Fractional Rate Resampler IP
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367
IP
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High Throughput Rate OFDM Baseband PHY Processor
- Custom OFDMA system based on 802.16e standard features.
- Complete Back-end User IF for primitive MAC integration.
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FIR II Intel® FPGA IP Core
- The FIR II Intel IP core provides a fully-integrated finite impulse response (FIR) filter function optimized for use with Intel FPGA devices
- The FIR II IP core has an interactive parameter editor that allows you to easily create custom FIR filters
- The parameter editor outputs IP functional simulation model files for use with Verilog HDL and VHDL simulators
- You can use the parameter editor to implement a variety of filter types, including single rate, decimation, interpolation, and fractional rate filters.
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LVDS TX and RX PHY
- The LVDS implements LVDS TIA/EIA protocol, providing a low-voltage, high-speed point-to-point signal interface
- It supports either DDR-type (sensor-side) or Byte-type (screen-side)
- It uses differential signaling to transmit data over a constant-impedance transmission line, ensuring robust noise immunity and low power consumption
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0.6G - 12.5G Universal SerDes
- 0.6Gbps to 12.5Gbps universal SERDES IP
- Support full, 1/2, 1/4 and 1/8 data rate mode
- Support up to 12 TX/RX data lanes with shared PMU
- Fractional PLL for wide data rate range selection
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UMC L28HPCLVT 28nm Spread Spectrum PLL - 188MHz-943MHz
- 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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UMC L28HPCLVT 28nm Spread Spectrum PLL - 378MHz-1890MHz
- 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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UMC L28HPCLVT 28nm Spread Spectrum PLL - 754MHz-3770MHz
- 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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UMC L28EHVLVT 28nm Spread Spectrum PLL - 196MHz-984MHz
- 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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UMC L28EHVLVT 28nm Spread Spectrum PLL - 394MHz-1970MHz
- 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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UMC L28EHVLVT 28nm Spread Spectrum PLL - 788MHz-3940MHz
- 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.