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14_hoofdstuk14.pdf
functie van de LCD gebruikt wordt. Dit laatste is dus niet het geval in onze toepassing. De busy flag (BF) is een bit die “1” is wanneer het display bezig is met het uitvoeren van een interne instructie. Zo kan men weten of er een nieuwe instructie of data geschreven mag worden. Deze BF wordt op data lijn
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Diamond_WP.pdf
data types. All Xtensa processors share the baseline ISA’s Boolean register set and the BF and BT instructions. This approach makes efficient use of the Xtensa ISA’s short, 24-bit instruction word. This scheme is a new variant of compare-and-branch condition codes found in many earlier processor
in „Nachfolger vom esp8266: ESP32 - besser, schneller“ · Offtopic ·
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PDF
8XCE558.pdf
addressable bit locations.The stack can be 6.2.2 Internal Data Memory located anywhere in the internal 256 bytes RAM.The stack depth The internal data memory is divided into three physically separated is only limited by the available internal RAM space of 256 bytes parts: (see Figure 7). 256 bytes of RAM
in „Gesucht: schnelles 8051-Derivat mit Bootloader“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hut1_12v2.pdf
Tables 37 Usage ID Usage Name Usage Type Section BD Flare Release OSC 5.2 BE Landing Gear OOC 5.2 BF Toe Brake DV 5.2 C0 Trigger MC 5.2 C1 Weapons Arm OOC 5.2 C2 Weapons Select OSC 5.2 C3 Wing Flaps DV 5.2 C4 Accelerator DV 5.3 C5 Brake DV 5.3 C6 Clutch DV 5.3 C7 Shifter DV 5.3 C8 Steering DV 5.3 C9
in „USB HID Descriptor Spotify-Steuerung STM32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VHF-COMM.1984.2--b.pdf
having a lid of10 to25, willhave a loop antenna as short, wide inductance as shown in (4)' lid!of bf!tween 50 and 200, which is virtually independent 01 thematerial usee. l = 10 X~ xNl x(ln 4d - 0.5) 2 I The ,:>Ir<lY capacitC~ and me input capaci ranee C•• can only be deteruuned with 11m where Iisthe
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PDF
VHF-COMM.1984.2.pdf
having a lid of10 to25, willhave a loop antenna as short, wide inductance as shown in (4)' lid!of bf!tween 50 and 200, which is virtually independent 01 thematerial usee. l = 10 X~ xNl x(ln 4d - 0.5) 2 I The ,:>Ir<lY capacitC~ and me input capaci ranee C•• can only be deteruuned with 11m where Iisthe
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PDF
avr-libc-user-manual.pdf
is undefined and is used here as an example // only.) for(unsigned long i = ADDRESS; i < ADDRESS + 256; i++) { show(utoa(pgm_read_byte(i), buffer, 16)); } return; } Defines • #define BOOTLOADER SECTION attribute ((section (”.bootloader”))) • #define boot spm interrupt enable() ( SPM REG |= (uint8 t) BV(
in „C Tutorial gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
wg160128b_datasheet.pdf
and codes 80H to FFH represent the user’s own “external” characters. In external CG ROM mode, all 256 codes from 00H to FFH can be used to represent the user’s own characters. The three least significant bits indicate one of the eight rows of eight dots that define the character’s shape. The relationship
