Datasheet
MC33201, MC33202, MC33204, NCV33202, NCV33204
http://onsemi.com
4
DC ELECTRICAL CHARACTERISTICS (cont.) (V
CC
= + 5.0 V, V
EE
= Ground, T
A
= 25°C, unless otherwise noted.)
Characteristic Figure Symbol Min Typ Max Unit
Input Offset Current (V
CM
= 0 V to 0.5 V, V
CM
= 1.0 V to 5.0 V)
T
A
= + 25°C
T
A
= − 40° to +105°C
T
A
= − 55° to +125°C
− ⎮I
IO
⎮
−
−
−
5.0
10
−
50
100
200
nA
Common Mode Input Voltage Range − V
ICR
V
EE
− V
CC
V
Large Signal Voltage Gain (V
CC
= + 5.0 V, V
EE
= − 5.0 V)
R
L
= 10 kW
R
L
= 600 W
7 A
VOL
50
25
300
250
−
−
kV/V
Output Voltage Swing (V
ID
= ± 0.2 V)
R
L
= 10 kW
R
L
= 10 kW
R
L
= 600 W
R
L
= 600 W
8, 9, 10
V
OH
V
OL
V
OH
V
OL
4.85
−
4.75
−
4.95
0.05
4.85
0.15
−
0.15
−
0.25
V
Common Mode Rejection (V
in
= 0 V to 5.0 V) 11 CMR 60 90 − dB
Power Supply Rejection Ratio
V
CC
/V
EE
= 5.0 V/GND to 3.0 V/GND
12 PSRR
500 25 −
mV/V
Output Short Circuit Current (Source and Sink) 13, 14 I
SC
50 80 − mA
Power Supply Current per Amplifier (V
O
= 0 V)
T
A
= − 40° to +105°C
T
A
= − 55° to +125°C
15 I
D
−
−
0.9
0.9
1.125
1.125
mA
AC ELECTRICAL CHARACTERISTICS (V
CC
= + 5.0 V, V
EE
= Ground, T
A
= 25°C, unless otherwise noted.)
Characteristic Figure Symbol Min Typ Max Unit
Slew Rate
(V
S
= ± 2.5 V, V
O
= − 2.0 V to + 2.0 V, R
L
= 2.0 kW, A
V
= +1.0)
16, 26 SR
0.5 1.0 −
V/ms
Gain Bandwidth Product (f = 100 kHz) 17 GBW − 2.2 − MHz
Gain Margin (R
L
= 600 W, C
L
= 0 pF)
20, 21, 22 A
M
− 12 − dB
Phase Margin (R
L
= 600 W, C
L
= 0 pF)
20, 21, 22 O
M
− 65 − Deg
Channel Separation (f = 1.0 Hz to 20 kHz, A
V
= 100) 23 CS − 90 − dB
Power Bandwidth (V
O
= 4.0 V
pp
, R
L
= 600 W, THD ≤ 1 %)
BW
P
− 28 − kHz
Total Harmonic Distortion (R
L
= 600 W, V
O
= 1.0 V
pp
, A
V
= 1.0)
f = 1.0 kHz
f = 10 kHz
24 THD
−
−
0.002
0.008
−
−
%
Open Loop Output Impedance
(V
O
= 0 V, f = 2.0 MHz, A
V
= 10)
⎮Z
O
⎮
− 100 −
W
Differential Input Resistance (V
CM
= 0 V) R
in
− 200 −
kW
Differential Input Capacitance (V
CM
= 0 V) C
in
− 8.0 − pF
Equivalent Input Noise Voltage (R
S
= 100 W)
f = 10 Hz
f = 1.0 kHz
25 e
n
−
−
25
20
−
−
Hz
nV/
Equivalent Input Noise Current
f = 10 Hz
f = 1.0 kHz
25 i
n
−
−
0.8
0.2
−
−
pA/
Hz
