TSMC CLN16FFCLLLVT 16nm General Purpose PLL - 600MHz-3000MHz
The General Purpose PLL is a wide range clock multiplier with deskew capability.
- TSMC
- 16nm
- FFCLL
PLL IP cores (Phase-Locked Loop IP) are essential components in modern SoC, ASIC, and mixed-signal designs, enabling precise clock generation, frequency synthesis, and jitter reduction.
Phase-locked loop IP is widely used in applications such as high-speed interfaces (SerDes, PCIe, Ethernet), wireless communication, processors, and clock distribution networks.
This page allows you to compare PLL IP cores from leading vendors by frequency range, jitter performance, power consumption, process node compatibility, and supported use cases.
Whether you need a low-power PLL for IoT or a high-performance low-jitter PLL for high-speed data links, you can quickly identify the most suitable solution for your design.
TSMC CLN16FFCLLLVT 16nm General Purpose PLL - 600MHz-3000MHz
The General Purpose PLL is a wide range clock multiplier with deskew capability.
TSMC CLN7FFLVT 7nm General Purpose PLL - 600MHz-3000MHz
The General Purpose PLL is a wide range clock multiplier with deskew capability.
TSMC CLN7FF 7nm General Purpose PLL - 400MHz-2000MHz
The General Purpose PLL is a wide range clock multiplier with deskew capability.
TSMC CLN28HPCLVT 28nm Deskew PLL - 220MHz-1100MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
TSMC CLN28HPCLVT 28nm Deskew PLL - 440MHz-2200MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
TSMC CLN28HPCLVT 28nm Deskew PLL - 880MHz-4400MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
TSMC CLN28HPC+LVT 28nm Deskew PLL - 225MHz-1125MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
TSMC CLN28HPC+LVT 28nm Deskew PLL - 450MHz-2250MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
TSMC CLN28HPC+LVT 28nm Deskew PLL - 900MHz-4500MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
TSMC CLN16FF+GLLVT 16nm Deskew PLL - 300MHz-1500MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
TSMC CLN16FF+GLLVT 16nm Deskew PLL - 600MHz-3000MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
TSMC CLN16FF+GLLVT 16nm Deskew PLL - 1200MHz-6000MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
TSMC CLN16FF+LLLVT 16nm Deskew PLL - 300MHz-1500MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
TSMC CLN16FF+LLLVT 16nm Deskew PLL - 600MHz-3000MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
TSMC CLN16FF+LLLVT 16nm Deskew PLL - 1200MHz-6000MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
TSMC CLN16FFCLLLVT 16nm Deskew PLL - 300MHz-1500MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
TSMC CLN16FFCLLLVT 16nm Deskew PLL - 600MHz-3000MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
TSMC CLN16FFCLLLVT 16nm Deskew PLL - 1200MHz-6000MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
TSMC CLN7FFLVT 7nm Deskew PLL - 300MHz-1500MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
TSMC CLN7FFLVT 7nm Deskew PLL - 600MHz-3000MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.