DDR4/3 PHY in Samsung (14nm, 11nm, 10nm, 8nm)
The Synopsys DDR4/3 PHY is a physical layer IP interface (PHY) solution for enterprise-class ASIC, ASSP, and system-on-chip (SoC)…
- Controller + PHY + 1
- DDR4
- Samsung
- 8nm
- 8LPP
- Available on request
Memory interface IP cores provide the critical connectivity layer between processing elements and memory devices, enabling high-bandwidth, low-latency, and power-efficient data access in modern SoC, ASIC, AI, networking, and high-performance computing designs.
This category includes DDR, LPDDR, GDDR, HBM, NAND Flash, and NOR Flash interface IP solutions, covering memory controllers, PHYs, controller-PHY subsystems, training engines, calibration logic, and complete memory interface architectures. These IP cores are designed to maximize memory bandwidth, optimize latency, ensure signal integrity, and simplify integration across advanced semiconductor process nodes.
DDR4/3 PHY in Samsung (14nm, 11nm, 10nm, 8nm)
The Synopsys DDR4/3 PHY is a physical layer IP interface (PHY) solution for enterprise-class ASIC, ASSP, and system-on-chip (SoC)…
The Synopsys DDR4 multiPHY is a physical (PHY) layer IP interface solution for PC/consumer and mobile ASICs, ASSPs, system-on- ch…
DDR4 multiPHY in Samsung (14nm)
The Synopsys DDR4 multiPHY is a physical (PHY) layer IP interface solution for PC/consumer and mobile ASICs, ASSPs, system-on- ch…
DDR4, DDR3 PHY and Controller
The Synopsys DDR5/4 PHY is a physical layer IP interface (PHY) solution for ASIC, ASSP, and system-on-chip (SoC) applications req…
VBO TX and RX PHY & Controller
The VBO IP is designed for transmitting or receiving video signals between a video source device and display device, which is ful…
Bandwidth and area optimized low power memory interface solution tuned for AI, HPC, data centers and networking conforming to HBM…
TSMC CLN40LPP 40nm LPDDR5 PHY - 3200Mbps
The TCI LPDDR PHY is a high-performance, scalable system using a radically new architecture that continuously and automatically a…
TSMC CLN40LPP 40nm LPDDR4 PHY - 2933Mbps
The TCI LPDDR PHY is a high-performance, scalable system using a radically new architecture that continuously and automatically a…
TSMC CLN40LPP 40nm LPDDR3 PHY - 2133Mbps
The TCI LPDDR PHY is a high-performance, scalable system using a radically new architecture that continuously and automatically a…
TSMC CLN40LPP 40nm DDR5 PHY - 3200Mbps
The TCI DDR PHY is a high-performance, scalable system using a radically new architecture that continuously and automatically adj…
TSMC CLN40LPP 40nm DDR4 PHY - 2933Mbps
The TCI DDR PHY is a high-performance, scalable system using a radically new architecture that continuously and automatically adj…
TSMC CLN40LPP 40nm DDR3 PHY - 2133Mbps
The TCI DDR PHY is a high-performance, scalable system using a radically new architecture that continuously and automatically adj…
TSMC CLN28HPCPLVT 28nm LPDDR5 PHY - 3200Mbps
The TCI LPDDR PHY is a high-performance, scalable system using a radically new architecture that continuously and automatically a…
TSMC CLN28HPCPLVT 28nm LPDDR4 PHY - 2933Mbps
The TCI LPDDR PHY is a high-performance, scalable system using a radically new architecture that continuously and automatically a…
TSMC CLN28HPCPLVT 28nm LPDDR3 PHY - 2133Mbps
The TCI LPDDR PHY is a high-performance, scalable system using a radically new architecture that continuously and automatically a…
TSMC CLN28HPCPLVT 28nm DDR5 PHY - 3200Mbps
The TCI DDR PHY is a high-performance, scalable system using a radically new architecture that continuously and automatically adj…
TSMC CLN28HPCPLVT 28nm DDR4 PHY - 2933Mbps
The TCI DDR PHY is a high-performance, scalable system using a radically new architecture that continuously and automatically adj…
TSMC CLN28HPCPLVT 28nm DDR3 PHY - 2133Mbps
The TCI DDR PHY is a high-performance, scalable system using a radically new architecture that continuously and automatically adj…
TSMC CLN28HPCP 28nm LPDDR5 PHY - 3200Mbps
The TCI LPDDR PHY is a high-performance, scalable system using a radically new architecture that continuously and automatically a…