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Artikel
ARM-ASM-Tutorial
800010a 8000112: f000 f847 bl 80001a4 8000116: f000 f84b bl 80001b0 800011a: f44f 7180 mov.w r1, #256 ; 0x100 800011e: 4808 ldr r0, [pc, #32] ; (8000140 ) 8000120: 6001 str r1, [r0, #0] 8000122: 4808 ldr r0, [pc, #32] ; (8000144 ) 8000124: f000 f858 bl 80001d8 8000128: bf30 wfi 800012a: e7fd b.n 8000128
pc, #68] ; (80001c0 ) 800017c: 7001 strb r1, [r0, #0] 800017e: f011 0101 ands.w r1, r1, #1 8000182: bf0c ite eq 8000184: f44f 7180 moveq.w r1, #256 ; 0x100 8000188: f04f 7180 movne.w r1, #16777216 ; 0x1000000 800018c: 480f ldr r0, [pc, #60] ; (80001cc ) 800018e: 6001 str r1, [r0, #0] 8000190: 4770 bx
Artikel ·
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DELL_VOSTRO_3300__WIstron_Winery13_MB_DIS_.pdf
BA20 DMI2RXP D [8] DMI_CTX_PRXP3 BG20 DMI3RXP FDI_RXP0 BB18 FDI_TXP0 FDI_TXP0 [8] PM_BATLOW#_R 1 2 BF17 FDI_TXP1 FDI_TXP1 [8] R2201 10KR2J-3-GP [8] DMI_PTX_CRXN0 BE22 FDI_RXP1 BC16 FDI_TXP2 FDI_TXP2 [8] PCIE_WAKE# 1 2 [8] DMI_PTX_CRXN1 BF21 DMI0TXN FDI_RXP2 BG16 FDI_TXP3 FDI_TXP3 [8] R2202 1KR2J-1-GP
in „Bios programmieren mit Dual Bios Main.Bin und EC.Bin ?“ · Softwareentwicklung ·
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Acer_Aspire_5742G_Compal_LA-5893P_Rev0.1_Schematic.pdf
BJ14 +1.05VS_PCH DMI3TXP FDI_INT H_FDI_INT 4 SUS_PWR_DN_ACK I I R648 10K_0402_5% R600 M D FDI_FSYNC0 BF13 H_FDI_FSYNC0 4 BH25 DMI_ZCOMP D F 1 2 PCH_GPIO72 49.9_0402_1% FDI_FSYNC1 BH13 H_FDI_FSYNC1 4 R628 8.2K_0402_5% 1 2 DMI_COMP BF25 DMI_IRCOMP 1 2 EC_SWI# FDI_LSYNC0 BJ12 H_FDI_LSYNC0 4 R198 10K_0402_
in „Laptop Akkus ausbauen und mit Netzteil betreiben“ · PC Hard- und Software ·
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ADIS16250_16255.pdf
CONVERSION RATE Minimum ConversionTime 3.906 ms Maximum ConversionTime 7.75 sec MaximumThroughput Rate 256 SPS MinimumThroughput Rate 0.129 SPS POWER SUPPLY OperatingVoltage Range,V CC 4.75 5.0 5.25 V Power Supply Current Normal mode at 25°C 18 mA Fast mode at 25°C 44 mA Sleep mode at 25°C 425 μA 1ADIS16255
in „Bias bei Gyro“ · Mikrocontroller und Digitale Elektronik ·
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sst_flash_39vf010_1Mbit.pdf
2.7V 512Kb / 1Mb / 2Mb / 4Mb (x8) MPF memories Data Sheet FEATURES: • Organized as 64K x8 / 128K x8 / 256K x8 / 512K x8 Fast Erase and Byte-Program: Single Voltage Read and Write Operations – Sector-Erase Time: 18 ms (typical) – Chip-Erase Time: 70 ms (typical) – 3.0-3.6V for SST39LF512/010/020/040 – 2.7
in „Flashspeicher aus USB-Stick mit ATMega8 nutzen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dragon-fuse.txt
--------- ---- ----- ----- ---- ------ ------ ---- ------ ----- ----- --------- eeprom 65 6 4 0 no 256 4 0 4000 4500 0xff 0xff Block Poll Page Polled Memory Type Mode Delay Size Indx Paged Size Size #Pages MinW MaxW ReadBack ----------- ---- ----- ----- ---- ------ ------ ---- ------ ----- ----- ----
in „avrdude fuses aus debugwire schreiben“ · Mikrocontroller und Digitale Elektronik ·
