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PDF
picaxe_manual3.pdf
Interfacing Circuits ................................................................... 3 What is a PIC Microcontroller? .......................................................................... 3 Interfacing to the PIC Microcontroller ...............................................................3
in „8 leds an einen prot eines mc?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ixTDM-Schematic-PCB-v1.1.pdf
IRF7403 GND (PCINT3/OC2A/MOSI) P16015 MISO 9 CP66 SWITCH1 CR11 C5C5 (PCINT4/MISO)P I U 2 0 1 7 Z0 PIC9PIC90GND PIP601 PIRes SemiPIQ10G GND PIC501 PIC502 P I U 2 AREF0 (PCINT6/XTAL1/TOSC1) PB6U 2 0 7 QZ1Z1 22p PIP6022 10 PSQ203 (PCINT7/XTAL2/TOSC2) PB708 16 MHzCO100 NMICCPIP6033 P0 Cap Semi Z3 PIC101
in „Sammelbestellung? Mini-Platine: 3 Kanal Power-PWM mit ATMega+IR+RS485“ · Mikrocontroller und Digitale Elektronik ·
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Datei
flash_pickit3.5.txt
Currently loaded firmware on PICkit 3 Firmware Suite Version.....01.56.09 Firmware type..............dsPIC33F/24F/24H Target voltage detected Target device PIC24FJ256GB106 found. Device Revision ID = 4 Reading... The following memory area(s) will be read: program memory: start address = 0x0, end address
in „PICkit3.5 - unter Linux openSUSE Tumbleweed - nicht via lsusb sichtbar“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DoppelMagnetruehrer.PDF
4I-S2AE P2 100 nFPIU103GND PIU103GND PR0/SYNC/XTAL2/TOSC2 PI37036 CO6 J3J PR1/SYNC/XTAL1/TOSC1 PIU1037 PIC602 PIC601 P I J 3 0 1 ATxmega64A4U-AU 1 P I J 3 0 2 GND X1 10 pF P I J 3 0 3 GND X2X P I J 3 0 4 X032.768CO7 PIC702 PIC701 +3V3 +3V3 Molex 22-27-2041 10 pF P2 R101 JP3P 4k7 Vcc P I J P 3 0 2 D P0 D
in „Platine für Doppelmagnetrüher“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
bauteile_002.txt
2,00 300 74LVC244 TSSOP 50 5,00 30 74HCT138 SO Philips 30 2,00 50 NE555 SO TI 25 2,00 10 AT89C4051-24PI DIL Atmel 5 2,00 7 SX28AC/DP DIL Ubicom 7 5,00 3 PIC18F4539-I/P DIL Microchip 3 6,00 3 PIC16F88-I/P DIL Microchip 3 3,00 3 PIC16C58B/JW DIL Microchip 3 3,00 2 PIC16C56A/JW DIL Microchip 2 2,00 6 PIC18F242
in „Verkaufe diverse Bauteile“ · Markt ·
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MPASM__MPLINK__MPLIB_User_s_Guide.pdf
device number. Instruction Devices Supported Width 12 Bit PIC10F2XX, PIC12C5XX, PIC12CE5XX, PIC16X5X, PIC16C505 14 Bit PIC12C67X, PIC12CE67X, PIC12F629/675, PIC16X 16 Bit PIC18X Topics covered are: • Key to 12/14-Bit Instruction Width Instruction Sets - 12-Bit
in „Anfängerfrage zu Assembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PIC2550Config.pdf
PIC18F2550 Seite 1 von 5 PIC18F2550 PLL Prescaler Selection bits: PLLDIV = 1 No prescale (4 MHz oscillator input drives PLL directly) PLLDIV = 2 Divide by 2 (8 MHz oscillator input) PLLDIV = 3 Divide by
in „Oszillator- und Timerkonfiguration PIC 18F4550“ · Mikrocontroller und Digitale Elektronik ·
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PDF
191142-03.pdf
2020www.elektormagazine.de Walter Valentin - 15513 infoszumprojekt Wechselstrommotor Leistungsregelung Dimmer PIC Einsteiger Æ Fortgeschrittene Experte etwa 3 Stunden Standard-Laborwerk- zeuge, CCS-Compilerund PicKit-Programmieradapter von Microchip (optional) etwa 75 € Abschaltzeit, desto geringer die Leistung
