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PseudoKunstkopfStereo.pdf
,x:SSISR,* ; Wait for frame sync to pass. jclr #2,x:SSISR,* ; Wait for frame sync. move x:RX_BUFF_BASE,a ; Load the left channel input. move x:RX_BUFF_BASE+1,b ; Load the right channel input. jclr #14,X:$FFE4,skip_it jsr binaural ; ... do the binaural filtering skip_it move a,x:TX_BUFF_BASE ; Put value
in „Pseudo Kunstkopf Stereo mit DSP56002, alte Motorola Applikation“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
AVR_Tiny_Bootloader.c
; DDRA=(0|(1<<4)); //Set Bluetooth Module on (MD Device Support) PORTA=(0|(1<<4)); uint32_t ulPageBaseAddress, size, BaudRates[]={300,600,1200,4800,9600,14400,19200,28800,38400,56000,57600,115200,128000,256000}; uint16_t usAddr, usExtSegmentAddress, usPageAddressOffset; uint8_t ucFlagEepromWrite, ucFlagWrite
in „ATTiny1634 Bootloader C nimmt nicht alles korrekt an“ · Mikrocontroller und Digitale Elektronik ·
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Datei
CMU_BASE.INI.TXT
*added sections for GSM 400 and GSM 850 *to see Overview 8PSK in Menu Select * * Rev 1.34.1.7 Oct 16 2001 13:54:30 brandste *added flag for RFL_BASE log * * Rev 1.34.1.6 Aug 27 2001 14:38:14 bachert *added flag (iqif_init) for iqif-board *initialization * * Rev 1.34.1.5 Jul 13 2001 10:32:38 bottacch
in „Option B41 bei einer CMU200 nachrüsten.“ · HF, Funk und Felder ·
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PDF
BAS70_1PS7XSB70_SER.pdf
occupied area 1.90 mgs343 Reflow soldering is the only recommended soldering method. Dimensions in mm Fig 16. Reflow soldering footprint SOD523 (SC-79) BAS70_1PS7XSB70_SER_9 © NXP B.V. 2010. All rights reserved. Product data sheet Rev. 09 — 13 January 2010 11 of 20 NXP Semiconductors BAS70 series; 1PS7xSB70
in „[S] BAT54C Schottky“ · Markt ·
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Datei
fs.c
+ fs->volumeId.RootEntryCount/16; } return( base + (cluster-2)*fs->volumeId.SectorsPerCluster ); } /*****************************************************************************/ /* Function is unused, but may be usefull */ euint32
in „MSPGCC: Komische Compiler-Fehler...“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sensor.c
380 // Delay time in microseconds // Private variables GPIO_InitTypeDef GPIO_InitStructure; TIM_TimeBaseInitTypeDef TIM_TimeBaseStructure; TIM_OCInitTypeDef TIM_OCInitStructure; DMA_InitTypeDef DMA_InitStructure; NVIC_InitTypeDef NVIC_InitStructure; SPI_InitTypeDef SPI_InitStructure; volatile uint16_t
in „STM32 SPI Clk und DMA“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sensor.c
380 // Delay time in microseconds // Private variables GPIO_InitTypeDef GPIO_InitStructure; TIM_TimeBaseInitTypeDef TIM_TimeBaseStructure; TIM_OCInitTypeDef TIM_OCInitStructure; DMA_InitTypeDef DMA_InitStructure; NVIC_InitTypeDef NVIC_InitStructure; SPI_InitTypeDef SPI_InitStructure; volatile uint16_t
in „STM32 SPI Clk und DMA“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CD4528.PDF
0.10 0.25 0.004 0.009 −T− M 0_ 7_ 0_ 7_ SEPLANE P 5.80 6.20 0.229 0.244 M J R 0.25 0.50 0.010 0.019 D 16 PL 0.25 (0.010) M T B S A S STYLE 1: STYLE 2: STYLE 3: STYLE 4: PIN 1. COLLECTOR PIN 1. CATHODE PIN 1. COLLECTOR, DYE #1 PIN 1. COLLECTOR, DYE #1 2. BASE 2. ANODE 2. BASE, #1 2. COLLECTOR, #1 3. EMITTER
