-
PDF
AD1937.pdf
THE FIRST IC IN THE CHAIN 8 DAC CHANNELS OF THE SECOND IC IN THE CHAIN DSDATA1 (TDM DAC DATA IN) DAC1L DAC1R DAC2L DAC2R DAC1L DAC1R DAC2L DAC2R DSDATA2 DAC1L DAC1R DAC2L DAC2R (TDM DAC DATA OUT) DSDATA3 (TDM DAC2 DATA IN) DAC3L DAC3R DAC4L DAC4R DAC3L DAC3R DAC4L DAC4R DSDATA4 (TDM DAC2 DATA OUT) DAC3L
in „Aktives Filter simulieren“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
HM17CM4096.pdf
O O O O Y Y G G A G G A G G A MMMMO O MMMM R ( 2 2 2 1 1 1 0 0 0 0 1 2 3 7 8 9 0 ) ) DMY 3R) DMY 3L) COM 21 Y X COM 69 DMY 2R) DMY 2L) O V V V C C C C C C C C C C C C C C C C C C C C C C C C C D D S S C C + - - + + - - + + - - + + - - + + - - + + - - 6 6 6 6 O O MM 2 C ( (D R L R L R L R L R L R L R L R L R L R L R L R M M Y Y ) ) )R ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) ) 0 0 L R ) ) a align mark appearance and size d a : 30 m d b : 6 m c : 120 m b d : 27 m c a coordinates of align marks b
in „LCD Graphik Display mit µController ansteuern“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Dokument2.txt
-1) // *** ENDE: Abschnitt zur Systemkonfiguration *** // ***** Defines. #if !defined (__AVR_ATmega128__) #error __AVR_ATmega128__ not defined ! #endif //#define RAMSTART 0x0100 //#define RAMSIZE (RAMEND-RAMSTART) #define sleep() asm volatile ("sleep" "\n\t" :: ) // Idle-Mode ermöglichen // +++ Definition
in „ATmega128 USART kriegs nicht zum Laufen / bin am verzweifeln“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Mega128.pdf
D C Q 23 XTAL2 (AD5)PA5 46 3 G C (AD4)PA4 47 4 N 24 XTAL1 (AD3)PA3 48 5 B G C (AD2)PA2 49 6 B C N L1 62 AREF (AD1)PA1 50 7 V G 64 AVCC (AD0)PA0 51 8 100m N 63 AGND SV2 G (OC2/OC1C)PB7 17 8 SV1 52 (OC1B)PB6 16 7 C1 21 VCC (OC1A)PB5 15 6 C C6 C2 53 GND (OC0)PB4 13 4 C (MISO)PB3 12 3 V 1 GND D 18 (MOSI
in „ATmega128 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
ssd1306.c
display) void ssd1306_drawPixel(unsigned char x, unsigned char y, unsigned char color) { if ( (x >= 128) || (y >= 64)) { return; } if (color == 1) { ssd1306_buffer[x + (y / 8)*128] |= (1 << (y & 7)); } else { ssd1306_buffer[x + (y / 8)*128] &= ~(1 << (y & 7)); } } char row=0; //max 6 char column=0; //
in „sprintf funktioniert nicht in ESP-IDF“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Flash_Memory.pdf
Figure 4. Memory Map Diagram Boot Block FlashFile™ Memory Intel StrataFlash ® Memory 0 0 0 H H H 64 128 8 x 8 Kbyte Kbyte Kbyte 64 64 128 Kbyte Kbyte Kbyte 64 64 128 1FFFFF Kbyte 1FFFFF Kbyte Kbyte H H Asymmetrically Symmetrically 128 Blocked Blocked Kbyte 32 Mbit 32 Mbit 128 Kbyte Memory Map Diagram 128 Kbyte Asymmetrical and Symmetrical Blocking 128 Kbyte 128 Kbyte 7FFFFF H Symmetrically Blocked 128 Mbit 2.3 Operational Read Modes The standard modes of operation for flash components are read, program
in „Nur FLASH beschreiben bei PonyProg“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
HE3_LED_Wuerfel.pdf
34 P0U1034 P0U10552 L1 +12V 2 R5 43 E1 (RD) VCC P0U1064 64 1 L2 0 U6 3 +5V P3 TDO03 N0TDO GND PE2 (ALE/HWB) AVCC 2 P0L101 P0L102 CON8 N 6 1 4.7K GND GND P0U106262 0 100NF 0 10µH 0 0 0 1 0 1P0U601 +5V P 0 1 0 P4CON704 R AREF
in „Microcontroller Atmel AT90USB1287 stürzt ab“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
C51_API_Program_Examples.pdf
