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Datei
verlinkung.txt
Forenbeiträgen auf das Datenblatt # Verlinkung über verkürzte Bezeichnung auf ein Datenblatt - - AT32UC3L0128 - - AT32UC3L016 - - AT32UC3L0256 - - AT32UC3L032 - - AT32UC3L064 + * AT90CAN128 - - AT90CAN32 - - AT90CAN64 - - AT90PWM1 - - AT90PWM161 - - AT90PWM216 - # AT90PWM2B - - AT90PWM316 - # AT90PWM3B -
in „MC PIC - Warum diese Ungleichbehandlung?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
scope.c
128+x] = col; } } // draw the grid and the border for (int y=0;y<7;y++) { imageBuffer[y*128]=0b11111111; imageBuffer[y*128+127]=0b11111111; } for (x=0;x<128;x++) { imageBuffer[x] |= 0b00000001; imageBuffer[128*6+x] |= 0b10000000; } for(x=0;x<128;x+=8) { for(y=0;y<7;y++) imageBuffer[y*128+x] |=0x00000001; } // paint the image OLED_GOTO(0,1); Dispay_Pic((void*)imageBuffer); if (isr==1) { Display_int8(18,0,fps
in „XMega ADC gesamten SampleVector auf einmal einlesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD7376.pdf
15V – 0.15 T = +258C 0.15 p 30 R = 50kV R A – AB O 0.10 0.10 O 25 R TA= –558C C E 0.05 B 0.05 M 20 Y L E I 0 – 0 T 15 R L D E–0.05 N–0.05 O 10 I VDD = +15V D V = +15V M L VSS = –15V DD T O–0.10 V = +2.5V –0.10 VSS = –15V T 5 N A T = +858C VA= +2.5V S L–0.15 VB= 0V A –0.15 V = 0V E 0 I R = 50kV B H –0.20
in „1-10 V digitales Potentiometer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
E0123N10.pdf
(n–1) CKE(n) /CS /RAS /CAS /WE Address Action Notes H H H × × × Refer to 6.2 Command Operations of 128M SDRAM H H L H × × Refer to 6.2 Command Operations of 128M SDRAM H H L L H × Refer to 6.2 Command Operations of 128M SDRAM H H L L L H × CBR(auto) refresh entry H H L L L L V Refer to 6.2 Command Operations of 128M SDRAM H L H × × × Refer to 6.2 Command Operations of 128M SDRAM H L L L H × Refer to 6.2 Command Operations of 128M SDRAM H L L L L H × Self refresh entry H L L L L L V Refer to 6.2 Command Operations
in „VGA Grafikkarte mit AVR und 8MB SDRAM“ · Projekte & Code ·
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PDF
ft639.pdf
SUB servo1 (value AS INTEGER) SUB servo4 (value AS INTEGER) DIM uV AS INTEGER DIM uV AS INTEGER DIM lV AS INTEGER DIM lV AS INTEGER uV = INT(value / 16) uV = INT(value / 16) lV = value - (uV * 16) lV = value - (uV * 16) uV = uV + 128 uV = uV + 128 + 48 PRINT #1, CHR$(lV); lV = lV + 48 PRINT #1, CHR$(
in „Servos mit PDA steuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DOGM128E.pdf
Issue 10.2014 DOGM GRAPHIC SERIES 128x64, 3.3V ! lo qaniy uned valalein EDb./. m a .mmwit L flt:5 EA DOGM128B-6 + EA LED55x46-WEA LED55x46-W + EA DOGM128W-6 + EA LED55x46-A TECHNICAL DATA * HIGH-CONTRAST LCD SUPERTWIST DISPLAY (STN AND
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PDF
Sony_STR-DE585_Service_Manual.pdf
0.01uF 10% 50V D750 8-719-991-33 DIODE 1SS133T-77 (AEP,UK) D765 8-719-991-33 DIODE 1SS133T-77 CC31 1-128-809-11 CERAMIC 100PF 5% 50V D791 8-719-991-33 DIODE 1SS133T-77 (AEP,UK) D801 8-719-934-21 DIODE HZS30-1L CC32 1-128-809-11 CERAMIC 100PF 5% 50V (AEP,UK) D802 8-719-072-05 DIODE RBV-602LF-A CC41 1-128
