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PDF
st7036.pdf
lines. The ST7036 character generator ROM is extended to No extra drivers can be cascaded. generate 256 5x8dot character fonts for a total of 256 different character fonts. The low power supply (2.7V to Character generator product Name ROM Size OPR1 OPR2 Support Character ST7036-0A 256 1 1 English / Japan
in „LCD " ° " Zeichen aus Zeichensatz anzeigen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
lines. The ST7036 character generator ROM is extended to No extra drivers can be cascaded. generate 256 5x8dot character fonts for a total of 256 different character fonts. The low power supply (2.7V to Character generator product Name ROM Size OPR1 OPR2 Support Character ST7036-0A 256 1 1 English / Japan
in „Controller ST7036“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7036-V1.7.pdf
not need extra this controller/driver. cascaded drivers. The ST7036 character generator ROM size is 256 5x8dot bits which can be used to generate 256 different character fonts (5x8dot). product Name Character generator OPR1 OPR2 Support Character ROM Size ST7036-0A 256 1 1 English / Japan/Europe - - -
in „Newbie Probleme bei LCD DOGM Initialisierung in Assembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
lines. The ST7036 character generator ROM is extended to No extra drivers can be cascaded. generate 256 5x8dot character fonts for a total of 256 different character fonts. The low power supply (2.7V to Character generator product Name ROM Size OPR1 OPR2 Support Character ST7036-0A 256 1 1 English / Japan
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PDF
st7036.pdf
lines. The ST7036 character generator ROM is extended to No extra drivers can be cascaded. generate 256 5x8dot character fonts for a total of 256 different character fonts. The low power supply (2.7V to Character generator product Name ROM Size OPR1 OPR2 Support Character ST7036-0A 256 1 1 English / Japan
in „STK500 und LCD (ST7036) Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7036.pdf
lines. The ST7036 character generator ROM is extended to No extra drivers can be cascaded. generate 256 5x8dot character fonts for a total of 256 different character fonts. The low power supply (2.7V to Character generator product Name ROM Size OPR1 OPR2 Support Character ST7036-0A 256 1 1 English / Japan
in „i2C TWI Modus - ST7036 - DOGM DOGM162 DOGM081 EA DOGM163, ist das Möglich ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MASTER_SLAVE.txt
/ } while (( SSPCON2 & 0x1F ) || (SSPSTATbits.RW) ); SEN = 1; while(SEN); SSPBUF = vADRESSE; while(BF) if(vADRESSE == 0x91) { while (( SSPCON2 & 0x1F ) || (SSPSTATbits.RW) ); RCEN = 1; while (!BF); vRECDATEN1[0] = SSPBUF; while (( SSPCON2 & 0x1F ) || (SSPSTATbits.RW) ); ACKDT = 0; ACKEN = 1; while (ACKEN
in „I2C-Bus Collision“ · Mikrocontroller und Digitale Elektronik ·
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Datei
7810dasm.c
/* 7807 */ "XRA", "XRAW", "XRAX", "XRI" }; /* prefix 48 */ static const struct dasm_s dasm48_7810[256] = { {illegal,0 }, /* 00: 0100 1000 0000 0000 */ {SLRC,"A" }, /* 01: 0100 1000 0000 0001 */ {SLRC,"B" }, /* 02: 0100 1000 0000 0010 */ {SLRC,"C" }, /* 03: 0100 1000 0000 0011 */ {illegal,0 }, /* 04:
in „suche Disassembler für NEC µPD78C10 (87AD Series)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CMS89F52x_____V1.3-1_de.pdf
Tabellensuchfunktion Modellbeschreibung PRODUKT BLINKEN RAM EEPROM E/A ADC COMP OPA PAKET CMS89F5231 4K×16Bit 256 32×16Bit 14 10Bit×9 3 1 DIP16/SOP16 CMS89F5232 4K×16Bit 256 32×16Bit 14 10Bit×9 3 1 DIP16/SOP16 CMS89F5233 4K×16Bit 256 32×16Bit 14 10Bit×9 3 1 DIP16/SOP16 CMS89F526 4K×16Bit 256 32×16Bit 18 10Bit×11
in „cms89f526 Datenblatt gesucht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DDS.vhd
251 => x"2AD631BD", 252 => x"2AFFB048", 253 => x"2B292830", 254 => x"2B52996F", 255 => x"2B7C03FD", 256 => x"2BA567D5", 257 => x"2BCEC4F1", 258 => x"2BF81B49", 259 => x"2C216AD7", 260 => x"2C4AB396", 261 => x"2C73F57F", 262 => x"2C9D308B", 263 => x"2CC664B3", 264 => x"2CEF91F3", 265 => x"2D18B842", 266
in „DDFS von Lothar Miller ich steh aufm Schlauch“ · FPGA, VHDL & Co. ·
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PDF
LCD-Controller_NT3881.pdf
RAM address. 40µs Address Set Subsequent data access is for DD RAM data. Busy Flag/ Read Busy Flag (BF) and Address 0 1 BF AC contents of Address Counter 0µs Counter (AC). Read CG RAM/ Write data to CG RAM or DD 40µs DD RAM 1 0 Write data RAM. Data Write CG RAM/ Read data from CG RAM or 40µs DD RAM 1
in „Frage zu GCC Tutorial LCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
nt3881.pdf
RAM address. 40µs Address Set Subsequent data access is for DD RAM data. Busy Flag/ Read Busy Flag (BF) and Address 0 1 BF AC contents of Address Counter 0µs Counter (AC). Read CG RAM/ Write data to CG RAM or DD 40µs DD RAM 1 0 Write data RAM. Data Write CG RAM/ Read data from CG RAM or 40µs DD RAM 1
in „LCD mit NT3881D“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet-Novatec_display_controller.pdf
RAM address. 40µs Address Set Subsequent data access is for DD RAM data. Busy Flag/ Read Busy Flag (BF) and Address 0 1 BF AC contents of Address Counter 0µs Counter (AC). Read CG RAM/ Write data to CG RAM or DD 40µs DD RAM 1 0 Write data RAM. Data Write CG RAM/ Read data from CG RAM or 40µs DD RAM 1
in „mal wieder ein LCD am Atmega8“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVRDUDE-Meldung.txt
avrdude: Recv: . [80] Raw message: 0x80 OK ######avrdude: jtagmkII_paged_write(): block_size at addr 256 is 256 avrdude: jtagmkII_paged_write(): Sending write memory command: avrdude: jtagmkII_send(): sending 266 bytes avrdude: Sent: . [1b] . [1a] . [00] . [0a] . [01] . [00] . [00] . [0e] . [04] . [c0]
in „PDI + AVR Dragon“ · Mikrocontroller und Digitale Elektronik ·
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PDF
78f9116.pdf
shows the memory map of the PD78F9116. Figure 5-1. Memory Map F F F F H Special function register 256 × 8 bits F F 0 0 H F E F F H Built-in high-speed RAM 256 × 8 bits F E 0 0 H F D F F H Unusable Data memory space 3 F F F H 4 0 0 0 H 3 F F F H Program area Program memory Flash memory 0 0 8 0 H space
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PDF
schematics.pdf