in „GLCD Kontrast (WG160128B & T6963c)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.lst
007D C9 [10] 253 ret 007E 254 _Set_GPIO_end:: 255 ;driver.c:65: void SetLed(uint8_t lednr, bool stat) 256 ; --------------------------------- 257 ; Function SetLed 258 ; --------------------------------- 007E 259 _SetLed_start:: 007E 260 _SetLed: 261 ;driver.c:70: foo = PIO8255_PORT_A; 007E DB 20 [11] 262
in „Mehrdimensionale char-arrays“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mirkonet_tmp.pdf
MSP430F413IRTDT TEXAS MSP430 MCU MSP430F4113 YES YES 6,050 7,260 21,780 Farnell QFN-64 N/A MSP430 MCU, 8k Flash, 256b RAM, 48 I/O, LCD96, SVS, 8MHz N/A -40/+85 N/A N/A 1,8 3,6 3,3 N/A 1537194 4 MCU MSP430F2252TRHATTEXAS MSP430 MCU MSP430F2252 YES YES 4,150 4,980 19,920 Farnell QFN-40 N/A MSP430 MCU 16k Flash, 512b
in „Komplettverkauf Bauteile, was wert? - Tabelle“ · Markt ·
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PDF
IDE11.PDF
Wieviele Bytes geladen werden, hängt vom eingesetzten HC11-Typ ab. Der 68HC11A8 erwartet z.B. genau 256 Bytes. Jedes dieser 256 Bytes wird vom Bootlader als Echo zurückgeschickt, was eine Kontrolle der Übertragung ermöglicht. Ist der Ladevorgang been- det, springt der Bootlader zu Adresse $0000, der eben
in „Programm zum MC68HC11 auslesen und programmieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avrdude_out.txt
message: 12 80 00 [AVR] OK Writing | ################# | 33% 0.02savrdude: jtag3_paged_write(.., flash, 256, 256) avrdude: jtag3_paged_write(): block_size at addr 256 is 256 avrdude: Sending write memory command: avrdude: jtag3_edbg_send(): sending 269 bytes avrdude: Sent: . [80] . [11] . [01] . [11] . [0e
in „avrdude braucht lange zum Beenden (Linux)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
clrc632.pdf
001: MIFARE , ISO14443-A, (Miller coded) 010: RFU 011: RFU 100: For I●CODE1 standard mode (1 out of 256 coding) 101: For I●CODE1 fast mode (RZ coding) 110: For ISO 15693 standard mode (1 out of 256 coding) 111: For ISO 15693 fast mode (1 out of 4 coding) 41 Confidential Philips Semiconductors Product
in „SPI master/slave - schreib/lese befehle ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Elektor_1978-06.pdf
messages. With 8 address switches it is only Memory), the contents of which can possible to address 256 bits of memory, easily be altered, and hence used to store different messages. In addition it is possible to arrange matters such that MORSE CODE the basic function of the call-generator, 2102C 2102B
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Datei
lanc0093.c
Application Clock frequency : 16,000000 MHz Memory model : Small External SRAM size : 0 Data Stack size : 256 Copyright (C) Damir Vrancic This program is free software; you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation; either
in „Problem mit ATMega8 - Flash überschreibt EEPROM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
