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Datasheet_MOSFET.pdf
Junction and –55 to 150 °C Tstg Storage Temperature Range Avalanche Energy, single pulse . EAS I = 32, L = 0.1 mH, R = 25 Ω 51 mJ D G . 2 (1) Typical R θJA = 60°C/W on a 1-inch , 2-oz. Cu pad on a 0.06-inch thick FR4 PCB. (2) Max R = 20°C/W, pulse duration ≤100 μs, duty cycle ≤1% θJL . R DS(on) vs V
in „DRV8711 Steppermotortreiber - Hohe Geschwindigkeiten“ · Analoge Elektronik und Schaltungstechnik ·
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MX29F040PC-70.pdf
PLCC MX29F040QC-90 90 30 5 32 Pin PLCC MX29F040QC-12 120 30 5 32 Pin PLCC MX29F040TC-55 55 30 5 32 Pin TSOP (Normal Type) MX29F040TC-70 70 30 5 32 Pin TSOP (Normal Type) MX29F040TC-90 90 30 5 32 Pin TSOP (Normal Type) MX29F040TC-12 120 30 5 32 Pin TSOP (Normal Type) MX29F040PC-55 55 30 5 32 Pin PDIP MX29F040PC-70 70 30 5 32 Pin PDIP MX29F040PC-90 90 30 5 32 Pin PDIP MX29F040PC-12 120 30 5 32 Pin PDIP P/N:PM0538 REV. 1.6, AUG. 08, 2001 33 M
in „MX29F040PC-70 EEPROM Ersatz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MX29F040PC-70.pdf
PLCC MX29F040QC-90 90 30 5 32 Pin PLCC MX29F040QC-12 120 30 5 32 Pin PLCC MX29F040TC-55 55 30 5 32 Pin TSOP (Normal Type) MX29F040TC-70 70 30 5 32 Pin TSOP (Normal Type) MX29F040TC-90 90 30 5 32 Pin TSOP (Normal Type) MX29F040TC-12 120 30 5 32 Pin TSOP (Normal Type) MX29F040PC-55 55 30 5 32 Pin PDIP MX29F040PC-70 70 30 5 32 Pin PDIP MX29F040PC-90 90 30 5 32 Pin PDIP MX29F040PC-12 120 30 5 32 Pin PDIP P/N:PM0538 REV. 1.6, AUG. 08, 2001 33 M
in „MX29F040PC-70 EEPROM Ersatz“ · Mikrocontroller und Digitale Elektronik ·
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Weller.pdf
Weller-Irons A Date: Thursday, June 14, 2012 Sheet 1 of 1 5 4 3 2 1 5 4 3 2 1 CN1A CN1B CN1C FP1A A32 B32 C32 0 A32 +-24V B32 +-24V C32 +-24V 0 A31 A31 B31 B31 C31 C31 A30 A30 B30 B30 C30 C30 A29 A29 B29 B29 C29 C29 A28 A28 B28 B28 C28 C28 A27 A27 B27 B27 C27 C27 A26 A26 B26 B26 C26 C26 A25 B25 C25 D
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TC55V16256FT.pdf
35 I/O13 I/O4 10 35 I/O13 LB , UB Data Byte Control Inputs GNDD 12 33 VDD GNDD 12 33 VNDD I/O5 13 32 I/O12 I/O5 13 32 I/O12 V DD Power (+3.3 V) I/O6 14 31 I/O11 I/O6 14 31 I/O11 I/O7 15 30 I/O10 I/O7 15 30 I/O10 GND Ground I/O8 16 29 I/O9 I/O8 16 29 I/O9 WE 17 28 NU WE 17 28 NU NU Not Usable (Input)
in „suche: schnelles SRAM“ · Markt ·
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sla7024m.pdf
wave drive, half-step, or 2-phase). Assuming a 50% output duty cycle: 2 Wave Drive = 0.5 (I OUT • rDS(on) + 0.5 (VSD • OUT ) + (VCC • 15 mA) Half-Step = 0.75 (I OUT2• rDS(on) + 0.75 (VSD • IOUT) + (VCC • 15 mA) 2-Phase = (I 2 • r ) + (V • I ) + (V • 15 mA) OUT DS(on) SD OUT CC SLA7024M, SLA7026M, AND
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EL12864A.pdf
specified about current flowing througSS. Internal oscillation circuit: Rf=47kΩ, cf=20pF Each terminals of DS1, DS2, FS, SHL, and MS is connected to DD and out is no load. *4. This value is specified about current flowing througSS. Each terminals is DS1, DS2, FS, SHL, PCLK2 and CR is connected to VDD,MS is connected
