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FCB-SE600_TM_E.pdf
s e e I o o d _ m w n o o o m o - - - - - c c n c c m m n M C M A I C P L M Z Z Z D D D D D F o F O F o F C C L 24 Basic Functions l u a D M W T A h h r u B e
in „Digitales HD auf Analoges PAL wandeln“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
TCS3414_Datasheet_EN_v1.pdf
E e 0, 64× gain settingint 400 ms 0 3 15 counts osc Oscillator frequencyt value c Prescale = 1,int 400 ms (Note 1) 4.2 4.4 654.6 cMHzts Internal integration time tolerance l −5 5 % Temperature coefficient of responsivity (SYNC λode700 nm, −40°C TA 85°C ± 200 ppm/°C NOTES: 1. At shorter
in „Messgerät um LED Eigenschaften zu ermitteln“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Z5U_Datenblatt.PDF
80-98 2.5 7 +25 90-98 2.0 (24 hours for C0G (NP0)) at room temperature. 7a -10 uncontrolled – 7b +25 90-98 – IMMERSION Specification Repeat 20 cycles (1-7) and store for 48 hours (24 hours Appearance for C0G (NP0)) at room temperature
in „Vielschicht statt Elko + Keramik“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
gsm_remote.c
(tmp, buffer, 3, ',', ','); // = Latitude (e.g. 5256.0361) sprintf (gpscoord, "%s%c%c\x24%c%c%c%c%c%c%c ", gpscoord, tmp[0], tmp[1], tmp[2], tmp[3], tmp[4], tmp[5], tmp[6], tmp[7], tmp[8]); getTeilstring (tmp, buffer, 6, ',', ','); // = Hemisphere sprintf (gpscoord, "%s %s", gpscoord
in „GSM-Fernschalter Funktionen verändern über µC?“ · Mikrocontroller und Digitale Elektronik ·
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mega128-can128.pdf
S I I I I ( C / ( / T T / / / / ( / T T / / / / / A 2 ( ( C D D D A ( ( C D D D N C C ( ( X T C ( ( X T C R ( ( ( ( ( ( X ( ( Table 1. Changed Pins Pin ATmega128 AT90CAN128 Comments for AT90CAN128 1 PEN (n.c.) Not
in „AtMega128 - At90Can128“ · Mikrocontroller und Digitale Elektronik ·
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PDF
inhalt.pdf
Voltage . . . . . . . . . . . . . . . . . . . . . . . . . . . . .Thermal Resistance6.5V θJA θJC Voltage at Any Input . . . . . . . . . . . . . . . . . . . . . . -0.3V to (Plastic DIP Package . . . . . . . . . . . . .125 C/W - Storage Temperature Range . . . . . . . . . . . . . . . . . -65 C to +150 CCeramic
in „A/D Wandler an At89S8252“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
Parts 2 No. of No. of VIN Part No. Channels Positions ITF R (kΩ) VDD 1 ADR440/ AD5251 2.00 64.00 I C 1, 10, 50, 100 5.5 ADR441/ ADR443/ AD5207 2.00 256.00 SPI 10, 50, 100 5.5 ADR444/ AD5242 2.00 256.00 I C 10, 100, 1M 5.5 ADR445 V OUT 6 AD5262 2.00 256.00 SPI 20, 50, 200 15 OP90 2N3904 AD5282 2.00 256.00 I C 20, 50, 100 15 GND 2 AD5252 2.00 256.00 I C 1, 10, 50, 100 5.5 4 AD5232 2.00 256.00 SPI 10, 50, 100 5.5 AD5235 2.00 1024.00 SPI 25, 250 5.5 4 ADN2850 2.00 1024.00 SPI 25, 250 5.5 2 –VS 0 1Can also use
in „Datenblatt richtig lesen“ · Analoge Elektronik und Schaltungstechnik ·
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COMPARISON_AVR_C51.PDF
mizing the repercussions on real time event Message object 1 applications. Message object 0 T Y P I C A L C A N A P P L I C A T I O N : A C O M P L E T E S O L U T I O N CAN Transmission CAN Controller Atmel Atmel T89C51CC01/02 ATA6660 AT89C51CC03 or AT90CAN128 CAN Bus H I G H L E V E L P R O T O C O
in „ata6660 und 89c51cc01“ · Mikrocontroller und Digitale Elektronik ·
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CPU12RM.pdf
