JM38510/13901BIA Analog Devices Inc, JM38510/13901BIA Datasheet - Page 2

JM38510/13901BIA

Manufacturer Part Number
JM38510/13901BIA
Description
Manufacturer
Analog Devices Inc
Datasheet

Specifications of JM38510/13901BIA

Number Of Elements
1
Output Type
Single
Power Supply Requirement
Dual
Single Supply Voltage (typ)
Not RequiredV
Single Supply Voltage (min)
Not RequiredV
Single Supply Voltage (max)
Not RequiredV
Dual Supply Voltage (typ)
±15V
Dual Supply Voltage (min)
±8V
Dual Supply Voltage (max)
±22V
Operating Temperature Classification
Military
Mounting
Through Hole
Pin Count
10
Package Type
TO-100
Lead Free Status / RoHS Status
Not Compliant
AD534–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
N
1
2
3
4
5
Specifications subject to change without notic
Figures given are percent of full scale, 10 V (i.e., 0.01% = 1 mV).
May be reduced down to 3 V using external resistor between –V
Irreducible component due to nonlinearity: excludes effect of offsets.
Using external resistor adjusted to give SF = 3 V.
See Functional Block Diagram for definition of sections.
OTES
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)
Nonlinearity, Y (Y = 20 V p-p, X = 10 V)
Feedthrough
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 f = 10 Hz to 5 MHz
Wideband Noise
Output Voltage Swing
Output Impedance (f 1 kHz)
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
Supply Voltage
Supply Current
TO-100 (H-10A)
TO-116 (D-14)
Chips
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.)
Rated Performance
Operating
Quiescent
= min to max
L
= 0, T
1
1
1
3
3
(–10 V X, Y
(1 V
OUT
(X = 1 V, –1 V Z +1 V)
(0.1 V X 10 V, –10 V Z 10 V)
, X (Y Nulled,
, Y (X Nulled,
A
(X = 10 V, –10 V Z +10 V)
= min to max)
20 p-p)
f = 10 Hz to 10 kHz
Z
OUT
1
1
X
> X
LOAD
SF = 3 V
10 V)
= 0.1 rms)
Z
OUT
10 V)
2
2
)
1 V)
)
2
= 1000 pF)
+10 V)
= 20 V)
4
5
e.
Min
60
S
10 V
( X
( X
(@ T
8
and SF.
11
10 V ( Z
1
1
10 V
AD534JH
AD534JD
– X
( X
( Z
X
A
10 V
1
= + 25 C, V
2
2
2
AD534J
2
)(Y
)
Typ
200
1
50
20
2
0.8
0.4
1
90
0.1
30
70
100
200
80
0.8
0.1
10
2
4
X
Z
1.5
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
15
Z
1
1
2
1
)
Z
– Y
)
)
2
2
Y
X
)
1
2
Max
2.0
6
–2–
Z
1.0
30
20
30
18
2
S
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.
= 15 V, R
70
Min
10 V
( X
( X
8
11
10 V ( Z
1
1
10 V
AD534KH
AD534KD
AD534K Chips
– X
( X
( Z
X
2 k )
10 V
1
2
2
2
AD534K
2
)(Y
)
Typ
100
1
50
20
2
0.8
0.4
1
90
0.1
30
70
50
100
90
0.8
0.1
10
4
2
X
Z
1.0
0.015
0.1
0.01
0.01
0.2
0.1
0.15
0.01
2
10
12
2
2
0.35
1.0
1.0
0.3
0.5
15
Z
1
1
2
1
– Y
)
Z
)
)
2
2
Y
X
)
1
2
Max
2.0
6
Z
0.5
0.3
0.1
0.3
0.1
15
10
15
18
2
Min
70
10 V
( X
( X
8
11
10 V ( Z
1
1
10 V
– X
( X
( Z
X
10 V
1
2
2
2
AD534L
2
)(Y
)
Typ
1
20
2
0.8
0.4
1
90
0.1
90
0.8
0.05
4
100
50
30
70
50
100
10
2
X
Z
0.5
0.008
0.1
0.005
0.01
0.10
0.005
0.05
0.003
2
10
12
2
2
0.2
0.8
0.8
0.2
0.25
15
Z
AD534LH
AD534LD
1
1
2
1
)
Z
– Y
)
)
2
2
Y
X
)
1
2
Max
2.0
0.2
6
Z
10
0.25
0.12
0.1
0.12
0.1
10
10
18
2
REV. B
Units
%
%
%/ C
%
%/ C
%
%
%
%
%
mV
MHz
kHz
V/ s
mV/rms
V
mA
dB
V
V
mV
mV
dB
M
%
%
%
%
%
V
V
mA
V/ C
s
V/ Hz
V/ Hz
V/rms
V/ C
V/ C
A
A

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