Distributed Thermal Sensor (DTS) Deep NWELL, TSMC N5
The granular DTS offers a significant area reduction in comparison to some standard in-chip thermal sensor solutions and supports…
- Temperature Sensor
- Available on Request
- Available
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.
Distributed Thermal Sensor (DTS) Deep NWELL, TSMC N5
The granular DTS offers a significant area reduction in comparison to some standard in-chip thermal sensor solutions and supports…
In-Chip Monitoring Subsystem for Process, Voltage & Temperature (PVT) Monitoring, TSMC N5
A full suite of embedded monitoring IP managed by a PVT controller with standard interfaces, creates a subsystem dedicated to max…
PVT Controller (Series 5) (Sub-system for complete PVT monitoring), TSMC N5
The PVT Controller provides a standard digital interface to the embedded Process, Voltage and Temperature (PVT) sensing Sub-Syste…
Temperature Sensor Non-Deep NWELL, TSMC N5
A high precision low power junction temperature sensor that has been developed to be easily embedded into digital ASIC designs.
Temperature Sensor Deep NWELL, TSMC N5
A high precision low power junction temperature sensor that has been developed to be easily embedded into digital ASIC designs.
Voltage Monitor with Digital Output (Multi-domain supply monitoring), TSMC N5
The voltage monitor is a low power self-contained IP block specially designed to monitor voltage levels within the core logic vol…
Process Detector P/N Skew, TSMC N5
An embedded process detector circuit which helps Integrated Circuit (IC) developers to address the problem of process variability…
Process Detector (For DVFS and monitoring process variation), TSMC N5
An embedded process detector circuit which helps Integrated Circuit (IC) developers to address the problem of process variability…
LVDS/FPD Link IP, Silicon Proven in GF 28LPe
A physical layer IP for LVDS transmitter.
LVDS/FPD Link IP, Silicon Proven in GF 65/55LPe
A transmitter for LVDS with a physical layer IP.
Display Port v1.4 Rx PHY & Controller IP, Silicon Proven in UMC 40SP
The Display Port 1.4 Rx IP Channel's maximum capacity is supported.
Display Port v1.4 Tx PHY & Controller IP, Silicon Proven in UMC 40SP
Version 1.4 of the DisplayPort transmitter PHY is capable of transmitting data at rates of 1.62Gbps (RBR) to 5.4Gbps (HBR2).
Display Port v1.4 Tx PHY & Controller IP, Silicon Proven in UMC 28HPC
The DisplayPort transmitter PHY version 1.4 supports data rates between 1.62Gbps (RBR) to 5.4Gbps (HBR2).
Display Port v1.4 Tx PHY & Controller IP, Silicon Proven in TSMC 28HPC+
The DisplayPort transmitter PHY version 1.4 supports data rates between 1.62Gbps (RBR) to 5.4Gbps (HBR2).
HDMI 1.4 Rx PHY & Controller IP, Silicon Proven in GF 65/55LPe
The HDMI receiver PHY (Physical layer), a single-port IP core, fully conforms with HDMI 1.4's requirements.
HDMI 1.4 Tx PHY & Controller IP, Silicon Proven in GF 65/55LPe
IP core that completely conforms with HDMI 1.4 requirements for physical layer HDMI transmitters For consumer electronics like DV…
MIPI D-PHY Tx IP, Silicon Proven in SMIC 55LL
The MIPI D-PHY Analog TX IP Core fully complies with version 1.2 of the D-PHY specification.
MIPI D-PHY Rx IP, Silicon Proven in SMIC 55LL
The D-PHY specification, version 1.2, is perfectly complied with by the MIPI D-PHY Analog RX IP Core.
PCIe is the most common protocol in high speed serial standards to connect components in embedded systems.
1692 to 1973 MHz Voltage Controlled Oscillator
Voltage-controlled oscillator (VCO) is the generator that can be tuned over a wide range of frequencies by applying a control vol…