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Datei
AT90CAN64.c
#include <avr/io.h> #include <stdint.h> #include <avr/interrupt.h> #include "config.h" #include "can.h" void InitPort(void); void TogglePin(void); void Delay(uint16_t); int main(void) { InitPort(); // initialisieren can_init(BITRATE_500_KBPS); // sei(); // erzeuge eine Testnachricht can_t msg; msg.id = 0x10; msg.flags.rtr = 0; msg.flags.extended = 0; msg.length = 4; msg.data[0] = 0xde; msg.data[1] = 0xad; msg.data[2] = 0xbe; msg.data[3] = 0xef; // Nachricht verschicken can_send_message(&msg); while (1) { TogglePin(); Delay(65000); } } void InitPort(void) { // PORTB // PB sind Ausgang DDRB = 0xFF
in „STK600 + AT90CAN64 - Can Probleme“ · Mikrocontroller und Digitale Elektronik ·
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MigrationDiff.pdf
the same function between T89C51CC01, AT89C51CC03 and AT90CAN128, AT90CAN64, AT90CAN32. The only difference is bit 6, which exists only on AT90CAN128, AT90CAN64, AT90CAN32: Bit 6 – BOFFIT: Bus Off Interrupt Flag Writing a logical 1 resets this
in „Migration von AT89C51CC03 nach AT90CAN128 - wie?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TimerPrescalersSorted.txt
> AT90CAN32.xml:11704: <TIMER1> AT90CAN32.xml:11722: <TIMER2> AT90CAN32.xml:11728: <Prescaler>1:8:32:64:128:256:1024</Prescaler> AT90CAN32.xml:16: <CORE_VERSION>V2E</CORE_VERSION> AT90CAN64.xml:11694: <TIMER0> AT90CAN64.xml:11702: <Prescaler>1:8:64:256:1024</Prescaler> AT90CAN64.xml:11704: <TIMER1> AT90CAN64.xml:11722: <TIMER2> AT90CAN64.xml:11728: <Prescaler>1:8:32:64:128:256:1024</Prescaler> AT90CAN64.xml:16
in „Timer Vorteiler Werte Definition“ · Mikrocontroller und Digitale Elektronik ·
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Datei
x.txt
addressing mode for X. -mtiny-stack Change only the low 8 bits of the stack pointer Known MCU names: at43usb320 at43usb355 at76c711 at86rf401 at90c8534 at90can128 at90can32 at90can64 at90pwm1 at90pwm161 at90pwm2 at90pwm216 at90pwm2b at90pwm3 at90pwm316 at90pwm3b at90pwm81 at90s1200 at90s2313 at90s2323
in „Eclipse (mars) und AVR -- Fehlermeldungen“ · Mikrocontroller und Digitale Elektronik ·
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AT90CAN128.pdf
on section 19.4.3 on page 242. 1. Description 1.1 Comparison Between AT90CAN32, AT90CAN64 and AT90CAN128 AT90CAN32, AT90CAN64 and AT90CAN128 are hardware and software compatible. They dif- fer only in memory sizes as shown in Table 1-1. Table 1-1. Memory Size Summary Device Flash EEPROM RAM AT90CAN32 32K Bytes 1K Byte 2K Bytes AT90CAN64 64K Bytes 2K Bytes 4K Bytes AT90CAN128 128K Bytes 4K Byte 4K Bytes 1.2 Part Description The AT90CAN32/64/128 is a low-power CMOS 8-bit microcontroller based
in „uC + 3 Schieberegister + 7-Segmentanzeige“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT90CAN128.pdf
on section 19.4.3 on page 253. 1 1. Description 1.1 Comparison Between AT90CAN32, AT90CAN64 and AT90CAN128 AT90CAN32, AT90CAN64 and AT90CAN128 are hardware and software compatible. They dif- fer only in memory sizes as shown in Table 1-1. Table 1-1. Memory Size Summary Device Flash EEPROM RAM AT90CAN32 32K Bytes 1K Byte 2K Bytes AT90CAN64 64K Bytes 2K Bytes 4K Bytes AT90CAN128 128K Bytes 4K Byte 4K Bytes 1.2 Part Description The AT90CAN32/64/128 is a low-power CMOS 8-bit microcontroller based
in „Umrechnen von analog to digital“ · Mikrocontroller und Digitale Elektronik ·
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PDF
avr-libc-user-manual-1.8.0.pdf
AT90USB82, AT90USB1287, AT90US- B1286, AT90USB647, AT90USB646 INT7_vect SIG_INTERR- External InterruptAT90CAN128, AT90CAN32, AT90CAN64, UPT7 Request 7 ATmega103, ATmega128, ATmega64, ATmega640, ATmega1280
