Datasheet AD8031, AD8032 (Analog Devices) - 10

ManufacturerAnalog Devices
Description2.7 V, 800 μA, 80 MHz Rail-to-Rail I/O Amplifiers
Pages / Page20 / 10 — AD8031/AD8032. Data Sheet. S = 5V. G = +1. L = 1kΩ. GAIN. N (. OOP. D G. …
RevisionG
File Format / SizePDF / 422 Kb
Document LanguageEnglish

AD8031/AD8032. Data Sheet. S = 5V. G = +1. L = 1kΩ. GAIN. N (. OOP. D G. –90. –10. AL –1. rees). PHASE. RM –2. –135. –20. (Deg E. –180. HAS. P –225. 0.1. 100. 0.3

AD8031/AD8032 Data Sheet S = 5V G = +1 L = 1kΩ GAIN N ( OOP D G –90 –10 AL –1 rees) PHASE RM –2 –135 –20 (Deg E –180 HAS P –225 0.1 100 0.3

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AD8031/AD8032 Data Sheet 5 4 V 40 S = 5V G = +1 ) 3 R 30 B L = 1kΩ ) GAIN (d B IN d 2 20 A N ( G AI 1 10 OOP D G 0 -L E 0 N IZ E –90 –10 AL –1 OP rees) PHASE RM –2 –135 –20 NO (Deg E –3 –180 HAS –4 P –225 –5
29 6 0
0.1 1 10 100 0.3 1 10 100
02 6- 6-
FREQUENCY (MHz)
05
FREQUENCY (MHz)
05 01 01 Figure 26. Unity Gain, −3 dB Bandwidth Figure 29. Open-Loop Frequency Response
3 –20 2 VS = 5V VIN = –16dBm Bc) d –30 +85°C ( V ) 1 N G = +1, R CC B L = 2kΩ TO 2 d IO T –40 N ( R 0 O AI –40°C T IS D G +25°C E –1 D –50 1.3V p-p IZ IC N V 2.5V p-p S = 2.7V AL O V –2 V S = 2.7V S RM RM –60 2V p-p NO –3 2kΩ HA V V L S = 2.7V OUT V A IN T –70 –4 50Ω O T 4.8V p-p VS = 5V –5
7
–80 0.1 1 10 100
30 02
1k 10k 100k 1M 10M
0 6- 6-
FREQUENCY (MHz)
05
FUNDAMENTAL FREQUENCY (Hz)
05 01 01 Figure 27. Closed-Loop Gain vs. Temperature Figure 30. Total Harmonic Distortion vs. Frequency; G = +1
2 –20 VS = +2.7V 1 V R S = +5V L + CL TO 1.35V R c) –30 L + CL B G = +2 0 TO 2.5V d ) N ( VS = 5V V B –40 R CC d VS = ±5V IO L = 1kΩ TO ( –1 2 IN RT –2 O –50 T GA S 4.8V p-p –3 –60 OOP G = +1 C DI 1V p-p -L NI D –4 CL = 5pF O E R –70 L = 1kΩ OS –5 4.6V p-p L C HARM –80 –6 AL T 4V p-p O –7 T –90 –8
8
–100 100k 1M 10M 100M
02
1k 10k 100k 1M 10M
31 6- -0
FREQUENCY (Hz)
05 56 01
FUNDAMENTAL FREQUENCY (Hz)
10 0 Figure 28. Closed-Loop Gain vs. Supply Voltage Figure 31. Total Harmonic Distortion vs. Frequency; G +2 Rev. G | Page 10 of 20 Document Outline Features Applications General Description Connection Diagrams Table of Contents Revision History Specifications +2.7 V Supply +5 V Supply ±5 V Supply Absolute Maximum Ratings Maximum Power Dissipation ESD Caution Typical Performance Characteristics Theory of Operation Input Stage Operation Overdriving the Input Stage Output Stage, Open-Loop Gain and Distortion vs. Clearance from Power Supply Output Overdrive Recovery Driving Capacitive Loads Applications A 2 MHz Single-Supply, Biquad Band-Pass Filter High Performance, Single-Supply Line Driver Outline Dimensions Ordering Guide