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PDF
lcd-moduldip204-4.pdf
- LED-Bel. - BEFEHLSTABELLE (KS0073, IE=HIGH) C ode Execute Instruction Description Time RE RS R/W DB DB DB DB DB DB DB DB Bit 7 6 5 4 3 2 1 0 (270kHz ) Clears all display and returns the cursor to the Clear Display * 0 0 0 0 0 0 0 0 0 1 home position (Address 0). 1.53ms Returns the Cursor to the home
in „4Bit Modus beim LCD KS0073? Grundsatzfrage“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD204DIP_EAS.pdf
- LED-Bel. - BEFEHLSTABELLE (KS0073, IE=HIGH) C ode Execute Instruction Description Time RE RS R/W DB DB DB DB DB DB DB DB Bit 7 6 5 4 3 2 1 0 (270kHz ) Clears all display and returns the cursor to the Clear Display * 0 0 0 0 0 0 0 0 0 1 home position (Address 0). 1.53ms Returns the Cursor to the home
in „Ausgabe verlangsamen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD204DIP_EAS.pdf
- LED-Bel. - BEFEHLSTABELLE (KS0073, IE=HIGH) C ode Execute Instruction Description Time RE RS R/W DB DB DB DB DB DB DB DB Bit 7 6 5 4 3 2 1 0 (270kHz ) Clears all display and returns the cursor to the Clear Display * 0 0 0 0 0 0 0 0 0 1 home position (Address 0). 1.53ms Returns the Cursor to the home
in „Bascom LCD Zeichen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EAS-4x20LCD.pdf
- LED-Bel. - BEFEHLSTABELLE (KS0073, IE=HIGH) C ode Execute Instruction Description Time RE RS R/W DB DB DB DB DB DB DB DB Bit 7 6 5 4 3 2 1 0 (270kHz ) Clears all display and returns the cursor to the Clear Display * 0 0 0 0 0 0 0 0 0 1 home position (Address 0). 1.53ms Returns the Cursor to the home
in „Bausatz Add-on für AVR-NET-IO“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LC_DISPLAY_20X4.pdf
supply for Logic circuit +5V 3 V0 Power supply for driving the LCD 4 RS Data/Instruction select 5 R/W Read/Write select 6 E Enable Signal 7 DB0 Data Bus Line 8 DB1 Data Bus Line 9 DB2 Data Bus Line 10 DB3 Data Bus Line 11 DB4 Data
in „Set DDRAM Address am 4 zeiligen LCD durch ATMega 32 funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S5_-_95U_Anleitung.pdf
='2 CLK DB5 DW0 ' 108: KC =' SET 3 01.10.91 12:00:' aaaaaaa 120: KC ='00 OHS aaaaaaa aaaaaaa 000000:00:00 ' 132: KC =' TIS 3 01.10. 12:00:00 ' 144: KC =' STP Y SAV Y CF 00 ' 156: KC =' ; # #RKT: PAR DB202DW0 '
in „SPS Eingänge werden regelmäßig beschädigt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD1937.pdf
V DIGITAL-TO-ANALOG CONVERTERS DAC Resolution All DACs 24 Bits Dynamic Range 20 Hz to 20 kHz, −60 dB input No Filter (RMS) 102 107 dB With A-Weighted Filter (RMS) 105 110 dB With A-Weighted Filter (Average) 112 dB Rev. 0 | Page 3 of 36 AD1937 Parameter Conditions/Comments Min Typ Max Unit Total Harmonic
in „Aktives Filter simulieren“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
170127_Log.txt
:49:58 27.01.17 Start program V2.2.14320-64 22:49:58 IDE: Lazarus LCL 1.1.0.0, Free Pascal FPC 2.6.3, Zeos 7.0.3-stable 22:49:58 Compile: 20.Mrz.2014 22:25:32 22:49:58 Use INI file: C:\EleLa\EleLa.ini 22:49:58 Parameter [DB] Protocol=mysql-5 22:49:58 Parameter [DB] HostName=213.136.73.62 22:49:58 Parameter
