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1. MAX® 10 Analog to Digital Converter Overview
2. MAX® 10 ADC Architecture and Features
3. MAX® 10 ADC Design Considerations
4. MAX® 10 ADC Implementation Guides
5. Modular ADC Core Intel® FPGA IP and Modular Dual ADC Core Intel® FPGA IP References
6. MAX® 10 Analog to Digital Converter User Guide Archives
7. Document Revision History for the 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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2.1.6. ADC Voltage Reference
Each ADC block in MAX® 10 devices can independently use an internal or external voltage reference. In dual ADC devices, you can assign an internal voltage reference to one ADC block and an external voltage reference to the other ADC block.
There is only one external VREF pin in each MAX® 10 device. Therefore, if you want to assign external voltage reference for both ADC blocks in dual ADC devices, share the same external voltage reference for both ADC blocks.
Altera recommends that you use a clean external voltage reference with a maximum resistance of 100 Ω for the ADC blocks. If the ADC block uses an internal voltage reference, the ADC block is tied to its analog voltage and the conversion result is ratiometric.