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Datei
dma.c
======================================================================== */ void Init_DMA_ADC1(uint16_t DataLength, uint16_t* dma_buffer) { __HAL_RCC_DMA1_CLK_ENABLE(); /* DMA1 CLK einschalten*/ /* Peripheral DMA init for ADC*/ uint32_t SrcAddress = (ADC1_BASE + 0x40); // ADC Datenregisteradresse als
in „DMA funktioniert nur einmal“ · Mikrocontroller und Digitale Elektronik ·
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Datei
FT800_commands.h
_t range); void ft800_cmd_scrollbar(int16_t x0, int16_t y0, int16_t w0, int16_t h0, uint16_t options, uint16_t val, uint16_t size, uint16_t range); void ft800_cmd_slider(int16_t x1, int16_t y1, int16_t w1, int16_t h1, uint16_t options, uint16
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PDF
LT3800.pdf
Current Limit Foldback CC VIN 6.5V TO 55V C2 + C8 56μF 1μF 63V 100V ×2 X7R ×3 V BOOST IN C1 1μF D1 RA 16V X7R BAS19 M1 1M NC TG Si7850DP LT3800 ×2 C7 SHDN SW 1.5nF R4 75k CSS NC L1 R1 R2 5.6μH 100k 309k BURST_EN VCC 1% 1% C3 1μF M2 DS3 V BG 16V X7R Si7370DP FB B160 ×2 ×2 VC PGND R3 62k C10 R5 SENSE– SENSE
in „LT3800 Frage“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MT-037-Op_Amp_Input_Offset.pdf
stability are required. Zener zapping uses a voltage to create a metallic short circuit across the base-emitter junction of a transistor to remove a circuit element. The base-emitter junction is commonly referred to as a zener, although the mechanism is actually avalanche breakdown of the junction. During the avalanche breakdown across the base-emitter junction, the very high current densities and localized heating generate rapid metal migration between the base and emitter connections, leading to a metallic short across the junction. With
in „Stromsenke sperrt nicht bei 0mV Sollwert“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADNS-2700.pdf
Device Access: Read only ResetValue: 0x64 Bit 7 6 5 4 3 2 1 0 Field S7 S6 S5 S4 S3 S2 S1 S0 DataType: 16-bit number. USAGE: The combination of SHUT_HI and SHUT_LO is a 16-bit number. This is the number of clocks the shutter was openforthelastimagetaken.Theunitisinmainclockcount(nominally12MHz).Toavoidsplitreadissues
in „USB Maus mit USART auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
QEagleBeta.pdf
MyTrans.txt» «shorted pins: false» «line (100,200) (-50,90) 8 0 0x1000000 -1 -1» «line (10,150) (-35,100) 16 0 0x1000000 -1 -1» «line (-35,100) (25,130) 16 0 0x1000000 -1 -1» «line (25,130) (10,150) 16 0 0x1000000 -1 -1» «line (100,-200) (-47,-96) 8 0 0x1000000 -1 -1» «line (-70,0) (-100,0) 8 0 0x1000000 -1
in „QSPICE von Mike Engelhardt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Evolutionary_Audio.pdf
especially The inherent snag in this approach is at the extreme ends of the audio spec that the base voltage/collector current trum, by avoiding the need for this characteristics of germanium and sili component have remained one of the contransistors aredifferent, withthat of majorbenefitsof"solid-state
in „Eigenbau Verstärker - Verbesserungen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Evol._Audio_ks_-_WW.pdf
