Analog Devices Inc. AD9213 RF Analog-to-Digital Converters

Analog Devices Inc. AD9213 Radio Frequency (RF) Analog-to-Digital Converters (ADCs) are single, 12-bit, 6GSPS/10.25GSPS modules with a 6.5GHz input bandwidth. The AD9213 series maintains a high dynamic range frequency and time domain applications requiring wide instantaneous bandwidth and low conversion error rates (CER). The ADCs have a 16-lane JESD204B interface for maximum bandwidth capability and deliver dynamic range and linearity performance while consuming <4.6W (typical). The devices are based on an interleaved pipeline architecture and feature a proprietary calibration and randomization technique that suppresses interleaving spurious artifacts into its noise floor. Analog Devices AD9213 ADCs support sample-accurate multichip synchronization, including synchronization of the NCOs. The modules offer a junction temperature range of -20°C to +115°C and come in a 192-ball ball grid array (BGA) package.

Features

  • High instantaneous dynamic range
  • NSD
    • -155dBFS/Hz at 10GSPS with -9dBFS, 170MHz input
    • -153dBFS/Hz at 10GSPS with -1dBFS, 170MHz input
  • SFDR: 70dBFS at 10GSPS with -1dBFS, 1000MHz input
  • SFDR excluding H2 and H3 (worst other spur): 89dBFS at 10GSPS with -1dBFS, 1000MHz input
  • Low power dissipation: <4.6W typical at 10GSPS
  • Integrated input buffer (6.5GHz input bandwidth)
    • 1.4Vp-p full-scale analog input with RIN = 50Ω
    • Overvoltage protection
  • 16-lane JESD204B output (up to 16Gbps line rate)
  • Multichip synchronization capable with 1 sample accuracy
    • DDC NCO synchronization included
  • Integrated DDC
    • Selectable decimation factors
    • 16 profile settings for fast frequency hopping
  • Fast overrange detection for efficient AGC
  • On-chip temperature sensor
  • On-chip negative voltage generators
  • Low CER: <1×10-16
  • 12mm × 12mm, 192-ball BGA-ED package

Block Diagram

Block Diagram - Analog Devices Inc. AD9213 RF Analog-to-Digital Converters
Publié le: 2019-10-21 | Mis à jour le: 2025-12-02