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AD629 Fiches technique(PDF) 3 Page - Aavid, Thermal Division of Boyd Corporation

No de pièce AD629
Description  Very Low Distortion, Precision Difference Amplifier
Download  16 Pages
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Fabricant  AAVID [Aavid, Thermal Division of Boyd Corporation]
Site Internet  https://www.boydcorp.com/aavid.html
Logo AAVID - Aavid, Thermal Division of Boyd Corporation

AD629 Fiches technique(HTML) 3 Page - Aavid, Thermal Division of Boyd Corporation

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AD8274
Rev. C | Page 3 of 16
SPECIFICATIONS
VS = ±15 V, VREF = 0 V, TA = 25°C, RL = 2 kΩ, unless otherwise noted.
Table 2.
G = ½
G = 2
Parameter
Conditions
Min
Typ
Max
Min
Typ
Max
Unit
DYNAMIC PERFORMANCE
Bandwidth
20
10
MHz
Slew Rate
20
20
V/μs
Settling Time to 0.1%
10 V step on output,
CL = 100 pF
650
750
675
775
ns
Settling Time to 0.01%
10 V step on output,
CL = 100 pF
725
800
750
825
ns
NOISE/DISTORTION1
THD + Noise
f = 1 kHz,
VOUT = 10 V p-p,
600 Ω load
0.00025
0.00035
%
Noise Floor, RTO2
20 kHz BW
−106
−100
dBu
Output Voltage Noise
(Referred to Output)
f = 20 Hz to 20 kHz
3.5
7
μV rms
f = 1 kHz
26
52
nV/√Hz
GAIN
Gain Error
0.03
0.03
%
Gain Drift
−40°C to +85°C
0.5
2
0.5
2
ppm/°C
Gain Nonlinearity
VOUT = 10 V p-p,
600 Ω load
2
2
ppm
INPUT CHARACTERISTICS
Offset3
Referred to output
150
700
300
1100
μV
vs. Temperature
−40°C to +85°C
3
6
μV/°C
vs. Power Supply
VS = ±2.5 V to ±18 V
5
10
μV/V
Common-Mode Rejection
Ratio
VCM = ±40 V,
RS = 0 Ω,
referred to input
77
86
83
92
dB
Input Voltage Range4
3(−VS + 1.5)
3(+VS − 1.5)
1.5(−VS + 1.5)
1.5(+VS – 1.5)
V
Impedance5
Differential
VCM = 0 V
36
9
Common Mode6
9
9
OUTPUT CHARACTERISTICS
Output Swing
−VS + 1.5
+VS − 1.5
−VS + 1.5
+VS − 1.5
V
Short-Circuit Current Limit
Sourcing
90
90
mA
Sinking
60
60
mA
Capacitive Load Drive
200
1200
pF
POWER SUPPLY
Supply Current (per
Amplifier)
2.3
2.6
2.3
2.6
mA
TEMPERATURE RANGE
Specified Performance
−40
+85
−40
+85
°C
1 Includes amplifier voltage and current noise, as well as noise of internal resistors.
2 dBu = 20 log(V rms/0.7746).
3 Includes input bias and offset current errors.
4 May also be limited by absolute maximum input voltage or by the output swing. See the Absolute Maximum Ratings section and Figure 8 through Figure 11 for details.
5 Internal resistors are trimmed to be ratio matched but to have ±20% absolute accuracy.
6 Common mode is calculated by looking into both inputs. The common-mode impedance at only one input is 18 kΩ.


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