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Datei
ds1620.c
#include "ds1620.h" #include <util/delay.h> unsigned char ds1620_init (void) { /*set all pins as output*/ DDR_DS1620 = (1<<DQ_DS1620) | (1<<CLK_DS1620) | (1<<RES_DS1620); PORT_DS1620 = (0<<DQ_DS1620) | (1<<CLK_DS1620
in „DS1620 - Auslesen der Temperatur?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ds1620.c
#include "ds1620.h" #include <util/delay.h> unsigned char ds1620_init (void) { /*set all pins as output*/ DDR_DS1620 = (1<<DQ_DS1620) | (1<<CLK_DS1620) | (1<<RES_DS1620); /*set CPU use bit, continuously temperature conversion*/ PORT_DS1620 |= (1<<DQ_DS1620) | (1<<CLK_DS1620) | (0<<RES_DS1620); _delay_ms(10); //ds1620_write_temp_L(0x0000); // Min 0°C //ds1620_write_temp_L(0x0001); // Min 1°C //ds1620_write_temp_L(0x0002); // Min 2°C /
in „DS1620 - Initialisierung zumTH und TL schreiben?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ds1620.h
=======================// #define DS1620_PORT PORTC #define DS1620_DDR DDRC #define DS1620_PIN PINC #define DS1620_DQ PC0 #define DS1620_CLK PC1 #define DS1620_RST PC2 //====================================================================
in „DS1620 Ansteuern klappt nicht, warum?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ds1620.c
#include "ds1620.h" #include <util/delay.h> void ds1620_init(void); static void ds1620_write (uint16_t value, uint8_t number_bits); static uint16_t ds1620_read (uint8_t number_bits); void ds1620_write_config (uint8
in „DS1620 - Initialisierung zumTH und TL schreiben?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ds1620.c
#include "ds1620.h" #include <util/delay.h> void ds1620_init(void); static void ds1620_write (uint16_t value, uint8_t number_bits); static uint16_t ds1620_read (uint8_t number_bits); void ds1620_write_config (uint8
in „DS1620 - Initialisierung zumTH und TL schreiben?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ds1620.c
------------------------------------------------------------------------------------------- void DS1620_warten(); void DS1620_INI(); void DS1620_Messung(); void DS1620_write(unsigned char m); unsigned char DS1620_read(void); unsigned char DS1620_get(void); void DS1620_put(unsigned char cmd); //------
in „Mal wieder DS1820“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ds1620.c
#include <avr/io.h> #define Port PORTB #define Pin PINB #define DDPort DDRB #define DS1620_DQ 1 #define DS1620_CLK 2 #define DS1620_RST 3 char Get1620byte (void) { unsigned char i = 0; char byte = 0; DDPort &= ~_BV(DS1620_DQ); //DQ als Eingang for (i = 0; i < 8; i++) { Port |= _BV(DS1620
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funktionen.txt
: mov a, bit_stelle2 cjne a, #7, go_back inc bit_stelle2 mov a, ds1620byte anl a, #1 cjne a, #1 ,DQ0 DQ1: setb p1.2 mov p1, #7 ;| RST,CL, DQ =HIGH mov a, ds1620byte rl a mov ds1620byte, a jmp wordlength DQ0: clr p1.2 mov p1, #5 ;| RST,CL =HIGH, DQ=LOW mov a, ds1620byte
in „habe auch Probs mit DS1620“ · Mikrocontroller und Digitale Elektronik ·
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Datei
funktionen.txt
inc bit_stelle2 setb p1.0 ;|CLOCK= HIGH mov a, p1 anl a, #2 cjne a, #2, write_0 write_1: mov a, ds1620byte setb c rrc a mov ds1620byte, a jmp wordlength2 write_0: mov a, ds1620byte clr c rrc a mov ds1620byte, a jmp wordlength2 vorzeichenbit: clr p1.0 ;|CLOCK= LOW inc bit_stelle2 setb p1.0 ;|CLOCK= HIGH
in „habe auch Probs mit DS1620“ · Mikrocontroller und Digitale Elektronik ·
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source.txt
temp); // timing=0; // StartTA1(); lcd_print(buf,0,0); // StopTA1(); } -------------------- ---- DS1620.c ------ -------------------- #include "global.h" #include "DS1620.h" void SetTempH(char temp) { RST=1; Put1620byte(0x01); Write1620byte(temp); RST=0; } void SetTempL(char temp) { RST=1; Put1620byte
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PDF
app105.pdf
circuit shown in Figure 2, which is the schematic of the DS1620K demo kit. The hardware for the DS1620K demo kit “steals” power from a parallel port using D1, D2, D3, and C3. Not all PC parallel ports are able to supply sufficient current to make this hardware
in „DS18S20 hohe Auflösung berechnen“ · Mikrocontroller und Digitale Elektronik ·
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bs1Appnotes.pdf
in °C or °F, as shown in the listing. Page 190 •BASICStampProgrammingManual1.9•Parallax,Inc. 23: DS1620 Digital Thermometer BASIC Stamp I Application Notes OnceyouhaveconfiguredtheDS1620,youdon’thavetoreconfigureit unlessyouwanttochangeasetting.TheDS1620storesitsconfiguration in EEPROM (electrically