especially The inherent snag in this approach is at the extreme ends of the audio spec that the base voltage/collector current trum, by avoiding the need for this characteristics of germanium and sili component have remained one of the contransistors aredifferent, withthat of majorbenefitsof"solid-state
in „Quasi Komplementär und Komplementäre Transistoren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
b2-guide166.pdf
is the concept of a “Context Pointer” (CP), which defines the current absolute base address of the active bank. Thus a reference to “R0” means the register at the address indicated by the CP. Thereafter, the 16 registers originating from CP are accessed by a fast 4-bit offset. The
in „Problem mit Infinion C167CR mit AM29F200B-70SE“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
#include <avr/io.h> #include <stdlib.h> #include <avr/interrupt.h> #include "base.h" #include "lcd.h" #include "uart.h" int main(void) { _delay_ms(1000); lcd_init(LCD_DISP_ON); _delay_ms(1000); lcd_clrscr(); lcd_gotoxy( 0, 1 ); cli(); uart_init(); sei(); uint16_t adress = 0x010A; char text[10]; while(1) { adress = 0x010A; uint16ToHexStr( adress, text ); lcd_gotoxy( 10, 1 ); lcd_puts( text ); lcd_gotoxy( 0, 0 ); uart_putc( adress ); lcd_puts( "gesendet " ); _delay_ms(500); lcd_puts( "warten " ); adress = uart_getc(); uint16ToHexStr
in „UART 9 Bit Modus“ · Mikrocontroller und Digitale Elektronik ·
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Beschreibung des TMR1 Timer1 Moduls
Module with Gate Control PIC18F24/25Q24 TMR1 - Timer1 Module with Gate Control The Timer1 module is a 16-bit timer/counter with the following features: • 16-bit timer/counter register pair (TMRxH:TMRxL) • Programmable internal or external clock source • 2-bit prescaler • Clock source for optional comparator
in „PIC Mikrocontroller noch aktuell ?“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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PDF
Viahay__BZX84.pdf
BZX84C13 Y3 12.4 13 14.1 5 1 0.1 8 30 170 7 9 BZX84C15 Y4 13.8 15 15.6 5 1 0.05 10.5 30 200 7 9 BZX84C16 Y5 15.3 16 17.1 5 1 0.05 11.2 40 200 8 9.5 BZX84C18 Y6 16.8 18 19.1 5 1 0.05 12.6 45 225 8 9.5 BZX84C20 Y7 18.8 20 21.2 5 1 0.05 14.0 55 225 8 10 BZX84C22 Y8 20.8 22 23.3 5 1 0.05 15.4 55 250 8 10 BZX84C24
in „Spannungsteiler: niedrigere Ausgangsspannung bei 90 °C“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
WAV-PLAY.ASM
even number ;R0,R1,R2,R3,R4 reserved registers .DEF error=R5 .DEF odd=R6 .DEF word=R7 ;width: 8 or 16 bits .DEF rate=R8 ;86(22.05kHz/256) or 43 (11.025 kHz/256) .DEF dat1=R9 .DEF dat2=R10 .DEF timer=R11 .DEF filter=R12 .DEF time_out=R13 .DEF temp_reg=R15 .DEF pal_max=R16 .DEF pah_max=R17 .DEF code=R18
in „DataFlash (Beschreiben+Auslesen)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ms5611.c
avr/io.h> #include <stdint.h> #include <util/delay.h> #include "ms5611.h" #include "NokiaLCD.h" uint16_t _C[MS561101BA_PROM_REG_COUNT]; int16_t temp; int32_t dT; void BmpInit (void) { char hight_str [5]; DDRC |= (1 << DDC0) | (1 << DDC1); DDRC &= ~((1 << DDC7) | (1 << DDC6)); i2c_init(); //if(i2c_start
