-
Datei
OPA847.lib.txt
| | * | | | | | | * | | | | | | * | | | | | | .SUBCKT OPA847_Model + - Dis Out V+ V- .PARAM x1 = 0.25 .PARAM x2 = {x1*2} .PARAM x6 = {x2*3} .PARAM x24 = 3 .PARAM x30 = {x2*15} .PARAM x60 = {x30*2} .PARAM x128 = 16 Q_Q1 11 $N_0001 $N_0002 PNP8 {x24} Q_Q47 10 $N_0001 $N_0003 PNP8 {x24} R_R1 $N_0003 $N_
in „Ltspice Model einbinden?“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
Steuern_1.html
( -45deg, rgba(255, 255, 255, 0.2) 25%, transparent 25%, transparent 50%, rgba(255, 255, 255, 0.2) 50%, rgba(255, 255, 255, 0.2) 75%, transparent 75%, transparent ); background-size: 40px 40px; float: left; width: 0%; height: 100%; font-size
in „Strompreis an der Ladesäule beim Arbeitgeber“ · Offtopic ·
-
Datei
buderus_crc_test.txt
* ! 1E * ! 61 * ! 54 * ! B7 D8 27 6F FOUND: 08 * ! 10 * ! 14 * ! 00 * ! 1E * ! 61 * ! 56 * ! B5 DA 25 6F FOUND: 08 * ! 10 * ! 14 * ! 00 * ! 1E * ! 61 * ! 58 * ! BB D4 2B 6F FOUND: 08 * ! 10 * ! 14 * ! 00 * ! 1E * ! 61 * ! 5A * ! B9 D6 29 6F FOUND: 08 * ! 10 * ! 14 * ! 00 * ! 1E * ! 61 * ! 5C * ! BF D0
-
PDF
olede.pdf
ADD Sets DDRAMAddress. The DDRAMdata Is sent and received after this setting. 0ms Reads Busy Flag (BF) indicating that internal operation is being performed. Read Busy Flag and Address 0 1 BF AC AC AC AC AC AC AC Reads Address Counter contents. 0ms Write data into the CGRAM or DDRAM 1 0 Write Data Writes
in „Ansteuern eines OLED-Display: EA W162-X3LW“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
olede_1_.pdf
ADD Sets DDRAMAddress. The DDRAMdata Is sent and received after this setting. 0ms Reads Busy Flag (BF) indicating that internal operation is being performed. Read Busy Flag and Address 0 1 BF AC AC AC AC AC AC AC Reads Address Counter contents. 0ms Write data into the CGRAM or DDRAM 1 0 Write Data Writes
in „Explorer 16 board, zwei Displays“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
oled_eng_tds.pdf
ADD Sets DDRAMAddress. The DDRAMdata Is sent and received after this setting. 0ms Reads Busy Flag (BF) indicating that internal operation is being performed. Read Busy Flag and Address 0 1 BF AC AC AC AC AC AC AC Reads Address Counter contents. 0ms Write data into the CGRAM or DDRAM 1 0 Write Data Writes
in „Oled Display W202-XDLG via SPI an Arduino Uno“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
untitled.pdf
low-pass 2,4 kHz (TI FilterPro) TX_VCC m 2 1 C5 C D E D µ 1 n 0 L M 5 p 2 1 D P 1 C 6 C G L S A D BF545 1 k 2 k 0 µ L M PL3 N Q4 R 2 R 2 12 IC2D 2 7 1 0 1 7 6 S A 10 IC2C 8,2 k 8,2 k 14 10 C 4 TX_ANT C 6 4 C L 8 13 R24 P H1 7 R13 C14 9 10 µ R19 R20 MC33204 L MOUNT-PAD-ROUND2.8 0 2 1 2 5 S 2 MC33204 Lautsprecher 2 R S L C25 1 M 3 1 100 n R22 C22 1 n 1 H2 3 Q3 L1 L 8L2 C2487 p R29 1 R21 C 1 S MOUNT-PAD-ROUND2.8 BF545 6 S 7 3 1 p 220 k 7 L P L 90 p 150 k 1 2 C 1 k C13 2 k 8 k R 1 8,2 n39 k H3 N N D L D 1 D R 1 , 1 n R 2 R
-
PDF
obC16x.pdf