24 C = 0 r<m BLO/BCS 25 Unsigned r=m BEQ 27 Z = 1 r≠m BNE 26 Unsigned r≤m BLS 23 C + Z = 1 r>m BHI 22 Unsigned r<m BLO/BCS 25 C = 1 r≥m BHS/BCC 24 Unsigned Carry BCS 25 C = 1 No Carry BCC 24 Simple Negative
in „HCS12 CPU Disassembler“ · Mikrocontroller und Digitale Elektronik ·
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Getting_the_Most_Out_of_Delta-Sigma_Converters_acqt0310.pdf
improvements in resolution and speed. I can remember sitting down in a meeting about 25 years ago at Tektronix and deciding as a group how data converters would progress in the future. I don’t think we even considered the possibility that we would make a jump from 16 bits of resolution to 24 bits. But
in „Superschnelle Analogmessung im millivolt bereich“ · Mikrocontroller und Digitale Elektronik ·
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mikrobeginner_gesamt.pdf
durchdenken und entscheiden. Ein Beispiel, mit der ein Code für die beiden Typen ATtiny13 und ATtiny24 fit gemacht werden soll: .equ cTyp == 13 ; kann 13 oder 24 sein ; [...] .if cTyp == 13 ; Reset- und Int-Vektortabelle ATtiny13 .elif cTyp == 24 ; Reset- und Int-Vektortabelle ATtiny24 .endif Wenn der
in „Attiny26 PortD“ · Mikrocontroller und Digitale Elektronik ·
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sle4432_0795.pdf
4432 and SLE 4442) The command reads out the contents of the main memory (with LSB first) starting at the given byte address (N = 0…255) up to the end of the memory. After the command entry the IFD has to supply sufficient clock pulses. The number of clocks is m = (256 – N) × 8 + 1. The read access to
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SLE4432__SLE4442.pdf
4432 and SLE 4442) The command reads out the contents of the main memory (with LSB first) starting at the given byte address (N = 0…255) up to the end of the memory. After the command entry the IFD has to supply sufficient clock pulses. The number of clocks is m = (256 – N) × 8 + 1. The read access to
in „smartcard sle4442“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ESP32_C3_Datasheet__EN_V0.3_20201022.pdf
read-only data space can be mapped to the outside flash ,external flash Can support 16 MB . ESP32-C3 Support based on XTS-AES Hardware encryption and decryption functions to protect developers flash Programs and data in. Through the cache, ESP32-C3 At most, you can have: R • 8 MB The command space
in „Neue Espressif-Funkmodule mit RISC-V-Prozessoren“ · Mikrocontroller und Digitale Elektronik ·
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hs_sed1375.pdf
A.C. Timing . . . . . . . . . . . . . . . . . . . . . . . . . . . . 50 Figure 7-24: 12-Bit TFT/D-TFD Panel Timing . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 51 Figure 7-25: TFT/D-TFD A.C.
in „TFT an M16C62“ · Mikrocontroller und Digitale Elektronik ·
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S1D13513.pdf
0000h 1M Byte Linear Access 0F_FFFFh 00F_FFFFh SDRAM 10_0000h 010_0000h Page 0 Page0 Start Address (256K bytes) REG[0030h] (256K bytes) 14_0000h Page 1 Page1 Start Address (256K bytes) REG[0032h] 18_0000h Page 2 Page2 Start Address (256K bytes) (256K bytes) REG[0034h] 1C_0000h (256K bytes) Page 3 Page3
in „S1D113513 + AT91RM9200“ · Mikrocontroller und Digitale Elektronik ·
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200959141322092079_SD600Apdf.pdf
