HMC7043

RECOMMENDED FOR NEW DESIGNS

High Performance, 3.2 GHz, 14-Output Fanout Buffer with JESD204B/JESD204C

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Part Details

  • JEDEC JESD204B/JESD204C support
  • Low additive jitter: <15 fs rms at 2457.6 MHz (12 kHz to 20 MHz)
  • Very low noise floor: −155.2 dBc/Hz at 983.04 MHz
  • Up to 14 LVDS, LVPECL, or CML type device clocks (DCLKs)
    • Maximum CLKOUTx/CLKOUTx and SCLKOUTx/SCLKOUTx frequency of 3200 MHz
    • JESD204B/JESD204C-compatible system reference (SYSREF) pulses
    • 25 ps analog and ½ clock input cycle digital delay independently programmable on each of 14 clock output channels
  • SPI-programmable adjustable noise floor vs. power consumption
  • SYSREF valid interrupt to simplify JESD204B/JESD204C synchronization
  • Supports deterministic synchronization of multiple HMC7043 devices
  • RFSYNC pin or SPI-controlled SYNC trigger for output synchronization of JESD204B/JESD204C
  • GPIO alarm/status indicator to determine the health of the system
  • Clock input to support up to 6 GHz
  • On-board regulator for excellent PSRR
  • 48-lead, 7 mm × 7 mm LFCSP package
HMC7043

High Performance, 3.2 GHz, 14-Output Fanout Buffer with JESD204B/JESD204C

HMC7043 Functional Block Diagram HMC7043 Pin Configuration
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Tools & Simulations


Evaluation Kits

eval board
QUAD-MxFE Platform

16Tx/16Rx Direct L/S/C-Band Sampled Phased-Array/RADAR/EW/SATCOM Development Platform

Features and Benefits

Quad-MxFE Digitizing Card
  • Multi-Channel, Wideband System Development Platform Using MxFE
  • Mates With Xilinx VCU118 Evaluation Board (Not Included)
  • 16x RF Receive (Rx) Channels (32x Digital Rx Channels)
    • Total 16x 1.5GSPS to 4GSPS ADC
    • 48x Digital Down Converters (DDCs), Each Including Complex Numerically-Controlled Oscillators (NCOs)
    • 16x Programmable Finite Impulse Response Filters (pFIRs)
  • 16x RF Transmit (Tx) Channels (32x Digital Tx Channels)
    • Total 16x 3GSPS to 12GSPS DAC
    • 48x Digital Up Converters (DUCs) , Each Including Complex Numerically-Controlled Oscillators (NCOs)
  • Flexible Rx & Tx RF Front-Ends
    • Rx: Filtering, Amplification, Digital Step Attenuation for Gain Control
    • Tx: Filtering, Amplification
  • On-Board Power Regulation from Single 12V Power Adapter (Included)
  • Flexible Clock Distribution
    • On-Board Clock Distribution from Single External 500MHz Reference
    • Support for External Converter Clock per MxFE
16Tx / 16Rx Calibration Board
  • Mates to Quad-MxFE Digitizing Card & VCU118 PMOD Interface (Cable Included)
  • Provides Both Individual Adjacent Channel Loopback and Combined Channel Loopback Options
  • Combined Tx Channels Out Via SMA Option
  • Combined Rx Channels In Via SMA Option
  • On-Board Log Power Detectors With AD5592R Output To VCU118 Over PMOD
  • On-Board Power Regulation from Single 12V Power Adapter (Included)
Software Features and Benefits
Easy Control Tools and Platform Interfaces to Simplify Software Framework Developments:
  • IIO Oscilloscope GUI
  • MATLAB Add-Ons & Example Scripts
  • Example HDL Builds including JESD204b/JESD204c Bring-Up
  • Embedded Software Solutions for Linux and Device Drivers
  • MATLAB System Applications GUI
Software Reference Design Examples for ADEF Applications to Reduce Prototyping Time:
  • Multi-Chip Synchronization for Power-Up Phase Determinism
  • System-Level Amplitude/Phase Alignment Using NCOs
  • Low-Latency ADC-to-DAC Loopback Bypassing JESD Interface
  • pFIR Control for Broadband Channel-to-Channel Amplitude/Phase Alignment
  • Fast-Frequency Hopping
  • Calibration Board MATLAB Driver File
  • FPGA Programming MATLAB Script

