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Datei
DisplayASM.asm
,0 bklein: .db 0x7F,0x28,0x44,0x44,0x38,0 cklein: .db 0x38,0x44,0x44,0x44,0 dklein: .db 0x38,0x44,0x44,0x28,0x7F,0 eklein: .db 0x38,0x54,0x54,0x54,0x58,0 fklein: .db 0x08,0x7E,0x09,0x02,0 gklein: .db 0x18,0xA4,0xA4,0x98,0x7C,0 hklein: .db 0x7F,0x08,0x04,0x04,0x78,0 iklein: .db 0x7D,0
in „Pollin Display 12232, in ASM klappts, in C nicht“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Pinbelegung des SED1278F ICs
SEG39 COM16 COM15 COM14 COM12 COM11 COM10 COM9 COM8 COM7 COM6 COM5 COM4 COM3 COM2 COM1 DB7 DB6 DB5 DB4 DB3 DB2 SEG38 DB1 SEG37 DB0 SEG36 E SEG35 R/W SEG34 RS SEG33 D0 SEG32 FR SEG31 VDD SEG30 XSCL SEG29 LP SEG28 V5 SEG27 V4 SEG26 V3 SEG25 V2 SEG24 V1 SEG23 OSC2 1 5 10 15 20 25
in „PeakTech 4010 - Baugleich Metex?“ · Mechanik, Gehäuse, Werkzeug · · Screenshots
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LCD-Modul_GOLDENTEK_GG-1206H0.PDF
Goldentek Display E87711 94V0 IV-O GG-1206H0 Chips U1 U2 U3 Samsung KS0107 KS0108 KS0108 Pinout 1 VCC(+5V) LogicLevel 2 GND(0V) LogicLevel 3 VEE(-2V bis -5V)Kontrast 2,5mA@-5V 4 DB0 BidirektionalData 5 DB1 BidirektionalData 6 DB2 BidirektionalData 7 DB3 BidirektionalData 8 DB4 BidirektionalData 9 DB5 BidirektionalData 10 DB6 BidirektionalData 11 DB7 BidirektionalData 12 CSQ(U2) CSlinks L=aktiv 13 CSQ(U3) CSrechts L=aktiv 14 RSTQ Reset L=aktiv 15 R/WQ ReadWrite L=write 16
in „AVR32 LCD goldentek GG-1206H0 mit ks108“ · Mikrocontroller und Digitale Elektronik ·
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Datei
01_prog.c
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 „Zwei displays mit Atmega 16“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Bell202Modem.asm
.db 78, 75, 72, 69, 67, 64, 61, 59, 56, 53, 51, 48, 46, 44, 41, 39 .db 37, 35, 32, 30, 28, 26, 25, 23, 21, 19, 18, 16, 15, 13, 12, 10 .db 9, 8, 7, 6, 5, 4, 3, 3, 2, 1, 1, 0, 0, 0, 0, 0 .db 0, 0, 0, 0, 0, 0, 1, 1, 2, 3, 3, 4, 5, 6, 7, 8 .db 9, 10, 12, 13, 14, 16, 18, 19, 21, 23, 24, 26, 28, 30, 32, 35 .db 37, 39, 41, 44, 46, 48, 51, 53, 56, 59, 61, 64, 67, 69, 72, 75 .db 78, 81, 84, 87, 90, 93, 96, 99,102,105,108,111,114,117,120,123
in „AVR als Demodulator Mdulator eines Modemsignals“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2N3904.pdf
10µ 100k Ta=25 °C 100k A VCB=25V Ta=25°C ( V C=5V VCE=5V B ) 1f=10kHz ) f=1kHz I ( 2 ( 12 : 1µ S 8 dB S 8d dB T R dB R d B N : 5 : 3d B E E10k dB E10k 1 B R C dB C .d U00n A 1 A B C T 0 T I dB I F S S O E E T10n R R N U E N E F= C C 1k F= C 1k 1. R .0 R 3 0B R U . B U 0d T 1n O 5 0d O 5. B C S 0d B S
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Keysight-54601B-Datasheet.pdf