in „Interrupt Probleme beim Arduino“ · Mikrocontroller und Digitale Elektronik ·
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avr8-gnu-toolchain-3.4.0.663-readme.pdf
atmega6450 atmega6450a atmega6450p atmega649a atmega649p atmega6490 atmega6490a atmega6490a atmega64a atmega64c1 atmega64m1 atmega64hve atmega32hvb atmega32hvbrevb at90can64 at90pwm216 at90pwm316 atmega16c1 atmega32c1 atmega16m1 atmega32m1 6 AVR 8-bit GNU Toolchain AVR 8-bit GNU Toolchain atmega16u4 atmega32u4 at90scr100 at90usb646 at90usb647 at94k m3000 atmega128a atmega1280 atmega1281 atmega1284 atmega1284p atmega128rfa1 at90can128 at90usb1287 atmega2560 atmega2561 atxmega16a4 atxmega16a4u atxmega16d4 atxmega32a4
in „ATtiny10 ISR TIM0_COMPB_vect“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc7593.pdf
further descrip- tion on selecting external clock as input instead of a 32 kHz crystal. 46 ATmega32U6/AT90USB64/128 7593J–AVR–03/09 ATmega32U6/AT90USB64/128 6.9 System Clock Prescaler The ATmega32U6/AT90USB64/128 has a system clock prescaler, and the system clock can be divided by setting the “Clock Prescale
in „Problem mit dem TC4469“ · Mikrocontroller und Digitale Elektronik ·
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ATT5FCA9.pdf
STK501 ATmega325 STK502 ATmega8535 ATtiny2313 AT90S2343 ATmega1280 STK503 ATmega329 STK502 AT90CAN32 STK501 ATtiny2STK504 AT90S4414 ATmega1281 STK501 ATmega406 ATAVRSB10AT90CAN64 STK501 ATtiny25 AT90S4433 ATmega161 ATmega640 STK503 AT90CAN128 STK501
in „Angebot STK500+STK501+JTAGICE“ · Mikrocontroller und Digitale Elektronik ·
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avrdude.pdf
c32 AT90CAN32 c64 AT90CAN64 pwm2 AT90PWM2 pwm2b AT90PWM2B pwm3 AT90PWM3 pwm316 AT90PWM316 pwm3b AT90PWM3B 1200 AT90S1200 (****) 2313 AT90S2313 2333 AT90S2333 2343 AT90S2343 (*) 4414 AT90S4414 4433 AT90S4433
in „AVRDude als Tool in AVR Studio 4 einbinden“ · Mikrocontroller und Digitale Elektronik ·
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Telit_Easy_GPRS_User__Guide_r9.pdf
our system. With our microcontroller we can now issue to the Telit module the following AT commands: Reproduction forbidden without Telit Communications S.p.A. written authorization - Apage 64 of 90erved Easy GPRS User Guide 80000ST10028 r9,
in „Probleme mit AT-Befehlen für GPRS Datenübertragung TELIT 864“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVRootloader.asm
; copyright HR .nolist ; supported devices ;.include "can128def.inc" ; AT90CAN128 ;.include "can32def.inc" ; AT90CAN32 ;.include "can64def.inc" ; AT90CAN64 ;.include "m1280def.inc" ; ATmega1280 ;.include "m1281def.inc" ; ATmega1281 ;.include "m1284Pdef.inc
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Datei
AVRootloader.asm
; copyright HR .nolist ; supported devices ;.include "can128def.inc" ; AT90CAN128 ;.include "can32def.inc" ; AT90CAN32 ;.include "can64def.inc" ; AT90CAN64 ;.include "m1280def.inc" ; ATmega1280 ;.include "m1281def.inc" ; ATmega1281 ;.include "m1284Pdef.inc
in „Bootloader von Hagen - Port toggeln während des Flashens“ · Mikrocontroller und Digitale Elektronik ·
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Datei
mlib-gen-3.diff
(HAS_at90can32, test "x$HAS_at90can32" = "xyes") - -CHECK_AVR_DEVICE(at90can64) -AM_CONDITIONAL(HAS_at90can64, test "x$HAS_at90can64" = "xyes") - -CHECK_AVR_DEVICE(at90scr100) -AM_CONDITIONAL(HAS_at90scr100,
in „Fork: avr-libc version 3, für xtiny“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVRootloader.asm
