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dmf5120.pdf
Range (µH) (mOhms) (Amps) mm Max. mm Max. mm Nominal Nominal DM__-1 1.1 - 1500 3 - 1320 10.0 - 0.5 16 10 8.0±1.0 Available in Open, DM__-2 0.9 - 1500 5 - 750 10.7 - 0.9 21 11 8.5±1.5 DM__-3 Clip & Base Mount 1.2 - 1500 4 - 410 10.1 - 1.2 25 12 8.6±2.0 See Data and Flat & Vertical DM__-4 Encapsulated
in „Datenblätter gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
C55_C55i_hardware_description.pdf
connection for SIM card to improve EMC. SIMCLK Chip card clock, various clock rates can be set in the base band processor. SIMVCC SIM supply voltage from PSU-ASIC SIMDATA Serial data line, input and output. SIMRST Chip card reset, provided by base band processor. SIMPRES Input on the base band processor
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Datei
Neues_Textdokument.txt
} void linespin (int iterations, int delay) { float top_x, top_y, top_z, bot_x, bot_y, bot_z, sin_base; float center_x, center_y; center_x = 4; center_y = 4; int i, z; for (i = 0; i < iterations; i++) { //printf("Sin base %f \n",sin_base); for (z = 0; z < 8; z++) { sin_base = (float)i / 50 + (float)z / (10 + (7 * sin((float)i / 200))); top_x = center_x + sin(sin_base) * 5; top_y = center_x + cos(sin_base) * 5; //top_z = center_x + cos(sin_base/100)*2.5; bot_x = center_x + sin(sin_base + 3.14) * 10; bot_y = center_x + cos(sin_base + 3.14) * 10; //bot_z = 7-top_z;
in „LED-Cube Effekte weiter per Knopfdruck“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LED_Cube.ino
} void linespin (int iterations, int delay) { float top_x, top_y, top_z, bot_x, bot_y, bot_z, sin_base; float center_x, center_y; center_x = 4; center_y = 4; int i, z; for (i = 0; i < iterations; i++) { //printf("Sin base %f \n",sin_base); for (z = 0; z < 8; z++) { sin_base = (float)i / 50 + (float)z / (10 + (7 * sin((float)i / 200))); top_x = center_x + sin(sin_base) * 5; top_y = center_x + cos(sin_base) * 5; //top_z = center_x + cos(sin_base/100)*2.5; bot_x = center_x + sin(sin_base + 3.14) * 10; bot_y = center_x + cos(sin_base + 3.14) * 10; //bot_z = 7-top_z;
in „LED-Cube Effekte weiter per Knopfdruck“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
HAL_RNG_GetRandomNumber(&hrng)%100; if( Z >= (100-Prozent) ) { Z = 1; } else { Z = 0; } return Z; } void DrawPixel(uint16_t X, uint16_t Y, uint32_t Color) { BSP_LCD_DrawPixel(X, Y, Color); } void DrawLine(uint16_t X1, uint16_t Y1, uint16_t X2, uint16_t Y2) { BSP_LCD_DrawLine(X1, Y1, X2, Y2); } void DrawString(uint16_t X
in „Game of Life läuft nur eine Runde!“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
TIM_CLOCKDIVISION_DIV1; htim2.Init.AutoReloadPreload = TIM_AUTORELOAD_PRELOAD_DISABLE; if (HAL_TIM_Base_Init(&htim2) != HAL_OK) { Error_Handler(); } sClockSourceConfig.ClockSource = TIM_CLOCKSOURCE_ETRMODE2; sClockSourceConfig.ClockPolarity = TIM_CLOCKPOLARITY_NONINVERTED; sClockSourceConfig.ClockPrescaler
in „DMX-Empfang mit STM32F767“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Tabelle der RAM-Variablen eines Mikrocontrollers
