7
FN7058.4
September 14 ,2010
FIGURE 19. GROUP DELAY vs FREQUENCY FIGURE 20. DIFFERENTIAL GAIN/PHASE vs DC INPUT
VOLTAGE AT 3.58MHz
FIGURE 21. SUPPLY CURRENT vs SUPPLY VOLTAGE
FIGURE 22. CLOSED LOOP OUTPUT IMPEDANCE vs
FREQUENCY
FIGURE 23. CMRR
FIGURE 24. PSRR
Typical Performance Curves (Continued)
10
8
6
4
2
0
-2
-4
-6
-8
-10
1M 10M
FREQUENCY (Hz)
GROUP DELAY (ns)
A
V
= 5V
A
V
= 2V
100M
V
S
= ±12V
R
F
= 620
R
L
= 500
P
IN
= -20dBm into 50
0.10
0.08
0.06
0.04
0.02
0
-0.02
-1.0 0
DC INPUT VOLTAGE (V)
dG (%) OR dP (°)
dG
1.0
-0.5 0.5
A
V
= 2
R
F
= 620
R
L
= 150
f
O
= 3.58MHz
dP
12
6
0
6120
1.2/DI
1.2/DI
SUPPLY VOLTAGE (±V)
SUPPLY CURRENT (mA)
100
10
1
0.1
0.01
10k 1M
FREQUENCY (Hz)
OUTPUT IMPEDANCE ()
100M
100k 10M
110
90
70
50
30
10
10 10k
FREQUENCY (Hz)
-CMRR (dB)
1M 100M100 1k 100k 10M
V
S
= ±12
0
60
80
100
1k 1M
FREQUENCY (Hz)
PSRR (dB)
10M 100M10k
40
20
100k
V
S
-
V
S
+
EL2227
8
FN7058.4
September 14 ,2010
FIGURE 25. 1MHz 2nd AND 3rd HARMONIC DISTORTION vs
OUTPUT SWING FOR V
S
= ±12V
FIGURE 26. 1MHz 2nd AND 3rd HARMONIC DISTORTION vs
OUTPUT SWING FOR V
S
= ±2.5V
FIGURE 27. TOTAL HARMONIC DISTORTION vs FREQUENCY
@ 2V
P-P
V
S
= ±12V
FIGURE 28. TOTAL HARMONIC DISTORTION vs FREQUENCY
@ 2V
P-P
V
S
= ±2.5V
FIGURE 29. VOLTAGE AND CURRENT NOISE vs FREQUENCY
FIGURE 30. CHANNEL-TO-CHANNEL ISOLATION vs
FREQUENCY
Typical Performance Curves (Continued)
-40
-50
-60
-70
-80
-90
-100
08
OUTPUT SWING (V
P-P
)
DISTORTION (dBc)
16 204 12
2nd
3rd H
A
V
= 2
R
F
= 620
R
L
= 500
-50
-60
-70
-80
-90
-100
01.5
OUTPUT SWING (V
P-P
)
DISTORTION (dBc)
2.50.5 21
2nd
3rd H
A
V
= 2
R
F
= 358
R
L
= 500
-60
-70
-90
-100
-110
-120
1
FREQUENCY (kHz)
THD (dBc)
100010 100
-80
R
L
= 500
R
L
= 50
FREQUENCY (kHz)
THD (dBc)
-60
-70
-90
-100
-110
-120
1 100010 100
-80
R
L
= 500
R
L
= 50
10
9
6
5
4
3
2
1
10 1k
FREQUENCY (Hz)
VOLTAGE NOISE (nV/Hz),
CURRENT NOISE (pA/Hz)
10k 100k100
8
7
I
N
E
N
0
-20
-40
-60
-80
-100
100k 1M
FREQUENCY (Hz)
GAIN (dB)
100M10M
A B
B A
EL2227
9
FN7058.4
September 14 ,2010
FIGURE 31. -3dB BANDWIDTH vs TEMPERATURE FIGURE 32. SUPPLY CURRENT vs TEMPERATURE
FIGURE 33. V
OS
vs TEMPERATURE
FIGURE 34. INPUT BIAS CURRENT vs TEMPERATURE
FIGURE 35. SLEW RATE vs TEMPERATURE
FIGURE 36. SETTLING TIME vs ACCURACY
Typical Performance Curves (Continued)
150
140
120
110
100
90
80
0 100
DIE TEMPERATURE (°C)
-3dB BANDWIDTH (MHz)
130
40
-20-40 20 80 14060 120
10.0
9.0
8.5
-50 50
DIE TEMPERATURE (°C)
I
S
(mA)
100 1500
9.5
2
0
-2
-4
-50 0
DIE TEMPERATURE (°C)
V
OS
(mV)
15050 100
-2
-4
-5
-6
-50 50
DIE TEMPERATURE (°C)
I
BIAS
(µA)
100 1500
-3
55
53
51
49
47
45
-50
DIE TEMPERATURE (°C)
SLEW RATE (V/µs)
50 1500100
160
140
100
60
20
0
0.01
ACCURACY (%)
SETTLING TIME (ns)
1.00.1
120
80
40
V
S
= ±2.5V
V
O
= 2V
P-P
V
S
= ±12V
V
O
= 5V
P-P
V
S
= ±12V
V
O
= 2V
P-P
EL2227

EL2227CSZ

Mfr. #:
Manufacturer:
Renesas / Intersil
Description:
High Speed Operational Amplifiers EL2227CSZ VERY LW NOISE DL AMP
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
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