; copyright HR .nolist ; supported devices ;.include "can128def.inc" ; AT90CAN128 ;.include "can32def.inc" ; AT90CAN32 ;.include "can64def.inc" ; AT90CAN64 ;.include "m1280def.inc" ; ATmega1280 ;.include "m1281def.inc" ; ATmega1281 ;.include "m1284Pdef.inc
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PDF
STK200.pdf
10 8 6 4 2 G G G G boardsupport: N N N N c D D D D ATmega64 Socket Support ATmega169 DEVICE SOCKET DEVICE SOCKET DEVICE SOCKET ISP supportonly- AT90S1200 20D ATmega48 28D ATtiny26 20A boardsupporton STK300: AT90S2313 20D ATmega88 28D ATtiny2313 20D AT90S2323
in „Wer kennt dieses AVR-Board?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
am29dl323db.pdf
customer lockable. This way, cus- protection feature disables both program and erase tomer lockable parts can never be used to replace a operations in any combination of the sectors of mem- factory locked part. Current version of device has 64 ory. This can be achieved in-system or via Kbytes; future versions
in „55 Stk. Flashbausteine 32Mbit, TSSOP48, 3,3V AM29DL323DB-90“ · Markt ·
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Datei
dumpspecs1.txt
-m avr2}%{mmcu=atmega103|mmcu=atmega603|mmcu=at43*|mmcu=at76*:-m avr3}%{mmcu=atmega8*|mmcu=atmega48:-m avr4}%{mmcu=atmega16*|mmcu=atmega32*|mmcu=atmega64*|mmcu=atmega128|mmcu=at90can128|mmcu=at94k:-m avr5}%{mmcu=atmega325|mmcu=atmega3250|mmcu=atmega48|mmcu=atmega88|mmcu=atmega64|mmcu=atmega645|mmcu=atmega6450|mmcu=atmega128|mmcu=at90can128|mmcu=at90can128|mmcu=atmega162|mmcu=atmega165|mmcu=atmega168|mmcu=atmega169: -Tdata 0x800100} *lib: %{!mmcu=at90s1*:%{!mmcu=attiny11:%{!mmcu
in „ATtiny24 - ISR wird nie gerufen __vectors> fehlt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
as5installer_stable-5.0.1038-readme-1.pdf
1.8 STK600 2.12 AVR Mega Series AVR Dragon AVRISP mkII AVR ONE! JTAGICE mkII QT600 Simulator STK600 AT90CAN128 Control Control AT90CAN32 Control Control AT90CAN64 Control Control AT90PWM1 Full Control Full Full Control AT90PWM216 Full Control Full Full Control AT90PWM2B Full Control Full Full Control
in „AVR-Studio 5“ · Mikrocontroller und Digitale Elektronik ·
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PDF
COMPARISON_AVR_C51.PDF
at 30 MHz Demanding High-end Applications Up to 64 KB Flash Program Memory 16MIPS at 16 MHz Flexible Self Programming at 3V and 5V Self Programming via UART or CAN Hardware Multiplier 6-clocks per cycle
in „ata6660 und 89c51cc01“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT90SC6464C.pdf
The ALU operations are divided into three main categories: arithmetic, logical and bit-functions. 2 AT90SC6464C-USB 1559BS–8/02 AT90SC6464C-USB Six of the 32 general-purpose registers can be used as three 16-bit indirect address register pointers X, Y, and Z, for addressing data space and allowing efficient
in „AT90SC6464C ??“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avr.h
mmcu=attiny261|\ mmcu=attiny4*|\ mmcu=attiny8*:-m avr2}\ %{mmcu=atmega103|\ mmcu=atmega603|\ mmcu=at43*|\ mmcu=at76*:-m avr3}\ %{mmcu=atmega8*|\ mmcu=atmega48|\ mmcu=at90pwm2|\ mmcu=at90pwm3:-m avr4}\ %{mmcu=atmega16*|\ mmcu=atmega32*|\ mmcu=atmega406|\ mmcu=atmega64*|\ mmcu=atmega128*|\ mmcu=at90can
in „ATtiny24 - ISR wird nie gerufen __vectors> fehlt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Burr-Brown-ADS1230.pdf
or 60Hz ±1Hz, Internal Oscillator 80 90 dB Normal-Mode Rejection DATA= 10SPS (3) External Oscillator 90 100 dB Common-Mode Rejection at DC, AVDD = 0.1V 110 dB DATA= 10SPS 53 nV, rms Input-Referred Noise DATA= 80SPS 100 nV, rms Power-Supply
in „Konzept für eine Waage gesucht“ · Mikrocontroller und Digitale Elektronik ·
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MBM29LV800.pdf