IInverterRMS 4 UBat 5 IBat 6 UBatRMS (= RMS value of ripple voltage) 7 Inverter Period Time (time-base 0.1s) 8 Mains Period Time (time-base 0.1s) 9 Signed AC Load Current 10 Virtual switch position 11 Ignore AC input state 12 Multi functional relay state 13 Charge state (battery monitor function) 14 Inverter Power (filtered) Power being transformed from AC to DC or vice versa This is a 16 bit signed integer. Positive power means energy converted from AC to DC (i.e. charging) negative power means conversion from DC to AC (i.e. discharging, inverting)
in „StateOfCharge anzeige basteln“ · Haus & Smart Home · · Screenshots
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PDF
3193_datasheet.pdf
7 Q3 Q 4 Q Q R5 7.5K R8 7 8 1.6K Q 13 100Ω 20pF D8 R10 60Ω - 6pF Q15 Q16 R Q1 Q2 R 7 11 100K 2 R 1K Q Q Q 16 20 21 22 Q 23 6K D1 INPUTS R 17 D2 25K R12 R14 3 3.7K 1K Q30 + D Q 17 9 Q 24 Q26 Q27 Q 19 D10 Q 18 Q 25 Q28 Q29 R 15 D13 680Ω D11 D12 Q31 R13 15K D14 4 V- 5 1 OFFSET
in „OP Temperatursteuerung von 1984 verstehen und Reparieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STM32F4-BASE.pdf
mit BAT60JFILM Schottky C14 C16 C21 +++ C20 SOD323 1uF 100nF 10nF 1uF 6,3V TACL105M006R B B 5V zu 3,3V U2 LD3985M33R +3V3 1 VIN VOUT 5 D 3 INH N Y G B 2 4 C15 C17 C19 +++ C18 1uF 100nF 10nF 1uF 6,3V C TACL105M006R C D D Spannungsregler
in „STM32F407 (100pin) Basisboard - Review bitte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F4-BASE.pdf
mit BAT60JFILM Schottky C14 C16 C21 +++ C20 SOD323 1uF 100nF 10nF 1uF 6,3V TACL105M006R B B 5V zu 3,3V U2 LD3985M33R +3V3 1 VIN VOUT 5 D 3 INH N Y G B 2 4 C15 C17 C19 +++ C18 1uF 100nF 10nF 1uF 6,3V C TACL105M006R C D D Spannungsregler
in „STM32F407 (100pin) Basisboard - Review bitte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sh7020.pdf
write 1. 132 RENESAS 8.4.3 Byte Access Control The upper byte and lower byte control signals when 16-bit bus width space is being accessed can be selected from (WRH, WRL, A0) or (WR, HBS, LBS). When the byte access select bit (BAS) of the BCR is set to 1, the WRH, WRL, and A0 pins output WR, LBS and
in „welche GPS-Maus ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RN-Mega_Board.pdf
Flash Speicher • 8000 Byte RAM • 4000 Bytes EEPROM • RAM erweiterbar auf 64K • zwei 8 Bit Timer • vier 16 Bit Timer • vier 8 Bit PWM Kanäle • zwölf PWM Kanäle (programmierbar 2 bis 16 Bit) • 16 analoge Eingänge (Spannungsmessung) • 86 programmierbare I/O Leitungen • vier TTL UARTS (RX/TX) – 2 frei, einer
in „ATmega2560 spinnt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
WS2812Ctrl.cpp
Buffer uint8_t DMABuffer[48]; // Data Pointer COLOR *pLEDData; // Number of LEDs stored in pData uint16_t nLED=0; // Counter LEDs transfered volatile uint16_t iLED=0; void initWS2812(void) { // Init GPIO // -------------------------------------------------------------- RCC->APB2ENR|= RCC_APB2ENR_IOPAEN
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PDF
via_datasheet.pdf
(KBC P21) KBRST 60 OUT Keyboard reset. This pin is high after system reset. (KBC P20) 12 KCLK I/OD16ts Keyboard Clock. 62 GP27 I/OD16t General purpose I/O port 2 bit 7. KDAT I/OD16ts Keyboard Data. GP26 63 I/OD General purpose I/O port 2 bit 6. 16t MCLK I/OD16ts PS2 Mouse Clock. 65 GP25 I/OD16t General