in „Einstellbarer 1-kW-AC-Motortreiber“ · 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 #endif # define IRMP_PIN PORTBbits.RB4 // PIC C18 /*-----------------------------------------------
in „IRMP-Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
timertest.LST
PCH C Compiler, Version 3.219, 27641 19-Mrz-08 15:19 Filename: C:\Dokumente und Einstellungen\Alois\PIC\timertest.LST ROM used: 312 bytes (1%) Largest free fragment is 22498 RAM used: 24 (1%) at main() level 24 (1%) worst case Stack: 1 worst case (0 in main + 1 for interrupts) * 0000: GOTO 0096 * 0008
in „Problem mit Interrupt des Timer1 bei PIC18F2550“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MCP2510Report.htm
="#0000A0"><strong><em><font face="Verdana" size="2" color="#FFFFFF">Configuration Register Setup (PIC18/MCP251X) (neoVI blue/green, ValueCAN 2) </font></em></strong></td> </tr> </table> <table border="0" width="100%"> <tr> <td width="33%" bgcolor="#000000"><font face="Verdana" size="2" color="#FFFFFF
in „PIC18F2680 CAN Baudrate auf 16 kbs setzen ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
error_xc8.txt
.' "C:\Program Files (x86)\Microchip\xc8\v1.20\bin\xc8.exe" --pass1 --chip=18F45K22 -Q -G --double=24 --float=24 --emi=wordwrite --opt=default,+asm,-asmfile,+speed,-space,-debug --addrqual=ignore --mode=pro -P -N255 --warn=0 --asmlist --summary=default,-psect,-class,+mem,-hex,-file --output=default,-
in „Erklärung für Macrodefinition wird benötigt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN734.pdf
operation, last byte is an address PIC16 State Machine byte) 2 - S = 1 These PIC18 family devices use I C state machines that behave the same as PIC16 devices: - D/A = 0 - R/W = 0 • PIC18C452 Family (PIC18C242/252/442/452) • PIC18C458 Family (PIC18C248/258/448/458) - BF = 1 • PIC18C601/801 • State 2: (Write operation, last byte is a data byte) - S = 1 • PIC18F4431 Family (PIC18F2231/2431/4231/4431) - D/A = 1 • PIC18F8720 Family - R/W = 0 (PIC18F6520
in „I2C example code“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Foto einer Leiterplatte mit Beschriftungen
AC164110 ICSP->RJ11 DIP28, 40: 31, 32, 33, 34, 35, 36, 37: 2-3 DIP8, 14, 18, 20: PIC10FXXX: 31, 1, 2-3, 34, 35, 36, 37: 2-3 PIC16F57: 31, 1, 2-3, 34, 35, 36, 37: 1-2 29, 40P A 1 DIP48 40 2 39 3 DIP28 38 37 PIC16F57 34 33 31 J3 30 DIP8 29 28 DIP14 27 J5 26 DIP14 25 J6 24 DIP20 23 22 21 PIC10FXXX 请注意10F系列的方向
in „PIC Programmieren“ · Mikrocontroller und Digitale Elektronik · · Platinenfotos
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Datei
test_porta_rbtimer.asm
special one second timing system. ; This consists of three main steps; ; * subtract 256 counts from our 24bit variable ; * test if we reached the setpoint ; * if so, add 1,000,000 counts to 24bit variable and generate event. ;------------------------------------------------- ; * optimised 24 bit subtract
in „PIC16F627A assembler: PORTA verhält sich bei XOR nicht wie“ · Mikrocontroller und Digitale Elektronik ·
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PDF
40001722A.pdf
C 87Fh 8FFh 97Fh 9FFh A7Fh AFFh B7Fh BFFh 1 6 L ) S F 4 0 1 1 7 7 2 0 - a 3 e / 2 7 5 S TABLE 3-6: PIC16(L)F1703/7 MEMORY MAP (BANKS 24-31) P 4 0 C 1 BANK 24 BANK 25 BANK 26 BANK 27 BANK 28 BANK 29 BANK 30 BANK 31 2 C00h C80h D00h D80h E00h E80h F00h F80h 1 2 Core Registers Core Registers Core Registers