in „EleLa - Elektronik Lagerverwaltung Entwicklung V3.0“ · Projekte & Code ·
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Datei
mmc.inc
MMC_rSCD: .db 0x49,0x00,0x00,0x00,0x00,0xFF MMC_cmd42: .db 0x40+42,0,0,0,0,0xFF MMC_cmd13: .db 0x40+13,0,0,0,0,0xFF txt_mmc_init: .db "Init SD-Card ...",13,0 ;löschen txt_mmc_err: .db "no SD/MMC-Card found !",13,0 txt_mmc_ok: .db "SD/MMC init ok !",13,0 ;txt_fat_VBRA: .db "fat_VBRA: 0x",0,0 ;txt_fat_CLU_SIZE: .db "fat_CLU_SIZE: 0x",0,0 ;txt_fat_FAT_OFFSET: .db "fat_FAT_OFFSET: 0x",0,0 ;txt_fat_CLU_OFFSET: .db "fat_CLU_OFFSET:
in „SDKarte SPI gibt seltsame Antwort“ · Mikrocontroller und Digitale Elektronik ·
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PDF
deskline-dl5-dl6-system-montageanleitung-dt.pdf
a character or a number, thereby defining the variation of the product) And Linear Actuator(s) 31, DB4, DB5, DB6, DB7, DB9, DB12, DB14, DB16, LA23 series and / or Lifting Column(s) DL1A, DL2, DL4, DL5, DL6, DL7, DL8, DL9, DL10, DL11, DL12, DL14, DL15, DL16, DL17, DL19, BASE1 series And Desk Panel(s)
in „Schreibtisch Linak Problem beim runter fahren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avr_cpm.asm
temp2 lpm temp,Z+ lpm temp2,Z mov zl,temp mov zh,temp2 icall .if INS_DEBUG cpi trace,0 breq notrace3 rcall printstr .db "pre: oph:l=",0 mov temp,oph rcall printhex mov temp,opl rcall printhex rcall printstr .db " -- ",0 notrace3: .endif nofetch: ; *** Stage 4: Execute operation :) Use the op jumptable
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HP_MSA-0520.pdf
Specifications , T = 25°C A Symbol Parameters and Test Conditions: I = d65 mA, Z = 50O Units Min. Typ. Max. P 1 dB Output Power at 1 dB Gain Compression f=1.0GHz dBm 21.0 23.0 G P PowerGain(|S 21)2 f=0.1GHz dB 7.5 8.5 9.5 GP Gain Flatness f=0.1to2.0GHz dB ±0.75 [2] f3 dB 3 dB Bandwidth GHz 2.8 Input VSWR f=0.1to2.0GHz
in „[S] RF-Transistor AT-64020 oder einen adäquaten Ersatz“ · Markt ·
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Datei
keyboard.txt
;20 .db 0x00,0x4E,0x42,0x48,0x47,0x5A,0x26,0x00,0x00,0x00,0x4D,0x4A,0x55,0x2F,0x28,0x00 ;30 .db 0x3B,0x00,0x4B,0x49,0x4F,0x3D,0x29,0x00,0x00,0x3A,0x5F,0x4C,0xFE,0x50,0x3F,0x00 ;40 .db 0x00,0x00,0x1E,0x00,0x5F,0x00,0x00,0x00,0x00,0x00,_LF,0x2B,0x00,0x27,0x00,0x00 ;50 .db 0x3E,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x31,0x00,0x34,0x37,0x00,0x00,0x00 ;60 .db 0x30,0x2C,0x32,0x35,0x36,0x38,0x00,0x00,0x00,0x2b,0x33,0x2D,0x2A,0x39,0x00,0x00 ;70 .db 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00
in „PC-Keyboard?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
keyboard.txt
;20 .db 0x00,0x4E,0x42,0x48,0x47,0x5A,0x26,0x00,0x00,0x00,0x4D,0x4A,0x55,0x2F,0x28,0x00 ;30 .db 0x3B,0x00,0x4B,0x49,0x4F,0x3D,0x29,0x00,0x00,0x3A,0x5F,0x4C,0xFE,0x50,0x3F,0x00 ;40 .db 0x00,0x00,0x1E,0x00,0x5F,0x00,0x00,0x00,0x00,0x00,_LF,0x2B,0x00,0x27,0x00,0x00 ;50 .db 0x3E,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x31,0x00,0x34,0x37,0x00,0x00,0x00 ;60 .db 0x30,0x2C,0x32,0x35,0x36,0x38,0x00,0x00,0x00,0x2b,0x33,0x2D,0x2A,0x39,0x00,0x00 ;70 .db 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00
