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AD8567ACPZ-REEL(RevG) 데이터 시트보기 (PDF) - Analog Devices

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AD8567ACPZ-REEL
(Rev.:RevG)
ADI
Analog Devices ADI
AD8567ACPZ-REEL Datasheet PDF : 16 Pages
First Prev 11 12 13 14 15 16
TOTAL HARMONIC DISTORTION + NOISE (THD + N)
The AD8565/AD8566/AD8567 feature low total harmonic dis-
tortion. Figure 31 shows THD + N vs. frequency. The THD + N
over the entire supply range is below 0.008%. When the device
is powered from a 16 V supply, the THD + N stays below
0.003%. Figure 31 shows the AD8566 in a unity noninverting
configuration.
10
1
0.1
VS = ±2.5V
VS = ±8V
0.01
20
100
1k
FREQUENCY (Hz)
10k
30k
Figure 31. THD + N vs. Frequency
SHORT-CIRCUIT OUTPUT CONDITIONS
The AD8565/AD8566/AD8567 do not have internal short-
circuit protection circuitry. As a precautionary measure, it is
recommended not to short the output directly to the positive
power supply or to ground.
It is not recommended to operate the AD8565/AD8566/AD8567
with more than 35 mA of continuous output current. The
output current can be limited by placing a series resistor at the
output of the amplifier whose value can be derived using
RX
VS
35 mA
For a 5 V single-supply operation, RX should have a minimum
value of 143 Ω.
AD8565/AD8566/AD8567
LCD PANEL APPLICATIONS
The AD8565/AD8566/AD8567 amplifier is designed for LCD
panel applications or applications where large capacitive load
drive is required. It can instantaneously source/sink greater than
250 mA of current. At unity gain, it can drive 1 µF without
compensation. This makes the AD8565/AD8566/AD8567 ideal
for LCD VCOM driver applications.
To evaluate the performance of the AD8565/AD8566/AD8567,
a test circuit was developed to simulate the VCOM driver
application for an LCD panel. Figure 32 shows the test circuit.
Series capacitors and resistors connected to the output of the op
amp represent the load of the LCD panel. The 300 Ωand 3 kΩ
feedback resistors are used to improve settling time. This test
circuit simulates the worst-case scenario for a VCOM. It drives a
represented load that is connected to a signal switched symmet-
rically around VCOM.
Figure 33 shows a scope photo of the instantaneous output peak
current capability of the AD8565/AD8566/AD8567.
300
8V
3k
INPUT 0V TO 8V
SQUARE WAVE WITH
15.6µs PULSE WIDTH
10101010
4V
MEASURE
CURRENT
10nF 10nF
10nF
10nF
10TO 20
Figure 32. VCOM Test Circuit with Supply Voltage at 16 V
100
90
CH 2 = 100mA/DIV
CH 1 = 5V/DIV
10
0%
TIME (2µs/DIV)
Figure 33. Scope Photo of the VCOM Instantaneous Peak Current
Rev. G | Page 11 of 16

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