These are the examples provided for [[/users/frank26080115/libraries/LPC1700CMSIS_Lib/]] Note, the entire "program" is not compilable!

Committer:
frank26080115
Date:
Sun Mar 20 05:38:56 2011 +0000
Revision:
0:bf7b9fba3924

        

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frank26080115 0:bf7b9fba3924 1 ******************** (C) COPYRIGHT 2010 NXPSemiconductors *******************
frank26080115 0:bf7b9fba3924 2 * @file SPI\Master\abstract.txt
frank26080115 0:bf7b9fba3924 3 * @author NXP MCU SW Application Team
frank26080115 0:bf7b9fba3924 4 * @version 2.0
frank26080115 0:bf7b9fba3924 5 * @date
frank26080115 0:bf7b9fba3924 6 * @brief Description of the SPI Master example.
frank26080115 0:bf7b9fba3924 7 ******************************************************************************
frank26080115 0:bf7b9fba3924 8 * Software that is described herein is for illustrative purposes only
frank26080115 0:bf7b9fba3924 9 * which provides customers with programming information regarding the
frank26080115 0:bf7b9fba3924 10 * products. This software is supplied "AS IS" without any warranties.
frank26080115 0:bf7b9fba3924 11 * NXP Semiconductors assumes no responsibility or liability for the
frank26080115 0:bf7b9fba3924 12 * use of the software, conveys no license or title under any patent,
frank26080115 0:bf7b9fba3924 13 * copyright, or mask work right to the product. NXP Semiconductors
frank26080115 0:bf7b9fba3924 14 * reserves the right to make changes in the software without
frank26080115 0:bf7b9fba3924 15 * notification. NXP Semiconductors also make no representation or
frank26080115 0:bf7b9fba3924 16 * warranty that such application will be suitable for the specified
frank26080115 0:bf7b9fba3924 17 * use without further testing or modification.
frank26080115 0:bf7b9fba3924 18 ******************************************************************************
frank26080115 0:bf7b9fba3924 19
frank26080115 0:bf7b9fba3924 20 @Example description:
frank26080115 0:bf7b9fba3924 21 Purpose:
frank26080115 0:bf7b9fba3924 22 This example describes how to use SPI as master to connect with SPI slave
frank26080115 0:bf7b9fba3924 23 Note that: this example will run combine with slave example at folder \Slave.
frank26080115 0:bf7b9fba3924 24 (Pls see "Step to run" part in this file for more information)
frank26080115 0:bf7b9fba3924 25 Process:
frank26080115 0:bf7b9fba3924 26 SPI configuration:
frank26080115 0:bf7b9fba3924 27 - CPHA = 0: data is sampled on the second clock edge of SCK.
frank26080115 0:bf7b9fba3924 28 - CPOL = 1: SCK is active low
frank26080115 0:bf7b9fba3924 29 - Clock rate = 2MHz
frank26080115 0:bf7b9fba3924 30 - LSBF = 0: SPI data is transferred MSB first
frank26080115 0:bf7b9fba3924 31 - BITS = 10: 10 bits per transfer
frank26080115 0:bf7b9fba3924 32 - MSTR = 1: SPI operates in Master mode
frank26080115 0:bf7b9fba3924 33 Using SSEL as GPIO pin to handler chip select signal via 'CS_Force( )' function.
frank26080115 0:bf7b9fba3924 34 After initialize buffer, SPI master will transfer/receive data to/from SPI slave
frank26080115 0:bf7b9fba3924 35 in POLLING mode by calling 'SPI_ReadWrite( )' function.
frank26080115 0:bf7b9fba3924 36 After transmittion completed, receive and transmit buffer will be compare, if they
frank26080115 0:bf7b9fba3924 37 are not similare, the program will be enter infinite loop and a error notice will
frank26080115 0:bf7b9fba3924 38 be displayed.
frank26080115 0:bf7b9fba3924 39
frank26080115 0:bf7b9fba3924 40 @Directory contents:
frank26080115 0:bf7b9fba3924 41 \EWARM: includes EWARM (IAR) project and configuration files
frank26080115 0:bf7b9fba3924 42 \Keil: includes RVMDK (Keil)project and configuration files
frank26080115 0:bf7b9fba3924 43
frank26080115 0:bf7b9fba3924 44 lpc17xx_libcfg.h: Library configuration file - include needed driver library for this example
frank26080115 0:bf7b9fba3924 45 makefile: Example's makefile (to build with GNU toolchain)
frank26080115 0:bf7b9fba3924 46 spi_master.c: Main program
