Datasheet
Table Of Contents
- FEATURES
- APPLICATIONS
- GENERAL DESCRIPTION
- CONNECTION DIAGRAM
- TABLE OF CONTENTS
- SPECIFICATIONS
- ABSOLUTE MAXIMUM RATINGS
- PIN CONFIGURATION AND FUNCTION DESCRIPTIONS
- TYPICAL PERFORMANCE CHARACTERISTICS
- TEST CIRCUITS
- OPERATIONAL DESCRIPTION
- THEORY OF OPERATION
- GENERAL USAGE OF THE AD8132
- DIFFERENTIAL AMPLIFIER WITHOUT RESISTORS (HIGH INPUT IMPEDANCE INVERTING AMPLIFIER)
- OTHER β2 = 1 CIRCUITS
- VARYING β2
- β1 = 0
- ESTIMATING THE OUTPUT NOISE VOLTAGE
- CALCULATING INPUT IMPEDANCE OF THE APPLICATION CIRCUIT
- INPUT COMMON-MODE VOLTAGE RANGE IN SINGLE-SUPPLY APPLICATIONS
- SETTING THE OUTPUT COMMON-MODE VOLTAGE
- DRIVING A CAPACITIVE LOAD
- OPEN-LOOP GAIN AND PHASE
- LAYOUT, GROUNDING, AND BYPASSING
- APPLICATIONS INFORMATION
- OUTLINE DIMENSIONS

AD8132
Rev. I | Page 16 of 32
V
S
= ±5V, +5V, +3V
40mV 5ns
01035-041
Figure 35. Small Signal Transient Response, G = +1
300mV 5ns
V
S
= 3V
V
O, dm
= 1.5V p-p
C
F
= 0pF
C
F
= 0.5pF
0
1035-042
Figure 36. Large Signal Transient Response, G = +1
400mV 5ns
V
S
= 5V
V
O, dm
= 2V p-p
C
F
= 0pF
C
F
= 0.5pF
0
1035-043
Figure 37. Large Signal Transient Response, G = +1
V
S
= ±5V
V
O, dm
= 2V p-p
400mV 5ns
C
F
= 0pF
C
F
= 0.5pF
01035-044
Figure 38. Large Signal Transient Response, G = +1
1V 5ns
V
–OUT
V
+OUT
V
+DIN
V
O, dm
01035-045
Figure 39. Large Signal Transient Response, G = +1
40mV 5ns
V
S
= ±5V, +5V, +3V
01035-046
Figure 40. Small Signal Transient Response, G = +2