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AD8013ACHIPS Datasheet(PDF) 3 Page - Analog Devices

Part # AD8013ACHIPS
Description  Single Supply, Low Power, aTriple Video Amplifier
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Manufacturer  AD [Analog Devices]
Direct Link  http://www.analog.com
Logo AD - Analog Devices

AD8013ACHIPS Datasheet(HTML) 3 Page - Analog Devices

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AD8013
Model
AD8013A
Conditions
VS
Min
Typ
Max
Units
POWER SUPPLY
Operating Range
Single Supply
+4.2
+13
V
Dual Supply
±2.1
±6.5
V
Quiescent Current/Amplifier
+5 V
3.0
3.5
mA
±5 V
3.4
4.0
mA
±6.5 V
3.5
mA
Quiescent Current/Amplifier
Power Down
+5 V
0.25
0.35
mA
±5 V
0.3
0.4
mA
Power Supply Rejection Ratio
Input Offset Voltage
VS =
±2.5 V to ±5 V
70
76
dB
–Input Current
+5 V,
±5 V
0.03
0.2
µA/V
+Input Current
+5 V,
±5 V
0.07
1.0
µA/V
DISABLE CHARACTERISTICS
Off Isolation
f = 6 MHz
+5 V,
±5 V
–70
dB
Off Output Impedance
G = +1
+5 V,
±5 V
12
pF
Turn-On Time
50
ns
Turn-Off Time
30
ns
Switching Threshold
–VS + xV
1.3
1.6
1.9
V
NOTES
1The test circuit for differential gain and phase measurements on a +5 V supply is ac coupled.
Specifications subject to change without notice.
–3–
REV. A
ABSOLUTE MAXIMUM RATINGS
1
Supply Voltage
. . . . . . . . . . . . . . . . . . . . . . . . . . 13.2 V Total
Internal Power Dissipation
2
Plastic (N) . . . . . . . . . 1.6 Watts (Observe Derating Curves)
Small Outline (R) . . . . 1.0 Watts (Observe Derating Curves)
Input Voltage (Common Mode) . . Lower of
±V
S or
±12.25 V
Differential Input Voltage . . . . . . . . Output
±6 V (Clamped)
Output Voltage Limit
Maximum . . . . . . . . . Lower of (+12 V from –VS) or (+VS)
Minimum . . . . . . . . . Higher of (–12.5 V from +VS) or (–VS)
Output Short Circuit Duration
. . . . . . . . . . . . . . . . . . . . Observe Power Derating Curves
Storage Temperature Range
N and R Package . . . . . . . . . . . . . . . . . . . –65
°C to +125°C
Operating Temperature Range
AD8013A . . . . . . . . . . . . . . . . . . . . . . . . . . –40
°C to +85°C
Lead Temperature Range (Soldering 10 sec) . . . . . . . . +300
°C
NOTES
1Stresses above those listed under “Absolute Maximum Ratings” may cause
permanent damage to the device. This is a stress rating only and 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.
2Specification is for device in free air:
14-Pin Plastic DIP Package:
θ
JA = 75°C/Watt
14-Pin SOIC Package:
θ
JA = 120°C/Watt
ORDERING GUIDE
Temperature
Package
Package
Model
Range
Description
Options
AD8013AN
–40
°C to +85°C 14-Pin Plastic DIP N-14
AD8013AR-14
–40
°C to +85°C 14-Pin Plastic SOIC R-14
AD8013AR-14-REEL
–40
°C to +85°C 14-Pin Plastic SOIC R-14
AD8013AR-14-REEL7
–40
°C to +85°C 14-Pin Plastic SOIC R-14
AD8013ACHIPS
–40
°C to +85°C Die Form
Maximum Power Dissipation
The maximum power that can be safely dissipated by the AD8013
is limited by the associated rise in junction temperature. The
maximum safe junction temperature for the plastic encapsulated
parts is determined by the glass transition temperature of the
plastic, about 150
°C. Exceeding this limit temporarily may
cause a shift in parametric performance due to a change in the
stresses exerted on the die by the package. Exceeding a junction
temperature of 175
°C for an extended period can result in
device failure.
While the AD8013 is internally short circuit protected, this may
not be enough to guarantee that the maximum junction temper-
ature is not exceeded under all conditions. To ensure proper
operation, it is important to observe the derating curves.
It must also be noted that in (noninverting) gain configurations
(with low values of gain resistor), a high level of input overdrive
can result in a large input error current, which may result in a
significant power dissipation in the input stage. This power
must be included when computing the junction temperature rise
due to total internal power.
AMBIENT TEMPERATURE –
°C
2.5
2.0
0.5
–50
90
–40 –30 –20
0
10 20
30
40 50
60 70
80
1.5
1.0
–10
TJ = +150°C
14-PIN DIP PACKAGE
14-PIN SOIC
Maximum Power Dissipation vs. Ambient Temperature


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