in „Unterschied CD4528 zu CD4538 ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
M500_Askoll__No_Variations__2018-12-02.PDF
PI5 PDPQ40 PI7K PDPI601 P0 PR2 PIP2 PI U5 BAS16T U6 BAS16T U8 BAS16T R38 CQ8 560R C26 R46 3 8 C9 3 8 C13 3 8 CO20 PR0 PPI81 BC846T P2 1k VCC PI53VCC VBOOTPI7 PC2PI91 P3 VCC PU3VCC VBOOT PU7 PC3 P10 P0 VCC PU0 VCC VBOOT PU7 PI0 PC0 PQ 22k P0 PI
in „RX und TX Schaltung beim Askoll M505“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
_P168_ThermOLED.ino
thermo.dat")) { fs::File f = SPIFFS.open("thermo.dat", "r"); if (f) { f.read( ((uint8_t *)&UserVar[event->BaseVarIndex] + 0), 16 ); f.close(); } } Plugin_168_lastsavetime = millis(); if (UserVar[event->BaseVarIndex] < 1) { UserVar[event->BaseVarIndex] = 19; // setpoint UserVar[event->BaseVarIndex + 2] = 1; /
in „ESPEasy Sketch Kompilierungsfehler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
bb_i2c_arm.c
(1000) #define wait10 do{_delay_ms(3333);_delay_ms(3333);_delay_ms(3333);}while(0) //2^8 = 256 //2^16 = 65.536 //2^32 = 4.294.967.296 //2^64 = 18.446.744.073.709.551.616 #define u8 uint8_t //255 #define u16 uint16_t//65.535 #define u32 uint32_t// 4.294.967.295 #define i8 int8_t //+-127 #define i16 int16
in „stm32f103 i2c_read“ · Mikrocontroller und Digitale Elektronik ·
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PDF
epp.pdf
On the next page is a table showing the new and existing registers. Address Port Name Read/Write Base + 0 Data Port (SPP) Write Base + 1 Status Port (SPP) Read Base + 2 Control Port (SPP) Write Base + 3 Address Port (EPP) Read/Write Base + 4 Data Port (EPP) Read/Write Base + 5 Undefined (16/32bit Transfers
in „Parallele Schnittstelle“ · Mikrocontroller und Digitale Elektronik ·
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PDF
fd02-101g.pdf
T - E 10BASE-T Filter Selection Guide S HALO offers a broad range of 10BASE-T filters for single and multiport applications. Filters include isolation transformers, low B pass filters and optional CMR chokes and
in „Was gibts neues vom ENC28J60??“ · Mikrocontroller und Digitale Elektronik ·
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PDF
fd02-101g.pdf
T - E 10BASE-T Filter Selection Guide S HALO offers a broad range of 10BASE-T filters for single and multiport applications. Filters include isolation transformers, low B pass filters and optional CMR chokes and
in „Ethernet Transformator/Übertrager für ENC28J60“ · Mikrocontroller und Digitale Elektronik ·
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Datei
CppTest.cpp
#include <stdint.h> #include <utility> namespace Peripheral { using reg32_t =uint32_t; using reg16_t =uint16_t; constexpr reg32_t PERIPH_BASE = 0x40000000U; constexpr reg32_t APB1PERIPH_BASE = PERIPH_BASE; constexpr reg32_t APB2PERIPH_BASE = PERIPH_BASE + 0x00010000UL; constexpr reg32_t AHB1PERIPH_BASE
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PDF
hm1000.pdf
