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AVR200_Multiply_and_Divide_Routines.pdf
registers :7 • Pointers :None Interrupts Usage None Peripherals Usage None 8 / 8 = 8 + 8 Unsigned Division - “div8u” 1. Clear remainder and carry. 2. Load loop counter with 9. Both program files contain a routine called “div8u” which performs unsigned 8-bit division. Both implementations are 3. Shift left
in „Division 16bit / 8bit Zahl 8051 Assembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
beginner_de.pdf
.............................39 Assembler Quellcode der Division...............................................................................39 Programmschritte beim Dividieren...............................................................................40 Das Dividieren im Simulator..............
in „kommentierter Befehlssatz in deutsch ATmega16“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR200_Multiply_and_Divide_Routines.pdf
registers :7 • Pointers :None Interrupts Usage None Peripherals Usage None 8 / 8 = 8 + 8 Unsigned Division - “div8u” 1. Clear remainder and carry. 2. Load loop counter with 9. Both program files contain a routine called “div8u” which performs unsigned 8-bit division. Both implementations are 3. Shift left
in „Division mit Rest“ · Mikrocontroller und Digitale Elektronik ·
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PDF
beginner_de.pdf
.............................39 Assembler Quellcode der Division...............................................................................39 Programmschritte beim Dividieren...............................................................................40 Das Dividieren im Simulator..............
in „Spannungsveränderung schaltet Relais für ca. 30Sek->nur wi“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
93LC66.pdf
Microchip Technology Australia Pty Ltd 3-18-20, Shinyokohama Chandler, AZ 85224-6199 Marketing Support Division Kohoku-Ku, Yokohama-shi Tel: 480-792-7200 Fax: 480-792-7277 Suite 22, 41 Rawson Street Technical Support: 480-792-7627 Epping 2121, NSW Kanagawa, 222-0033, Japan Web Address: http://www.microchip.com
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PDF
slaa074.pdf
determines how often to perform the regulation algorithm and how often to update the DCO. Timer division rate: Defines the division rate of the DCO clock that runs Timer_A. If Timer_A runs at the same speed as the DCO, it must be set to 1. Other possible values are 2, 4, 8, 16, 32, and 64 (see value
in „MSP430 CPU Takt erhöhen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCF8591.pdf
41 1 488 2741 Fax. +41 1 488 3263 Indonesia: PT Philips Development Corporation, Semiconductors Division, Taiwan: Philips Semiconductors, 6F, No. 96, Chien Kuo N. Rd., Sec. 1, Gedung Philips, Jl. Buncit Raya Kav.99-100, JAKARTA 12510, TAIPEI, Taiwan Tel. +886 2 2134 2865, Fax. +886 2 2134 2874 Tel. +
in „Datentransfer an PCF8591“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST_7262.pdf
. Each comparison is made be- by CC[2:0] bits in the Control/Status Register (ARTCSR). Thus the division factor of the prescal- tween the counter value and an output compare n register (OCRx) value. This OCRx register can not er can be set to 2 (where n = 0, 1,..7). be accessed directly, it is loaded
in „Unteschiede I²C / SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADSP-2181_Datenblatt.pdf
Cenvironment. The Runtime Library includes over forms a standard set of arithmetic and logic operations; division 100 ANSI-standard mathematical and DSP-specific functions. The EZ-KIT Lite is a hardware/software kit offering a complete primitives are also supported. The MAC performs single-cycle multiply, multiply
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PDF
S1D15G10.pdf
8.5 Partial Display Using PTLIN (partial in) command allows you to turn on the partial display (division by line) of the screen. This mode requires less current consumption than the whole screen display, making it suitable for the mobile equipment in the standby state. : Display area (partial display
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S1D13705_short.pdf
Corporation Epson Electronics America, Inc. Epson Taiwan Technology Electronic Devices Marketing Division 150 River Oaks Parkway & Trading Ltd. 421-8, Hino, Hino-shi San Jose, CA 95134, USA 10F, No. 287 Tokyo 191-8501, Japan Tel: (408) 922-0200 Nanking East Road Tel: 042-587-5812 Fax: 042-587-5564 Fax