Product Details

The Quad-MxFE System Development Platform contains four MxFE software defined, direct RF sampling transceivers, as well as associated RF front-ends, clocking, and power circuitry. The target application is phased array radars, electronic warfare, and ground-based SATCOM, specifically a 16 transmit/16 receive channel direct sampling phased array at L/S/C band (0.1 GHz to ~5GHz). The Rx & Tx RF front-end has drop-in configurations that allow for customized frequency ranges, depending on the user’s application.

The Quad-MxFE System Development Platform highlights a complete system solution. It is intended as a testbed for demonstrating multi-chip synchronization as well as the implementation of system level calibrations, beamforming algorithms, and other signal processing algorithms. The system is designed to mate with a VCU118 Evaluation Board from Xilinx®, which features the Virtex® UltraScale+ XCVU9P FPGA, with provided reference software, HDL code, and MATLAB system-level interfacing.

In addition to the Quad-MxFE Digitizing Card, the kit also contains a 16Tx / 16Rx Calibration Board that is used to develop system-level calibration algorithms, or otherwise more easily demonstrate power-up phase determinism in situations pertinent to their own use case. The Calibration Board also allows the user to demonstrate combined-channel dynamic range, spurious, and phase noise improvements and can also be controlled via a free MATLAB add-on when connected to the PMOD interface of the VCU118.

The system can be used to enable quick time-to-market development programs for applications like:

  • ADEF (Phased-Array, RADAR, EW, SATCOM)
  • Communications Infrastructure (Multiband 5G and mmWave 5G)
  • Electronic Test and Measurement

eval board
EVAL-HMC7043

HMC7043 Evaluation Kit

Features and Benefits

  • Simple power connection using USB connection and on-board low dropout (LDO) voltage regulator
  • LDO can be bypassed for power measurements
  • AC-coupled differential SMA connectors
  • SMA connectors for
    1 clock input
    1 RF sync input
    6 clock outputs
  • Microsoft® Windows®–based evaluation software with simple graphical user interface (GUI)
  • Easy access to digital input/output and diagnostic signals via input/output header (GPIO)
  • Status LED for diagnostic signals
  • USB computer interface

Product Details

The HMC7043 is a high performance clock buffer for the distribution of ultralow phase noise references for high speed data converters with either parallel or serial (JESD204B/JESD204C type) interfaces. The HMC7043 is designed to meet the requirements of multicarrier GSM and LTE base station designs, and offers a wide range of clock management and distribution features to simplify baseband and radio card clock tree designs.

The EK1HMC7043LP7F evaluation kit is a compact, easy-to-use platform for evaluating all the features of the HMC7043. All inputs and outputs are configured as differential on the EV2HMC7043LP7F evaluation board.

Full specifications on the HMC7043 are available in the product data sheet, which should be consulted in conjunction with this user guide UG-826 when working with the evaluation board.

QUAD-MxFE Platform
16Tx/16Rx Direct L/S/C-Band Sampled Phased-Array/RADAR/EW/SATCOM Development Platform
ADQUADMXFE1EBZ Board ADQUADMXFE1EBZ Evaluation Board - Top View ADQUADMXFE1EBZ Evaluation Board - Bottom View Quad-MxFE Evaluation Board with Lights QUAD-MxFE Block Diagram ADQUADMXFE-CAL Board ADQUADMXFE-CAL Evaluation Board - Top View ADQUADMXFE-CAL Evaluation Board - Bottom View
EVAL-HMC7043
HMC7043 Evaluation Kit
EK1HMC7043LP7F_ALL PARTS-web EK1HMC7043LP7F_ANGLE-web EK1HMC7043LP7F_BOTTOM-web EK1HMC7043LP7F_TOP-web EK1HMC7043LP7F_CORD ANGLE-web EK1HMC7043LP7F_CORD TOP-web EK1HMC7043LP7F_part_ANGLE-web EK1HMC7043LP7F_part_BOTTOM-web EK1HMC7043LP7F_part_TOP-web

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