differences in dual channel Yt mode 14 Measurement of amplitude modulation 15 Triggering and time base 15 Automatic peak triggering (MODE menu) 15 Normal trigger mode (See menu MODE) 16 Slope selection (Menu FILTER) 16 Trigger coupling (Menu: FILTER) 16 Video (tv triggering) 16 Frame sync pulse triggering
in „defektes Hameg HM-1000“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
hex2rom.cpp
generated with hex2rom written by Daniel Wallner\n"); for (i = 0; i < selectIter; i++) { unsigned long base = i * 16 * bytes; unsigned long j; unsigned char c; unsigned long pos; // Check that there is any actual data in segment bool init = false; for (pos = 0; pos < bytes * 16; pos++) { init = inFile.GetByte(base + pos, c); if (init) { break; } } if (init) { for (j = 0; j < dWidth; j++) { unsigned long bitMask = 1; unsigned long bits = 0; for (pos = 0; pos < 16; pos++) { unsigned long addr; if (endian == 'l'
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Datei
lpc43xx_cgu.h
*< SDIO base clock */ CGU_BASE_SSP0, /**< SSP0 base clock */ CGU_BASE_SSP1, /**< SSP1 base clock */ CGU_BASE_UART0, /**< UART0 base clock */ CGU_BASE_UART1, /**< UART1 base clock */ CGU_BASE_UART2, /**< UART2 base
in „Cortex M0/M4 SPI nach CMSIS ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BC817_BC817W_BC337.pdf
Quick reference data Symbol Parameter Conditions Min Typ Max Unit V collector-emitter voltage open base; - - 45 V CEO IC= 10 mA C collector current (DC) - - 500 mA CM peak collector current - - 1 A [1] hFE DC current gain IC= 100 mA; - - - BC817; BC817W; BC337 VCE = 1 V 100 - 600 BC817-16; BC817-16W;
in „Kennlinie Transistor“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
header_lcd.h
******************** /* ----- Definitions concerning LCD internal memory ------ */ #define glcd_G_BASE 0x0000 // base address of graphics memory #define glcd_T_BASE 0x1400 // base address of text memory #define glcd_GRABYTES_PER_ROW 16 // how many graphic bytes per row on screen #define glcd_TEXBYTES_PER_ROW
in „Display defekt? Zeilen werden nicht angezeigt..“ · Mikrocontroller und Digitale Elektronik ·
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Datei
myfirst.s
.equ GPIOA_ODR , GPIOA_BASE + 0x14 .equ GPIOA_BSRR , GPIOA_BASE + 0x18 .equ GPIOA_LCKR , GPIOA_BASE + 0x1C .equ GPIOA_AFRL , GPIOA_BASE + 0x20 .equ GPIOA_AFRH , GPIOA_BASE + 0x24 .equ RCC_BASE , 0x40023800 .equ RCC_CR , RCC_BASE + 0x00 .equ RCC_CFGR , RCC_BASE + 0x08 .equ RCC_AHB1ENR , RCC_BASE + 0x30 .equ RCC_APB1ENR , RCC_BASE + 0x40 .equ HSERDY , BIT17 .equ HSEON , BIT16 .equ Terminal_USART_SR, Terminal_USART_Base + 0x00 .equ Terminal_USART_DR, Terminal_USART_Base
in „mein erstes STM32F4 .asm/ .s Program stürzt ab im gdb“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Vorab_die_Lernbetty.pdf
Die ARM7TDMI Prozessoren verstehen 2 Befehlssätze: dann das zuständige Programm innerhalb der BettyBase den 32 bittigen ARM Befehlssatz und den 16 bittigen THUMB Befehlssatz. feststellen, welchen Systemdienst man beanspruchen möchte. Für einige Programmteile ist ARM zwingend erforder- lich. Dazu gehören
in „die Betty-Fernbedienung von Pollin als ARM-Eval Board“ · Mikrocontroller und Digitale Elektronik ·
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Datei
M16-was_ist_los_damit.bas
