Core Powered FracN/SSCG PLL on TSMC CLN5
The Core Powered Fractional-N / Spread Spectrum PLL is an easy to integrate macro, requiring no analog power supply, and can be p…
- TSMC
- 5nm
- N5
Clocking and timing IP cores are fundamental to semiconductor designs that require accurate clock generation, distribution, synchronization, and timing control. This category includes PLLs, DLLs, oscillators, and clock generators used in SoCs, ASICs, SerDes subsystems, processors, memory interfaces, and communication devices.
Browse clocking and timing IP from multiple vendors to compare jitter, frequency range, locking behavior, power consumption, programmability, and process support. Semi IP Hub helps chip architects and design engineers identify the right timing IP for high-performance and low-power silicon platforms.
Core Powered FracN/SSCG PLL on TSMC CLN5
The Core Powered Fractional-N / Spread Spectrum PLL is an easy to integrate macro, requiring no analog power supply, and can be p…
Core Powered FracN/SSCG PLL on TSMC CLN4P
The Core Powered Fractional-N / Spread Spectrum PLL is an easy to integrate macro, requiring no analog power supply, and can be p…
Automotive Grade Frac-N on TSMC CLN22ULL
The low power Fractional-N PLL addresses power sensitive designs required for IOT, mobile and other low power applications needin…
800Mb/s DDR DLL on TSMC CLN55LP
Digital ICs that interface to high speed consumer memory interfaces such as mobile DDR receive data and strobe clocks simultaneou…
38.4MHz Crystal Oscillator on TSMC CLN28HPC+
High end consumer and professional applications require crystals with a minimum number of external components.
20-40MHz Crystal Oscillator on TSMC CLN16FFC
High end consumer and professional applications require crystals with a minimum number of external components.
20-40MHz Crystal Oscillator on TSMC CLN12FFC
High end consumer and professional applications require crystals with a minimum number of external components.
18-40MHz Crystal Oscillator on TSMC CLN6FF
High end consumer and professional applications require crystals with a minimum number of external components.
18-40MHz Crystal Oscillator on TSMC CLN5A
High end consumer and professional applications require crystals with a minimum number of external components.
18-40MHz Crystal Oscillator on TSMC CLN4P
High end consumer and professional applications require crystals with a minimum number of external components.
18-40MHz Crystal Oscillator on TSMC CLN3P-CLN3X
High end consumer and professional applications require crystals with a minimum number of external components.
18-40MHz Crystal Oscillator on TSMC CLN3E
High end consumer and professional applications require crystals with a minimum number of external components.
18-40MHz Crystal Oscillator on TSMC CLN2P
High end consumer and professional applications require crystals with a minimum number of external components.
100MHz Crystal-less Oscillator on TSMC CLN6FF
The Crystal-less low power oscillator addresses a variety of applications that include low power consumer and professional applic…
General Purpose PLL for TSMC 180nm
The OT3122t180 is a flexible clock multiplier PLL function with a wide range of input and output frequencies and is designed for …
HDMI 2.1 Audio PLL in TSMC 16FFC 1.8V, North/South Poly Orientation
The HDMI 2.1 TX Controller and PHY IP solutions, compliant with the HDMI 2.1 specification, provide the necessary logic to implem…
HDMI 2.1 Audio PLL in TSMC 12FFC 1.8V, North/South Poly Orientation
The HDMI 2.1 TX Controller and PHY IP solutions, compliant with the HDMI 2.1 specification, provide the necessary logic to implem…
1GHz, fractional-N Digital PLL, TSMC N12FFC, N/S orientation
M31 Digital-PLL is a core-power only programmable phase-locked loop (PLL) for frequency synthesis.
4.8GHz low jitter fractional-N, Digital PLL, TSMC N7, 0.75V, N/S orientation
M31 Digital-PLL is a core-power only programmable phase-locked loop (PLL) for frequency synthesis.
4.8GHz low jitter fractional-N, Digital PLL, TSMC N6, 0.75V, N/S orientation
M31 Digital-PLL is a core-power only programmable phase-locked loop (PLL) for frequency synthesis.