Characteristics Vertical System Vertical System 1 Allchannels Bandwidth HP 54600B and HP 54601B dc to 100 MHz 3 dB ac coupled, 10 Hz to 100 MHz –3 dB HP 54602B dc to 100 MHz 3 dB (1, 2, & 5 mV/div) dc to 150 MHz 3 dB (channels 1 & 2) dc to 250 MHz 3 dB (channels 3 & 4) ac coupled, 10 Hz to 150 MHz –3 dB (channels 1 & 2) HP 54603B dc to 60 MHz 3 dB ac coupled, 10 Hz to 60 MHz Rise time 3.5 ns (calculated, HP 54600B & HP 54601B) <2.33 ns (calculated, channels 1 & 2, HP 54602B) <1.4 ns (calculated, channels 3 & 4, HP 54602B) 5.8 ns (calculated
in „[V] HP 54601B Vierkanal Oszilloskop 100 MHz / 20 MS“ · Markt ·
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802A_02-101613-1107-052639.pdf
9 DB2 Data Bit 2 RS EG40 Vo 2 V DD Supply Voltage 10 DB3 Data Bit 3 VD Vs 3 VO Contrast Adj. 11 DB4 Data Bit 4 4 RS Register Select 12 DB5 Data Bit 5 5 R/W Read/Write 13 DB6 Data Bit 6 6 E Enable Signal 14 DB7 Data Bit 7 7 DB0 Data Bit 0 K LEDBCKLIHT 8 DB1 Data Bit 1 ■ EXTERNAL DIMENSIONS
in „ATmega8. Umbau als 2GHz Frequenz-Logger“ · Mikrocontroller und Digitale Elektronik ·
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PDF
diode-ds31634.pdf
2DB1713 1 of 4 December 2008 Document number: DS31634 Rev. 2 - 2 www.diodes.com © Diodes Incorporated 2DB1713 2.0 3.0 2.5 ) 1.6 A ( ( B = -5mA N N O E2.0 T R IB= -4mA P 1.2 U S C I Note 4 R1.5 B = -3mA D
in „Transistor als Schalter beim Akkuladen“ · Analoge Elektronik und Schaltungstechnik ·
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SGST-S-A0003208530-1.pdf
voltage rejection V I 3.5 ± 1 V f = 1 kHz 77 dB Ta= 25 °C f = 10 kHz 60 B = 10 Hz to 100 kHz eN Output noise voltage Ta= 25 °C 50 µV IO= 200 mA 0.2 1.3 Vd Dropout voltage V IO= 500 mA 0.4 1.3 V IL Control input logic low 0.8
in „[V] 27Stück Positiv Low Drop Spannungsregler, SMD, 3.3 V LF33CPT PPAK 5Pin“ · Markt ·
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PDF
en.CD00000546.pdf
voltage rejection V I 3.5 ± 1 V f = 1 kHz 77 dB Ta= 25 °C f = 10 kHz 60 B = 10 Hz to 100 kHz eN Output noise voltage Ta= 25 °C 50 µV IO= 200 mA 0.2 1.3 Vd Dropout voltage V IO= 500 mA 0.4 1.3 V IL Control input logic low 0.8
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TelemetrieEmpfaengerV1_1.pdf
N V C C T D 100 ( D( ( ( A G A O O 5 ( D10 4 5 6 7 ( ( P C DISP_EL2 R11 P P P P C C P 1k R12 X- PA3 (ADC3) P P PC3 (TMS) VCCIO X+ PA2 (ADC2) PC2 (TCK) SELV 330 R251 T250 Charge Y+ PA1 (ADC1) PC1 (SDA) SDA DISP_PWR 3k3 BCW66H C11 SELV Y- PA0 (ADC0) PC0 (SCL) SCL MAX1811 T10 Vbat Vcc ATMEGA16(TQFP44)
in „[H] TelemetrieEmpfänger für Modellflugzeuge“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TG12864B-03.pdf