in „Reparaturanleitung Sony STR-DE585 FM STEREO/FM-AM RECEIVER Surround“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Chip_-_Infosheet.pdf
Rapid Prototyping Module with,.ATmega128 pController, Crumb128 is a low-cost, easy to use and small-formfactor module combining Atmels ATmega128 AVR microcontroller with a standard serial port with RS232 transceiver, USB2.0 (full speed) device
in „12 Led's mit C++ ansprechen atmega128“ · Softwareentwicklung ·
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PDF
Chip_-_Infosheet.pdf
Rapid Prototyping Module with,.ATmega128 pController, Crumb128 is a low-cost, easy to use and small-formfactor module combining Atmels ATmega128 AVR microcontroller with a standard serial port with RS232 transceiver, USB2.0 (full speed) device
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PDF
Vishay_0_91_inch_OLED_128x32_SSD1306.pdf
AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 OLED-128O032F-LPP3N00000 www.vishay.com Vishay MODULE CLASSIFICATION INFORMATION OLED - 128 O 032 F - L P P 3 N 0 0 000 1 2 3 4 5 6 7 8 9 10 11 12 13 1 Brand Vishay Intertechnology, Inc. 2 Horizontal format 128 columns F: COG type, with frame H: graphic type 3 Display type N: character type O: COG type Y: tab type 4 Vertical format 32 lines 5 Serials code F A: amber B: blue C: full color G: green L: yellow
in „Mit Wire.h über I2C auf LCD-Display 1602 zugreifen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Vishay_0_91_inch_OLED_128x32_SSD1306.pdf
AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 OLED-128O032F-LPP3N00000 www.vishay.com Vishay MODULE CLASSIFICATION INFORMATION OLED - 128 O 032 F - L P P 3 N 0 0 000 1 2 3 4 5 6 7 8 9 10 11 12 13 1 Brand Vishay Intertechnology, Inc. 2 Horizontal format 128 columns F: COG type, with frame H: graphic type 3 Display type N: character type O: COG type Y: tab type 4 Vertical format 32 lines 5 Serials code F A: amber B: blue C: full color G: green L: yellow
in „Arduino Bibliothek - Methoden bzw. Funktionen en Detail erklärt - gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC_productmatrix_022005.pdf
ROM 1028 34 8/10Bit 3 12 / 4 USART ! 4-ch - 8 - ! P-MQFP-44 Enhanced power saving modes; Low EMI 2R-L/-2 16KB ROM Bare Die LCD Driver on-chip 128 segments; C505L-4E 20MHz 300ns 32K OTP 512 46 8/10Bit 3 12 / 4 USART - 4-ch - 8 - ! P-MQFP-80 RTC with 32kHz subclock C508-4R/-2R/-L 20MHz 300ns 32/16KB 1280
in „8051-Derivat mit zwei UART gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMEGA_128_Compact_Flash.pdf
den ATMEGA128 und den ATMEGA128L. Der Unterschied zwischen diesen beiden Typen liegt vor allem bei den möglichen Quarzfrequenzen und Spannungen. Der ATMEGA128 kann mit Spannungen von 4.5V bis 5.5V und Quarzfrequenzen
in „CompactFlash Tutorial ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
laufschr.asm
mov r0,#40 clr a clr_loop: mov @r0,a ; Speicherzellen 40...127 (int. RAM) loeschen inc r0 cjne r0,#128,clr_loop lauf_loop: call ledout_ini mov zeichen_h,#0 ; Zeichenzaehler HIGH mov zeichen_l,#0 ; Zeichenzaehler LOW clr z_abfrage mov r5,#0 ; r5: Spaltenzaehler jnb eep_mode,rom_dat call read_eeprom jmp