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The-ESP8266-Book-September-2015.pdf
file for the ESP. Page 65 • -bm <qio|qout|dio|dout> – Set the flash chip interface mode. • -bz <512K|256K|1M|2M|4M|8M|16M|32M> – Set the flash chip size. • -bf <40|26|20|80> – Set the flash chip frequency. • -bs <section> – Read the ELF section and write to the firmware image. • -bc – Close the firmware
in „ESP8266 Freies eBook August 2015 'Kolban'“ · Mikrocontroller und Digitale Elektronik ·
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SSD1963_1.1.pdf
[7:0] : Set the PWM frequency in system clock (POR = 00000000) PWM signal frequency = PLL clock / (256 * PWMF[7:0]) / 256 PWM[7:0] : Set the PWM duty cycle (POR = 00000000) PWM duty cycle = PWM[7:0] / 256 for DBC disable (0xD0] A0 = 0 If DBC enable (0xD0] A0 = 1, these parameter will be ignored Note
in „TFT- Ansteuerung ET0350G0DH6 (Glyn) mit HX8238 LCD Driver und Microchip Graphic Lib“ · Mikrocontroller und Digitale Elektronik ·
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SSD1963_V014.pdf
[7:0] : Set the PWM frequency in system clock (POR = 00000000) PWM signal frequency = PLL clock / (256 * (PWMF[7:0] + 1)) / 256 PWM[7:0] : Set the PWM duty cycle (POR = 00000000) PWM duty cycle = PWM[7:0] / 256 for DBC disable (0xD0] A0 = 0 If DBC enable (0xD0] A0 = 1, these parameter will be ignored
in „SSD1963 Datenblatt“ · Mikrocontroller und Digitale Elektronik ·
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ttester.pdf
3.1mA Vgs=2.2V Idss=24-60mA 2N5459 N-JFET 2.1mA Vgs=1.5V 2.1mA Vgs=1.5V 2.1mA Vgs=1.5V Idss=4-16mA BF256C N-JFET 3.4mA Vgs=2.4V 3.4mA Vgs=2.4V 3.4mA Vgs=2.4V Idss=11-18mA BF245A N-JFET 1.1mA Vgs=.75V 1.1mA Vgs=0.75V 1.1mA Vgs=0.75V Idss=2-6mA BF245B N-JFET 2.5mA Vgs=1.7V 2.5mA Vgs=1.7V 2.5mA Vgs=1.7V Idss=6-15mA BF245C N-JFET 3.9mA Vgs=2.7V 3.9mA Vgs=2.7V 3.9mA Vgs=2.7V Idss=12-25mA J175 P-JFET 3.2mA Vgs=2.2V 3.2mA Vgs=2.2V 3.2mA Vgs=2.2V Idss=7-60mA 2N5460 P-JFET 0.78mA Vgs=0.54V 0.77mA Vgs=0.54V 0.78mA Vgs=0.54V
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ttester.pdf
3.1mA Vgs=2.2V Idss=24-60mA 2N5459 N-JFET 2.1mA Vgs=1.5V 2.1mA Vgs=1.5V 2.1mA Vgs=1.5V Idss=4-16mA BF256C N-JFET 3.4mA Vgs=2.4V 3.4mA Vgs=2.4V 3.4mA Vgs=2.4V Idss=11-18mA BF245A N-JFET 1.1mA Vgs=.75V 1.1mA Vgs=0.75V 1.1mA Vgs=0.75V Idss=2-6mA BF245B N-JFET 2.5mA Vgs=1.7V 2.5mA Vgs=1.7V 2.5mA Vgs=1.7V Idss=6-15mA BF245C N-JFET 3.9mA Vgs=2.7V 3.9mA Vgs=2.7V 3.9mA Vgs=2.7V Idss=12-25mA J175 P-JFET 3.2mA Vgs=2.2V 3.2mA Vgs=2.2V 3.2mA Vgs=2.2V Idss=7-60mA 2N5460 P-JFET 0.78mA Vgs=0.54V 0.77mA Vgs=0.54V 0.78mA Vgs=0.54V
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ttester.pdf
3.1mA Vgs=2.2V Idss=24-60mA 2N5459 N-JFET 2.1mA Vgs=1.5V 2.1mA Vgs=1.5V 2.1mA Vgs=1.5V Idss=4-16mA BF256C N-JFET 3.4mA Vgs=2.4V 3.4mA Vgs=2.4V 3.4mA Vgs=2.4V Idss=11-18mA BF245A N-JFET 1.1mA Vgs=.75V 1.1mA Vgs=0.75V 1.1mA Vgs=0.75V Idss=2-6mA BF245B N-JFET 2.5mA Vgs=1.7V 2.5mA Vgs=1.7V 2.5mA Vgs=1.7V Idss=6-15mA BF245C N-JFET 3.9mA Vgs=2.7V 3.9mA Vgs=2.7V 3.9mA Vgs=2.7V Idss=12-25mA J175 P-JFET 3.2mA Vgs=2.2V 3.2mA Vgs=2.2V 3.2mA Vgs=2.2V Idss=7-60mA 2N5460 P-JFET 0.78mA Vgs=0.54V 0.77mA Vgs=0.54V 0.78mA Vgs=0.54V