'Ansteuerung eines Nokia 3510i Farb-Display 'Original von Martin Kuehn 'Zeichenausgabe mit lcd_doublesize 0=16x8 zeichen 12=8x4 Zeichen 2=16x4 'Copyright Stefan Horn - Dezember 2004 'Controller D15G14E_14_030526 'Atmega 128 'HWSTACK-256 'SWSTACK-256 'FRAMESIZE-256 '------------------------------------------------------------------------------- 'Display Pin 1 Reset => AVR Pin a0 ' 2 CS a1 ' 3 GND GND ' 4 Sdata a2 ' 5 Sclk a3 ' 6 Vdigital Vdd (3 Volt) ' 7 Vbooster Vdd ' 8 Vlcd über Elko (10uF/10V) an GND '------------------------------------------------------------------------------- ' $regfile
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Datei
uart16receive.bas
Declare Function Datenempfang(dat As String) As Byte $regfile = "m16def.dat" $crystal = 8000000 $baud = 4800 $hwstack = 82 $framesize = 68 $swstack = 68 Dim Befehl As String * 10 Dim Error As Byte Config Pind.5 = Output Led Alias Portd.5 Config Serialin = Buffered , Size = 20 Config Serialout = Buffered , Size = 20 Enable Interrupts Do Error = Datenempfang(befehl) If Befehl = "A" Then Led = 1 If Befehl <> "" Then Print "LED ist An" End If End If If Befehl = "B" Then Led = 0 If Befehl <> "" Then Print "LED ist AUS" End If End If Loop 'Empfängt Datenstring (Holt alles aus dem Eingabebuffer) 'Rückgabe
in „Erster Test mit UART was mache ich falsch“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uart16receive.bas
$regfile = "m16def.dat" $crystal = 8000000 $baud = 9600 Led Alias Portd.5 Config Led = Output Dim I As Byte Do If Usr.rxc = 1 Then 'Wenn Byte empfangen... I = Udr 'Byte aus UART auslesen Select Case I Case "A" : Led = 1 Print "LED An" Case "B" : Led = 0 Print "LED Aus" End Select End If Loop End
in „Erster Test mit UART was mache ich falsch“ · Mikrocontroller und Digitale Elektronik ·
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Datei
0001-Revert-use-GtkFileChooserNative-wherever-possible.patch
switch(type) { case ObjectType::UNIT : - chooser->set_current_folder(Glib::build_filename(pool->get_base_path(), "units")); + fc.set_current_folder(Glib::build_filename(pool->get_base_path(), "units")); break; case ObjectType::ENTITY : - chooser->set_current_folder(Glib::build_filename(pool->get_base_path
in „Horizon EDA [War: Neues, halbfertiges Elektronik-CAD-Programm]“ · Projekte & Code ·
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PDF
rej09b0101_16c29hm_2_.pdf
request by resetting the base timer. If the IT bit is set to 0: 07FFFF16 If the IT bit is set t16≤ m ≤ 0FF16or 0BFF16≤ m ≤ 0FF16 Figure 13.15 Base Timer Reset operation by Base Timer Reset Register RST1 Base timer m - 2 m - 1 m m + 1 0000 16 0001 16 G1PO0 m G1IR0 Figure 13.16 Base Timer Reset operation by G1PO0 register RST2 Base timer m - 2 m - 1 m m + 1 0000 16 0001 16 P83/INT1 NOTE: ________ ________ 1. INT1 Base Timer reset does not
in „Zeitproblem bei Softwarepwm“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LAN9354_Fail_Report_2022-03-17_14-03-19.pdf
Base-TX, UTP Signal Amplitude Symmetry -928 m -130.0 % 980 m < |VALUE| < 1.020 0 1 100 Base-TX, +Vout Overshoot 1.5 % 70.0 % VALUE < 5.0 % 0 1 100 Base-TX, -Vout Overshoot 900 m% 82.0 % VALUE < 5.0 % 1 1