in „Anstuerung MAX6952 an einen 89C2051 oder einen PIC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
integerFFT.c
in time - re-order data */ l = n; do { l >>= 1; } while (mr+l > nn); mr = (mr & (l-1)) + l; if (mr <= m) continue; tr = fr[m]; fr[m] = fr[mr]; fr[mr] = tr; ti = fi[m]; fi[m] = fi[mr]; fi[mr] = ti; } l = 1; k = LOG2_N_WAVE-1; while
in „STM32 Arduino“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dog_graf.ini
;--------------------- Hardware --------------------------------------------------------- .equ dog_128 = 0 ; 128x64 PIXEL .equ dogL_128 = 0 ; 128x64 PIXEL,Gross .equ dog_132 = 1 ; 132x32 PIXEL ; SPI-Auswahl .equ use_SPI = 0 ; Hardware-SPI .equ use_USART_SPI = 1 ; USART im SPI-Mode .equ use_USI_SPI =
in „Organisation von AVR-Projekten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMega128CAN11_short.pdf
clock cycle, the ATmega128CAN11 achieves throughputs approaching 1 MIPS per MHz allowing the system designer to optimize power consumption versus processing speed. Block Diagram Figure 2. Block Diagram T L L E PF7 - PF0 PA7 -
in „ATmega128CAN11“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMega128CAN11_short.pdf
clock cycle, the ATmega128CAN11 achieves throughputs approaching 1 MIPS per MHz allowing the system designer to optimize power consumption versus processing speed. Block Diagram Figure 2. Block Diagram T L L E PF7 - PF0 PA7 -
in „ATmega128CAN11“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.c
; RS_L; RW_L; DISPLAY_PORT =0b00111000; EN_S; asm("nop"); asm("nop"); EN_L; wartems(2); RS_L; RW_L; DISPLAY_PORT =0b00001100 ; EN_S; asm("nop"); asm("nop"); EN_L; wartems(2); RS_L; RW_L; DISPLAY_PORT =0b00000001 ; EN_S; asm("nop"); asm("nop"); EN_L; wartems(2); RS_L; RW_L; DISPLAY_PORT =0b00000110 ; EN_S; asm("nop"); asm("nop"); EN_L; wartems(2); }
in „DS18b20 Reset geht nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.c
; RS_L; RW_L; DISPLAY_PORT =0b00111000; EN_S; asm("nop"); asm("nop"); EN_L; wartems(2); RS_L; RW_L; DISPLAY_PORT =0b00001100 ; EN_S; asm("nop"); asm("nop"); EN_L; wartems(2); RS_L; RW_L; DISPLAY_PORT =0b00000001 ; EN_S; asm("nop"); asm("nop"); EN_L; wartems(2); RS_L; RW_L; DISPLAY_PORT =0b00000110 ; EN_S; asm("nop"); asm("nop"); EN_L; wartems(2); }
in „LCD Busy Flag abfragen C“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.c
; RS_L; RW_L; DISPLAY_PORT =0b00111000; EN_S; asm("nop"); asm("nop"); EN_L; wartems(2); RS_L; RW_L; DISPLAY_PORT =0b00001100 ; EN_S; asm("nop"); asm("nop"); EN_L; wartems(2); RS_L; RW_L; DISPLAY_PORT =0b00000001 ; EN_S; asm("nop"); asm("nop"); EN_L; wartems(2); RS_L; RW_L; DISPLAY_PORT =0b00000110 ; EN_S; asm("nop"); asm("nop"); EN_L; wartems(2); }
in „Neues Testboard, LCD will nicht mehr“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mix2.2.asm
sbrs flagreg, 5 ; Messzyklus fertig für Ausgabe? outflag=1? rjmp main Main: stellungpos h,g,vo ; h+(g-128) stellungneg h,g,hi ; h-(g-128) stellungpos h,s,re ; h+(s-128) stellungneg h,s,li ; h-(s-128) ;nop ;nop ;end: rjmp end ;rjmp Ausgabe ;Mittel: ;Stellt Testservo auf Mitte ; ldi temp1, 128 ; mov vo, temp1