in „LCD Display Powertip PG-12864A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
gdm12864a.pdf
specified about current flowing throuSS.V Internal oscillation circuit: Rf=47kO, cf=20pF Each terminals of DS1, DS2, FS, SHL, and MS is connected to DD and out is no load. *4. This value is specified about current flowing throuSS.V Each terminals is DS1, DS2, FS, SHL, PCLK2 and CR is connected to VDD,MS is connected
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Datei
Akkulader5.bas
############################# $regfile = "m8def.dat" $crystal = 16000000 $baud = 9600 $framesize = 32 $hwstack = 82 $swstack = 64 Daccs Alias Portd.2 Adcs Alias Portc.2 Adsck Alias Portc.4 '################################# Prozessor ################################### 'ATMEGA8-16PI 'Externer Quarzpszillator
in „DS1821 Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main_sender.c
int uart_putc(char c); void uart_puts (char *s); uint8_t sendedaten[wl_module_PAYLOAD] = "Dies sind 32 Zeichen. Gesendet!!"; uint8_t counter = 0; uint8_t status_funk = 71; volatile uint8_t PTX; int main(void) { uart_init(); uart_puts("Beginne Initialisierungen...\n"); atmega_init(); // Atmega initialisieren
in „NRF24L01 und Atmega328P“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pH4502.pdf
Spannungsdifferenz: 1,009 V – 0,645 V = 0,364V / 0,2,86 = 0,127,3 V/pH. Von pH 6,86 zu pH 9,18 (2,32 pH-Einheiten) Spannungsdifferenz: 645 mV – 354 mV = 291 mV / 2,32 = 125,4 mV/pH. Die durchschnittliche Steigung pro pH = 0,1263 2. Der reale Nullpunkt bei pH 7,00 0,645 V = pH 6,86 + 0,14 pH = pH 7,00
in „Automatisierte Ozon-Wasseraufbereitung für Whirlpool“ · Haus & Smart Home ·
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PDF
Funkmodul.pdf
both modules are ideal for use in portable, battery-powered applications such as hand-held terminals. DS000022 Rev DJuly ‘99 1999 REG No 277 4001, ENGLAND. Page 1 FM T RANSMITTER & R ECEIVER FM-TX2-XXX M ODULES . (2 ND G ENERATION ) FM-RX2-XXX Functional description: The TX2 transmitter module is a two
in „Funkübertragung über uC“ · Mikrocontroller und Digitale Elektronik ·
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l6599.pdf
of the half-bridge leg is lower, so that, generally, an R rise is not an issue. However, it is wise DS(on) to check this point anyway and the following equation is useful to compute the drop on the bootstrap driver: ------------------ VDrop= ICharge (DS)ON + VF= T R (DS)ON + VF Charge where Q ig the gate
in „Hilfe bei der Reparatur eines Schaltnetzteiles erbeten“ · Analoge Elektronik und Schaltungstechnik ·
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doc6241-1369051.pdf
Kbytes (AT91SAM7SE256) Organized in One Bank of 1024 Pages of 256 Bytes Single Plane (AT91SAM7SE256) – 32 Kbytes (AT91SAM7SE32) Organized in One Bank of 256 Pages of 128 Bytes Single Plane (AT91SAM7SE32) – Single Cycle Access at Up to 30 MHz in Worst Case Conditions – Prefetch Buffer Optimizing Thumb Instruction
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Datei
AT32MENU_Int_anzeige_Abfrage_Passwort.bas
