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1. Intel Agilex® 7 M-Series LVDS SERDES Overview
2. Intel Agilex® 7 M-Series LVDS SERDES Architecture
3. Intel Agilex® 7 M-Series LVDS SERDES Transmitter
4. Intel Agilex® 7 M-Series LVDS SERDES Receiver
5. Intel Agilex® 7 M-Series High-Speed LVDS I/O Implementation Guide
6. Intel Agilex® 7 M-Series LVDS SERDES Timing
7. LVDS SERDES Intel® FPGA IP Design Examples
8. Intel Agilex® 7 M-Series LVDS SERDES Design Guidelines
9. Intel Agilex® 7 M-Series LVDS SERDES Troubleshooting Guidelines
10. Documentation Related to the Intel Agilex® 7 LVDS SERDES User Guide: M-Series
11. Document Revision History for the Intel Agilex® 7 LVDS SERDES User Guide: M-Series
5.1.6.1. LVDS SERDES Intel® FPGA IP General Settings
5.1.6.2. LVDS SERDES Intel® FPGA IP Pin Settings
5.1.6.3. LVDS SERDES Intel® FPGA IP PLL Settings
5.1.6.4. LVDS SERDES Intel® FPGA IP Receiver Settings
5.1.6.5. LVDS SERDES Intel® FPGA IP Transmitter Settings
5.1.6.6. LVDS SERDES Intel® FPGA IP Clock Resource Summary
8.1. Use PLLs in Integer PLL Mode for LVDS
8.2. Use High-Speed Clock from PLL to Clock SERDES Only
8.3. Pin Placement for Differential Channels
8.4. SERDES Pin Pairs for Soft-CDR Mode
8.5. Placing LVDS Transmitters and Receivers in the Same GPIO-B Sub-Bank
8.6. Sharing LVDS SERDES I/O Lane with Other Intel® FPGA IPs
8.7. VCCIO_PIO Power Scheme for LVDS SERDES
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3.3. Clocking the Differential Transmitters
The I/O PLL generates the fast_clock signal. The fast_clock signal clocks the load and shift registers, and runs at the serial data rate.
You can configure any M-Series transmitter data channel to generate a source-synchronous transmitter clock output. This allows placement of the output clock near the data outputs to simplify board layout and reduce clock-to-data skew.
Figure 6. Transmitter in Clock Output Mode
Different applications often require specific clock-to-data alignments or specific data-rate-to-clock-rate factors. You can specify these settings statically in the LVDS SERDES Intel® FPGA IP parameter editor:
- The transmitter can output a clock signal at the same rate as the data with a maximum output clock frequency supported by the device speed grade.
- You can divide the output clock by a factor of 4 or 8, depending on the serialization factor.
- You can set the phase of the clock in relation to the data at 0° (edge-aligned) or 180° (center-aligned). The I/O PLLs provide additional support for other phase shifts in 45° increments.