in „LCD Display 480x360, blau, bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
x27ag015.pdf
Corporation Epson Electronics America, Inc. Epson Taiwan Technology Electronic Devices Marketing Division 150 River Oaks Parkway & Trading Ltd. 421-8, Hino, Hino-shi Tokyo 191-8501, Japan San Jose, CA 95134, USA 10F, No. 287 Tel: (408) 922-0200 Nanking East Road Tel: 042-587-5812 Fax: (408) 922-0238 Sec
in „LCD Display 480x360, blau, bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S1D13705_8bit.pdf
Corporation Epson Electronics America, Inc. Epson Taiwan Technology Electronic Devices Marketing Division 150 River Oaks Parkway & Trading Ltd. 421-8, Hino, Hino-shi Tokyo 191-8501, Japan San Jose, CA 95134, USA 10F, No. 287 Tel: (408) 922-0200 Nanking East Road Tel: 042-587-5812 Fax: (408) 922-0238 Sec
in „LCD Display 480x360, blau, bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
photodioden.pdf
Microelectronics SHARP Electronics (Europe) GmbH SHARP Corporation of the Americas Microelectronics Division Electronic Components & Devices 5700 NW Pacific Rim Blvd., M/S 20 Sonninstraße 3 22-22, Nagaike-Cho, Abeno-Ku Camas, WA 98607, U.S.A. 20097 Hamburg, Germany Osaka 545-8522, Japan Phone: (360) 834-
in „Beschaltung von Photodioden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pcd8544.pdf
Allmendstrasse 140, CH-8027 ZÜRICH, Indonesia: PT Philips Development Corporation, Semiconductors Division, Tel. +41 1 488 2741 Fax. +41 1 488 3263 Gedung Philips, Jl. Buncit Raya Kav.99-100, JAKARTA 12510, Taiwan: Philips Semiconductors, 6F, No. 96, Chien Kuo N. Rd., Sec. 1, Tel. +62 21 794 0040 ext.
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PDF
photodioden.pdf
Microelectronics SHARP Electronics (Europe) GmbH SHARP Corporation of the Americas Microelectronics Division Electronic Components & Devices 5700 NW Pacific Rim Blvd., M/S 20 Sonninstraße 3 22-22, Nagaike-Cho, Abeno-Ku Camas, WA 98607, U.S.A. 20097 Hamburg, Germany Osaka 545-8522, Japan Phone: (360) 834-
in „Suche Strom-Widerstandswandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FM1216.pdf
Malaysia SDN Berhad, Philips Components, Building BAE-1, P.O. Box 218, 5600 MD EINDHOVEN, Components Division, PULAU PINANG, The Netherlands, Fax. +31 40 27 22 599 Tel. +60 3 750 5213, Fax. +60 3 757 4880 COD31 © Philips Electronics N.V. 1999 Mexico: Philips Components, EL PASO, U.S.A., Tel. +52 915 772 4020
in „Radio mit TV/FM-Tuner von Philips“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ov7620.pdf
FD<7:2>=000001 slot 2 slot 1 slot 2 slot 1 slot 2 slot 1 slot 2 slot 1 FD<1:0>=01 FIG 0.9 Field Division Examples (Interlaced Mode) Interlaced: FD<1:0>- field mode selection. Each frame consists of two fields: Odd & Even, these bits defines the assertion of HREF in relation to the two fields. 00 - OFF
in „wo omnivision kameramodule kaufen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LC16_Trend_ScreenKey_Datasheet.pdf
REND CREEN EYS DATA SHEET Article numbers P125-1b and P125-1g SK INTERFACES LTD. SCREENKEYS DIVISION Unit 11, Keypoint Business Park, St. Johanner Strasse 41-43, Ballycoolin Roadk Drive, Germany.arbrücken, Dublin 11, Ireland. Fax: +353-1-8855 095 Fax: +0700 1624 1624 Please visit our website for
in „SPI mit Start- und 2 Stoppbit zur ScreenKey Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MPX4250_AN1646.pdf
of the board. Routing with 45 degree angles or curves Amps, Ira Basket, Motorola Sensor Products Division minimizes unwanted reflections, which increases noise immu- internal paper. 6 Motorola Sensor Device Data ▯N▯▯▯▯ Motorola reserves the right to make changes without further notice to any products
in „ADC springt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FM1216.pdf
Malaysia SDN Berhad, Philips Components, Building BAE-1, P.O. Box 218, 5600 MD EINDHOVEN, Components Division, PULAU PINANG, The Netherlands, Fax. +31 40 27 22 599 Tel. +60 3 750 5213, Fax. +60 3 757 4880 COD31 © Philips Electronics N.V. 1999 Mexico: Philips Components, EL PASO, U.S.A., Tel. +52 915 772 4020
in „Autoradio selber bauen.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FM_AM-Tuner_TEA5757HL_5759HL_1.pdf
Allmendstrasse 140, CH-8027 ZÜRICH, Indonesia: PT Philips Development Corporation, Semiconductors Division, Tel. +41 1 488 2741 Fax. +41 1 488 3263 Gedung Philips, Jl. Buncit Raya Kav.99-100, JAKARTA 12510, Taiwan: Philips Semiconductors, 6F, No. 96, Chien Kuo N. Rd., Sec. 1, Tel. +62 21 794 0040 ext.