in „PIC16(L)F1703 low voltage Programmierung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UART-Command-Introduction-EN-1.pdf
get file“2.bin”and“3.bin”from“example- 2.bmp”“example-3.bmp” Put“1.bin”“2.bin”“3.bin”together to “Pic.BIN” by this software: http://www.spotpear.com/download/LCD/uart/UART- LCD22/Software/EzOSD_v015T9.rar Do “->6.2.3” to download “Pic.BIN”(change file“1.bin”to“Pic.BIN”)and show“example-1.bmp” If you
in „1.8" 128*160 HMI Intelligent Smart UART Serial TFT Display von Spotpear.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Controller.pdf
PIR301PIR302PIR401PIR402 GND 10K 0 Controller +3.3V Micro SD Card +3.3V +3.3VBat P01 P 01 P 71 R R PIC901PIC902 R5R R6R R7R C10110C C110C P0 BT1T CER O 2 10K 10K 10K C010U 12 P 02 Battery C1 100N w _ L PIR502PIR602 PIR702 1 PCER201PIC1202oRP g g g g g 2M g W GND GND J4J P2 S S S S S T S S GND 8 7 6 5
in „RTC Kapazitäten abgleichen, Genauigkeit erhöhen (STM32)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XPort_reference_design_and_guidelines.pdf
the XPort to any microprocessor. XPort Reference Design: The reference design uses an inexpensive PIC micro controller as the platform CPU. The XPort provides all of the benefits of network access to the control system while allowing the PIC micro controller to concentrate on its control tasks. The
in „Lantronix X-Port beschalten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ImprovingCode.pdf
Size With the MPLAB C18 Compiler © 2002 Microchip Technology Incorporated. All Rights Reserve618 ICD PIC18FXXX DFT Hands On Workshop 188 Our Goal: To understand how to reduce C application code size on PIC18 MCUs through intelligent use of MPLAB C18 and careful structuring of C code. © 2002 Microchip Technolo618
in „einfache Code-Optimierungen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Microchip_Capacitive_mTouch__Sensing_.pdf
Note that each user will produce a different capacitive shift. ©2008 Microchip Technology Inc. Page 24 Microchip Technology Web Seminar Capacitive m Touch Sensing Solutions Pads and Traces PIC MCU CV REF ≈ 2/3 DD + _C 1 S Q 1/4 VDD + R Q sensor _C 2 Via Tra(Directly beneath pad on opposite side of board
in „Layout Guide für kapazitive Tasten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HT604L.pdf
HT600 20 20 HT604L 4 10 √ — 20 20 — HT6207 20 — HT605L 5 9 √ HT600 20 20 — 20 20 — HT644L 4 14 √ HT640 24 24 24 — 24 24 HT646L 6 12 √ HT640 24 24 24 — 24 24 HT6247 24 — HT648L 8 10 √ HT640 24 24 24 — 24 24 6 2nd Oct ’97 18 3 Series of Decoders •Momentary type of data output Package Data Address Part No.
in „838MHz Sender/Empfänger Codierelektronik?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IST_TSic_ZACwire_V2.3_Digital_Output_17-Oct-06.pdf
Precision Temperature Sensor IC Technical Notes – ZACwireTM Digital Output Appendix A: An Example of PIC1 Assembly Code for Reading the ZACwire™ In the following code example, it is assumed that the Zpin is connected to the interrupt pin (PORTB, 0) of the PIC and that the interrupt is configured for falling edge interruption. This code should work for a PIC running between 3-20MHz. TEMP_HIGH EQU 0X24 ;; MEMORY LOCATION RESERVED FOR TEMP HIGH BYTE TEMP_LOW EQU 0X25 ;; MEMORY LOCATION RESERVED FOR TEMP LOW BYTE ;; THIS BYTE MUST BE CONSECUTIVE FROM TEMP_HIGH
in „digitale Tempsensoren von ZMD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TSIC_ZACWIRE.pdf
