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Schaltplan ESP32 mit GC9A01 Display und G266 Sensor
RST CS DC SCL SDA GND 3,3V GC9A01 Breakout ESP32 33 27 14 5 15 4 2 4,7K 3,3V output DebugPin for ISR Call DebugPin for Input Signal (oscillskop) 5V GND LM 1084 IT5 0 12V Pin1 12V Pin2 GND Pin 3 G266 Sensor (Signal) G266 Sensor
in „Oelstandssensor G266“ · Fahrzeugelektronik · · Schaltpläne
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Schaltplan ESP32 mit GC9A01 Display und G266 Sensor
RST CS DC SCL SDA GND 3,3V GC9A01 Breakout ESP32 33 27 14 5 15 4,7K 4 2 DebugPin for ISR Call DebugPin for Input Signal (oscillskop) 5V GND LM 1084 IT5 0 12V VCC Pin1 12V Pin2 GND Pin 3 G266 Sensor G266 Sensor (Signal) G266 Sensor
in „D/A Wandler ESP32S3 gibt unterschiedliche Werte“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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Datei
tn816def.inc
_gc = (0x08<<0) ; ADC input pin 8 .equ ADC_MUXPOS_AIN9_gc = (0x09<<0) ; ADC input pin 9 .equ ADC_MUXPOS_AIN10_gc = (0x0A<<0) ; ADC input pin 10 .equ ADC_MUXPOS_AIN11_gc = (0x0B<<0) ; ADC input pin 11 .equ
in „ATtiny816 wo finde ich def.inc“ · Mikrocontroller und Digitale Elektronik ·
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Datei
iotn814.h
*/ } EVSYS_ASYNCUSER8_t; /* Asynchronous User Ch 9 Input Selection - Event Out 1 select */ typedef enum EVSYS_ASYNCUSER9_enum { EVSYS_ASYNCUSER9_OFF_gc = (0x00<<0), /* Off */ EVSYS_ASYNCUSER9_SYNCCH0_gc = (0x01<<0), /* Synchronous Event Channel 0 */
in „Attiny417/814/816/817 und avr-gcc, avr-libc“ · Mikrocontroller und Digitale Elektronik ·
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Datei
iotn3217.h
(0x00<<0), /* Off */ EVSYS_ASYNCUSER9_SYNCCH0_gc = (0x01<<0), /* Synchronous Event Channel 0 */ EVSYS_ASYNCUSER9_SYNCCH1_gc = (0x02<<0), /* Synchronous Event Channel 1 */ EVSYS_ASYNCUSER9_ASYNCCH0_gc = (0x03<<0), /* Asynchronous Event Channel
in „Neue 8-Bit Tinys vorgestellt: 417/814/816/817“ · Mikrocontroller und Digitale Elektronik ·
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miniboard.pdf
SHEET 5-16-2005_12:10 JBE C 1 1 OF9 6 5 4 3 2 1 6 5 4 3 2 1 BANK6 64IO BANK3 16IO/CLK BANK5 64IO 2.5V 2.5V 1.25V A A U1 R23 1 A _ 3 49.9 O O 0201 C C 1% V V D D B12 IO_L1P_GC_CC_LC_3 IO_L8N_GC_LC_3 B7 CONF_D0 DDR_A01 A11 IO_L1N_GC_CC_LC_3 IO_L8P_GC_LC_3 A7 A10 A14 3.3V B9 IO_L2P_GC_VRN_LC_3 IO_L7N_GC_LC_3 B14 DDR_A10 IO_L2N_GC_VRP_LC_3 IO_L7P_GC_LC_3 DDR_CLK LVDS_2_CLKP C11 IO_L3P_GC_LC_3 IO_L6N_GC_LC_3 B8 DDR_A03 LVDS_2_CLKN B11 IO_L3N_GC_LC_3
in „Xinlinx Virtex-4 FX12 363 / Miniboard / Clock Pin“ · FPGA, VHDL & Co. ·
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Datei
PinTemplateVirtual.ino.elf.txt
256: a0 93 0a 28 sts 0x280A, r26 25a: b0 93 0b 28 sts 0x280B, r27 25e: 81 e0 ldi r24, 0x01 ; 1 260: 80 93 b6 0a sts 0x0AB6, r24 264: bf 91 pop r27 266: af 91 pop r26 268: 9f 91 pop r25 26a: 8f 91 pop r24 26c
in „Buchempfehlung C++ und MCUs“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PinKlasse_klassisch_toggle.ino.elf.txt
