RF transmitters
Meet your performance, bandwidth and power requirements with high integration RF transmitters and RF DACs
High channel density, wide signal bandwidth and high resolution integrated data converters enable better dynamic range and lower bill of materials in the most demanding wireless, defense and test transmitter applications.
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Design & development resources
Firmware
JESD204 Rapid Design IP for FPGAs connected to TI high-speed data converters
The JESD204 rapid design IP has been designed to enable FPGA engineers to achieve an accelerated path to a working JESD204 system. The IP has been architected in a way that downstream digital processing and other application logic are isolated from most of the performance- and timing-critical (...)
Evaluation board
2T2R RF-Sampling Transceiver w/ Dual 14-Bit 3GSPS ADC/9GSPS DAC Clocking Solution Evaluation Module
The TSW40RF80 evaluation module (EVM) is a two-transmit two-receive (2T2R) RF-sampling transceiver reference design. The module contains the DAC38RF80 dual-channel RF-sampling digital-to-analog converter (DAC) and the ADC32RF45 dual-channel RF-sampling analog-to-digital converter (ADC).
The (...)
Evaluation board
DAC38RF82 Dual-Channel, 14-Bit, 9-GSPS, 1x-24x Interpolating, 6 & 9 GHz PLL DAC Evaluation Module
The DAC38RF82EVM is the circuit board for evaluating DAC38RF82/83/85/93 digital to analog converters (DACs). The EVM can be used to evaluate the performance of the DAC up to 9GSPS sampling rate and it is designed to work with the TSW14J56 EVM. The available FMC connector also makes it possible to (...)
Technical resources
Technical article
Read the keys to quick success using high-speed data converters
Learn how TI makes it easy to evaluate high speed data converters and AFEs
Video series
High-speed signal chain training series
Online training series covering topics such as RF-sampling, JESD204B and more.
Video series
High-speed analog-to-digital converter (ADC) fundamentals
These videos cover the fundamentals of high-speed data converters, including an overview of the architectures of both ADCs and DACs.