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AD8450-EVALZ Fiches technique(PDF) 11 Page - Analog Devices

No de pièce AD8450-EVALZ
Description  Precision Analog Front End and Controller for Battery Test/Formation Systems
Download  41 Pages
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Fabricant  AD [Analog Devices]
Site Internet  http://www.analog.com
Logo AD - Analog Devices

AD8450-EVALZ Fiches technique(HTML) 11 Page - Analog Devices

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Data Sheet
AD8450
Rev. B | Page 11 of 41
TYPICAL PERFORMANCE CHARACTERISTICS
TA = 25°C, AVCC = +25 V, AVEE = −5 V, RL = ∞, unless otherwise noted.
PGIA CHARACTERISTICS
30
–10
–5
0
5
10
15
20
25
–10
–5
0
5
10
15
20
25
30
OUTPUT VOLTAGE (V)
VALID FOR ALL GAINS
AVCC = +25V
AVEE = –5V
Figure 3. Input Common-Mode Voltage vs. Output Voltage
for AVCC = +25 V and AVEE = −5 V
15
–15
–10
–5
0
5
10
–35 –30
–10
–20
0
45
30
40
20
10
–25
–5
–15
5
35
25
15
INPUT VOLTAGE (V)
AVCC = +25V
AVEE = –5V
GAIN = 200
GAIN = 26
Figure 4. Input Overvoltage Performance
for AVCC = +25 V and AVEE = −5 V
17.0
16.8
16.6
16.4
16.2
16.0
15.8
15.6
15.4
15.2
15.0
–15
–10
–5
0
5
10
15
20
25
INPUT COMMON-MODE VOLTAGE (V)
VALID FOR ALL GAINS
AVCC = +15V
AVEE = –15V
AVCC = +25V
AVEE = –5V
Figure 5. Input Bias Current vs. Input Common-Mode Voltage
20
–20
–15
–10
–5
0
5
10
15
–20
–15
–10
–5
0
5
10
15
20
OUTPUT VOLTAGE (V)
VALID FOR ALL GAINS
AVCC = +15V
AVEE = –15V
Figure 6. Input Common-Mode Voltage vs. Output Voltage
for AVCC = +15 V and AVEE = −15 V
15
–15
–10
–5
0
5
10
–45
–35
–40
–30
–10
–20
0
45
30
40
20
10
–25
–5
–15
5
35
25
15
INPUT VOLTAGE (V)
AVCC = +15V
AVEE = –15V
GAIN = 200
GAIN = 26
Figure 7. Input Overvoltage Performance
for AVCC = +15 V and AVEE = −15 V
20
19
18
17
16
15
14
13
12
–40 –30 –20 –10
0
10
20
30
40
50
60
70
80
90
TEMPERATURE (°C)
–IB
+IB
Figure 8. Input Bias Current vs. Temperature


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