in „Aufzeichen von Daten PC Tast in Logfile“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PollinSpiel.bas
$framesize = 40 $swstack = 10 $hwstack = 30 $regfile = "ATtiny2313.dat" $crystal = 1000000 Lcd_db4 Alias Portb.0 Lcd_db5 Alias Portb.1 Lcd_db6 Alias Portb.2 Lcd_db7 Alias Portb.3 Lcd_e Alias Porta.0 Lcd_rs Alias Porta.1 Lcd_ein Alias Portd.6 Lcd_kontrast Alias Portb.4 Config Lcd_kontrast = Output
in „Messgeraetchen aus Pollin Spiel bauen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd_m50530.c
LCD_sendByte(0b100011, 0); // SD: // auf 4-Bit-Mode umschalten /* SET FUNCTION MODE input: OC1 0 OC2 0 RW 0 DB7,DB6 1 DB5 I/O 8/4 (1 = 8 bit, 0 = 4 bit) DB4 FONT 8/12 (1 = 5x8 fonts, 0 = 5x12 fonts) DB3,DB2 DUTY: DT1 = 1; DT2 = 0; DB1,DB0 RAM: RA1 = 1; RA2 = 0; */ // SF: Nibble mode, 5x7 font, 4x20 chars, 160 bytes DD RAM, 96 bytes CG RAM LCD_sendByte(0xDA, 0); //SF: DB7, DB6, DB4, DB3 //LCD_waitReady (); LCD_setZeichenCGRAM (); /* Schreibt selbst definierte Zeichen in CGRAM */ LCD_clear(); //LCD_waitReady (); LCD_writeBigChar ('0',4); LCD_waitReady (); _delay_ms (250
in „Zwei Pins von PORTB frei geben und dafür zwei Pins von PORTD bekommen?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd_m50530.c
LCD_sendByte(0b100011, 0); // SD: // auf 4-Bit-Mode umschalten /* SET FUNCTION MODE input: OC1 0 OC2 0 RW 0 DB7,DB6 1 DB5 I/O 8/4 (1 = 8 bit, 0 = 4 bit) DB4 FONT 8/12 (1 = 5x8 fonts, 0 = 5x12 fonts) DB3,DB2 DUTY: DT1 = 1; DT2 = 0; DB1,DB0 RAM: RA1 = 1; RA2 = 0; */ // SF: Nibble mode, 5x7 font, 4x20 chars, 160 bytes DD RAM, 96 bytes CG RAM LCD_sendByte(0xDA, 0); //SF: DB7, DB6, DB4, DB3 //LCD_waitReady (); LCD_setZeichenCGRAM (); /* Schreibt selbst definierte Zeichen in CGRAM */ LCD_clear(); //LCD_waitReady (); LCD_writeBigChar ('0',4); LCD_waitReady (); _delay_ms (250
in „LCD-Problem nach Änderung der Pinbelegung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
blueline-w.pdf
l r l Instruction RS R/WDB DB DB DB DB DB DB DB Description Time F W r 7 6 5 4 3 2 1 0 (max.) s n g Clears all displayand returns the cursor B d l i Clear Display 0 0 0 0 0 0 0 0 0 1 to the home position(Address 0).1.64ms e e h n
in „LCD 204B-NLW & AtMega32“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.c
/* * LCD.c * 4x20 LCD-Display (204A) * LCD_DB4 <-> P1.2 * LCD_DB5 <-> P1.0 * LCD_DB6 <-> P1.8 * LCD_DB7 <-> P1.9 * LCD_EN <-> P5.0 * LCD_RS <-> P3.2 */ #include <DAVE.h> #include "LCD.h" #include <stdio.h> #include <inttypes.h> unsigned long timingdelay
in „XMC4500 Display Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.h
0 /* DB2: 1=display shift on */ #define LCD_ON 3 /* DB3: turn lcd/cursor on */ #define LCD_ON_DISPLAY 2 /* DB2: turn display on */ #define LCD_ON_CURSOR 1 /* DB1: turn cursor on */ #define LCD_ON_BLINK 0 /* DB0: blinking cursor ? */ #define LCD_MOVE 4 /* DB4: move cursor/display */ #define LCD_MOVE_DISP 3 /* DB3: move display (0-> cursor) ? */ #define LCD_MOVE_RIGHT 2 /* DB2: move right (0-> left) ? */ #define