Precision Temperature Sensor IC Technical Notes – ZACwireTM Digital Output Appendix A: An Example of PIC1 Assembly Code for Reading the ZACwire™ In the following code example, it is assumed that the Zpin is connected to the interrupt pin (PORTB, 0) of the PIC and that the interrupt is configured for falling edge interruption. This code should work for a PIC running between 3-20MHz. TEMP_HIGH EQU 0X24 ;; MEMORY LOCATION RESERVED FOR TEMP HIGH BYTE TEMP_LOW EQU 0X25 ;; MEMORY LOCATION RESERVED FOR TEMP LOW BYTE ;; THIS BYTE MUST BE CONSECUTIVE FROM TEMP_HIGH
in „temperatursensor wasserdicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TSIC_ZACWIRE.pdf
Precision Temperature Sensor IC Technical Notes – ZACwireTM Digital Output Appendix A: An Example of PIC1 Assembly Code for Reading the ZACwire™ In the following code example, it is assumed that the Zpin is connected to the interrupt pin (PORTB, 0) of the PIC and that the interrupt is configured for falling edge interruption. This code should work for a PIC running between 3-20MHz. TEMP_HIGH EQU 0X24 ;; MEMORY LOCATION RESERVED FOR TEMP HIGH BYTE TEMP_LOW EQU 0X25 ;; MEMORY LOCATION RESERVED FOR TEMP LOW BYTE ;; THIS BYTE MUST BE CONSECUTIVE FROM TEMP_HIGH
in „Temperatursensor TSIC 306 TO92“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TSic_ZACwire_V2.3_Digital_Output_17-Oct-06_Software_.pdf
Precision Temperature Sensor IC Technical Notes – ZACwireTM Digital Output Appendix A: An Example of PIC1 Assembly Code for Reading the ZACwire™ In the following code example, it is assumed that the Zpin is connected to the interrupt pin (PORTB, 0) of the PIC and that the interrupt is configured for falling edge interruption. This code should work for a PIC running between 3-20MHz. TEMP_HIGH EQU 0X24 ;; MEMORY LOCATION RESERVED FOR TEMP HIGH BYTE TEMP_LOW EQU 0X25 ;; MEMORY LOCATION RESERVED FOR TEMP LOW BYTE ;; THIS BYTE MUST BE CONSECUTIVE FROM TEMP_HIGH
in „wie Daten an MSP430F1611 seriell einlesen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TSIC_ZACWIRE.pdf
Precision Temperature Sensor IC Technical Notes – ZACwireTM Digital Output Appendix A: An Example of PIC1 Assembly Code for Reading the ZACwire™ In the following code example, it is assumed that the Zpin is connected to the interrupt pin (PORTB, 0) of the PIC and that the interrupt is configured for falling edge interruption. This code should work for a PIC running between 3-20MHz. TEMP_HIGH EQU 0X24 ;; MEMORY LOCATION RESERVED FOR TEMP HIGH BYTE TEMP_LOW EQU 0X25 ;; MEMORY LOCATION RESERVED FOR TEMP LOW BYTE ;; THIS BYTE MUST BE CONSECUTIVE FROM TEMP_HIGH
in „PWM Drucksensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TSIC_ZACWIRE.pdf
Precision Temperature Sensor IC Technical Notes – ZACwireTM Digital Output Appendix A: An Example of PIC1 Assembly Code for Reading the ZACwire™ In the following code example, it is assumed that the Zpin is connected to the interrupt pin (PORTB, 0) of the PIC and that the interrupt is configured for falling edge interruption. This code should work for a PIC running between 3-20MHz. TEMP_HIGH EQU 0X24 ;; MEMORY LOCATION RESERVED FOR TEMP HIGH BYTE TEMP_LOW EQU 0X25 ;; MEMORY LOCATION RESERVED FOR TEMP LOW BYTE ;; THIS BYTE MUST BE CONSECUTIVE FROM TEMP_HIGH
in „Zacwire howto“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IST_TSic_ZACwire_V2.3_Digital_Output_17-Oct-06.pdf
