Datasheet ADA4899-1 (Analog Devices)
Hersteller | Analog Devices |
Beschreibung | Unity-Gain Stable, Ultralow Distortion, 1 nV/√Hz Voltage Noise, High Speed Op Amp |
Seiten / Seite | 20 / 1 — Unity-Gain Stable, Ultralow Distortion,. 1 nV/. Hz Voltage Noise, High … |
Revision | C |
Dateiformat / Größe | PDF / 611 Kb |
Dokumentensprache | Englisch |
Unity-Gain Stable, Ultralow Distortion,. 1 nV/. Hz Voltage Noise, High Speed Op Amp. Data Sheet. ADA4899-1. FEATURES
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Unity-Gain Stable, Ultralow Distortion, 1 nV/
Hz Voltage Noise, High Speed Op Amp Data Sheet ADA4899-1 FEATURES CONNECTION DIAGRAMS Unity-gain stable ADA4899-1 Ultralow noise: 1 nV/√Hz, 2.6 pA/√Hz DISABLE 1 8 +VS Ultralow distortion −117 dBc at 1 MHz FEEDBACK 2 7 VOUT High speed –IN 3 6 NIC −3 dB bandwidth: 600 MHz (G = +1) +IN 4 5 –VS Slew rate: 310 V/μs
1
NOTES
-00
1. NIC = NO INTERNAL CONNECTION. Offset voltage: 230 μV maximum
720
2. THE EXPOSED PAD MUST BE SOLDERED TO THE GROUND PLANE.
05
Low input bias current: 100 nA
Figure 1. 8-Lead LFCSP (CP-8-13)
Wide supply voltage range: 5 V to 12 V ADA4899-1 Supply current: 14.7 mA TOP VIEW (Not to Scale) High performance pinout FEEDBACK 1 8 DISABLE Disable mode –IN 2 7 +VS APPLICATIONS +IN 3 6 VOUT –VS 4 5 –VS Analog-to-digital drivers
02 0
Instrumentation
0-
NOTES
572
1. THE EXPOSED PAD MUST BE SOLDERED TO THE GROUND PLANE.
0
Filters
Figure 2. 8-Lead SOIC (RD-8-1)
IF and baseband amplifiers DAC buffers Optical electronics GENERAL DESCRIPTION
The ADA4899-1 is an ultralow noise (1 nV/√Hz) and distortion The ADA4899-1 is available in a 3 mm × 3 mm LFCSP and an (<−117 dBc at 1 MHz) unity-gain stable voltage feedback op 8-lead SOIC package. Both packages feature an exposed metal amp, the combination of which makes it ideal for 16-bit and paddle that improves heat transfer to the ground plane, which is 18-bit systems. The ADA4899-1 features a linear, low noise a significant improvement over traditional plastic packages. The input stage and internal compensation that achieves high slew ADA4899-1 is rated to work over the extended industrial rates and low noise even at unity gain. The Analog Devices, temperature range, −40°C to +125°C. Inc., proprietary next-generation XFCB process and innovative
–40 G = +1
circuit design enable such high performance amplifiers.
V –50 S = ±5V RL = 1kΩ
The ADA4899-1 drives 100 Ω loads at breakthrough performance
VOUT = 2V p-p c) –60 B
levels with only 15 mA of supply current. With the wide supply
d N (
voltage range (4.5 V to 12 V), low offset voltage (230 μV maxi-
–70 IO
mum), wide bandwidth (600 MHz), and slew rate (310 V/μs),
RT –80 O T
the ADA4899-1 is designed to work in the most demanding
S HD3 –90
applications. The ADA4899-1 also features an input bias current
C DI HD2 NI
cancellation mode that reduces input bias current by a factor of 60.
O –100 –110 HARM
1
–120
-07 20 057
–130 0.1 1 10 100 FREQUENCY (MHz)
Figure 3. Harmonic Distortion vs. Frequency
Rev. C Document Feedback Information furnished by Analog Devices is believed to be accurate and reliable. However, no responsibility is assumed by Analog Devices for its use, nor for any infringements of patents or other rights of third parties that may result from its use. Specifications subject to change without notice. No One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A. license is granted by implication or otherwise under any patent or patent rights of Analog Devices. Tel: 781.329.4700 ©2005–2016 Analog Devices, Inc. All rights reserved. Trademarks and registered trademarks are the property of their respective owners. Technical Support www.analog.com
Document Outline FEATURES APPLICATIONS CONNECTION DIAGRAMS GENERAL DESCRIPTION TABLE OF CONTENTS REVISION HISTORY SPECIFICATIONS WITH ±5 V SUPPLY SPECIFICATIONS WITH +5 V SUPPLY ABSOLUTE MAXIMUM RATINGS MAXIMUM POWER DISSIPATION ESD CAUTION TYPICAL PERFORMANCE CHARACTERISTICS TEST CIRCUITS THEORY OF OPERATION PACKAGING INNOVATION DISABLE\ PIN APPLICATIONS INFORMATION UNITY-GAIN OPERATION RECOMMENDED VALUES FOR VARIOUS GAINS NOISE ADC DRIVER DISABLE\ PIN OPERATION ADA4899-1 MUX CIRCUIT CONSIDERATIONS PCB Layout Power Supply Bypassing Grounding OUTLINE DIMENSIONS ORDERING GUIDE