im Assemblercode vermieden werden. Beispiel: PROCEDURE* Fstep(VAR step:INTEGER; cur:INTEGER); VAR bf:INTEGER; BEGIN bf := step * 2; (* bf = R13, mal 2 wg. Word *) VERBATIM jmp Fstepnext SHsteptable DW 224, 255, 7, 127, 96, 125, 5, 253 Fstepnext mov R12, #SHsteptable add R12, R13 mov R13, [R11] ; Wert nach bf laden END_VERBATIM IF cur = 2 THEN (* mittlerer Strom *) bf := bf ANDB %10111110; ELSIF cur = 1 THEN (* niedriger Strom *) bf := bf ANDB %11011011; ELSIF cur = 0 THEN (* Strom aus *) bf := bf ANDB %10011010
in „Ein kleiner Oberoncompiler für die C16x-Familie“ · Projekte & Code ·
-
PDF
BMP085_DataSheet_Rev.1.0_01July2008.pdf
power mode 3 µA Supply current @ 1 sample / sec. IDDSTD standard mode 5 µA I high resolution mode 7 µA 25°C DDHR IDDUHR ultra high res. mode 12 µA Peak current Ipeak during conversion 650 1000 µA Standby current IDDSBM at 25°C 0.1 µA Serial data clock fSCL 3.4 MHz Conversion time tC_temp standard mode 3
in „TWI i2c adresse“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
DEM16101.pdf
Interface with a 4-bit or 8-bit MPU z Operating Temperature : -20°C to +70°C z Storage Temperature : -25°C to +75°C 2. MECHANICALSPECIFICATIONS z Module Size : 80.0 x 36.0 x 9.0 mm (max.) z Character Pitch : 3.75 x 5.95 mm z Character Size : 3.20 x 5.95 mm z Character Font : 5 x 8 dots z Dot Size : 0.60
in „S6A0069 LCD: Kein init?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
WH1602B-TMI-JT__selbstgesucht_.pdf
in address counter.9μs Whether during internal operation or not Read Busy can be known by reading BF. The Flag and 0 1 BF AC6 AC5 AC4 AC3 AC2 AC1 AC0 0μs Address contents of address counter can also be read. Write Data to Write data into internal RAM 1 0 D7 D6 D5 D4 D3 D2 D1 D0 43μs RAM (DDRAM/CGRAM
in „Winstar WH1602B LCD-Display am Atmega16“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LCD_WINSTAR_WH1602B-NGJ-JT.pdf
in address counter.9μs Whether during internal operation or not Read Busy can be known by reading BF. The Flag and 0 1 BF AC6 AC5 AC4 AC3 AC2 AC1 AC0 0μs Address contents of address counter can also be read. Write Data to Write data into internal RAM 1 0 D7 D6 D5 D4 D3 D2 D1 D0 43μs RAM (DDRAM/CGRAM
in „LCD Initialisierung klappt nicht, nur chwarzen Kästchen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
lcd_2x16_spec.pdf
in address counter.9μs Whether during internal operation or not Read Busy can be known by reading BF. The Flag and 0 1 BF AC6 AC5 AC4 AC3 AC2 AC1 AC0 0μs Address contents of address counter can also be read. Write Data to Write data into internal RAM 1 0 D7 D6 D5 D4 D3 D2 D1 D0 43μs RAM (DDRAM/CGRAM
in „2x16 LCD PROBLEM“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
wh1602b-ngj-jt.pdf
in address counter.9μs Whether during internal operation or not Read Busy can be known by reading BF. The Flag and 0 1 BF AC6 AC5 AC4 AC3 AC2 AC1 AC0 0μs Address contents of address counter can also be read. Write Data to Write data into internal RAM 1 0 D7 D6 D5 D4 D3 D2 D1 D0 43μs RAM (DDRAM/CGRAM
-
Datei
led_dim.asm
reduction -/ Timer 0, USI Comm, ADC out PRR, a sbi ACSR, ACD clr a clr b clr pressedcount clr compare25 clr compare50 clr compare75 clr compare100 ldi compare25, 0x3F ;63 reinladen - 25 % Lichtstaerke ldi compare50, 0x7F ;127 reinladen - 50% Lichtstaerke ldi compare75, 0xBF ;191 reinladen - 75% Lichtstaerke