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D865GBF_D865GLC_TechProdSpec.pdf
Density Front-side/Back-side SDRAM Devices 64 MB SS 64 Mbit 8 M x 8/empty 8 64 MB SS 128 Mbit 8 M x 16/empty 4 128 MB DS 64 Mbit 8 M x 8/8 M x 8 16 128 MB SS 128 Mbit 16 M x 8/empty 8 128 MB SS 256 Mbit 16 M x 16/empty 4 256 MB DS 128 Mbit 16 M x 8/16 M x 8 16 256 MB SS 256 Mbit 32 M x 8/empty 8 256 MB
in „VS: Intel D865GBF, Pentium 4 (3GHz/1M/800) SL7PM, Matrox G45“ · Markt ·
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Datei
startup.txt
LPC23xx specific definitions --- */ /*; System Control Block (SCB) Module Definitions*/ .equ SCB_BASE, 0xE01FC000 /*; SCB Base Address*/ .equ PLLCON_OFS, 0x80 /*; PLL Control Offset*/ .equ PLLCFG_OFS, 0x84 /*; PLL Configuration Offset*/ .equ PLLSTAT_OFS, 0x88 /*; PLL Status Offset*/ .equ PLLFEED_OFS
in „Vectored IRQ does not go to ISR in LPC2148.“ · µC & Digital Electronics ·
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Datei
SYSGEN.ASM
NUMBER OF RETRIES ON EACH READ/WRITE CR EQU 0DH ;CARRIAGE RETURN LF EQU 0AH ;LINE FEED STACKSIZE EQU 16 ;SIZE OF LOCAL STACK ; WBOOT EQU 1 ;ADDRESS OF WARM BOOT (OTHER PATCH ENTRY ; POINTS ARE COMPUTED RELATIVE TO WBOOT) SELDSK EQU 24 ;WBOOT+24 FOR DISK SELECT SETTRK EQU 27 ;WBOOT+27 FOR SET TRACK FUNCTION
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pjb_leichter-start-bascom_de.pdf
------------------------------------------------------------------- 'Funktion:ame: einfache Ampell.bas 'Mikrocontroller: Mega8 'Input :- 'Output : LEDs an Port B.0 (rot), Port B.1 (gelb), Port B.2 (grün) '------------------------------------------------------------------------------------ $regfile =
in „LCD Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ohne_cf.txt
registered [ 0.107010] PCI: MMCONFIG for domain 0000 [bus 00-11] at [mem 0xe0000000-0xe11fffff] (base 0xe0000000) [ 0.107158] PCI: MMCONFIG at [mem 0xe0000000-0xe11fffff] reserved in E820 [ 0.107266] PCI: Using MMCONFIG for extended config space [ 0.107369] PCI: Using configuration type 1 for base access
in „Thin client über speedport w701v einrichten“ · PC Hard- und Software ·
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PDF
A4964_AN_R2.pdf
, the only way to go No Worsen? beyond the base speed isto reduce the voltage constant.By shiftingthe current with respect to back-emf,afieldcreatedin Yes Complete the statorwhich opposes the permanentmagnet field.This Reduce PA by One Step resultsinreductionoffluxdensityand
in „Allegro A4964 Demoboard - ein Phantom?“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
C-Code Ausschnitt für ESP32C3 GPIO Register
Edit Sketch Tools Help AirM2M_CORE_ESP32C3 ESP32C3_GPIO.ino 6 7 typedef struct 8 { 9 // mapped @GPIO_BASE 10 uint32_t Bt_Select_Reg; 11 uint32_t 12 uint32_t field Bt_Select_Reg 13 uint32_t 14 uint32_t Type: uint32_t 15 uint32_t offset: 0 bytes 16 uint32_t size: 4 bytes 17 uint32_t mapped @GPIO_BASE 18 uint32
in „C > Struct > Pointer - Adresszuweisung“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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PDF
The-ESP8266-Book-August-2015.pdf