Interface Pin Description 2.2 Operating PrinciplesAnd Methods 2.3 Display Data RAM 2.4 Display Control Instruction 2.5 Command Detail Explain 2.6 MPU And Module Connection 3. RELIABILITY 3.1 Reliability test condition: 3.2 Quality Guarantee 3.3 Inspection method 3.4
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main.asm
MISO) PB6 o| 7 34 |o PA5 (AD5) ; (SCK) PB7 o| 8 33 |o PA6 (AD6) ; RESET o| 9 32 |o PA7 (AD7) ; DB4 <---- (RXD PD0 o| 10 31 |o ICP ; DB5 <---- (TX) PD1 o| 11 30 |o ALE ; DB6 <---- (INT0) PD2 o| 12 29 |o OC1B ; DB7 <---- (INT1) PD3 o| 13 28 |o PC7 (A15) ; RS <----> PD4 o| 14 27 |o PC6 (A14) ; E <--
in „Uhren Tuto mit Wecker“ · Mikrocontroller und Digitale Elektronik ·
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t162g-3.pdf
7.03 EAT162G-3NLED MICRO-DISPLA Y2x16st.STNLCD 3mm, LED-BELEUCHTET urce ! condso se Abmessungen: 53 x 20 mm TECHNISCHE DATEN * KONTROLLER IN CHIP-ON-BOARD TECHNOLOGIE, HD44780-KOMPATIBEL * 4- ODER 8 BIT DATENBUS +
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Datei
test.txt
.db 0,0,0,0,0,0,0,0 ;a(97) BigFont 3x3 part:3 .db 0,0,0,0,0,0,0,0 ;a(97) BigFont 3x3 part:2 .db 0,0,0,0,0,0,0,0 ;a(97) BigFont 3x3 part:3 .db 0,0,0,0,0,0,0,0 ;a(97) BigFont 3x3 part:6 .db 0,0,0,0,0,0,0,0 ;a(97) BigFont 3x3 part:6 .db 0,0,0,0,0,0,0,0 ;a(97) BigFont 3x3 part:9 null Index: 6 null Index: 7 null Index: 8
in „Programm zum Erstellen eigener Schriftarten (LCD)“ · Projekte & Code ·
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Datei
Uhr2.asm
.dw sonntag .dw montag .dw dienstag .dw mittwoch .dw donnerstag .dw freitag .dw samstag sonntag: .db "Sonntag ",0 montag: .db "Montag ",0 dienstag: .db "Dienstag ",0 mittwoch: .db "Mittwoch ",0 donnerstag: .db "Donnerstag ",0 freitag: .db "Freitag ",0 samstag: .db "Sonnabend ",0 copyright: .db "Copyleft 03/2005",0,0 hannes: .db "by ...HanneS...",0 kopf: .db "Unfertige Uhr als LCD-Test ",0
in „Hilfe! LCD-Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Neues_Textdokument.txt
angeschlossen sein und die 4 // Datenleitungen müssen auf aufeinanderfolgenden Pins liegen // LCD DB4-DB7 <--> PORTD Bit PD0-PD3 #define LCD_PORT PORTB #define LCD_DDR DDRB #define LCD_DB PORTB.4-PORTB.7 // LCD RS <--> PORTD Bit PD4 (RS: 0=Data, 1=Command) #define LCD_RS PORTB.3 // LCD EN <--> PORTD
in „Wie viel LCD´s kann man gleichzeitig mit dem Atmega32 ansteuern ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
iButton_DS1923.bas
Konfiguration '------------------------------------------------------------------------------- Lcd_db4 Alias Portb.4 Lcd_db5 Alias Portb.5 Lcd_db6 Alias Portb.6 Lcd_db7 Alias Portb.7 Lcd_e Alias Portc.1 Lcd_rs Alias Portc.2 Config Lcdpin = Pin , Db4 = Lcd_db4 , Db5 = Lcd_db5 , Db6 = Lcd_db6 , Db7 = Lcd_db7
in „Temperatur & Feuchte Sensor DS1923-F5“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ak4528vm-en-datasheet.pdf
