f53xa_oscillator_crystal.c
来自「芯科原厂所有c8051fxx程序的例子。」· C语言 代码 · 共 166 行
C
166 行
//-----------------------------------------------------------------------------
// F53xA_Oscillator_Crystal.c
//-----------------------------------------------------------------------------
// Copyright 2007 Silicon Laboratories, Inc.
// http://www.silabs.com
//
// Program Description:
//
// This program demonstrates how to configure the oscillator for use with an
// external quartz crystal.
//
//
// How To Test:
//
// 1) Ensure that a quartz crystal, 10Meg resistor, and proper loading
// capacitors are installed.
// 2) Specify the crystal frequency in the constant <CRYSTAL_FREQUENCY>.
// 3) Download code to an 'F53xA target board (either device A or device B).
// 4) Measure the frequency output on P0.0.
//
//
// Target: C8051F52xA/F53xA (C8051F530A TB)
// Tool chain: Keil C51 7.50 / Keil EVAL C51
// Command Line: None
//
// Release 1.0
// -Updated for 'F530A TB (TP)
// -30 JAN 2008
//
// Release 1.0
// -Initial Revision (DS)
// -19 JUNE 2007
//
//-----------------------------------------------------------------------------
// Includes
//-----------------------------------------------------------------------------
#include "compiler_defs.h"
#include "C8051F520A_defs.h"
//-----------------------------------------------------------------------------
// External Oscillator Crystal Frequency Selection
//-----------------------------------------------------------------------------
//
// Please initialize the following constant to the crystal frequency
//
#define CRYSTAL_FREQUENCY 24500000 // Crystal Frequency in Hz
// XFCN Setting Macro
#if (CRYSTAL_FREQUENCY <= 20000)
#define XFCN 0
#elif(CRYSTAL_FREQUENCY <= 58000)
#define XFCN 1
#elif(CRYSTAL_FREQUENCY <= 155000)
#define XFCN 2
#elif(CRYSTAL_FREQUENCY <= 415000)
#define XFCN 3
#elif(CRYSTAL_FREQUENCY <= 1100000)
#define XFCN 4
#elif(CRYSTAL_FREQUENCY <= 3100000)
#define XFCN 5
#elif(CRYSTAL_FREQUENCY <= 8200000)
#define XFCN 6
#elif(CRYSTAL_FREQUENCY <= 25000000)
#define XFCN 7
#else
#error "Crystal Frequency must be less than 25MHz"
#endif
//-----------------------------------------------------------------------------
// Function Prototypes
//-----------------------------------------------------------------------------
void OSCILLATOR_Init (void);
void PORT_Init (void);
//-----------------------------------------------------------------------------
// main() Routine
//-----------------------------------------------------------------------------
void main (void)
{
PCA0MD &= ~0x40; // WDTE = 0 (clear watchdog timer
// enable)
PORT_Init(); // Initialize Port I/O
OSCILLATOR_Init (); // Initialize Oscillator
while (1); // Loop forever
}
//-----------------------------------------------------------------------------
// Initialization Subroutines
//-----------------------------------------------------------------------------
//-----------------------------------------------------------------------------
// OSCILLATOR_Init
//-----------------------------------------------------------------------------
//
// Return Value : None
// Parameters : None
//
// This function initializes the system clock to use the external oscillator
// in crystal mode.
//
//-----------------------------------------------------------------------------
void OSCILLATOR_Init (void)
{
int i; // Delay counter
OSCXCN = (0x60 | XFCN); // Start external oscillator with
// the appropriate XFCN setting
// based on crystal frequency
for (i=0; i < 256; i++); // Wait for crystal osc. to start
while (!(OSCXCN & 0x80)); // Wait for crystal osc. to settle
RSTSRC = 0x06; // Enable missing clock detector and
// VDD Monitor reset
CLKSEL = 0x01; // Select external oscillator as system
// clock source
OSCICN = 0x00; // Disable the internal oscillator.
}
//-----------------------------------------------------------------------------
// PORT_Init
//-----------------------------------------------------------------------------
//
// Return Value : None
// Parameters : None
//
// This function configures the crossbar and ports pins.
//
// The oscillator pins should be configured as analog inputs when using the
// external oscillator in crystal mode.
//
// P0.0 digital push-pull /SYSCLK
//
// P0.7 analog don't care XTAL1
// P1.0 analog don't care XTAL2
//-----------------------------------------------------------------------------
void PORT_Init (void)
{
// Oscillator Pins
P0MDIN &= ~0x80; // P0.7 is analog
P1MDIN &= ~0x01; // P1.0 is analog
P0SKIP |= 0x80; // P0.7 skipped in the Crossbar
P1SKIP |= 0x01; // P1.0 skipped in the Crossbar
// Buffered System Clock Output
P0MDOUT |= 0x01; // P0.0 is push-pull
// Crossbar Initialization
XBR0 = 0x08; // Route /SYSCLK to first available pin
XBR1 = 0x40; // Enable Crossbar and weak pull-ups
}
//-----------------------------------------------------------------------------
// End Of File
//-----------------------------------------------------------------------------
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