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Datei
Liste.txt
5x NE555 Timer 7x 74F109N Positive J-K positive edge-triggered flip-flops 10x 74166N 16-pin DIP Shift Register 8x 74LS21 DUAL 4-INPUT AND GATE 10x 74F10N Triple 3-Input Positive-NAND Gates 2x PIC 18F458-I - P: MCU, PICmicro, 32 KB, 40 MHz, DIL-40 3x UVE 3130-10 ????? 5x Intel P8052AH Cpu 54x DESP10 ES2 Safe ware Controller 2x Pic16f628a Program Memory Size (KB) 3.5 // SRAM Bytes 224// EEPROM in bytes 128 //1-UART, 3x PIC 12F683 MCU, PICmicro, 3,5
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PDF
Last_board.pdf
11:20 Sheet: 1/1 5 6 7 8 R39 R1 1 2 3 4 A L C 5 _ U1 D O PIC32MZXXXXEC(E/F T P +UB 2 U 1 C ADC_1_NTC1_TEMP R31 50 1 AN17/ETXEN/RPE5/PMD5/RE5 AN18/ S ADC_2_NTC2_TEMPR17 50 2 AN16/ETXD0/PMD6/RE6 TRD3/SQID3/ERXCLK/EREFC +
in „Schaltplankontrolle Last- + HMI-Board“ · Mikrocontroller und Digitale Elektronik ·
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picaxe_manual3.pdf
and 99 and the number will be displayed on the two displays when sub-procedure ‘clock’ is called. +5V Pin 1 Pin 0 1 16 1 16 2 Clock +5V 15 2 Clock +5V 15 Reset Reset 3 14 3 14 4 4 13 4 4 13 2 c 2 c 5 6 12 5 6 12 Out B b Out B b 6 f e 11 6 f e 11 7 10 7 10 g a g a 8 Gnd d 9 8 Gnd d 9 0V Revolution EducatEmail
in „8 leds an einen prot eines mc?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TB053_Generatirng_High_Voltage_with_PIC16C781.pdf
stay in Discontinuous mode for the given input and load conditions. The programmable functions of the PIC16C781/782 are considered together with the design of the boost power circuit. The following options in the PIC16C781/782 are CLOSING THE LOOP WITH THE selected which affect the DC-DC converter operation: PIC16C781/782 Internal 4 MHz oscillator is selected The control loop is closed with the PIC16C781/782. PWM clock set to F OSC /128 Figure 2 shows the configuration within the Maximum duty cycle set to 75%
in „Nixie Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HORIBA_Schreibtisch_Rev1.2.pdf
IRFZ34 C X1-2 C white AC1 +15V +5V FET2 B1 IRFZ34 PJ16B6 - + GNDI AC2 R1 white F2 220 GND GND X1-3 3 + +C5 750mA C4 7 8 1000µ/25V 4µ7/100V D5 220V AC RN3D 100k V5,1 1 2 D7 RN3A 100k C3 3 4 GND GND GND + RN3B
in „Höhenversllbarer Schreibtisch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lpc2468_evb.PDF
I2S_LROUT GND GND GND GND C2 I2 11ID1GPIO5 / I2S_MCLK * C1616 * C1717 12ID1GPIO6 V2V2 C0 15p I0 15p PID1GPIO7 1N4148 4 5 16ID1DGND CVDD PI71005 PIV20K PIV20A VCC GND GND 2PID10020 CVDD PID10024 2PID10021 CVDD PID10031 VCC 2PID1DGND
in „Kann sich jemand mein Schema anschauen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AES-S6MB-LX9-G_SCH_RevC.PDF
Services Title: Sheet 4 - FPGA Bank 0 Size: Document Number: Rev: B S6-LX9-SCH-C C Date8/2/2012 Shee4 of10 1 2 3 4 5 6 1 2 3 4 5 6 A A U4B BANK 1 F15 FPGA_PMOD1_P1 +3.3V IO_L01p_1_A25PIF16F15 FPGA_PMOD1_P2 IO_L01n_1_A24_VREF PIC17F16 FPGA_PMOD1_P3 C1 I2 P01 92 IO_L29p_1_A23_M1A13
