AD8512ARZ Analog Devices Inc, AD8512ARZ Datasheet - Page 16

IC OPAMP JFET 8MHZ DUAL LN 8SOIC

AD8512ARZ

Manufacturer Part Number
AD8512ARZ
Description
IC OPAMP JFET 8MHZ DUAL LN 8SOIC
Manufacturer
Analog Devices Inc
Type
General Purpose Amplifierr
Datasheet

Specifications of AD8512ARZ

Slew Rate
20 V/µs
Design Resources
Precision, Bipolar Configuration for the AD5546/56 DAC (CN0024) Precision, Bipolar, Configuration for AD5547/AD5557 DAC (CN0028)
Amplifier Type
J-FET
Number Of Circuits
2
Gain Bandwidth Product
8MHz
Current - Input Bias
25pA
Voltage - Input Offset
100µV
Current - Supply
2.2mA
Current - Output / Channel
70mA
Voltage - Supply, Single/dual (±)
±4.5 V ~ 18 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
8-SOIC (3.9mm Width)
Op Amp Type
Precision
No. Of Amplifiers
2
Bandwidth
8MHz
Supply Voltage Range
± 5V To ± 15V
Amplifier Case Style
SOIC
No. Of Pins
8
Operating Temperature Range
-40°C To +85°C
Rail/rail I/o Type
No
Number Of Elements
2
Unity Gain Bandwidth Product
8MHz
Common Mode Rejection Ratio
86dB
Input Offset Voltage
0.9@±5VmV
Input Bias Current
75pA
Single Supply Voltage (typ)
Not RequiredV
Dual Supply Voltage (typ)
±9/±12V
Voltage Gain In Db
100.59dB
Power Supply Rejection Ratio
86dB
Power Supply Requirement
Dual
Shut Down Feature
No
Single Supply Voltage (min)
Not RequiredV
Single Supply Voltage (max)
Not RequiredV
Dual Supply Voltage (min)
±5V
Dual Supply Voltage (max)
±15V
Technology
JFET
Operating Temp Range
-40C to 125C
Operating Temperature Classification
Automotive
Mounting
Surface Mount
Pin Count
8
Package Type
SOIC N
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Output Type
-
-3db Bandwidth
-
Lead Free Status / Rohs Status
Compliant

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Part Number
Manufacturer
Quantity
Price
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AD8510/AD8512/AD8513
PRECISION RECTIFIERS
Rectifying circuits are used in a multitude of applications. One
of the most popular uses is in the design of regulated power
supplies, where a rectifier circuit is used to convert an input
sinusoid to a unipolar output voltage.
However, there are some potential problems with amplifiers
used in this manner. When the input voltage (V
the output is zero, and the magnitude of V
inputs of the op amp. If this voltage exceeds the power supply
voltage, it may permanently damage some amplifiers. In addition,
the op amp must come out of saturation when V
This delays the output signal because the amplifier requires
time to enter its linear region.
Although the AD8510/AD8512/AD8513 have a very fast
overdrive recovery time, which makes them great choices for the
rectification of transient signals, the symmetry of the positive
and negative recovery times is also important to keep the output
signal undistorted.
Figure 50 shows the test circuit of the rectifier. The first stage of
the circuit is a half-wave rectifier. When the sine wave applied at
the input is positive, the output follows the input response.
During the negative cycle of the input, the output tries to swing
negative to follow the input, but the power supply restrains it to
zero. In a similar fashion, the second stage is a follower during
the positive cycle of the sine wave and an inverter during the
negative cycle.
V
3V p-p
IN
1kΩ
R1
Figure 50. Half-Wave and Full-Wave Rectifiers
3
2
AD8512
10kΩ
1/2
R2
10V
8
4
1
OUT A
(HALF WAVE)
6
5
AD8512
10kΩ
IN
R3
2/2
is doubled at the
10V
4
8
IN
IN
) is negative,
is negative.
7
OUT B
(FULL WAVE)
Rev. I | Page 16 of 20
Figure 51. Half-Wave Rectifier Signal (OUT A in Figure 50)
Figure 52. Full-Wave Rectifier Signal (OUT B in Figure 50)
TIME (1ms/DIV)
TIME (1ms/DIV)

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