是一颗高集成度的低功耗 LED 控制芯片, 它采用典型的双线传 输模式(时钟,数据) ,内置采样/时钟再生电路,移位寄存器,脉宽调制 模块,级联能力超过 2048 颗芯片。该芯片提供 3 个 I/O 通道,每通道最大 24 毫安输出电流,同时提供极性选择功能,可采用驱动/吸收电流两种工作 模式。该芯片可广泛应用于 LED 灯具。 1.2 特点 数据传输速率高达 12Mbit/S 低功耗 CMOS 工艺 无需晶体,少量外围电路 2048 颗芯片级联的能力 三路 PWM 调光控制器 (256 级灰度) 24 位真彩色(8R+8G+8B) 可外接驱动 低泄漏电流 高达 24mA 驱动电流的集开门输出(带缓冲) I/O ESD
in „"intelligent" LED Leiste“ · Mikrocontroller und Digitale Elektronik ·
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at98c51ed2.pdf
Bytes) Total RAM (Bytes) I/O PLCC44/VQFP44/DIL40 64K 1792 2048 34 PLCC68/VQFP64 64K 1792 2048 50 2 AT89C51RD2/ED2 4235G–8051–08/05 AT89C51RD2/ED2 Block Diagram Figure 1. Block Diagram r a X b x x C SS C C E e R T V V E P T T K (2) (2) (1) (1)(1) (1) (1) RAM Flash XRAM EEPROM* XTALA1 EUART 256x8 64K x
in „Mikrocontrollerboard: Funktioniert das?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
Bytes) Total RAM (Bytes) I/O PLCC44/VQFP44/DIL40 64K 1792 2048 34 PLCC68/VQFP64 64K 1792 2048 50 2 AT89C51RD2/ED2 4235G–8051–08/05 AT89C51RD2/ED2 Block Diagram Figure 1. Block Diagram r a X b x x C SS C C E e R T V V E P T T K (2) (2) (1) (1)(1) (1) (1) RAM Flash XRAM EEPROM* XTALA1 EUART 256x8 64K x
in „Temperatur ohne AD-Eingang messen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
Bytes) Total RAM (Bytes) I/O PLCC44/VQFP44/DIL40 64K 1792 2048 34 PLCC68/VQFP64 64K 1792 2048 50 2 AT89C51RD2/ED2 4235G–8051–08/05 AT89C51RD2/ED2 Block Diagram Figure 1. Block Diagram r a X b x x C SS C C E e R T V V E P T T K (2) (2) (1) (1)(1) (1) (1) RAM Flash XRAM EEPROM* XTALA1 EUART 256x8 64K x
in „Displaybeleuchtung faden ohne Analog I/O“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
Bytes) Total RAM (Bytes) I/O PLCC44/VQFP44/DIL40 64K 1792 2048 34 PLCC68/VQFP64 64K 1792 2048 50 2 AT89C51RD2/ED2 4235G–8051–08/05 AT89C51RD2/ED2 Block Diagram Figure 1. Block Diagram r a X b x x C SS C C E e R T V V E P T T K (2) (2) (1) (1)(1) (1) (1) RAM Flash XRAM EEPROM* XTALA1 EUART 256x8 64K x
in „Displaybeleuchtung mit PWM dimmen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
Bytes) Total RAM (Bytes) I/O PLCC44/VQFP44/DIL40 64K 1792 2048 34 PLCC68/VQFP64 64K 1792 2048 50 2 AT89C51RD2/ED2 4235G–8051–08/05 AT89C51RD2/ED2 Block Diagram Figure 1. Block Diagram r a X b x x C SS C C E e R T V V E P T T K (2) (2) (1) (1)(1) (1) (1) RAM Flash XRAM EEPROM* XTALA1 EUART 256x8 64K x
in „8051: An Port 0 kann nichts ausgegeben werden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
Bytes) Total RAM (Bytes) I/O PLCC44/VQFP44/DIL40 64K 1792 2048 34 PLCC68/VQFP64 64K 1792 2048 50 2 AT89C51RD2/ED2 4235G–8051–08/05 AT89C51RD2/ED2 Block Diagram Figure 1. Block Diagram r a X b x x C SS C C E e R T V V E P T T K (2) (2) (1) (1)(1) (1) (1) RAM Flash XRAM EEPROM* XTALA1 EUART 256x8 64K x
in „8051: An Port 1 nur 3.5V anstatt 5V ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.asm
mov rArg0, rMinutes cpi rARg0, 60 brlo ExitClock clr rMinutes inc rHours ;clear the decimal points at hours and minutes lds rArg0, LEDData andi rArg0, ~digDP sts LEDData, rArg0 lds rArg0, LEDData+3 andi rArg0, ~digDP sts LEDData+3, rArg0 mov rArg0, rHours cpi rArg0, 24 brlo ExitClock clr rHours #endif
in „DCF 77“ · Projekte & Code ·
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PDF
U13843EU3V0AN00.pdf
CN1 JP2 90.6 MHz C CN4 JP3 JP1 JP24 POD3 JP2 84.1 MHz JP3 CN2 CN8 JP1 JP2 78.5 MHz JP3 JP11 JP10 JP1 JP2 69.3 MHz 2 POD4 JP3 (Default) N C JP1 JP2 65.4 MHz JP3 JP1 JP2 62.0 MHz CN12 JP12 JP13 JP3 JP14 JP1 JP2 49.1 MHz