in „Mehrere Servosignale auswerten“ · Mikrocontroller und Digitale Elektronik ·
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Datei
augabe.txt
und Einstellungen\\Daniel\\Eigene Dateien\\Arduino\\libraries\\U8glib\\src\\clib\\u8g_dev_ssd1351_128x128.c" -o "C:\\DOKUME~1\\Daniel\\LOKALE~1\\Temp\\arduino_build_180034\\libraries\\U8glib\\clib\\u8g_dev_ssd1351_128x128.c.o" "C:\\Programme\\Arduino\\hardware\\tools\\avr/bin/avr-gcc" -c -g -Os -w -
in „Marlin auf anet e12“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVRMicrocontrollers_Peripheral_Integration.pdf
/ / e h n s l m g s T t F B l H I b c t S b u o s M r E C r e e E N b e h u n t k d ®r n m ( V ( M o o r i o a V o M W t r m m i i ( A u ®T T l a y a o w o r l d = ( ( p G ( e a C P t r f T T t t o S T M l h h n C t W M o C g A p e z C C m C C p r o i b a v a i b b L L p C R D T A B I O r u u D e A n e e o i r R u p H D D o D A e n e - 6 u a e - 2 6 C U r R O O D S S 2C P R e T T C x M v l l i P P S S S M A A C A D T I Z 8 1 Q W R 8 1 1 C M C C P B W U U I S I S
in „Nachfolger von Atmega169“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IDT71V124SA.pdf
3.3V CMOS Static RAM 1 Meg (128K x 8-Bit) IDT71V124SA Center Power & Ground Pinout Features Description ◆ 128K x 8 advanced high-speed CMOS static RAM TheIDT71V124isa1,048,576-bithigh-speedstaticRAMorganized ◆ JEDEC revolutionary
in „[V] 5St SRAM 1MBit (128kx8) 3,3V, 12ns IDT71V124SA TSOP32 (5€)“ · Markt ·
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Bild
Nuvoton NSC128L42 Entwicklungsboard mit LCD und Pumpe
NUVOTON NSC128L42-LCD V1.0 8/29-3.3V VCC Type-C Current J3 Power LED SW2 NFB Text I2C-2 Text I2C-3 Reset POT J11 VSS J12 R15 R14 R34 R35 R19 R18 LED1 LED2 LED3 LED4 LED5 MINI PUMP CJAPO-3A33A3 DC 0.3V 55M17 CM. JP
in „Arduino Uno Q-Preiserhöhung, Mikrocontroller mit Klasse D-Verstärker, OnSemi X Synaptics uvam“ · Mikrocontroller und Digitale Elektronik · · Platinenfotos
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Datei
lcd.c
DISPLAY_EN(); DISPLAY_BUSY(); } //Display initsialieseiern void lcd_init(void) { wartems(251); RS_L; RW_L; DISPLAY_PORT =0b00111000; EN_S; asm("nop"); EN_L; wartems(2); RS_L; RW_L; DISPLAY_PORT =0b00001100 ; EN_S; asm("nop"); EN_L; wartems(2); RS_L; RW_L; DISPLAY_PORT =0b00000001 ; EN_S; asm("nop"); EN_L; wartems(2); RS_L; RW_L; DISPLAY_PORT =0b00000110 ; EN_S; asm("nop"); EN_L; wartems(2); }
in „DS18b20 ID auslesen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
fft.c
in time - re-order data */ l = n; do { l >>= 1; } while (mr+l > nn); mr = (mr & (l-1)) + l; if (mr <= m) continue; tr = fr[m]; fr[m] = fr[mr]; fr[mr] = tr; ti = fi[m]; fi[m] = fi[mr]; fi[mr] = ti; } l = 1; k = LOG2_N_WAVE-1; while
in „STM32 Arduino“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADSP-2181_Datenblatt.pdf
