UCIe Controller (CHI Protocol + Adapter)
The UCIe Controller consists of Universal Chiplet Interconnect Express (UCIe) Die-to-Die (D2D) Adapter and Protocol Layers.
- Controller
- UCIe 1.1
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.
UCIe Controller (CHI Protocol + Adapter)
The UCIe Controller consists of Universal Chiplet Interconnect Express (UCIe) Die-to-Die (D2D) Adapter and Protocol Layers.
UCIe Controller (AXI Protocol + Adapter)
The UCIe Controller consists of Universal Chiplet Interconnect Express (UCIe) Die-to-Die (D2D) Adapter and Protocol Layers.
Die-to-Die (D2D) Interface for Chiplet Application
Compliant with the UCIe Specification Revision 1.1
300µA Voltage Buffer - X-FAB XT018
300 μA Unity Gain Buffer with 5.5 MHz Gain Bandwidth
6mA Voltage Buffer - X-FAB XT018
6 mA Unity Gain Buffer with 6.5 MHz Gain Bandwidth
32-bit RISC multiprocessor platform for the most demanding computational tasks
30V 0.5A Hysteretic Buck LED Driver
30V 0.5A Hysteretic Buck LED Driver with High-Side and Low-Side Current Sensing on X-FAB XT018-0.18µm BCD-on-SOI CMOS
Junction Over-Temperature Detector with Linear Centigrade-to-Voltage Output - X-FAB XT018
The TS_TEMP_DET_X8 is a hysteresis detector that asserts output OVERTJ once junction temperature exceeds 147.2°C and subsequently…
The Mixel Automotive SerDes Alliance Motion Link (ASA-ML) PHY is a high-speed Automotive SerDes solution compliant with the Autom…
VisionNet v1.0 is a configurable CNN accelerator IP designed to deliver efficient edge inference for vision workloads.
RISC-V Display Connectivity Subsystem (DCS)
Modern display links have evolved into complex communication systems requiring continuous management of authentication, topology,…
250nA-88μA Current Reference - X-FAB XT018-0.18μm BCD-on-SOI CMOS
The TS_IREF_88uA_X8 is a current reference biasing circuit which provides a sink/source ZTAT (zero-toabsolute temperature) temper…
UCIe D2D Adapter & PHY Integrated IP
A UCIe solution ready to support any protocol layer The D2D Adapter for UCIe combined with the UCIe PHY from a UCIe solution read…
Arasan’s xSPI/PSRAM interface PHY is designed to work with both the xSPI or PSRAM master host controller IPs.
MIPI CSI-2 CSE2 Security Module
MIPI CSI‑2 is a widely adopted high‑speed interface for transmitting still and video data from image sensors to processors across…
ASIL B Compliant MIPI CSI-2 CSE2 Security Module
MIPI CSI‑2 is a widely adopted high‑speed interface for transmitting still and video data from image sensors to processors across…
Clock Buffer - X-FAB XT018-0.18µm BCD-on-SOI CMOS
The TS_CLKBUF_25pF_X8 transfers input clock signal to other digital or mixed-signal chips, which feature altogether a maximum loa…
8MHz / 40MHz Pierce Oscillator - X-FAB XT018-0.18µm
The TS_XOSC_40M_X8 is a 8MHz / 40MHz Pierce oscillator that generates a VCC-level logic square wave when a 8MHz / 40MHz quartz cr…
Voltage Latched Comparator - X-FAB XT018
A high-speed voltage clocked comparator with rail- to-rail outputs and no hysteresis.
Configurable CPU tailored precisely to your needs
The TES µEngine concept enables complex digital circuit tasks to be created as software-defined functions executed by mini-comput…