A B C D 1 1 2 2 ADSP-BF537 EZ-KIT LITE SCHEMATIC 3 3 20 Cotton Road ANALOG Nashua, NH 03063 4 DEVICES PH: 1-800-ANALOGD 4 Title ADSP-BF537 EZ-KIT LITE TITLE Size Board No. A0188-2004 Rev C 1.3 Date 7-22-2005_17:26 Sheet 1 of
in „Versorgung“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
Program_Memory.TXT
444 1BB 3185 MOVLP 0x5 445 1BC 250E CALL 0x50e 446 1BD 3180 MOVLP 0 447 1BE 16F0 BSF 0x70, 0x5 448 1BF 3002 MOVLW 0x2 449 1C0 00F7 MOVWF 0x77 450 1C1 0877 MOVF 0x77, W 451 1C2 00F8 MOVWF 0x78 452 1C3 29C4 GOTO 0x1c4 453 1C4 1BF0 BTFSC 0x70, 0x7 454 1C5 29C7 GOTO 0x1c7 455 1C6 29C8 GOTO 0x1c8 456 1C7 29CD
in „Falsche Quelltextposition beim Debuggen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
bild_left.h
0x3358, 0x3359, 0x3379, 0x3379, 0x3B79, 0x3B99, 0x3B99, 0x3B99, 0x43B9, 0x3BB9, 0x43D9, 0x43D9, 0x4BF9, 0x4BF9, 0x4BD9, 0x4C19, 0x4C1A, 0x541A, 0x543A, 0x5C3A, 0x5C5A, 0x5C5A, 0x4BF9, 0x647A, 0x647A, 0x649A, 0x6C9A, 0x6CBA, 0x6CBB, 0x6CBA, 0x6CDB, 0x74DB, 0x74DB, 0x74DB, 0x74FB, 0x7CFB, 0x7D1B, 0x7D1B
in „ATmega2560, Speicher voll bei Program: 30% Data 8%“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Transistor_Database.pdf
SI-N 30V 30mA .22W 260MHz BF255 SI-N 20V 30mA .22W 200MHz BF256A N-FET 30V 7mA Vgs<7.5 BF256B N-FET 30V 13mA BF256C N-FET 30V 10mA 0.25W BF259 SI-N 300V 0.1A 0.8W 90MHz BF259S SI-N 300V 0.1A 0.8W 90MHz BF271 SI-N 40V 30mA 240mW
in „Bauteilebeschaffung !!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Transistor_Database.pdf
SI-N 30V 30mA .22W 260MHz BF255 SI-N 20V 30mA .22W 200MHz BF256A N-FET 30V 7mA Vgs<7.5 BF256B N-FET 30V 13mA BF256C N-FET 30V 10mA 0.25W BF259 SI-N 300V 0.1A 0.8W 90MHz BF259S SI-N 300V 0.1A 0.8W 90MHz BF271 SI-N 40V 30mA 240mW
in „Transistor-Datenbank“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
heatronic_grafisch_Raspberry_Pi.py
(' ')) Label(mGui,text=T1).grid(row=1,column=0,sticky=W) T1 = ('Kollektor:' + str(float(buffer[10]*256+buffer[11])/10)) T2 = ('Solarspeicher:' + str(float(buffer[12]*256+buffer[13])/10)) Label(mGui,text=T1).grid(row=1,column=0,sticky=W) Label(mGui,text=T2).grid(row=2,column=0,sticky=W) mGui.update_idletasks
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Datei
pk2cmdminus_supported_devices.txt
PIC24FJ256GA610 Others/PIC24r2 0x00006009 PIC24FJ256GA702 Others/PIC24r2 0x0000750E PIC24FJ256GA704 Others/PIC24r2 0x0000750D PIC24FJ256GA705 Others/PIC24r2 0x0000750F PIC24FJ256GB206 Others/PIC24r2 0x00004104
in „Programmieren eine PIC18F2585 mir einem HEX-File“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test.py
T1).grid(row=1,column=0,sticky=W) mGui.update_idletasks() T1 = ('Kollektor:' + str(float(buffer[10]*256+buffer[11])/10)) T2 = ('Solarspeicher:' + str(float(buffer[12]*256+buffer[13])/10)) Label(mGui,text=T1).grid(row=1,column=0,sticky=W) mGui.update_idletasks() Label(mGui,text=T2).grid(row=2,column=0,
in „heatronic Raspberry PI Junkers CSW 14“ · Haus & Smart Home ·
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Datei
crc16.c
