Manufacturer Part Number
AD632AD
Description
IC MULTIPLIER MONO PREC 14-CDIP
Manufacturer
Analog Devices Inc
Datasheet

Specifications of AD632AD

Package / Case
14-CDIP (0.300", 7.62mm)
Rohs Status
RoHS non-compliant
Function
Analog Multiplier/Divider
Number Of Bits/stages
4-Quadrant
No. Of Pins
14
Peak Reflow Compatible (260 C)
No
Ic Function
Analog Multiplier IC
Leaded Process Compatible
No
No. Of Channels
6
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

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Company
Part Number
Manufacturer
Quantity
Price
Part Number:
AD632AD
Manufacturer:
AD
Quantity:
5 510
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Manufacturer:
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Quantity:
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Part Number:
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Manufacturer:
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Quantity:
135
AD632–SPECIFICATIONS
Model
MULTIPLIER PERFORMANCE
DYNAMICS
NOISE
OUTPUT
INPUT AMPLIFIERS (X, Y and Z)
DIVIDER PERFORMANCE
SQUARER PERFORMANCE
S
QUARE-ROOTER PERFORMANCE
Transfer Function
Total Error
T
Total Error vs. Temperature
Scale Factor Error
Temperature-Coefficient of
Supply Rejection ( 15 V
Nonlinearity, X (X = 20 V p-p, Y = 10 V)
Feedthrough
Output Offset Voltage
Output Offset Voltage Drift
Small Signal BW, (V
1% Amplitude Error (C
Slew Rate (V
Settling Time (to 1%, V
Noise Spectral-Density SF = 10 V
Wideband Noise A = 10 Hz to 5 MHz
Output Voltage Swing
Output Impedance (f
Output Short Circuit Current
Amplifier Open Loop Gain (f = 50 Hz)
Signal Voltage Range (Diff. or CM
Offset Voltage X, Y
Offset Voltage Drift X, Y
Offset Voltage Z
Offset Voltage Drift Z
CMRR
Bias Current
Offset Current
Differential Resistance
Transfer Function (X
Total Error
Transfer Function
Total Error (–10 V
Transfer Function, (Z
Total Error
Nonlinearity, Y (Y = 20 V p-p, X = 10 V)
Feedthrough
A
(SF = 10.000 V Nominal)
Scaling-Voltage
X = 20 V p-p 50 Hz)
Y = 20 V p-p 50 Hz)
(R
Operating Diff.)
(X = 10 V, –10 V
(X = 1 V, –1 V
(0.1 V
= Min to Max
L
= 0, T
X
1
1
1
(–10 V
3
3
(1 V
OUT
A
, X (Y Nulled,
, Y (X Nulled,
= Min to Max)
10 V, –10 V
20 p-p)
P = 10 Hz to 10 kHz
Z
Z
OUT
X
1
X, Y
Z
1
> X
LOAD
SF = 3 V
1 kHz)
10 V)
+1 V)
= 0.1 rms)
OUT
10 V)
Z
+10 V)
2
1 V)
2
)
)
2
= 1000 pF)
+10 V)
= 20 V)
Z
4
5
10 V)
Min Typ
60
( X
11
10V
1
10V ( Z
( X
AD632A
X
10V
1
( X
10V
2
( Z
200
1
50
20
2
0.4
1.0
90
0.1
30
70
100
200
80
0.8
0.1
10
0.8
)(Y
2
(@ +25 C, V
0.022
0.25
0.02
0.01
0.4
0.2
0.3
0.01
5
10
12
5
5
0.75
2.0
2.5
0.6
1.0
1
X
1.5
2
1
2
Z
)
X
Z
2
1
Y
1
2
) X
)
)
2
Max
2.0
Z
)
2
1.0
30
20
30
Y
2
Z
1
2
S
Min Typ
70
= 15 V, R 2 k
( X
–2–
11
10V
10V ( Z
1
( X
AD632B
X
10V
1
10V
( X
( Z
2
50
100
1
50
20
2
0.8
0.4
1 .0
90
0.1
30
70
100
90
0.8
0. I
10
)(Y
2
0.015
0.1
0.01
0.2
0.1
0.15 0.3
0.01 0.1
2
10
12
2
2
0.35
1.0
1.0
0.3
0.5
1
X
1.0
0.01
2
1
2
Z
)
X
Z
2
1
Y
1
) X
2
)
)
Max
2
2.0
Z
)
15
0.3
0.1
0.5
2
10
15
Y
2
Z
1
2
unless otherwise noted)
Min Typ
60
( X
11
10V
10V ( Z
1
( X
AD632S
X
10V
1
( X
10V
2
( Z
1
2
0.4
1.0
90
100
80
0.8
1 0
50
20
0.8
0.1
30
70
0.1
)(Y
2
0.25
0.2
0.01
0.4
0.2
0.3
0.01
5
10
12
5
5
0.75
2.0
2.5
X
0.6
1.0
2
1
1
2
Z
)
X
Z
2
1
Y
1
2
) X
)
)
Max
2
500
500
2.0
Z
)
1.0
2.0
0.02
30
20
30
2
Y
2
Z
1
2
Min Typ
70
( X
11
10V
10V ( Z
1
( X
X
AD632T
10V
1
10V
( X
2
( Z
1
50
20
2
0.8
0.4
1.0
90
0.1
30
70
150
90
0.8
0.1
10
)(Y
2
0.1
0.01
0.2
0.1
0.15 0.3
0.01 0.1
2
10
12
2
2
0.35
1.0
1.0
0.3
0.5
1
X
2
1
2
Z
)
X
Z
2
1
Y
1
2
) X
)
)
2
300
Max
300
2.0
Z
)
0.3
0.1
15
2
0.5
1.0
0.01
0.005
10
15
Y
2
Z
1
2
Units
%
%
%/ C
%
%/ C
%
%
%
%
%
mV
MHz
kHz
V/ s
mV rms
V
mA
dB
V
V
mV
mV
dB
M
%
%
%
%
%
REV. A
V/ C
s
V/ Hz
V/ Hz
V/rms
V/ C
V/ C
A
A

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