Sector Erase, the Resume command (30H) should be written. Any further writes of the Resume command at this point will be ignored. Another Erase Suspend command can be written after the chip has resumed erasing. 21 MBM29LV800TA -70/-90/-12 /MBM29LV800BA -70/-90/-12 Extended Command (1) Fast Mode MBM29LV800TA
in „650Stk. Flashbausteine 29LV800 1Mx8 / 512k x16, 3,3V“ · Markt ·
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PDF
S29GL512N.pdf
SA88 0 1 1 0 0 0 128/64 0B00000–0B1FFFF 0580000–058FFFF SA89 0 1 1 0 0 1 128/64 0B20000–0B3FFFF 0590000–059FFFF SA90 0 1 1 0 1 0 128/64 0B40000–0B5FFFF 05A0000–05AFFFF SA91 0 1 1 0 1 1 128/64 0B60000–0B7FFFF 05B0000–05BFFFF
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Preview_of__io.h_.pdf
__AVR_ATmega2561__) # include <avr/iom2561.h> Page 3 of 9 io.h 24.07.12 15:37 #elif defined (__AVR_AT90CAN32__) # include <avr/iocan32.h> #elif defined (__AVR_AT90CAN64__) # include <avr/iocan64.h> #elif defined (__AVR_AT90CAN128__) # include <avr/iocan128.h> #elif defined (__AVR_AT90USB82__) # include
in „µC am Mac mit C programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
90s1200.pdf
subroutine calls or interrupts are executed, the first val- ues written to the stack are overwritten. 8 AT90S1200 0838H–AVR–03/02 AT90S1200 EEPROM Data Memory The AT90S1200 contains 64 bytes of data EEPROM memory. It is organized as a sepa- rate data space, in which single bytes can be read and written. The
in „Unterschied zwischen einzelnen avr´s“ · Mikrocontroller und Digitale Elektronik ·
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PDF
M7000_US_2003.pdf
the safe continuous operating zone. The lighter shaded zones x▯ Between 0Hz and 12Hz the NORD motors can below 5Hz and above 90Hz indicates cautionary not produce as much torque as at their 60Hz performance limited by the inverter or vector rating. This is due to the reduced cooling air-flow controller
in „Frequenzumformer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
doc7707.pdf
5-2 shows how the AT90USB82/162 SRAM Memory is organized. The AT90USB82/162 is a complex microcontroller with more peripheral units than can be sup- ported within the 64 location reserved in the Opcode for the IN and OUT
in „AVR (AT90USB162) - Sleep Mode und PCINT“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Technical_Information_Isabellenhuette.pdf
0,94 area available for heat transfer to the carrier by heat conductance as 0,08 0,32 0,45 0,55 0,64 0,71 0,78 0,84 0,90 0,96 1,01 compares with round wires, but no 0,09 0,34 0,48 0,58 0,68 0,76 0,83 0,89 0,96 1,01 1,07 generally valid data can be given as 0,10 0,35 0,50 0,62 0,71 0,80 0,87 0,94 1,01
in „Temperatur des Heizdrahtes berechnen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
man_gcc.pdf
atmega8hva", "atmega8515", "atmega8535", "atmega88", "atmega88a", "atmega88p", "atmega88pa", "atmega88pb", "at90pwm1", "at90pwm2", "at90pwm2b", "at90pwm3", "at90pwm3b", "at90pwm81". "avr5" "Enhanced" devices with 16@tie{}KiB up to 64@tie{}KiB of program memory. mcu@tie{}= "ata5702m322", "ata5782", "ata5790",
in „avr-g++: external linkage von const/PROGMEM Symbol.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
verlinkung.txt
aus Forenbeiträgen auf das Datenblatt # Verlinkung über verkürzte Bezeichnung auf ein Datenblatt - - AT32UC3L0128 - - AT32UC3L016 - - AT32UC3L0256 - - AT32UC3L032 - - AT32UC3L064 + * AT90CAN128 - - AT90CAN32 - - AT90CAN64 - - AT90PWM1 - - AT90PWM161 - - AT90PWM216 - # AT90PWM2B - - AT90PWM316 - # AT90PWM3B - - AT90PWM81 - - AT90USB1286 - - AT90USB1287 - - AT90USB162 - - AT90USB646 + * AT90USB647 - - AT90USB82 - - ATUC128L3U - - ATUC128L4U - - ATUC256L3U - - ATUC256L4U - - ATUC64L3U - - ATUC64L4U + - ATmega128