adr, unsigned char value); unsigned char __api_rd_eeprom_byte(unsigned int adr); #endif /*_____ G L O B A L S ___________________________________________________*/ sfr16 DPTR = 0x82; /*_____ L O C A L S _____________________________________________________*/ #define MSK_AUXR1_ENBOOT0x20 #define MSK_AUXR_M00x20
in „Schreiben in EEPROM eines AT89C51ED2“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Flash_API.pdf
adr, unsigned char value); unsigned char __api_rd_eeprom_byte(unsigned int adr); #endif /*_____ G L O B A L S ___________________________________________________*/ sfr16 DPTR = 0x82; /*_____ L O C A L S _____________________________________________________*/ #define MSK_AUXR1_ENBOOT0x20 #define MSK_AUXR_M00x20
in „Flash Byte lesen / schreiben auf AT89C51RB2“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
PG12864LRS-DNN-H.pdf
KS108 PG12864LRS-DNN-H Rev.0(DK) Page3 1. SPECIFICATIONS 1.1 Features Item StandardValue Display Type 128 * 64 dots LCD Type STN, Gray, Transflective, Positive, Extended Temp. Driver Condition LCM Module:1/64 Duty , 1/9 Bias Viewing Direction 6 O’clock Backlight Yellow-green LED B/L Weight 52 g Interface
-
Datei
ECB_t1.asm
lxi h,buf_in ; mvi b,80h ; 128 byte rdsek_l: mov m,a ; call piord ; dcr b ; inx h ; jnz rdsek_l ; jmp Ende ; rdendlos: lxi h,meld_6 ; call string ; Startmeldung call onesec ; mvi a,rdloop ; Befehl call piowr ; endl_n lxi h,buf_in ; mvi b,80h ; 128 byte endl_l: mov m,a ; call piord ; dcr b ; inx h ; jnz endl_l ; jmp endl_n ; ;----------------------------------------------------------------------------- ; ; PIO Initialisieren mit Betriebsart ;
in „Suche MOPPEL Projekt in Heft oder .PDF“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
ClipDec.c
ClipState==CLIPSTATE_SMMR && cou==0) { //Measuring, setting trigger time //..... if(AvPulseCounter==128) { ThresholdTime=(unsigned char)(AvPulseSumma/128); AvPulseCounter=255; return; } if(AvPulseCounter<128) { AvPulseCounter++; AvPulseSumma+=(unsigned int)LastPulseTime; return; } if(LastPulseTime>ThresholdTime
in „Kryptischer CLIP-Decoder“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
pfsreadhex.c
char name[20]; int flashsize; int ramsize; }; struct mcudefs mculib [mcuanz] = { "PFS154", 0x1000, 128, "PFS172", 0x1000, 128, "PFS173", 0x1800, 256, "PMS152", 0x0a00, 80, "PMS154", 0x1000, 128, "PMS171", 0x0c00, 96 }; /* ---------------------------------------------------------- strdel loescht eine
in „Padauk MCU für 0.038 USD aus Taiwan“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
ssd1329.c
********** // // renamed functions: // // RIT128x96x4Clear -> SSD1329_Clear // RIT128x96x4StringDraw -> SSD1329_StringDraw // RIT128x96x4ImageDraw -> SSD1329_ImageDraw // RIT128x96x4Init -> SSD1329_Init // RIT128x96x4Enable -> SSD1329_Enable // RIT128x96x4Disable -> SSD1329_Disable // RIT128x96x4DisplayOn -> SSD1329_DisplayOn // RIT128x96x4DisplayOff -> SSD1329_DisplayOff // RITWriteCommand -> SSD1329_WriteCommand // RITWriteData -> SSD1329_WriteData // // renamed datatypes: // // g_pucRIT128x96x4VerticalInc
in „SPI-Problem mit AVR“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
usart_at90can128.c
/***************************************************** Project : usart_at90can128 Comments: Versuch Chip type : AT90CAN128 Clock frequency : 16,000000 MHz *****************************************************/ #include <90can128.h> // Alphanumeric LCD Module functions #asm .equ _