0513.asm
275 : if (pin_a0 == low & manual == 1) then up = true btfsc H'005',0 goto if_15776_el e_15781: ; 00BF movf H'017',w sublw H'01' btfss H'003',2 goto if_15776_el if_15776_th: ; 00C3 bsf H'00C',2 goto if_15776_by if_15776_el: ; 00C5 ;; 276 : else up = false bcf H'00C',2 if_15776_by: ; 00C6 if_15722_by:
in „Jal compilieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
font.c
0x00, 0x30, 0x00, 0x60, 0x00, 0x00, 0x00, 0xE0, 0x01, 0x20, 0x04, 0x20, 0x18, 0xA0, 0x5F, 0x40, 0xBF, 0x80, 0x3A, 0x01, 0xFD, 0x02, 0xDA, 0x05, 0x08, 0x06, 0x20, 0x06, 0x80, 0x07, 0xC0, 0x00, 0x40, 0x01, 0x80, 0x02, 0x00, 0x06, 0x00, 0x00, 0x00, 0x00, 0x00, 0x40, 0x04, 0x80, 0x08, 0x00, 0x11, 0xC0,
in „Großer Font f. T6963 Display?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
16F648a_40044F.pdf
Operation (MHz) Flash Program 1024 2048 4096 1024 2048 4096 Memory (words) Memory RAM Data Memory 224 224 256 224 224 256 (bytes) EEPROM Data 128 128 256 128 128 256 Memory (bytes) Timer module(s) TMR0, TMR1, TMR0, TMR1, TMR0, TMR1, TMR0, TMR1, TMR0, TMR1, TMR0, TMR1, TMR2 TMR2 TMR2 TMR2 TMR2 TMR2 Comparator
in „16f627A schaltet RA5 u RA6 nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Values.txt
TDA1524A 2 Tastenfeld 2 Tastatur 2 SYMBOL.LEDDREIECK 2 SWITCH 2 STLZ1550 2 STF715 2 STECKVERBINDER 2 ST24C256 2 SS14L 2 Serielle Schnittstelle 2 SB340 2 Rot 2 rot 2 RL 2 Reset 2 REICHELT_VFI353 2 RECTIFIER-B40S 2 r9 2 PWR 2 PV8251 2 PR1003 2 Power Out 2 POWER 2 PIN3F061.120 2 PIC16F877P 2 PIC16F874P 2 PG203J
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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Datei
mon8051.asm
RELATIVE OFFSET JNB ACC.7,DISX ; IF OFFSET > 127 THEN MOV A,#H'00 CLR C SUBB A,par03+1 ; OFFSET = 256 - OFFSET MOV par03+1,A MOV A,#H'01 ; A BORROW ? SUBB A,#H'0 MOV par03,A CLR C MOV A,DPL ; NOW SUBTRACT FROM PC SUBB A,par03+1 ; LOWER MOV DPL,A MOV A,DPH SUBB A,par03 MOV DPH,A SJMP DISY DISA10: SJMP
in „IRAM 80c32x2 indirekte Adressierung Fehler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
uniTFT050-A.pdf
Sekundeänden #IVS 1,70 Bargraph Wert Update GrünenFarbverlaufdefinieren #CCR 1,0,$005f00,100,50,$00Bf00,100,100,$005f00,100 KeineUmrandungdefinieren #CLD 1 EinfarbigeblaueFüllungdefinieren #CFC 2,$008dd3,100 Linienstylefür Umrandungdefinieren #CLS 2,$ffffff,100,2 Farbverlaufalslinear mit90°Verdrehungdefinieren
in „Probleme mit übertragung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_uniTFT_050-A.pdf
Sekundeänden #IVS 1,70 Bargraph Wert Update GrünenFarbverlaufdefinieren #CCR 1,0,$005f00,100,50,$00Bf00,100,100,$005f00,100 KeineUmrandungdefinieren #CLD 1 EinfarbigeblaueFüllungdefinieren #CFC 2,$008dd3,100 Linienstylefür Umrandungdefinieren #CLS 2,$ffffff,100,2 Farbverlaufalslinear mit90°Verdrehungdefinieren
in „Display am Attiny 841“ · Mikrocontroller und Digitale Elektronik ·
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Datei
RTC_LCD320x240.asm