in „Pulse Generator nicht genau genug, brauche Hilfe“ · FPGA, VHDL & Co. ·
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PDF
16f88.pdf
Bandgap - 2-Comparatorsw/SRLatch, Bandgap - 2-Comparators, Bandgap - No, OpAmp; Yes, OpAmp; 1A/D, 12x10-bit @ Yes, OpAmp; 1A/D, 12x10-bit @ 1A/D, 7x10-bit @ 30ksps 100ksps; 1D/A, 1x5-bit @ ksps 100ksps; 1D/A, 1x5-bit @ ksps Digital Comm. Peripherals 1-UART, 1-A/E/USART, 1-SPI, 1-I2C, 1-UART, 1-A/E/USART
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PDF
compactflashOnPicArticle.pdf
an inexpen- sive in-circuit debugger is available for these flash memory parts. The basics of the PIC are the same as they are for any other part in the Figure 1—Here is the PIC-to-CompactFlash physical PIC16xxx family, includ- interface. There are eight data lines, three address lines, ing a RISC design
in „COMPACT FLASH-Card“ · Mikrocontroller und Digitale Elektronik ·
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PDF
compactflashOnPicArticle.pdf
an inexpen- sive in-circuit debugger is available for these flash memory parts. The basics of the PIC are the same as they are for any other part in the Figure 1—Here is the PIC-to-CompactFlash physical PIC16xxx family, includ- interface. There are eight data lines, three address lines, ing a RISC design
in „Indentify Drive bei CF-Karte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Elektronische_Waage_PIC18F4520.pdf
Assembler programmiert werden, was an den Anfänger recht hohe Forderungen stellt. • Die moderneren 16-Bit-Kern-Typen heißen "PIC18F...". Sie sind rundweg besser ausgestattet und können problemlos in C programmiert werden, da sie viel Programmspeicher haben und ein C-Compiler für nichtkommerzielle Zwecke
in „Elektronische Waage“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
d03000.pdf
Albstadt Seite 11 von 13 Fon +49 7431 939808, info@schwabenplan.com, www.schwabenplan.com D030 00 5. STÜCKLISTE Bauteil Wert Bezeichnung B1 RB1A Brückengleichrichter C1 1000µF / 35 Volt Elko C2 100nF Kondensator C3 100nF Kondensator C4 100nF Kondensator C5 100nF Kondensator C10 1µF Kondensator C11
in „PIC18F97J60 als Webserver“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XT-LP_fuer_3_DOM_Plan.pdf
DiskOnModule 2000 +5V 8x10k RN3 1 2 C 2 C 2 C 1 C 3 c 3 c 3 c3 c3 c3 c GND IC6 C C C C V V V V V V 1 V V V V NC IC1PIC2PIC3PIC4PIC5P IC6P IC7P C1 C2 C3 C4 C5 C6 C7 A16 2 A16 D D D D A15 3 A15 0 G 0 G 0 G 7 G 6 N 6 N 6 N
in „Decodier-Logik neu anpassen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
tft.c
(REG_TOUCH_TRANSFORM_C, 0xfff60aa5); EVE_memWrite32(REG_TOUCH_TRANSFORM_D, 0x00000095); EVE_memWrite32(REG_TOUCH_TRANSFORM_E, 0xffffdcda); EVE_memWrite32(REG_TOUCH_TRANSFORM_F, 0x00829c08); #endif #if defined(EVE_EVE2_35G)
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Datei
16F872.H