) 0x00000 $(FW_BASE)/eagle.flash.bin 0x40000 $(FW_BASE)/eagle.irom0text.bin # # Clean any previous builds # clean: # Remove forceably and recursively rm --recursive --force --verbose $(BUILD_BASE) $(FW_BASE) flashId: $
in „ESP8266 Freies eBook August 2015 'Kolban'“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CP2200_short.pdf
Controller ing an integrated IEEE 802.3 Ethernet Media Access Con- - Integrated IEEE 802.3 MAC and 10 BASE-T PHY troller (MAC), a 10 BASE-T Physical Layer (PHY), and - Fully compatible with 100/1000 BASE-T networks 8 kB of Non-Volatile Flash Memory available in a 28-pin - Full/Half duplex with auto-negotiation
in „"Neuer" Ethernet Controller von Silabs: Erfahrungen?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LM32_Versa_Tutorial.c
MicoGPIOCtx_t *leds = (MicoGPIOCtx_t *)MicoGetDevice(LED_GPIO_INSTANCE); *((unsigned char*)(leds->base)) = oneByte; MicoSleepMilliSecs(ms); } */ void POVDisplay(int ms, char oneByte, MicoGPIOCtx_t *leds ) { *((unsigned char*)(leds->base)) = oneByte; MicoSleepMilliSecs(ms); } void Rider(MicoGPIOCtx_t
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PIC_32_MX_110_F_016_-_I-SO__11-2-3___SO_28_.pdf
counter at last exception. 15 PRId Processor identification and revision. 15 EBASE Exception vector base register. 16 Config Configuration register. 16 Config1 Configuration Register 1. 16 Config2 Configuration Register 2. 16 Config3 Configuration Register 3. 17-22 Reserved Reserved in the PIC32MX1XX/2XX
in „pic32 flash und i/o speed“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC_32M_X_220_F_032_B-50I-SP_____DIP_28_.pdf
counter at last exception. 15 PRId Processor identification and revision. 15 EBASE Exception vector base register. 16 Config Configuration register. 16 Config1 Configuration Register 1. 16 Config2 Configuration Register 2. 16 Config3 Configuration Register 3. 17-22 Reserved Reserved in the PIC32MX1XX/2XX
in „PIC32MX flash access time“ · Mikrocontroller und Digitale Elektronik ·
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Datei
beispiel.html
74LS689 | 74S140 | 75LBC179 | 7SEGMENTS | 8051 | 93LC46B | A3967SLB | A3977 | AD594/95 | AT89S52 | ATMEGA16 | ATMEGA64 | ATMEGA8 | ATMEGA8-16PI | ATMEGA8535 | ATTINY11 | ATTINY12 | ATTINY13DIP-SO | ATTINY13MLF | ATTINY15L | ATTINY16DIP/SO | ATTINY16MLF | ATTINY2313DIP/SO | ATTINY2313MLF | ATTINY24-44-84/DIP-SO
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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Datei
ft4232_1ok.txt
0.000000] rcu: RCU calculated value of scheduler-enlistment delay is 10 jiffies. [ 0.000000] NR_IRQS: 16, nr_irqs: 16, preallocated irqs: 16 [ 0.000000] GIC: Using split EOI/Deactivate mode [ 0.000000] random: get_random_bytes called from start_kernel+0x344/0x518 with crng_init=0 [ 0.000007] sched_clock
in „FT232 bleibt im Suspend“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ft4232_1ok.txt
0.000000] rcu: RCU calculated value of scheduler-enlistment delay is 10 jiffies. [ 0.000000] NR_IRQS: 16, nr_irqs: 16, preallocated irqs: 16 [ 0.000000] GIC: Using split EOI/Deactivate mode [ 0.000000] random: get_random_bytes called from start_kernel+0x344/0x518 with crng_init=0 [ 0.000007] sched_clock