ERESET 93 D15 125 PF5 30 A9 62 RESET 94 D16 126 PF4 31 A10 63 EMS 95 D17 127 GND 32 A11 64 EE 96 D18 128 IS REV. D –29– ADSP-2181 128-Lead PQFP Package Pinout D 0 1 2 3 4 5 D D 6 7 8 9 1 1 1 1 1 1 D F F F L S N F F F F D D A D D A N D D D D D D D D D D D D R N 2 P P P I I G P P P P I I I I I I G V I I I I I I I I I I I I G D 128 97 1 96 PF0 D22 D21 WR RD D20 IOMS D19 BMS D18 DMS D17 CMS D16 GND D15 VDD GND PMS VDD A0 GND A1 128L PQFP D14 A2 D13 A3 (28MM x 28MM) D12 A4 D11 TOP VIEW D10 A5 (PINS DOWN) A6 D9 A7 D8 XTAL D7 CLKIN
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Datei
lcd.c
#include <util/delay.h> void DISPLAY_BUSY(void) { uint8_t j; j=1; DDRC=0x00; while (!(j==0)) { RS_L; RW_S; EN_S; if (!(PINC &(1<<PIN7))) { j=0; } EN_L; RW_L; } DDRC=0xFF; } void DISPLAY_EN(void) { EN_S; asm("nop"); EN_L; } void DISPLAY_COMANDO(uint8_t comando) { RS_L; RW_L; DISPLAY_PORT = comando;
in „_delay_us macht eine ms“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CS4272.pdf
, 128 Fs 0 d30 384 32, 48, 64, 96, 128 Fs 0 d30 30 Single Speed 512 32, 64, 128 Fs 0 d 30 768 32, 48, 64, 96, 128 Fs 1 d 1024 32, 64, 128 Fs 1 d30 128 32, 64 Fs 0 d30 30 192 32, 48, 64 Fs 0 d 30 Double Speed
in „was ist "ATAPI channel mixing" Warum kein Ausgangssignal?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ATB_Grapik_Bus_Prg_1.c
Graphik_Rechteck(0,58,5,63); Graphik_Rechteck(122,58,127,63); Graphik_Auswahl_Font(5); Graphik_Text_ausgabe_L(19,10,"Demo Board"); Graphik_Auswahl_Font(6); // Auswahl Schrift Graphik_Text_ausgabe_L(11,27,"eDIP 128"); Graphik_Auswahl_Font(4); Graphik_Text_ausgabe_L(80,53,"(Bild 1)"); _delay_ms(5000); Graphik_loeschen
in „I2C Bus und eDIP128 (Graphik Display)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
M64282FP.pdf
power consumption , and more intelligent image processing Outline : 16C 9-B functions . 2. Features l Single 5.0V supply l Low power dissipation (Typ. 15 mW ) l Positive and negative image output l Edge enhancement / extraction l Output level & gain tuning 3. Application Image input device, Gaming, Human
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PDF
M64282FP.pdf
power consumption , and more intelligent image processing Outline : 16C 9-B functions . 2. Features l Single 5.0V supply l Low power dissipation (Typ. 15 mW ) l Positive and negative image output l Edge enhancement / extraction l Output level & gain tuning 3. Application Image input device, Gaming, Human
in „c-mos kamera auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCF51QE128-1.pdf
Pins in bold are added from the next smaller package. Figure 2. Pin Assignments in 80-Pin LQFP MCF51QE128 Series Data Sheet, Rev. 6 Freescale Semiconductor 5 Pin Assignments 1 1 P P 2 1 C C O P K + / / S C S 2 2 0 1 T / / P M P D D S S H H / C M / / / E C C L / / H H D / 3 3 2 I 1 D 2 C C K L P P M S S
in „Eingangsspannungsbereich ADC Coldfire“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2401283.pdf
GTG-2401283 1/128 DUTY, 1/12 BIAS ( 240 ¡`128 Dots ) 1. DIMENSIONAL OUTLINE 2.BLOCK DIAGRAM 3. MECHANICAL SPECIFICATIONS ITEM SPECIFICATIONS UNIT REMARK DIMENSIONAL 159.4(W)×101.0(H)×13.0MAX.(T) OUTLINE mm *REFERENCE
in „Displaykompatibiltät?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
W25Q128JV_RevI_08232021_Plus.pdf