in „AVR - Tiny2313/45 Prescaler Problem“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
HPB8b-4xK5x.pdf
4xK5x 2PACKAGE DIMENSIONS: Emitter Type Cathode Mark 2.0 LED Dice 1.2 . 2.3 . 5 0.3 . 7 . 1 0.8 2 7.25 Slug Slug 14.5 - + - + For HPB8b-44K5Y & HPB8b-45K5R & HPB8b-48K5BF For HPB8b-43K5G Star Type Cathode Mark LED Dice 3. 7.25 . . 7 / 5 . 0.3 + 2 1.6 7 20.0 +/- 0.3 NOTE: 1.All dimensions are in millimeter
in „5 Watt Leds von Reichelt“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
nm-mit-f_mount.txt
pbuf_ref 0800bd98 t $d 0800bda4 t $t 0800bda5 00000080 T pbuf_cat 0800be10 t $d 0800be24 t $t 0800be25 00000010 T pbuf_chain 0800be34 t $t 0800be35 00000140 T pbuf_copy 0800bf58 t $d 0800bf74 t $t 0800bf75 00000094 T pbuf_copy_partial 0800bff8 t $d 0800c008 t $t 0800c009 00000008 T pbuf_skip 0800c010
in „stm32 FatFS stranges Problem“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
tasse_tee_48.c
0x8271, 0x1EC6, 0x2848, 0xA84A, 0x04D0, 0xC404, 0xF60A, 0xFFFF, 0xDFFF, 0x6D97, 0xBDFC, 0x1B55, 0x65BF, 0xF219, 0x6315, 0x748D, 0x9561, 0xC804, 0x7405, 0xD861, 0x0105, 0x82B2, 0xD55D, 0x6175, 0x85D8, 0x9761, 0x80A4, 0x38CF, 0x147A, 0xBF49, 0x7B24, 0x27B2, 0xC64B, 0x10CB, 0xE8A3, 0x0E40, 0x3A03, 0x9DA0
in „RGB Bitmap im MCU in C“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
MMC-Code.txt
/* MMC/SD */ { SSPBUF=byte; // Byte uebergeben while(!BF); // warten bis senden beendet ist return(SSPBUF); // wert von spi empfangen } unsigned char SPI_READ(void) // 1 byte von spi-schnittstelle lesen { SSPBUF=0xFF; while(!BF); // warten bis senden beendet
in „SD-Card über SPI - manche gehen, manche nicht.“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
sketch_mar13a.ino.ohne_Konstruktor.asm
r1, r1 6a: 1f be out 0x3f, r1 ; 63 6c: cf ef ldi r28, 0xFF ; 255 6e: d8 e0 ldi r29, 0x08 ; 8 70: de bf out 0x3e, r29 ; 62 72: cd bf out 0x3d, r28 ; 61 74: 0e 94 40 00 call 0x80 ; 0x80 <main> 78: 0c 94 43 00 jmp 0x86 ; 0x86 <_exit> 0000007c <__bad_interrupt>: 7c: 0c 94 00 00 jmp 0 ; 0x0 <__vectors> 00000080 <main>: int main( void ) { Test::instance().set(7); return 0; } 80: 90 e0 ldi r25, 0x00 ; 0 82: 80 e0 ldi r24, 0x00 ; 0 84: 08 95 ret 00000086 <_exit>: 86: f8 94 cli 00000088 <__stop_program>: 88: ff cf rjmp .-2 ; 0x88 <__stop_program>
in „c++ static class mit und ohne Konstructor“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Taz_Altium_Version.pdf
PIQ103 PIQ101 (MISO1/ADC0)PC0 PICI0A3 H2_CS 24 H1_CS 0 1 0 VCCIO IC1 GND 1 P P4 PI (SCK1/ADC1)PC1 25 420NNCaut CORPI 1 R P 1 20 1 1 8 CO11 2 CO1C 8 , Q1 1 (ADC2)PC2 IP1A25 NF ult PIC500 VDD TXCAN PIIC51 PIC101 TXD RS PIC108 RP 1 1 2 COC 8 (ADC3)PC3 IP1A26 A3_VSENS PIC509 RST RXCAN PIIC52 VCCIO PIC102
in „Schaltplan richtig zeichnen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
BST-BMP180-DS000-07.pdf
...................................................................................................25 6.2.3 Side view............................................................................................................................25 6.3 M OISTURE SENSITIVITY LEVEL AND SOLDERING ...........
