Ultralow Distortion, High Speed 0.95 nV/Hz Voltage Noise Op Amp Data Sheet AD8099 APPLICATIONS FEATURES Pre-amplifiers Ultralow noise: 0.95 nV/Hz, 2.6 pA/Hz Receivers Ultralow distortion Instrumentation nd 2 harmonic R = 1 k , G = +2 L Filters 92 dB 10 MHz IF and baseband amplifiers rd 3 harmonic RL = 1 k , G = +2 A-to-D drivers 105 dB 10 MHz DAC buffers High speed Optical electronics GBWP: 3.8 GHz 3 dB bandwidth: 700 MHz (G = +2) CONNECTION DIAGRAMS 550 MHz (G = +10) Slew rate: 1 8 1 8 DISABLE +V FEEDBACK DISABLE S 475 V/s (G = +2) 2 7 2 7 FEEDBACK V IN +V OUT S 1350 V/s (G = +10) IN 3 6 C +IN 3 6 V New pinout C OUT Custom external compensation, gain range 1, +2 to +10 4 5 4 5 +IN V V C S S C Supply current: 15 mA NOTES NOTES 1. SOLDER THE EXPOSED PADDLE TO Offset voltage: 0.5 mV max 1. SOLDER THE EXPOSED PADDLE TO THE GROUND PLANE. THE GROUND PLANE. Wide supply voltage range: 5 V to 12 V Figure 1. 8-Lead LFCSP (CP-8-2) Figure 2. 8-Lead SOIC-EP (RD-8-1) GENERAL DESCRIPTION The AD8099 is an ultralow noise (0.95 nV/ ) and distortion The AD8099 is available in a 3 mm 3 mm lead frame chip Hz scale package (LFCSP) with a new pinout that is specifically (92 dBc 10 MHz) voltage feedback op amp, the combination optimized for high performance, high speed amplifiers. The of which make it ideal for 16- and 18-bit systems. The AD8099 new LFCSP package and pinout enable the breakthrough features a new, highly linear, low noise input stage that increases performance that previously was not achievable with amplifiers. the full power bandwidth (FPBW) at low gains with high slew The AD8099 is rated to work over the extended industrial rates. ADIs proprietary next generation XFCB process enables temperature range, 40C to +125C. such high performance amplifiers with relatively low power. 40 The AD8099 features external compensation, which lets the G = +2 V = 2V p-p OUT 50 user set the gain bandwidth product. External compensation V = 5V S R = 1k L allows gains from +2 to +10 with minimal trade-off in band- 60 width. The AD8099 also features an extremely high slew rate of 70 1350 V/s, giving the designer flexibility to use the entire 80 dynamic range without trading off bandwidth or distortion. The AD8099 settles to 0.1% in 18 ns and recovers from 90 overdrive in 50 ns. 100 The AD8099 drives 100 loads at breakthrough performance 110 levels with only 15 mA of supply current. With the wide supply 120 SOLID LINE SECOND HARMONIC voltage range (5 V to 12 V), low offset voltage (0.1 mV typ), DOTTED LINE THIRD HARMONIC 130 wide bandwidth (700 MHz for G = +2), and a GBWP up to 0.1 1.0 10.0 3.8 GHz, the AD8099 is designed to work in a wide variety of FREQUENCY (MHz) applications. Figure 3. Harmonic Distortion vs. Frequency and Gain (SOIC) Rev. D 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 One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A. rights of third parties that may result from its use. Specifications subject to change without notice. No Tel: 781.329.4700 20032013 Analog Devices, Inc. All rights reserved. license is granted by implication or otherwise under any patent or patent rights of Analog Devices. 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HARMONIC DISTORTION (dBc) 04511-0-001 04511-A-013 04511-0-002IMPORTANT LINKS for the AD8099* Last content update 08/25/2013 09:10 pm PARAMETRIC SELECTION TABLES DESIGN TOOLS, MODELS, DRIVERS & SOFTWARE Find Similar Products By Operating Parameters dBm/dBu/dBv Calculator High Speed Amplifiers Selection Table Analog Filter Wizard 2.0 Power Dissipation vs Die Temp ADIsimOpAmp OpAmp Stability DOCUMENTATION AN-0993: Active Filter Evaluation Board for Analog Devices, Inc., - Low AD8099 SPICE Macro-Model Distortion Pinout Op Amps AN-649: Using the Analog Devices Active Filter Design Tool AN-581: Biasing and Decoupling Op Amps in Single Supply Applications DESIGN COLLABORATION COMMUNITY AN-402: Replacing Output Clamping Op Amps with Input Clamping Amps AN-417: Fast Rail-to-Rail Operational Amplifiers Ease Design Collaborate Online with the ADI support team and other designers Constraints in Low Voltage High Speed Systems about select ADI products. MT-101: Decoupling Techniques Follow us on Twitter: www.twitter.com/ADI News MT-059: Compensating for the Effects of Input Capacitance on VFB Like us on Facebook: www.facebook.com/AnalogDevicesInc and CFB Op Amps Used in Current-to-Voltage Converters MT-058: Effects of Feedback Capacitance on VFB and CFB Op Amps MT-056: High Speed Voltage Feedback Op Amps MT-053: Op Amp Distortion: HD, THD, THD + N, IMD, SFDR, MTPR DESIGN SUPPORT MT-052: Op Amp Noise Figure: Dont Be Mislead Submit your support request here: MT-050: Op Amp Total Output Noise Calculations for Second-Order Linear and Data Converters Embedded Processing and DSP System MT-049: Op Amp Total Output Noise Calculations for Single-Pole Telephone our Customer Interaction Centers toll free: System Americas: 1-800-262-5643 MT-048: Op Amp Noise Relationships: 1/f Noise, RMS Noise, and Europe: 00800-266-822-82 Equivalent Noise Bandwidth China: 4006-100-006 India: 1800-419-0108 MT-047: Op Amp Noise Russia: 8-800-555-45-90 MT-033: Voltage Feedback Op Amp Gain and Bandwidth Quality and Reliability MT-032: Ideal Voltage Feedback (VFB) Op Amp Lead(Pb)-Free Data A Stress-Free Method for Choosing High-Speed Op Amps UG-064: AD8099 Evaluation Board User Guide Low-Cost Video Multiplexing Using High-Speed Amplifiers SAMPLE & BUY A Practical Guide to High-Speed Printed-Circuit-Board Layout AD8099 Op-amp Architecture Claims Better Balance of Trade-offs View Price & Packaging Request Evaluation Board Request Samples Check Inventory & Purchase EVALUATION KITS & SYMBOLS & FOOTPRINTS View the Evaluation Boards and Kits page for documentation and Find Local Distributors purchasing Symbols and Footprints * This page was dynamically generated by Analog Devices, Inc. and inserted into this data sheet. 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