******************************************************************* const unsigned short crc16_tab[256] = { 0x0000,0x1021,0x2042,0x3063,0x4084,0x50a5,0x60c6,0x70e7, 0x8108,0x9129,0xa14a,0xb16b,0xc18c,0xd1ad,0xe1ce,0xf1ef, 0x1231,0x0210,0x3273,0x2252,0x52b5,0x4294,0x72f7,0x62d6, 0x9339,0x8318,0xb37b,0xa35a
in „Checksumme "reversen"“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Eclipse.txt
push r28 2a: cd b7 in r28, 0x3d ; 61 2c: de b7 in r29, 0x3e ; 62 2e: 2a 97 sbiw r28, 0x0a ; 10 30: cd bf out 0x3d, r28 ; 61 32: de bf out 0x3e, r29 ; 62 /*! Buffer with test data to send.*/ uint8_t sendBuffer[] = {0x07,0x00,0xff}; 34: ce 01 movw r24, r28 36: 01 96 adiw r24, 0x01 ; 1 38: 8e 83 std Y+6, r24
in „XMega Eclipse, AVR-Studio Interrupt Unterschiede“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Displayinitialisierung_16F877A_Puffer_Check_fix.asm
bsf COLLED BANKSEL SSPSTAT config4 btfss SSPSTAT,BF ; Data transfer complete? (Buffer Full?) goto config4 ; if not, check again BANKSEL SSPBUF ; BANK0 movf SSPBUF,W ; Get Data from SSPBUF ; ; Throw it away bcf DC movlw 0x14 movwf SSPBUF btfsc SSPCON,7 bsf COLLED BANKSEL SSPSTAT config5 btfss SSPSTAT,BF ; Data transfer complete? (Buffer Full?) goto config5 ; if not, check again BANKSEL SSPBUF ; BANK0 movf SSPBUF,W ; Get Data from SSPBUF ; ; Throw it away bcf DC movlw 0x20 movwf SSPBUF btfsc SSPCON,7
in „[PIC]Probleme bei SPI Übertragung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Displayinitialisierung_16F877A_abfragen_fix.asm
bsf COLLED BANKSEL SSPSTAT config4 btfss SSPSTAT,BF ; Data transfer complete? (Buffer Full?) goto config4 ; if not, check again BANKSEL SSPBUF ; BANK0 movf SSPBUF,W ; Get Data from SSPBUF ; ; Throw it away bcf DC movlw 0x14 movwf SSPBUF btfsc SSPCON,7 bcf COLLED BANKSEL SSPSTAT config5 btfss SSPSTAT,BF ; Data transfer complete? (Buffer Full?) goto config5 ; if not, check again BANKSEL SSPBUF ; BANK0 movf SSPBUF,W ; Get Data from SSPBUF ; ; Throw it away bcf DC movlw 0x20 movwf SSPBUF btfsc SSPCON,7
in „[PIC]Probleme bei SPI Übertragung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Displayinitialisierung_16F877A_abfragen_fix.asm
bsf COLLED BANKSEL SSPSTAT config4 btfss SSPSTAT,BF ; Data transfer complete? (Buffer Full?) goto config4 ; if not, check again BANKSEL SSPBUF ; BANK0 movf SSPBUF,W ; Get Data from SSPBUF ; ; Throw it away bcf DC movlw 0x14 movwf SSPBUF btfsc SSPCON,7 bcf COLLED BANKSEL SSPSTAT config5 btfss SSPSTAT,BF ; Data transfer complete? (Buffer Full?) goto config5 ; if not, check again BANKSEL SSPBUF ; BANK0 movf SSPBUF,W ; Get Data from SSPBUF ; ; Throw it away bcf DC movlw 0x20 movwf SSPBUF btfsc SSPCON,7
in „[PIC]Probleme bei SPI Übertragung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dcc_lok.lst
: 263/ 6A : ; Setup external interrupt 264/ 6A : E003 LDI R16, (1 << ISC01)|(1 << ISC00) 265/ 6B : BF05 OUT MCUCR,R16 ; set INT0 to rising edge triggered 266/ 6C : E400 LDI R16,GI_MSK ; load interrupt mask 267/ 6D : BF0B OUT GIMSK,R16 ; move to mask register 268/ 6E : 269/ 6E : ; Setup timer0 270/ 6E : E002 LDI R16,(0 << CS02)|(1 << CS01)|(0 << CS00) 271/ 6F : BF03 OUT TCCR0,R16 ; set timer0 prescaler to CK/8 272/ 70 : E002 LDI R16,(1 << TOIE0) 273/ 71 : BF09 OUT TIMSK,R16 ; enable timer0 interrupt 274/ 72 : 275/ 72 : ; Setup port direction 276/ 72 : E10F LDI