frank26080115 0:bf7b9fba3924 47
frank26080115 0:bf7b9fba3924 48 @How to run:
frank26080115 0:bf7b9fba3924 49 Hardware configuration:
frank26080115 0:bf7b9fba3924 50 This example was tested on:
frank26080115 0:bf7b9fba3924 51 Keil MCB1700 with LPC1768 vers.1
frank26080115 0:bf7b9fba3924 52 These jumpers must be configured as following:
frank26080115 0:bf7b9fba3924 53 - VDDIO: ON
frank26080115 0:bf7b9fba3924 54 - VDDREGS: ON
frank26080115 0:bf7b9fba3924 55 - VBUS: ON
frank26080115 0:bf7b9fba3924 56 - Remain jumpers: OFF
frank26080115 0:bf7b9fba3924 57 IAR LPC1768 KickStart vers.A
frank26080115 0:bf7b9fba3924 58 These jumpers must be configured as following:
frank26080115 0:bf7b9fba3924 59 - PWR_SEL: depend on power source
frank26080115 0:bf7b9fba3924 60 - DBG_EN : ON
frank26080115 0:bf7b9fba3924 61 - Remain jumpers: OFF
frank26080115 0:bf7b9fba3924 62
frank26080115 0:bf7b9fba3924 63 SPI connection:
frank26080115 0:bf7b9fba3924 64 - P0.15 - SCK on master connects to P0.15 - SCK on slave board;
frank26080115 0:bf7b9fba3924 65 - P0.16 - SSEL on master connects to P0.16 - SSEL on slave board (used as GPIO)
frank26080115 0:bf7b9fba3924 66 - P0.17 - MISO on master connects to P0.17 - MISO on slave board
frank26080115 0:bf7b9fba3924 67 - P0.18 - MOSI on master connects to P0.18 - MOSI on slave board
frank26080115 0:bf7b9fba3924 68 Common ground must be connected together between two board.
frank26080115 0:bf7b9fba3924 69
frank26080115 0:bf7b9fba3924 70 Serial display configuration:(e.g: TeraTerm, Hyperterminal, Flash Magic...)
frank26080115 0:bf7b9fba3924 71 – 115200bps
frank26080115 0:bf7b9fba3924 72 – 8 data bit
frank26080115 0:bf7b9fba3924 73 – No parity
frank26080115 0:bf7b9fba3924 74 – 1 stop bit
frank26080115 0:bf7b9fba3924 75 – No flow control
frank26080115 0:bf7b9fba3924 76
frank26080115 0:bf7b9fba3924 77 Running mode:
frank26080115 0:bf7b9fba3924 78 This example can run on RAM/ROM mode.
frank26080115 0:bf7b9fba3924 79
frank26080115 0:bf7b9fba3924 80 Note: If want to burn hex file to board by using Flash Magic, these jumpers need
frank26080115 0:bf7b9fba3924 81 to be connected:
frank26080115 0:bf7b9fba3924 82 - MCB1700 with LPC1768 ver.1:
frank26080115 0:bf7b9fba3924 83 + RST: ON
frank26080115 0:bf7b9fba3924 84 + ISP: ON
frank26080115 0:bf7b9fba3924 85 - IAR LPC1768 KickStart vers.A:
frank26080115 0:bf7b9fba3924 86 + RST_E: ON
frank26080115 0:bf7b9fba3924 87 + ISP_E: ON
frank26080115 0:bf7b9fba3924 88
frank26080115 0:bf7b9fba3924 89 (Please reference "LPC1000 Software Development Toolchain" - chapter 4 "Creating and working with
frank26080115 0:bf7b9fba3924 90 LPC1000CMSIS project" for more information)
frank26080115 0:bf7b9fba3924 91
frank26080115 0:bf7b9fba3924 92 Step to run:
frank26080115 0:bf7b9fba3924 93 - Step 1: Build example.
frank26080115 0:bf7b9fba3924 94 - Step 2: Burn hex file into master board (if run on ROM mode)
frank26080115 0:bf7b9fba3924 95 - Step 3: Build "Slave\spi_slave" example
frank26080115 0:bf7b9fba3924 96 - Step 4: Burn this hex file into slave board.
frank26080115 0:bf7b9fba3924 97 - Step 5: Connect UART0 on master board to COM port on your computer
frank26080115 0:bf7b9fba3924 98 - Step 6: Configure hardware, connect master board and slave board as above instruction
frank26080115 0:bf7b9fba3924 99 - Step 7: Configure serial display as above instruction
frank26080115 0:bf7b9fba3924 100 - Step 8: Run example and observe SPI master transfer result from serial display
frank26080115 0:bf7b9fba3924 101 + Press '1' to start SPI transfer
frank26080115 0:bf7b9fba3924 102
frank26080115 0:bf7b9fba3924 103 (Pls see "LPC17xx Example Description" document - chapter "Examples > SPI > Master"
frank26080115 0:bf7b9fba3924 104 for more details)
frank26080115 0:bf7b9fba3924 105
frank26080115 0:bf7b9fba3924 106 @Tip:
frank26080115 0:bf7b9fba3924 107 - Open \EWARM\*.eww project file to run example on IAR
frank26080115 0:bf7b9fba3924 108 - Open \RVMDK\*.uvproj project file to run example on Keil