in „Suche Projektpartner für Kalmanfilter-Implementierung“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
-
Datei
interrupt_asm.txt
GOTO 1B6 01B8: MOVF 1A,W 01B9: MOVWF 31 01BA: MOVF 31,W 01BB: SUBLW 1B 01BC: BTFSS 03.2 01BD: GOTO 1BF 01BE: GOTO 2BB 01BF: MOVLW C0 01C0: IORWF 0B,F 01C1: CLRF 0F 01C2: CLRF 0E 01C3: CLRF 2C 01C4: CLRF 2B 01C5: MOVLW C8 01C6: ADDWF 33,W 01C7: SUBWF 32,W 01C8: BTFSC 03.0 01C9: GOTO 1D1 01CA: MOVLW A6
in „PIC 16F876 Timer Interrupt“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
2723615.pdf
in address counter.9μs Whether during internal operation or not Read Busy can be known by reading BF. The Flag and 0 1 BF AC6 AC5 AC4 AC3 AC2 AC1 AC0 0μs Address contents of address counter can also be read. Write Data to 1 0 D7 D6 D5 D4 D3 D2 D1 D0 Write data into internal RAM 43μs RAM (DDRAM/CGRAM
in „Winstar WH1602B Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
pa-transformer-pcb-2.kicad_pcb.txt
-a25d-4d42-a36a-46a892c34675) (at 123.7488 40.1574) (fp_text reference "" (at 0 0) (layer "F.SilkS") (effects (font (size 1.27 1.27) (thickness 0.15))) (tstamp 8b6fed3d-4823-4b09-97ef-1099af9a6c92) ) (fp_text
in „Upload to AISLER from KiCAD Problem - no drills found.“ · Platinen ·
-
PDF
vers_13.pdf
Step-Anweisung vorgenommen wer- LAB_DCF77.DK.-H. CORDES 25.02.2003 Zeitzeichenempfänger DCF 77 Seite 17 * D:\Circuit\DCF77_12.cir * V1 y 0 Pulse(1 0.25 80ms 1us 1us 100m 1s) V2 x 0 Sin(0V {a} 7.75kHz) ES e 0 value={V(y)*V(x)} * R6 11 e 3.9k C4 11 12 10nF C5
in „Strecke mainflingen Köln simulieren“ · HF, Funk und Felder ·
-
Datei
Castillo33.c
0xFC0D, 0x65BB, 0xA401, 0x0165, 0x8580, 0xD602, 0x177F, 0x9585, 0xD616, 0xFFFF, 0x2029, 0x685B, 0x5A25, 0x6564, 0x9591, 0x596A, 0x6995, 0x9559, 0x5955, 0x0ABF, 0xB1FC, 0x0255, 0x45A2, 0x8002, 0x0235, 0xFFD6, 0x455B, 0x1551, 0x8585, 0xD616, 0x56BF, 0xF595, 0x80E3, 0x956C, 0x2595, 0xA256, 0x5635, 0x25A4
in „BMP/JPEG/GIF/PNG nach C-Code konvertieren“ · Projekte & Code ·
-
Datei
Castillo33.c
0xFC0D, 0x65BB, 0xA401, 0x0165, 0x8580, 0xD602, 0x177F, 0x9585, 0xD616, 0xFFFF, 0x2029, 0x685B, 0x5A25, 0x6564, 0x9591, 0x596A, 0x6995, 0x9559, 0x5955, 0x0ABF, 0xB1FC, 0x0255, 0x45A2, 0x8002, 0x0235, 0xFFD6, 0x455B, 0x1551, 0x8585, 0xD616, 0x56BF, 0xF595, 0x80E3, 0x956C, 0x2595, 0xA256, 0x5635, 0x25A4
in „Bilder umwandeln für C/C++ Code“ · Softwareentwicklung ·
-
Datei
led_dimmen_45_1kHz.asm
reduction -/ Timer 0, USI Comm, ADC out PRR, a sbi ACSR, ACD clr a clr b clr pressedcount clr compare25 clr compare50 clr compare75 clr compare100 ldi compare25, 0x3F ;63 reinladen - 25 % Lichtstaerke ldi compare50, 0x7F ;127 reinladen - 50% Lichtstaerke ldi compare75, 0xBF ;191 reinladen - 75% Lichtstaerke