in „Probleme mit LCD-Display und SPI Übertragung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.h
0 /* DB2: 1=display shift on */ #define LCD_ON 3 /* DB3: turn lcd/cursor on */ #define LCD_ON_DISPLAY 2 /* DB2: turn display on */ #define LCD_ON_CURSOR 1 /* DB1: turn cursor on */ #define LCD_ON_BLINK 0 /* DB0: blinking cursor ? */ #define LCD_MOVE 4 /* DB4: move cursor/display */ #define LCD_MOVE_DISP 3 /* DB3: move display (0-> cursor) ? */ #define LCD_MOVE_RIGHT 2 /* DB2: move right (0-> left) ? */ #define
in „LCD-Display Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.h
0 /* DB2: 1=display shift on */ #define LCD_ON 3 /* DB3: turn lcd/cursor on */ #define LCD_ON_DISPLAY 2 /* DB2: turn display on */ #define LCD_ON_CURSOR 1 /* DB1: turn cursor on */ #define LCD_ON_BLINK 0 /* DB0: blinking cursor ? */ #define LCD_MOVE 4 /* DB4: move cursor/display */ #define LCD_MOVE_DISP 3 /* DB3: move display (0-> cursor) ? */ #define LCD_MOVE_RIGHT 2 /* DB2: move right (0-> left) ? */ #define
in „Initialisierung 204b LCD mit ST7066U“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lcd204.pdf
REGISTER R/W = 0 : REGISTER 5 R/W READ/WRITE SELECTION WRITE R/W = 1 : REGISTER READ 6 E ENABLE INPUT 7 DB0 8 DB1 9 DB2 4 BIT/8BIT SELECTABLE 10 DB3 DATA INPUT/OUTPUT LINES 11 DB4 4 BIT : DB4 - DB7 12 DB5 8 BIT : DB0 - DB7 13 DB6 14 DB7 POWER SUPPLY FOR LED 15 VLED BACKLIGHT (ANODE) POWER SUPPLY FOR LED 16
in „LCD: Nur 2 von 4 Zeilen werden angezeigt, keine 2 Enable Leitungen“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Software zur Berechnung eines Crystal Ladder Filters
Crystal Ladder Filt... HF Tools by DJ6EV Lm 62 mH Cm 273469 Chebyshev/Butterw PBripple(db) 1 Cohn QER(G3UUR) max. 3db Xtal Rm 10 Xtal Qu 273469 B3db[kHz] 10 # of Poles 10 Display Freq 10db Span [kHz] BW (6db): 3.013 kHz BW (20db): 3.214 kHz BW (40db): 3.658 kHz BW (60db): 4.397 kHz BW (80db): 5.608 kHz BW (100db): Impedance [Ohm]: 1084.2 Center Frequency [kHz]: 7021.968 Ck12= 15.0 Ck23= 17.9 Ck34= 18.5 Ck45= 18.7 Ck56= 18.7 Ck67= Ck78= Cs1= 17.9 Cs3= 78.8 Cs4= 67.0 Cs5= 64.3 Cs6= Cs7= fm = 7021.968 kHz
in „Quarzfilterprogramm Dishal3023“ · HF, Funk und Felder · · Screenshots
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Datei
akkuload.asm
8 to 16: Textbeschreibung der Zelle, exakt 8 Buchstaben lang ; ; Akku 1: AAA, NiMH, Conrad 250185 .DB 0x01,0xA3 .DW 500,4,0 .DB "ConradMH" ; ; Akku 2: AAA, NiMH, Conrad 250185 .DB 0x02,0xA3 .DW 500,4,0 .DB "ConradMH" ; ; Akku 3: AAA, NiMH, Conrad 250185 .DB 0x03,0xA3 .DW 500,4,0 .DB "ConradMH" ; ; Akku 4: AAA, NiMH, Conrad 250185 .DB 0x04,0xA3 .DW 500,4,0 .DB "ConradMH" ; ; Akku 5: AA, NiMH, Pixcell Camera .DB 0x05,0xA2 .DW 1800,10,0 .DB "PixcelMH" ; ; Akku 6: AA, NiMH, Pixcell Camera .DB 0x06,0xA2 .DW 1800,10,0 .DB "PixcelMH" ;
in „Asssembleprogramm für Mega16 auf Mega8535 anpassen, Sprungweite "call" und "jmp"“ · Mikrocontroller und Digitale Elektronik ·
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Datei
akkuload.asm