in „Controller für Graphik LCD“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avr.txt
einer Auflistung und kurzen Erläuterung der einzelnen Register und Bit-Felder. Als Hardware kommt der AT90S4433 bzw. AT90S2333 zum Einsatz und das Entwicklungs-Board STK500. Der Vollständigkeit halber werden die Pin-Belegung des 4433 und die Stecker des STK500 kurz dargestellt. 1. Pin-Belegung des AT90S4433 : ------------------------------- Als Übersicht hier die Pin-Belegung des AT90S4433 der PDIP-Version (plastic dual inline package) : 1 RESET 28 PC5 bzw. ADC5 2 PD0 bzw. RXD 27 PC4 bzw. ADC4 3 PD1 bzw. TXD 26 PC3 bzw. ADC3 4 PD2 bzw. INT0 25 PC2 bzw. ADC2 5 PD3 bzw. INT1 24 PC1
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AVR100_Accessing_the_EEPROM.PDF
Location Write EERead 7 words 11 R0, R17, R18 EEPROM Random Location Read EEWrite_seq 13 words 19 R24, R25, R18 EEPROM Sequential Location Write EERead_seq 10 words 17 R0, R24, R25 EEPROM Sequential Location Read Reset 8 words 8 R16 Example Initialisation Main 39 words - R16, R19, R20 Example Program
in „Universeller RC5-Fernbedienungsempfänger“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds-CELSIUS-R670.pdf
) ® ® IntelXeon processor W5580 (4C, 3.2 GHz, 8 MB, 6.4 GT/s) IntelXeon processor L5530 (4C, 2.40 GHz, 8 MB, 5.86 GT/s) IntelXeon processor L5520 (4C, 2.26 GHz, 8 MB, 5.86 GT/s) ® ® IntelXeon processor L5506 (4C, 2.13 GHz, 4 MB, 4.8 GT/s) ® ® IntelXeon processor E5540 (4C, 2.53 GHz, 8 MB, 5.86 GT/s) IntelXeon processor E5530 (4C, 2.4 GHz, 8 MB, 5.86 GT/s) IntelXeon processor E5520 (4C, 2.26 GHz, 8 MB, 5.86 GT/s) ® ® IntelXeon processor E5506 (4C, 2.13 GHz, 4 MB, 4.8 GT
in „[V] Workstation Fujitsu Celsius R670, 96 GB RAM, 2 XEON X5550, 8 Kerne, SSD“ · Markt ·
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PDF
AT89C51ED2.pdf
Bytes) Total RAM (Bytes) I/O PLCC44/VQFP44/DIL40 64K 1792 2048 34 PLCC68/VQFP64 64K 1792 2048 50 2 AT89C51RD2/ED2 4235D–8051–12/03 AT89C51RD2/ED2 Block Diagram Figure 1. Block Diagram r a X b x x C SS C C E e R T V V E P T T K (2) (2) (1) (1)(1) (1) (1) RAM Flash XRAM EEPROM* XTALA1 EUART 256x8 64K x
in „Einstieg in die C-Programmerung für µC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
monitor.c
, 0x04, 0x10, 0x03, 0x7e, 0xa0 }; unsigned char sendBuit24_101[] = { 0x10, 0x02, 0x01, 0x15, 0x00, 0x0c, 0x00, 0x04, 0x10, 0x03, 0xfe, 0xf3 }; unsigned char sendBuit01_102[] = { 0x10, 0x02, 0x01, 0x15, 0x00, 0x10, 0x10, 0x00, 0x04, 0x10, 0x03, 0x58, 0x5a };
in „Probleme mit serieller Schnittstelle“ · Softwareentwicklung ·
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Datei
AVRootloader.asm
"pwm3def.inc" ; AT90PWM3 ;.include "tn13def.inc" ; ATtiny13 ;.include "tn167def.inc" ; ATtiny167 ;.include "tn2313def.inc" ; ATtiny2313 ;.include "tn24def.inc" ; ATtiny24 ;.include "tn25def.inc" ; ATtiny25 ;.include "tn261def.inc
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PDF
datasheet.pdf
E2O0014-27-X2 ¡ Semiconductor MSM81C55-5RS/GS/JS. 1998 Semiconductor Previous version: Aug. 1996 MSM81C55-5RS/GS/JS 2048-Bit CMOS STATIC RAM WITH I/O PORTS AND TIMER GENERAL DESCRIPTION TheMSM81C55-5hasa2k-bitstaticRAM(256bytes)withparallelI
in „OKI M81C55 benutzen.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
