AD532SD Analog Devices Inc, AD532SD Datasheet - Page 2

Multiplexer IC

AD532SD

Manufacturer Part Number
AD532SD
Description
Multiplexer IC
Manufacturer
Analog Devices Inc
Datasheets

Specifications of AD532SD

Ic Function
Analog Multiplier/Divider IC
Package/case
14-CDIP
Accuracy
1 %
Leaded Process Compatible
No
Number Of Channels
4
Output Voltage
13V
Peak Reflow Compatible (260 C)
No
Supply Voltage Max
18V
Rohs Status
RoHS non-compliant
Function
Analog Multiplier/Divider
Number Of Bits/stages
4-Quadrant
Package / Case
14-CDIP (0.300", 7.62mm)
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
AD532SD
Manufacturer:
ADI
Quantity:
558
Part Number:
AD532SD/883B
Manufacturer:
ADI
Quantity:
676
Part Number:
AD532SD/883B
Manufacturer:
MAX
Quantity:
80
Part Number:
AD532SDZ/883B
Quantity:
6 218
AD532–SPECIFICATIONS
Model
MULTIPLIER PERFORMANCE
DYNAMICS
NOISE
OUTPUT
INPUT AMPLIFIERS (X, Y and Z)
DIVIDER PERFORMANCE
SQUARE PERFORMANCE
SQUARE ROOTER PERFORMANCE
POWER SUPPLY SPECIFICATIONS
PACKAGE OPTIONS
Specifications subject to change without notice.
Specifications shown in boldface are tested on all production units at final
electrical test. Results from those tests are used to calculate outgoing quality
levels. All min and max specifications are guaranteed, although only those shown
in boldface are tested on all production units.
Transfer Function
Total Error (–10 V X, Y
T
Total Error vs. Temperature
Supply Rejection ( 15 V
Nonlinearity, X (X = 20 V pk-pk, Y = 10 V)
Nonlinearity, Y (Y = 20 V pk-pk, X = 10 V)
Feedthrough, X (Y Nulled,
Feedthrough, Y (X Nulled,
Feedthrough vs. Temperature
Feedthrough vs. Power Supply
Small Signal BW (V
1% Amplitude Error
Slew Rate (V
Settling Time (to 2%, V
Wideband Noise f = 5 Hz to 10 kHz
Wideband Noise
Output Voltage Swing
Output Impedance (f
Output Offset Voltage
Output Offset Voltage vs. Temperature
Output Offset Voltage vs. Supply
Signal Voltage Range (Diff. or CM
CMRR
Input Bias Current
Offset Current
Differential Resistance
Transfer Function (X
Total Error
Transfer Function
Total Error
Transfer Function
Total Error (0 V V
Supply Voltage
Supply Current
TO-116 (D-14)
TO-100 (H-10A)
LCC (E-20A)
A
Operating Diff)
X, Y Inputs
X, Y Inputs T
Z Input
Z Input T
X = 20 V pk-pk 50 Hz)
Y = 20 V pk-pk 50 Hz)
(V
(V
Rated Performance
Operating
Quiescent
= Min to Max
X
X
= –10 V, –10 V
= –1 V, –10 V
MIN
OUT
MIN
to T
f = 5 Hz to 5 MHz
20 pk-pk)
OUT
to T
Z
MAX
l
> X
V
10 V)
= 0.1 rms)
1 kHz)
MAX
V
Z
OUT
Z
2
)
10%)
+10 V)
+10 V)
= 20 V)
+10 V)
Min
40
AD532JD
AD532JH
(X
10
10
(X
10 V
1
10 V Z/(X
– X
1
– X
AD532J
2
(@ +25 C, V
)
10 V
Typ
50
30
2.0
1
75
45
1
0.6
3.0
1
0.7
3
10
10
2
– 10 V Z
4
2
1.5
2.5
0.04
0.05
0.8
0.3
0.25
13
40
2.5
10
10
30
0.3
2
4
0.8
1.5
15
)(Y
1
– X
1
– Y
2
)
2
Max
200
6
150
)
S
2.0
18
=
–2–
15 V, R 2 k
Min
50
AD532KD
AD532KH
Thermal Characteristics
H-10A:
E-20A:
D-14:
(X
10
10
10 V Z/(X
(X
10 V
1
– X
1
AD532K
– X
2
)
JC
10 V
Typ
30
25
1.0
1
75
45
1
0.6
3.0
1
0.7
1.5
8
10
2
– 10 V Z
4
2
JC
JC
0.7
1.5
0.03
0.05
0.5
0.2
0.25
13
2.5
10
5
25
0.1
1
3
0.4
1.0
15
)(Y
= 22 C/W;
1
= 22 C/W;
= 25 C/W;
– X
1
V
– Y
OS
2
)
2
grounded)
Max
100
80
4
6
)
1.0
30
15
18
JA
JA
JA
Min
50
AD532SD
AD532SH
AD532SE/883B
= 85 C/W
(X
10
10
= 85 C/W
= 150 C/W
10 V
(X
1
10 V Z/(X
– X
1
AD532S
– X
2
)
10 V
Typ
30
25
1.0
1
75
45
1
0.6
3.0
1
1.5
8
10
2
– 10 V Z
4
2
0.5
0.01
0.05
0.5
0.2
0.25
13
2.5
10
5
25
0.1
1
3
0.4
1.0
15
)(Y
1
1
– X
– Y
2
2
)
Max
100
80
2.0
4
6
)
22
1.0
4.0
0.04
30
15
Units
%/%
mV/%
mV (rms)
mV (rms)
mV/%
%
%
%/ C
%
%
mV
mV
mV p-p/ C
MHz
kHz
V/ s
V
mV
mV/ C
V
dB
M
%
%
%
%
V
V
mA
s
A
A
A
A
A
REV. B

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