4
FN7193.3
July 26, 2007
Typical Performance Curves
Non-Inverting Frequency Response (Gain)
1M 10M 100M 1G
6
2
-2
-6
-10
-14
Frequency (Hz)
Normalized Magnitude (dB)
A
V
=2
A
V
=5
A
V
=10
A
V
=1
R
F
=750Ω
R
L
=150Ω
Non-Inverting Frequency Response (Phase)
1M 10M 100M 1G
90
0
-90
-180
-270
-360
Frequency (Hz)
Phase (°)
A
V
=2
A
V
=5
A
V
=10
A
V
=1
R
F
=750Ω
R
L
=150Ω
Inverting Frequency Response (Gain)
1M 10M 100M 1G
6
2
-2
-6
-10
-14
Frequency (Hz)
Normalized Magnitude (dB)
A
V
=-2
A
V
=-3
A
V
=-1
R
F
=500Ω
R
L
=150Ω
Inverting Frequency Response (Phase)
1M 10M 100M 1G
90
0
-90
-180
-270
-360
Frequency (Hz)
Phase (°)
A
V
=-2
A
V
=-3
A
V
=-1
R
F
=500Ω
R
L
=150Ω
Frequency Response for Various R
L
1M 10M 100M 1G
6
2
-2
-6
-10
-14
Frequency (Hz)
Normalized Magnitude (dB)
A
V
=2
R
F
=500Ω
R
L
=100Ω
R
L
=500Ω
R
L
=150Ω
Frequency Response for Various C
IN
-
1M 10M 100M 1G
10
6
2
-2
-6
-10
Frequency (Hz)
Normalized Magnitude (dB)
A
V
=2
R
F
=500Ω
R
L
=150Ω
0pF added
2pF added
1pF added
EL5293, EL5293A
5
FN7193.3
July 26, 2007
Typical Performance Curves (Continued)
Frequency Response for Various C
L
1M 10M 100M 1G
14
10
6
2
-2
-6
Frequency (Hz)
Normalized Magnitude (dB)
A
V
=2
R
L
=150Ω
R
F
=R
G
=500Ω
33pF
22pF
15pF
8pF
0pF
Group Delay vs Frequency
1M 10M 100M 1G
Frequency (Hz)
Delay (ns)
A
V
=1
R
F
=750Ω
A
V
=2
R
F
=500Ω
Frequency Response for Various Common-Mode
Input Voltages
1M 10M 100M 1G
6
2
-2
-6
-10
-14
Frequency (Hz)
Normalized Magnitude (dB)
A
V
=2
R
F
=500Ω
R
L
=150Ω
V
CM
=3V V
CM
=0V
V
CM
=-3V
3.5
0
3
2.5
2
1.5
1
0.5
Frequency Response for Various R
F
1M 10M 100M 1G
6
2
-2
-6
-10
-14
Frequency (Hz)
Normalized Magnitude (dB)
A
V
=2
R
G
=R
F
R
L
=150Ω
340Ω 475Ω
620Ω
750Ω
1.2kΩ
Transimpedance (ROL) vs Frequency
1k
Frequency (Hz)
10k 100k 1M 10M 100M 1G
10M
100
1k
10k
100k
1M
Phase
PSRR and CMRR vs Frequency
PSRR/CMRR (dB)
Frequency (Hz)
Magnitude (Ω)
20
-80
-60
-40
-20
0
10k 100k 1M 10M 1G100M
-90
-180
-270
-360
0
Phase (°)
Gain
PSRR+
PSRR-
CMRR
EL5293, EL5293A
6
FN7193.3
July 26, 2007
Typical Performance Curves (Continued)
-3dB Bandwidth vs Supply Voltage for Non-Inverting
Gains
56 910
400
200
150
100
50
0
Total Supply Voltage (V)
-3dB Bandwidth (MHz)
A
V
=2
A
V
=5
A
V
=10
A
V
=1
R
F
=750Ω
R
L
=150Ω
Peaking vs Supply Voltage for Non-Inverting Gains
4
3.5
2
1
0.5
0
Total Supply Voltage (V)
Peaking (dB)
A
V
=2
A
V
=1
R
F
=750Ω
R
L
=150Ω
-3dB Bandwidth vs Supply Voltage for Inverting Gains
250
200
150
100
0
Total Supply Voltage (V)
-3dB Bandwidth (MHz)
A
V
=-2
A
V
=-5
A
V
=-1
R
F
=500Ω
R
L
=150Ω
350
78
56 91078
56 91078
300
250
50
A
V
=10
2.5
1.5
3
Peaking vs Supply Voltage for Inverting Gains
2.5
2
1.5
1
0.5
0
Total Supply Voltage (V)
Peaking (dB)
A
V
=-2
A
V
=-1
R
F
=500Ω
R
L
=150Ω
56 91078
-3dB Bandwidth vs Temperature for Inverting Gains
250
200
150
50
0
-40 10 110 160
Ambient Temperature (°C)
-3dB Bandwidth (MHz)
100
60
-3dB Bandwidth vs Temperature for Non-Inverting
Gains
500
400
300
100
0
-40 10 110 160
Ambient Temperature (°C)
-3dB Bandwidth (MHz)
200
60
A
V
=1
A
V
=2
A
V
=5
A
V
=10
R
F
=750Ω
R
L
=150Ω
A
V
=-1
A
V
=-2
A
V
=-5
R
F
=500Ω
R
L
=150Ω
EL5293, EL5293A

EL5293CS

Mfr. #:
Manufacturer:
Renesas / Intersil
Description:
IC OPAMP CFA 2 CIRCUIT 8SOIC
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
T/T Paypal Visa MoneyGram Western Union

Products related to this Datasheet