The proliferation of sensors in mobile wireless and mobile-influenced products has created significant design challenges.
- Verification IP
Low-Speed Control Interface IP cores provide the communication, control, monitoring, and management functions required by modern SoCs, microcontrollers, automotive systems, industrial equipment, and embedded platforms. These interfaces enable reliable connectivity between processors, sensors, peripherals, power-management devices, and external subsystems.
This catalog includes IP solutions for widely adopted control and management protocols such as I2C/I3C, SPI/QSPI/xSPI, UART, CAN, CAN FD, CAN XL, LIN, GPIO, IEEE 1588/PTP, MIPI RFFE, PMBus, Smartcard, ARINC 429, MIL-STD-1553, FlexRay, SENT, HDLC, and other specialized interfaces. Compare controller, target, and protocol IP offerings from multiple vendors based on standards compliance, feature sets, safety support, performance, and integration requirements.
The proliferation of sensors in mobile wireless and mobile-influenced products has created significant design challenges.
The MIPI I3C host interface is an evolutionary standard that improves upon the features of I2C, while maintaining backward compat…
The I3C Device Controller IP Implements Device Controller functionality as defined by the MIPI Alliance’s I3C Specification.
CAN FD Bus Controller IP is an extension of Classical CAN Bus IP that addresses the increasing need for higher data rates and lar…
The RF Front End (RFFE) control interface is defined to offer a common Interface for controlling RF front-end devices.
Mobile radio communication is trending towards complex multi-radio systems comprising of several transceivers.
The I3C Host Controller IP implements Host Controller functionality as defined by the MIPI Alliance’s I3C Specification.
I3C Dual/Secondary Controller IP v1.2
The I3C Secondary Controller IP Core implements Active controller functionality as defined by the MIPI Alliance’s I3C Specificati…
I3C Dual/Secondary Controller IP
The I3C Secondary Controller IP Core implements Active controller functionality as defined by the MIPI Alliance’s I3C Specificati…
The I3C Device Controller IP Implements Device Controller functionality as defined by the MIPI Alliance’s I3C Specification.
The CAN-XL Bus Controller Core performs serial communication as per CAN 2.0, CAN-FD & CAN-XL Specifications.
The CAN-SEC Acceleration Engine Core implements the CAN-XL Protocol (CiA 610-1), CAN-XL Addon Part 1-Simple/Extercontent Indicati…
CAN FD LIGHT BUS CONTROLLER IP
The Controller Area Network – Flexible Data-Light (CAN-FD Light) Controller IP implements the CAN FD-Light (CIA 604-1) protocol.
The SPMI Host and Device IP (Configurable Controller Cores) implements MIPI SPMI2.0 protocols.
The SPICTRL provides a link between the AMBA APB bus and the Serial Peripheral Interface (SPI) bus.
Expanded Serial Peripheral Interface (xSPI) Slave Controller
The JESD251 Expanded Serial Peripheral Interface Slave controller is provides high data throughput, low signal count, and limited…
Expanded Serial Peripheral Interface (xSPI)Master Controller
The Expanded Serial Peripheral Interface (JESD251) Master controller is low signal count, high data bandwidth, primarily for use …
DDR5 Serial Presence Detect (SPD) Hub Interface
The SPD5 Hub Function IP has been developed to interface I3C/I2C Host Bus and it allows an isolation of local devices like Temper…
MIPI-I3C Slave (SDR) RTL Design IP
MIPI I3C slave Controller IP Core is fully compliant with the latest I3C specification and delivers high bandwidth and scalabilit…
MIPI-I3C Master (SDR) RTL Design IP
MIPI I3C master Controller IP Core is fully compliant with the latest I3C specification and delivers high bandwidth and scalabili…