Data Sheet AD834
Rev. F | Page 3 of 20
SPECIFICATIONS
T
A
= 25°C and ±V
S
= ±5 V, unless otherwise noted; dBm assumes 50 Ω load. Specifications in boldface are tested on all production units
at final electrical test. Results from those tests are used to calculate outgoing quality levels.
Table 1.
Parameters Conditions Min Typ Max Unit
MULTIPLIER PERFORMANCE
Transfer Function
( )
mA
V
4
1
×=
2
XY
W
Total Error
1
−1 V ≤ X, Y < +1 V ±0.5
±2
% FS
vs. Temperature (AD834A/AD834S Only) T
MIN
to T
MAX
±1.5
±3
% FS
vs. Supplies (All Models)
2
±4 V to ±6 V 0.1
0.3
% FS/V
Linearity
3
±0.5
±1
% FS
Bandwidth
4
500
MHz
Feedthrough, X X = ±1 V, Y = nulled 0.2
0.3
% FS
Feedthrough, Y X = nulled, Y = ±1 V 0.1
0.2
% FS
AC Feedthrough, X
5
X = 0 dBm, Y = nulled
f = 10 MHz 65 dB
f = 100 MHz 50 dB
AC Feedthrough, Y
5
X = nulled, Y = 0 dBm
f = 10 MHz 70 dB
f = 100 MHz 50 dB
INPUTS (X1, X2, Y1, Y2)
Full-Scale Range Differential ±1 V
Clipping Level Differential
±1.1
±1.3 V
Input Resistance Differential 25
Offset Voltage 0.5
3
mV
vs. Temperature T
MIN
to T
MAX
10
μV/°C
4
mV
vs. Supplies
2
±4 V to ±6 V 100
300
μV/V
Bias Current 45
µA
Common-Mode Rejection f ≤ 100 kHz; 1 V p-p 70
dB
Nonlinearity, X Y = 1 V; X = ±1 V 0.2
0.5
% FS
Nonlinearity, Y X = 1 V; Y = ±1 V 0.1
0.3
% FS
Distortion, X X = 0 dBm, Y = 1 V
f = 10 MHz −60 dB
f = 100 MHz 44 dB
Distortion, Y X = 1 V, Y = 0 dBm
f = 10 MHz 65 dB
f = 100 MHz 50 dB
OUTPUTS (W1, W2)
Zero Signal Current Each output 8.5 mA
Differential Offset X = 0, Y = 0 ±20
±60
μA
vs. Temperature nA°C
All Models T
MIN
to T
MAX
40
AD834A/AD834S Only
±60
μA
Scaling Current Differential 3.96 4 4.04 mA
Output Compliance 4.75 9 V
Noise Spectral Density f = 10 Hz to 1 MHz 16 nV/√Hz
Outputs into 50 Ω Load
AD834 Data Sheet
Rev. F | Page 4 of 20
Parameters Conditions Min Typ Max Unit
POWER SUPPLIES
Operating Range ±4 ±9 V
Quiescent Current
6
T
MIN
to T
MAX
+V
S
11
14
mA
–V
S
28
35
mA
1
Error is defined as the maximum deviation from the ideal output, and expressed as a percentage of the full-scale output. See Figure 16.
2
Both supplies taken simultaneously; sinusoidal input at f ≤10 kHz.
3
Linearity is defined as residual error after compensating for input offset voltage, output offset current, and scaling current errors.
4
Bandwidth is guaranteed when configured in squarer mode. See Figure 12.
5
Sine input; relative to full-scale output; zero input port nulled; represents feedthrough of the fundamental.
6
Negative supply current is equal to the sum of positive supply current, the signal currents into each output, W1 and W2, and the input bias currents.
Data Sheet AD834
Rev. F | Page 5 of 20
ABSOLUTE MAXIMUM RATINGS
Table 2.
Parameter Ratings
Supply Voltage (+V
S
to −V
S
) 18 V
Internal Power Dissipation 500 mW
Input Voltages (X1, X2, Y1, Y2) +V
S
Operating Temperature Ranges
Commercial, AD834J Only 0°C to 70°C
Industrial, AD834A Only −40°C to +85°C
Military AD834S/883B Only 55°C to +125°C
Storage Temperature Range (Q)
−65°C to +150°C
Storage Temperature Range (R, N) 65°C to +125°C
Lead Temperature (Soldering, 60 sec) 300°C
ESD Rating 500 V
Stresses above those listed under Absolute Maximum Ratings
may cause permanent damage to the device. This is a stress
rating only; functional operation of the device at these or any
other conditions above those indicated in the operational
section of this specification is not implied. Exposure to absolute
maximum rating conditions for extended periods may affect
device reliability.
THERMAL CHARACTERISTICS
Table 3.
Package θ
JA
θ
JA
Unit
8-Lead CERDIP (Q) 110 110 °C/W
8-Lead SOIC (R) 165 165 °C/W
8-Lead PDIP (N) 99 99 °C/W
CHIP DIMENSIONS AND BONDING DIAGRAM
00894-003
ADI 1987 USA
A834PMD
Y1
Y2
W2
NOTES
1. DIMENSIONS SHOWN IN INCHES AND (mm). CONTACT
FACTORY FOR LATEST DIMENSIONS.
W1
X1
X2
8
7
6
54
3
2
1
+V
S
–V
S
0.054 (1.37)
0.054 (1.37)
Figure 2. Metallization Photograph
ESD CAUTION

AD834JRZ

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Multipliers / Dividers IC 500 MHz Four-Quadrant
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