in „AVR - Tiny2313/45 Prescaler Problem“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
RCM2065R_.pdf
displays RCM2065R ▯Block diagram ▯Pin assignments ▯Power supply example ▯Absolute maximum ratings (Ta = 25_C) 55 Liquid crystal displays RCM2065R ▯Electrical characteristics (VDD = 5.0 V 〉 0.25 V, Ta = 25_C) ▯Optical characteristics (Ta = 25_C, φ = 0_) 56 Liquid crystal displays RCM2065R ▯Timing chart (1)
in „[V] 2x16 LCD (HD44780) mit / ohne Hintergrundbeleuchtung“ · Markt ·
-
PDF
GPG320X240-NFNDSCW3_B_.pdf
Characteristics (Trasmissive mode) Temp Standard Value Item Symbol °C Unit Conditions Min Typ Max 0 23.4 24.7 25.9 V Vop VLCD- 25 22.8 24.1 25.3 V VSS 50 21.9 23.1 24.3 V 0 - 530 800 ms Tr 25 - 200 300 ms Response Time 0 - 350 530 ms Tf 25 - 100 150 ms Contrast Ratio K 25 10 21 - - 50 - deg. θ = 0° Viewing angle Φ 25 - 50 - deg. θ = 90° CR≧2.0 - 30 - deg. θ =180° - 40 - deg. θ = 270° Initial Brightness B 25 - 90 - cd/m† (*1) ! Panel only characteristics ! 1/240 duty, 1/16 bias (*1) Measuring Conditions: Test point
-
PDF
VirusTotal_-_ZiGuangWC_Setup.pdf
4c6d89edd14047c9b915c4b6dee679ab SHA1 : 9fe22d02a6fa7c23f28562544f05dfe5cddc0ace SHA256: 2594d2e33a8aaa3975b8871e9c58bf7d3bd6c1a42939beeee614fcd9b25102d1 ssdeep: 196608:XdooFbtw6yyGe9u08Nt51Gb8KVOid3ne152EvdMnIrl4O2sze1:No0wyZo04S8aJtne+ bIru File size : 10314104 bytes First seen: 2011-12-06 14:49:11 Last seen : 2011-
in „Virus oder Fehlalarm?“ · Offtopic ·
-
Datei
crc32.c
0x23431b1c, 0x2e003dc5, 0x2ac12072, 0x128e9dcf, 0x164f8078, 0x1b0ca6a1, 0x1fcdbb16, 0x018aeb13, 0x054bf6a4, 0x0808d07d, 0x0cc9cdca, 0x7897ab07, 0x7c56b6b0, 0x71159069, 0x75d48dde, 0x6b93dddb, 0x6f52c06c, 0x6211e6b5, 0x66d0fb02, 0x5e9f46bf, 0x5a5e5b08, 0x571d7dd1, 0x53dc6066, 0x4d9b3063, 0x495a2dd4, 0x44190b0d, 0x40d816ba, 0xaca5c697, 0xa864db20, 0xa527fdf9, 0xa1e6e04e, 0xbfa1b04b, 0xbb60adfc, 0xb6238b25, 0xb2e29692, 0x8aad2b2f, 0x8e6c3698, 0x832f1041, 0x87ee0df6, 0x99a95df3, 0x9d684044, 0x902b669d, 0x94ea7b2a, 0xe0b41de7, 0xe4750050, 0xe9362689, 0xedf73b3e, 0xf3b06b3b, 0xf771768c, 0xfa325055, 0xfef34de2
in „CRC32 aus 16bit HEX-Daten“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
zeug.c
0xC2,0xC1,0xC2,0xC1,0xC0,0xC1,0xC1,0xC1,0xC1,0xC1,0xC1,0x51,0x51,0x71,0x61,0xE1, 0xD1,0xD1,0xF3,0xB3,0xD3,0xD3,0xF3,0xF3,0xEB,0xCB,0xDB,0xF9,0xF9,0xF9,0xE9,0xBB, 0xBB,0xBF,0xBF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xD7,0xDF,0xDF,0xDF,0xDE,0xDC, 0xDA,0xDA,0xD2,0xD2,0x5A,0x58,0x5A,0x58,0x58,0x58,0x54,0x55,0x55,0x55,0x55,0x55, 0x57,0x57,0x57,0x57,0x57,0xFF,0xFF,0xFF,0xBF,0xBF