8 to 16: Textbeschreibung der Zelle, exakt 8 Buchstaben lang ; ; Akku 1: AAA, NiMH, Conrad 250185 .DB 0x01,0xA3 .DW 500,4,0 .DB "ConradMH" ; ; Akku 2: AAA, NiMH, Conrad 250185 .DB 0x02,0xA3 .DW 500,4,0 .DB "ConradMH" ; ; Akku 3: AAA, NiMH, Conrad 250185 .DB 0x03,0xA3 .DW 500,4,0 .DB "ConradMH" ; ; Akku 4: AAA, NiMH, Conrad 250185 .DB 0x04,0xA3 .DW 500,4,0 .DB "ConradMH" ; ; Akku 5: AA, NiMH, Pixcell Camera .DB 0x05,0xA2 .DW 1800,10,0 .DB "PixcelMH" ; ; Akku 6: AA, NiMH, Pixcell Camera .DB 0x06,0xA2 .DW 1800,10,0 .DB "PixcelMH" ;
in „Asssembleprogramm für Mega16 auf Mega8535 anpassen, Sprungweite "call" und "jmp"“ · Mikrocontroller und Digitale Elektronik ·
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Datei
akkuload.asm
8 to 16: Textbeschreibung der Zelle, exakt 8 Buchstaben lang ; ; Akku 1: AAA, NiMH, Conrad 250185 .DB 0x01,0xA3 .DW 500,4,0 .DB "ConradMH" ; ; Akku 2: AAA, NiMH, Conrad 250185 .DB 0x02,0xA3 .DW 500,4,0 .DB "ConradMH" ; ; Akku 3: AAA, NiMH, Conrad 250185 .DB 0x03,0xA3 .DW 500,4,0 .DB "ConradMH" ; ; Akku 4: AAA, NiMH, Conrad 250185 .DB 0x04,0xA3 .DW 500,4,0 .DB "ConradMH" ; ; Akku 5: AA, NiMH, Pixcell Camera .DB 0x05,0xA2 .DW 1800,10,0 .DB "PixcelMH" ; ; Akku 6: AA, NiMH, Pixcell Camera .DB 0x06,0xA2 .DW 1800,10,0 .DB "PixcelMH" ;
in „Asssembleprogramm für Mega16 auf Mega8535 anpassen, Sprungweite "call" und "jmp"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EY-40_English_manual.pdf
Wireless ID 8899 3 AT+DVID Device ID 1122 4 AT+RFC Channel(128 Channels) 001 5 AT+POWE Transmit power +10db 6 AT+CLSS Type A0 AT instruction instructions In particular, the JDY-40 module sends the AT instruction need to
in „Stromverbrauch Handsender“ · Mikrocontroller und Digitale Elektronik ·
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PDF
JDY-40-English.pdf
Wireless ID 8899 3 AT+DVID Device ID 1122 4 AT+RFC Channel(128 Channels) 001 5 AT+POWE Transmit power +10db 6 AT+CLSS Type A0 AT instruction instructions In particular, the JDY-40 module sends the AT instruction need to
in „AVR Programmübertragung wireless“ · Softwareentwicklung ·
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PDF
JDY40.pdf
Wireless ID 8899 3 AT+DVID Device ID 1122 4 AT+RFC Channel(128 Channels) 001 5 AT+POWE Transmit power +10db 6 AT+CLSS Type A0 AT instruction instructions In particular, the JDY-40 module sends the AT instruction need to
in „ESP32 Star Netzwerk“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Filter_Design.pdf
Key, ButterworthPart: Ideal Opamp Order8 Stages:4 Gain: 1 V/V ( 0 dB) Allowable PassBand Ripple: 1 dB Passband Frequency: 15 Hz Corner Frequency Attenuation: -3 dB StopbandAttenuation: -45 dB Stopband Frequency: 30 Hz FilterPro Freitag, 28. Februar 2014 17:24:50 -1- FilterPro Design Report Frequency
in „Tiefpass Design so OK?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
log.txt
elela > elela31_dump_clean.sql # der erste Start mit MySQL: 01:08:32 Connect database... 01:08:32 DB.Version: SQLite-DLL: 3.11.0 / MySQL: 10.4.12-MariaDB-1:10.4.12+maria~xenial 01:08:32 Database Version: V3.1.18B30 01:08:33 Error: Cannot open database! SQL Error: Unknown column 'TecData' in 'field list' (TypTreeOpen) 01:08:33 Connect database... 01:08:33 DB.Version: SQLite-DLL: 3.11.0 / MySQL: 10.4.12-MariaDB-1:10.4.12+maria~xenial 01:08:33 Database Version: V3.1.18B30 01:08:33 Database connected. 01:09:43 E: SQL Error: Unknown column 'TecData' in 'field