in „FT232 bleibt im Suspend“ · Mikrocontroller und Digitale Elektronik ·
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PDF
dimplex_la17-26ps_fd9202_de-gb-fr.pdf
W35 kW / --- 8,7 / 3,2 8,3 / 3,0 10,6 / 3,1 10,5 / 3,0 11,7 / 3,1 11,5 / 3,0 4 14,5 / 3,1 14,3 / 3,0 16,7 / 3,1 16,5 / 3,0 18,8 / 3,1 18,6 / 3,0 2 3 bei A7 / W35 kW / --- 10,1 / 3,6 9,6 / 3,4 12,6 / 3,8 12,0 / 3,6 13,7 / 3,6 13,3 / 3,5 4 17,3 / 3,5 16,6 / 3,4 22,0 / 3,8 21,1 / 3,5 24,0 / 3,7 22,9 / 3,5
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PSpice_LibraryguideOrCAD.pdf
Inc. Diode BAR99 BAR99/SIE SIEMENS.OLB Infineon Diode BAR99 BAR99/ZTX ZETEX.OLB Zetex, Inc. Diode BAS116 BAS116/SIE SIEMENS.OLB Infineon Diode BAS116 BAS116/SIE SIEMPWR.OLB Siemens Diode BAS125 BAS125/SIE SIEMENS.OLB Infineon Diode BAS16 BAS16/SIE SIEMENS.OLB Infineon Diode BAS16 BAS16/SIE SIEMPWR.OLB Siemens Diode BAS16 BAS16/ZTX ZETEX.OLB Zetex, Inc. Diode BAS19 BAS19/ZTX ZETEX.OLB Zetex, Inc. Diode BAS20 BAS20/ZTX ZETEX.OLB Zetex, Inc. Diode BAS21 BAS21/SIE SIEMENS.OLB Infineon Diode BAS21 BAS21/SIE SIEMPWR.OLB
in „pSpice - Bauteil hinzufügen.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MGA52543.pdf
0.053 -16.15 0.37 -56.73 1.39 2.3 0.61 -84.18 13.02 4.48 107.22 -25.69 0.052 -16.20 0.36 -58.62 1.42 2.4 0.61 -87.95 12.95 4.44 104.46 -25.88 0.051 -16.12 0.36 -60.36 1.46 2.5 0.60 -91.46 12.87 4.40 101.71 -26.04
in „Wie ist ein MMIC intern aufgebaut?“ · HF, Funk und Felder ·
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PDF
de302.pdf
recovery ❑ Suitable for both desktop and DIN-Rail installation Product Specifications Hardware Processor 16 bit CPU I/O controller: DE-301/331 16C550C or compatible × 1 DE-302/332 16C550C or compatible × 2 DE-304/334 16C550C or compatible × 4 Memory 512 KB Connector type Male DB9 Interface LAN Auto-detecting
in „[V] Moxa NPort Server DE-302 Device Server LAN auf 2x RS232 (25€)“ · Markt ·
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PDF
cd4027b.pdf
J 16 1 TBD A42 N / A for Pkg Type CD4027BF3AS2534 OBSOLETE CDIP J 16 TBD Call TI Call TI CD4027BM ACTIVE SOIC D 16 40 Green (RoHS & CU NIPDAU Level-1-260C-UNLIM no Sb/Br) CD4027BM96 ACTIVE SOIC D 16 2500
in „Länge Ausgangssignal an Conrad Klatschsensor“ · Mikrocontroller und Digitale Elektronik ·
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Datei
crt0.txt
PC0 ON stab PORTC ;; STACK NOT USABLE HERE!? ;jmp toggle_txd ldd #0x00FB ; 2#00 00 00 00 CS2:11=CS16 CS1:11=CS16 CS0:10=CS8 CSBOOT:11=CS16 std CSPAR0 ldd #0x0100 ; 2#00 00 00 01=ADDR23? 00 00 00 00 std CSPAR1 ldd #0x6870 ; 2#01 10 10 00 01 11 00 00 std CSORBT ; BOOT ldd #0x7870 ; 2#01111000 01110000
in „68HC16 Startup-Code“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NT2GC64B8HC0NS.pdf
4nCK, - -x4/x8) 7.5ns) 6ns) ACTIVE to ACTIVE command period (2k page size max(4nCK, max(4nCK, tRRD -x16) 10ns) - 7.5ns) - tFAW Four activate window (1k page size - x4/x8) 37.5 - 30 0 ns tFAW Four activate window (2k page size - x16) 50 - 45 0 ns Command and Address setup time to CK, tIS(base) referenced Vih(ac) / Vil(ac) levels 125 65 ps Command and Address hold time from CK, tIH(base) 200 140 ps referenced Vih(ac) / Vil(ac) levels tIS(base) Commad and Address setup time to CK, - - 65+125 ps AC150 referenced to Vih(ac) / Vil(ac) levels Calibration Timing tZQinit Power-up and RESET