in „Autoradio selber bauen.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pd24xx.pdf
Corpo- close to the display reduces this effect. Care should be taken ration, Specialty Chemical Division, Morristown, NJ; Baron- not to overheat the plastic filters by allowing for proper air flow. Blakeslee, Chicago, IL; Dow Chemical, Midland, Ml; E.l. DuPont de Nemours & Co., Wilmington, DE. Optimal
in „HP 2118/SLR 2016 - Ich werde Irre!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sab6456.pdf
FUNCTIONAL DESCRIPTION The circuit comprises an input amplifier, a divider stage with selectable division ratio and an output stage. The input amplifier is driven by a sinusoidal signal from the local oscillator of a television tuner. The inputs (C1, C2) are differential and are biased internally to permit
in „FM-Tuner mit AVR ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
kss-exo3e.pdf
Oscillator Features `Since it has a frequency divding function, it is able to obtain a frequency division of 1/2-1/2 (1/256). `The symmetry of frequency divided output is within 50 plus/minus 2%. `The oscillation start time has the fast starting characteristic of being 2msec. or less. `The pin arrangement
in „Unbekannter IC - EX03-16M“ · Mikrocontroller und Digitale Elektronik ·
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PDF
smi2c_10.pdf
function of Vccmineans changing one will change the other so that no net change will occur when the division of the numerator and denominator is performed. The most easily changed parameter is the desired rise time. If some margin has been added to the rise time, the amount of margin can be decreased so
in „Mehrfache Pullup's am I2C Bus ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Multi-Divi.pdf
registers :7 • Pointers :None Interrupts Usage None Peripherals Usage None 8 / 8 = 8 + 8 Unsigned Division - “div8u” 1. Clear remainder and carry. 2. Load loop counter with 9. Both program files contain a routine called “div8u” which performs unsigned 8-bit division. Both implementations are 3. Shift left
in „AVR Reziprok-Wert (Umkehr-Wert) berechnen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S1D13504.pdf
Corporation Epson Electronics America, Inc. Epson Taiwan Technology Electronic Devices Marketing Division 150 River Oaks Parkway & Trading Ltd. 421-8, Hino, Hino-shi San Jose, CA 95134, USA 10F, No. 287 Tokyo 191-8501, Japan Tel: 042-587-5812 Tel: (408) 922-0200 Nanking East Road Fax: 042-587-5564 Fax
in „TFT-Display Controller benötigt [ ja/nein ] ??“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds232bv16.pdf
The previous version of the Prescaler supported will be available from FTDI and other 3 parties. division by (n + 0), (n + 0.125), (n + 0.25) and (n + 0.5) where n is an integer between 2 and • PreScaler Divide By 1 Fix 14 16,384 (2 ). To this we have added (n + 0.375), The previous device had a problem
in „kleiner FET“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Beschreibung.pdf
the top half of the result is zero and is set if it is not zero. CY is cleared. AC is unaffected. Division – DIV performs an unsigned division of the A register by the B register; it returns the integer quotient to the A register and returns the fractional remainder to the B register. Division by zero
in „ALI M6759-A1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
s1d13732_x55ac001.pdf
Epson Electronics America, Inc. Epson Taiwan Technology & Trading Ltd. Electronic Devices Marketing Division 150 River Oaks Parkway 10F, No. 287 421-8, Hino, Hino-shi San Jose, CA 95134, USA Nanking East Road Tokyo 191-8501, Japan Tel: (408) 922-0200 Sec. 3, Taipei, Taiwan Fax: 042-587-5564 Fax: (408) 922
in „Siemens S65 Display Library“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datenblatt_pic.pdf
time-out periods are the WDT will run even if the clock on the OSC1/CLKIN desired, a prescaler with a division ratio of up to 1:128 and OSC2/CLKOUT pins of the device has been can be assigned to the WDT under software control by stopped, for example, by execution of a SLEEP writing to the OPTION_REG register