in „MC PIC - Warum diese Ungleichbehandlung?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVRootloader.asm
; copyright HR .nolist ; supported devices ;.include "can128def.inc" ; AT90CAN128 ;.include "can32def.inc" ; AT90CAN32 ;.include "can64def.inc" ; AT90CAN64 ;.include "m1280def.inc" ; ATmega1280 ;.include "m1281def.inc" ; ATmega1281 ;.include "m1284Pdef.inc
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PDF
AVR_Product_Update_M__03.pdf
TQFP, MLF now ATtiny28L 2 - 32 Registers 20 - - - - - 1 - - - - 2.7-5.5 0-4 28 PDIP, 32 TQFP, MLF now AT90S1200 1 64 32 Registers 15 - - - - - 1 - - - I 2.7-6.0 0-4 20 PDIP,SOIC,SSOP now AT90S1200 1 64 32 Registers 15 - - - - - 1 - - - I 4.0-6.0 0-1220 PDIP,SOIC,SSOP now AT90S2313 2 128 128 15 - 1 - - -
in „Atmel Familie“ · Mikrocontroller und Digitale Elektronik ·
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PDF
atmel-flash-speicher.pdf
V V OH2 Output High Voltage CMOS IOH = -100 µA; VCC= 4.5V 4.2 V Note: 1. In the erase mode, CC is 90 mA. 4 AT49F512 AT49F512 AC Read Characteristics AT49F512-50 AT49F512-70 AT49F512-90 Symbol Parameter Min Max Min Max Min Max Units tACC Address to Output Delay 50 70 90 ns tCE(1) CE to Output Delay 50
in „Speicher für Messwerte“ · Mikrocontroller und Digitale Elektronik ·
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Datei
io.h
<avr/iom2560.h> #elif defined (__AVR_ATmega2561__) # include <avr/iom2561.h> #elif defined (__AVR_AT90CAN32__) # include <avr/iocan32.h> #elif defined (__AVR_AT90CAN64__) # include <avr/iocan64.h> #elif defined (__AVR_AT90CAN128__) # include <avr/iocan128.h> #elif defined (__AVR_AT90USB82__) # include
in „direkt in ein Register des Tiny5 schreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT90PWM2_2B_3_3B__2_.pdf
0x0000 Application Flash Section Boot Flash Section 0x0FFF 6.2 SRAM Data Memory Figure 2 shows how the AT90PWM2/2B/3/3B SRAM Memory is organized. 19 4317I–AVR–01/08 The AT90PWM2/2B/3/3B is a complex microcontroller with more peripheral units than can be supported within the 64 locations reserved in the Opcode
in „Interrupt bem Flankenwechsel beim AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at90pwm3.pdf
0x0000 Application Flash Section Boot Flash Section 0x0FFF 6.2 SRAM Data Memory Figure 2 shows how the AT90PWM2/2B/3/3B SRAM Memory is organized. 19 4317I–AVR–01/08 The AT90PWM2/2B/3/3B is a complex microcontroller with more peripheral units than can be supported within the 64 locations reserved in the Opcode
in „Schrittmotorsteuerung mir 90atPWM3“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Supercapacitor-Lifetime-Explained.pdf
Calculated Lifetime in Hours DeratedVoltage 4.8 5 5.2 5.4 5.6 5.8 6 25 1,448,155 724,077 362,039 181,019 90,510 45,255 22,627 30 1,024,000 512,000 256,000 128,000 64,000 32,000 16,000 u 35 724,077 362,039 181,019 90,510 45,255 22,627 11,314 a 40 512,000 256,000 128,000 64,000 32,000 16,000 8,000 e m 45 362,039 181,019 90,510 45,255 22,627 11,314 5,657 T e 50 256,000 128,000 64,000 32,000 16,000 8,000 4,000 a 55 181,019 90,510 45,255 22,627 11,314 5,657 2,828 e D 60 128,000 64,000 32,000 16,000 8,000 4,000 2,000 65 90,510
in „Solarleuchte ohne Akku“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ST29F400BB.pdf
Tables 3 and 4, Block Addresses. The They allow simple connection to most micropro- first or last 64 Kbytes have been divided into four additional blocks. The 16 Kbyte Boot Block can be cessors, often without additional logic. used for small initialization code to start the micro-he memory is offered
