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1. Intel Agilex® 7 FPGA F-Series and I-Series Clocking and PLL Overview
2. F-Series and I-Series Clocking and PLL Architecture and Features
3. F-Series and I-Series Clocking and PLL Design Considerations
4. Clock Control Intel® FPGA IP Core
5. IOPLL Intel® FPGA IP Core
6. IOPLL Reconfig Intel® FPGA IP Core
7. Intel Agilex 7 Clocking and PLL User Guide: F-Series and I-Series Archives
8. Document Revision History for the Intel Agilex® 7 Clocking and PLL User Guide: F-Series and I-Series
2.2.1. PLL Features
2.2.2. PLL Usage
2.2.3. PLL Locations
2.2.4. PLL Architecture
2.2.5. PLL Control Signals
2.2.6. PLL Feedback Modes
2.2.7. Clock Multiplication and Division
2.2.8. Programmable Phase Shift
2.2.9. Programmable Duty Cycle
2.2.10. PLL Cascading
2.2.11. PLL Input Clock Switchover
2.2.12. PLL Reconfiguration and Dynamic Phase Shift
2.2.13. PLL Calibration
3.1. Guidelines: Clock Switchover
3.2. Guidelines: Timing Closure
3.3. Guidelines: Resetting the PLL
3.4. Guidelines: Configuration Constraints
3.5. Guidelines: I/O PLL Reconfiguration
3.6. Clocking Constraints
3.7. IP Core Constraints
3.8. Guideline: Achieving 5% Duty Cycle for fOUT_EXT ≥ 300 MHz Using tx_outclk Port from LVDS SERDES Intel® FPGA IP
6.1. Release Information for IOPLL Reconfig Intel® FPGA IP
6.2. Implementing I/O PLL Reconfiguration in the IOPLL Reconfig IP Core
6.3. IOPLL Reconfig IP Core Reconfiguration Modes
6.4. Avalon® Memory-Mapped Interface Ports in the IOPLL Reconfig IP Core
6.5. Address Bus and Data Bus Settings
6.6. Design Example
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5. IOPLL Intel® FPGA IP Core
The IOPLL IP core allows you to configure the settings of the F-Series and I-Series I/O PLL.
The IOPLL IP core supports the following features:
- Supports six different clock feedback modes: direct, external feedback, normal, source synchronous, zero delay buffer, and LVDS mode.
- Generates up to seven output clocks for I/O bank I/O PLL and three output clocks for fabric-feeding I/O PLL for the F-Series and I-Series device.
- Switches between two reference input clocks.
- Supports adjacent PLL (adjpllin) input to connect with an upstream PLL in PLL dedicated cascading mode.
- Generates the Memory Initialization File (.mif) and allows PLL dynamic reconfiguration.
- Supports PLL dynamic phase shift.