in „Flußdiagramm Digitale stoppuhr auf PIC 16F84A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INF-8020.pdf
quired where the data track immediately follows an audio track. 3.3.39 Relative F Field The sub-division of the S field part of the relative physical address from the beginning of the current track. One physical sector. Written on CD-ROM medium in binary coded decimal notation. The value is from 00bcd
in „ATAPI Packet Commands“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC1408.pdf
Digital Multiplication VEE 3 14 VREF(+) Digital−Digital Multiplication I 4 13 O VCC Analog−Digital Division MSB A 5 12 A LSB 1 8 Digital Addition and Subtraction A 2 6 11 A7 7 10 Speech Compression and Expansion A 3 A6 Stepping Motor Drive Modems A 4 8 9 A5 Servo Motor and Pen Drivers D Package* V 1 16
in „Positive Spannungen mit einem Strom aus Dac“ · Analoge Elektronik und Schaltungstechnik ·
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ATTiny15L.pdf
System Clock Ø, directly generated from the external clock crystal for the chip. No internal clock division is used. Figure 10 shows the parallel instruction fetches and instruction executions enabled by the Harvard architecture and the fast-access Register File concept. This is the basic pipelining concept
in „ATtiny 15 Datenblatt nicht auffindbar??“ · Mikrocontroller und Digitale Elektronik ·
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Java_AVR32_doc32049.pdf
defined by IEEE 754. The IEEE 754 "remainder" operation computes the remainder from a rounding division, not a trucating division, and so its behavior is not analogous to that of the usual integer remainder operator. The IEEE 754 remainder operation may be computed by Java library routine Math.IEEEremainder
in „Arm(e)s JAVA - Jazelle“ · Mikrocontroller und Digitale Elektronik ·
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R8C22-23_Group_Hardware_Manual.pdf
an operating clock for the CPU and watchdog timer. The system clock can be the divide-by-1 (no division), 2, 4, 8 or 16 to produce the CPU clock. Use the CM06 bit in the CM0 register and the CM16 to CM17 bits in the CM1 register to select the value of the division. After reset, the low-speed on-chip
in „Fragen zu Renesas µC (R5F2122CKFP)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
libdiv64.S
define C3 C2+1 #define C4 28 #define C5 C4+1 #define C6 26 #define C7 C6+1 ;; Holds Signs during Division Routine #define SS __tmp_reg__ ;; Bit-Counter in Division Routine #define R_cnt __zero_reg__ ;; Scratch Register for Negation #define NN r31 #if defined (L_udivdi3) ;; R25:R18 = R24:R18 umod R17:R10
in „Stack Überschreiber beim Rechnen mit uint64_t“ · Mikrocontroller und Digitale Elektronik ·
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Datei
VirtualSerial.c
watchdog if enabled by bootloader/fuses */ MCUSR &= ~(1 << WDRF); wdt_disable(); /* Disable clock division */ clock_prescale_set(clock_div_1); /* Hardware Initialization */ DDRB |= (1 << LED1) | (1 << LED2); PORTB |= (1 << JMP2); uart_setup(); uart_puts("\n\rEverything setup\n\r"); USB_Init(); } /** Event
in „LUFA Virtual Serial Device Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Mein_LCD.asm
,A ; Nach dem ersten Teilen hat man das neue Higbyte vom 16 bit Wert MOV A,B ; mit dem Rest der Division in Register B muss dann weiter gerechnet werden. ; Daraus muss erst ein neuer Dividend entstehen. SWAP A ; Dazu muss der Akkuinhalt zu nächt vertauscht werden und das Highnibble von R7 ; verodert
in „Problem mit LCD EA DIP204-4“ · Mikrocontroller und Digitale Elektronik ·
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Datei
clock_16F88.ASM
divide routine DIV_HI EQU Scratch ; 16 bit Divisor DIV_LO EQU Scratch2; needed for 16 bit / 8 bit division DIV_Q EQU Scratch3; DIVISOR EQU Scratch4; Divisor ;********************************************************************** ; define Port bits bIndexPuls EQU 0 bOuterLED EQU 1 bRC5inp EQU 2 bCalibration