in „AT91 & OpenOCD Externes Flash Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
6581.pdf
Tables 3 and 4, Block Addresses. The They allow simple connection to most micropro- first or last 64 Kbytes have been divided into four additional blocks. The 16 Kbyte Boot Block can be cessors, often without additional logic. used for small initialization code to start the micro-he memory is offered
in „Externes Flash M29F400B ansprechen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
SA90 1011010xxx 64/32 5A0000h–5AFFFFh 2D0000h–2D7FFFh SA124 1111100xxx 64/32 7C0000h–7CFFFFh 3E0000h–3E7FFFh SA91 1011011xxx 64/32 5B0000h–5BFFFFh 2D8000h–2DFFFFh SA125 1111101xxx 64/32 7D0000h–7DFFFFh 3E8000h
in „S29GL064A Flash Speicher auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S29JL064H_00_A7_e.pdf
1010000xxx 64/32 500000h–50FFFFh 280000h–28FFFFh SA88 1010001xxx 64/32 510000h–51FFFFh 288000h–28FFFFh SA89 1010010xxx 64/32 520000h–52FFFFh 290000h–297FFFh SA90 1010011xxx 64/32 530000h–53FFFFh 298000h–29FFFFh SA91
in „[Verkaufe] 5xSDRAM (4Meg x 16 x 4 Banks) und 5xFLASH (64Meg 8 o. 16 Bit)“ · Markt ·
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PDF
KS0108B.pdf
/W Input Read or Write. R/W=H → Data appears at DB<0:7> and can be read by the CPU while E=H, CS1B=L, CS2B=L and CS3=H. R/W=L→Display data DB<0:7> can be written at falling of E when CS1B=L, CS2B=L and CS3=H. 79~86 DB0~DB7 Input/Output Data bus. (
in „GraphikLCD zeigt mir nichts“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tmp95fy64f.pdf
equipment. TMP95FY64 has 256K-Byte Flash memory which can be rewritten and erased on board. TMP95FY64 is housed in QFP-100pin package. Device characteristics are as follows: (1) Original High speed 16-bit CPU(900/H CPU)
in „[S] Tools für TMP95FY64F von Toshiba“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVRrescue.c
ATxmega32A4 {0x1E, 0x95, 0x42, 00, 00, 00}, // ATxmega32D4 {0x1E, 0x95, 0x81, 0x62, 0x99, 0xFF}, // AT90CAN32 {0x1E, 0x95, 0x84, 0x41, 0xD9, 0xF9}, // ATmega32M1 {0x1E, 0x95, 0x86, 0x41, 0xD9, 0xF9}, // ATmega32C1 {0x1E, 0x96, 0x02, 0xC1, 0x99, 0xFF}, // ATmega64 {0x1E, 0x96, 0x03, 0x62, 0x99, 0xFF},
in „AVR-Rescue: standalone Parallel HV-Programmer“ · Projekte & Code ·
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PDF
EKG_usw_Informationformedicalapplications_von_TI.pdf
meet speed, precision, power savings and dynamic range to meet a wide the demands of the digital age. At clock rates of up to 1 GHz, the C64x™ variety of design needs. These dynamic DSPs are the ideal solution for DSPs can process information at a rate of more than 5760 MIPS. TI’s demanding applications
in „EKG Schaltung Neuling“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD7606_7606-6_7606-4.pdf
–20 10V RANGE OS BY 4 0 ) –30 AVCC = 5V d –10 VDRIVE = 5V ( –40 TA = 25°C O 10V RANGE T –20 OS BY 64 A –50 N ) –30 E –60 d T ( –40 A N –70 I A –50 –80 U E –60 –90 T A –70 –100 5 100 1k 10k 100k 1M 10M 9 –80 4 FREQUENCY (Hz) 0 –90 Figure57.DigitalFilterResponseforOS4 –100 6 0 100 1k 10k 100k 1M 10M -
in „STM32 Parallel Bus ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mega128-can128.pdf
AVR096: Migrating from ATmega128 to AT90CAN128 This application note is a guide to help current ATmega128 users convert existing designs to AT90CAN128. The information given will also help users migrating from any ATmega microcontroller to AT90CAN128. Additionally, the electrical characteris- tics of the AT90CAN128 are different than those of ATmega128. Check the datasheets of both of these products for detailed information. 8-bit Features
in „AtMega128 - At90Can128“ · Mikrocontroller und Digitale Elektronik ·