bytes Expanded RAM (XRAM) – Software Selectable Size (0, 256, 512, 768, 1024, 1792 Bytes) – 768 Bytes Selected at Reset for T89C51RD2 Compatibility • On-chip 2048 Bytes EEPROM Block for Data Storage (AT89C51ED2 Only) – 100K Write Cycles • Dual Data Pointer •
in „Kleine 8051 Fragen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
bytes Expanded RAM (XRAM) – Software Selectable Size (0, 256, 512, 768, 1024, 1792 Bytes) – 768 Bytes Selected at Reset for T89C51RD2 Compatibility • On-chip 2048 Bytes EEPROM Block for Data Storage (AT89C51ED2 Only) – 100K Write Cycles • Dual Data Pointer •
in „8051: Oszillatorfrequenz und Maschinenzyklus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
bytes Expanded RAM (XRAM) – Software Selectable Size (0, 256, 512, 768, 1024, 1792 Bytes) – 768 Bytes Selected at Reset for T89C51RD2 Compatibility • On-chip 2048 Bytes EEPROM Block for Data Storage (AT89C51ED2 Only) – 100K Write Cycles • Dual Data Pointer •
in „EEPROM schreiben/lesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51rd2.pdf
bytes Expanded RAM (XRAM) – Software Selectable Size (0, 256, 512, 768, 1024, 1792 Bytes) – 768 Bytes Selected at Reset for T89C51RD2 Compatibility • On-chip 2048 Bytes EEPROM Block for Data Storage (AT89C51ED2 Only) – 100K Write Cycles • Dual Data Pointer •
in „Alternative Funktion von Pins“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at98c51ed2.pdf
bytes Expanded RAM (XRAM) – Software Selectable Size (0, 256, 512, 768, 1024, 1792 Bytes) – 768 Bytes Selected at Reset for T89C51RD2 Compatibility • On-chip 2048 Bytes EEPROM Block for Data Storage (AT89C51ED2 Only) – 100K Write Cycles • Dual Data Pointer •
in „Frequenz für µC AT89C51ED2“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AtMega644P_Datasheet.pdf
Flash/100,000 EEPROM (2)(3) – Data retention: 20 years at 85°C/100 years at 25°C Microcontroller – Optional Boot Code Section with Independent Lock Bits In-System Programming by On-chip Boot Program True Read-While-Write Operation with 64K Bytes – Programming
in „Alkoholmessgerät programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
atmega644.pdf
Flash/100,000 EEPROM (2)(3) – Data retention: 20 years at 85°C/100 years at 25°C Microcontroller – Optional Boot Code Section with Independent Lock Bits In-System Programming by On-chip Boot Program True Read-While-Write Operation with 64K Bytes – Programming
in „SPI-Kommunikation Atmega644 - ADS1118“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PIC_real_time_clock.htm
; http://www.iki.fi/jap jap@iki.fi ;; ------------------------------------------------ include "p16c84.inc" ;; registers msec equ 0x0c ; tens of milliseconds sec equ 0x0d ; seconds min equ 0x0e ; minutes hour equ 0x0f ; hours timef equ 0x10 ; register for time flags save equ 0x11 ; save for ACCU ;;
in „PIC, flags mit Befehl "equ" declarieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KCPSM3_Manual.pdf
maintain CONSTANT Source_B,01 addresses to assign for input ports are performance. CONSTANT Source_C,02 normal binary encoding. CONSTANT Source_D,03 IMPORTANT ; In the majority of cases, the actual clock cycle at INPUT s0,Source_A Failure to include a register anywhere in which an input is read by the
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Datei
ATmega328P.xml
Bit 8" mask="0x01" name="TXB80"/> </register> <register caption="USART Control and Status Register C" name="UCSR0C" offset="0xC2" size="1"> <bitfield caption="USART Mode Select" mask="0xC0" name="UMSEL0" values="COMM_USART_MODE"/> <bitfield caption="Parity Mode Bits" mask="0x30" name="UPM0" values="