Ausgabe auf OC1A out TCCR1A, temp ;Timer Counter Control Register 1A (Timer 1) ldi temp, 1 ;Systemtakt/256 -> 62,5kHz PWM out TCCR1B, temp ;Timer Counter Control Register 1B (Timer 1) ldi temp, 128 ;low byte des 16 bit Vergleichswertes out OCR1AL, temp ;Output Compare Register Timer 1A Low ;Timer 2 (8 bit
in „Einfacher Low Cost LCD Controller für 320x240 LCD im Textmodus“ · Projekte & Code ·
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PDF
DS_SX1261-2_V1.1-1307803.pdf
of Spreading Factors (SF) Spreading Factor (SF) 5 6 7 8 9 10 11 12 2^SF (Chips / Symbol) 32 64 128 256 512 1024 2048 4096 Typical LoRa® Demodulator SNR [dB] -2.5 -5 -7.5 -10 -12.5 -15 -17.5 -20 A higher spreading factor provides better receiver sensitivity at the expense of longer transmission times
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PDF
13504_TM_X19AQ00214.pdf
: 5 # # # [ [ # S A A RESET# RESET# A D W R C C M M L U ] # # # # : 5 E S A S [ [ W R C C A D L U 256Kx16 FPM/EDO-DRAM Figure 3-3: Typical System Diagram – MC68K Bus 2, 256Kx16 FPM/EDO-DRAM (32-Bit MC68030) Hardware Functional Specification S1D13504 Issue Date: 01/01/30 X19A-A-002-18 Page 16 Epson Research
in „[V] Displaycontroller Epson SED1354 (800*600)“ · Markt ·
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PDF
P89C51RC_IN.pdf
Pointer Low 82H 00H AF AE AD AC AB AA A9 A8 IE* Interrupt Enable A8H EA EC ET2 ES ET1 EX1 ET0 EX0 00H BF BE BD BC BB BA B9 B8 IP* Interrupt Priority B8H – PPC PT2 PS PT1 PX1 PT0 PX0 x0000000B B7 B6 B5 B4 B3 B2 B1 B0 IPH# Interrupt Priority HigB7H – PPCH PT2H PSH PT1H PX1H PT0H PX0H x0000000B 87 86 85 84
in „[V] 8St. 8051er Philips P89C51RC+IA PLCC44 (6€)“ · Markt ·
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PDF
S1D13504_MF1072-04.pdf
] : BCLK BUSCLK 8 1 # S S RESET# A D E A A C RESET# M M W R L U 0 : # S S S 8 1 W A A A A D R L U 256Kx16 FPM/EDO-DRAM Figure 3-3 Typical System Diagram – MC68K Bus 2, 256Kx16 FPM/EDO-DRAM (32-Bit MC68030) Power Oscillator Management GENERIC BUS I A21 M/R# D L N C P U CSn# CS# S A[20:0] AB[20:0] FPDAT
in „[V] Displaycontroller Epson SED1354 (800*600)“ · Markt ·
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PDF
gps-spec-IS_GPS_200J.pdf
part of the verification of specific implementations of the P-code. Table 6-III provides the first 256 chips of the P-code for selected PRNs. Table 6-IV provides the last 1024 P-code chips of the week for selected PRNs. 62 IS-GPS-200J 22 May 2018 Table 6-III. First 256 P-code Chips of the Week for Selected
in „Magisches Auge für GPS-Empfänger“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ttester.pdf
24-60mA Idss=35mA 2N5459 N-JFET 2.1mA Vgs=1.5V 2.1mA Vgs=1.5V 2.1mA Vgs=1.5V Idss=4-16mA Idss=8.2mA BF256C N-JFET 3.4mA Vgs=2.4V 3.4mA Vgs=2.4V 3.4mA Vgs=2.4V Idss=11-18mA Idss=14mA BF245A N-JFET 1.1mA Vgs=.75V 1.1mA Vgs=0.75V 1.1mA Vgs=0.75V Idss=2-6mA Idss=3.6mA BF245B N-JFET 2.5mA Vgs=1.7V 2.5mA Vgs=1.7V 2.5mA Vgs=1.7V Idss=6-15mA Idss=10mA BF245C N-JFET 3.9mA Vgs=2.7V 3.9mA Vgs=2.7V 3.9mA Vgs=2.7V Idss=12-25mA Idss=17mA J175 P-JFET 3.2mA Vgs=2.2V 3.2mA Vgs=2.2V 3.2mA Vgs=2.2V Idss=7-60mA Idss=26mA 2N5460 P-JFET 0.78mA Vgs=0.54V 0.77mA Vgs