in „DCC Singal auslesen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Disassambly_Listing.txt
409: timeout_fuenf_aktiv = 1; //Timer aktiv 3EE 1672 BSF 0x72, 0x4 3EF 2BF0 GOTO 0x3f0 410: } 50C 0020 MOVLB 0 411: 50D 281A GOTO 0x1a 412: if (timeout_licht_start == 1) //Lichttimer starten 3F0 1FF2 BTFSS 0x72, 0x7 3F1 2BF3 GOTO 0x3f3 3F2 2BF4 GOTO 0x3f4 3F3 2BFE GOTO 0x3fe
in „Falsche Quelltextposition beim Debuggen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HW_manual_bf533.pdf
array 1 - Access data array DW[1:0] (Double Word Index) Selects one of four 64-bit double words in a 256-bit line (Address bits [4:3] in SRAM) Figure 6-9. Instruction Test Command Register ADSP-BF533 Blackfin Processor Hardware Reference 6-23 Instruction Test Registers ITEST_DATA1 Register Instruction
in „Blackfin ADSP-BF532 - Einstieg“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
p18f6622.inc
WDTPS = 8 1:8 ; WDTPS = 16 1:16 ; WDTPS = 32 1:32 ; WDTPS = 64 1:64 ; WDTPS = 128 1:128 ; WDTPS = 256 1:256 ; WDTPS = 512 1:512 ; WDTPS = 1024 1:1024 ; WDTPS = 2048 1:2048 ; WDTPS = 4096 1:4096 ; WDTPS = 8192 1:8192 ; WDTPS = 16384 1:16384 ; WDTPS = 32768 1:32768 ; ; CCP2 MUX bit: ; CCP2MX = PORTE ECCP2
in „PIC18F6620 lesen, schreiben“ · Mikrocontroller und Digitale Elektronik ·
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Datei
t.lst
printf features : int, width ;Internal SRAM size : 1024 ;External SRAM size : 0 ;Data Stack size : 256 ;Promote char to int : No ;char is unsigned : Yes ;8 bit enums : Yes ;Enhanced core instructions : On ;Automatic register allocation : On ;Use AVR Studio Terminal I/O : No .LISTMAC .EQU UDRE=0x5 .EQU
in „Problem mit CodevisionAVR 1.23.8c Standard“ · Mikrocontroller und Digitale Elektronik ·
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Datei
t.lst
printf features : int, width ;Internal SRAM size : 1024 ;External SRAM size : 0 ;Data Stack size : 256 ;Promote char to int : No ;char is unsigned : Yes ;8 bit enums : Yes ;Enhanced core instructions : On ;Automatic register allocation : On ;Use AVR Studio Terminal I/O : No .LISTMAC .EQU UDRE=0x5 .EQU
in „Problem mit CodevisionAVR 1.23.8c Standard“ · Mikrocontroller und Digitale Elektronik ·
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Datei
intTest.lst
X & D E R I V. C O N S T 34: ; ********************************** 35: ; 36: .equ cTc0Clk = clock / 256 ; Define from clock 37: ; 38: ; ********************************** 39: ; R E G I S T E R S 40: ; ********************************** 41: ; 42: ; free: R0 to R14 43: .def rSreg = R15 ; Save/Restore status
in „attiny85 interrupt-behandlung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
telefonadapter.c
40, 42, 43, 45, 47, 48, 50, 52, 54, 55, 57, 59, 61, 62, 64, 66, 68, 69, 71}; #define FREQ(x) ((x)*256.0*65536/F_CPU+0.5) // DDS-Inkremente = Additionswerte auf Phasenwert alle F_CPU/256 PROGMEM const WORD Frequencies[16] = { //NTSC-Trägerfrequenz (3,579545 MHz) durch: FREQ( 697), //5135,6 FREQ( 770)
in „HEX-File passt nicht in Attiny 25“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVR-Studio.txt