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SSD1963_Rev1.6.pdf
[7:0] : Set the PWM frequency in system clock (POR = 00000000) PWM signal frequency = PLL clock / (256 * (PWMF[7:0] + 1)) / 256 PWM[7:0] : Set the PWM duty cycle (POR = 00000000) PWM duty cycle = PWM[7:0] / 256 for DBC disable (0xD0] A0 = 0 If DBC enable (0xD0] A0 = 1, these parameter will be ignored
in „SSD1963 Datenblatt“ · Mikrocontroller und Digitale Elektronik ·
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atmega_328.pdf
Non-volatile Memory Segments – 4/8/16/32K Bytes of In-System Self-Programmable Flash program memory – 256/512/512/1K Bytes EEPROM 8-bit – 512/1K/1K/2K Bytes Internal SRAM – Write/Erase Cycles: 10,000 Flash/100,000 EEPROM – Data retention: 20 years at 85°C/100 years at 25°C) Microcontroller – Optional Boot
in „1 Wire mit Atmega328“ · Mikrocontroller und Digitale Elektronik ·
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FXOS8700CQ.pdf
1.56 5.1 163 0.638 163 20 80 2.5 160 FXOS8700CQ Sensors 52 Freescale Semiconductor, Inc. 10.8.4 PL_BF_ZCOMP (0x13) register Back/Front and Z-tilt angle compensation register Table 69. PL_BF_ZCOMP register bkfr[1:0] — — — zlock[2:0] 0’b10 0 0 0 0’b100 Table 70. PL_BF_ZCOMP bit descriptions Field Description
in „Beschleunigungssensor auslesen“ · Mikrocontroller und Digitale Elektronik ·
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nRF24LE1_Product_Specification_rev1_6-6439.pdf
Memory bus decoder 1.9 V - 3.6V VREG1V2 VDD_1V2 MEM-bus System Crypt RNG RTC Wdogh MCU Config CoProc 256 byte SFR-bus Interrupt Timers Sports RF Control GPIO SPI SPI 2-Wire Wakeup (SPI)/f Transceiver R80515 Master Slave M/S Config OCI ADC i/f ADC Digital Crossbar PWM POR Brown out detector XOSC Retention
in „Projekt: Kugelschreiber-Morse“ · Mikrocontroller und Digitale Elektronik ·
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HBIS51V120.pdf
ASCII-Zeichen als ein Hexbyte von SIO lesen 77 Zeitfunktionen: _MINH Verzögerungszeiten im Minutenbereich 1-256 Min. 77 _SECH Verzögerungszeiten im Sekundenbereich 1-256 Sec. 78 _ZSECH Verzögerungszeiten im Zehntelsekundenbereich 0,1-25,6 Sec. 78 _HSECH Verzögerungszeiten im Hundertstelsekundenenbereich 0,01-2,56 Sec. 78 _MSECH Verzögerungszeiten im Millisekundenbereich 1-256 mSec. 78 _T0PAUSE Warten bis T0 = 1 und wieder 0. 78 _INT0PAUSE Warten bis INT0 = 1 und wieder 0. 79 Codewandelfunktionen: _ASCHEX Ein ASCII-Zeichen in eine Hextetrade wandeln 79 _HEXASC Ein Hexbyte
in „8051 - Programm und Daten in einem 128kB Chip ohne Overlap“ · Mikrocontroller und Digitale Elektronik ·
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font_fixed_8px.c
0x00,0x18,0x24,0x66,0x24,0x00, // 0xBD 0x00,0x29,0x2A,0x7C,0x2A,0x29, // 0xBE 0x08,0x08,0x08,0xF8,0x00,0x00, // 0xBF 0x00,0x00,0x00,0x0F,0x08,0x08, // 0xC0 0x08,0x08,0x08,0x0F,0x08,0x08, // 0xC1 0x08,0x08,0x08,0xF8,0x08,0x08, // 0xC2 0x00,0x00,0x00,0xFF,0x08,0x08, // 0xC3 0x08,0x08,0x08,0x08,0x08,0x08, // 0xC4 0x08,0x08,0x08,0xFF
