Noise is one of the fundamental limiting factors for signal path accuracy. Analog Devices has a broad portfolio of low noise op amps including many with the lowest noise performance in the industry. ADI also offers op amps with low current noise, allowing system designer to achieve the lowest total system noise performance in applications with higher source impedances. Select parts from the parametric search table below to download parts datasheets and order samples.
The Analog Filter Wizard™ helps you design a low-pass, high-pass, band-pass or band-stop filter with actual op amps. It then simulates the filter’s performance with these op amps in real time. You can ask the tool to optimize for power, noise, or voltage range, and it will pick op amps and passive components appropriately. Or you can adjust the components manually yourself.
The photodiode web tool helps you select and design the best circuit for your application. To use the tool, enter the specifications of your light input, including intensity, spectral band, and the required signal bandwidth. These inputs will narrow down the available photodiode part numbers.
View all tools available for Analog Devices' Amplifiers products.
Search, compare and select products using our parametric selection tables.
The ADIsimADC tool is an aid to help in the selection of Analog to Digital Converterse (ADC's), perform evaluations and assist with troubleshooting. The tool uses typical data values to mathematically model the general behavior of the selected ADC. It allows a user to apply input signals, set encode (sample) rates and simulate FFT's on a selected ADC. It is useful for checking the SNR, SFDR, SINAD, THD, ENOB etc. of a selected ADC.
ADIsimDAC assists the user with finding Analog Devices' DACs and DAC Application Circuits. It takes user inputs along Typical Parametric Data to sort, select and suggest applicable DAC's, system components and circuit solutions.
View all tools available for Analog Devices' Data Converters products.
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ADIsimRF is an easy-to-use RF signal chain calculator. Cascaded Gain, Noise Figure, IP3 and P1dB as well as total power consumption are calculated. The number of stages can be varied up to a maximum of 15. Additional stages can be inserted at any point in teh signal chain and individual stages can be temporarily disabled or deleted. The calculator can be switched between Transmit Mode and Receive Mode where calculations are presented output-referred and input-referred respectively.
The ADIsimPLL design tool is a comprehensive and easy-to-use PLL synthesizer design and simulation tool. All key non-linear effects that can impact PLL performance can be simulated, including phase noise, Fractional-N spurs, and anti-backlash pulse. ADIsimPLL design tool eliminates time-consuming iterations from the PLL/synthesizer development process.
View all tools available for Analog Devices' RF ICs.
Search, compare and select products using our parametric selection tables.
ADIsimPower™ Voltage Regulator Design Tool produces custom DC-DC converter designs in about one minute. The user enters 5 inputs and chooses to optimize for efficiency, PCB space, cost, or part count. Output is a complete schematic, BOM, efficiency plot, and performance summary. A PDF summary and a blank PCB is offered for each design to facilitate fast prototyping to verify the design.
ADI's digital PWM (pulse-width modulation) power control and management devices provide designers with a highly integrated circuit architecture and the flexibility to configure system power-supply parameters in a matter of minutes using an intuitive GUI (graphical user interface). Power design egnineers with no prior programming experience can use the GUI to monitor and quickly adjust power functions such as frequency, timing, voltage settings, and protection limits.
View all tools available for Analog Devices' Power Management products.
Search, compare and select products using our parametric selection tables.
| Part# | Small Signal Bandwidth | Slew Rate | Input Voltage Noise | Input Offset Voltage | 1/F Noise | V Span Min | V Span Max | # OpAmps per Pkg | Packages | US Price 1000-4999 |
|---|---|---|---|---|---|---|---|---|---|---|
| AD797 | 8MHz | 20V/µs | 900pV/rtHz | 25µV | 50nV p-p | 10V | 36V | 1 | DIP, SOIC |
$ |
| AD8597Reference Circuit Available | 10MHz | 14V/µs | 1.07nV/rtHz | 10µV | 76nV p-p | 10V | 36V | 1 | CSP, SOIC |
$ |
| AD8599Reference Circuit Available | 10MHz | 16.8V/µs | 1.15nV/rtHz | 10µV | 76nV p-p | 9V | 30V | 2 | SOIC |
$ |
| ADA4004-1 | 12MHz | 2.7V/µs | 1.8nV/rtHz | 40µV | 150nV p-p | 10V | 30V | 1 | SOIC, SOT-23 |
$ |
| ADA4004-2Reference Circuit Available | 12MHz | 2.7V/µs | 1.8nV/rtHz | 40µV | 150nV p-p | 10V | 30V | 2 | SOIC, SOP |
$ |
| ADA4004-4 | 12MHz | 2.7V/µs | 1.8nV/rtHz | 40µV | 150nV p-p | 10V | 30V | 4 | CSP, SOIC |
$ |
| ADA4075-2 | 6.5MHz | 12V/µs | 2.8nV/rtHz | 300µV | 60nV p-p | 24V | 36V | 2 | CSP, SOIC |
$ |
| AD8675Reference Circuit Available | 10MHz | 2.5V/µs | 2.8nV/rtHz | 10µV | 100nV p-p | 10V | 36V | 1 | SOIC, SOP |
$ |
| AD8672Reference Circuit Available | 10MHz | 4V/µs | 2.8nV/rtHz | 20µV | 77nV p-p | 10V | 36V | 2 | SOIC, SOP |
$ |
| AD8671 | 10MHz | 4V/µs | 2.8nV/rtHz | 20µV | 77nV p-p | 10V | 36V | 1 | SOIC, SOP |
$ |