in „EleLa - Elektronik Lagerverwaltung V3.1“ · Projekte & Code ·
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PDF
AT-635_V6.pdf
VariableAbsorptive Attenuator AT-635 35 dB, DC - 2.0 GHz V6 Electrical Specifications: T = 25°C, A = 50 Ω 0 3 Parameter Test Conditions Units Min. Typ. Max. Insertion Loss DC - 0.5 GHz dB — 6.7 7.0 0.5 - 1.0 GHz dB — 7.2 7.4 1.0 - 2.0 GHz dB — 7.5 7.8 Flatness 10 dB Attenuation – DC - 2.0 GHz dB — + 1.0 + 1.3
in „Suche digital einstellbare Dämpfung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rev2.asm
ACK ret ; Table for getch() values from ADC: .equ GETCH_OPEN = 182 ; Open cirquitry getch_table: .db 170, CH_ABORT .db 160, 7 .db 150, 4 .db 140, 1 .db 130, 0 .db 120, 8 .db 108, 5 .db 96, 2 .db 80, CH_OK .db 60, 9 .db 50, 6 .db 20, 3 ; String section ; .db "----------------", 10, "----------------", 0 str_welcome: .db "LightZ booting..", 10, "Firmware: v0.3", 0 str_menu_oorange: .db "Out of range. ", 0, 0 str_menu_main: .db "[#] Set [0] Get", 10, "[*] Patchbay ", 0 str_menu_set: .db "Channel: [ ]", 10, "Value: [ ]
in „AVR/ Teilbarkeit durch 100 und 400“ · Mikrocontroller und Digitale Elektronik ·
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PDF
olede.pdf
OLED-DISPLAYS Page 4 INSTRUCTION SET Code Max. execution Instruction Description time when fsp or RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 fosc=250KHz Clear Display 0 0 0 0 0 0 0 0 0 1 Clears entire Display, Sets DDRAM-address 0 into addresscounter 6.2ms Sets DDRAM-address 0 into addresscounter. Returns shifted
in „Ansteuern eines OLED-Display: EA W162-X3LW“ · Mikrocontroller und Digitale Elektronik ·
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PDF
olede_1_.pdf
OLED-DISPLAYS Page 4 INSTRUCTION SET Code Max. execution Instruction Description time when fsp or RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 fosc=250KHz Clear Display 0 0 0 0 0 0 0 0 0 1 Clears entire Display, Sets DDRAM-address 0 into addresscounter 6.2ms Sets DDRAM-address 0 into addresscounter. Returns shifted
in „Explorer 16 board, zwei Displays“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MG24065G-SBLWU_240x64_Display.pdf
READ C/ D = ”L” : DATA READ 9 VEE POWER SUPPLY FOR LCD DRIVING OUTPUT ________ 10 RES L: RESET 11 DB0 DATA INPUT/OUTPUT (LSB) 12 DB1 DATA INPUT/OUTPUT 13 DB2 DATA INPUT/OUTPUT 14 DB3 DATA INPUT/OUTPUT 15 DB4 DATA INPUT/OUTPUT 16 DB5 DATA INPUT/OUTPUT 17 DB6 DATA INPUT/OUTPUT 18 DB7 DATA INPUT/OUTPUT
in „Display MG24065G-SBLWU Spannungs-Versorgung Fragen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Display.c
void Warte_us(int x) { for (;x>=0;x--) { _delay_us(1); } return; } void uc_Init() { Disp_DDR = (1<<DB0_Pin) | (1<<DB1_Pin) | (1<<DB2_Pin) | (1<<DB3_Pin) | (1<<DB4_Pin) |(1<<DB5_Pin) | (1<<DB6_Pin) | (1<<DB7_Pin); //Portc Alle als Outout Exe_DDR = (1<<R_W_Pin) | (1<<Enable_Pin) | (1<<RS_Pin); //PortA