in „USART0 - Programmierung bei AT90CAN128“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
schaltplan.pdf
OC3B INT4 PE4 PF2 ADC2 ' 11 8 INT6 S i OC3C INTS PES PF4 ADC4 TCK ' ~ TIN 9" R8 RXDO 9 , 9-1 TI lNT6 PE6 PFS ADCS TMS " ROUT, 10, ISS IM lC~ JNT7 PE7 PF6 ADC6 TDO ' 1 MAX221 EDle 11 t-----i SCK -11- ~~~~1 PF7 ADC7 TOI ~ 9 -L-CI0 -M-lS-O !l-.i MOSI PB2 GND I ilOon T 100" C :;f---1 ' _13_, MISOPB3
in „Stromversorgung und Verbindung zum PC ATmega128“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
main.c
#define F_CPU 16000000 #define BUAD 9600 #define BRC ((F_CPU/16/BUAD) - 1) #define TX_BUFFER_SIZE 128 #define RX_BUFFER_SIZE 128 char TxBuffer[TX_BUFFER_SIZE]; unsigned char TxBuffer_len=0; uint8_t txReadPos = 0; volatile uint8_t txWritePos = 0; char rxBuffer[RX_BUFFER_SIZE]; uint8_t rxReadPos = 0;
in „Roboter will nicht rückwärts fahren“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
0.96-inch_OLED_screen_12864_specifications.pdf
r - d l 1 r D Q S c 1 O P 1 2 3 4 5 6 7 8 9 1 1 1 1 1 1 1 1 1 1 2 2 2 2 2 2 2 2 2 2 3 S . B . ) 3 ) P 2 ) 1 4 6 2 l e e 2 t 2 o w o R u a a 3 e 1 m R m ( o c D 0 m m o ( o M P 2 4 e o C C l G E 7 S ( ) s O l
in „Display von I-Radio wurde langsam immer dunkler.“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
0.96-inch_OLED_screen_12864_specifications.pdf
r - d l 1 r D Q S c 1 O P 1 2 3 4 5 6 7 8 9 1 1 1 1 1 1 1 1 1 1 2 2 2 2 2 2 2 2 2 2 3 S . B . ) 3 ) P 2 ) 1 4 6 2 l e e 2 t 2 o w o R u a a 3 e 1 m R m ( o c D 0 m m o ( o M P 2 4 e o C C l G E 7 S ( ) s O l
in „SSD1306/1309 Library zum Darstellen von Text auf OLED Displays“ · Projekte & Code ·
-
PDF
0.96-inch_OLED_screen_12864_specifications.pdf
r - d l 1 r D Q S c 1 O P 1 2 3 4 5 6 7 8 9 1 1 1 1 1 1 1 1 1 1 2 2 2 2 2 2 2 2 2 2 3 S . B . ) 3 ) P 2 ) 1 4 6 2 l e e 2 t 2 o w o R u a a 3 e 1 m R m ( o c D 0 m m o ( o M P 2 4 e o C C l G E 7 S ( ) s O l
in „Kleine Frage zu TWI bzw. I²C Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Allvision_0_96_inch_OLED_128x64_SSD1306.pdf
r - d l 1 r D Q S c 1 O P 1 2 3 4 5 6 7 8 9 1 1 1 1 1 1 1 1 1 1 2 2 2 2 2 2 2 2 2 2 3 S . B . ) 3 ) P 2 ) 1 4 6 2 l e e 2 t 2 o w o R u a a 3 e 1 m R m ( o c D 0 m m o ( o M P 2 4 e o C C l G E 7 S ( ) s O l
in „Display"fehler" bei OLED Module IIC I2C 128x64“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Allvision_0_96_inch_OLED_128x64_SSD1306.pdf
r - d l 1 r D Q S c 1 O P 1 2 3 4 5 6 7 8 9 1 1 1 1 1 1 1 1 1 1 2 2 2 2 2 2 2 2 2 2 3 S . B . ) 3 ) P 2 ) 1 4 6 2 l e e 2 t 2 o w o R u a a 3 e 1 m R m ( o c D 0 m m o ( o M P 2 4 e o C C l G E 7 S ( ) s O l
in „Mit Wire.h über I2C auf LCD-Display 1602 zugreifen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MGLS_240128T-FF-HT-LEDWHITE_FPC_6MountingHoles.pdf
LIMITED Specification of LCD Module Type Model No.: MGLS240128T-73 1. General Description x▯ 240 x 128 dots FFSTN Negative Black Transmissive LCD graphic module. x▯ Driving scheme: 1/128 multiplexed drive, 1/12.4 bias. x▯ Viewing direction: 6 O’clock. x▯ ‘TOSHIBA’ T6963C flat pack or equivalent LCD controller
-
Datei
120813_Log.txt
, l.Kennz, l.Gewicht, l.Barcode, l.SMD FROM bauteil b LEFT JOIN bauteillager l ON (b.ID = l.Bauteil_ID) LEFT JOIN gehause c ON (c.ID = l.Gehause_ID) LEFT JOIN kiste k ON (k.ID = l.Kiste_ID) WHERE b.tree_typ_ID
in „EleLa - Elektronik Lagerverwaltung ab V2.0“ · Projekte & Code ·