// HEADER FILE #if !defined ICD_DEBUG && !defined ICD2_DEBUG #pragma chip PIC16F872, core 14, code 2048, ram 32 : 0xBF /0 /3 #elif defined ICD2_DEBUG #pragma chip PIC16F872, core 14, code 0x700, ram 32 : 0xBF /0 /3 // last 256 locations are reserved for debugging //RESERVED RAM LOCATIONS char ICD2R1 @ 0x70; char reservedICD2[11] @ 0xB5; // reserved RAM for ICD2 #pragma stackLevels 7 // reserve one level for debugging #else /* ICD_DEBUG */ #pragma chip PIC16F872, core 14, code 0x700, ram 32 : 0xBF /0
in „Probleme beim Compilieren von .c zu .hex“ · Mikrocontroller und Digitale Elektronik ·
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Datei
memory.c
Information : Product Revision : PIC10 / PIC12 / PIC16 / PIC18 MCUs - 1.81.7 Device : PIC18F16Q41 Driver Version : 1.1.0 The generated drivers are tested against the following: Compiler : XC8 2.31 and above MPLAB : MPLAB X 5.45 */ /* (
in „MPLab X IDE und Hi-Tech Compiler PICC18“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mt6_06.pdf
read-out of a 4 wire resistive touch screen. 3.2 Serial EEPROM (optional) MT6N provides a serial EEPROM (X24C16- Xicor) to be used as a non-volatile memory. It has a size of 16KBit and it is internal organized as 2048 x 8. The X24C16 offers a serial interface and a software protocol allowing operation on
in „CAN-Bus Ansteuerung über C# - Compact Framework“ · Softwareentwicklung ·
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PDF
91055b.pdf
in order: TB054, TB055, TB056, TB057, TB058 FIGURE 1: PS/2 TO USB MOUSE TRANSLATOR HARDWARE DIAGRAM PIC16C745/765 C1** OSC1 VUSB C3 200 nF C2** XTAL 6 MHz Host OSC2 R1 1.5k PS/2 Female USB Cable 100 Ω D- D- Clock D+ D+ 6 5 5 Data RC0 VSS * C4 Gnd 4 3 3 RC1 +5VDC 4 0.1 µF 2 1 1 VDD * *Note: There are twoSS
in „MC mit USB Interface“ · Mikrocontroller und Digitale Elektronik ·
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Datei
RFM70.h
/********************************************************* copyright(c) 2010 Title: RFM70 simple example based on PIC c Current version: v1.0 Function: RFM70 demo processor: PIC16F690 Clock: 8M Crystal Author: baiguang(ISA) Company: Hope microelectronic Co.,Ltd. Contact
in „Hat jemand Erfahrung mit dem 2,4GHz-Transceiver RFM70?“ · HF, Funk und Felder ·
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Datei
memory.c
/** MEMORY Generated Driver File @Company Microchip Technology Inc. @File Name memory.c @Summary This is the generated driver implementation file for the MEMORY driver using PIC10 / PIC12 / PIC16 / PIC18 MCUs @Description This file provides implementations of driver APIs for MEMORY. Generation Information : Product Revision : PIC10 / PIC12 / PIC16 / PIC18 MCUs - 1.81.7 Device : PIC18F45K80 Driver Version : 2.04 The generated drivers are tested against the following: Compiler : XC8 2.31 and above MPLAB : MPLAB X 5.45 */ /* (c
in „MPLAB X IDE Frage C code Programmierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
how_to_use_cdm_2.pdf