in „Ethernet Compliance Test failLAN9354“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dmx-led-module.c
/ in den Schalfmodus wechseln } } } // UART RX complete interrupt ISR(USART_RXC_vect) { static uint16_t dmx_channel, dmx_base, dmx_top; uint8_t status, data; // read UART data, also clears interrupt flag status = UCSRA; data = UDR; if (status & (1<<FE)) { // frame error if (data==0) { // break -> DMX Reset dmx_channel=0; dmx_base = (~PINB & 0xFF)+1; // read dip switches which define DMX base address if (~PIND & (1<<PD3)) dmx_base +=256; dmx_top =dmx_base+dmx_size-1; flag=1; // trigger update } else // rx error dmx_channel++;
in „AVR Studio Bug, falsches Register wird geladen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AT91SAM7S256.h
) // (WDTC) Base Address #define AT91C_BASE_VREG ((AT91PS_VREG) 0xFFFFFD60) // (VREG) Base Address #define AT91C_BASE_MC ((AT91PS_MC) 0xFFFFFF00) // (MC) Base Address #define AT91C_BASE_PDC_SPI ((AT91PS_PDC) 0xFFFE0100
in „C Datein werden in Eclipse nicht kompiliert“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XPort-Pro_IG.pdf
-01R 8 MB Evolution XPPDK1000-EVO-01 8 MB Evolution XPP1002000-02R 16 MB Evolution XPP100200S-02R 16 MB Evolution XPPDK1000-EVO-02 16 MB Evolution XPP1003000-01R 8 MB Linux XPP100300S-01R 8 MB Linux XPPDK1000-LNX-01 8 MB Linux XPP1003000-04R 16 MB Linux XPP100300S-04R
in „[V] 2St. gebrauchte Lantronix XPORT PRO Module -LAN-Seriell, KLEINEN DEFKTEN , zu Fädeln (beide 8€)“ · Markt ·
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PDF
XPort-Pro_IG.pdf
-01R 8 MB Evolution XPPDK1000-EVO-01 8 MB Evolution XPP1002000-02R 16 MB Evolution XPP100200S-02R 16 MB Evolution XPPDK1000-EVO-02 16 MB Evolution XPP1003000-01R 8 MB Linux XPP100300S-01R 8 MB Linux XPPDK1000-LNX-01 8 MB Linux XPP1003000-04R 16 MB Linux XPP100300S-04R
in „[V] 3St. gebrauchte Lantronix XPORT PRO Module -LAN-Seriell MIT KLEINEN DEFKTEN (alle für 15€)“ · Markt ·
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PDF
XPort-Pro_IG.pdf
-01R 8 MB Evolution XPPDK1000-EVO-01 8 MB Evolution XPP1002000-02R 16 MB Evolution XPP100200S-02R 16 MB Evolution XPPDK1000-EVO-02 16 MB Evolution XPP1003000-01R 8 MB Linux XPP100300S-01R 8 MB Linux XPPDK1000-LNX-01 8 MB Linux XPP1003000-04R 16 MB Linux XPP100300S-04R
in „[V] 1x gebrauchtes Lantronix XPORT PRO Module -LAN-Seriell Module (13€)“ · Markt ·
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Datei
t6963c.h
glcd_FONT_WIDTH 6 // pixel width #define glcd_BYTES_PER_ROW 21 // 21 chars per row #define glcd_G_BASE 0x0400 // base address of graphics memory #else // normal font #define glcd_FONT_WIDTH 8 // pixel width #define glcd_BYTES_PER_ROW 16 // 16 chars per row #define glcd_G_BASE 0x0200 // base address of
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Datei
AT91SAM7S256.h
) // (WDTC) Base Address #define AT91C_BASE_VREG ((AT91PS_VREG) 0xFFFFFD60) // (VREG) Base Address #define AT91C_BASE_MC ((AT91PS_MC) 0xFFFFFF00) // (MC) Base Address #define AT91C_BASE_PDC_SPI ((AT91PS_PDC) 0xFFFE0100
in „AT91SAM7S256 Timer Counter PWM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
simple.s