thru 255 400000h - FFFFFFh 12MB Upper 3/4 0 1 1 1 0 128 thru 255 800000h - FFFFFFh 8MB Upper 1/2 X X 1 1 1 NONE NONE NONE NONE 1 0 0 0 1 0 thru 255 000000h – FFEFFFh 16,380KB L - 4095/4096 1 0 0 1 0 0 thru 255 000000h – FFDFFFh 16,376KB L - 2047/2048 1 0
in „Speicher handling mit W25Q128“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX5494-MAX5499.pdf
VOLTAGE-DIVIDER) 1.0 c 1.0 0 1.5 c 4 V DD = 3V 4 VDD = 3V 4 X 0.8 5 X 0.5 M M 1.0 M 0.6 0 0.4 0.5 B B 0.2 B L L L L -0.5 L 0 L 0 I D I -0.2 -1.0 -0.5 -0.4 -1.5 -0.6 -1.0 -0.8 -2.0 -1.0 -1.5 2.5 3.0 3.5 4.0 4.5 5.0 0 128 256 384 512 640 768 896 1024 0 128 256 384 512 640 768 896 1024 VDD (V) CODE CODE WIPER RESISTANCE
in „Digitalpoteniometer für Audio-Anwendung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
CAPTURE.TXT
] sz 0(0x 0) [N:A02FD5F0] BYTE[802ECFD0]USB [A02ED010] 8104 4768 11 A02EDD10 A02ED010 [-USED-] sz 128(0x 80) [N:A02ED090] A02ED090 [-USED-] sz 2176(0x 880) [N:A02ED910] A02ED910 [-USED-] sz 128(0x 80) [N:A02ED990] A02ED990 [-USED-] sz 256(0x 100) [N:A02EDA90] A02EDA90 [-USED-] sz 128(0x 80) [N:A02EDB10] A02EDB10 [-USED-] sz 128(0x 80) [N:A02EDB90] A02EDB90 [-USED-] sz 128(0x 80) [N:A02EDC10] A02EDC10 [-USED-] sz 128(0x 80) [N:A02EDC90] A02EDC90 [-USED-] sz 128(0x 80) [N:A02EDD10] A02EDD10 [-free-] sz 4768(0x 12A0) [N:A02EEFB0
in „Digitaler Spongebob Bilderrahmen für 15€“ · Mikrocontroller und Digitale Elektronik ·
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PDF
gdm12864a.pdf
Dimension Unit Module Size(W*H*T) 93.0*70.0*10.0 mm Viewing Area(W*H) 72.0*40.0 mm Number of Dots 128.0*64.0 PCS Dot Size(W*H) 0.48*0.48 mm Dot Pitch(W*H) 0.52*0.52 mm Module Size With B/L 93.0*70.0*15.0 mm Temperature Characteristics Parameter Symbol Rating Unit Operating temperature Topr 0 ~ +50 ?
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PDF
EL12864A.pdf
Dimension Unit Module Size(W*H*T) 93.0*70.0*10.0 mm Viewing Area(W*H) 72.0*40.0 mm Number of Dots 128.0*64.0 PCS Dot Size(W*H) 0.48*0.48 mm Dot Pitch(W*H) 0.52*0.52 mm Module Size With B/L 93.0*70.0*15.0 mm Temperature Characteristics Parameter Symbol Rating Unit Operating temperature Topr 0 ~ +50 ▯
in „LCD Display Powertip PG-12864A“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PC_DIMMER_AT90S2313.asm
,TEMP brne PHME ldi Z_L,loc_phm add Z_L,CHANNEL st z,END ;IF FADE[CHANNEL]=0 THEN PHM[channel]:=END rjmp UPDR PHME: ldi Z_L,loc_phm add Z_L,CHANNEL ld PHM,z ;PHM:=PHM[channel] cp END,PHM ;if PHM[channel]==END[channel] UPDR
in „AT90S2313 Code für ATtiny2313 angleichen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PC_DIMMER_AT90S2313.asm
,TEMP brne PHME ldi Z_L,loc_phm add Z_L,CHANNEL st z,END ;IF FADE[CHANNEL]=0 THEN PHM[channel]:=END rjmp UPDR PHME: ldi Z_L,loc_phm add Z_L,CHANNEL ld PHM,z ;PHM:=PHM[channel] cp END,PHM ;if PHM[channel]==END[channel] UPDR
in „PWM-Signal durch 3-Phasen-AC gestört?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ffft.S
,T8L,T6H,T6L, BH,BL, DH,DL ; addd T4H,T4L,T2H,T2L, T8H,T8L,T6H,T6L; stw Y+, T4H,T4L ;/ FMULS16 T4H,T4L,T2H,T2L, BH,BL, CH,CL ;*Y++ = B * C - A * D; FMULS16 T8H,T8L,T6H,T6L, AH,AL, DH,DL ; subd T4H,T4L,T2H,T2L, T8H,T8L,T6H,T6L; stw Y+, T4H,T4L ;/ addw T10H,T10L, T12H,T12L ;T10 += T12; (next angle) #if FFT_N >= 128 sbrs T10H, FFT_B - 7 ;while(T10 < pi) #else sbrs T10L, FFT_B + 1 #endif rjmp 3b ;/ ldi AL, 4