very clean output signals. It is not essential to use the PIC16C84 type speci- fied in the diagram, the 54, 56, 61 and 71 X1 types can all be used, but some minor LCD MODULE changes may need to be made to one or two of the pin connections. However, it is best to experiment D7 D6 D5 D4 D3 D2 D1 D0 E R/W RS Vee VddVss with the PIC16C84 since it is the 14 13 12 11 10 9 8 7 6 5 4 3 2 1 EEPROM (Electrically Erasable Pro- +5V grammable Read Only Memory) version of the microcontroller
in „Dokumentation gesucht (UC121902-TNARX-A)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
resteliste_2.pdf
Bezeichnung Menge Gehäuse Hersteller Bezeichnung Angebot 24C02 WMN6P 30 SO8 2 KBit (256 x 8 Bit) 3,00 € 28F02DA 25 PLCC40 256K *8 Flash 8,00 € 74FCT244 50 SO20 DigitalIC 5,00 € 74HC373DW 50 SO20 TTL 5,00 € 74HC374D 50 SO20 TTL 5,00 € 74HCT4051 50 DIL16 TTL 5,00
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PDF
uC51_UEdit_T_Deck_s.pdf
Command Line Arguments = Category&02 = COMPILER OPTIONS Processor = Intel MCS51 (8051-family)|Dallas DS80C390|Dallas DS80C400|Freescale/Motorola HC08|Zilog Z80|GameBoy Z80|Atmel AVR|Microchip PIC 14- bit (p16f84-family)|Microchip PIC 16-bit (p18f452-family)|Toshiba TLCS-900H|Phillips XA51 Compiler Options
in „Wickenhäuser uC51 und UltraEdit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
191142-03.pdf
PIC18F45K22-E/P 1 4 4 4 4 4 1 3 RA1/AN1/C12IN1- OLED1 32 VDD RA2/AN2/VREF-/CVREF/C2IN+ 4 1 RA4/T0CKI/C1OUT 6 ENC1A VCC 11 VDD RA5/AN4/SS/HLVDIN/C2OUT 7 SDA 4 R8 C10 C11 12 OSC2/CLKOUT/RA6 14 3 C7 100n 100n VSS OSC1/CLKIN/RA7 13 R4 R3 SCL 1µ 1 31 VSS RC0/T1OSO/T13CKI 15 7 7 GND 50V RC1/T1OSI/CCP2 16 4 4 2 RC2/CCP1/P1A 17 K2 1 30 ENCB 2 RD7/PSP7/P1D C1 3 RD6/PSP6/P1C 29 ENCA C2 C3 100n 4 PGD 40 RC3/SCK/SCL 18 SCL 100n 100n 5 PGC 39 RB7/KBI3/PGD RC4/SDI/SDA 23 SDA RB6/KBI2/PGC RC5/SDO 24 6 C4 RC6/
in „Einstellbarer 1-kW-AC-Motortreiber“ · Mikrocontroller und Digitale Elektronik ·
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PDF
rfm12b_programmieranleitung.pdf
Program b1..b0: select band b1 b0 band[MHz] 0 0 Reserved 0 1 433 1 0 868 1 1 915 x3..x0: select crystal load capacitor x3 x2 x1 x0 load capacit[pF] 0 0 0 0 8.5 0 0 0 1 9.0 0 0 1 0 9.5 0 0 1 1 10.0 …… …… 1 1 1 0 15.5 1 1 1 1 16.0 3. Power Management Command bit 15 14 13 12 11 10 9 8
in „RFM 12B Projekt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Konsolenausgabe.txt
../../../downloads/binutils/libiberty/md5.c -o pic/md5.o; \ else true; fi if [ x"" != x ]; then \ gcc -c -DHAVE_CONFIG_H -g -O2 -I. -I../../../downloads/binutils/libiberty/../include -W -Wall -Wwrite-strings -Wc++-compat -Wstrict-prototypes
in „cannot read spec file 'device-specs/specs-atmega4808'“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MB1075.pdf
0..15] PF[ ..15] PA101 PIU50102PA10 PD10 PIU5079 PD10 PB1B1 G5G X18MHz PA111 PIU50103PA11 PD11 PIU5080 PD11 PC7C7 G6G PA4A4 VSYNCNC P VSYNC Y N C PH1H1 PISB20PISB2002OSC_OUTOUT PIR5701PIR5702 PIC2101 PIC2102 PPGG[0.. 5]110[ ..15] PA121 PIU50104PA12 PD12 PIU5081
in „.net auf STM32F429ZI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HORIBA_Schreibtisch_Rev1.1.pdf
