7
FIGURE 13. AVOL AND VOUT vs LOAD RESISTANCE
FIGURE 14. NORMALIZED SLEW RATE vs TEMPERATURE
FIGURE 15. SUPPLY CURRENT vs TEMPERATURE
FIGURE 16. VOUT MAX (UNDISTORTED SINEWAVE OUTPUT)
vs FREQUENCY
FIGURE 17. OPEN LOOP GAIN AND PHASE vs FREQUENCY
FIGURE 18. PEAK-TO-PEAK NOISE VOLTAGE (0.1Hz TO 10Hz)
Typical Performance Curves Unless Otherwise Specied: TA = 25oC, VSUPPLY = ±15V (Continued)
TA = 25
oC
LOAD RESISTANCE (k
)
04
6
8
10
17
16
15
13
12
10
7
4
A
VO
L
(100kV/V)
AND
V
OUT
(V)
2
14
11
9
8
6
5
AVOL
VOUT
TEMPERATURE (oC)
-60
-40
-20
0
20
40
60
80
120
100
0.95
0.96
0.97
0.98
0.99
1.0
1.01
1.02
1.03
1.04
1.05
SLEW
RA
TE
NORMALIZED
T
O
1
A
T
30
o
C
RL = 2K, CL = 50pF, TA = 25
oC
TEMPERATURE (oC)
-55
25
125
2.82
VO = 0V, VS = ±15V
2.80
2.78
2.76
2.74
2.72
2.70
2.68
SUPPL
Y
CURRENT
(mA)
FREQUENCY (MHz)
0
0.4
0.8
1.2
1.6
2
4
8
12
16
20
24
28
OUTPUT
V
O
L
T
A
GE
(V
P-P
)
RL = 2K, CL = 50pF, TA = 25
oC
1M
100K
10K
1K
100
100M
0
20
60
80
100
120
140
40
GAIN
(dB)
GAIN
PHASE
10M
10
FREQUENCY (Hz)
PHASE
SHIFT
(DEGREES)
-180
-135
-90
-45
0
ACL = 25,000V/V
Horizontal Scale = 1s/Div.
Vertical Scale = 0.002
V/Div., EN = 0.08VP-P RTI
HA-5137A