1f6: 1f be out 0x3f, r1 ; 63 1f8: cf ef ldi r28, 0xFF ; 255 1fa: df e3 ldi r29, 0x3F ; 63 1fc: de bf out 0x3e, r29 ; 62 1fe: cd bf out 0x3d, r28 ; 61 200: 00 e0 ldi r16, 0x00 ; 0 202: 0c bf out 0x3c, r16 ; 60 204: 18 be out 0x38, r1 ; 56 206: 19 be out 0x39, r1 ; 57 208: 1a be out 0x3a, r1 ; 58 20a:
in „XMega Eclipse, AVR-Studio Interrupt Unterschiede“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VirusTotal_-_ZiGuangWC_Setup.pdf
Show all MD5 : 4c6d89edd14047c9b915c4b6dee679ab SHA1 : 9fe22d02a6fa7c23f28562544f05dfe5cddc0ace SHA256: 2594d2e33a8aaa3975b8871e9c58bf7d3bd6c1a42939beeee614fcd9b25102d1 ssdeep: 196608:XdooFbtw6yyGe9u08Nt51Gb8KVOid3ne152EvdMnIrl4O2sze1:No0wyZo04S8aJtne+ bIru File size : 10314104 bytes First seen: 2011
in „Virus oder Fehlalarm?“ · Offtopic ·
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PDF
iwrap_2_1_.1.0_user_guide.pdf
Configurable from 0 to 128 bits MAX simultaneous pairings 16 MAX Friendly name length Configurable up to 256 characters Packet size Configurable from 21 to 1008 Table 2: Technical details 13 5. USAGE iWRAP can be used and controlled from the host system by sending ASCII commands through UART interface. When
in „[V] Wrap Thor 2022-1-B2B Bluetooth Module & Board“ · Markt ·
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Datei
zmodem.cpp
(cp, crc) ( zm_crctab[((crc >> 8) & 255)] ^ (crc << 8) ^ cp) static const unsigned short zm_crctab[256] = { 0x0000, 0x1021, 0x2042, 0x3063, 0x4084, 0x50a5, 0x60c6, 0x70e7, 0x8108, 0x9129, 0xa14a, 0xb16b, 0xc18c, 0xd1ad, 0xe1ce, 0xf1ef, 0x1231, 0x0210, 0x3273, 0x2252, 0x52b5, 0x4294, 0x72f7, 0x62d6, 0x9339
in „Wittig(welec) DSO W20xxA Open Source Firmware“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stk500_1200.asm
; Sets up PB[4..7] for as SPI master with 8535 as the slave. 82: c7 98 cbi 0x18, 7 ; Clear PB7 84: bf 9a sbi 0x17, 7 ; Set PB7 as output (SCK) 86: bd 9a sbi 0x17, 5 ; Set PB5 as output (MOSI) 88: be 98 cbi 0x17, 6 ; Set PB6 as input (MISO) 8a: c4 9a sbi 0x18, 4 ; Set PB4 high 8c: bc 9a sbi 0x17, 4 ;
in „AVRISP => Hex-Datei vom 1200er“ · Mikrocontroller und Digitale Elektronik ·
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Datei
memory.vhd
2ed80a59", 366 => x"0cd80311", 367 => x"8652d156", 368 => x"8ed4af57", 369 => x"6b3f3227", 370 => x"bf4d7f00", 371 => x"c6bc01b2", 372 => x"47417b87", 373 => x"e69cd6bf", 374 => x"93fb82c1", 375 => x"911cba83", 376 => x"f872efda", 377 => x"b378fe7c", 378 => x"25670ec1", 379 => x"568cb2bb", 380 => x"5ca35d7d
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PDF
ADCINC.pdf
Failure to do so causes it to operate incorrectly. The PWM is set up to generate an interrupt every 256 counts. This causes the input to be sampled 64 times, which is equivalent to one integrate cycle. The decimator counter is set up to accumulate 2 Bit/64 of these integrate cycles. The accumulated value
in „Beispiel Anwendungen/Application zu ADCs - Abtastrate & Auflösung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DDS.vhd
1AB176D6", 290 => x"1AC8AA4B", 291 => x"1ADFDC94", 292 => x"1AF70DAE", 293 => x"1B0E3D9B", 294 => x"1B256C57", 295 => x"1B3C99E3", 296 => x"1B53C63E", 297 => x"1B6AF166", 298 => x"1B821B5A", 299 => x"1B994419", 300 => x"1BB06BA3", 301 => x"1BC791F6", 302 => x"1BDEB712", 303 => x"1BF5DAF5", 304 => x"1C0CFD9E