4k7 RES1 1000µ/16V 1 3 RN1 1 C "AB" ST3 BU3 20,00K 5 , 1 2 3 4 HS RN2 D 5 T2 5 2 4 7 100k Z C4 X1 0 MSTBV4 M1 3 1 0 0 BAC1 AC2 A 1 2 3 3 1 2 5 IC2 R 2 8 S + - F 0 8 7 6 M2 1 4 ZF5,1D6 D B 7 "AUF" 6 PIC16F628SO R5 R4 PJ16B6
in „Höhenversllbarer Schreibtisch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HORIBA_Schreibtisch_Rev51.3l.pdf
4k7 RES1 1000µ/16V 1 3 RN1 1 C "AB" ST3 BU3 20,00K 5 , 1 2 3 4 HS RN2 D 5 T2 5 2 4 7 100k Z C4 X1 0 MSTBV4 M1 3 1 0 0 BAC1 AC2 A 1 2 3 3 1 2 5 IC2 R 2 8 S + - F 0 8 7 6 M2 1 4 ZF5,1D6 D B 7 "AUF" 6 PIC16F628SO R5 R4 PJ16B6
in „Steuerung für höhenverstellbaren Schreibtisch“ · Projekte & Code ·
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Datei
16F877A.H
char ICD2R1 @ 0x70; char reservedICD2[11] @ 0x1E5; // reserved RAM for ICD2 #pragma stackLevels 7 // reserve one level for debugging #else /* ICD_DEBUG */ #pragma chip PIC16F877A, core 14, code 0x1F00, ram 32 : 0x1FF
in „Servomotor Steuerung per PIC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Soil_Moisture_Sensor_Schematic.pdf
1k NVU DTR 23 DTR CR4 5V_USB 5V_USB R25 PI610 22 PR41 PI20 P O T X D P21 47k C22 PIC10 VDD DSR PII194 RTS P 100n C23 RTS PII203 NLR EN VBUS 1 IC22 CO2 PC PIC10 VIO CTS PII202 CP1 D- 2 D- 1 I/O1 I/O1 6 CC P0100n RI/CLK 1 NLT
in „Pflanzensensor Akkulaufzeit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CAN-BootloaderPIC18F.pdf
NAME=gpr3 START=0x300 END=0x3FF DATABANK NAME=gpr4 START=0x400 END=0x4FF DATABANK NAME=gpr5 START=0x500 END=0x5FF ACCESSBANK NAME=accesssfr START=0xF80 END=0xFFF PROTECTED C18 Linker Script // Sample linker command file
in „CAN-Bootloader für PIC18F“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DoppelMagnetruehrer.PDF
Drawn By: 1 2 3 4 1 2 3 4 5 6 7 8 COX10Z X1_Z PI710Z06 PIX12Z01 PIX10Z08 PIX10Z03 PIX10Z09 PIX10Z04 33 P D4 PIX10Z010 PIX10Z05 X1X COD GND P I X 1 0 5 D1 MPE Garry 374-1-010-0-NTX-KT0 A IDP I3X 1 0D+ NXPSemiconductors 2RTR5V0U2X
in „Platine für Doppelmagnetrüher“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
support matrix. This demo can be modified for use on other hardware platforms. Complier: Microchip C18 (for PIC18), XC16 (for PIC24/dsPIC), XC32 (for PIC32) Company: Microchip Technology, Inc. Software License Agreement: The software supplied herewith by Microchip Technology Incorporated (the "Company
in „GPIB-nach-USB-Konverter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
12-2012_Weihnachtsbaum.pdf
Um möglichst viele abwechslungsreiche Effekte speichern zu kön- 0 5 4 3 2 1 0 7 6 5 4 3 2 1 0 nen, hat der Autor für die Steuerung den Mikro- B A A A A A A C C C C C C C C 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 controller PIC18F2685 von Microchip gewählt, der K1 einen 96 KB großen Programmspeicher mitbringt. K4 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 Von der mehr als 50 Minuten dauernden Licht- 0 5 4 3 2 1 0 7 6 5 4 3 2 1 0 B A A A A A A C C C C C C C C show wird der Programmspeicher fast vollstän- dig belegt.
