MC33201, MC33202, MC33204, NCV33202, NCV33204
http://onsemi.com
7
,EXCESS
PHASE
(DEGREES)
VCC, VEE, SUPPLY VOLTAGE (V)
I SC
,OUTPUT
SHOR
T
CIRCUIT
CURRENT
(mA)
SR,
SLEW
RA
TE
(V/
s)μ
TA, AMBIENT TEMPERATURE (°C)
VCC = +2.5 V
VEE = -2.5 V
VO = ± 2.0 V
Figure 14. Output Short Circuit Current
versus Temperature
Figure 15. Supply Current per Amplifier
versus Supply Voltage with No Load
I
Figure 16. Slew Rate
versus Temperature
TA, AMBIENT TEMPERATURE (°C)
Figure 17. Gain Bandwidth Product
versus Temperature
Figure 18. Voltage Gain and Phase
versus Frequency
Figure 19. Voltage Gain and Phase
versus Frequency
f, FREQUENCY (Hz)
GBW
,GAIN
BANDWIDTH
PRODUCT
(MHz)
A
,OPEN
LOOP
VOL
TAGE
GAIN
(dB)
VCC = +5.0 V
VEE = Gnd
CC
,SUPPL
Y
CURRENT
PER
AMPLIFIER
(mA)
TA = 125°C
TA = -55°C
Source
Sink
TA = 25°C
+Slew Rate
-Slew Rate
TA, AMBIENT TEMPERATURE (°C)
VCC = +2.5 V
VEE = -2.5 V
f = 100 kHz
VOL
,EXCESS
PHASE
(DEGREES)
f, FREQUENCY (Hz)
O
70
50
30
10
-10
-30
2.0
0
1.5
0.5
1.0
2.0
1.6
0
150
125
75
25
0
70
50
30
100
4.0
3.0
2.0
0
1.0
10
-10
-30
50
1.2
0.8
0.4
±1.0
± 2.0
± 3.0
± 4.0
± 5.0
± 6.0
10 k
100 k
1.0 M
10 M
-55 -40 -25
25
70
125
0
85
105
± 0
-55 -40 -25
25
70
125
0
85
105
-55 -40 -25
25
70
125
0
85
105
10 k
100 k
1.0 M
10 M
240
40
80
120
160
200
40
80
120
160
200
240
A
,OPEN
LOOP
VOL
TAGE
GAIN
(dB)
VOL
1A - Phase, CL = 0 pF
1B - Gain, CL = 0 pF
2A - Phase, CL = 300 pF
2B - Gain, CL = 300 pF
1A - Phase, VS = ± 6.0 V
1B - Gain, VS = ± 6.0 V
2A - Phase, VS = ± 1.0 V
2B - Gain, VS = ± 1.0 V
VS = ± 6.0 V
TA = 25°C
RL = 600 W
CL = 0 pF
TA = 25°C
RL = 600 W
1A
2A
2B
1B
1A
2A
2B
1B