in „Library für EA-DOGM Grafikdisplays inkl. Font-Generator“ · Projekte & Code ·
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Datei
src.txt
screen-b3e2163c0c02ee04ff7607e53cbc898e66ce9e5bd6159576f166ae976e5a5aa0.css" /> <link rel="stylesheet" media="print" href="/assets/print-d245bf6f0a5fe74d9f377c2d91dcaf92e729af0ea914e45fe357de41f1118b55.css" /> <link rel="shortcut icon" type="image/x-icon" href="/favicon.ico" /> <link rel="canonical" href="https://www.mikrocontroller.net/topic
in „Verweis/Referenzierung zu anderen Beiträgen“ · www.mikrocontroller.net ·
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Baumappe_BX-222.0.pdf
XP, Mac-OS, liegenden Bausatzversion ist er mit einer integrierten Soundkarte und Linux, 1 GHz, ≥ 256 KByte RAM (je nach Betriebssystem) einem Preselektor ausgestattet. Das kompakte Gerät eignet sich als Onboard-Soundkarte: Empfänger für unterwegs und als Ausgangspunkt für eigene SDR-Expe- Samplingrate
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Datei
ch557.h
frequency mode: 0=Fsys, 1=2*Fsys #define bU1SMOD 0x20 // UART1 2X baud rate selection: 0=slow(Fsys/32/(256-SBAUD1)), 1=fast(Fsys/16/(256-SBAUD1)) #define bU1REN 0x10 // enable UART1 receiving #define bU1TB8 0x08 // the 9th transmitted data bit in 9 bits data mode #define bU1RB8 0x04 // 9th data bit received
in „uC für 0,20€ CH552 / CH554 von WCH Billig Micro mit USB Funktion, Chip vorstellung“ · Mikrocontroller und Digitale Elektronik ·
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ttester_eng104k.pdf
954pF 951pF J310 N-JFET N-JFET N-JFET Idss=24-60mA I=3.1mA Vgs=2.2V I=3.1mA Vgs=2.2V I=3.1mA Vgs=2.2V BF256C N-JFET N-JFET N-JFET Idss=11-18mA I=3.3mA Vgs=2.3V I=3.4mA Vgs=2.3V I=3.3mA Vgs=2.3V BF245A N-JFET N-JFET N-JFET Idss=2-6mA I=1.1mA Vgs=.75V I=1.1mA Vgs=0.74V I=1.1mA Vgs=0.75V BF245B N-JFET N-JFET N-JFET Idss=6-15mA I=2.4mA Vgs=1.7V I=2.5mA Vgs=1.7V I=2.4mA Vgs=1.7V BF245C N-JFET N-JFET N-JFET Idss=12-25mA I=3.8mA Vgs=2.7V I=3.9mA Vgs=2.7V I=3.8mA Vgs=2.7V Table 5.4: measurement results of MOS transistor testing 27 5.2 Resistor Measurement Each resistor is measured
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MC9S12XF512.pdf
use (ERPART): • Validate the DFPART and ERPART values provided: — DFPART <= 128 (maximum number of 256 byte sectors in D-Flash block) — ERPART <= 16 (maximum number of 256 byte sectors in buffer RAM) — If ERPART > 0, 128 - DFPART >= 12 (minimum number of 256 byte sectors in the D-Flash block required
in „Wie oft kann ein µC programmiert werden?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MC9S12XF512.pdf
use (ERPART): • Validate the DFPART and ERPART values provided: — DFPART <= 128 (maximum number of 256 byte sectors in D-Flash block) — ERPART <= 16 (maximum number of 256 byte sectors in buffer RAM) — If ERPART > 0, 128 - DFPART >= 12 (minimum number of 256 byte sectors in the D-Flash block required