in „Problem mit avr-gcc und Optimierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC33153-D.pdf
temperature as close to ambient as possible. T low= −40°C for MC33153 T high= +105°C for MC33153 1.5 16 V = 15 V 14 T = 25°C A V A ( E 12 T 1.0 G E L 10 R O C T 8.0 T U P T 6.0 I 0.5 O ,i , 4.0 I V = 15 V VO CC 2.0 TA= 25°C 0 0 0 2.0 4.0 6.0 8.0 10 12 14 16 0 1.0 2.0 3.0 4.0 5.0 Vin INPUT VOLTAGE (V) Vin
in „Treiber für MOSFET Brücke mit eingebauten Kurzschlußschutz gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
gblc.pdf
APPLICATIONS • Compatible with IEC 61000-4-2 (ESD): Air ±15kV, Contact ±8kV • Ethernet 10/100/1000 Base T Exceeds Level 4: Handles 20kV Contact & 25kV Air Discharge • SMART Phones • Compatible with IEC 61000-4-4 (EFT): 40A - 5/50ns • Handheld - Wireless Systems • Compatible with IEC 61000-4-5 (Surge)
in „Ethernet über 2adrige Telefonleitung. Idee: Billige Powerline Adapter für z.B. 24V umbauen. Mögli“ · Mikrocontroller und Digitale Elektronik ·
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Datei
tianma.c
0x00,0x01,0x02,0x03,0x04, 0x05,0x06,0x07,0x08,0x09, 0x0A,0x0B,0x0C,0x0E,0x0F, 0x0D,0x10,0x11,0x12,0x13, 0x14,0x15,0x16,0x17,0x18, 0x19,0x1D }; // Die Sonder-Zeichen 0..3 sind nicht benutzbar, // da sie von den Icons belegt sind /* Icons: 1 = Folder, 2 = RND, 3 = NEWS, 4 = LOC 5 = PTY 6 = Rand um 7, 7 = TP, 8 = TA, 9
in „Pollin TIAN MA A2C00096100 LCD Modul“ · Mikrocontroller und Digitale Elektronik ·
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PDF
stgp10nc60k.pdf
5A, 19 nC CE C Q ge Gate-emitter charge VGE = 15V, 5 nC Q Gate-collector charge 9 nC gc (see Figure 16) 4/17 STGB10NC60K - STGP10NC60K - STGD10NC60K Electrical characteristics Table 5. Switching on/off (inductive load) Symbol Parameter Test conditions Min. Typ. Max. Unit d(on) Turn-on delay time VCC =
in „Suche IGBT MOSFET ohne Bodydiode“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
httpd.c
1.0 200 Document follows\r\n" "Server: AVR_Small_Webserver\r\n" /*"Last-Modified: Fri, 08 Jul 2008 16:48:29 GMT"*/ "Cache-Control: max-age=6000000" /*"Expires: Fri, 08 Jul 2010 16:48:29 GMT"*/ "Content-Type: image/gif\r\n\r\n"}; //TEXT_CSS PROGMEM char http_header5[]={ "HTTP/1.0 200 Document follows\r\n" "Server: AVR_Small_Webserver\r\n" /*"Last-Modified: Fri, 08 Jul 2008 16:48:29 GMT"*/ "Cache-Control: max-age=6000000" /*"Expires: Fri, 08 Jul 2010 16:48:29 GMT"*/ "Content-Type: text/css\r\n\r\n"}; //-----------------------------------------------------------------------
in „AVR Net IO Dropdown Liste“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MotorolaDatenCD_2000.pdf
— — — MRF1047T1 MRF947T1 MRF1057T1 MRF947T3 MRF947BT1 MRF957T1 SC–70ML/ 419B/ MRF2947AT1 SOT–363 16, 17 MRF2947RAT1 — — — — MRF579T1 SC–90/ 463/1 MRF949T1 — — — — SC–75 MRF959T1 MRF9411LT1 SOT –143 318A/1 MRF5711LT1 MRF5811LT1 — MRF9511LT1 (1PNP 4 6 53 1 7 24 ) 20 ( I A 16 D T I 12 6 B O 4
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Datei
dmesg.txt
uncachable [ 0.000133] E0000-FFFFF write-protect [ 0.000134] MTRR variable ranges enabled: [ 0.000134] 0 base 000000000000 mask FFFF80000000 write-back [ 0.000135] 1 base 000080000000 mask FFFFC0000000 write-back [ 0.000135] 2 base 0000C0000000 mask FFFFF0000000 write-back [ 0.000135] 3 base 0000CB300000 mask
