High speed A/D converter>10MSPS

Analog Design Tool: Visual Analog™

Analog Design Tool: Visual Analog™
Analog Design Tool: Visual Analog™

VisualAnalog™ is a software package that combines powerful simulation and data analysis tools with an easy-to-use graphical interface for designers looking to select and evaluate high speed ADCs. VisualAnalog allows designers to customize input signals and data analysis.

 

VisualAnalog™ page

 

IF/RF receiver

IF/RF receivers are designed for communication infrastructure applications. The wide bandwidth and high sample rate make it possible to implement a software configurable design for digitization close to the antenna. It supports various receiver architectures including zero IF, IF sampling and direct RF sampling.

Mixed signal front end

Mixed-Signal Front-End (MxFER) devices are designed for broadband network applications ranging from home networks to communication infrastructure systems. Analog front-end (AFE) integrates amplifiers, filters, receive path data conversion (IF and RF A/D converters), transmit path data conversion (IF and RF DACs), and leverages smart partitioning Optimized.

Signal Chain µModule Receiver

Analog Devices µModule® (micromodule) receivers consist of a fixed-gain high-speed ADC, a high-speed amplifier and an anti-aliasing filter. We support the customer's system design by simplifying the important layout design to draw out.

Standard high speed A/D converter >20MSPS

Analog Devices high-speed analog-to-digital converters (ADCs) offer industry-leading performance and sampling speeds. The product line includes low IF A/D converters (20 MSPS to 125 MSPS), high IF A/D converters (125 MSPS to 1.3 GSPS) and wideband ADCs (>1 GSPS).

Precision A/D converter < 20 MSPS

4-20mA input A/D converter (ADC)

Analog Devices' 4-20mA input A/D converter products offer the accuracy, robustness, and flexibility that make them ideal for industrial control applications. 4-20mA input A/D converters are integrated for maximum performance with sense resistors, signal conditioning circuitry, and on-chip diagnostics to provide system-level solutions.

Isolated A/D converter

In the motor control field, ADI's converters solve the challenges associated with current and voltage monitoring, optical encoder feedback, and resolver-to-digital conversion. An isolated ADC with a standoff voltage of 3.75 kV is just one example of a breakthrough that Analog Devices has achieved to ease the design burden on customers.

Multiplex A/D converter

ADI's precision multiplexed A/D converters feature a single ADC, 8-bit to 24-bit resolution, up to 16 channels, throughput from a few k to 10 MSPS, noise, linearity, dynamic Achieve industry-leading performance in the range. Designed to accept single-ended, differential, and pseudo-differential inputs, our multiplexed converters provide the functionality needed for next-generation end systems. The following architectures are available as A/D converters.

 

• Successive Approximation Register (SAR) ADC
• Sigma-Delta (ΣΔ) Modulator"

Multiplexed A/D converter technical articles

Precision Signal Chain µModule Solution

ADI's precision signal chain µModule® (micromodule) is a system-in-package (SiP) technology that combines various functions (PGIA, amplifier, ADC, DAC, switch/multi) and analog By integrating Devices' iPASSIVES technology, we will provide a more complete data conversion solution.

Precision Signal Chain µModule Solution Technical Article

Simultaneous sampling A/D converter

Simultaneous Sampling Precision A/D Converters from Analog Devices offer 2 to 8 discrete ADCs in a single package with 2 to 12 channels and resolutions from several k to 5 MSPS. Simultaneous sampling ADCs can convert multiple signals simultaneously and retain phase information. Supporting single-ended, differential and pseudo-differential inputs, we offer a variety of ADCs including the following architectures:


• Successive Approximation Register (SAR) ADC
• Sigma-Delta (ΣΔ) Modulator"

Single channel A/D converter

ADI's single-channel precision A/D converters offer industry-leading performance in noise, linearity, and dynamic range with resolutions from 8 to 24 bits and throughput from a few k to 10 MSPS. .

Integrated/special purpose converters

Analog Design Tool: Virtual Eval - BETA

Analog Design Tool: Virtual Eval - BETA
Analog Design Tool: Virtual Eval - BETA

Virtual Eval is a web application that assists designers in product evaluation of ADCs and DACs. Using detailed models residing on Analog Devices servers, Virtual Eval simulates the behavioral characteristics of critical components in seconds. You can set operating conditions such as input tone and external jitter, as well as device features such as gain and digital downconversion. Characterization includes noise, distortion and resolution, FFT, timing diagrams and frequency response plots.

 

Virtual Eval - BETA page

A/D & D/A converter combination

Analog Devices A/D and D/A converters provide solutions with integrated temperature sensors, GPIOs, and current sensing technology to save space and improve circuit operation over discrete on-board implementations. provides the configurability and reliability that systems demand. Combined A/D and D/A converters are ideal for configurable input/output stages and general system monitoring of peripherals such as system voltages, currents and power supplies.

digital temperature sensor

Analog Devices offers a wide range of digital temperature sensors with IC, SPI and markspace interfaces. Some products also include D/A converters, A/D converters, references, and limit alarm registers to support more complex system designs.

Power measurement IC

ADI's ADE energy metering ICs address the challenges of next-generation smart meter architectures by increasing energy consumption (kWh) in single-phase and multi-phase electricity meters, industrial equipment, and energy monitoring applications. , apparent energy (kVA), reactive energy (kVAR), rms and power quality with high accuracy.

S/D & R/D converter

Resolvers and synchros are transducers that convert the angular position and speed of the rotating shaft into electrical signals. Both output a signal proportional to the sine or cosine of the axis angle. R/D converters (RDC) and S/D converters (SDC) convert these signals into digital outputs corresponding to shaft angle and speed. Analog Devices RDCs and SDCs provide solutions for these applications.

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