Precision Temperature Sensor IC Technical Notes – ZACwireTM Digital Output Appendix A: An Example of PIC1 Assembly Code for Reading the ZACwire™ In the following code example, it is assumed that the Zpin is connected to the interrupt pin (PORTB, 0) of the PIC and that the interrupt is configured for falling edge interruption. This code should work for a PIC running between 3-20MHz. TEMP_HIGH EQU 0X24 ;; MEMORY LOCATION RESERVED FOR TEMP HIGH BYTE TEMP_LOW EQU 0X25 ;; MEMORY LOCATION RESERVED FOR TEMP LOW BYTE ;; THIS BYTE MUST BE CONSECUTIVE FROM TEMP_HIGH
in „digitaler Thermosensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TSIC_ZACWIRE.pdf
Precision Temperature Sensor IC Technical Notes – ZACwireTM Digital Output Appendix A: An Example of PIC1 Assembly Code for Reading the ZACwire™ In the following code example, it is assumed that the Zpin is connected to the interrupt pin (PORTB, 0) of the PIC and that the interrupt is configured for falling edge interruption. This code should work for a PIC running between 3-20MHz. TEMP_HIGH EQU 0X24 ;; MEMORY LOCATION RESERVED FOR TEMP HIGH BYTE TEMP_LOW EQU 0X25 ;; MEMORY LOCATION RESERVED FOR TEMP LOW BYTE ;; THIS BYTE MUST BE CONSECUTIVE FROM TEMP_HIGH
in „TSIC306 - Verständnisfrage“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IST_TSic_ZACwire_V2.3_Digital_Output_17-Oct-06.pdf
Precision Temperature Sensor IC Technical Notes – ZACwireTM Digital Output Appendix A: An Example of PIC1 Assembly Code for Reading the ZACwire™ In the following code example, it is assumed that the Zpin is connected to the interrupt pin (PORTB, 0) of the PIC and that the interrupt is configured for falling edge interruption. This code should work for a PIC running between 3-20MHz. TEMP_HIGH EQU 0X24 ;; MEMORY LOCATION RESERVED FOR TEMP HIGH BYTE TEMP_LOW EQU 0X25 ;; MEMORY LOCATION RESERVED FOR TEMP LOW BYTE ;; THIS BYTE MUST BE CONSECUTIVE FROM TEMP_HIGH
in „TSIC 206 auswerten für Anfänger“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Digitales_Wattmeter_mit_AD8307__PIC16F876__LCD-Anzeige____C.html
="./Digitales Wattmeter mit AD8307, PIC16F876, LCD-Anzeige C_files/skyer.gif" bgproperties="fixed"> <center><font face="Arial"> <h2><img src="./Digitales Wattmeter mit AD8307, PIC16F876, LCD-Anzeige C_files/uk1.gif"><font style="vertical-align
in „AD8307. Wie die Leistung kalibrieren?“ · HF, Funk und Felder ·
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PDF
BitTiming.pdf
Multiple bit sampling is off. Wakeup filter is off. Bit Timing Diagram Configuration Register Setup (PIC18/MCP251X) (neoVI blue/green, ValueCAN 2) Register Binary Hexadecimal CNF1/BRGCON1 b'00000001' 0x01 CNF2/BRGCON2 b'10111010' 0xBA CNF3/BRGCON3 b'00000111' 0x07 Configuration Register Setup (dsPIC33F,PIC24H,dsPIC30) (neoVI Red/Fire/Test/Yellow/ECU, ValueCAN 3) Register Binary Hexadecimal CICFG1 b'0000000000000001' 0x0001 CICFG2 b'0000011110111010' 0x07BA Microchip CAN Bit Timing Calculator by Intrepid
in „Pic18F4680 CAN-Bus Baudrate“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XCore407I.pdf
I2S3_SD/USART3_CK PF12<>FSMC_A6 PIU63mcu060 PF13 COC PIU20mcu0PC13<>RTC_AF1 PF13<>FSMC_A7 PIU20mcu063 PIC101 PIC102GND OSC32_IN PC14 PIU20mcu0PC14<>OSC32_IN PF14<>FSMC_A8 PIU20mcu064 PF14 103 OSC32_OUT PC15 PIU20mcu0PC15<>OSC32_OUT PF15<>FSMC_A9 PIU20mcu065 PF15 3.3V C2C 3.3V PIC201 PIC202GND PIR10 OSC_IN