in „Programm von Pic16F628 für Pic16F88 ändern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SPEED.asm
--------------------------------------------------------------- ; Subroutine : 16-Bit- unsigned Division ( In: X1,X0 <Divident> ,Y1,Y0 ; <Divisor> Out: Z3,Z2 <Quotient>, Z1,Z0 <Remainder> ) ;--------------------------------------------------------------------------- DIV16: MOV A,Y1 ORL A,Y0 JNZ DIV_OK
in „Hilfe bei Konvertierung von AT89C2051 nach modern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rfm12.c
10 = 10 ms TIM_TimeBaseStructure.TIM_Prescaler = PrescalerValue; TIM_TimeBaseStructure.TIM_ClockDivision = 0; TIM_TimeBaseStructure.TIM_CounterMode = TIM_CounterMode_Up; TIM_TimeBaseInit(TIM2, &TIM_TimeBaseStructure); // Timer einstellen //Timer Vorteiler-Taktkonfiguration TIM_PrescalerConfig(TIM2, PrescalerValue
in „RFM12 und STM32F1xx“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TEST.asm
wurde etwas ; modifiziert, so dass mit ganzzahligen Werten gerechnet werden kann ; und keine Divisionsroutine nötig ist: ; Temp = (160 * Temp_Read - 40 + 10*(Count_Per_C - Count_Remain)) / 16 ; Das Ergebnis liegt dann in Zehntel Grad vor. ; ma1200: lds r17,temp_msb ;Temperaturwert H holen lds r16,temp_lsb
in „Vorzeichen Ausgeben“ · Mikrocontroller und Digitale Elektronik ·
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Datei
prog.c
void main(void) { // Declare your local variables here unsigned char tag[5]; // Crystal Oscillator division factor: 1 #pragma optsize- CLKPR=0x80; CLKPR=0x00; #ifdef _OPTIMIZE_SIZE_ #pragma optsize+ #endif // Input/Output Ports initialization // Port A initialization // Func2=In Func1=In Func0=In // State2
in „U2270B RFID mit Atmega32 CodeVision“ · Mikrocontroller und Digitale Elektronik ·
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Datei
tim2.c
// Anzahl Durchläufe bis Überlauf Interrupt 32kHz / 16000 = 0,5s TIM_TimeBaseStructure.TIM_ClockDivision = TIM_CKD_DIV1; //Keine Clock Division TIM_TimeBaseStructure.TIM_CounterMode = TIM_CounterMode_Up; //Hochzählender Timer Modus TIM_TimeBaseInit(TIM2,&TIM_TimeBaseStructure); TIM_Cmd(TIM2, ENABLE);
in „STM32F4 einfache PWM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
system_stm32f10x.c
1) * pllmull; } else {/* PREDIV1 selected as PLL clock entry */ /* Get PREDIV1 clock source and division factor */ prediv1source = RCC->CFGR2 & RCC_CFGR2_PREDIV1SRC; prediv1factor = (RCC->CFGR2 & RCC_CFGR2_PREDIV1) + 1; if (prediv1source == 0) { /* HSE oscillator clock selected as PREDIV1 clock entry
in „STM32 PWM allgemein“ · Mikrocontroller und Digitale Elektronik ·
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Datei
libSTM32F4xx_StdPeriph_Driver.a
TIM_UpdateDisableConfig TIM_UpdateRequestConfig TIM_ARRPreloadConfig TIM_SelectOnePulseMode TIM_SetClockDivision TIM_Cmd TIM_OC1Init TIM_OC2Init TIM_OC3Init TIM_OC4Init TIM_OCStructInit TIM_SelectOCxM TIM_SetCompare1 TIM_SetCompare2 TIM_SetCompare3 TIM_SetCompare4 TIM_ForcedOC1Config TIM_ForcedOC2Config TIM_ForcedOC3Config
in „STM32F4 Discovery: USB CDC (serielle Schnittstelle) arbeitet!“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
TIM_CounterMode_Up; TIM_TimeBaseStructure.TIM_Period = TimerPeriod; TIM_TimeBaseStructure.TIM_ClockDivision = TIM_CKD_DIV1; TIM_TimeBaseStructure.TIM_RepetitionCounter = 0; TIM_TimeBaseInit(TIM1, &TIM_TimeBaseStructure); TIM_OCInitStructure.TIM_OCMode = TIM_OCMode_PWM2; TIM_OCInitStructure.TIM_OutputState
in „STM32F4 einfache PWM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LCD_Div.inc
---- ;Wandelt Byte in 2-stellige Hex-Zahl, Vorgabe: Temp ;wird für Darstellung auf LCD benötigt Division: DivH: mov TempH, Temp andi TempH, $F0 swap TempH mov Di1, TempH ldi TempH, $30 add Di1, TempH ldi TempH, $3A cp Di1, TempH brcs DivL ldi TempH, 7 add Di1, TempH DivL: mov TempH, Temp andi TempH,
in „Lötkolbenreglung mit Atmega 168“ · Mikrocontroller und Digitale Elektronik ·