Analog Input Characteristics: Analog Source impedance = 330Ω Resolution 24 Bits Input Voltage (Note 3) ±2.6 ±2.8 ±3.0 Vpp Input Resistance fs=44.1kHz 16 27 kΩ fs=96kHz 7 12 kΩ S/(N+D) (−0.5dBFS) fs=44.1kHz 88 94 dB fs=96kHz 84 92 dB DR (−60dBFS) fs=44.1kHz, A-weighted 100 108 dB fs=96kHz 95 103 dB S/N fs=44.1kHz, A-weighted 100 108 dB fs=96kHz 95 103 dB Interchannel Isolation 90 110 dB Interchannel Gain Mismatch 0.2 0.5 dB Gain Drift 20 - ppm/°C Input Voltage (Note 3) ±2.6 ±2.8 ±3.0 Vpp Input Resistance fs=44.1kHz 16 27 kΩ fs=96kHz
in „Daisy: Eingebettete Plattform für Audioprojekte“ · Mikrocontroller und Digitale Elektronik ·
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philips_chassis_qfu2.1e_la.pdf
5 U5 R R 1 A 0 3J3L 9 9 1CWC R R4 3 2 F 2FA2 5FA6 3J3M DB25 DB84 DB78 2 U2 3 A3FA1 5FA7 A 2UAB 2 F DB73 DB79 6 2 2UAA 1 0 DB19 7J04 DB21 V3CVN 2EJ6 C DB21 2 3 3EJ1 T 2RB8 3RB0 A 2 2EJ12 R R R 2RBF 2RBE 2RBU3RB3 2RBV
in „Netzteil Philips LED TV reparieren??“ · Analoge Elektronik und Schaltungstechnik ·
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PHA-1_.pdf
10.2 10.4 10.1 4.0 10.2 9.7 9.5 6.0 8.6 7.3 7.3 Output Return Loss 0.05 14.5 13.7 13.5 dB 0.8 13.0 20.8 19.5 18.3 2.0 17.1 16.1 14.7 3.0 15.3 14.1 13.4 4.0 13.8 12.8 12.2 6.0 11.0 10.2 9.7 Reverse Isolation 2.0 19.9 19.3 18.9 dB Output Power @
in „Preamp / Vorverstärker für 0,3 - 150 MHz“ · HF, Funk und Felder ·
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NCO8703.pdf
V DS= 50 V and I = 0.5 A/transistor. DQ The main properties at PO= 300 W are: Powergain: 22 to 23 dB Efficiency: 52.5 to 61% Return losses input: ≤ −15.5 dB 2nd harmonics: ≤ −25 dB 3rd harmonics: ≤ −16 dB IMD at P O = 300 W PEP: ≤ −33 dB. 2 INTRODUCTION The BLF177 is an RF Power MOS transistor for the
in „Stackpole Ferrit Kerne für RF Verstärker“ · HF, Funk und Felder ·
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128g064f.pdf
x 64 Dots Graphic LCD PIN NUMBER SYMBOL FUNCTION 1 Vss Power Supply (0V) 2 Vdd Power Supply (+ 5V) 3 Vo Power Supply for LCD Driver 4 C/D Command/Data Read/Write 5 RD Data Read 6 WR Data Write 7 DB0 Data Bus Line 8 DB1 Data Bus Line 9 DB2 Controller Reset 10 DB3 Data Bus Line 11 DB4 Data Bus Line 12 DB5 Data Bus Line 13 DB6 Data Bus Line 14 DB7 Data Bus Line 15 CE Chip Enable 16 RST Controller Reset 17 Vee Negative Voltage 18 Md2 Power Supply for LED B/L (0V) 19 FSI Font Select 20 HLT Power Supply
in „LCD Datenblatt AG64128“ · Mikrocontroller und Digitale Elektronik ·
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ABG128064A23-BIW-R.pdf
