USB 3.0 High/Full/Low-Speed Host + Device Controller IP
USB 3.0 Dual Mode Controller IP Core uses a high performance DMA engine based on the xHCI specification and presenting either an …
- USB
- In Production
- Immediate
- USB3.0 Specification Rev1.0
Semiconductor IP cores (Intellectual Property cores) are reusable design blocks used in SoC and ASIC development to accelerate time-to-market and reduce design complexity.
These IP cores span a broad range of technologies, including Analog & Mixed Signal, Compute Acceleration, Graphics & Vision, Interface Connectivity , Memory Interfaces, Security, Wireless, System Peripheral, Embedded Memories, and Foundation Libraries. The catalog covers everything from analog front-ends, data converters, processors, DSPs, AI accelerators, and imaging solutions to high-speed connectivity, memory controllers and PHYs, cryptographic engines, embedded memory macros, standard cell libraries, and wireless communication IP.
This catalog allows you to explore and compare IP cores from leading vendors, based on performance, power, process node compatibility, and application domain.
Whether you are designing for automotive, wireless communication, consumer electronics, or data centers, you can find the right IP solutions for your system requirements.
USB 3.0 High/Full/Low-Speed Host + Device Controller IP
USB 3.0 Dual Mode Controller IP Core uses a high performance DMA engine based on the xHCI specification and presenting either an …
MIPI Unipro v1.8 Controller IP, Compatible with M-PHY and UFS
This MIPI UniPro Controller IP is compliant with the latest MIPI UniPro v1.8 specification, provides the capability to control th…
MIPI UFS v2.1 Host Controller IP, Compatible with M-PHY and Unipro
UFS is a high performance, serial interface used in mobile systems to help communicate between host processor and mass storage de…
MIPI UFS v3.1 Device Controller IP, Compatible with M-PHY and Unipro
UFS is a high performance, serial interface used in mobile systems to help communicate between host processor and mass storage de…
MIPI DSI-2 Transmitter v1.1 Controller IP, Compatible with MIPI D-PHY & C-PHY
MIPI is the Mobile Industry Processor Interface that provides specification for software and hardware interfaces in mobile termin…
The Veriest Solutions MIPI CSI-2 v1.1 Transmit Controller facilitates transmission over a standard high-speed unidirectional seri…
The Veriest Serial Flash Controller Design IP offers a rich set of features to facilitate easy access to Serial Flash devices.
The DVB-S2X demodulator is a low-complexity high-performance solution that allows for symbol rates of up to 100 MSymb/s on FPGAs …
Audio data transport
The transform computation is based on a new matrix formulation of the discreet Fourier transform1 (DFT) which decomposes it into …
Zynq SATA Storage Extension - Production Reference Design
MLE's Zynq SATA Storage Extension (Zynq SSE) is a fully integrated and pre-validated system stack comprising 3rd-party SATA Host …
12-bit 1-channel 20 to 100 MSPS ADC
The low-power high-speed 12-bit ADC employs a high-performance differential pipeline architecture.
12-bit 1-channel 4 MSPS SAR ADC
065TSMC_ADC_10 employs high-performance differential successive approximation architecture with sub-ranging and output offset com…
12-bit 4-channel 20 to 100 MSPS ADC
Quad-channel 12-bit 20 – 100 MSPS ADC contains four ADC channels, LVDS receiver, reference voltages and reference currents circui…
Multi-channel Audio Digital Interface (MADI) IP Core
The Verien Design Group MADI IP core is proven technology.
This device is designed to generate a quadrature heterodyne (oscillator) signal.
Temperature sensor consists of built-in 10-bit R-2R DAC, diode and own reference voltage former.
1.2 V Bandgap voltage reference
Bandgap voltage reference forms temperature-compensated voltage level equal to the width of the band gap of silicon due to mutual…
1.22 V Reference voltage source
Reference voltage source forms temperature-compensated voltage level equal to the width of the band gap of silicon due to mutual …
612.7 mV Reference voltage source
Reference voltage source forms temperature-compensated voltage level due to mutual compensation of temperature dependence of bipo…