in „Rechner stürzt gelegentlich ab--> dmesg info“ · PC Hard- und Software ·
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Datei
whisperVAD.py
()) def float_to_pcm16(audio): audio = np.clip(audio, -1, 1) return (audio * 32767).astype(np.int16) print(f"Using device {device_id} at {samplerate} Hz") with sd.InputStream(device=device_id, channels=1, samplerate=samplerate
in „KI Modell mit Spracherkennung“ · PC Hard- und Software ·
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PDF
snoaa35b.pdf
Supplies.................................................................13 List of Tables Table 1-1. Base Part Number, Channel Count, and Temperature Range....................................................................................2 Table 1-2. Maximum Input Offset Error at 25°C for Each Base Part
in „LM393 Komparatorschaltung gescheitert“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PicoMite_User_Manual_4_.pdf
data PicoMite User Manual Page 125 HEX$( number [, chars]) Returns a string giving the hexadecimal (base 16) value for the 'number'. 'chars' is optional and specifies the number of characters in the string with zero as the leading padding character(s). INKEY$ Checks the console input buffer and, if there
in „Qual der Wahl - Sensoren Auswertung auf Display ("Analog")“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
TIM_COUNTERMODE_UP; htim4.Init.Period = 1000; htim4.Init.ClockDivision = TIM_CLOCKDIVISION_DIV1; if (HAL_TIM_Base_Init(&htim4) != HAL_OK) { Error_Handler(); } sClockSourceConfig.ClockSource = TIM_CLOCKSOURCE_INTERNAL; if (HAL_TIM_ConfigClockSource(&htim4, &sClockSourceConfig) != HAL_OK) { Error_Handler(); } if
in „Zeitmaschine“ · Mikrocontroller und Digitale Elektronik ·
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PDF
5345a_cal.pdf
.......................6 4 Equipment setup.............................................7.. 4 Time base stability.........................................8... 5 Sensitivity.................................................9........ 6 A12 Interface I/O..........................................10.... 8 Power
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PDF
Microchip_AppNote_00994a.pdf
IMAX Power Meter Frequencyof 1 1 0 32 0.34 2.72 Voltage (A) (KW) Constant K F ,F (V) OUT0 OUT1 0 1 0 16 0.34 1.36 (Hz) 1 1 1 16 0.68 2.72 220 25 5.5 100 imp/kWh 0.153 0 1 1 2048 0.68 348 220 40 8.8 100 imp/kWh 0.244 (Note 1) 220 60 13.2 100 imp/kWh 0.367 Note 1: This logic settings should be used with
in „Strom 10A bis 300A messen mit Tiny26“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hp-6236B.pdf
linearly to 1A ±15% at zero volts (short circuited). an initial warm-up time of 30 minutes. 1-2 1-16 INSTRUMENT AND MANUAL 1-18 If the serial number on your instrument does not IDENTIFICATION agree with those on the title page of the manual, Change Sheets supplied with the manual or Manual Backdating
in „Problem mit Simulation von HP/Agilent Tracking LNG“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F10xxx_TIM_application_examples.pdf
