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📄 adccont.asm

📁 aduc842原程序代码 ad公司芯片应用笔记
💻 ASM
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;********************************************************************
;
; Author        : ADI - Apps            www.analog.com/MicroConverter
;
; Date          : October 2003
;
; File          : ADCcont.asm
;
; Hardware      : ADuC842/ADuC843
;
; Description   : Performs ADC conversions in continuous mode at a
;                 rate of 104KSPS.
;                 Outputs ADC results into a buffer in ram.Continuously
;                 flashes LED.
;                 All rate calculations assume an 2.097152MHz Mclk.
;		
;********************************************************************

$MOD842                         ; Use 8052&ADuC842 predefined symbols

LED     EQU     P3.4            ; P3.4 drives red LED on eval board
CHAN    EQU     0               ; convert this ADC input channel..
                                ; ..chan values can be 0 thru 8


DSEG 
ORG 0030H
LENGTH EQU 40
BUFFER: DS LENGTH                ; set up buffer in RAM

;____________________________________________________________________
                                                  ; BEGINNING OF CODE
CSEG

ORG 0000h

        JMP     MAIN            ; jump to main program
;____________________________________________________________________
                                             ; INTERRUPT VECTOR SPACE
ORG 0033H ; (ADC ISR)
		CJNE    R0,#58H,CONT
                JMP     EXIT		     ; place breakpoint here in debugger to view ram after conversions
CONT:		MOV     @R0,ADCDATAH
		INC     R0
		MOV     @R0,ADCDATAL		
		INC     R0
EXIT:		RETI

;====================================================================
                                                       ; MAIN PROGRAM
ORG 004Bh

MAIN:
; PRECONFIGURE...
	MOV     ADCCON1,#0ACh   ; power up ADC /8 clk cycle + 16 cycles for conversion + 4 acq cycle  
        MOV     ADCCON2,#CHAN   ; select channel to convert

; LAUNCH CONTINUOUS CONVERSIONS...
	MOV     R0,#BUFFER
        SETB	EA              ; enable interrupts
        SETB    EADC            ; enable ADC interrupt
        SETB    CCONV           ; begin continuous conversions

; CONTINUE WITH OTHER CODE...
	MOV     A,#10		; delay length
AGAIN:  CPL     LED             ; blink (complement) the LED
	CALL	DELAY		; delay
        JMP     AGAIN           ; repeat

; the micro is free to continue with other tasks (flashing the LED in
; this case) while the ADC is continuously converting, and results
; are being handled by the ADC interrupt service routine.

;____________________________________________________________________
                                                         ; SUBROUTINE
DELAY:					; Delays by 10ms * A
					; 10mSec based on 2.09MHz
					; Core Clock 
					;

		MOV	R1,A		; Acc holds delay variable (1 clock)
 DLY0:		MOV	R2,#01Bh	; Set up delay loop0 (2 clocks)
 DLY1:		MOV	R3,#0FFh	; Set up delay loop1 (2 clocks)
		DJNZ	R3,$		; Dec R3 & Jump here until R3 is 0 (3 clocks)
		DJNZ	R2,DLY1         ; Dec R2 & Jump DLY1 until R2 is 0 (3 clocks)
		DJNZ	R1,DLY0		; Dec R1 & Jump DLY0 until R1 is 0 (3 clocks)
		RET			; Return from subroutine

;____________________________________________________________________

					    
END

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