in „Benörige Hilfe bei Grafikdisplay LM240120“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
main.c
0xC2,0xC1,0xC2,0xC1,0xC0,0xC1,0xC1,0xC1,0xC1,0xC1,0xC1,0x51,0x51,0x71,0x61,0xE1, 0xD1,0xD1,0xF3,0xB3,0xD3,0xD3,0xF3,0xF3,0xEB,0xCB,0xDB,0xF9,0xF9,0xF9,0xE9,0xBB, 0xBB,0xBF,0xBF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xFF,0xD7,0xDF,0xDF,0xDF,0xDE,0xDC, 0xDA,0xDA,0xD2,0xD2,0x5A,0x58,0x5A,0x58,0x58,0x58,0x54,0x55,0x55,0x55,0x55,0x55, 0x57,0x57,0x57,0x57,0x57,0xFF,0xFF,0xFF,0xBF,0xBF
in „Benörige Hilfe bei Grafikdisplay LM240120“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
obC16x.pdf
im Assemblercode vermieden werden. Beispiel: PROCEDURE* Fstep(VAR step:INTEGER; cur:INTEGER); VAR bf:INTEGER; BEGIN bf := step * 2; (* bf = R13, mal 2 wg. Word *) VERBATIM jmp Fstepnext SHsteptable DW 224, 255, 7, 127, 96, 125, 5, 253 Fstepnext mov R12, #SHsteptable add R12, R13 mov R13, [R11] ; Wert nach bf laden END_VERBATIM IF cur = 2 THEN (* mittlerer Strom *) bf := bf ANDB %10111110; ELSIF cur = 1 THEN (* niedriger Strom *) bf := bf ANDB %11011011; ELSIF cur = 0 THEN (* Strom aus *) bf := bf ANDB %10011010
in „Ein kleiner Oberoncompiler für die C16x-Familie“ · Projekte & Code ·
-
Datei
led_dimmen_2313_500Hz.asm
) ;out GIMSK, a sbi ACSR, ACD ; Analog Comparator DISABLED clr a clr b clr pressedcount clr compare25 clr compare50 clr compare75 clr compare100 ldi compare25, 0x3F ;63 reinladen - 25 % Lichtstärke ldi compare50, 0x7F ;127 reinladen - 50% Lichtstärke ldi compare75, 0xBF ;191 reinladen - 75% Lichtstärke
in „AVR - Tiny2313/45 Prescaler Problem“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
mmc_spi.txt
unsigned char byte) // 1 byte per spi-schnittstelle senden { SSPBUF=byte; // Byte uebergeben while(!BF); // warten bis senden beendet ist return(SSPBUF); // wert von spi empfangen } unsigned char SPI_READ(void) // 1 byte von spi-schnittstelle lesen { SSPBUF=0xFF; while(!BF); // warten bis senden beendet
in „MMC / SD mit SPI und PIC. MMC ja, SD nein.“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
obC16x.pdf
Assemblercode vermieden werden. Beispiel: 19 PROCEDURE* Fstep(VAR step:INTEGER; cur:INTEGER); VAR bf:INTEGER; BEGIN bf := step * 2; (* bf = R13, mal 2 wg. Word *) VERBATIM jmp Fstepnext SHsteptable DW 224, 255, 7, 127, 96, 125, 5, 253 Fstepnext mov R12, #SHsteptable add R12, R13 mov R13, [R11] ; Wert nach bf laden END_VERBATIM IF cur = 2 THEN (* mittlerer Strom *) bf := bf ANDB %10111110; ELSIF cur = 1 THEN (* niedriger Strom *) bf := bf ANDB %11011011; ELSIF cur = 0 THEN (* Strom aus *) bf := bf ANDB %10011010
in „Ein kleiner Oberoncompiler für die C16x-Familie“ · Projekte & Code ·
-
PDF