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Datei
MPHexEditor.pas
#$8F, #$8E, #$90, #$91, #$93, #$92, #$94, #$95, #$F0, #$96, #$98, #$97, #$99, #$9B, #$9A, #$D6, #$BF, #$9D, #$9C, #$9E, #$9F, #$FD, #$FE, #$D8 ), // mac to ansi (#$00, #$01, #$02, #$03, #$04, #$05, #$06, #$07, #$08, #$09, #$0A, #$0B, #$0C, #$0D, #$0E, #$0F, #$10, #$11, #$12, #$13, #$14, #$15, #$16,
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Datei
foo.dwarf-3.txt
uleb128 0x1 .long .LASF254 .byte 0x5 .uleb128 0x1 .long .LASF255 .byte 0x5 .uleb128 0x1 .long .LASF256 .byte 0x5 .uleb128 0x1 .long .LASF257 .byte 0x5 .uleb128 0x1 .long .LASF258 .byte 0x5 .uleb128 0x1 .long .LASF259 .byte 0x5 .uleb128 0x1 .long .LASF260 .byte 0x5 .uleb128 0x1 .long .LASF261 .byte 0x5
in „Simple C Frage zum Typ enum“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ODM100.c
,0x59}, // (120) /2 - 0x00BD Vulgar Fraction One Half {0x30,0x48,0x45,0x40,0x20}, // (121) ? - 0x00BF Inverted Question Mark {0x70,0x29,0x26,0x28,0x70}, // (122) `A - 0x00C0 Latin Capital Letter A with Grave {0x70,0x28,0x26,0x29,0x70}, // (123) 'A - 0x00C1 Latin Capital Letter A with Acute {0x70,0x2A
in „Frage zum ODM100 OLED Bausatz von ELV“ · Mikrocontroller und Digitale Elektronik ·
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Datei
oled1.c
,0x59}, // (120) /2 - 0x00BD Vulgar Fraction One Half {0x30,0x48,0x45,0x40,0x20}, // (121) ? - 0x00BF Inverted Question Mark {0x70,0x29,0x26,0x28,0x70}, // (122) `A - 0x00C0 Latin Capital Letter A with Grave {0x70,0x28,0x26,0x29,0x70}, // (123) 'A - 0x00C1 Latin Capital Letter A with Acute {0x70,0x2A
in „AVR Oled Display odm 100-Wie ansteuern?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
oled.c
,0x59}, // (120) /2 - 0x00BD Vulgar Fraction One Half {0x30,0x48,0x45,0x40,0x20}, // (121) ? - 0x00BF Inverted Question Mark {0x70,0x29,0x26,0x28,0x70}, // (122) `A - 0x00C0 Latin Capital Letter A with Grave {0x70,0x28,0x26,0x29,0x70}, // (123) 'A - 0x00C1 Latin Capital Letter A with Acute {0x70,0x2A
in „ODM100 OLED bleibt schwarz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADNS2051.pdf
per inch 0 = 400 1 = 800 Pix Dump Dump the pixel array through Data_Out_Upper and Data_Out_Lower, 256 bytes 0 = disabled 1 = dump pixel array Reserved Reserved Reserved Reserved Sleep Sleep Mode 0 = Normal, fall asleep after one second of no movement (1500 frames/s) 1 = Always awake Reserved Address
in „Maussensor ADNS 2051 Bild auslesen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ODM100.c
,0x59}, // (120) /2 - 0x00BD Vulgar Fraction One Half {0x30,0x48,0x45,0x40,0x20}, // (121) ? - 0x00BF Inverted Question Mark {0x70,0x29,0x26,0x28,0x70}, // (122) `A - 0x00C0 Latin Capital Letter A with Grave {0x70,0x28,0x26,0x29,0x70}, // (123) 'A - 0x00C1 Latin Capital Letter A with Acute {0x70,0x2A
in „SSD 1351 - OLED ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datasheet_IVT-S_V1.02.pdf
illegal opcode 0x0f Error Reset Watchdog 0x10 Error Reset EMC 2 0xnn Number of occurred errors (max. 256) retrievable in STOP- and RUN-mode, depends on get command DB1 isascale@isabellenhuette.de 03.11.2020 http://www.isabellenhuette.de page 32 of 43 IVT-S Datasheet, Version 1.02 Response on Overall