_CH3) ● PB1: (TIM3_CH4) Figure 4. TIM3 output signals 11/24 TIMx output compare timing mode: time-base generation AN2581 - Application note 5 TIMx output compare timing mode: time-base generation 5.1 Overview This section provides a description of how to configure the TIM peripheral in output compare
in „STM32 Verwirrung o.O (Timer->CCRx)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LeibRamp.pdf
Multiplication 4. Implementation Aryeh Eiderman <leib@eiderman.com> The given parameters are: v 0 base speed, 1. Cinematic basics v - slew speed, a - acceleration, F - timer frequency The linear acceleration (ramping) formulas are: and the calculated parameters are: S = v .t + a t / 2 [1], 0 . S - acceleration/deceleration distance v = v +0a t [2] 2 2 . S = (v - v )0/ (2 a) [4, 16], where p 1 delay period for the initial step S - acceleration distance, in stepper motor case - number of steps, v0- initial velocity, base speed (steps per second), p 1 = F / (v 0 2 a) . 1/2 [17],
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Datei
usart_stm32f4xx.c
DMA_StructInit(&DMA_InitStruct); DMA_InitStruct.DMA_Channel = DMA_Channel_4; DMA_InitStruct.DMA_PeripheralBaseAddr = (uint32_t)&(USART2->DR); DMA_InitStruct.DMA_Memory0BaseAddr = (uint32_t) &dma_buffer; DMA_InitStruct.DMA_DIR = DMA_DIR_MemoryToPeripheral; DMA_InitStruct.DMA_BufferSize = DMA_BUFFERLEN; DMA_InitStruct.DMA_PeripheralInc
in „STM32: Sendepuffer für USART“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC3000_1.25_to_1.27_diff.pdf
Clock (8 MHz HSE external crystal×9 PLL multiplier) Flash Layout Bootloader:0x08000000 –0x08003FFF (16 KB)Main Firmware: 0x08004000 – 0x08019583 (V1.25: 87,428 bytes)Main Firmware: 0x08004000 –0x0801994B (V1.27: 88,396 bytes, +968 bytes) SRAM Layout Base 0x20000000 ; Initial Stack Pointer: 0x200036F8
in „SkyRC MC3000 Erfahrungen (u.a. mit Firmware 1.25)“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
glipict2_bas.htm
************************************* 'GLIPICT.BAS Graphic application for use with a T6963C (or compatible) 'graphic LCD controller connected to a Microchip(TM) PIC 16F877 'Written in MELabs PicBasicPro(TM) Ver 3.32 'Beta version 0.8.0 'SHARP LCD used
in „T6963c Display Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
startup_stm32l476xx.s
Bytes) <0x0-0xFFFFFFFF:8> ; </h> Heap_Size EQU 0x200; AREA HEAP, NOINIT, READWRITE, ALIGN=3 __heap_base Heap_Mem SPACE Heap_Size __heap_limit PRESERVE8 THUMB ; Vector Table Mapped to Address 0 at Reset AREA RESET, DATA, READONLY EXPORT __Vectors EXPORT __Vectors_End EXPORT __Vectors_Size __Vectors DCD
in „SYSCFG->EXTICR Fehler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
" // User Defines //#define FCY 70000000 // User must calculate and enter FCY here #define NUMSAMP 16 // Number of Samples to Buffer until DMA Interrupt // ***************************************************************************** // ****************************************************************
in „dsPIC33E Probleme mit ADC/DMA“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