Function 1 VSS GND 2 VDD Logic supply voltage (+5.0V) 3 V0 Power supply for LCD Data/Instruction 4 RS RS=high: Indicates that data of DB0~DB7 is display data. RS=low: Indicates that data of DB0~DB7 is instruction Read/Write 5 R/W R/W=high: Data of DB0~DB7 can be read by CPU. R/W=low: Data of DB0~DB7 can be written into LCD driver IC at the falling edge of E when CS1 and CS2 is high. 6 E Enable signal for LCM 7~14 DB0-DB7 Data Bus line 15 CS1 Chip select(High select lest panel) 16 CS2 Chip select
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Datei
ThingPush.py
= ThingPush.ThingPushManager("../..") **Parameters** *db_path* - String that denotes the path for pushing information to InternetDriver **Returns** ThingPushManager object""" self._db_name = db_path + os.sep + "ThingToInternet.db" self._db_connection = sqlite3
in „CAN Performance: µC vs Linux on ARM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
kty81_110.bas
'Baudrate für RS232-Schnitstelle ' 'Pins (Port B) für LCD-Modul definieren 'Config Lcdpin = Pin , Db4 = Portb.0 , Db5 = Portb.1 , Db6 = Portb.2 , Db7 = Portb.3 , E = Portb.4 , Rs = Portb.5 'Config Lcd = 16 * 1a 'LCD-Modul 1x16 Config Lcd = 16 * 2 Config Lcdpin = Pin , Db4 = Portd.4 , Db5 = Portd.5 , Db6 = Portd.6 , Db7 = Portd.7 , E = Portd.3 , Rs = Portd.2 Config Lcdbus = 4 'Config Portb = Output Config Portd = Output Deflcdchar 0 , 6 , 9 , 9 , 6 , 32 , 32 , 32 , 32 ' LCD-Sonderzeichen 'Pins von Port
in „AtMega8 ADC4 ADC5 haben 5V“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PollinEncoder.asm
Clockfrequenz ist, z.B.bei RC_oscillator in C,sreg ;save Statusreg in neu,PinD;Drehgeber-Port holen PD2 und PD3, Phase A, B andi neu,0b00001100 ;maskieren neu =PinD [3:2] lsr old ;old[3:2] wird old[1:0], "urold" wird Nirvana lsr old ;von links kommt nur 0 nach or old,neu ;neue Drehgeberbits neu[3:2] nach old[3
in „Hilfe zu Drehencoder-Auswertung nach Wiki“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rs232-2-i2c_V1.1_m328.asm
7us: RCALL WAIT_1us WAIT_6us: RCALL WAIT_1us WAIT_5us: RCALL WAIT_1us WAIT_4us: RCALL WAIT_1us WAIT_3us: RCALL WAIT_1us WAIT_2us: RCALL WAIT_1us WAIT_1us: NOP NOP NOP RET txmenu: .db 13,10,"Kommandos:",13,10 .db "Echo - Toggelt lokales Echo",13,10," Use: E",13,10 .db "Scan - Listet alle gefundenen Devices",13,10," Use: S",13,10 .db "Read - Liest Bytes von einem Device",13,10," Use: R [Adr] [count]",13,10 .db "Read ASCII - Liest ASCII Bytes von einem Device",13,10," Use: A [Adr] [count]",13,10 .db "Write - Schreibt Bytes in ein
in „USB I2C Interface Hardware Software“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Quellcode.txt