.vport + addrOffset.vDir); } 31c: e0 91 16 28 lds r30, 0x2816 320: 86 e0 ldi r24, 0x06 ; 6 322: e8 9f mul r30, r24 324: f0 01 movw r30, r0 326: 11 24 eor r1, r1 328: ea 56 subi r30, 0x6A ; 106 32a: fc 4b sbci r31, 0xBC ; 188 32c: a0 81 ld r26, Z 32e: b1 81 ldd r27, Z+1 ; 0x01 OutputP::OutputP(uint8_
in „Buchempfehlung C++ und MCUs“ · Mikrocontroller und Digitale Elektronik ·
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sn761678b.pdf
5. Figure 6. 25 26 16 S0160-01 S0136-03 Figure 7. Figure 8. 4 Submit Documentation Feedback SN761678B TVTUNERIC www.ti.com SLES185–JUNE 2006 8 7 17 9 6 3 kW 3 kW S0133-02 S0130-01 Figure 9. Figure 10. 30 29 S0142-05 S0142-04 Figure
in „Infos zu TV-Tunern gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
adc.c
//////////////////////////////////////////// ADCA.CH0.CTRL = (0<<ADC_CH_START_bp) | ADC_CH_GAIN_1X_gc | ADC_CH_INPUTMODE_SINGLEENDED_gc; // 0x01; ADCA.CH1.CTRL = (0<<ADC_CH_START_bp) | ADC_CH_GAIN_1X_gc | ADC_CH_INPUTMODE_SINGLEENDED_gc; // 0x01; ADCA.CH2.CTRL = (0<<ADC_CH_START_bp) | ADC_CH_GAIN_1X_gc | ADC_CH_INPUTMODE_SINGLEENDED_gc; // 0x01; ADCA.CH3.CTRL = (0<<ADC_CH_START_bp) | ADC_CH_GAIN_1X_gc | ADC_CH_INPUTMODE_SINGLEENDED_gc; // 0x01; /////////////////////////////////////////////////////////////////////////////////// // MUXCTRL
in „XMEGA ADC schaltet nicht auf anderen Pin um“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Eclipse.txt
0x06 60: 9f 81 ldd r25, Y+7 ; 0x07 62: 01 96 adiw r24, 0x01 ; 1 64: 8e 83 std Y+6, r24 ; 0x06 66: 9f 83 std Y+7, r25 ; 0x07 68: 9a 85 ldd r25, Y+10 ; 0x0a 6a: 91 50 subi r25, 0x01 ; 1 6c: 9a 87 std Y+10, r25 ;
in „XMega Eclipse, AVR-Studio Interrupt Unterschiede“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mr_adc.c
//////////////////////////////////////////// ADCA.CH0.CTRL = (0<<ADC_CH_START_bp) | ADC_CH_GAIN_1X_gc | ADC_CH_INPUTMODE_SINGLEENDED_gc; // 0x01; ADCA.CH1.CTRL = (0<<ADC_CH_START_bp) | ADC_CH_GAIN_1X_gc | ADC_CH_INPUTMODE_SINGLEENDED_gc; // 0x01; ADCA.CH2.CTRL = (0<<ADC_CH_START_bp) | ADC_CH_GAIN_1X_gc | ADC_CH_INPUTMODE_SINGLEENDED_gc; // 0x01; ADCA.CH3.CTRL = (0<<ADC_CH_START_bp) | ADC_CH_GAIN_1X_gc | ADC_CH_INPUTMODE_SINGLEENDED_gc; // 0x01; /////////////////////////////////////////////////////////////////////////////////// // MUXCTRL
in „Digitale Sprünge beim XMEGA ADC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mr_adc.c
//////////////////////////////////////////// ADCA.CH0.CTRL = (0<<ADC_CH_START_bp) | ADC_CH_GAIN_1X_gc | ADC_CH_INPUTMODE_SINGLEENDED_gc; // 0x01; ADCA.CH1.CTRL = (0<<ADC_CH_START_bp) | ADC_CH_GAIN_1X_gc | ADC_CH_INPUTMODE_SINGLEENDED_gc; // 0x01; ADCA.CH2.CTRL = (0<<ADC_CH_START_bp) | ADC_CH_GAIN_1X_gc | ADC_CH_INPUTMODE_SINGLEENDED_gc; // 0x01; ADCA.CH3.CTRL = (0<<ADC_CH_START_bp) | ADC_CH_GAIN_1X_gc | ADC_CH_INPUTMODE_SINGLEENDED_gc; // 0x01; /////////////////////////////////////////////////////////////////////////////////// // MUXCTRL
in „Noch Problem mit XMEGA ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ml50x_schematics.pdf