in „STM32 Board von Waveshare“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
************** // PIC-Header einbinden #include <pic.h> // ************************************************************************************************ // method prototypes void updateDisplay (); void waitSomeTime ()
in „Stört mein Motor seinen PIC?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Bit_Time_Calculations_for_the_Microchip_CAN.pdf
Multiple bit sampling is off. Wakeup filter is off. Bit Timing Diagram Configuration Register Setup (PIC18/MCP251X) (neoVI blue/green, ValueCAN 2) Register Binary Hexadecimal CNF1/BRGCON1 b'00000000' 0x00 CNF2/BRGCON2 b'10111000' 0xB8 CNF3/BRGCON3 b'00000101' 0x05 Configuration Register Setup (dsPIC33F,PIC24H,dsPIC30) (neoVI Red/Fire/Test/Yellow/ECU, ValueCAN 3) Register Binary Hexadecimal CICFG1 b'0000000000000000' 0x0000 CICFG2 b'0000010110111000' 0x05B8 Generated 5:19:46 pm 06.12.2015 Microchip CAN
in „Can Baudrate 250kHz mit 8MHz Quarz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CAN-BootloaderPIC18F.pdf
Technology Inc. AN247 APPENDIX A: A SIMPLE The Firmware PROGRAMMING The firmware is an extension of the PIC18F serial boot- INTERFACE loader discussed in Microchip Application Note AN851, “A FLASH Bootloader for PIC16 and PIC18 Devices”. To demonstrate the functionality of the CAN bootloader, Two new commands
in „CAN-Bootloader für PIC18F“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CAN_uC_V2_NurCPU_24Jun2011.pdf
VSS 4 5 5 29 C19 100n CAN_H VDD 1 2C18 100n 6 VSS VDD 28 1 2 GND CAN_L 1 7 VDD RE2 27 1 8 AN7 RB0 PIC18F4685(TQFP44) RE1 AN6 1 2 R6 L3 VCC 1 8 8 26 2 7 RN6 D2 N.B. B82790-51uH RN7 2 7 9 RB1 RE0 25 3 6100R AN5 PESD1CAN 2 R7 4 1 8STBN TXD 1 3 6 10RB2 R RA5 24 4 5 AN4 C20 4n7 CANH GND 100R RB3 C C B B
in „Anforderungssammlung CAN Hausbus mit PIC µC“ · Haus & Smart Home ·
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PDF
CAN_uC_V2_01Jan2013_Stromlauf.pdf
für SPI genutzt wird. 8 VCC_EXT 2 1 D D C I I P P P P I 2 W n Nur TWI und kein SPI-Betrieb: 2 IC2 24Cxx R T n S S G G G G S R 1 e nCS_SPI einfach offen lassen. K9 1 1 1 1 P82B96 IC4 5 VCC A 1 x 6 3 1A0 VCC 8 2 3 4 5 B2 7 E R1 = Pull-UP - ggf. R7 ablöten. R VDD A1 WP R R R R Sc VCC Y GND R 1C3 2 7 1
in „Anforderungssammlung CAN Hausbus mit PIC µC“ · Haus & Smart Home ·
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PDF
B1nn.pdf
24AA01/24LC01B 1K I C Serial EEPROM Device Selection Table Description: Part VCC Max.Clock Temp. The Microchip Technology Inc. 24AA01/24LC01B Number Range Frequency Ranges (24XX01*) is a 1 Kbit Electrically
in „IPL Lampe Blitzcounter rücksetzten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Anemometer.pdf
18 1 5 RA3/VREF K5 50k 6 2 x 16 R5 2 7 RA4/T0 21 D7 5k6 RA5/AN4 RB0/INT 3 IC1.A 1 RB1 22 D6 +5V 3 PIC16F876 RB2 23 D5 K1 24 D4 RB3/PGM 1 2 P3 9 OSC1 RB4 25 6 RB5 26 R2 D1 IC6 X1 27 1k5 2 UGN3503U 10 RB6 7 4k7 OSC2 RB7 28 R1 1N4148 3 1k8 8 16MHz 8 19 R3 C2 C3 5 4 1 9 15p 15p 5 030371 - 11 SUB D9 Bild
in „Kleiner leichter Wind(richtungs)messer gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
d045050.pdf
18 1 5 RA3/VREF K5 50k 6 2 x 16 R5 2 7 RA4/T0 21 D7 5k6 RA5/AN4 RB0/INT 3 IC1.A 1 RB1 22 D6 +5V 3 PIC16F876 RB2 23 D5 K1 24 D4 RB3/PGM 1 2 P3 9 OSC1 RB4 25 6 RB5 26 R2 D1 IC6 X1 27 1k5 2 UGN3503U 10 RB6 7 4k7 OSC2 RB7 28 R1 1N4148 3 1k8 8 16MHz 8 19 R3 C2 C3 5 4 1 9 15p 15p 5 030371 - 11 SUB D9 Bild