GPIOD_BASE + 0x00 @ pp. 287 of DM00031020.pdf .equ GPIOD_OTYPER , GPIOD_BASE + 0x04 .equ GPIOD_ODR , GPIOD_BASE + 0x14 .equ GPIOB_BASE , 0x40020400 .equ GPIOB_MODER , GPIOB_BASE + 0x00 .equ GPIOB_OTYPER , GPIOB_BASE + 0x04 .equ GPIOB_OSPEEDR , GPIOB_BASE + 0x08 .equ GPIOB_PUPDR , GPIOB_BASE + 0x0C .equ GPIOB_IDR , GPIOB_BASE + 0x10 .equ GPIOB_ODR , GPIOB_BASE + 0x14 .equ GPIOB_BSRR , GPIOB_BASE + 0x18 .equ GPIOB_LCKR , GPIOB_BASE + 0x1C .equ GPIOB_AFRL
in „STM32CubeIDE Debug View, Threads, Breakpoints“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
------*/ /* Private variables ---------------------------------------------------------*/ TIM_TimeBaseInitTypeDef TIM_TimeBaseStructure; TIM_OCInitTypeDef TIM_OCInitStructure; __IO uint16_t CCR1Val = 32768; __IO uint16_t CCR2Val = 16384; uint16_t PrescalerValue = 0; /* Private function prototypes ---
in „STM32 - Eclipse, ARM GCC - Funktionsaufruf geht nicht :-(“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WIZ-EmbeddedWebServser_User_Manual_V1_0_2.pdf
2007 WIZnet Inc. All rights reserved WIZ-Embedded WebServer User’s Manual 3. WIZ-Embedded WebServer Base Board WIZ-Embedded WebServer module can be tested by using base board. 11 Figure 2. WIZ-Embedded WebServer Base Board Layout ① Power The power can be controlled by using power switch after connitg the
in „[V] Ethernet Webserver mit ATMEGA128 und 2x Ohne MCU“ · Markt ·
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Datei
visa.h
offset, ViPUInt16 val16); ViStatus _VI_FUNC viOut16 (ViSession vi, ViUInt16 space, ViBusAddress offset, ViUInt16 val16); ViStatus _VI_FUNC viIn32 (ViSession vi, ViUInt16 space, ViBusAddress offset, ViPUInt32 val32); ViStatus
in „GPIB Kommunikation“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVR_Tiny_Bootloader.c
= ucTmpDataByte; } else // flash programming { wdt_reset(); boot_page_fill((unsigned long)(ulPageBaseAddress + usPageAddressOffset + (usExtSegmentAddress * 16)), (((unsigned short)ucTmpDataByte) << 8) + (((unsigned short)ucDataByte) & 0x00FF)); } wdt_reset(); usPageAddressOffset += 2; } } // check checksum
in „ATtiny Bootloader C füllt FF's in Flash“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32u5xx_hal.c
the backup domain when enabled. (+) De-Initializes common part of the HAL. (+) Configure The time base source to have 1ms time base with a dedicated Tick interrupt priority. (++) SysTick timer is used by default as source of time base, but user can eventually implement his proper time base source (a
in „STM32U599 reagiert nicht: Keine Funktion auf dem Custom Board“ · Mikrocontroller und Digitale Elektronik ·
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Datei
espcode.txt
= "ESP32 PlantPi"; // Konfigurationsvariablen für Ein- und Ausgangspins const int waterSensorPin = 16; // Eingangspin für den Wasserstandssensor const char* properties[] = {"light", "dir", "motor", "pumpe", "nn"}; const int ausgangspins[] = {5, 17, 18, 19, 21}; // MQTT topic gets defined by "<MQTT_BASE_TOPIC
in „ESP 32: Smarthome Beet über MQTT: FAST fertig“ · Mikrocontroller und Digitale Elektronik ·
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Datei
strtol.c