-
PDF
DG-12864-15.pdf
5V) 2 V -- GND(0V) SS VDD 3 VLC -- LCD Drive Voltage(-8V) VSS KS0107B COM64 LCDPanel 4~11 DB0~DB7 H/L Data Bus Line VLCD VDD +5V /RST 12 /CS1 H Chip Selection For IC1(U2) 13 /CS2 H Chip Selection For IC2(U3) VSS R/W SEG64 SEG64 14 /RST L Reset VLCD VR D/ I 15 R/W H/L H: Data Read L: Data Write E VEE 16 D/I H/L H: Data Input L: Instruction VR=20~50KB0~DB7 KS0108B KS0108B Code Input /CS1 17 E H,H-L Enable Signal /CS2 18 FGND -- Frame GND (0V) 19 LEDA -- Power Supply for LED 20 LEDK -- Power Supply for LED n
in „GLCD KS108 Anzeide falsch rum“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
as5installer_stable-5.0.1038-readme-1.pdf
Full Full Control AT32UC3C1512C Full Full Full Control AT32UC3C2512C Full Full Full Control AVR UC3L Series AVR Dragon AVRISP mkII AVR ONE! JTAGICE mkII QT600 Simulator STK600 AT32UC3L016 Full Full Full Full Control AT32UC3L032 Full Full Full Full Control AT32UC3L064 Full Full Full Full Full Control AVR Xmega Series AVR Dragon AVRISP mkII AVR ONE! JTAGICE mkII QT600 Simulator STK600 ATxmega128A1 Full Control Full Full Full Full Control ATxmega128A3 Full Control Full Full Full Control ATxmega128D3 Full Control Full Full Full Control ATxmega16A4 Full Control Full Full Full Control ATxmega16D4
in „AVR-Studio 5“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Solomon_Cata_Eng17_AD_OLED3_AW1201_Single_F_1_.pdf
SSD1317 SSD1319 SSD1360 Display Features 20 Char x 128 / 256 120 x 17 + Maximum panel resolution 132 x 64 128 x 64 128 x 39 128 x 64 128 x 64 4 Lines Icon Lines 128 x 64 128 x 39 128 x 96 160 x 160 32 icons Embedded SRAM display buffer 132 x 64 bits 128
in „SSD1306/1309 Library zum Darstellen von Text auf OLED Displays“ · Projekte & Code ·
-
PDF
avrdude.pdf
ATtiny45 t461 ATtiny461 t5 ATtiny5 t84 ATtiny84 t85 ATtiny85 t861 ATtiny861 t88 ATtiny88 t9 ATtiny9 x128a1 ATxmega128A1 x128a1d ATxmega128A1revD x128a3 ATxmega128A3 x128a4 ATxmega128A4 x128d4 ATxmega128D4 x16a4 ATxmega16A4 x16d4 ATxmega16D4 x192a1 ATxmega192A1 x192a3 ATxmega192A3 x256a1 ATxmega256A1 x256a3
in „AVRDude als Tool in AVR Studio 4 einbinden“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
U4224B.pdf
window 88 x 88 mm) Thickness: 300 mm " 20 mm Symbol x-axis/mm y-axis/mm Symbol x-axis/mm y-axis/mm IN1 128 758 FLA 2044 676 IN 128 310 FLB 2044 1012 GND 354 124 SL 2044 1624 SB 698 128 Q2A 1980 1876 Q1A 1040 128 Q2B 1634 1876 Q1B 1290 128 PON 1322 1876 REC 1528 128 TCO 1008 1876 INT 1766 128 VCC 128 1098
in „DCF - Anschlüsse“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
IS66WVH16M8ALL_Rev0_3.v
WRITE_CMD = 2'b00, READ_CMD = 2'b10 ; // parameter IDR0_default = 16'b1000_1100_1001_0011; //Die2 [128M] parameter IDR0_default = 16'b0000_1101_1001_0011; //Die0 [128M] parameter IDR1_default = 16'b0000_0000_0000_0000; parameter CR0_default = 16'b1000_1111_0001_1111; // (DPD:15) [X], (Variable:3) [X]
in „HyperBus Ideen“ · FPGA, VHDL & Co. ·
-
PDF
T302B_Brief_Release_v1.05.pdf
configured though firmware 46 T302B Release Copyright by Terawins, Inc. 1.19 Pinout Diagram - T302BZ (128pin Analog panel, LED backlight support with 2 audio I S I/F) E # # R E C _ _ _ / D O D # 1 / P T S / E O S W O S _ 4 _ P C _ T R 2 M x / I S D # / P 5 P S 1 2 3 S M N S KL L N 1 M # D D D B C _ T C
in „Übersicht über preisgünstige elektronische Geräte für reverse-engineering“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