in „Probleme beim Ansteuern eines EEPROM über SPI“ · Mikrocontroller und Digitale Elektronik ·
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TestArmTurtorialDeu.pdf
<StartSysTick> 8000128: bf30 wfi 800012a: e7fd b.n 8000128 <Reset_Handler + 0x3c> 800012c: 20000400 .word 0x20000400 8000130: 20000404 .word 0x20000404 8000134: 080001f0 .word 0x080001f0 8000138: 20000404 .word 0x20000404 800013c
in „ARM-Assembler-Tutorial“ · Mikrocontroller und Digitale Elektronik ·
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hd61830.pdf
5 × 7 dot characters 32 types of 5 × 11 dot characters Total 192 characters Can be extended to 256 characters (4 kbytes max.) with external ROM 1300 HD61830/HD61830B • Interfaces to 8-bit MPU • Display duty cycle (can be selected by a program) Static to 1/128 duty cycle • Various instruction functions
in „ATMega als LCD-Controller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hd61830.pdf
5 × 7 dot characters 32 types of 5 × 11 dot characters Total 192 characters Can be extended to 256 characters (4 kbytes max.) with external ROM 1300 HD61830/HD61830B • Interfaces to 8-bit MPU • Display duty cycle (can be selected by a program) Static to 1/128 duty cycle • Various instruction functions
in „HD61830A durch HD61830B ersetzen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hd61830.pdf
5 × 7 dot characters 32 types of 5 × 11 dot characters Total 192 characters Can be extended to 256 characters (4 kbytes max.) with external ROM 1300 HD61830/HD61830B • Interfaces to 8-bit MPU • Display duty cycle (can be selected by a program) Static to 1/128 duty cycle • Various instruction functions
in „HD61830 Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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hd61830--kompatibel_zu_LC7981.pdf
5 × 7 dot characters 32 types of 5 × 11 dot characters Total 192 characters Can be extended to 256 characters (4 kbytes max.) with external ROM 1300 HD61830/HD61830B • Interfaces to 8-bit MPU • Display duty cycle (can be selected by a program) Static to 1/128 duty cycle • Various instruction functions
in „GLCD hängt sich nach einer Weile auf“ · Mikrocontroller und Digitale Elektronik ·
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177932_1.pdf
types of 5 7 dot characters 32 types of 5 11 dot characters Total 192 characters Can be extended to 256 characters (4 kbytes max.) with external ROM 1 HD61830/HD61830B • Interfaces to 8-bit MPU • Display duty cycle (can be selected by a program) Static to 1/128 duty cycle • Various instruction functions
in „GrafikLCD an ATmega328“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Lime_Gen_3_Motor_Controller_Readout_20kmh.c
1073814528 ) { sub_80004A4(128, 1); v1 = 128; goto LABEL_15; } if ( a1 == 1073815552 ) { sub_80004A4(256, 1); v1 = 256; goto LABEL_15; } return v3; } //----- (08000566) -------------------------------------------------------- int __fastcall sub_8000566(int result, int a2) { int v2; // r3@1 int v3; // r2
in „BLDC Controller mit STM32F103C8T6 Geschwindigkeitsbegrenzer in der .hex“ · Mikrocontroller und Digitale Elektronik ·