in „Welche AVR besitzen die PIN Toggle Fähigkeit?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds1879a.pdf
used: 14 0 62 Table 22 SB Pro Read Volume Emulation 15 0 63 Value Read Value Read Mute Master Volume at 32h at 22h 1 xx 0 1 0 0-24 1 1 0 25-30 2 3 0 31-34 3 3 0 35-38 4 5 0 39-42 5 5 0 43-46 6 7 0 47-50 7 7 0 51-54 8 9 0 55 9 9 0 56-57 10 11 0 58 11 11 0 59-60 12 13 0 61 13 13 0 62 14 15 0 63 15 15 ESS
in „Informationen über ISA-Karten“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Uhr_DCF.bas
Byte At Uhr_arr4(3) Overlay Dim Uhr_tag As Byte At Uhr_arr4(4) Overlay Dim Uhr_monat As Byte At Uhr_arr4(5) Overlay Dim Uhr_jahr As Byte At Uhr_arr4(6) Overlay Dim Uhr_wochentag As Byte At Uhr_arr4(7) Overlay
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Multifuse_Sicherung_MF-R.pdf
Resistance To Trip Dissipation Model V max. I max. Volts Amps Amperes Ohms Ohms Amperes Seconds Watts at 23°C at 23°C at 23°C at 23°C at 23°C at 23°C Hold Trip Min. Max. Max. MF-R010 60 40 0.10 0.20 2.50 4.50 7.50 0.5 4.0 0.38 MF-R017 60 40 0.17 0.34 2.00 3.20 8.00 0.85 3.0 0.48 MF-R020 60 40 0.20 0.40
in „Polyfuse - Auslösezeit im Datenblatt?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATTiny15L.pdf
5. Reset Delay Selections Start-up Time, Start-up Time, Recommended BODEN (2) CKSEL [1:0] (2) TOUT at CC = 2.7V TOUT at CC = 5.0V Usage BOD disabled, x 00 256 ms + 18 CK 64 ms + 18 CK slowly rising power BOD disabled, x 01 256 ms + 18 CK 64 ms + 18 CK slowly rising power BOD disabled, x 10 16 ms + 18
in „ATtiny 15 Datenblatt nicht auffindbar??“ · Mikrocontroller und Digitale Elektronik ·
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PDF
dds_ds558.pdf
cause of the spectral artifacts. Figure 3 provides an exploded view of the spectral plot in Figure 2 (c). X-Ref Target - Figure 2 1 (a) 0.5 0 0 20 40 60 80 100 1 (b) 0 -10 20 40 60 80 100 0 (c) -50 B D-100 0 0.1 0.2 0.3 0.4 0.5 FREQUENCY Figure 2: Phase Truncation DDS. f out = 0.022Hz, Table Depth = 256
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PDF
M37560_Prozessor.pdf
transistors are cut off. VL1 to VL3 V Input voltage VL2 V I Input voltage VL3 VL2 to 6.5 V V I Input voltage C1, C2 –0.3 to 6.5 V V I Input voltage RESET, X IN –0.3 to CC +0.3 V V O Output voltage C 1, 2 –0.3 to 6.5 V At output port –0.3 to VCC V V O Output voltage P0 0–P07, P10–P1 5, P30–P3 7 At segment output
in „M37560 (Buderus-Steuerung) puffern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Nokia_6100_LCD_Display_Driver.pdf
SPI_MR = 0xE0011 pSPI->SPI_MR = (AT91C_SPI_DLYBCS & (0 << 24)) | // Delay between chip selects (take default: 6 MCK // periods) (AT91C_SPI_PCS & (0xE << 16)) | // Peripheral Chip Select (selects SPI_NPCS0 or PA12) (AT91C_SPI_LLB & (0 <
in „Alles was man über das Nokia 6100 Display wissen muss“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATmegaXX4.pdf
-bit – Write/Erase Cycles: 10,000 Flash/ 100,000 EEPROM Microcontroller – Data retention: 20 years at 85°C/100 years at 25°C – Optional Boot Code Section with Independent Lock Bits In-System Programming by On-chip Boot Program with 16/32/64K True Read-While-Write Operation – Programming Lock for Software
in „Atmega644PA Timer3“ · Mikrocontroller und Digitale Elektronik ·