Echtzeituhr Ddrd = &HFE Ddrb.1 = 1 Config Sda = Portc.1 ' I2C Bus konfigurieren Config Scl = Portc.0 Const Ds1307w = &HD0 ' Addresse der Ds1307 Uhr Const Ds1307r = &HD1 Config Clock = User '' Interne Time/Date Routinen für Bascom konfigurieren Config Date = Dmy , Separator = . ' *********** Konfiguration Ende
in „Variabeln ändern in ISR“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dcfm8.c
stdlib.h> #include <string.h> //#include "i2cmaster.h" //#define Dev1621_1 0x90 // device address of DS1621-1 //#define Dev1621_2 0x92 // device address of DS1621-2 typedef unsigned char BYTE; typedef unsigned int WORD; #define F_CPU 3000000UL #define sbi(ADDRESS,BIT) (ADDRESS |= (1<<BIT)) #define cbi(
in „Funk-uhr über AVR Programmieren mit DCF01“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Techniques_for_Robust_Touch_Sensing_Design_AN1334.pdf
superseded by updates. It is your responsibility to The Microchip name and logo, the Microchip logo, dsPIC, FlashFlex, K EELOQ , KEEL OQ logo, MPLAB, PIC, PICmicro, ensure that your application meets with your specifications. PICSTART, PIC 32 logo, rfPIC, SST, SST Logo, SuperFlash MICROCHIP MAKES NO REPRESENTATIONS
in „Wie realisiert man Sensortasten?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
#include "stm32f10x_conf.h" // with #define USE_STDPERIPH_DRIVER 1 #include "delay.h" //#include "OWire.h" //#include "ds18x20.h" #include <stdio.h> // ********* 64pin LQFP Package ******* // PIN03: **availabe** //
in „STM32 : Float linken mit Coocox“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
-- */ #include <stdint.h> /* ------------ Special Include Files --------------- */ #include "tm_stm32f4_ili9341.h" #include "tm_stm32f4_adc.h" #include "tm_stm32f4_exti.h" #include "tm_stm32f4_disco.h" #include "tm_stm32f4_delay.h" #include "tm_stm32f4_low_power.h" #include "tm_stm32f4_nrf24l01_cj.h" #include "tm_stm32f4_hd44780.h" /* ------------ Projekt Include Files --------------- */ #include "config.h" #include "rtc_user.h" #include "init_system.h" #include "graphik.h" #include "eeprom.h" #include "tools.h" #include
in „Organisation der Header und Includes“ · Mikrocontroller und Digitale Elektronik ·
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Datei
make_debug.txt
a fp64_divsf3x.o Successfully remade target file `libfp64.a(fp64_divsf3x.o)'. File `libfp64.a(fp64_ds.o)' does not exist. File `fp64_ds.o' does not exist. Must remake target `fp64_ds.o'. Invoking recipe from makefile:44 to update target `fp64_ds.o'. avr-gcc fp64_ds.S -mmcu=atmega1284p -mrelax -c -o fp64_ds.o Successfully remade target file `fp64_ds.o'. Must remake target `libfp64.a(fp64_ds.o)'. Invoking recipe from makefile:50 to update target `libfp64.a(fp64_ds.o)'. avr-gcc-ar cr libfp64.a fp64_ds.o Successfully
in „fp64lib in Atmel Studio 7 importieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STA508.pdf
C106 19 M16 3 1µF 100nF C111 IN2B 2 OUT2B 100nF IN2B 32 OUT2B L112 22µH GNDSUB M14 1 5 GND2B D00AU1148B Rev. 4 February 2006 1/10 STA508 Table 2. Pin Description N° Pin Description 1 GND-SUB Substrate Ground 2 ; 3 OUT2B Output Half Bridge 2B 4 VCC 2B Positive
in „Heimkino ( Harman Hs 250 defekt )“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
heizung.h