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MC51F7424_V1.2.2.pdf
字节 FLASH,支持 18k main flash齐计数和单次计数模式 16k main falsh+2k bootloader PWM1 两种波形输出模式:互补模式与独立模式 2304(256+2048)字节 RAM PWM1 提供 PWM 周期匹配、归零匹配和占空比比较 片上 128 字节 EEPROM-LIKE 匹配中断 支持代码分区保护功能(有效防止非法读、写) PWM1 支持周期匹配、归零匹配信号后分频功能 支持在电路编程(ICP) PWM1 提供寄存器重载使能位以保证寄存器重载同 支 持 bootloader ( ISP ) 功 能 , 仅 16
in „Lidl kann auch anders (Lötstation)“ · Mechanik, Gehäuse, Werkzeug ·
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RTL8111B_8168B_Registers_DataSheet_1.0.pdf
001Fh - - Reserved 0020h-0027h TNPDS RW Transmit Normal Priority Descriptors: Start address (64-bit). (256-byte alignment) 0028h-002Fh THPDS RW Transmit High Priority Descriptors: Start address (64-bit). (256-byte alignment) 0030h-0036h - - Reserved 0037h CR RW Command Register 0038h TPPoll W Transmit Priority
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PDF
app162__Interfacing_DS1820_in_a_MC_environment_.pdf
/ PCON |= 0x80; /* SMOD = 1 Double Baud Rate for TH1 load */ TH0=TL0 = 0; TH1=TL0 = (unsigned int)(256 - ( (XtalFreq / BaudRate) / 192)); TR0 = 1; /* TR0: timer 0 run */ TR1 = 1; /* TR1: timer 1 run */ TI = 1; /* TI: set TI to send first char of UART */ 13 AN162 /*------------------------------------
in „DS18B20 zu komplizierte Ansteuerung?“ · Mikrocontroller und Digitale Elektronik ·
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app162__Interfacing_DS1820_in_a_MC_environment_.pdf
/ PCON |= 0x80; /* SMOD = 1 Double Baud Rate for TH1 load */ TH0=TL0 = 0; TH1=TL0 = (unsigned int)(256 - ( (XtalFreq / BaudRate) / 192)); TR0 = 1; /* TR0: timer 0 run */ TR1 = 1; /* TR1: timer 1 run */ TI = 1; /* TI: set TI to send first char of UART */ 13 AN162 /*------------------------------------
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PDF
AN162.pdf
/ PCON |= 0x80; /* SMOD = 1 Double Baud Rate for TH1 load */ TH0=TL0 = 0; TH1=TL0 = (unsigned int)(256 - ( (XtalFreq / BaudRate) / 192)); TR0 = 1; /* TR0: timer 0 run */ TR1 = 1; /* TR1: timer 1 run */ TI = 1; /* TI: set TI to send first char of UART */ /*---------------------------------------------
in „Temperaturfühler identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
life.lst
233 00183$: 00BC FAr8Er01 [10] 234 jp M,00116$ 235 ;life.c:88: for(x = xpos-1;x <= (xpos+1);x++) { 00BF DD 7E F6 [19] 236 ld a,-10 (ix) 00C2 DD 77 F5 [19] 237 ld -11 (ix),a 00C5 DD 7E F4 [19] 238 ld a,-12 (ix) 00C8 07 [ 4] 239 rlca 00C9 E6 01 [ 7] 240 and a,#0x01 00CB DD 77 FE [19] 241 ld -2 (ix),a 00CE
in „Conways Game of Live zu langsam auf Z80“ · Softwareentwicklung ·
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PDF
ADNS-3090_DS_S_V1.0_20130514144306.pdf
counter which sums all 900 pixels in the current frame. It may be described as the full sum divided by 256. To find the average pixel value, use the following formula: Average Pixel = RegisterValue * 256 / 900 = RegisterValue/3.51 The maximum register value is 221 (63 * 900/256 truncated to an integer).