_D27_1 G22 SRAM_FLASH_A11 9 1 IO_L4P_GC_4 AG21 SRAM_CLK IO_L4N_VREF_A10_D26_1 H22 SRAM_FLASH_A10 5 5 IO_L4N_GC_VREF_4 AG20 FPGA_SERIAL1_TX IO_L5P_A9_D25_1 L14 SRAM_FLASH_A9 IO_L5P_GC_4 AH15 USER_CLK IO_L5N_A8_D24_1 K14 SRAM_FLASH_A8
in „DDR2 RAM Ansteuerung mit Virtex-5 ML507“ · FPGA, VHDL & Co. ·
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ug1091-carrier-card-design.pdf
HPIO on bank 66 D5 HPA02_N HPIO on bank 66 D6 GND Ground, connect to carrier card ground plane D7 HPA01_P HPIO on bank 66 D8 HPA01_N HPIO on bank 66 D9 GND Ground, connect to carrier card ground plane D10 GC HPA09_P HPIO on bank 66 D11 GC HPA09_N HPIO on bank 66 D12 GND Ground, connect to carrier card
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ST7735_128x160_SPI_Display.pdf
RDDID command: 24-bit read) 4-line Serial Protocol (for RDDST command: 32-bit read) H s t r e r Fig. 9.3.5 4-line serial interface read protocol V2.1 33 2010-02-01 ST7735 9.4 Data Transfer Break and Recovery If there is a break in data transmission by RESX pulse, while transferring a command or frame
in „ST7735 an MCU“ · Mikrocontroller und Digitale Elektronik ·
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Datei
objdump.txt
pc, #56 ; (adr r3, 80016d0 <gc_execute_line+0xbf0>) 8001696: e9d3 2300 ldrd r2, r3, [r3] 800169a: f007 faa1 bl 8008be0 <__aeabi_dmul> 800169e: 4602 mov r2, r0 80016a0: 460b mov r3, r1 80016a2: ea4f 01c4 mov.w r1, r4, lsl #3 80016a6
in „STM32F4 HardFault Interrupt bei stdlib Funktionen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVR-Studio.txt
94 20 01 jmp 0x240 ; 0x240 <__bad_interrupt> 9c: 0c 94 20 01 jmp 0x240 ; 0x240 <__bad_interrupt> a0: 0c 94 20 01 jmp 0x240 ; 0x240 <__bad_interrupt> a4: 0c 94 20 01 jmp 0x240 ; 0x240 <__bad_interrupt> a8: 0c
in „XMega Eclipse, AVR-Studio Interrupt Unterschiede“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GC9306_DS_V1.01.pdf
240RGBx320 Resolution and262K color GC9306 a-Si TFT LCD Single Chip Driver 240RGBx320 Resolution and 262K color DataSheet Version: V1.01 Created Date:2016/11/16 1 / 194 a-Si TFT LCD Single Chip Driver 240RGBx320 Resolution and262K color List
in „Einzelne Pixel bei TFT mit GC9306/ILI9341“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_VPC3_CLF3_UM300.pdf
Designation 7 6 5 4 3 2 1 0 t 00H o Int-Req-Reg (Intel) e 7 .. 0 i / r _ _ H e c See below t t t k e _ O a e X s y for coding O E a L T P R R t a - R S _ _ _ _ r r c _ T d e L A C c X e r X r s l D O a e o A A l D N P D E U C W C B D G D M C Address Bit Position Designation 15 14 13 12 11 10 9 8 01H n r Int-Req-Reg
in „Profibus an Mikrocontroller“ · Mikrocontroller und Digitale Elektronik ·
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NT2GC64B8HC0NS.pdf
[0:7] DQ[0:7] DQ[48:55] D1 D9 D14 D6 2 2 2 2 [ [ [ [ A A A A ] ] ] ] T 1 T 1 T 1 T 1 K K D [ K K D [ K K D [ K K D [ C C O A C C O A C C O A C C O A
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Datei
scope.c