in „DDS mit DE0-Nano Board nur niedrige Frequenzen?“ · FPGA, VHDL & Co. ·
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Datei
asm.txt
HAL_RCC_OscConfig+0x584>) 8000bec: 681b ldr r3, [r3, #0] 8000bee: f403 6380 and.w r3, r3, #1024 ; 0x400 8000bf2: 2b00 cmp r3, #0 8000bf4: d005 beq.n 8000c02 <HAL_RCC_OscConfig+0x31a> 8000bf6: 687b ldr r3, [r7, #4] 8000bf8: 68db ldr r3, [r3, #12] 8000bfa: 2b00 cmp r3, #0 8000bfc: d101 bne.n 8000c02 <HAL_RCC_OscConfig
in „NUCLEO-L432KC Blinky Projekt mit 11kB Speicherverbrauch“ · Mikrocontroller und Digitale Elektronik ·
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Datei
CoolTerm_Capture__FritzAVM_1V8.CoolTermSettings__2026-06-27_08-52-21-633.txt
T0] Stack: (0xcdae3d88 to 0xcdae4000) [ 22.816710][ T0] 3d80: cdae3da4 dc8ba6ff dc8ba6ff c0a7c408 bf1260cc bf1221a4 [ 22.821875][ T0] 3da0: bf12556e 0f34b000 dc8ba6ff c020f2e4 bf1262d8 00000000 cdb27380 bf129190 [ 22.830730][ T0] 3dc0: c0a91748 00000000 00000080 00000000 00000000 dc8ba6ff c0a7c408 bf129000
in „FRITZ!Box 7490 Bootloop“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NHD-0420CW-AY3-587980.pdf
Quantity Valid up to SQ[5:0] = 110000b Can be known whether during internal operation or not by reading BF. The Read Busy contents of address counter or the part AC6 AC5 AC4 AC3 AC2 AC1 AC0 ID can also be read. When it is read the Flag and X X 0 0 1 BF / / / / / / / first time, the address counter can be
in „NHD-0420CW-AY3 4x20 Zeilen OLED in Betrieb nehmen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
27512EP_EDA.pdf
************** 6 ; 7 ORG 01900 8 ; 9 db "1 2716 * 2 2732 " 10 db "* 3 2764 * 4 271" 11 db "28 * 5 -256 * 6 -512" 12 ; 13 db 0,9,18,27,36,45 14 ; 15 L1931 mov A,08F 16 OUT [P0A],A 17 L1939 mov si,01900 18 call PRINT 19 db 00C,00E 20 db "0101* Epromm" 21 db "er 2716-27512 V." 22 db "1.4 * [c]87/89 E."
in „EDA-Dateien bearbeiten“ · Mikrocontroller und Digitale Elektronik ·
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Datei
keylcd.asm
1: I2C write operation, last byte was an address byte. ; ; SSPSTAT bits: S = 1, D_A = 0, R_W = 0, BF = 1 ; ; State 2: I2C write operation, last byte was a data byte. ; ; SSPSTAT bits: S = 1, D_A = 1, R_W = 0, BF = 1 ; ; State 3: I2C read operation, last byte was an address byte. ; ; SSPSTAT bits: S = 1, D_A = 0, R_W = 1, BF = 0 ; ; State 4: I2C read operation, last byte was a data byte. ; ; SSPSTAT bits: S = 1, D_A = 1, R_W = 1, BF = 0 ; ; State 5: Slave I2C logic reset by NACK from master. ; ; SSPSTAT bits: S = 1, D_A
in „Noritake VFD GU140x32F7806 4-Bit Mode, Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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Disassembler8048_mc1981.pdf
580 DATA B9/MOV R1,#",BA,"MOV R2,#",BB,"MOV R3,#",BC,"MOV R4,#" 590 DATA BD,"MOV R5,#",BE,"MOV Rö^'^BF/MOV R7,#",C6,JZ $,D3 595 DATA "XRL A,#" E6,JNC $,E8,"DJNZ RO,$"/E9,"DJNZ R1,$" 600 DATA EA,"DJNZ R2,$fl,EB,"DJNZ R3,$",EC,"DJNZ R4,$" 610 DATA ED,"DJNZ R5,$",EE,"DJNZ R6,$",EF,"DJNZ R7,$",F6,JC $ 620
in „80C48 MCS48 Assembler“ · Mikrocontroller und Digitale Elektronik ·