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PDF
Real_Time_Clock.pdf
TT1P T1OSI 4 x 4 4 Keypad 32 kHz T1OSO VSS In this example, a 32 kHz crystal is used as the time base for the Real Time Clock. If the clock needs to be updated at 1 second intervals, then the Timer1 must be loaded with a value to allow the Timer1 to overflow at the desired rate. In the case of a 1 second
in „Uhr mit PIC18“ · Mikrocontroller und Digitale Elektronik ·
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PDF
elko.PDF
7.7 0.16 0.26 300 B41142A4157M000 220 6.3 × 7.7 0.16 0.26 300 B41142A4227M000 330 8 ×10 0.16 0.16 600 B41142A4337M000 470 8 ×10 0.16 0.16 600 B41142A4477M000 680 10 ×10 0.16 0.08 850 B41142A4687M000 25 100 6.3
in „Ist dieser Elko für Step-ups geeignet - Schaltregler Experte gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
complex_signals.pdf
SSB signal using a Hartley real output of the PPF and discarding its imaginary output. architecture [16]. This approach was originally proposed by Hartley [16] where the PPF was implemented as two low-pass filters cascaded with simple RC phase-shift networks as shown in Fig. 12. (a). 6. This is a good
in „Komplexe Frequenz“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
ohci.c
Frame Interval setzen (12000 Bits pro Frame) LPC_USB->HcFmInterval = ((((6 * (19999UL - 210)) / 7) << 16) | 19999UL); // Host starten HcCtrl->HCFS = HCFS_USBOPERATIONAL; // Spannungsversorgung fuer USB auf dem BaseBoard nicht schaltbar HcRh->DescriptorA.NPS = 1; // Keine Stromüberwachung fuer USB auf dem
in „USB-Host LPC1769“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
TIM_HandleTypeDef htim2; UART_HandleTypeDef huart2; /* USER CODE BEGIN PV */ uint8_t wait = 0; // Zählvariabel uint16_t time = 0; uint8_t motorState = 0; //Motor-Zustand 0: STOPP 1:START uint16_t dma = 0; uint16_t counter = 0; //Timer2 uint16_t prevCounter = 0; //Timer2 int32_t temp = 0; // Innentemperatur in Grad Celsius uint16_t phaseAngle = 0; uint16_t prevPhaseAngle = 150; uint16_t delay = 0; float tempFloat = 0; /* USER CODE END PV */ /* Private function prototypes -----------------------------------------------*/ void
in „Phasenanschnitt funktioniert nicht richtig“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
dic_reg_top_struct.vhd
addr_width_g : integer := 8; --width of address data_width_g : integer := 8; --width of data addr_base_g : std_logic_vector; addr_range_g : std_logic_vector; nregs_g : integer := 16 --number of registers ); port ( sbus_o : out sbus_o_t ; sbus_i : in sbus_i_t ; reg_din : in std_logic_vector ( nregs_g*
in „Error: Identifier "unsigned" is not directly visible.“ · FPGA, VHDL & Co. ·
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PDF
DS1000Z_Firmware_Release_Notes.pdf
