Spread Spectrum PLL IP for TSMC
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Spread Spectrum PLL IP
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Spread Spectrum PLL IP
for TSMC
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- 28nm
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Wide-Range Low-Area Digital PLL in TSMC 28HPM
- TSMC 28HPM
- Wide Range: 40kHz to 4 GHz
- Size: <0.0mm2
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Aeonic Generate Clock Generation Module [PLL], 8x smaller than fractional analog solutions
- Process portable
- Proven (65nm to 3nm)
- Full SCAN testable
- Core voltage supply
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TSMC CLN28HPC 28nm Spread Spectrum PLL - 150MHz-750MHz
- Designed for PC, networking, and consumer-electronics applications where spread-spectrum clock sources are required to satisfy FCC requirements for peak RF spectral emissions.
- Spreading rate and spreading depth are precisely adjustable to allow the designer to dial-in the desired characteristics.
- 15-bit fractional-N feedback divider with 4 bits of precise control.
- Available with multi-phase outputs.
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TSMC CLN28HPC 28nm Spread Spectrum PLL - 300MHz-1500MHz
- Designed for PC, networking, and consumer-electronics applications where spread-spectrum clock sources are required to satisfy FCC requirements for peak RF spectral emissions.
- Spreading rate and spreading depth are precisely adjustable to allow the designer to dial-in the desired characteristics.
- 15-bit fractional-N feedback divider with 4 bits of precise control.
- Available with multi-phase outputs.
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TSMC CLN28HPC 28nm Spread Spectrum PLL - 600MHz-3000MHz
- Designed for PC, networking, and consumer-electronics applications where spread-spectrum clock sources are required to satisfy FCC requirements for peak RF spectral emissions.
- Spreading rate and spreading depth are precisely adjustable to allow the designer to dial-in the desired characteristics.
- 15-bit fractional-N feedback divider with 4 bits of precise control.
- Available with multi-phase outputs.
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TSMC CLN28HPL 28nm Spread Spectrum PLL - 96MHz-481MHz
- Designed for PC, networking, and consumer-electronics applications where spread-spectrum clock sources are required to satisfy FCC requirements for peak RF spectral emissions.
- Spreading rate and spreading depth are precisely adjustable to allow the designer to dial-in the desired characteristics.
- 15-bit fractional-N feedback divider with 4 bits of precise control.
- Available with multi-phase outputs.
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TSMC CLN28HPL 28nm Spread Spectrum PLL - 192MHz-962MHz
- Designed for PC, networking, and consumer-electronics applications where spread-spectrum clock sources are required to satisfy FCC requirements for peak RF spectral emissions.
- Spreading rate and spreading depth are precisely adjustable to allow the designer to dial-in the desired characteristics.
- 15-bit fractional-N feedback divider with 4 bits of precise control.
- Available with multi-phase outputs.
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TSMC CLN28HPL 28nm Spread Spectrum PLL - 384MHz-1920MHz
- Designed for PC, networking, and consumer-electronics applications where spread-spectrum clock sources are required to satisfy FCC requirements for peak RF spectral emissions.
- Spreading rate and spreading depth are precisely adjustable to allow the designer to dial-in the desired characteristics.
- 15-bit fractional-N feedback divider with 4 bits of precise control.
- Available with multi-phase outputs.
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TSMC CLN28HPM 28nm Spread Spectrum PLL - 150MHz-750MHz
- Designed for PC, networking, and consumer-electronics applications where spread-spectrum clock sources are required to satisfy FCC requirements for peak RF spectral emissions.
- Spreading rate and spreading depth are precisely adjustable to allow the designer to dial-in the desired characteristics.
- 15-bit fractional-N feedback divider with 4 bits of precise control.
- Available with multi-phase outputs.
-
TSMC CLN28HPM 28nm Spread Spectrum PLL - 300MHz-1500MHz
- Designed for PC, networking, and consumer-electronics applications where spread-spectrum clock sources are required to satisfy FCC requirements for peak RF spectral emissions.
- Spreading rate and spreading depth are precisely adjustable to allow the designer to dial-in the desired characteristics.
- 15-bit fractional-N feedback divider with 4 bits of precise control.
- Available with multi-phase outputs.