cy7c1345g_8_1_.pdf
L-H Q Read Cycle, Begin Burst External L H L L L X X X H L-H Tri-State Write Cycle, Begin Burst External L H L L H L X L X L-H D Read Cycle, Begin Burst External L H L L H L X H L L-H Q Read Cycle, Begin
in „Frage zum miniLa (Logic Analyzer)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
RGS24128064YW001.pdf
1 p r i 34. 0 A E v 0 e n R h i c C n m p a U m S u 2 G J L l 1 u i 0 c 1 o v , S M D 2 g 0 8 6 0 i 1 6 mm - r , 8 8 g 3 e m t ) M 1. a - a 4 e a 3 x i E h 1 H . o M 1 I ig o E l 0 i = p . x T TA P a 1 P P o : 7 E P C ( I 0 5. 0 F i N . L C . i M a D . 543. 1
in „Wer hat Infos zum OLED Display RGS24128064YW (Ritek)“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
main.c
____/defines\________________________________________________________________ #define F_CPU 7372800L // Systemtakt in Hz #define F_CAL 12800000L // gemessener Kalibriertakt in 10^-5 Hz // Endung L ist wichtig! #define uart_baudrate 115200 // Baudrate angeben #define uart_baud_calc ((F_CPU)/((uart_baudrate
in „Uhrzeit und Datum mit Hilfe der genauen Sekunde“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
kb.c
,'*' ,'9' ,0 ,0 }; //7 const char keymap1[128] = // SHIFT- Ebene { 0 ,0 ,0 ,0 ,0 ,0 ,0 ,0 ,0 ,0 ,0 ,0 ,0 ,9 ,0 ,0 ,//0 0 ,0 ,0 ,0 ,4 ,'Q' ,'!' ,0 ,0 ,0 ,'Y' ,'S' ,'A' ,'W' ,'@' ,0 ,//1 0 ,'C' ,'X' ,'D' ,'E' ,'$' ,'#' ,0 ,0 ,' ' ,'V' ,'F' ,'T' ,
in „PS/2 Keyboard am PSoC 3/4/5“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
RIT_Display_rgs24128064yw002-09703_TAB_-A01__2_.pdf
e S / B x i p t t t e t S 1 5 5 ) e si o o o p c C 8 1 x . e p . . . . . . . W 0 M 4. a ( )l aeS( S 1 2 3 4 5 6 7 1 i 1 3 6 5 . xa M5. 2 E 2 1 1 0 n h C . )l aeS( m a . )l aeS( a l . xa M2. 1 x m u ± e m . xa M5. 1 M e M u 1 r m2 0 ( . J . l 0 0 2 P t= L ) ) 8 v 5 7 4 2. 0±6. 12 1 a ( ( . D ( ) 2( g n a : C n u 2 1. 71 1 it a P P P 2 5. 31 L i a D ) ) A t ) ) ) E ( l o e P 1 o H . d r + 5 i n 2 0 i ) . l 0 5 D S e . 0± g RS 2 2 ± P 3 3 ( n ± 3= i n ( 0 0. . 3 1 0 4 0 l . - l d 0 5 0± 6 0. M 8 6 ± A = 1 S ± 3 4 5 ( 2 x 3 1 W ( ( 3 4 . x 0
in „RitDisplay???“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51ed2.pdf
PCA Compare Capture Module 4 H CCAP4H7 CCAP4H6 CCAP4H5 CCAP4H4 CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP0L EAh PCA Compare Capture Module 0 L CCAP0L7 CCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 CCAP1L EBh PCA Compare Capture Module 1 L CCAP1L7 CCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module 2 L CCAP2L7 CCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 CCAP3L EDh PCA Compare Capture Module 3 L CCAP3L7 CCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0
in „Kleine 8051 Fragen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51ed2.pdf
PCA Compare Capture Module 4 H CCAP4H7 CCAP4H6 CCAP4H5 CCAP4H4 CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP0L EAh PCA Compare Capture Module 0 L CCAP0L7 CCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 CCAP1L EBh PCA Compare Capture Module 1 L CCAP1L7 CCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module 2 L CCAP2L7 CCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 CCAP3L EDh PCA Compare Capture Module 3 L CCAP3L7 CCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0
