UMC L65LL 65nm DDR DLL - 78MHz-390MHz
The DDR DLL uses a reference clock to establish a time base in order to delay arbitrary (nonperiodic) strobe signals by precise f…
- UMC
- 65nm
- LL
True Circuits develops and markets a broad range of industry leading PLLs, DLLs and DDR PHY hard macros for ICs for the semiconductor, systems and electronics industries. TCI's robust state-of-the-art circuits, methodical and proven design strategy, and close association with the world's leading foundries, IDMs, and design services companies allow the company to quickly and reliably create new and innovative designs in a variety of advanced process technologies. Over the last 27 years, True Circuits has distinguished itself as the technology leader in the timing IP space, and its PLLs and DLLs are used extensively around the world in its customers' products with production volumes well into the billions.
UMC L65LL 65nm DDR DLL - 78MHz-390MHz
The DDR DLL uses a reference clock to establish a time base in order to delay arbitrary (nonperiodic) strobe signals by precise f…
UMC L65LL 65nm DDR DLL - 104MHz-520MHz
The DDR DLL uses a reference clock to establish a time base in order to delay arbitrary (nonperiodic) strobe signals by precise f…
UMC L65LL 65nm DDR DLL - 164MHz-820MHz
The DDR DLL uses a reference clock to establish a time base in order to delay arbitrary (nonperiodic) strobe signals by precise f…
UMC L65SP 65nm Spread Spectrum PLL - 130MHz-650MHz
The Spread Spectrum PLL is designed to multiply an input clock by a fixed-point number between 92 and 184 with frequency spreadin…
UMC L65SP 65nm Spread Spectrum PLL - 260MHz-1300MHz
The Spread Spectrum PLL is designed to multiply an input clock by a fixed-point number between 92 and 184 with frequency spreadin…
UMC L65SP 65nm Spread Spectrum PLL - 520MHz-2600MHz
The Spread Spectrum PLL is designed to multiply an input clock by a fixed-point number between 92 and 184 with frequency spreadin…
UMC L65LL 65nm Spread Spectrum PLL - 60MHz-300MHz
The Spread Spectrum PLL is designed to multiply an input clock by a fixed-point number between 92 and 184 with frequency spreadin…
UMC L65LL 65nm Spread Spectrum PLL - 120MHz-600MHz
The Spread Spectrum PLL is designed to multiply an input clock by a fixed-point number between 92 and 184 with frequency spreadin…
UMC L65LL 65nm Spread Spectrum PLL - 240MHz-1200MHz
The Spread Spectrum PLL is designed to multiply an input clock by a fixed-point number between 92 and 184 with frequency spreadin…
UMC L65SP 65nm Clock Generator PLL - 130MHz-650MHz
The Clock Generator PLL is designed to multiply an input clock by an integer between 1 and 4096.
UMC L65SP 65nm Clock Generator PLL - 260MHz-1300MHz
The Clock Generator PLL is designed to multiply an input clock by an integer between 1 and 4096.
UMC L65SP 65nm Clock Generator PLL - 520MHz-2600MHz
The Clock Generator PLL is designed to multiply an input clock by an integer between 1 and 4096.
UMC L65LL 65nm Clock Generator PLL - 60MHz-300MHz
The Clock Generator PLL is designed to multiply an input clock by an integer between 1 and 4096.
UMC L65LL 65nm Clock Generator PLL - 120MHz-600MHz
The Clock Generator PLL is designed to multiply an input clock by an integer between 1 and 4096.
UMC L65LL 65nm Clock Generator PLL - 240MHz-1200MHz
The Clock Generator PLL is designed to multiply an input clock by an integer between 1 and 4096.
UMC L65SP 65nm Deskew PLL - 130MHz-650MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
UMC L65SP 65nm Deskew PLL - 260MHz-1300MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
UMC L65SP 65nm Deskew PLL - 520MHz-2600MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
UMC L65LL 65nm Deskew PLL - 60MHz-300MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.
UMC L65LL 65nm Deskew PLL - 120MHz-600MHz
The Deskew PLL is designed to eliminate the skew between the output of a clock distribution tree and a clock reference.