obC16x.pdf
im Assemblercode vermieden werden. Beispiel: PROCEDURE* Fstep(VAR step:INTEGER; cur:INTEGER); VAR bf:INTEGER; BEGIN bf := step * 2; (* bf = R13, mal 2 wg. Word *) VERBATIM jmp Fstepnext SHsteptable DW 224, 255, 7, 127, 96, 125, 5, 253 Fstepnext mov R12, #SHsteptable add R12, R13 mov R13, [R12] ; Wert nach bf laden END_VERBATIM IF cur = 2 THEN (* mittlerer Strom *) bf := bf ANDB %10111110; ELSIF cur = 1 THEN (* niedriger Strom *) bf := bf ANDB %11011011; ELSIF cur = 0 THEN (* Strom aus *) bf := bf ANDB %10011010
in „Ein kleiner Oberoncompiler für die C16x-Familie“ · Projekte & Code ·
-
PDF
Webserver1.pdf
PC6 41 A14 74AHC573PW 17 A14 G (A13) PC5 40 A13 16 A13 22pF 16MHz SCL 25 PD0 (INT0, SCL) (A12) PC4 39 A12 15 A12 SDA 26 PD1 (INT1, SDA) 38 A11 14 A11 INT2 27 PD2 (INT2, RXD1) (A11) PC3 37 A10 13 A10 INT3 28 (A10) PC2 36 A9 12 C SCS 29 PD3 (INT3, TXD1) (A9) PC1 35 A8 11 A9
in „WIZ810 (WIZ5100) an XMEM Interface (AVR)“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
wave.asm
,$2F,$07 .endif .if stab == 4 ; 7 kHz sine: .db $80,$0A,$DA,$B0,$00,$B0,$DA,$0A .db $7F,$F5,$25,$4F,$FF,$4F,$25,$F5 .db $80,$0A,$DA,$B0,$00,$B0,$DA,$0A .db $7F,$F5,$26,$4E,$FF,$4F,$25,$F5 .db $80,$0A,$D9,$B1,$00,$B0,$DA,$0A .db $7F,$F5,$26,$4E,$FF,$4F,$25,$F5 .db $80,$0A,$D9,$B1,$00,$B0,$DA,$0A .db $7F,$F6,$26,$4E,$FF,$4F,$25,$F5 .db $80,$09,$D9,$B1,$00,$B0,$DA,$0A .db $7F,$F6,$26,$4E,$FF,$4F,$25,$F5 .db $80,$09,$D9,$B1,$00,$B0,$DA,$0A .db $7F,$F6,$26,$4E,$FF,$50,$25,$F5 .db $80,$09,$D9,$B1,$00,$AF,$DA,$0A .db $7E,$F6,$26
in „Sprachausgabe mit AVR“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
brenner8p5_SCH.pdf
2 BAT43 28 1 ICSP 40 1 VPP_28_40 27 RB7 MCLR#/VPP 1 2 3 4 5 VPP_28_40 RB6 GND R16 26 RB5 RA0/AN0 2 25 RB4 RA1/AN1 3 V_SENSE 330 24 RB3 RA2/AN2 4 23 RB2 RA3/AN3/VREF 5 LSP2 GND 22 RB1 RA4/T0CKI 6 N$22 D4 +5V 21 7 BAT43 D3 INT/RB0 RA5/AN4 R19 100 VPP_8_14_18 BZX97-3,3 18 9 LSP3 N$25 17 DT/RX/RC7 OSC1/CLKIN 10 CK/TX/RC6 OSC2/CLKOUT 11 Q7 14 RC0/T1OSO/T1CKI 12 N$25 GND LSP1 = Vpp BC857ASMD 10kR17 VUSB RC1/T1OSI/CCP2 LSP2 = Uz +5V 16 D+ RC2/CCP1 13 +12V LSP3 = GND R1 15 D- LED2 Q1 +5V VPP_8_14_18 C10 1k C1 VSS gelb 20 MHz L1 D1 100nF 220nF LSP1 PIC18F2550SP 8 1
-
Datei
forum.c
Disable alle interupts PIR1bits.SSP1IF = 0; //Clear Interrupt Flag bit SSP1STATbits.P = 0; SSP1STATbits.BF = 0; for(i=0;i<45;i++) { i2cbuffer[i]= 0; } i = 0; if(SSP1BUF == 0x28)//Wenn im Buffer der Wert 0x28h (I2C-Adresse) steht, dann... { i2cbuffer[0] = ReadByte();//nächstes Byte einlesen vom I2C putrs1USART
in „PIC Parameterübergabe funktioniert nicht richtig“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Schnellblink.ino.asm