in „8051: Oszillatorfrequenz und Maschinenzyklus“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51ed2.pdf
PCA Compare Capture Module 4 H CCAP4H7 CCAP4H6 CCAP4H5 CCAP4H4 CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP0L EAh PCA Compare Capture Module 0 L CCAP0L7 CCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 CCAP1L EBh PCA Compare Capture Module 1 L CCAP1L7 CCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module 2 L CCAP2L7 CCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 CCAP3L EDh PCA Compare Capture Module 3 L CCAP3L7 CCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0
in „Mikrocontrollerboard: Funktioniert das?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51ed2.pdf
PCA Compare Capture Module 4 H CCAP4H7 CCAP4H6 CCAP4H5 CCAP4H4 CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP0L EAh PCA Compare Capture Module 0 L CCAP0L7 CCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 CCAP1L EBh PCA Compare Capture Module 1 L CCAP1L7 CCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module 2 L CCAP2L7 CCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 CCAP3L EDh PCA Compare Capture Module 3 L CCAP3L7 CCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0
in „EEPROM schreiben/lesen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51ed2.pdf
PCA Compare Capture Module 4 H CCAP4H7 CCAP4H6 CCAP4H5 CCAP4H4 CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP0L EAh PCA Compare Capture Module 0 L CCAP0L7 CCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 CCAP1L EBh PCA Compare Capture Module 1 L CCAP1L7 CCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module 2 L CCAP2L7 CCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 CCAP3L EDh PCA Compare Capture Module 3 L CCAP3L7 CCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0
in „Temperatur ohne AD-Eingang messen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51ed2.pdf
PCA Compare Capture Module 4 H CCAP4H7 CCAP4H6 CCAP4H5 CCAP4H4 CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP0L EAh PCA Compare Capture Module 0 L CCAP0L7 CCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 CCAP1L EBh PCA Compare Capture Module 1 L CCAP1L7 CCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module 2 L CCAP2L7 CCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 CCAP3L EDh PCA Compare Capture Module 3 L CCAP3L7 CCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0
in „Displaybeleuchtung faden ohne Analog I/O“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51ed2.pdf
PCA Compare Capture Module 4 H CCAP4H7 CCAP4H6 CCAP4H5 CCAP4H4 CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP0L EAh PCA Compare Capture Module 0 L CCAP0L7 CCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 CCAP1L EBh PCA Compare Capture Module 1 L CCAP1L7 CCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module 2 L CCAP2L7 CCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 CCAP3L EDh PCA Compare Capture Module 3 L CCAP3L7 CCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0
in „Displaybeleuchtung mit PWM dimmen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51ed2.pdf