in „Alternative zu PIC18F2685“ · Mikrocontroller und Digitale Elektronik ·
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Datei
irmpconfig.h
------------------------------------------------------------------- * Change hardware pin here for PIC C18 or XC8 compiler *--------------------------------------------------------------------------------------------------------------------------------------------------- */ #elif defined (PIC_C18) // use RB4 as IR input on PIC (C18 or XC8 compiler) # if defined(__12F1840) # define IRMP_PIN RA5 // on 12F1840 with XC8 compiler # else # define IRMP_PIN PORTBbits.RB4 // PIC C18 # endif /*--------------------------------------
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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Datei
DEE_Emulation_16-bit.c
* It is designed for Microchip Technology 16-bit PIC and dsPIC J devices * which currently include PIC24F, PIC24H and dsPIC33 products. The * project is initially configured to use PIC24FJ128GA010 on the Explorer * 16 Development Board. To use
in „PIC24xxxEP + emulating EEPROM (AN1095)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
frq_intrc.asm
******* ; Das Programm beginnt mit der Initialisierung Init ; Komperatoreingange (default ein) des PIC16F628a ausschalten MOVLW B'00000111' ; alle Comparatoreingaenge aus MOVWF 0X1f ; bei PIC16F62X bsf STATUS, RP0 ; Bank 1 movlw Ini_opt ; pull-up on movwf OPTION_REG movlw B'11111000' ; RA0 .. RA2 outputs
in „Frequenzzähler 1Hz-100khZ“ · Mikrocontroller und Digitale Elektronik ·
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PDF
si-prog-v2_2.pdf
U14 1 A0 VCC 8 2 A1 TEST 7 3 A2 SCL 6 4 GND SDA 5 JP1 SOCKET-SO8 JUMP3 Select power ext/batt U10 8 VCC SDA 1 1 2 3 7 A0 SCL 2 6 A1 Tout 3 Q5 5 A2 GND 4 BC557 C14 100nF SOCKET-DIP8 R14 10K BT1 J5 9V-BAT R10 C21 1 1K U9 PIC16Fxx J8 B U4 2 1 RA2 RA1 18
in „Grundlagen: Teilen binär Teil 1 - Vorzeichenlose Ganzzahlen“ · Projekte & Code ·
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PDF
eeprom_progger_schaltplan.pdf
U14 1 A0 VCC 8 2 A1 TEST 7 3 A2 SCL 6 4 GND SDA 5 JP1 SOCKET-SO8 JUMP3 Select power ext/batt U10 8 VCC SDA 1 1 2 3 7 A0 SCL 2 6 A1 Tout 3 Q5 5 A2 GND 4 BC557 C14 100nF SOCKET-DIP8 R14 10K BT1 J5 9V-BAT R10 C21 1 1K U9 PIC16Fxx J8 B U4 2 1 RA2 RA1 18
in „Eeprom-Progger unter XP will keine 24Cxx bearbeiten“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.txt
_OUT_ADR_LOW 0x40A #define USB_BD1_OUT_ADR_HIGH 0x40B #define USB_BD1_IN_STATUS 0x40C //EP1 Adressen fuer den SIE Buffer (PIC to SIE) #define USB_BD1_IN_LAENGE 0x40D #define USB_BD1_IN_ADR_LOW 0x40E #define USB_BD1_
in „LPC1769 USB einschalten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EMS_PIC.pdf
T1 2 3 6 7 4 BC847 EMS_GND EMS_GND 5 7 EMS_GND R 4 EMS_GND V 5 1 8 + 2 VDD1 VDD2 7 EMS_5V 232_RX 3 VOA VIA 6 EMS_232_RX 232_TX 4 VIB VOB 5 EMS_232_TX GND1 GND2 EMS_GND GND C C X1-1 X2-1 X3-1 X1-2 X2-2 X3-2 X1-3 X2-3 X3-3 X1-4 X2-4 X3-4
in „Buderus EMS-"Gateway" mit PIC18F / Sammelbestellung“ · Haus & Smart Home ·
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PDF
Interfacing_the_Serial_RS232_Port.pdf
== 1024) bufferout = 0; printf("%c",ch);} if (kbhit()){c = getch(); outportb(PORT1, c);} } while (c !=27); outportb(PORT1 + 1 , 0); /* Turn off interrupts - Port1 */ outportb(0x21,(inportb(0x21) | 0x08)); /* MASK IRQ using PIC */ /* COM1