r1, r1 6a: 1f be out 0x3f, r1 ; 63 6c: cf ef ldi r28, 0xFF ; 255 6e: d8 e0 ldi r29, 0x08 ; 8 70: de bf out 0x3e, r29 ; 62 72: cd bf out 0x3d, r28 ; 61 74: 0e 94 40 00 call 0x80 ; 0x80 <main> 78: 0c 94 49 00 jmp 0x92 ; 0x92 <_exit> 0000007c <__bad_interrupt>: 7c: 0c 94 00 00 jmp 0 ; 0x0 <__vectors> 00000080
in „C++ Klassenbibliothek für AVR“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
powercontrol.pdf
12 INT OSC1 8 C2 8 RS PA6 2 1 PA7 06 (ADC1)PA1 AUS2 V 1 C 29 AREF (ADC0)PA0 37 AUS3 11 h -2 5 27 RX0BF Q6 + 28 AVCC 3 10 RX1BF 1 82 -1 GND AGND (SCK)PB7 SCK 4 TX0RTS OSC2 7 C2 GND (MISO)PB6 2 MISO 5 X5 17 (MOSI)PB5 1 MOSI 6 TX1RTS 9 SV1 5 44 TX2RTS VSS 10 9 38 VCC (SS)PB4 43 CS 8 7 C5 (AIN1/OC0)PB3 PB3
in „Meinung zu meiner Schaltung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
powercontrol_v1.1.pdf
72 5 VREF CANH 7 -3 + 4 C2+ u 2 G INT 12 INT OSC1 8 C2 8 RS 0 u 9 1 C 1 1 C 5 X6 11 h 1 -2 C2- 1 RX0BF Q6 1 10 RX1BF 1 82 R -1 TXD 11 T1IN T1OUT 14 2 6 4 TX0RTS OSC2 7 C2 GND D 10 T2IN T2OUT 7 3 7 5 CAN N 12 13 4 8 6 TX1RTS 9 2 1 G RXD 9 R1OUT R1IN 8 5 9 TX2RTS VSS P R2OUT R2IN J MCP2515-E/SO MAX232ECWE
in „Meinung zu meiner Schaltung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
powercontrol1.2.pdf
36 AUS2 INT 12 8 C2 8 0 1 C 29 (ADC1)PA1 37 INT OSC1 RS 1 AREF (ADC0)PA0 AUS3 z 1 -2 27 AVCC 11 RX0BF QM 1 28 AGND (SCK)PB7 3 SCK 10 RX1BF 1 82 R -1 2 4 7 C2 GND 17 (MISO)PB6 1 MISO 5 TX0RTS OSC2 CAN (MOSI)PB5 MOSI TX1RTS 2 1 5 VCC (SS)PB4 44 CS 6 TX2RTS VSS 9 2 38 43 PB3 J C5 (AIN1/OC0)PB3 42 MCP2515
in „Meinung zu meiner Schaltung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
tmp50.pdf
DIODE +15 DIODE 3 C? 330uF 100V +C? +C? + C? +15 +15 330uF 100V 330uF 100V 330uF 100V D21 PKE47A R25 R21 R? 150K 6K8 6K8 +5V +5V D22 U3 U5 PKE47A T? Q? Q? MM-2002 OPTOISO1 OPTOISO1 NPN1 NPN1 R? R? 100K 100K D? J1 15V CON2 2 1 D19 C A 1B10 R26 C39 10K 0.1u - 21 + - A 1 A C38 C + IRFPS3810 C CAPACITOR
in „Frage zu Turbopumpe/Brushless-Regler“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
apple_macbook_pro_a1286_mlb_d1_051-9216_13.3_retina_a1425_820-3462_sch.pdf
AR6 BE21 J45 BE23 K2 AC25 AR8 BE25 K4 AC41 AR17 AC43 AR19 BE27 K48 BE29 K50 AC45 AR21 BE31 L7 AE7 AR31 AE9 AR35 BE34 L9 AE11 AR37 BE36 L11 BE39 L13 AE13 AT7 BE41 L16 AE15 AT9 AE17 AT11 BE43 L18 BE45 L21 AE25 AT39 BF2 L23 AE35 AT41 AE41 AT43 BF4 L25 AE43 AT45 BF15 L27 BF24 L29 C C AE45 AU17 BF48 L31 AF2 AU37 AF4 AV2 BF50 L34 BH6 L36 AF8 AV4 BH10 L39 AF19 AV48 AF25 AV50 BH14 VSS VSS L41 AF27 AW7 BH18 L43 BH22 L45 AF29 VSS VSS AW9 BH26 N7 AF31
in „Macbook Schaltpläne“ · Mikrocontroller und Digitale Elektronik ·