PCA Compare Capture Module 4 H CCAP4H7 CCAP4H6 CCAP4H5 CCAP4H4 CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP0L EAh PCA Compare Capture Module 0 L CCAP0L7 CCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 CCAP1L EBh PCA Compare Capture Module 1 L CCAP1L7 CCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module 2 L CCAP2L7 CCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 CCAP3L EDh PCA Compare Capture Module 3 L CCAP3L7 CCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0
in „8051: An Port 0 kann nichts ausgegeben werden“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51ed2.pdf
PCA Compare Capture Module 4 H CCAP4H7 CCAP4H6 CCAP4H5 CCAP4H4 CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP0L EAh PCA Compare Capture Module 0 L CCAP0L7 CCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 CCAP1L EBh PCA Compare Capture Module 1 L CCAP1L7 CCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module 2 L CCAP2L7 CCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 CCAP3L EDh PCA Compare Capture Module 3 L CCAP3L7 CCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0
in „8051: An Port 1 nur 3.5V anstatt 5V ?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51rd2.pdf
PCA Compare Capture Module 4 H CCAP4H7 CCAP4H6 CCAP4H5 CCAP4H4 CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP0L EAh PCA Compare Capture Module 0 L CCAP0L7 CCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 CCAP1L EBh PCA Compare Capture Module 1 L CCAP1L7 CCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module 2 L CCAP2L7 CCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 CCAP3L EDh PCA Compare Capture Module 3 L CCAP3L7 CCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0
in „Alternative Funktion von Pins“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
at98c51ed2.pdf
PCA Compare Capture Module 4 H CCAP4H7 CCAP4H6 CCAP4H5 CCAP4H4 CCAP4H3 CCAP4H2 CCAP4H1 CCAP4H0 CCAP0L EAh PCA Compare Capture Module 0 L CCAP0L7 CCAP0L6 CCAP0L5 CCAP0L4 CCAP0L3 CCAP0L2 CCAP0L1 CCAP0L0 CCAP1L EBh PCA Compare Capture Module 1 L CCAP1L7 CCAP1L6 CCAP1L5 CCAP1L4 CCAP1L3 CCAP1L2 CCAP1L1 CCAP1L0 CCAP2L ECh PCA Compare Capture Module 2 L CCAP2L7 CCAP2L6 CCAP2L5 CCAP2L4 CCAP2L3 CCAP2L2 CCAP2L1 CCAP2L0 CCAP3L EDh PCA Compare Capture Module 3 L CCAP3L7 CCAP3L6 CCAP3L5 CCAP3L4 CCAP3L3 CCAP3L2 CCAP3L1 CCAP3L0
in „Frequenz für µC AT89C51ED2“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
uLogicAnalyzer.pdf
T r i g g e r I n p u t : A B C D E F G H C n d t n : - - - - - - - - M o d e : P r e t r i g S C l k : 1 0 M H z L i n e s : 8 P r e f # : 1 A c t n : L o a d L C D : = = = - - - - - Die Auswahl des zu ändernden Parameters erfolgt mit dem linken Encoder. Der ausgewählte Parameterwert wird durch blinkende
in „Mal wieder ein Selbstbau-Logicanalyzer mit ATmega.“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
sip_klingel_ND.ino
AddSipLine(const char* constFormat , ... ) { va_list arglist; va_start( arglist, constFormat); uint16_t l=(uint16_t)strlen(pbuf); char *p=pbuf+l; vsnprintf(p, lbuf-l, constFormat, arglist ); va_end( arglist ); l=(uint16_t)strlen(pbuf); if (l<(lbuf-2)) { pbuf[l]='\r'; pbuf[l+1]='\n'; pbuf[l+2]=0; } } // call
-
PDF
Intel_RC28fxxxj3_StrataFlash.pdf
, 28F320J3 4.2 56-Lead TSOP (32/64/128/256 Mbit) ® Figure 7. Intel StrataFlash Memory 56-Lead TSOP (32/64/128/256 Mbit) 3 Volt Intel 3 Volt Intel StrataFlash StrataFlash Memory Memory 28F160S3 28F320J5 32/64/128M 32/64/128M 28F320J5 28F160S3
in „Geschwindigkeit Flash Memory“ · Mikrocontroller und Digitale Elektronik ·