4
FN7457.1
November 9, 2004
Typical Performance Curves
FIGURE 1. FREQUENCY RESPONSE AS THE FUNCTION OF
R
F
FIGURE 2. FREQUENCY RESPONSE AS THE FUNCTION OF
THE GAIN
FIGURE 3. FREQENCY RESPONSE vs C
IN
FIGURE 4. NON-INVERTING FREQUENCY RESPONSE FOR
VARIOUS C
IN
-
FIGURE 5. INVERTING FREQUENCY RESPONSE FOR GAIN
OF 1 AND 2
FIGURE 6. RISE AND FALL TIME
NORMALIZED MAGNITUDE (dB)
100K
FREQUENCY (Hz)
V
CC
=5V
V
EE
=-5V
R
L
=150
1M 10M 100M 1G
5
3
1
-1
-3
-5
R
F
=511
R
F
=608
R
F
=368
R
F
=392
R
F
=662
R
F
=1K
R
F
=806
R
F
=900
R
F
=698
V
CC
=5V
V
EE
=-5V
R
L
=150
R
F
=392
R
G
=392
R
G
=43
R
G
=93
R
G
=186
NORMALIZED MAGNITUDE (dB)
100K
FREQUENCY (Hz)
1M 10M 100M 1G
4
2
0
-2
-4
-6
V
CC
=+5V
V
EE
=-5V
R
L
=150
R
F
=392
C=4.7pF
C=0pF
C=1pF
C=1.5pF
C=2.5pF
NORMALIZED MAGNITUDE (dB)
5
3
1
-1
-3
-5
100K
FREQUENCY (Hz)
1M 10M 100M 1G
V
CC
=+5V
V
EE
=-5V
R
L
=150
R
F
=R
G
=392
NORMALIZED MAGNITUDE (dB)
5
3
1
-1
-3
-5
100K
FREQUENCY (Hz)
1M 10M 100M 1G
C=4.7pF
C=0pF
C=1pF
C=1.5pF
C=2.5pF
R
F
=220
R
G
=220
V
CC
, V
EE
=5V
R
F
=220
R
G
=100
NORMALIZED MAGNITUDE (dB)
4
2
0
-2
-4
-6
1M
FREQUENCY (Hz)
10M 100M 1G
0.5V/DIV
2ns/DIV
V
CC
=+5V
V
EE
=-5V
R
L
=150
R
F
=392
EL5367
5
FN7457.1
November 9, 2004
FIGURE 7. FREQUENCY RESPONSE AS THE FUNCTION OF
THE POWER SUPPLY VOLTAGE
FIGURE 8. INVERTING AMPLIFIER, FREQUENCY
RESPONSE AS THE FUNCTION OF V
CC
, V
EE
GAIN - 1
FIGURE 9. TRANSIMPEDANCE MAGNITUDE AND PHASE AS
THE FUNCTION OF THE FREQUENCY
FIGURE 10. CLOSED LOOP OUTPUT IMPEDANCE vs
FREQUENCY
FIGURE 11. PSRR +5V FIGURE 12. PSRR -5V
Typical Performance Curves (Continued)
R
L
=150
R
F
=300
R
G
=300
2.5V
3.0V
6.0V
5.0V
NORMALIZED MAGNITUDE (dB)
4
2
0
-2
-4
-6
100K
FREQUENCY (Hz)
1M 10M 100M 1G
R
L
=150
R
F
=220
R
G
=220
5.0V
6.0V
2.5V
3.5V
NORMALIZED MAGNITUDE (dB)
4
2
0
-2
-4
-6
1M
FREQUENCY (Hz)
10M 100M 1G
ROL ()
100K
FREQUENCY (Hz)
1M 10M 100M 1G
V
CC
, V
EE
=2.5V2.5V
5.0V
6.0V
2.5V
5.0V
1M
100K
10K
1K
100
45
-45
-135
-225
-315
PHASE (°)
ROL
PHASE
V
CC
, V
EE
=5V
GAIN=2
10K
FREQUENCY (Hz)
100K 1M 10M 100M
OUTPUT IMPDEANCE ()
10
1
100m
10m
V
CC
=5V
V
EE
=-5V
R
L
=150
R
F
=402
R
G
=402
100
FREQUENCY (Hz)
1K 10K 1M 100M
PSRR (V
CC
) (dB)
0
10
30
50
70
80
20
40
60
100K 10M
V
CC
=5V
V
EE
=-5V
R
L
=150
R
F
=402
R
G
=402
100
FREQUENCY (Hz)
1K 10K 1M 100M
PSRR (V
EE
) (dB)
0
10
30
50
70
80
20
40
60
100K 10M
EL5367
6
FN7457.1
November 9, 2004
FIGURE 13. COMMON MODE REJECTION AS THE FUNCTION
OF THE FREQUENCY AND POWER SUPPLY
VOLTAGE
FIGURE 14. LARGE SIGNAL RESPONSE
FIGURE 15. T
OUT
vs FREQUENCY AND V
CC
, V
EE
FIGURE 16. DISTORTION vs FREQUENCY
FIGURE 17. HARMONIC DISTORTION vs SUPPLY VOLTAGE FIGURE 18. HARMONIC DISTORTION vs SUPPLY VOLTAGE
Typical Performance Curves (Continued)
R
F
=R
G
=392
1K
FREQUENCY (Hz)
10K 1M 100M
CMRR (dB)
20
10
-10
-30
-60
-80
0
-20
-40
100K 10M
-70
-50
6.0V
5.0V
3.5V
2.5V
V
CC
=5V
V
EE
=-5V
R
L
=150
GAIN=2
LOAD=150
INPUT LEVEL=3V
P-P
NORMALIZED MAGNITUDE (dB)
3
1
-1
-3
-5
-7
100K
FREQUENCY (Hz)
1M 10M 1G100M
±6.0V
±5.0V
±3.0V
±2.5V
100
FREQUENCY (Hz)
200 300 600 1K
V
OUTP-P
(V)
2
0
1.5
1
0.5
400 800700500 900
V
CC
, V
EE
=5V
R
L
=150
A
V
=2
1
FREQUENCY (MHz)
611 21
DISTORTION (dB)
-50
-55
-65
-75
-85
-60
-70
-80
16 3126 36
2ND HD
3RD HD
THD
5
TOTAL SUPPLY VOLTAGE (V)
67 9
DISTORTION (dB)
-74
-78
-82
-86
-76
-80
-84
81110 12
2ND HD
3RD HD
THD
V
CC
, V
EE
=5V
R
L
=150
A
V
=2
5
TOTAL SUPPLY VOLTAGE (V)
67 9
DISTORTION (dB)
10
-10
-50
-90
-30
-70
81110 12
3RD HD
THD
f=5MHz
R
L
=150
A
V
=2
V
O
=2V
P-P
2ND HD
EL5367

EL5367IU-T7

Mfr. #:
Manufacturer:
Renesas / Intersil
Description:
IC OPAMP CFA 3 CIRCUIT 16QSOP
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
T/T Paypal Visa MoneyGram Western Union

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