enable 32MHz oscillator while(!(OSC.STATUS & OSC_RC32MRDY_bm)); //wait for stability CCP = CCP_IOREG_gc; //secured access CLK.CTRL = 0x01; //choose this osc source as clk } // this function initialises the timer void initTimer(void) { TCC1.PER = 31250; //1s (32M/1024) TCC1.INTCTRLA=TC_OVFINTLVL_LO_gc;
in „XMega ADC gesamten SampleVector auf einmal einlesen“ · Mikrocontroller und Digitale Elektronik ·
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BM-ATOM1.0-V1.6.pdf
Clock 1 Preliminary 6.6. Clock Configuration : Internal Ring OSC. The Internal Ring OSC. Provides a Fixed System Clock 9 Factory calibrated to ±3% at 2.1V ~ 3.3V. 9 Factory calibrated to ±1% at 2.5V. The Factory Calibration for 7.28MHz is applied only for GC49C501RX devices. Frequency (MHz) Error rate
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ST7735S.pdf
are IC default setting. Current Consumption Typical Maximum Operation Mode Image IDDI IDD IDDI IDD (mA) (mA) (mA) (mA) Note 1 0.01 0.9 0.02 2 Normal Mode Note 2 0.01 0.9 0.02 2 Note 1 0.01 0.8 0.02 2 Partial + Idle Mode (40 lines)Note 2 0.01 0.8 0.02 2 Sleep-In Mode N/A 0.005 0.015 0.01 0.03 Table 3 Power
in „[STM32/HAL] Treiber für ST7735 160 x 80 TFT“ · Projekte & Code ·
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Datei
mmc.c
gc | SPI_PRESCALER_DIV4_gc | SPI_CLK2X_bm | (1<< SPI_ENABLE_bp) | (1<< SPI_MASTER_bp); //16Mhz SPIF.CTRL = SPI_MODE_0_gc | SPI_PRESCALER_DIV4_gc | (1<< SPI_ENABLE_bp) | (1<< SPI_MASTER_bp); // 8Mhz SPIF.INTCTRL
in „MMC SD library FAT16 FAT32 read write“ · Projekte & Code ·
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NECCS04393-1.pdf
4 5 6 7 8 1 1 1 1 1 1 1 ( ( A A A A A A A A A A A A A A A A 100 99 98 97 96 95 94 93 92 91 90 89 88 87 86 85 84 83 82 81 1 80 2 79 (L) 3 78 4 77 5 76 VPP 6 75 Open 7 74 (L) 8 73 V DD 9 72 (L) 10 71 Open 11 70 RESET 12 69 A9 13 68
in „Anschlussbelegung uP D78P0308GF gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM118KFWL2_Solomon_Disp.PDF
5 6. OPTICAL CHARACTERISTICS 6~7 7. OUTLINE DIMENSION AND BLOCK DIAGRAM 8~9 8. POWER SUPPLY 10 Accepted by : Proposed by : Date : 09,20,2002 SOLOMON GOLDENTEK DISPLAY CORP. REV : 8 GC1602P8SKY1B TEL : 886-7-788-680FAX : 886-7-788-6806~8 PAGE : 1 RECORD OF REVISION DATE PAGE
in „Geiger Counter Sparkfun“ · Mikrocontroller und Digitale Elektronik ·
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PDF
device_list_hilo_all03_v9-12.pdf
-L5DATxx *MF3513-L9DATxx *MF3513-LCDATxx *MF365A-J1DATxx *MF365A-L2DATxx *MF365A-L5DATxx *MF365A-L9DATxx *MF365A-LCDATxx *MF41M1-G1EATxx *MF41M1-G5EATxx *MF4257-G1EATxx *MF4257-G5EATxx *MF42M1-G1EATxx *MF42M1-G5EATxx *MF44M1
in „PROM programmieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DMA_Sample.asm
DMABlock1: .byte BlockWordCount*2 .CSEG DMA_Sound: ldi A3, byte3( TStart ) ldi AH, high( TStart ) ldi AL, low( TStart ) sts TPtr3, A3 sts TPtrH, AH sts TPtrL, AL rcall NextBlock0 rcall NextBlock1 ; DMA ldi A, DMA_ENABLE_bm + DMA_DBUFMODE_CH01_gc + DMA_PRIMODE_RR0123_gc sts DMA_CTRL, A ; DMA channel ldi A, DMA_CH_ERRINTLVL_OFF_gc + DMA_CH_TRNINTLVL_LO_gc sts DMA_CH0_CTRLB, A sts DMA_CH1_CTRLB, A ldi A, DMA_CH_SRCRELOAD_BLOCK_gc + DMA_CH_SRCDIR_INC_gc + DMA_CH_DESTRELOAD_BURST_gc