130-((tr_nol-190)/1), BLUE); glcd_pix(posx, 130-((tr_nob-190)/1), BLUE); glcd_pix(posx, 130-((tmp1820ds0-190)/1), MAGENTA); /**/ //x-achse //for(i=0;i<220;i=i+10){for(j=X_MAX_PIXEL-3;j<X_MAX_PIXEL;j++){glcd_pix(i,j,PIXEL_ON);}} //for(i=60-20;i<220;i=i+60){for(j=X_MAX_PIXEL-6;j<X_MAX_PIXEL-3;j++){glcd_pix
in „Heizungssteuerung Wärmepumpe Fußbodenheizung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DS1820.txt
mega16.h> #include<stdio.h> #include<math.h> #asm .equ __w1_port=0x18 .equ __w1_bit=0 #endasm #include<ds1820.h> #define MAX_DEVICES 8 unsigned char rom_code[MAX_DEVICES][9]; void main(void) { unsigned char i,j,devices; int temp; UCSRA=0x00; //baud rate...übertragung RS2/32 UCSRB=0x08; UBRRL=0x33; devices
in „DS1820 liefert immer den gleichen wert“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DS1820.txt
mega16.h> #include<stdio.h> #include<math.h> #asm .equ __w1_port=0x18 .equ __w1_bit=0 #endasm #include<ds1820.h> #define MAX_DEVICES 8 unsigned char rom_code[MAX_DEVICES][9]; void main(void) { unsigned char i,j,devices; int temp; UCSRA=0x00; //baud rate...übertragung RS2/32 UCSRB=0x08; UBRRL=0x33; devices
in „DS1820 liefert immer den wert 1023,5, ID stimmt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DS1820.txt
mega16.h> #include<stdio.h> #include<math.h> #asm .equ __w1_port=0x18 .equ __w1_bit=0 #endasm #include<ds1820.h> #define MAX_DEVICES 8 unsigned char rom_code[MAX_DEVICES][9]; void main(void) { unsigned char i,j,devices; int temp; UCSRA=0x00; //baud rate...übertragung RS2/32 UCSRB=0x08; UBRRL=0x33; devices
in „Kennt sich irgendwer mit CVAVR aus, geht um DS1820“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DS1820.txt
mega16.h> #include<stdio.h> #include<math.h> #asm .equ __w1_port=0x18 .equ __w1_bit=0 #endasm #include<ds1820.h> #define MAX_DEVICES 8 unsigned char rom_code[MAX_DEVICES][9]; void main(void) { unsigned char i,j,devices; int temp; UCSRA=0x00; //baud rate...übertragung RS2/32 UCSRB=0x08; UBRRL=0x33; devices
in „CVAVR und DS1820 nix als Ärger!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OPTREX_F-51320AE_TechSpec.pdf
tAW8 CYC8 CCLR tCCLW /WR, /RD CCHR ,CCHW f DS8 tr DH8 D0~D7 (WRITE) tACC8 OH8 D0~D7 (READ) F-51320GNB-LW-AEN (AE) No. 2005-0308 OPTREX CORPORATION Page 5/24 2.3.2.Read/Write Operation Sequence (68 series CPU) V DD=5.0V±10% Parameter Symbol Min.
in „Pollin Grafik LCD-Modul OPTREX F-51320AE“ · Mikrocontroller und Digitale Elektronik ·
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PDF
on-semiconductor-rfp70n06-mosfet.pdf
N-Channel power MOSFETs manufactured using the MegaFET process. This process, which uses feature r DS(on)= 0.014Ω ® sizes approaching those of LSI circuits, gives optimum Temperature Compensated PSPICE Model utilization of silicon, resulting in outstanding performance. Peak Current vs Pulse Width Curve
in „DC Wandler wiederbeleben“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
NTE2399.pdf
Soldering, 1.6mm from case for 10sec), T L . . . . . . . . . . . . . . . . . +300 C Mounting Torque (6−32 or M3 Screw) . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 10 lbf in (1.1N m) Thermal Resistance, Junction−to−Case, R thJC . . . . . . . . . . . . . . . . . . . . . . . . .