in „fehlerfreie UART-Übertragung?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
generic_hid.c
0000 from I2C-LED Data Sheet //WriteI2C(0x70); // writes one byte to I2C bus Delay10TCYx( 5 ); //instruction byte (write = 0000 0000), meaning: 1st data to control register, 2nd to digit1, 3rd to digit2... WriteI2C
in „PIC18F generic HID - Probleme mit USB und I2C-Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Hauptplatine.pdf
9 VCC PI30010 PORX PIP1504 PIP12011 PIU109 RESET AVCC PI32030 C0 Display PIP12022 PIC401 PIC402 AREF PIU103210 C1010 Q3 Summer Cap P12 PIU1012 PIU1031 C133 C2 Cap GND PIQ102 Q1Q1 C 22pF Y1Y PIU1013XTAL2 GND PIU101112 Cap 100nF BC547 C C5C 1 16MHz XTAL1 GND 100nF PIC501 PIC5020 VCC VCC Q0 ATmega16-16PC GND Cap 22pF 02 R2 GND R6R6 R5R5 Res2 Res2 P1616 P181 01K7 R14K7 PIP16011 Pin 1 PIP18011 2 PIP1802 Pin 99 PIP16022 GND Pin 3 PIP18033 4 PIP1804 Pin 11 PIP16033 Pin
in „AVR Wecker mit Netzwerk“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Hauptplatine.pdf
VCC PI30010 RX PIP1504 PIP12011 PIU109 RESET AVCC PI32030 C0 Display PIP12022 PIC401 PIC402 AREF PIU103210 C1010 Summer Cap P12 PIU1012 PIU1031 C133 C2 Cap GND Q0 C 22pF Y1Y PIU1013XTAL2 GND PIU101112 Cap 100nF PIQ102 Q1Q1 C C5C 1 16MHz XTAL1 GND 100nF BC547B PIC501 PIC5020 VCC VCC ATmega16-16PC GND Q3 Cap P1919 22pF 02 R2 PORX PIP1901 R6R6 R5R5 PIP1902 Res2 Res2 P1616 POTX PIP1903 GND P181 01K7 R14K7 PIP16011 Pin 1 PIP18011 2 PIP1802 Pin 99 PIP16022 RS232 GND
in „AVR Wecker mit Netzwerk“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Buchcover PIC Controller
THIESER/FINKLER PIC Controller PIC 16C5X, PIC 16C7X, PIC 16C84 PICs programmieren (PIC-PROGRAMMER, Miniprogrammer für PIC16C84) Befehlsbeschreibung und Programmierbeispiele Entwicklungswerkzeuge für MS-DOS und Windows Hardwarebeschaltung Befehlsliste, Bezugsquellen, PIC-Controller im Internet Franzis'
in „[VS] Elektronikbücher“ · Markt · · Fotos
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PDF
Geiger_PIC18F2550.pdf
memory (8K of program memory will be used to store data) 4. Built-in Inter-Integrated 2 Circuit (I C) bus capability 5. Speeds up to 48MHz 6. Small 28-pin footprint (also surface mount) 7. Self programmability 8. Four separate timers 9. Low cost 10. Free C compiler and subrou- tine libraries available
in „Geiger Counter Sparkfun“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TMS320DM270_.pdf
10-bit DAC for NTSC/PAL DSC system TM Real-time AF, AWB, AE statistics for On-chip 90-MHz TI TMS320C54X composite video output DSC system DSP core with on-chip program/data Channel serial audio codec interface memory (128 Kbytes) (McBSP) Supports 16-bit analog front ends On-chip image-processing buffers
in „TMS320DM270 Processor: Digital Still Cameras“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
include <gtk/gtk.h> #include <windows.h> #include <math.h> #define XMAX 80 #define YMAX 50 #define SZ_PIC_X 8 #define SZ_PIC_Y 16 #define MUL_PIC_X 25 #define MUL_PIC_Y SZ_PIC_Y #define OFF_PIC_X 13 #define OFF_PIC_Y 5 char buffer[XMAX][YMAX]; GtkWidget *window; cairo_surface_t *image; double zoomX=1.28
in „[GTK+] Animation mit Cairo viel zu langsam“ · Softwareentwicklung ·