in „XMEGA DMA mit PROGMEM moeglich?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
drv8825.pdf
DRV8825 SLVSA73F –APRIL 2010–REVISED JULY 2014 www.ti.com 7.7 Typical Characteristics 7 14 6.5 12 6 A A m ( ( 5.5 Q10 IV V I 5 -40GC 8 -40GC 4.5 25GC 25GC 85GC 85GC 125GC 125GC 4 6 10 15 20 25 30 35 40 45 10 15 20 25 30 35 40 45 V(VMx)(V) D001 V(VMx)V) D002 Figure 2. VMx vs V(VMx) Figure 3. VMxQ vs V
in „Suche passenden Treiber für Stepper.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DRV8825-Datasheet.pdf
DRV8825 SLVSA73F –APRIL 2010–REVISED JULY 2014 www.ti.com 7.7 Typical Characteristics 7 14 6.5 12 6 A A m ( ( 5.5 Q10 IV V I 5 -40GC 8 -40GC 4.5 25GC 25GC 85GC 85GC 125GC 125GC 4 6 10 15 20 25 30 35 40 45 10 15 20 25 30 35 40 45 V(VMx)(V) D001 V(VMx)V) D002 Figure 2. VMx vs V(VMx) Figure 3. VMxQ vs V
in „Nano Shield zerstört Nano“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
0x00 #define LCD_FUNCTION_5X10 0x04 #define LCD_SOFT_RESET 0x30 // Set CG RAM Address --------- 0b01xxxxxx (Character Generator RAM) #define LCD_SET_CGADR 0x40 #define LCD_GC_CHAR0 0 #define LCD_GC_CHAR1 1 #define LCD_GC_CHAR2 2 #define LCD_GC_CHAR3 3 #define LCD_GC_CHAR4 4 #define LCD_GC_CHAR5 5 #define LCD_GC_CHAR6 6 #define LCD_GC_CHAR7 7 // Set DD RAM Address --------- 0b1xxxxxxx (Display Data RAM) #define LCD_SET_DDADR 0x80 #endif #include <avr/io.h> #include <stdio.h> #include <stdlib.h> #include <string.h
in „Compiler- Fehler?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Prime_Sense_DevKit_V2_reduced_size.pdf
_22 1 IO_L0P_A19_1 L20 L20 IO_L9N_CC_11 J34 J34 IO_L9N_CC_14 AE1 AE1 IO_L9N_CC_17 AA31 AA31 IO_L9N_CC_20 G8 G8 IO_L9N_CC_21 AJ29 AJ29 IO_L9N_CC_22 AH8 AH8 IO_L0N_A18_1 L19 L19 IO_L10P_CC_SM15P_11 L34 L34 IO_L10P_CC
in „Preisgünstige elektronische Geräte für reverse-engineering - Part 3“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
TCC1.CTRLA = 7; // Prescaler: clk/256 TCC1.PER = 31999; // Period is 1.024 seconds TCC1.INTCTRLA = 0x01; // Generate low level interrupt // RTC Clock Settings /* Set 1.024kHz from internal 32.768kHz RC oscillator */ CLK.RTCCTRL = CLK_RTCSRC_RCOSC_gc | CLK_RTCEN_bm; i=eeprom_read_byte(&EESleepTime); ScreenSaver
in „ATXmega - Pin Eingang oder Ausgang“ · Mikrocontroller und Digitale Elektronik ·
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Datei
IS51Basic.ASM
RESTOR 95H DW WCR ;REM 96H DW SNEXT ;NEXT 97H DW SONERR ;ON ERROR 98H DW S_ON ;ON 99H DW SINPUT ;INPUT 9AH DW SREAD ;READ 9BH DW FINDCR ;DATA 9CH DW SRETRN ;RETURN 9DH DW SIF ;IF 9EH DW SGOSUB ;GOSUB 9FH DW SFOR ;FOR A0H DW SWHILE ;WHILE A1H DW SUNTIL ;UNTIL A2H DW CMND1 ;END A3H DW I_DL ;IDLE A4H DW ST_A
in „Layout für MCS51 Experimentierboard“ · Projekte & Code ·
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Datei
User_Setup.h
