TSMC CLN6FF 6nm Deskew PLL - 800MHz-4000MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
- TSMC
- 6nm
- N6FF
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.
TSMC CLN6FF 6nm Deskew PLL - 800MHz-4000MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
TSMC CLN5PLVT 5nm 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 CLN5PLVT 5nm 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 CLN5PLVT 5nm 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 CLN5P 5nm Deskew PLL - 200MHz-1000MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
TSMC CLN5P 5nm Deskew PLL - 400MHz-2000MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
TSMC CLN5P 5nm Deskew PLL - 800MHz-4000MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
TSMC CLN4PLVT 4nm 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 CLN4PLVT 4nm 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 CLN4PLVT 4nm 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 CLN4P 4nm Deskew PLL - 200MHz-1000MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
TSMC CLN4P 4nm Deskew PLL - 400MHz-2000MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
TSMC CLN4P 4nm Deskew PLL - 800MHz-4000MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
TSMC CLN40FLOD 40nm Deskew PLL - 75MHz-375MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
TSMC CLN40FLOD 40nm Deskew PLL - 150MHz-750MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
TSMC CLN40FLOD 40nm 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 CLN40FL 40nm Deskew PLL - 37MHz-187MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
TSMC CLN40FL 40nm Deskew PLL - 75MHz-375MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
TSMC CLN40FL 40nm Deskew PLL - 150MHz-750MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
TSMC CLN6FFLVT 6nm DDR DLL - 270MHz-1350MHz
The DDR DLL uses a reference clock to establish a time base in order to delay arbitrary (nonperiodic) strobe signals by precise f…