in „LCD-Display AV1624 ansteuer Probleme“ · Mikrocontroller und Digitale Elektronik ·
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PDF
oled_eng_tds.pdf
OLED-DISPLAYS Page 4 INSTRUCTION SET Code Max. execution Instruction Description time when fsp or RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 fosc=250KHz Clear Display 0 0 0 0 0 0 0 0 0 1 Clears entire Display, Sets DDRAM-address 0 into addresscounter 6.2ms Sets DDRAM-address 0 into addresscounter. Returns shifted
in „Oled Display W202-XDLG via SPI an Arduino Uno“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd_m50530_nacher.c
LCD_init(void) { //LCD_waitReady (); // alle Leitungen auf Ausgang schalten //LCD_DDR = 0xFF; DDRB = 0x3F; DDRD = 0xC0; //LCD_sendByte(0b100011, 0); // SD: // auf 4-Bit-Mode umschalten /* SET FUNCTION MODE input: OC1 0 OC2 0 RW 0 DB7,DB6 1 DB5 I/O 8/4 (1 = 8 bit, 0 = 4 bit) DB4 FONT 8/12 (1 = 5x8 fonts, 0 = 5x12 fonts) DB3,DB2 DUTY: DT1 = 1; DT2 = 0; DB1,DB0 RAM: RA1 = 1; RA2 = 0; */ // SF: Nibble mode, 5x7 font, 4x20 chars, 160 bytes DD RAM, 96 bytes CG RAM LCD_sendByte(0xDA, 0); //SF: DB7, DB6, DB4, DB3 //LCD_waitReady
in „LCD-Problem nach Änderung der Pinbelegung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Nexys3_Master.ucf
#NET "DB<2>" LOC = "F3" | IOSTANDARD = "LVCMOS33"; #Bank = 3, Pin name = IO_L51N_M3A4, Sch name = U-FD2 #NET "DB<3>" LOC = "D2" | IOSTANDARD = "LVCMOS33"; #Bank = 3, Pin name = IO_L52P_M3A8, Sch name = U-FD3
in „Anfänger hat Probleme mit parallelen Prozessen“ · FPGA, VHDL & Co. ·
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PDF
Krytar_202B_.pdf
in. x 0.4 in. dia. AK ±1.5 dB to 40 GHz 2.0 to 40 GHz ±0.5 dB to 20 GHz 1.35 to 20 GHz 2 3B 10 MHz - 40 GHz ±0.8 dB to 26.5 GHz 1.5 to 26.5 GHz BNC Female 1.85 in. x 0.4 in. dia. BK ±1.5 dB to 40 GHz 2.0 to 40 GHz ±0.5 dB to 20 GHz 1.35 to 20 GHz 2 3S 10 MHz - 40 GHz ±0.8 dB to 26.5 GHz 1.5 to 26.5 GHz SMC Jack 1.45 in. x 0.4 in. dia. SK ±1.5 dB to 40 GHz 2.0 to 40 GHz LOW LEVEL SENSITIVITY 0.5 mV/m W OUTPUT POLARITY Negative OUTPUT CAPACITANCE 30
in „NF/HF-Leistung ermitteln über die "Nachführ-Methode"“ · HF, Funk und Felder ·
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PDF
Krytar_202B_.pdf
in. x 0.4 in. dia. AK ±1.5 dB to 40 GHz 2.0 to 40 GHz ±0.5 dB to 20 GHz 1.35 to 20 GHz 2 3B 10 MHz - 40 GHz ±0.8 dB to 26.5 GHz 1.5 to 26.5 GHz BNC Female 1.85 in. x 0.4 in. dia. BK ±1.5 dB to 40 GHz 2.0 to 40 GHz ±0.5 dB to 20 GHz 1.35 to 20 GHz 2 3S 10 MHz - 40 GHz ±0.8 dB to 26.5 GHz 1.5 to 26.5 GHz SMC Jack 1.45 in. x 0.4 in. dia. SK ±1.5 dB to 40 GHz 2.0 to 40 GHz LOW LEVEL SENSITIVITY 0.5 mV/m W OUTPUT POLARITY Negative OUTPUT CAPACITANCE 30
in „Ist es besser, nicht zu matchen wenn man keine Ahnung von den Parasitics hat?“ · HF, Funk und Felder ·
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Datei
lauflicht2_atmega8_Pollinaddon_2.bas
