FMC161 FPGA Mezzanine Card

Multi-mode analog input

FMC161
FMC161

This product is no longer recommended for new designs.

Product Details

The FMC161 provides one 12-bit A/D channel at 3.6Gsps or two A/D channels at 1.8Gsps clocked by either an internal clock source (optionally locked to an external reference) or an externally supplied sample clock. In addition, a trigger input for customized sampling control is available to users. It is mechanically and electrically compliant with the FMC standard (ANSI/VITA 57.1).

 

With a high-pin count connector, front panel I/O, and able to be used in a conduction cooled environment, the design is based on Texas Instruments' ADC12D1800 Analog-to-Digital converter. The analog signals are AC coupled connecting to MMCX or SSMC coax connectors on the front panel.

 

The FMC161 allows flexible control of clock source through serial communication buses.

 

Furthermore, the card is equipped with power supply and temperature monitoring and offers several power-down modes to switch off unused functions in order to reduce system level power consumption. It is well suited for low power applications such as airborne where the highest level of performance is required while ensuring that mission range is not affected.

Board Support Package

Our Board Support Package helps customers get their hardware implementation underway as quickly as possible by providing reference designs, the Stellar IP FPGA development tool, and the 4FM GUI user interface for controlling and monitoring the hardware, as well as other supporting elements.

Downloads

Brochure

Advanced RF and DSP Solutions

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Case Studies

Advanced Radio Astronomy Systems for Universal Observations

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Datasheet

FMC161 Datasheet

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FPGA Board Support Package

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Ruggedization Levels Datasheet

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Solution Briefs

RFSoC for Radar and Electronic Warfare

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Electronic warfare sensor processing in a SWaP-constrained

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White Paper

A guide to multi-channel synchronization for MIMO systems

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A guide to multi-channel synchronization for MIMO systems

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Addressing the challenges of low latency for embedded applications

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Creating Flexible Hardware Systems with FPGA Partial Reconfiguration

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Electronic warfare: an introduction to low latency COTS solutions

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Hypersonic Flight Raises the Bar for Embedded Electronics

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Leveraging FPGAs for Evolving ISR Application Requirements.

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Selecting the Optimal DSP Solution for EW Applications

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Technologies for responding to in cognitive RF and EW

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Multi-mode analog input