, MSO1104Z, MSO1074Z-S, MSO1104Z-S VersionInformation Releasedversion:00.04.03.01.05 ReleaseDate:6/16/2015 Compatibility Compatiblewithearlierversionsof thehardware ChangeLog Key: E – Enhancements.Changes thatadd functionality M – Modifications.Changes to improveperformance on existingfeatures C – Cancellation.Removalof
in „Rigol-DS1054Z“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SCHALTUNG_TV_BAS_FBAS_ATmega1284P.pdf
TV - VIDEO - BAS - FBAS - VOLLGRAFIK - s/w - ATmega1284P +5V GND 10µ 100n 450 R1 40 39 38 37 36 35 34 33 32 30 29 28 27 26 25 24 23 22 21 0 1 2 3 4 5 6 7 E N C 7 6 5 4 3 2 1 0 7 P P P P P P P P R G V P P P P P P P P
in „TV BILD AVR BAS FBAS VOLLGRAFIK 320x256 Kreise Linien Punkte ASCII Assembler Atmega1284P“ · Projekte & Code ·
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PDF
ESP_Tubes.pdf
read up to 20M you can still run the test. The test itself is as simple as can be - heat the valve base with a hot air gun, then measure the resistance between pins 4 (G2 - screen grid) and 5 (G1 - control grid). The valve base needs to be quite hot to get a reading, but I measured a drop from effectively
in „EL34 Kathodenwiderstand nachrüsten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Agilent_6000_Userguide.pdf
saving and sharing data easy. 2-channel and 4-channel Digital Storage Oscilloscope (DSO)models. 2+16-channel and 4+16-channel Mixed Signal Oscilloscope (MSO) models. An MSO lets you debug your mixed-signal designs using up to four analog signals and 16 tightly correlated digital signals simultaneously
in „Wittig(welec) DSO W20xxA Open Source Firmware (Teil2)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HD49815TF.pdf
Camera DSP (HD49815TF) State Data”. Built-in Functions 1. Input line memory block A/D input 10-bit 16 De-Knee AGC DL + processing blocknal 1HDL 16 Memory control 1HDL To the luminance-signal processing block Figure 3 Input Line Memory Block a. De-knee function When the CDS/AGC IC at the pre-stage or
in „wo omnivision kameramodule kaufen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
06072010.txt
------------------------------------*/ DMA_DeInit(DMA1_Channel1); DMA_InitStructure.DMA_PeripheralBaseAddr = (uint32_t)ADC1_DR_Address; DMA_InitStructure.DMA_MemoryBaseAddr = (uint32_t)ADC_DualConvertedValueTab; DMA_InitStructure.DMA_DIR = DMA_DIR_PeripheralSRC; DMA_InitStructure.DMA_BufferSize = 3000
in „STM32 Interrupts“ · Mikrocontroller und Digitale Elektronik ·
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PDF
L7200.PDF
V AV Open Loop Gain 60 dB base Driving Base Current 5 mA SHOCK SENSOR - INPUT OPERATIONAL AMPLIFIER A1 Av Open Loop Gain 20 dB Rin Input Inpedance 10 M FodB Unity Gain Bandwidth 30 KHz SHOCK SENSOR - FILTER OPERATIONAL AMPLIFIER
in „Externe Festplatte durch falsches Netzteil zerstört“ · PC Hard- und Software ·
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PDF
AVR053.pdf
value. CALIBRATED 8MHz RC OSCILLATOR FREQUENCY vs. OSCCAL VALUE 13 12 11 10 9 z ( 8 R F 7 6 5 4 3 0 16 32 48 64 80 96 112 OSCCAL VALUE For all tunable oscillators it is important to notice that it is not recommended to tune the oscillator more than 10% off the base frequency specified in the datasheet
in „OSCCAL für 8MHz ?!? be ATTiny26“ · Mikrocontroller und Digitale Elektronik ·