SW stack $framesize = 10 ' default use 40 for the frame space Config Portc.2 = Output Config Portc.3 = Output Config Portc.4 = Output Config Portc.5 = Output Config Portd.3 = Output Config Portd.4 = Output Config Portd.5 = Output Config Portd.6 = Output Lcd_db4 Alias Portb.0 Lcd_db5 Alias Portb.1 Lcd_db6 Alias Portb.2 Lcd_db7 Alias Portb.3 Lcd_e Alias Portb.4 Lcd_rs Alias Portb.5 Config Lcd = 16 * 2 Config Lcdpin = Pin , Db4 = Lcd_db4 , Db5 = Lcd_db5 , Db6 = Lcd_db6 , Db7 = Lcd_db7 , E = Lcd_e , Rs = Lcd_rs Config Lcdbus
in „pollin programmer+addon board lcd ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IL3829.pdf
00h [7] [6] [5] [4] [3] [2] [1] [0] … … [7] [6] [5] [4] [3] [2] [1] [0] DB25 DB25 DB25 DB25 DB25 DB25 DB25 DB25 DB49 DB49 DB49 DB49 DB49 DB49 DB49 DB49 G1 01h [7] [6] [5] [4] [3] [2] [1] [0] … … [7] [6] [5] [4] [3] [2] [1]
in „IL3829 - E-Paper Display Treiber“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PollinSpiel_Nachbau.bas
$framesize = 24 $swstack = 24 $hwstack = 24 $regfile = "ATtiny2313.dat" $crystal = 1000000 Lcd_db4 Alias Portb.0 Lcd_db5 Alias Portb.1 Lcd_db6 Alias Portb.2 Lcd_db7 Alias Portb.3 Lcd_e Alias Porta.0 Lcd_rs Alias Porta.1 Lcd_ein Alias Portd.6 Lcd_kontrast Alias Portb.4 Config Lcd_kontrast = Output
in „Messgeraetchen aus Pollin Spiel bauen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avr-m8_z80.asm
temp2 lpm temp,Z+ lpm temp2,Z mov zl,temp mov zh,temp2 icall .if INS_DEBUG cpi trace,0 breq notrace3 rcall printstr .db "pre: oph:l=",0 mov temp,oph rcall printhex mov temp,opl rcall printhex rcall printstr .db " -- ",0 notrace3: .endif nofetch: ; *** Stage 4: Execute operation :) Use the op jumptable
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Datei
schaltparameter.inc
werden. Es dürfen maximal 37 Datensätze (Zeilen) eingetragen werden. */ ;Taste,Mode,Zeit,A, B, D .db 17,imp, 50, 0, 1, 0 ;Taste 1 PB0 Impuls 500 ms .db 18,imp, 30, 0, 2, 0 ;Taste 2 PB1 Impuls 300 ms .db 19,imp, 10, 0, 4, 0 ;Taste 3 PB2 Impuls 100 ms .db 20,imp, 2, 0, 8, 0 ;Taste 4 PB3 Impuls 20 ms .
in „Quellcode für den Pollin Fernsteuer Bausatz“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Schaltparameter_von_H-L.txt
werden. Es dürfen maximal 37 Datensätze (Zeilen) eingetragen werden. */ ;Taste,Mode,Zeit,A, B, D .db 17,imp, 50, 0, 1, 0 ;Taste 1 PB0 Impuls 500 ms .db 18,imp, 30, 0, 2, 0 ;Taste 2 PB1 Impuls 300 ms .db 19,imp, 10, 0, 4, 0 ;Taste 3 PB2 Impuls 100 ms .db 20,imp, 2, 0, 8, 0 ;Taste 4 PB3 Impuls 20 ms .
in „Schaltparameter Fernbedienung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd-routines.c
Ausgabeoperation an das LCD static void lcd_out(uint8_t data) { data &= 0xF0; LCD_PORT &= ~(0xF0 >> (4 - LCD_DB1)); //obere 4 Bit maskieren LCD_PORT &= ~(0xF0 >> (4 - LCD_DB2)); //Maske löschen LCD_PORT &= ~(0xF0 >> (4 - LCD_DB3)); LCD_PORT &= ~(0xF0 >> (4 - LCD_DB4)); LCD_PORT &= ~(0xF0 >> (4 - LCD_DB5)); LCD_PORT &= ~(0xF0 >> (4 - LCD_DB6)); LCD_PORT &= ~(0xF0 >> (4 - LCD_DB7)); LCD_PORT &= (data >> (4 - LCD_DB1)); //Bits setezn LCD_PORT &= (data >> (4 - LCD_DB2)); LCD_PORT &= (data >> (4 - LCD_DB3)); LCD_PORT &= (data >> (4 - LCD_DB4
in „LCD zeigt nichts an“ · Mikrocontroller und Digitale Elektronik ·