in „Strommessung bis 60V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DE200610__1_.pdf
2119 FBD64 LQFP64 128k 16 10.00 · LxBxH:157 x ATMEGA 2560-8 AU TQFP-100 8 86 LPC 2129 FBD64 LQFP64 256k 16 10.95 102 x 40 mm 95 LPC 2131 FBD64 LQFP64 32k 8 5.85 ATMEGA 2561-16 AU TQFP-100 16 86 je13. LPC 2134 FBD64 LQFP64 128k 16 8.50 ATmega Flash-Memory: 64 kByte, LPC 2136 FBD64 LQFP64 256k 32 10.25 EEPROM: 512 Byte, RAM: 1 kByte LPC 2138 FBD64 LQFP64 512k 32 12.25 00 LPC 2194 JBD64 LQFP64 256k 16 12.90 ME LABJACK U12 Mini-Mess-Lab149. LPC 2214 FBD144 LQFP144 256k 16 13.45 ME EXALAB wie oben, jedoch inkl. grafischer MHz I/O 65 ATMEGA 644-20 AU TQFP-44 20 32 6. LPC 2290 FBD144 LQFP144 16 7.55
in „ekg schaltung aus heft 10/2006“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
H8-325.pdf
Reserved Reserved H'FE7F H'FE7F H'FE80 *1 H'FE80 *1 H'FE80 On-chip RAM, On-chip RAM, On-chip RAM, 256 bytes 256 bytes H'FF7F 256 bytes H'FF7F H'FF7F H'FF80 Externaladdressspace H'FF80 Externaladdressspace H'FF8F H'FF8F H'FF90 H'FF90 H'FF90 On-chip register field On-chip register field On-chip register
in „Programmer für HD6473258P10 selber bauen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
8x8_horizontal_LSB_1.h
const char font[256][8]={ {0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00}, // 0x00 {0x7E,0x81,0xA5,0x81,0xBD,0x99,0x81,0x7E}, // 0x01 {0x7E,0xFF,0xDB,0xFF,0xC3,0xE7,0xFF,0x7E}, // 0x02 {0x36,0x7F,0x7F,0x7F,0x3E,0x1C,0x08,0x00
in „OLED Display mit SSD1327 Controller ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MON8052.asm
RELATIVE OFFSET JNB ACC.7,DISX ; IF OFFSET > 127 THEN MOV A,#H'00 CLR C SUBB A,par03+1 ; OFFSET = 256 - OFFSET MOV par03+1,A MOV A,#H'01 ; A BORROW ? SUBB A,#H'0 MOV par03,A CLR C MOV A,DPL ; NOW SUBTRACT FROM PC SUBB A,par03+1 ; LOWER MOV DPL,A MOV A,DPH SUBB A,par03 MOV DPH,A SJMP DISY DISA10: SJMP
in „80C535 Board“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MON8052.asm
RELATIVE OFFSET JNB ACC.7,DISX ; IF OFFSET > 127 THEN MOV A,#H'00 CLR C SUBB A,par03+1 ; OFFSET = 256 - OFFSET MOV par03+1,A MOV A,#H'01 ; A BORROW ? SUBB A,#H'0 MOV par03,A CLR C MOV A,DPL ; NOW SUBTRACT FROM PC SUBB A,par03+1 ; LOWER MOV DPL,A MOV A,DPH SUBB A,par03 MOV DPH,A SJMP DISY DISA10: SJMP
in „ARM: kompliziert?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MON8052.asm
RELATIVE OFFSET JNB ACC.7,DISX ; IF OFFSET > 127 THEN MOV A,#H'00 CLR C SUBB A,par03+1 ; OFFSET = 256 - OFFSET MOV par03+1,A MOV A,#H'01 ; A BORROW ? SUBB A,#H'0 MOV par03,A CLR C MOV A,DPL ; NOW SUBTRACT FROM PC SUBB A,par03+1 ; LOWER MOV DPL,A MOV A,DPH SUBB A,par03 MOV DPH,A SJMP DISY DISA10: SJMP
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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PDF
203493453ADF7020_0.pdf