in „STM32F4: SPI: MISO Flanken zeigen komisches Verhalten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADNS-3090_DS_S_V1.0_20130514144306.pdf
counter which sums all 900 pixels in the current frame. It may be described as the full sum divided by 256. To find the average pixel value, use the following formula: Average Pixel = RegisterValue * 256 / 900 = RegisterValue/3.51 The maximum register value is 221 (63 * 900/256 truncated to an integer).
in „STM32F4: Datenübertragung extrem langsam“ · Mikrocontroller und Digitale Elektronik ·
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PDF
6neds.pdf
RAMsize CANmodule Type No. (Byte) (Byte) (Channel) Characteristic Packagetype Remarks M306NAMGT-XXXFP 256K 10K 85˚Cguaranteedversion M16C/6N0M306NAMCT-XXXFP 128K 5K MaskROMversion group 2 100P6S-A M306NAMCV-XXXFP 128K 5K 125˚Cguaranteedversion(Note2) M306NAFGTFP 256K 10K 85˚Cguaranteedversion Flashmemory5Vversion
in „M16C- Key Input Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BT-WiFi-52rf5541.pdf
Bytes of addressing range XDATA space: up to 512 Bytes of addressing range IDATA space: up to 256 Bytes. 0X1FFF PWM RTC ADC 0x918 OTP RF part register 8k bytes 0x880 128 byte 0x200 External RAM Internal RAM 512 bytes 256 bytes 0x0000 0x00 0x00 Figure 5 FLIP51 SPACE 7.2 Program Memory (CODE space
in „JDY-40 ein neuer Geniestreich aus China?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bq2085.pdf
begins. The bq2085 sets VDQ=0 if any disqualifying condition occurs. FCC cannot be reduced by more than 256 mAh or increased by more than 512 mAh during any single update cycle. The bq2085 saves the new FCC value to the data flash within 4 seconds of being updated. End-of-Discharge Thresholds and Capacity
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Datei
ttester_110k_20140511.diff
vertikal_LSB_1.h 2014-05-11 21:08:18.000000000 +0200 @@ -0,0 +1,258 @@ +const unsigned char PROGMEM font[256][20] = { +{0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00}, // 0x00 +{0x80,0x07,0xC0,0x0C,0x40,0x0A,0xA0,0x14,0x20,0x14,0x20,0x14,0xA0,0x14,0x40,0x0A
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M16C62_Hardware.pdf
Single step area (Note 2) Watchdog timer M30622M4No. Addr00FF1616XAddrF80016Y16 YYYYY 16 M30620M8 02BF16 F00016 Internal ROM area DBC M30620MA 02BF16 E800016 NMI M30620MC/EC 02BF16 E000016 FFFFF16 FFFFF 16 Reset M30622M8/E8 013F16 F00016 M30622MA 017F16 E800016 Note 1: During memory expansion and microprocessor
in „M16C Parallel pinbelegung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
d80166w.pdf
