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1. Intel® MAX® 10 Analog to Digital Converter Overview
2. Intel® MAX® 10 ADC Architecture and Features
3. Intel® MAX® 10 ADC Design Considerations
4. Intel® MAX® 10 ADC Implementation Guides
5. Modular ADC Core Intel® FPGA IP and Modular Dual ADC Core Intel® FPGA IP References
6. Intel® MAX® 10 Analog to Digital Converter User Guide Archives
7. Document Revision History for Intel® MAX® 10 Analog to Digital Converter User Guide
2.2.1.1. Configuration 1: Standard Sequencer with Avalon-MM Sample Storage
2.2.1.2. Configuration 2: Standard Sequencer with Avalon-MM Sample Storage and Threshold Violation Detection
2.2.1.3. Configuration 3: Standard Sequencer with External Sample Storage
2.2.1.4. Configuration 4: ADC Control Core Only
5.4.1. Command Interface of Modular ADC Core and Modular Dual ADC Core
5.4.2. Response Interface of Modular ADC Core and Modular Dual ADC Core
5.4.3. Threshold Interface of Modular ADC Core and Modular Dual ADC Core
5.4.4. CSR Interface of Modular ADC Core and Modular Dual ADC Core
5.4.5. IRQ Interface of Modular ADC Core and Modular Dual ADC Core
5.4.6. Peripheral Clock Interface of Modular ADC Core and Modular Dual ADC Core
5.4.7. Peripheral Reset Interface of Modular ADC Core and Modular Dual ADC Core
5.4.8. ADC PLL Clock Interface of Modular ADC Core and Modular Dual ADC Core
5.4.9. ADC PLL Locked Interface of Modular ADC Core and Modular Dual ADC Core
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2.1.3. ADC Analog Input Pins
The analog input pins support single-ended and unipolar measurements.
The ADC block in Intel® MAX® 10 devices contains two types of ADC analog input pins:
- Dedicated ADC analog input pin—pins with dedicated routing that ensures both dedicated analog input pins in a dual ADC device has the same trace length.
- Dual function ADC analog input pin—pins that share the pad with GPIO pins.
If you use bank 1A for ADC, you cannot use the bank for GPIO.
Each analog input pin in the ADC block is protected by electrostatic discharge (ESD) cell.