(Divide-by-2Mode) 431 478 MHz See conditions for Direct Output. PhaseFrequencyDetectorFrequency RF/256 24 MHz TRANSMISSION PARAMETERS Data Rate FSK/GFSK 0.15 200 kbps 1 OOK/ASK 0.15 64 kbps OOK/ASK 0.3 100 kbaud Using Manchester encoding Frequency Shift Keying 2, 3 GFSK/FSK Frequency Deviation 1 110
in „LFCP_VQ löten/belichten?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
8052AH-BASIC_Users_Manual.pdf
calculate the address of the source and 290 REM eprom location that failed to program 300 S1=DBY(25)+256*DBY(27) : S1=S1-1 : D1=DBY(24)+256*DBY(26) 310 PH0. "THE VALUE ",XBY(S1), : PH1. " WAS READ AT LOCATION ",S1 : PRINT 320 PH0. "THE EPROM READ ",XBY(D1), : PH1. " AT LOCATION ",D1 : END 330 REM these
in „Was ist das für eine Platine“ · Mikrocontroller und Digitale Elektronik ·
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PDF
156346062-STi7105.pdf
Start Offset End Offset Size (Bytes)Description HDMI_REG 0x0000 0x07FF 512 RESERVED 0x0800 0x0BFF 256 Reserved SPDIFPLAYER_REG 0x0C00 0x0CFF 64 RESERVED 0x0E00 0x0FFF 128 Reserved I2S2SPDIF_1 0x1000 0x13FF 256 I2S2SPDIF_2 0x1400 0x17FF 256 s I2S2SPDIF_3 0x1800 0x1BFF 256 i a I2S2SPDIF_4 0x1C00 0x1FFF
in „Motorola Vip19x0 (Big brother of Vip1710)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMEGA88-DB.pdf
Non-volatile Memory segments – 4/8/16K Bytes of In-System Self-programmable Flash program memory – 256/512/512 Bytes EEPROM 8-bit – 512/1K/1K Bytes Internal SRAM – Write/Erase cyles: 10,000 Flash/100,000 EEPROM – Data retention: 20 years at 85°C/100 years at 25°C) Microcontroller – Optional Boot Code
in „Schieberegister SN54HC595 mit Atmel atmega 88 ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Modbus_over_serial_line_V1_02.pdf
implementation guide V1.02 Modbus.org 2.2 MODBUS Addressing rules The MODBUS addressing space comprises 256 different addresses. 0 From 1 to 247 From 248 to 255 Broadcast Slave individual addresses Reserved address The Address 0 is reserved as the broadcast address. All slave nodes mustognise the broadcast
in „Modbus RTU Terminal, Freeware Programm“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ml50x_schematics.pdf
set to "Linear" by default VCC3V3 Silkscreen: "Synchronous SRAM" D 1 % 1 % 1 % 1 % "9 MBit - 36 X 256K" D 5 5 5 5 Silkscreen: 0 0 0 0 SRAM_CEN_B 87 66 NC "Strata FLASH" P P P P SRAM_CE3_B 92 87_CEN_B NC_66 16 NC "256 MBit" R . R . R . R . 92_CE3_B NC_16 2 4 3 4 4 4 5 4 SRAM_CE2 97 97_CE2 NC_14 14 NC
in „DDR2 RAM Ansteuerung mit Virtex-5 ML507“ · FPGA, VHDL & Co. ·
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DSPIC33EP512GM710_datasheet.pdf
/ A a 6 O C x i p g 1 r E - O r t 1 P o M dsPIC33EP128GM304 128 16 0 dsPIC33EP128GM604 2 dsPIC33EP256GM304 0 TQFP, 256 32 9/4 8 8 12 2 4 3 1 5 2 1 2 18 4/5 1 Yes No No 35 44 QFN dsPIC33EP256GM604 2 dsPIC33EP512GM304 0 512 48 dsPIC33EP512GM604 2 dsPIC33EP128GM306 0 dsPIC33EP128GM706 128 16 2 dsPIC33EP256GM306 0 TQFP, 256 32 9/4 8 8 12 2 4 3 1 5 2 1 2 30 4/5 1 Yes Yes Yes 53 64 dsPIC33EP256GM706 2 QFN dsPIC33EP512GM306 0 512 48 dsPIC33EP512GM706 2 dsPIC33EP128GM310 0 128 16 dsPIC33EP128GM710 2 dsPIC33EP256GM310 0 256
in „Probleme mit SRAM 23LCV1024“ · Mikrocontroller und Digitale Elektronik ·