in „Kühlkörper eines NTE2399 berechnen“ · Analoge Elektronik und Schaltungstechnik ·
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AN955.pdf
Control of 3-Phase Induction ADC Channels 5 4 Motors Using PIC16F7X7 Microcontrollers” EUSART 0 1 (DS00889). Microchip Technology Inc., 2004. QEI Module 0 1 “PICDEM™ MC Development Board for PIC18FXX31 Timers 1 3 User’s Guide” (DS51453). Microchip Technology Inc., External Interrupts 0 3 2004. I/O Lines
in „Raumzeigermodulation, PWM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LiveDesign_EB_Schematics-xilinx_spartan.pdf
Sheet 2 of10 Australia 2086 File: NEB_XTALOSC.SchDoc 1 2 3 4 1 2 3 4 5 6 6 DIGIT 7-SEGMENT DISPLAY A DS1 DS2 DS3 DS4 A DIG0_SEG0 R25 270R 7 a K 3 DIG1_SEG0 R26 270R 7 a K 3 DIG2_SEG0 R27 270R 7 a K 3 DIG3_SEG0 R28 270R 7 a K 3 DIG0_SEG1 R29 270R 6 8 DIG1_SEG1 R30 270R 6 8 DIG2_SEG1 R31 270R 6 8 DIG3_SEG1
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PDF
MCP3221.pdf
(0.254mm) per side. JEDEC Equivalent: MO-178 Drawing No. C04-091 2003 Microchip Technology Inc. DS21732B-page 21 MCP3221 NOTES: DS21732B-page 22 2003 Microchip Technology Inc. MCP3221 PRODUCT IDENTIFICATION SYSTEM To order or obtain information, e.g., on pricing or delivery, refer to the factory
in „Suche Bauteilbezeichnung 5-Pin SOT-23 mit "S1SD" Marking“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main_sender.c
int uart_putc(char c); void uart_puts (char *s); uint8_t sendedaten[wl_module_PAYLOAD] = "Dies sind 32 Zeichen. Gesendet!!"; uint8_t counter = 0; uint8_t status_funk = 71; volatile uint8_t PTX; int main(void) { uart_init(); uart_puts("Beginne Initialisierungen...\n"); atmega_init(); // Atmega initialisieren
in „NRF24L01 und Atmega328P“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ds1302.c
/* * ds1302.c * * written by Karl Zeilhofer * zeilhofer (at) gmail (dot) com * September 2008 */ #include <at89c51cc01.h> #include "ds1302.h" // local functions: static void clock_write(uint8_t addr, uint8_t
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038-05058-01-X-MLCC_REVB03_SKIT.pdf
D30 MIO27 [10] A30 A31 MODE3_C2M [6] B30 B31 MIO37 [9] C30 C31 MIO29 [10] D30 D31 MIO28 [10] A31 A32 MIO32_NC B31 B32 C31 C32 MIO30 [10] D31 D32 A32 A33 MIO33_NC B32 B33 MIO38 [8] C32 C33 MIO31 [6] D32 D33 MIO44 [8] A33 B33 MIO39 [17] C33 D33 MIO45 [17] A34 A34 MIO41_NC B34 B34 MIO40_NC C34 C34 MIO47
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PDF
HausAutoTest.pdf
DAT1 QH 9 C 5V GND PD30 B SOT-23 SD_Card 74HC595 R 1 BC856 R14 Q1 C 3 0 GND 1 P9 1 0 2 N C34 N 5V C DS1631 GND TWCK_SCL 1 8 100nF 5V SDA VDD DS3234S# 25AA512 GND TWD_SDA 2 SCL A_0 7 CS_RTC 1 20 SCK0 CS_EEProm 1 8 P7 0 3 6 100nF1 0 1 CS SCLK CS Vcc 1 X T_OUT A_1 0 1 R 3 32_kHz DOUT 19 MISO0 MISO0 2 7 2
in „AT32UC3C2 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HausAutoTest.pdf
