Wide Range Programmable Integer PLL on TSMC CLN22ULL
The Wide Range PLL addresses a large portfolio of applications, ranging from simple clock de- skew and non-integer clock multipli…
- TSMC
- 22nm
- ULL
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.
Wide Range Programmable Integer PLL on TSMC CLN22ULL
The Wide Range PLL addresses a large portfolio of applications, ranging from simple clock de- skew and non-integer clock multipli…
Wide Range Programmable Integer PLL on TSMC CLN16FFC
The Wide Range PLL addresses a large portfolio of applications, ranging from simple clock de- skew and non-integer clock multipli…
Wide Range Programmable Integer PLL on TSMC CLN12FFC
The Wide Range PLL addresses a large portfolio of applications, ranging from simple clock de- skew and non-integer clock multipli…
Wide Range Multi-Output PLL on TSMC CLN7FF
The Wide Range Multi-Output PLL addresses a large portfolio of applications, ranging from simple clock de-skew and non-integer cl…
Wide Range Multi-Output PLL on TSMC CLN6FF
The Wide Range Multi-Output PLL addresses a large portfolio of applications, ranging from simple clock de-skew and non-integer cl…
Spread Spectrum PLL on TSMC CLN40LP-ULP
It isa requirement by FCC that allelectronic devices including game-consoles, PCs, and high speed compute servers, limit Electrom…
PCIe Gen4/5/6 Class Low Jitter LC PLL on TSMC CLN7FF
The PCIe Gen5 REF PLL addresses stringent performance requirements in high-speed serial link applications that support the PCI Ex…
PCIe Gen4/5/6 Class Low Jitter LC PLL on TSMC CLN6FF
The PCIe Gen5 Ref Clock SSCG PLL addresses stringent performance requirements in high-speed serial link applications that support…
PCIe Gen4/5/6 Class Low Jitter LC PLL on TSMC CLN3P-CLN3X
The PCIe REF PLL addresses stringent performance requirements in high-speed serial link applications that support the PCI Express…
PCIe Gen4/5/6 Class Low Jitter LC PLL on TSMC CLN3E
The PCIe REF PLL addresses stringent performance requirements in high-speed serial link applications that support the PCI Express…
PCIe Gen4/5/6 Class Low Jitter LC PLL on TSMC CLN2P
The PCIe REF PLL addresses stringent performance requirements in high-speed serial link applications that support the PCI Express…
PCIe Gen3 Class SSCG PLL on TSMC CLN16FFC
The PCIe Gen3 SSCG PLL addresses stringent performance requirements in high-speed serial link applications that support the PCI E…
PCIe Gen3 Class SSCG PLL on TSMC CLN12FFC
The PCIe Gen3 SSCG PLL addresses stringent performance requirements in high-speed serial link applications that support the PCI E…
Low Power PLL on TSMC CLN90G-GT-LP
The low-power wide range PLL addresses markets and applications that demand very low power and optimized for area efficiencies.
The Low Power Wide Range PLL addresses a large portfolio of applications, ranging from simple clock de-skew and non-integer clock…
Low Power PLL on TSMC CLN40LP-ULP
The Low Power Wide Range PLL addresses a large portfolio of applications, ranging from simple clock de-skew and non-integer clock…
The Low Power Wide Range PLL addresses a large portfolio of applications, ranging from simple clock de-skew and non-integer clock…
Low Power FracN/SSCG PLL on TSMC CLN6FF
The low power Fractional-N SSCG PLL addresses power sensitive designs required for IOT, mobile and other low power applications n…
Low Power Frac-N on TSMC CLN28HPC+
A programmable on-the-fly Fractional-N PLL is required to lock to an incoming clock source and produce an output clock.
Low Power Frac-N on TSMC CLN28HPC
A programmable on-the-fly Fractional-N PLL is required to lock to an incoming clock source and produce an output clock.