volatile int incCounter = 0; volatile int incCounterErrors = -1; volatile int idx = 0; volatile uint16_t data[64000]; void verifyFrames(int offset) { // Here, I check, if the spdifrx is already initialized and receiving data uint32_t status = spdifrxHandle.Instance->SR; if ((((status >> 5) & 1) == 0)
in „SPDIF empfangen per DMA mit einem STM32F769“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HCS12COREUG.pdf
Ž„•ƒ”•’L@iŽƒN Core User Guide Ñ S12CPU15UG V1.2 11.5.1.2 Mapping Test Register 1 (MTST1) Address: Base + $17 Read: MT17 MT16 MT15 MT14 MT13 MT12 MT11 MT10 Write: PNORME FLAGSE BKGDPUE Reset: 0 0 0 1 0 0 0 0 = Unimplemented Figure 11-14 Mapping Test Register One (MTST1) Read: Anytime Write: See individual
in „HCS12 CPU Disassembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SH7709.pdf
R/W H'0000 H'FFFFFF68 16 register PCMCIA control register PCR R/W H'0000 H'FFFFFF6C 16 Refresh timer control/statusRTCSR R/W H'0000 H'FFFFFF6E 16 register Refresh timer counter RTCNT R/W H'0000 H'FFFFFF70 16 Refresh time constant
in „HD6417709A F133B“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm2679-adj.pdf
16 1.3 3300 10 2.18 820 35 1.62 C7 100 16 1.92 150 35 0.65 3900 10 2.36 1000 35 1.73 C8 150 16 2.28 470 35 1.3 6800 10 2.68 2200 35 2.8 C9 100 20 2.25 680 35 1.4 180 16 0.41 56 50 0.36 C10 47 25 2.09 1000 35 1.7 270 16 0.55 100 50 0.5 C11 220 63 0.76 470 16 0.77 220 50 0.92 C12 470 63 1.2 680 16 1.02 470 50 1.44 C13 680 63 1.5 820 16 1.22 560 50 1.68 C14 1000 63 1.75 1800 16 1.88 1200 50 2.22 C15 220 25 0.63 330 63
in „Schaltregler Schaltplan und Layout Kontrolle“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
Foto eines Computerbildschirms mit Mining-Software-Statusdaten
mixtthane555 -> milical5 Hardware.Mon.#1.....: Temp: 80c Fan: 85% Util: 100% Core: 1189MHz Mem: 3004MHz Bus: 16 Hardware.Mon.#2.....: Temp: 70c Fan: 70% Util: 100% Core: 1670MHz Mem: 3003MHz Bus: 2 [s]tatus [p]ause [b]ypass [c]heckpoint [f]inish [q]uit => Session.......: newTest Status.........: Running Hash.Mode
in „fritzbox Gastzugang gelegentlich aktiv“ · Haus & Smart Home · · Fotos
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PDF
d80166w.pdf
to indirect memory and 2 post-increment source pointer by 2 MOV Rw, Move indirect word memory by base plus constant to 4 [Rw + #data16] direct GPR MOV [Rw + #data16], Move direct word GPR to indirect memory by base plus 4 Rw constant Semiconductor Group 28 SAB 80C166W/83C166W Instruction Set Summary
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Datei
Timing_Report.txt
/u_ddr2_top_0/u_mem_if_top/u_phy_top/u_phy_io/gen_dq[19].u_iob_dq/rd_data_fall1 SLICE_X16Y50.DX net (fanout=2) 1.399 DDR2_RAM_CORE/u_ddr2_top_0/u_mem_if_top/rd_data_fall<19> SLICE_X16Y50.CLK Tdick -0.005 DDR2_RAM_CORE/u_ddr2_top_0/u_mem_if_top/u_phy_top/u_phy_io/u_phy_calib/rd_data_fall_1x_r
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PDF
ADUC7019_7020_7021_7022_7024_7025_7026_7027_7028.pdf
Name Byte Type Value Page Reference Address Base = 0xFFFF0480 I2C0 Base Address = 0xFFFF0800 0x048C REFCON 1 R/W 0x00 43 0x0800 I2C0MSTA 1 R/W 0x00 68 0x0804 I2C0SSTA 1 R 0x01 68 ADC Address Base = 0xFFFF0500 0x0808 I2C0SRX 1 R 0x00 69 0x0500 ADCCON
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Datei
TV.asm
