参数资料
型号: AD815
厂商: Analog Devices, Inc.
英文描述: High Output Current Differential Driver(高输出电流差分驱动器)
中文描述: 高输出电流差动驱动器(高输出电流差分驱动器)
文件页数: 13/16页
文件大小: 320K
代理商: AD815
AD815
REV. A
–13–
6
4
5
8
+15V
10
7
–15V
R
F
499
R
L
9
11
0.1μF
10μF
R
G
100
R
F
499
0.1μF
10μF
1/2
AD815
1
8
+15V
0.1μF
2
1k
4
–15V
1k
7
0.1μF
6
5
1k
3
1/2
AD815
1/2
1/2
100
100
1k
Figure 50. Differential Driver with Single-Ended
Differential Converter
Another means for creating a differential signal from a single-
ended signal is to use a transformer with a center-tapped
secondary. T he center tap of the transformer is grounded and
the two secondary windings are connected to obtain opposite
polarity signals to the two inputs of the AD815 amplifiers. T he
bias currents for the AD815 inputs are provided by the center
tap ground connection through the transformer windings.
One advantage of using a transformer is its ability to provide
isolation between circuit sections and to provide good common-
mode rejection. T he disadvantages are that transformers have
no dc response and can sometimes be large, heavy and expensive.
T his circuit is shown in Figure 51.
6
4
5
8
+15V
10
7
–15V
R
L
9
11
0.1μF
10μF
200
0.1μF
10μF
1/2
AD815
1k
1k
1/2
AD815
50
100
100
50
Figure 51. Differential Driver with Transformer Input
Direct Single-E nded to Differential Conversion
T wo types of circuits can create a differential output signal from
a single-ended input without the use of any other components
other than resistors. T he first of these is illustrated in Figure 52.
6
4
5
8
+15V
10
7
–15V
R
F1
402
R
L
9
11
R
G
100
R
F2
499
1/2
AD815
1/2
AD815
V
IN
V
OUT
AMP 1
AMP 2
Figure 52. Direct Single-Ended to Differential Conversion
Amp 1 has its + input driven with the input signal, while the +
input of Amp 2 is grounded. T hus the – input of Amp 2 is
driven to virtual ground potential by its output. T herefore
Amp 1 is configured for a noninverting gain of five, (1 + R
F1
/R
G
),
because R
G
is connected to the virtual ground of Amp 2’s – input.
When the + input of Amp 1 is driven with a signal, the same
signal appears at the – input of Amp 1. T his signal serves as an
input to Amp 2 configured for a gain of –5, (–R
F2
/R
G
). T hus the
two outputs move in opposite directions with the same gain and
create a balanced differential signal.
T his circuit can work at various gains with proper resistor
selection. But in general, in order to change the gain of the
circuit, at least two resistor values will have to be changed. In
addition, the noise gain of the two op amps in this configuration
will always be different by one, so the bandwidths will not
match.
A second circuit that has none of the disadvantages mentioned
in the above circuit creates a differential output voltage feedback
op amp out of the pair of current feedback op amps in the
AD815. T his circuit, drawn in Figure 53, can be used as a high
power differential line driver, such as required for ADSL
(asymmetrical digital subscriber loop) line driving.
Each of the AD815’s op amps is configured as a unity gain
follower by the feedback resistors (R
A
). Each op amp output
also drives the other as a unity gain inverter via the two R
B
s,
creating a totally symmetrical circuit.
If the + input to Amp 2 is grounded and a small positive signal
is applied to the + input of Amp 1, the output of Amp 1 will be
driven to saturation in the positive direction and the output of
Amp 2 driven to saturation in the negative direction. T his is
similar to the way a conventional op amp behaves without any
feedback.
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相关代理商/技术参数
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