in „Problem mit undefined reference to“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CS4272_F1.pdf
, 128 Fs 0 d28 384 32, 48, 64, 96, 128 Fs 0 d28 28 Single Speed 512 32, 64, 128 Fs 0 d 28 768 32, 48, 64, 96, 128 Fs 1 d 1024 32, 64, 128 Fs 1 d28 128 32, 64 Fs 0 d28 28 192 32, 48, 64 Fs 0 d 28 Double Speed
in „darf der Chip so warm werden?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Jesper_1x1536x8_9.txt
ADRESS, TWDR inc NUMBER rjmp TWSI_END CONTENT: in DATA,TWDR ; get DATA cpi ADRESS,0x18 ; r24 ? brne l25 mov r24,DATA ; yes, set rjmp TWSI_END l25: cpi ADRESS,0x19 ; r25 ? brne l26 mov r25,DATA ; yes, set rjmp TWSI_END l26: cpi ADRESS,0x1a ; r26 ? brne l27 mov r26,DATA ; yes, set rjmp TWSI_END l27: cpi ADRESS,0x1c ; r27 ? brne l29 mov r28,DATA ; yes, set rjmp TWSI_END l28: cpi ADRESS,0x1c ; r28 ? brne l29 mov r28,DATA ; yes, set rjmp TWSI_END l29: cpi ADRESS,0x1d ; r29 ? brne l30 mov r29,DATA ; yes, set rjmp TWSI_END l30: cpi
in „DDS normal ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Umsetzung_und_Implementierung_einer_FFT_f_r_8.pdf
Gewichtsfaktor rcall mpy8s ;8*8Bit = 16Bit - Routine ldi counter1,7 rescale_fensterung: ;rescale(I*x*128)/128 --> 7x ;shieben rechts lsr m8sH ror m8sL dec counter1 brne rescale_fensterung st X+,m8sL ;save Samplewert dec counter2 ;Alle Samples durchlaufen? brne loop_fensterung Hamming_Window: .db 10,15,29,51,75,98,116,126,126,116,98,75,51,29,15,10 Rectangle_Window: .db 128,128,128,128,128,128,128,128,128,128,128,128,128,128,128,128 Alexander Liebhold 13 15.02.2008 Umsetzung und Implementation einer FFT für 8-Bit Mikrocontroller Alexander Liebhold 14 15.02.2008
in „FFT Tutorial für AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
um3750.pdf
OUTPUT RECEIVER INPUT RECEIVER INPUT MODE SELECT MODE SELECT “SS “ss R.C. INPUT R.C INPUT A12 A12 A l l A l l A10 A10 NC 2 - 3 urn3750 BlockDiagram R.C.INPUT - - - - - - - CPCLK RID WD TIM0 64ms/128ms I I TIMER 7 i ERROR COMPARATOR STATE VLD CONTROLLER CLR I L INIT VALID 4 MXCLKR COUNTER MXD T/R OUT
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Datei
Synth.asm
rpkl = r22 .def rpkh = r23 .def rbuf = r24 .def rflag = r25 .def rZero = r0 .def rbufmax = r1 .def rp1l = r3 .def rp1h = r4 .def rp2l = r5 .def rp2h = r6 .def rp3l = r7 .def rp3h = r8 .def rp4l = r9 .def rp4h = r10 .def rkey1 = r11 .def rkey2 = r12 .def rkey3 = r13 ; ***SRAM*** .dseg .org SRAM_START .cseg
in „Attiny2313 Timer16 Bit, Normal Mode, unsauber“ · Mikrocontroller und Digitale Elektronik ·
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Datei
yaap.ini
Dev14=ATmega103 Dev15=ATmega103_Old Dev16=ATmega161 Dev17=ATmega162 Dev18=ATmega163 Dev19=ATtiny26L Dev20=ATmega8515 Dev21=ATmega8 Dev22=ATmega32 Dev23=ATmega16 Dev24=ATmega128 [Fuses] A=CKSEL0 B=CKSEL1 C=CKSEL2 D=CKSEL3 E=BODEN F=BODLEVEL(0) G=SPIEN H=BOOTRST I=BOOTSZ0 J=BOOTSZ1 K=SUT0 L=SUT1 M=ESAVE
in „Problem: ATMega16 und YAAP“ · Mikrocontroller und Digitale Elektronik ·