DRIVER //#define SSD1963_800_DRIVER //#define SSD1963_800ALT_DRIVER //#define ILI9225_DRIVER //#define GC9A01_DRIVER // Some displays support SPI reads via the MISO pin, other displays have a single // bi-directional SDA pin and the library will try to read this via the MOSI line. // To use the SDA line
in „Powerpins am ESP32-DevKitC, WDT_RTC_RESET“ · Mikrocontroller und Digitale Elektronik ·
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Datei
WetterstationServer.py
/intro.html https://github.com/peter-l5/MicroPython_SCD4X https://github.com/robert-hh/BME280 2026-01-23 mchris ''' import network import uasyncio as asyncio from microdot import Microdot import esp32 import machine import onewire import ds18x20 import scd4x import gc import time from bme280_float import
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PDF
ECW1J-64182.pdf
Front-Facing Terminals (.940) 15.87 ±.038 .25 .13 22.2 ±.025 (.625 ±.015) (.010) (.005) (.874 ±.010) 9.01 ±.020 6.35 8.50 ±.025 1.52 (.355 ±.008) 4.01 +.050/-.025 (.250) (.335 ±.010) MM (.060) 1.19 (IN) (.047) 11.09 (.158 +.002/-.001) 14.9 ±.050 (.437) 9.52 9.93 DIA. DIA. 3.17 DIA. (.375) (.391) (.587
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Lenovo_Z50-70_NM-A273_ACLUA_MB_Rev0.3_schematic_.pdf
1 3 A 47K_0402_5% @ 1 2 1 CV73 RV72 1CV74 A CV72 LP2301ALT1G_SOT23-3 0.01U_0402_25V7K 470_0603_5% 10U_0603_6.3V6M 2 .1U_0402_10V6-K GC6@ @ GC6@ 2 2 2 2 DGPU_PWR_EN# 1 2 RV73 4.7K_0402_5% D GC6@ 1 2 QV19 GC6
in „Laptop defekt: Kommunikation EC - PCH - CPU“ · Mikrocontroller und Digitale Elektronik ·
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PDF
5521f.pdf
25°C ( 80 ( 80 IC I 75 –40°C –40°C 70 70 60 65 60 50 4.7 4.8 4.9 5.0 5.1 5.2 5.3 3.1 3.2 3.3 3.4 3.5 VCC (V) VCC (V) 5521 G01 5521 G02 WU TYPICAL AC PERFOR A CE CHARACTERISTICS fLO = 1700MHz, f = 2IFMHz, f RF = 1950MHz, P LO = –5dBm, V CC = 5V, EN = 2.9V, T = 2A°C
in „Anpassung Differenztialeingang LT5521“ · HF, Funk und Felder ·
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Datei
WetterstationServer.py
/intro.html https://github.com/peter-l5/MicroPython_SCD4X https://github.com/robert-hh/BME280 2026-01-22 mchris ''' import network import uasyncio as asyncio from microdot import Microdot import esp32 import machine import onewire import ds18x20 import scd4x import gc import time from bme280_float import
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Datei
RaumklimaServer.py
://microdot.readthedocs.io/en/latest/intro.html https://github.com/peter-l5/MicroPython_SCD4X 2026-01-22 mchris ''' import network import uasyncio as asyncio from microdot import Microdot import esp32 import machine import onewire import ds18x20 import scd4x import gc import time gc.collect() def web_page
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Datei
Raumklima_SCD41_V3.py
://microdot.readthedocs.io/en/latest/intro.html https://github.com/peter-l5/MicroPython_SCD4X 2026-01-20 mchris ''' import network import uasyncio as asyncio from microdot import Microdot import esp32 import machine import onewire import ds18x20 import scd4x import gc import time gc.collect() async def