in „Smartcard-Kode-Schloss mit PIC16F84“ · Mikrocontroller und Digitale Elektronik ·
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Datei
init.txt
;----------------------------------------------------------------------------- ;---- DS 1620 Initialisierung---------------------------------------------- ;----------------------------------------------------------------------------- mov ds1620byte, #0Ch call put1620byte ;|->write config mov ds1620byte, #03h call put1620byte ;|->set to CPU & 1SHOT mov p1, #0 ;| RST, CL, DQ = Low - OUTPUT ;---------------------------------------------------------------------------------
in „habe auch Probs mit DS1620“ · Mikrocontroller und Digitale Elektronik ·
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Datei
thermotest.c
, wurde nun auf 1843200 (1,8432MHz) gesetzt!" #define F_CPU 1000000 #endif //sbit RST = 0xC1; /* DS1620 reset line */ //sbit CLK = 0xC5; /* DS1620 clock line */ //sbit DQ = 0xC4; /* DS1620 data line */ int com; int DATA; int DATA2; int i; #define SLA_W 0xa0 //(00)address 0(page) 0(r/w) #define SLA_R
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Wohnraumuhr1_Rev1.1.pdf
+5V D D1 78S05 3 RST TL 6 IN OUT X2-1 + 4 5 1N4001 C5 C6 GND C7 GND TC X2-2 1000µ/25V 100n 100n DS1620 AK500 GND GND GND GND GND GND 1 2 3 4 5 6 ELV_DC2_91610DCF2 DCF1 + Sig.- C8 1 3 10µ/16V D2 D3 D4 D5 0 0 0 0 0 0 0 0 0 8 8 8 8 8 8 8 6 6 2 6 6 6 6 6 6 6 6 6 6 6 6 0 6 5 0 2 1 6 7 0 9 7 2 5 7 6 1 1 1
in „wohnraumuhr 2 - leiterplatte nach projekt scott huehn“ · Mikrocontroller und Digitale Elektronik ·
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WZU-Rev1.3.pdf
D1 78S05 3 6 RST TL X2-1 + IN OUT 4 5 1N4001 C5 C6 GND C7 GND TC X2-2 1000µ/25V 100n 100n AK500 DS1620 0V 0V 0V 0V 0V 0V 1 2 3 4 5 6 210 ELV_DC2_91610DCF2 DCF1 + Sig- C8 1 3 10µ/16V D3 D4 D5 D2 0 0 0 0 0 0 0 8 8 7 8 8 8 8 8 6 6 6 6 6 6 6 6 6 2 6 6 6 6 6 8 6 1 1 1 2 2 1 1 3 2 R 2 2 3 3 3 R R R R R R
in „ELV - DCF Großuhr ELV9991 alias ZILOG Z86E0812PSC“ · Mikrocontroller und Digitale Elektronik ·
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Wohnraumuhr1_Rev1.1.pdf
+5V D D1 78S05 3 RST TL 6 IN OUT X2-1 + 4 5 1N4001 C5 C6 GND C7 GND TC X2-2 1000µ/25V 100n 100n DS1620 AK500 GND GND GND GND GND GND 1 2 3 4 5 6 Gehäuse BOPLA ET-233 . 2 1 Gehäuse Fischer GD 135 38 220 (200) ELV_DC2_91610DCF2 2 DCF1 1 J + Sig- C8 1 3 10µ/16V D2 D3 D4 D5 0 0 0 0 0 0 0 0 8 8 8 8 8 8 8
in „wohnraumuhr 2 - leiterplatte nach projekt scott huehn“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Maxim-Dallas-Liste.txt
siehe app74/Sect.5, kompat.zum DS9097 COM Port Adapter DS1608 40 1w 512b NVRAM+unix-RTC in TMEXVIEW DS1620 3w,m&s,nv,as DS1621 2w,m&s,nv,as,2oscillators, S:SO150, V:SO208, -:DIL300 ->DS1702K DS1622 DS1623 DS1624 ->DS1702K DS1625 DS1626 3w.m&s.9-12b.nv.3out.autostart DS1629 2w.m&s.9-12b.nv.8p.1out.rtc DS1629
in „Temperatursteuerung“ · Markt ·
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non-obsolescence-letter.pdf
DS1217A 256K-25 DS1602 DS2250-8-12 DS1217A 128K-25 KODAK DS1603 DS2250-8-16 DS1217A 64K-25 KODAK DS1620 DS2250-8-8 DS1217A-128K-25 DS1621 DS2250T-32-12 DS1217A-16K-25 DS1624 DS2250T-32-16 DS1217A-256K-25 DS1629 DS2250T-32-8 DS1217A-64K-25 DS1629 DS2250T-64-12 DS1217A-64K-25/NO-BRAND DS1643-C02 DS2250T
in „Massenabkündigungen bei Maxim?“ · Mikrocontroller und Digitale Elektronik ·
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Temperatursensor.pdf
Direct–to–Digital Tempera- service at (214) 450–0441. ture Sensors” Application Note 67: “Applying and Using the DS1620 Sample 1–Wire subroutines that can be used in con- in Temperature Control Applications” junction with AN74 can be downloaded fro the website or our Anonymous FTP Site. 021497 10/15 DS1821 ABSOLUTE
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DS1821.pdf
www.dalsemi.com or through our faxback service at (214) 450–0441. Application Note 67: “Applying and Using the DS1620 in Temperature Control Applications” Application Note 74: “Reading and Writing Touch Memories via Serial Interfaces” Application Note 105: “High Resolution Temperature Measurement with Dallas Direct-to-Digital
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DS1821.pdf
www.dalsemi.com or through our faxback service at (214) 450–0441. Application Note 67: “Applying and Using the DS1620 in Temperature Control Applications” Application Note 74: “Reading and Writing Touch Memories via Serial Interfaces” Application Note 105: “High Resolution Temperature Measurement with Dallas Direct-to-Digital