SPACE */ if ((cp = *fst) == '-') { sign = 1; cp = *++fst; } else if (cp == '+') cp = *++fst; if (base > 36) base = 0; /*-------------------------------------------------------------------*/ /* DETERMINE BASE IF ZERO BASE ASKED FOR. */ /*-------------------------------------------------------------------*/ switch (base) { case 0 : if (cp != '0') base = 10; else if ((cp = *++fst) == 'x' || cp == 'X') if (_isxdigit(fst[1])) { base = 16; cp = *++fst; } else { base = 10; cp = *--fst; } else { base = 8; if (cp < '0' ||
in „strtol Problem (Ergebnis ist immer MAX_LONG)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
Private typedef -----------------------------------------------------------*/ typedef struct { uint16_t VREF; uint16_t TS_CAL_1; // low temperature calibration data uint16_t reserved; uint16_t TS_CAL_2; // high temperature calibration data } TSCALIB_TypeDef; typedef enum { Display_TemperatureDegC, Display_ADCval
in „STM32L1 + Makefile. Linkerproblem?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
13475.pdf
; vu16 DR28; u16 RESERVED31; vu16 DR29; u16 RESERVED32; vu16 DR30; u16 RESERVED33; vu16 DR31; u16 RESERVED34; vu16 DR32; u16 RESERVED35; vu16 DR33; u16 RESERVED36; vu16 DR34; u16 RESERVED37; vu16 DR35; u16
in „STM32F: SPI "Halbduplex"“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Fehlerbericht.txt
ThermOLED:299:34: error: 'UserVar' was not declared in this scope f.read( ((uint8_t *)&UserVar[event->BaseVarIndex] + 0), 16 ); ^ _P168_ThermOLED:299:47: error: invalid use of incomplete type 'struct EventStruct' f.read( ((uint8_t *)&UserVar[event->BaseVarIndex] + 0), 16 ); ^ _P168_ThermOLED:117:42: error
in „ESPEasy Sketch Kompilierungsfehler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Touch.c
t)(Pen_Point.xfac*100000000)>>8&0xff;//±£ŽæxУÕýÒòËØ temp[2]=(uint32_t)(Pen_Point.xfac*100000000)>>16&0xff;//±£ŽæxУÕýÒòËØ temp[3]=(uint32_t)(Pen_Point.xfac*100000000)>>24&0xff;//±£ŽæxУÕýÒòËØ I2C_Write(&temp[0],SAVE_ADDR_BASE,4); temp[0]=(uint32_t)(Pen_Point.yfac*100000000)&0xff;//±£ŽæxУÕýÒòËØ temp
in „STM32 Interruptproblem - Interrupt geht, aber Main nicht -“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AT91SAM7.h
) // (ADC) Base Address #define AT91C_BASE_PDC_SSC ((AT91PS_PDC) 0xFFFD4100) // (PDC_SSC) Base Address #define AT91C_BASE_SSC ((AT91PS_SSC) 0xFFFD4000) // (SSC) Base Address #define AT91C_BASE_PDC_US1 ((AT91PS_PDC)
in „arm-elf-ld problem, undefined reference to `__gccmain'“ · µC & Digital Electronics ·
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Datei
AT91SAM7S64.h
) // (ADC) Base Address #define AT91C_BASE_PDC_SSC ((AT91PS_PDC) 0xFFFD4100) // (PDC_SSC) Base Address #define AT91C_BASE_SSC ((AT91PS_SSC) 0xFFFD4000) // (SSC) Base Address #define AT91C_BASE_PDC_US1 ((AT91PS_PDC)
in „arm-elf-ld problem, undefined reference to `__gccmain'“ · µC & Digital Electronics ·
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Datei
stellaristest.c
(ADC0_BASE, 1, 0, ADC_CTL_TS); ROM_ADCSequenceStepConfigure(ADC0_BASE, 1, 1, ADC_CTL_TS); ROM_ADCSequenceStepConfigure(ADC0_BASE, 1, 2, ADC_CTL_TS); ROM_ADCSequenceStepConfigure(ADC0_BASE, 1, 3, ADC_CTL_TS | ADC_CTL_IE
in „Stellaris ARM Launchpad, UART, Timer, DHT11 Sensor SW“ · Mikrocontroller und Digitale Elektronik ·