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The conversion process and data acquisition are controlled using standard control inputs that allow easy interfacing with microprocessors and DSPs. The part can operatewith either single-ended, fully differential, or pseudodifferential analog inputs. The AD7938 features eight analog input channels with a channel sequencer that allows a preprogrammed selection of channels to be converted sequentially.
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The part contains a low noise, wide bandwidth, differential track-and-hold amplifier that can handle input frequencies up to 50 MHz. The part operates from a single 2.7 V to 5.25 V power supply and feature throughput rates up to 1.5 MSPS. The AD7938 is a 12-bit high speed, low power, successive approximation (SAR) analog-to-digital converter (ADC). It provides the necessary communications between the converter and the PC, programming or controlling the device, transmitting or receiving data over a USB link. The CED1Z board is intended for use in evaluation, demonstration and development of systems using Analog Devices precision converters. Below is presented a picture of the EVAL-AD7938 Evaluation Board with the CED1 board.
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#Using cable usb blaster usb 0 device 1 instance 0x00 download#
The Nios II Flash Programmer sends file contents over an Altera download cable, such as the USB Blaster®, to a Nios II system running on the FPGA, and instructs the Nios II system to write the data to flash memory.This document presents the steps to setup an environment for using the EVAL-AD7938CBZ evaluation board together with the EVAL-CED Converter Evaluation and Development (CED) Board, the Nios II Embedded Development Suite (EDS) and the Micrium ♜-Probe run-time monitoring tool. Its purpose is to program data into a flash memory device connected to an Altera® FPGA. The Nios II Flash Programmer is part of the Nios II Embedded Design Suite (EDS). Introduction Many hardware designs that include the Nios® II processor also incorporate flash memory on the board to store FPGA configuration data or Nios II program data. C-4 Document Revision History for Troubleshooting.C-4ĭocument Revision History for Nios II Flash Programmer User Guide. C-4 "Base Address Not Aligned on Size of Device" Error.C-4 Probable Cause. C-3 "Reading System ID at Address 0x: FAIL" Error. C-3 "System Does Not Have Any Flash Memory" Error.C-3 Probable Cause. C-2 "No CFI Table Found" Error.C-2 Probable Cause. C-1 "No Nios II Processors Available" Error. Overview.C-1 Start Button Grayed Out in the Flash Programmer GUI. B-1 Document Revision History for Stand-Alone Mode.B-2 B-1 Running the Nios II Stand-Alone Flash Programmer. B-1 Installing the Nios II Stand-Alone Flash Programmer.
#Using cable usb blaster usb 0 device 1 instance 0x00 how to#
A-1 Flash Override File Format.A-2 How to Use the Flash Override File.A-2 Width Mode Override Parameter.A-2ĭocument Revision History for Non-Standard Flash Memories. A-1 Built-in Recognition and Override.A-1 Flash Override Files. 3-11 Document Revision History for Using the Flash Programmer from the Command Line.3-11
#Using cable usb blaster usb 0 device 1 instance 0x00 software#
3-6 sof2flash Command-Line Examples.3-8 elf2flash.3-8 elf2flash Parameters.3-8 Programming Both Hardware and Software into an EPCS/EPCQ Device.
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3-2 nios2-flash-programmer Command-Line Examples.3-6 sof2flash.3-6 sof2flash Parameters. Using the Flash Programmer from the Command Line. 2-5 Document Revision History for Using the Flash Programmer GUI. 2-5 Generating Flash Files and Programming Flash Memory. 2-4 Checking System ID and System Timestamp. 2-2 Working with Flash Programmer Settings Files.2-3 Setting the Hardware Connection. 2-1 Specifying your Flash Programmer Settings. 2-1 Introduction.2-1 Starting the Flash Programmer GUI. 1-3 Flash Programmer Target Design.1-3 Document Revision History for Overview of the Nios II Flash Programmer.1-5 101 Innovation Drive San Jose, CA 95134 TOC-2Ĭontents Overview of the Nios II Flash Programmer.1-1 Introduction.1-1 Prerequisites.1-2 Nios II Flash Programmer GUI and Command-Line Utilities.