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Stenorette_2010_SW.pdf
ohne 5igna1, max. 25 mA bei Aufnahme ohne Signal, max.45 mA. Kontokt 9 Bei zu hoher Stromaufnahme ist dle Leichtgängig- keit der [v]echanik zu überprülen. 4 08 r9 t6 t2 t-.4 r8t 0,rl R30 L J l^ D6l7 965r -28?.q? -7 []6 I I
in „Recht auf Reparatur“ · Offtopic ·
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PDF
voltcraft_lsp1403_Maplin_N27GG_Manson_SSP-7080_Extech_382260_psu-adjustable-voltage-0-36-v-dc-0-5-a-80-w_sch.pdf
102 102 101 101 101 101 3 X1 15 4 Z X1 13 R71 10K Y X2 11 5 Z0 X0 12 R73 10K 1 KEY_COM D X3 6 INH A 11 C77 104 2 D 1 7 VEE B 10 R74 10K 3 VOL D12 Y0 5 8 VSS C 9 C70 C71 C72 C73 C78 104 4 Vref 4148 Y1 2 5 CURR Y2 4 CD4053 R75 10K C79 104 6 Y3 6 4.7uF 4.7uF INH B CON4A A 10 ON_OFF 4.7uF4.7uF C B 9 A
in „Voltcraft LSP-1403 Netztgerät zerschossen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
IS52Basic.a51
RESTOR 95H DW WCR ;REM 96H DW SNEXT ;NEXT 97H DW SONERR ;ON ERROR 98H DW S_ON ;ON 99H DW SINPUT ;INPUT 9AH DW SREAD ;READ 9BH DW FINDCR ;DATA 9CH DW SRETRN ;RETURN 9DH DW SIF ;IF 9EH DW SGOSUB ;GOSUB 9FH DW SFOR ;FOR A0H DW SWHILE ;WHILE A1H DW SUNTIL ;UNTIL A2H DW CMND1 ;END A3H DW I_DL ;IDLE A4H DW ST_A
in „Layout für MCS51 Experimentierboard“ · Projekte & Code ·
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Datei
IS52Basic.a51
RESTOR 95H DW WCR ;REM 96H DW SNEXT ;NEXT 97H DW SONERR ;ON ERROR 98H DW S_ON ;ON 99H DW SINPUT ;INPUT 9AH DW SREAD ;READ 9BH DW FINDCR ;DATA 9CH DW SRETRN ;RETURN 9DH DW SIF ;IF 9EH DW SGOSUB ;GOSUB 9FH DW SFOR ;FOR A0H DW SWHILE ;WHILE A1H DW SUNTIL ;UNTIL A2H DW CMND1 ;END A3H DW I_DL ;IDLE A4H DW ST_A
in „Layout für MCS51 Experimentierboard“ · Projekte & Code ·
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Datei
IS52Basic.a51
RESTOR 95H DW WCR ;REM 96H DW SNEXT ;NEXT 97H DW SONERR ;ON ERROR 98H DW S_ON ;ON 99H DW SINPUT ;INPUT 9AH DW SREAD ;READ 9BH DW FINDCR ;DATA 9CH DW SRETRN ;RETURN 9DH DW SIF ;IF 9EH DW SGOSUB ;GOSUB 9FH DW SFOR ;FOR A0H DW SWHILE ;WHILE A1H DW SUNTIL ;UNTIL A2H DW CMND1 ;END A3H DW I_DL ;IDLE A4H DW ST_A
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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Datei
BASIC131-PS3.a51
RESTOR 95H DW WCR ;REM 96H DW SNEXT ;NEXT 97H DW SONERR ;ON ERROR 98H DW S_ON ;ON 99H DW SINPUT ;INPUT 9AH DW SREAD ;READ 9BH DW FINDCR ;DATA 9CH DW SRETRN ;RETURN 9DH DW SIF ;IF 9EH DW SGOSUB ;GOSUB 9FH DW SFOR ;FOR A0H DW SWHILE ;WHILE A1H DW SUNTIL ;UNTIL A2H DW CMND1 ;END A3H DW I_DL ;IDLE A4H DW ST_A
in „Spaß mit Kloeckner-Moeller PS3 in BASIC(?)“ · Projekte & Code ·
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Datei
IS51Basic133.a51
RESTOR 95H DW WCR ;REM 96H DW SNEXT ;NEXT 97H DW SONERR ;ON ERROR 98H DW S_ON ;ON 99H DW SINPUT ;INPUT 9AH DW SREAD ;READ 9BH DW FINDCR ;DATA 9CH DW SRETRN ;RETURN 9DH DW SIF ;IF 9EH DW SGOSUB ;GOSUB 9FH DW SFOR ;FOR A0H DW SWHILE ;WHILE A1H DW SUNTIL ;UNTIL A2H DW CMND1 ;END A3H DW I_DL ;IDLE A4H DW ST_A
in „Layout für MCS51 Experimentierboard“ · Projekte & Code ·