Register-Based Design with Multiple Variable Register Banks ● Single-Cycle Context Switching Support ● Up to 256 KBytes Linear Address Space for Code and Data ● 1 KByte On-Chip RAM ● 32 KBytes On-Chip ROM (SAB 83C166W only) ● Programmable External Bus Characteristics for Different Address Ranges ● 8-Bit or 16-
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PDF
nkat20-21.pdf
-.070 -.058 2.2 µF 25 V A 7236/20 -.86 -.302 -.168 -.129 -.107 2.2 µF 35 V B 7236/26H 1.21 -.461 -.256 -.197 -.164 2.2 µF 35 V C 7236/28 -.92 -.329 -.206 -.158 3.3 µF 20 V A 7236/36 -.65 -.207 -.115 -.088 -.073 3.3 µF 25 V B 7236/31 1.21 -.461 -.256 -.197 -.164 3.3 µF 35 V B 7236/31H 1.21 -.461 -.256
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gravity_g.pdf
void setup() { Serial.begin(9600); mIC1ClearIntFlag(); //OpenTimer2(T2_ON | T2_SOURCE_INT | T2_PS_1_256, 0xffff); OpenTimer23(T2_ON | T2_32BIT_MODE_ON | T2_PS_1_256, 4000000000); //or 0xFFFFffff //Max32_J8_A48_PIC32_RD8_pin68 OpenCapture1( IC_EVERY_EDGE | IC_INT_1CAPTURE | IC_CAP_32BIT | IC_TIMER2_SRC
in „Microchip springt auf den Arduino Zug auf“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Sony_M610__MBX-176_.pdf
BE50 SB_DQ11 SB_DM5 BJ7 M_B_DM5 M_A_DQ13 BG50 SA_DQ13 SA_DM7 AN6 M_A_DM7 M_B_DQ12 BA51 SB_DQ12 SB_DM6 BF3 M_B_DM6 M_A_DQ14 BH49 SA_DQ14 M_A_DQS[7..0] 14 M_B_DQ13 AY49 SB_DQ13 SB_DM7 AW2 M_B_DM7 M_A_DQ15 BE45 SA_DQ15 SA_DQS0 AT46 M_A_DQS0 M_B_DQ14 BF50 SB_DQ14 M_B_DQS[7..0] 15 M_A_DQ16 AW43 SA_DQ16 A SA_DQS1
in „Blitzschaden an Sony Vaio Notebook“ · PC Hard- und Software ·
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Datei
spatz.h
/* Datei wurde erstellt mit: ./bmp2s65 BMP-Datei: spatz.bmp C-Datei: spatz.h bfType = 19778; bfSize = 24310; bfReserved = 0; bfOffBits = 1078; biSize = 40; biWidth = 176; biHeight = 132; biPlanes = 1; biBitCount = 8; biCompression = 0; biSizeImage = 23232; biXPelsPerMeter = 2834; biYPelsPerMeter = 2834; biClrUsed = 256; biClrImportant = 256; */ #define BMP_spatz 176,132,0,(unsigned int *)spatz_farbtabelle,(unsigned char *)spatz_daten const unsigned int spatz_farbtabelle[] = { 0x0020,0x1820,0x2020,0x1080,0x0881,0x3820,0x3041,0x10E2
in „Tool zum Umwandeln von Bildern in 16Bit (5-6-5) Array“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KSZ8851SNL.pdf
Don’t Care None 0xBA 0xBB 0xBA - 0xBB 0xBB 0xBC 0xBC 0xBC - 0xBD 0xBD to Reserved Don’t Care None 0xBF 0xBE - 0xBF 0xBE 0xBF 0xC0 Chip ID and Enable Register [7:0] 0xC0 0xC0 - 0xC1 CIDER 0x8870 to 0xC1 Chip ID and Enable Register [15:8] 0xC2 0xC3 0xC2 - 0xC3 0xC3 Reserved Don’t Care None 0xC4 - 0xC5 0xC4
in „KSZ8851 Ethernet komplizierte Frage.“ · Mikrocontroller und Digitale Elektronik ·