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Description

This design is a 9.8-GHz wideband, low-phase noise, integrated continuous wave (CW) RF signal generator with versatile spur reduction technique. The output level can be programmed from -32 dBm to 14.5 dBm in 0.5-dB steps. This signal generator can be used as local oscillator for applications, such (...)

Key Features

  • Integrated wideband frequency synthesizer with output range of 0.02 GHz to 9.8 GHz
  • Excellent phase-noise performance; synthesizer phase noise at 6 GHz, -110 dBc/Hz at 100-KHz offset, -132 dBc/Hz at 1-MHz offset
  • Low-noise synthesizer, in-band spurs (-75 dBc)
  • Programmable output level 14.5 dBm to -32 dBm (...)

Applications Matched

  • Space, Avionics & Defense

Description

The TIDA-01442 reference design utilizes the ADC12DJ3200 evaluation module (EVM) to demonstrate a direct RF-sampling receiver for a radar operating in HF, VHF, UHF, L-, S-, C-, and part of X-band. The wide analog input bandwidth and high sampling rate (6.4 GSPS) of the analog-to-digital (...)

Key Features

  • High-input-frequency capability of ADC allows RF sampling of signals from L-band to X-band
  • Max sample rate of 6.4 GSPS in single-channel (interleaved) mode and 3.2 GSPS in dual-channel mode
  • Four independent NCOs per DDC allow fast frequency hopping among bands
  • Clocking solution optimized for low jitter (...)

Applications Matched

  • Space, Avionics & Defense

Description

High speed multi-channel applications require precise clocking solutions capable of managing channel-to-channel skew in order to achieve optimal system SNR, SFDR, and ENOB. This reference design is capable of supporting two high speed channels on separate boards by utilizing TI’s LMX2594 (...)

Key Features

  • Up to 15GHz sample clock generation
  • Multi-channel JESD204B compliant clock solution
  • Low phase noise clocking for RF sampling ADC/DAC
  • Configurable phase synchronization to achieve low skew in multi-channel system
  • Supports TI’s high-speed converter and capture cards (ADC12DJ3200EVM, TSW14J56 / TSW14J57)

Applications Matched

  • Space, Avionics & Defense

Description

The TIDA-01346 design uses two LMX2594 synthesizers in combination to produce lower noise than is possible with just one. By combining the output of two synthesizers that are in phase, a theoretical 3 dB phase noise benefit is possible due to the output power being 6 dB higher while the noise power (...)

Key Features

  • 3 to 12.5 GHz Output Frequency
  • 40-fs rms Jitter at 9GHz (100 Hz to 100 MHz)

Applications Matched

  • Space, Avionics & Defense

Description

Synthesis of waveforms appropriate for an S-band multifunction phased array radar (MPAR) is demonstrated with an RF sampling architecture utilizing the DAC38RF80, a 9GSPS 16-bit digital-to-analog converter (DAC). The RF sampling transmit architecture simplifies the signal chain, bringing the data (...)

Key Features

  • S-band transmitter reference design
  • Wideband frequency flexibility and planning
  • Demonstration using multichannel FM-modulated chirp waveforms
  • Tested reference design includes an evaluation module (EVM), configuration software, and User’s Guide

Applications Matched

  • Space, Avionics & Defense

Description

The TIDA-00363 TI design provides a solution for EMC-compliant resolver-to-digital converter (RDC) with single-chip PGA411-Q1 with 12-bit angle resolution. PGA411-Q1's integrated boost-converter and exciter amplifier reduces system cost and board space compared to traditional RDC solutions. On-chip (...)

Key Features

  • Single-chip resolver-to-digital converter (RDC) with typical accuracy better than ±0.2 degree
  • Exceeds IEC61800-3 EMC immunity
    • ±8kV ESD CD per IEC61000-4-2
    • ±4kV EFT per IEC61000-4-4
    • ±2kV Surge per IEC61000-4-5
  • Integrated exciter amplifier with 150mA output current and programmable (1-017V) boost power supply (...)

Applications Matched

  • Space, Avionics & Defense

Description

TIDA-01016 is a clocking solution for high dynamic range high speed ADC. RF input signals are directly captured using the RF sampling approach by high speed ADC. The ADC32RF45 is a dual- channel, 14-bit, 3-GSPS RF sampling ADC. The 3-dB input bandwidth is 3.2 GHz, and it captures signals up to 4 GHz (...)

Key Features

  • 3 GHz low-phase noise clocking solution for RF sampling ADC with >51 dB SNR @ 3.65 GHz input
  • 4GHz high frequency input signal capture capability
  • Large signal bandwidth, high dynamic range RF sampling receiver solution

Applications Matched

  • Space, Avionics & Defense

Description

The RF sampling receiver captures signals directly in the radio frequency (RF) band. In a multi-band application the desired signals are not very wide band but they are spaced far apart within the spectrum. The reference design captures signals in different RF bands and digitally down-converts them (...)

Key Features

  • Digital down converter with decimation solution
  • Interference avoidance configuration
  • Low noise, high dynamic range RF sampling receiver solution
  • Low-phase noise clocking solution for RF sampling ADC

Applications Matched

  • Space, Avionics & Defense

Description

The TIDA-01410 reference design uses two LMX2594 synthesizers to produce two outputs that are both coherent and adjustable in phase.  Phase coherent outputs are useful for interleaving data converters and also for beam steering applications.  This reference design has identical routing for (...)

Key Features

  • Two outputs with coherent and adjustable phase
  • Output frequency from 10 MHz to 15 GHz
  • High output power

Applications Matched

  • Space, Avionics & Defense

Description

The TIDA-00170 is a reference design for industrial control Analog Mixed Input Output Modules. The design implements four channel analog input & two channel analog output. The analog input channels can measure all standard industrial voltages up to ±10V and current inputs up to 24mA. The (...)

Key Features

  • 16-bit resolution, user programmable analog input output ranges
  • Programmable channels: Each I/P channel can be configured as current or voltage input and O/P channel can be configured as voltage or current output with software configuration
  • Accuracy - Input Ch better than  ±0.1% FSR at 25 (...)

Applications Matched

  • Space, Avionics & Defense

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