DAT1 QH 9 C 5V GND PD30 B SOT-23 SD_Card 74HC595 R 1 BC856 R14 Q1 C 3 0 GND 1 P9 1 0 2 N C34 N 5V C DS1631 GND TWCK_SCL 1 8 100nF 5V SDA VDD DS3234S# 25AA512 GND TWD_SDA 2 SCL A_0 7 CS_RTC 1 20 SCK0 CS_EEProm 1 8 P7 0 3 6 100nF1 0 1 CS SCLK CS Vcc 1 X T_OUT A_1 0 1 R 3 32_kHz DOUT 19 MISO0 MISO0 2 7 2
in „AT32UC3C2 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HausAutoTest.pdf
GND PD30 B SOT-23 SD_Card 9 74HC595 10k 1 BC856 D R20 Q1 P C 3 0 GND 1 P9 1 0 R19 2 N 10k 5V N R13 C DS1631 5V 10k C36 TWCK_SCL 1 8 100nF SDA VDD DS3234S# 25AA512 GND TWD_SDA 2 SCL A_0 7 CS_RTC 1 20 SCK0 CS_EEProm 1 8 P6 0 3 6 100nF1 0 1 CS SCLK CS Vcc 1 X T_OUT A_1 0 1 R 3 32_kHz DOUT 19 MISO0 MISO0 2
in „AT32UC3C2 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HausAutoTest.pdf
XC6206P332MR JP8 1 CAN_H 4 5 CAP1 CAP2 8 R 3 VIN VOUT 2 3V3 2 LED 1 GNDA FB ON/OFF 1 R 6 S R C9 U2 100uF D S C32 S C34 D9 R24 S 330uF 1 V 0 U11 LED JP2 2 R 100nF E D,4V Kerko 1 1uF Kerko 2 1 R 1 5 R L 20mA R25 1 2 7 2 D7 LED JUMPER P8 2 1 R 1 R26 GND U17 0 2 D8 1ULN2803 LED 14 SER QA 15 1 1B 1C 18 3 2 1 R 9 1 2
in „AT32UC3C2 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HausAutoTest.pdf
XC6206P332MR JP8 1 CAN_H 4 5 CAP1 CAP2 8 R 3 VIN VOUT 2 3V3 2 LED 1 GNDA FB ON/OFF 1 R 6 S R C9 U2 100uF D S C32 S C34 D9 R24 S 330uF 1 V 0 U11 LED JP2 2 R 100nF E D,4V Kerko 1 1uF Kerko 2 1 R 1 5 R L 20mA R25 1 2 7 2 D7 LED JUMPER 2 1 R R26 GND U17 0 11 D8 1ULN2803 LED 14 SER QA 15 1 1B 1C 18 10 2 1 R 9 1 2 O
in „Layout prüfen“ · Platinen ·
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PDF
HausAutoTest.pdf
XC6206P332MR LED S 8 CAN_L 4 5 CAP1 CAP2 8 R 3 VIN VOUT 2 3V3 2 1 GNDA FB ON/OFF 1 R 6 S 9 C9 U2 100uF D S C32 S C34 D9 S 330uF 1 V LED 0 U11 2 1 R JP2 2 R 100nF E D,4V Kerko 1 1uF Kerko C4GND 1 5 R L 20mA D7 R25 1 2 7 2 LED 100n 2 1 JUMPER D8 GND U17 1ULN2803 11 LED 1 18 10 2 1 14 SER QA 15 1B M 1C R 1 2 2B
in „Layout prüfen“ · Platinen ·
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PDF
Targetholder.pdf
1 2 3 4 5 6 7 8 ESP32-S3 Levelshifter Stepper CAN Kommunikation Temperature Sensor Levelshifter IC1 unused Pins CAN L 2 J6 I2C 74AHCT245PW,118 CAN H 1 Conn_01x02_Pin IC2 CAN Transceiver SDA IO8 JP1 JP2 SN65HVD230DR SCL IO9
in „ESP32 Platine funktioniert nicht (Türöffner)“ · Platinen ·
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PDF
AN735.pdf
management. This application note has presented some key opera- ment # DS00734 PICmicro TM Mid-Range MCU Reference Manual, tional basics on the MSSP module which should aid the Microchip Technology Inc., Document # DS33023 developer in the understanding and implementation
in „I2C example code“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OZ965.pdf
0.01uC19 100k R29 11 - 16 OPA4340EA 0.1u U1C C20 Vref_1.25 15 - 511 1 0.082u 24k 1 2 3OPA4340EA 1 R31 R32 3 Q6 - 4 1.0M C21 3 1 0.01u 2N7002 U4 + 3 R33 2 Vref_2.5 49.9k LM7131BCM5 5 Vcc 1 Note: Vin: 9.5v - 13v SOT-23D Dim: 0.6v - 3.3v, 3.3v=Max. Dimming, 0.6v=Min. Dimming (Top View) 2 3 OZ965-DS-3.2 Page
in „Background-Beleuchtung für TFT-Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PseudoKunstkopfStereo.pdf
