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OP467ARC/883C bảng dữ liệu(PDF) 15 Page - Analog Devices

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Giải thích chi tiết về linh kiện  Quad Precision, High Speed Operational Amplifier
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OP467ARC/883C bảng dữ liệu(HTML) 15 Page - Analog Devices

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OP467
Rev. | Page 15 of 20
2 MHz BIQUAD BAND-PASS FILTER
0.01% 10V STEP
VS = ±15V
NEG SLOPE
The circuit in Figure 48 is commonly used in medical imaging
ultrasound receivers. The 30 MHz bandwidth is sufficient to
accurately produce the 2 MHz center frequency, as the measured
response shows in Figure 49. When the bandwidth of the op
amp is too close to the center frequency of the filter, the internal
phase shift of the amplifier causes excess phase shift at 2 MHz,
which alters the response of the filter. In fact, if the chosen op
amp has a bandwidth close to 2 MHz, the combined phase shift
of the three op amps causes the loop to oscillate.
2.5mV
–2.5mV
Careful consideration must be given to the layout of this circuit
as with any other high speed circuit.
Figure 45. Instrumentation Amplifier Settling Time to 0.01% for a
10 V Step Input (Negative Slope)
If the phase shift introduced by the layout is large enough, it can
alter the circuit performance, or worse, cause oscillation.
0.01% 10V STEP
VS =±15V
POS SLOPE
2.5mV
–2.5mV
VIN
VOUT
1/4
OP467
1/4
OP467
1/4
OP467
1/4
OP467
R1
3kΩ
2kΩ
R2
2kΩ
R6
1kΩ
C1
50pF
C2
50pF
R3
2kΩ
R4
2kΩ
R5
2kΩ
Figure 46. Instrumentation Amplifier Settling Time to 0.01% for a
10 V Step Input (Positive Slope)
Figure 48. 2 MHz Biquad Filter
+VS
AD9617
FREQUENCY (Hz)
–30
–20
–10
0
10k
100k
1M
10M
100M
–40
+
+
–VS
2kΩ
1kΩ
TO
INPUT
TO
IN-AMP
OUTPUT
ERROR
TO SCOPE
2kΩ
61.9Ω
549Ω
Figure 47. Settling Time Measurement Circuit
Figure 49. Biquad Filter Response



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