Find IP Sell IP Chip Talk About Us Contact Us
Log In

All IPs > Analog & Mixed Signal > PLL > Digital PreDistortion (DPD) Solution

Digital PreDistortion (DPD) Solution

From Systems4Silicon

Description

The Digital PreDistortion (DPD) Solution is a cutting-edge adaptive technology designed to enhance the power efficiency and performance of RF power amplifiers. This technology is scalable, offering optimization tailored to the specific bandwidth and performance needs of different platforms while supporting both FPGA and ASIC integrations. By allowing amplifiers to operate efficiently in their non-linear regions, the solution achieves more than 50% efficiency improvements, particularly when used with GaN devices in a Doherty configuration. With capabilities for multi-carrier and multi-standard transmissions, it is adaptable to various standards, including FDD, TDD, and 5G.

Features
  • Vendor independent
  • Scalable resource optimization
  • Integrated support and performance tools
Tech Specs
Class Value
Categories Analog & Mixed Signal > PLL
Wireline Communication > Ethernet
Wireline Communication > HDLC
Amplifier Distortion Improvement > 45 dB
Efficiency Greater than 50% when paired with latest GaN devices
Availability All Countries & Regions
Applications
  • 5G
  • DVB-T
  • BGAN
Sign up to Silicon Hub to buy and sell semiconductor IP

Sign Up for Silicon Hub

Join the world's most advanced semiconductor IP marketplace!

It's free, and you'll get all the tools you need to evaluate IP, download trial versions and datasheets, and manage your evaluation workflow!

Switch to a Silicon Hub buyer account to buy semiconductor IP

Switch to a Buyer Account

To evaluate IP you need to be logged into a buyer profile. Select a profile below, or create a new buyer profile for your company.

Add new company

Switch to a Silicon Hub buyer account to buy semiconductor IP

Create a Buyer Account

To evaluate IP you need to be logged into a buyer profile. It's free to create a buyer profile for your company.

Loading...
Chat to Volt about this page

Chatting with Volt