in „windrichtung / windgeschwindigkeit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MB997.pdf
PIC1402 PIC1401 POPC54 NLPC PIU4034C4 PH1 20pF P OPC6C 6 PC6C PIU406PC6 C1616 POPPC7 PC7C PIU406PC7 PC14 PIU408 PC14-OSC32_ININ PIR220PIR2202 PIC1601 PIC1602 POPC88 PC8C PIU406PC8 PC15 PIU409 PC15-OSC32
in „Mit STM32F4 einen Laser ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
30262e.pdf
programming of user program memory, data • PIC16F83 memory, special locations used for ID, and the config- uration word. On PIC16CR8X devices, only data PIC16CR83 PIC16F84 EEPROM and CDP can be programmed. PIC16CR84 Pin Diagram PIC16F84A PDIP, SOIC
in „PGD und PGC beim PIC16F84A“ · Mikrocontroller und Digitale Elektronik ·
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Datei
spi_2_lcd.asm
---------------------------------------- ; Autor: Adrian Kauz ; Datum: 20.10.2008 ; Version: 1.1 ; PIC: 16F87A @ 8Mhz ; Funktion: Über den SPI-Bus das Display EA-DOGL128X6 ansteuern. ; Die Befehle werden per RS232 gesendet und vom PIC ; an das Display weitergeleitet. ; Update: RA4 Port als Display-Reset
in „Ansteuerung des ST7565R via PIC-16F87A (Assembler)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CAN_uC_V2_CPU_27Aug2011.pdf
3 24 R8 100R 3 6 Oder: 2 1 1 2 7 CANH GND 2 4 5 11 RB3 N N R R R R M R R R RA A RA4 23 Extern PESD2CAN, 1 0R 3 2 6 CANL VCC 3 12 13 14 15 16 1719 20 21 22 NUP2105L. Vref RXD 1 2 18 VDD R9 4K7 R10 100R Analog
in „Anforderungssammlung CAN Hausbus mit PIC µC“ · Haus & Smart Home ·
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PDF
DE2012010361.pdf
programming R15 R16 C10 R18 4 0 k 13 28 5 1 D D 100n J3 V V MCLR R19 A 1 470R 1 MCLR RB15/RP15 26 2 25 24 TEST RB14/RP14 U5 RB13/RP13 CD2 L2 VCC 3 RB9/RP9 18 RSSF 4 ISP_D 4 17 DCF- 1mH PGED1/RB0/RP0 RB8/RP8 5 ISP_C 5 16 PWM2 PGEC1/RB1/RP1 RB7/RP7 14 J2 RB6/RP6 15 U1TX ISP dsPIC33FJ32 VCC 1 GP202xSP R20 VCC
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Datei
com_adapter.htm
#8000ff"> <div class="Section1"> <h2 style="text-align: center;" align="center"><u>Schaltungen zur PIC- und AVR-Programmierung <br> über die COM-Schnittstelle</u></h2> <p> </p> <p><a href="#Sercon1"><strong><span style="font-size: 13.5pt;" lang="IT">Sercon1 fuer PIC und AVR</span></strong></a><span
in „Verbindungsfehler beim Ponyprog“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LS_DIGI_60.pdf
Einstellregler wird die Spannung am oberen Schleiferendeaufetwa3 Vein gestellt. Wenn kein geeignetes Tempe RL 24V- raturmeßgerät vorhanden ist, entspricht Bestückungs dies etwa einer Spitzentemperatur von 24V- Pori plan 350 oe.StehteinTemperaturmeßgerätmit ThermoelementzurVerfügnng, sollte man der Temperatur. Es
in „Welcher Ersatzlötkolben ist kompatibel? (24V, 60W, mit PTC)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
uTracer3plus_con_man.pdf
into the proper pads, and to use the insulating spacer as shown below. 8. As usual the pins of the PIC processor are at an angle so that the PIC doesn’t fit directly in the 40 pin socket. The best way to adjust the angle of the pins is to hold the processor at the sides and correct the angle of 20 pins
in „Röhrenprüfer/ Kennlinienschreiber utracer kaputt“ · Analoge Elektronik und Schaltungstechnik ·