FFFF BCR equ $FFFE SSISR equ $FFEE PLL equ $FFFD START equ $40 org x:0 RX_BUFF_BASE equ * RX_data_1_2 ds 1 ;data time slot 1/2 for RX ISR RX_data_3_4 ds 1 ;data time slot 3/4 for RX ISR RX_data_5_6 ds 1 ;data time slot 5/6 for RX ISR RX_data_7_8 ds 1 ;data time slot 7/8 for RX ISR TX_BUFF_BASE equ * TX_data_1_2 ds 1 ;data time slot 1/2 for TX ISR TX_data_3_4 ds 1 ;data time slot 3/4 for TX ISR TX_data_5_6 ds 1 ;data time slot 5/6 for TX ISR TX_data_7_8 ds 1 ;data time slot 7/8 for TX ISR RX_PTR ds 1 ; Pointer
in „Pseudo Kunstkopf Stereo mit DSP56002, alte Motorola Applikation“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
564746-da-01-en-MOSFET_N_KA_800V_STP4N80K5_TO_220AB_STM.pdf
current GS = 0) VDS = 800 V, TC=125 °C 50 µA Gate-body leakage IGSS current (V = 0) VGS = ± 20 V ±10 µA DS V Gate threshold voltage V = V , I = 100 µA 3 4 5 V GS(th) DS GS D Static drain-source on- RDS(on) VGS = 10 V, D = 1.5 A 2.1 2.5 Ω resistance Table 5. Dynamic Symbol Parameter Test conditions Min. Typ
in „Anodenspannungsstabilisierung für Röhrenverstärker mit IRF840 als Längsregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
gu256x64d-7000_e01.pdf
responsibility for problems that may occur. - 31 - GU256X64D-7000 Revision Note SPEC number Date Revision DS-1315-0001-00R Mar. 28,2006 Preliminary issue DS-1315-0001-00 June. 22,2006 Initial Issue 2.3 ICC1~3 has been determined. 7.1.7 Definable area has been modified. DS-1315-0001-01 Oct.16,2006 The description
in „VFD Displays look“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tc4420.pdf
C to +125°C 300 mV OUTPUT INPUT 4.7V TC4420 GND EFFECTIVE INPUT C = 38 pF © 2001 Microchip TechnoloDS21419A TC4420/9-6 10/18/96 6A HIGH-SPEED MOSFET DRIVERS TC4420 TC4429 ABSOLUTE MAXIMUM RATINGS* Storage Temperature Range ................– 65°C to +150°C Operating Temperature (Chip) ................
in „Mosfet Driver gesucht“ · Mikrocontroller und Digitale Elektronik ·
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SC16A_User_s_Manual.pdf
designed with capabilities and features of: • 16 channels: Servo driven independently • Extendable to 32 Channels: Two controller linked together to drive 32 servos • Optional Position Reporting: User may request position of an individual servo. • Optional Servo Ramping: Choose one of 63 ramp rate (speed
in „Servomotor Steuerung per PIC“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan mit PIC12F683 und Arduino Uno R3
3,88V, R3 10k, R4 10k, C1, U2 LDO, VOUT 3,1V, GND, C2 100pF, R1 10k, U_gs 1,5V, S, G, D, IRML6402, U_ds 2V, 0V, I_ds -0,04µA, +0,05µA, PIC An, PIC aus, LED1 bis LED8, R2 220, P1 UNO_R3, SCL, SDA, AREF, GND, D13, D11, D10, D9, D8, D7, D6, D5, D4, D3, D2, D1, D0, 10, 9, 8, 7, 6, 5, 4, 3, 2, 1, 18, 17, 16, 15, 14, 13, 12, 11, 10, 25, 26, 27, 28, 29, 30, 31, 32, POWER, RESET, 5V, 3V3, GND, GND, VIN, A0, A1, A2, A3, A4, A5, -5V
in „Mit Attiny85 einen PIC Mikrokontroller ausschalten“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne