Vendor: Socionext Europe GmbH Category: ADC

8-bit <=51GSa/s Ultra-high-speed ADC in 16nm TSMC CMOS

Originally developed for high speed optical communication systems but used in many other applications Low power consumption Small…

8 Bit TSMC 16nm Silicon Proven View all specifications

Overview

Originally developed for high speed optical communication systems but used in many other applications
Low power consumption
Small area
Simple integration process

Generic, flexible, silicon-proven
Larger range of IP Macro family is available
Field proven: many different variants deployed in various devices in the market

Development Kits for initial evaluation available (SNEUADCDAC16H)

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Key features

  • ADC with ultra-high sampling rate, low power, high BW, high ENOB
  • Process technology: 16nm
  • Resolution: 8 bit
  • Sampling rate: 30– 51 GSa/s (H variant)
  • Programmable analogue input range: 0.5 – 1.7VPPDIFF
  • Output clock @Fs/128 to digital core per channel
  • Bandwidth (-3dB): 0.4*Fs
  • Fully programmable and high performance fractional DPLL
  • Available in single channel, IQ pair, 2x IQ pair and 4x IQ pair
  • Fully specified for -5C to 100C operation
  • APB control interface

Benefits

  • Socionext has over 40 years’ experience and is a leader in state-of-the art system-on-chip technology and provides high performance SoC designs, serial transceiver technologies and advanced packaging solutions.
  • Socionext combines specialist high-speed analogue, mixed-signal and digital designs having SoCs with large capacities, small sizes, and low power consumption through realization of 40nm, 28nm, 16nm and further advanced technologies.
  • Therefore, in addition to IP offering , also total SoC (ASIC) solutions that include proven high-speed and large-pin-count package design, and verification can be supported/provided.
  • IP and Base Technology for the most Advanced Digital Coherent SoCs including:
    • Low-power, high-speed ADC
    • Low-power, high-speed DAC
    • Low-power High-speed VSR/MR/LR SerDes (1–56 Gb/s)
    • Jitter Cleaning PLLs
    • Temperature Sensor

Applications

  • Wireline/Optical Networking
  • Wireless/Satellite Communication
  • Antenna/Phased-Array Communication Sytems/MIMO
  • Test & Measurement Equipment
  • Industrial and Customer applications

What’s Included?

  • Documentation: Datasheet, User Guides, Test Report
  • Hard Macro & integration support
  • Abstract LEF and timing LIB files with constraints
  • Behavioral Verilog model
  • Example test bench
  • Layout/Package guide

Silicon Options

Foundry Node Process Maturity
TSMC 16nm 16nm 160 nm Silicon Proven

Specifications

Identity

Part Number
SNEUADC051H16
Vendor
Socionext Europe GmbH
Type
Silicon IP

Analog

Resolution bits
8 Bit

Files

Note: some files may require an NDA depending on provider policy.

Provider

Learn more about ADC IP core

Uncertainty-Guided Live Measurement Sequencing for Fast SAR ADC Linearity Testing

This paper introduces a novel closed-loop testing methodology for efficient linearity testing of high-resolution Successive Approximation Register (SAR) Analog-to-Digital Converters (ADCs). Existing test strategies, including histogram-based approaches, sine wave testing, and model-driven reconstruction, often rely on dense data acquisition followed by offline post-processing, which increases overall test time and complexity.

Three ways of looking at a sigma-delta ADC device

The growing availability of digital ICs like microcontrollers, microprocessors, and field-programmable gate arrays (FPGAs) allows developers to use complex digital processing techniques rather than analog signal conditioning. For this reason, analog-to-digital converters (ADCs) have become a widely-used component in mixed-signal circuits.

Specifying a PLL Part 1: Calculating PLL Clock Spur Requirements from ADC or DAC SFDR

In high end RF systems, such as 5G radios, the requirements are so stringent that the source of this strongest unwanted tone can be the PLL. This article outlines how spurs in the input clock to the ADC or DAC may limit the SFDR. This in turn will set the requirements for the spurs for the input clock (from a PLL), in order to achieve a specific SFDR.

Save power in IoT SoCs by leveraging ADC characteristics

Power-sensitive applications such as Internet-of-Things (IoT) require a comprehensive power savings strategy within the system-on-chip (SoC). Techniques relying solely on the use of traditional power down modes and low supply voltage may not be enough to achieve the required power targets. The analog block is often assumed to be too sensitive and not compatible with aggressive power management techniques.

High Speed ADC Data Transfer

When continuously running a high speed ADC, it can be a challenge to deal with the firehose of raw data available at the output. To use City Semiconductor’s 2.5 GS/s 12-bit ADC, for example, 30 gigabits per second of data have to be accepted.

Frequently asked questions about ADC IP cores

What is 8-bit?

8-bit is a ADC IP core from Socionext Europe GmbH listed on Semi IP Hub. It is listed with support for tsmc Silicon Proven.

How should engineers evaluate this ADC?

Engineers should review the overview, key features, supported foundries and nodes, maturity, deliverables, and provider information before shortlisting this ADC IP.

Can this semiconductor IP be compared with similar products?

Yes. Buyers can compare this product with similar semiconductor IP cores or IP families based on category, provider, process options, and structured technical specifications.

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