7
FN7186.8
October 15, 2015
Typical Performance Curves
FIGURE 1. EL5420 INPUT OFFSET VOLTAGE DISTRIBUTION FIGURE 2. EL5420 INPUT OFFSET VOLTAGE DRIFT
FIGURE 3. INPUT OFFSET VOLTAGE vs TEMPERATURE FIGURE 4. INPUT BIAS CURRENT vs TEMPERATURE
FIGURE 5. OUTPUT HIGH VOLTAGE vs TEMPERATURE FIGURE 6. OUTPUT LOW VOLTAGE vs TEMPERATURE
400
1200
QUANTITY (AMPLIFIERS)
INPUT OFFSET VOLTAGE (mV)
0
-12
1800
1600
800
200
1400
1000
600
-10
-8
-6
-4
-2
-0
2
4
6
8
10
12
V
S
= ±5V
T
A
= +25°C
TYPICAL
PRODUCTION
DISTRIBUTION
INPUT OFFSET VOLTAGE DRIFT, TCV
OS
(µV/°C)
1
3
5
7
9
11
13
15
17
19
21
10
50
QUANTITY (AMPLIFIERS)
0
70
30
60
40
20
V
S
= ±5V
TYPICAL
PRODUCTION
DISTRIBUTION
0150
0
5
INPUT OFFSET VOLTAGE (mV)
TEMPERATURE (°C)
-5
50-50 100
10
V
S
= ±5V
0.0
INPUT BIAS CURRENT (nA)
TEMPERATURE (°C)
-2.0
2.0
0 15050-50 100
V
S
= ±5V
4.94
4.95
OUTPUT HIGH VOLTAGE (V)
4.93
4.97
0 150
TEMPERATURE (°C)
50-50 100
4.96
V
S
= ±5V
I
OUT
= 5mA
-4.95
-4.93
OUTPUT LOW VOLTAGE (V)
-4.97
-4.91
0 150
TEMPERATURE (°C)
50-50 100
-4.92
-4.94
-4.96
V
S
= ±5V
I
OUT
= -5mA
EL5120, EL5220, EL5420
8
FN7186.8
October 15, 2015
FIGURE 7. OPEN LOOP GAIN vs TEMPERATURE
FIGURE 8. SLEW RATE vs TEMPERATURE
FIGURE 9. EL5420 SUPPLY CURRENT PER AMPLIFIER vs
TEMPERATURE
FIGURE 10. EL5420 SUPPLY CURRENT PER AMPLIFIER vs
SUPPLY VOLTAGE
FIGURE 11. OPEN LOOP GAIN AND PHASE vs FREQUENCY FIGURE 12. FREQUENCY RESPONSE FOR VARIOUS R
L
Typical Performance Curves (Continued)
80
90
OPEN LOOP GAIN (dB)
100
0150
TEMPERATURE (°C)
50-50 100
V
S
= ±5V
R
L
= 10k
0 150
10.30
10.35
SLEW RATE (V/µs)
TEMPERATURE (°C)
10.25
50-50 100
10.40
V
S
= ±5V
0.5
0.55
SUPPLY CURRENT (mA)
0.45
0 150
TEMPERATURE (°C)
50-50 100
V
S
= ±5V
520
400
600
SUPPLY CURRENT (µA)
SUPPLY VOLTAGE (V)
300
100
700
500
15
T
A
= +25°C
10 10k 100M
50
200
FREQUENCY (Hz)
-50
GAIN (dB)
PHASE (°)
20
-130
-230
100 1k 100k 1M 10M
150
0
100
-30
-80
-180
V
S
= ±5V, T
A
= +25°C
R
L
= 10k to GND
C
L
= 12pF to GND
PHASE
GAIN
1M
100M
-5
0
MAGNITUDE (NORMALIZED) (dB)
FREQUENCY (Hz)
-15
10M
100k
5
-10
C
L
= 10pF
A
V
= 1
V
S
= ±5V
10k
1k
560
150
EL5120, EL5220, EL5420
9
FN7186.8
October 15, 2015
FIGURE 13. FREQUENCY RESPONSE FOR VARIOUS C
L
FIGURE 14. CLOSED LOOP OUTPUT IMPEDANCE vs
FREQUENCY
FIGURE 15. MAXIMUM OUTPUT SWING vs FREQUENCY FIGURE 16. CMRR vs FREQUENCY
FIGURE 17. PSRR vs FREQUENCY FIGURE 18. INPUT VOLTAGE NOISE SPECTRAL DENSITY vs
FREQUENCY
Typical Performance Curves (Continued)
1M
100M
FREQUENCY (Hz)
10M
100k
0
10
MAGNITUDE (NORMALIZED) (dB)
-30
20
-20
-10
R
L
= 10k
A
V
= 1
V
S
= ±5V
12pF
50pF
100pF
1000pF
OUTPUT IMPEDANCE ()
FREQUENCY (Hz)
10k 100k
0
40
80
120
200
1M
160
10M
A
V
= 1
V
S
= ±5V
T
A
= +25°C
MAXIMUM OUTPUT SWING (V
P-P
)
FREQUENCY (Hz)
10k 100k
0
2
4
12
1M
6
10M
8
10
V
S
= ±5V
T
A
= +25°C
A
V
= 1
R
L
= 10k
C
L
= 12pF
Distortion <1%
100
0
CMRR (dB)
FREQUENCY (Hz)
80
60
40
20
1M
10M
10k
100k
1k
V
S
= ±5V
T
A
= +25°C
100
0
PSRR (dB)
FREQUENCY (Hz)
80
60
40
20
1M
10M
10k
100k
V
S
= ±5V
T
A
= +25°C
1k
PSRR+
PSRR-
100 100k 100M
10
100
VOLTAGE NOISE (nV/Hz)
FREQUENCY (Hz)
1
10M1k 10k 1M
600
EL5120, EL5220, EL5420

EL5220CYZ

Mfr. #:
Manufacturer:
Renesas / Intersil
Description:
Operational Amplifiers - Op Amps EL5220CYZ 12 MHZ DL R2R INPUT-OUTPUT OUT
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
T/T Paypal Visa MoneyGram Western Union