TV-PROJEKT (ATmega8) ; Bernhard.Erfurt@gmx.de ; 09/2006 ; Anschlussbelegung PINS ; PB0 ==> 900 Ohm BAS-SIGNAL ; PB1 ==> 450 Ohm BAS-SIGNAL ; PB2 ==> ; PB3 ==> ; PB4 ==> ; PB5 ==> ; PB6 ==> QUARZ ; PB7 ==> QUARZ ; ; PC0 ==> ; PC1 ==> ; PC2 ==> ; PC3 ==> ; PC4 ==> ; PC5 ==> ; PC6 ==> ; ; PD0 ==> ; PD1
in „TV Bild mit AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
11.6_Display_1920x1080.pdf
more information see FIG 3. Note 7. For Viewing angle and response time testing, the testing data is base on Autronic-Melchers’s ConoScope. Series Instruments. For contrast ratio, Surface Luminance, Luminance uniformity and CIE,the testing data is base on BM-7 photo detector. Note 8. For TN type TFT transmissive
in „LCD Display Stromversorgung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
httpdc.h
stdio.h> #include <avr/io.h> #include <avr/pgmspace.h> #include "httpd.h" #include "stack.h" #include "base64.h" #include "analog.h" #include "webpage.h" #include "translate.h"*/ #if 0//USE_MMC #include "sdkarte/fat16.h" #include "sdkarte/sdcard.h" #endif #if USE_WOL #include "wol.h" #endif #if USE_CAM #include
in „Anpassung U.Radig-Webserver mit UDP für ARM CORTEX“ · Projekte & Code ·
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Datei
Error.txt
Internal Builder is used for build **** arm-atollic-eabi-gcc -c -mthumb -mcpu=cortex-m4 -mfpu=fpv4-sp-d16 -DUSE_STM32F4_DISCOVERY -DSTM32F4XX -DUSE_STDPERIPH_DRIVER -DHSE_VALUE=8000000 -I../src -I..\Libraries\CMSIS\Include -I..\Libraries\Device\STM32F4xx\Include -I..\Libraries\STM32F4xx_StdPeriph_Driver\
in „Billiges Cortex-M4-Board STM32F4DISCOVERY jetzt erhältlich“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MN101C77.pdf
Interrupts RESET. Watchdog. External 0 to 4. Timer 0. Timer 1. Timer 4 to 6. Timer 7 (2 systems). Time base. Serial 0 reception. Serial 0 transmission. Serial 1 reception. Serial 1 transmission. Serial 3. Serial 4.Automatic transfer finish.A/D conversion finish. Key interrupts (8 lines) Timer Counter 8-bit
in „Blaupunkt BP7-VA3 CD-ROM Laufwerk ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f4x7_eth_conf.h
PHY */ #if defined(SMSC_LAN8710A_PHY) /* The LAN8710A PHY status register */ #define PHY_SR ((uint16_t)0x0001) /* PHY status register Offset */ #define PHY_SPEED_100 ((uint16_t)0x6000) /* PHY Speed mask : Bits 13 and 14 indicate 10 Mbit*/ #define PHY_FULL_DUPLEX ((uint16_t)0x5000) /* PHY Duplex mask
in „STM32-E407 Ethernet / UDP“ · Mikrocontroller und Digitale Elektronik ·
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PDF
85272_lc444_schaltplan.pdf
Start/ Aus- Reset MK4 7 8 EK1 Pause wahl 9 10 C7 C8 C9 C10 C11 C21 C22 C23 MK5 11 12 MK16 MK6 MK15 MK7 13 14 MK14 SMD SMD SMD 1SMD SMD 1SMD SMDn 1SMD 2 16 MHz 15 16 MK8 17 18 MK13 MK9 19 20 MK12 MK10 MK11 Wannenstecker +U-IN BU2 SI1 +5V IN IC4 OUT Spannungsversorgung 1AT HT-7550-1 GND Power DC 9V-15V DC 6 IC1 4 6 16 16 10 10 D10 C12 + C13 C14 C15 + IC3 C16 Vcc Vcc C17 C18 IC5 C19 IC6 C20 IC7 IC8 AT45DB SM4001 100u 100n 100n 100u 161D-TU 100n GND GND GND 100n 100n 74HC595 100n 74HC595 100n ULN2803 ULN2803 25V SMD
in „LED CUBE selberbauen“ · Mikrocontroller und Digitale Elektronik ·