ACALL LOOP MOV P1,#09bH ACALL LOOP MOV P1,#0dbH ACALL LOOP MOV P1,#0deH ACALL LOOP MOV P1,#09eH ACALL LOOP MOV P1,#0deH ACALL LOOP acall CS MOV P1,#0dbH ;;Buchstabe L ausgeben ACALL LOOP MOV P1,#09bH ACALL LOOP MOV P1,#0dbH ACALL LOOP MOV P1,#0d3H ACALL LOOP MOV P1,#093H ACALL LOOP MOV P1,#0d3H ACALL LOOP acall CS MOV P1,#0dbH ;;Buchstabe L ausgeben ACALL LOOP MOV P1,#09bH ACALL LOOP MOV P1,#0dbH ACALL LOOP MOV P1,#0d3H ACALL LOOP MOV P1,#093H ACALL LOOP MOV P1,#0d3H ACALL LOOP acall CS MOV
in „HD44780 LCD - Keine Anzeige“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet_funk-v24_JDY41__ps_2370JDY-41-Manual.pdf
other applications do not need external MCU 3. Technical parameters Type JDY-41 Color Green Working frequency band 2.4G Transmitting power Max 12db Working temperature -40℃ - 80℃ Receiving sensitivity -96db Transmission distance 160m Working voltage
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PDF
JDY-41-Manual.pdf
other applications do not need external MCU 3. Technical parameters Type JDY-41 Color Green Working frequency band 2.4G Transmitting power Max 12db Working temperature -40℃ - 80℃ Receiving sensitivity -96db Transmission distance 160m Working voltage
in „ESP32 Star Netzwerk“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WG320240BX-TFHVZ_021__1.pdf
4.0 152.0 11.5±0.5 140.0±0.2 (T.P) 8.5±0.5 1 Vss 24.9 122.1(VA)(T.P) 2 Vdd 25.0 122.0(VA) . 15.0MAX 3 Vo ± 26.4 119.2(AA)(T.P) 4 A0 5 0 8 5 3 . 115.18(AA) 6.5 2 4 7 8 9 1 28.41 5 WR 6 RD 7 DB0 Top 8 DB1 9 DB2 10 DB3 ) ) ) Heat-shrinkable Tu15 . . . ) . ) 11 DB4 0 2 . )( A ) A 320*240 Dots 12 DB5 . ± 0 A 0 A 8 0 . 1 3 2 3 6 Left Right 13 DB6 1 0 3 9 0 8 190.0±5.0 1 9 9 61.0±0.7 14 DB7 15 CS 16 RES Bottom 17 Vee . 1.5 18 SEL 4-O3.5PTH ± (T.P) 19 FG 0 4-O6.0PAD . 1.0 5 2 (PCB) 20 WAIT . 1 Supporting tape 2 37.9 LED
in „[V] 8 LCDs 320x240 s/w, 6 Zoll, Touch, inkl Controller“ · Markt ·
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PDF
WG320240BX-TFHVZ_021__1.pdf
4.0 152.0 11.5±0.5 140.0±0.2 (T.P) 8.5±0.5 1 Vss 24.9 122.1(VA)(T.P) 2 Vdd 25.0 122.0(VA) . 15.0MAX 3 Vo ± 26.4 119.2(AA)(T.P) 4 A0 5 0 8 5 3 . 115.18(AA) 6.5 2 4 7 8 9 1 28.41 5 WR 6 RD 7 DB0 Top 8 DB1 9 DB2 10 DB3 ) ) ) Heat-shrinkable Tu15 . . . ) . ) 11 DB4 0 2 . )( A ) A 320*240 Dots 12 DB5 . ± 0 A 0 A 8 0 . 1 3 2 3 6 Left Right 13 DB6 1 0 3 9 0 8 190.0±5.0 1 9 9 61.0±0.7 14 DB7 15 CS 16 RES Bottom 17 Vee . 1.5 18 SEL 4-O3.5PTH ± (T.P) 19 FG 0 4-O6.0PAD . 1.0 5 2 (PCB) 20 WAIT . 1 Supporting tape 2 37.9 LED
in „[v] LCDs 320x240 s/w, 6 Zoll, Touch, inkl Controller“ · Markt ·
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PDF
WG320240BX-TFHVZ_021__1_320-240_display.pdf
4.0 152.0 11.5±0.5 140.0±0.2 (T.P) 8.5±0.5 1 Vss 24.9 122.1(VA)(T.P) 2 Vdd 25.0 122.0(VA) . 15.0MAX 3 Vo ± 26.4 119.2(AA)(T.P) 4 A0 5 0 8 5 3 . 115.18(AA) 6.5 2 4 7 8 9 1 28.41 5 WR 6 RD 7 DB0 Top 8 DB1 9 DB2 10 DB3 ) ) ) Heat-shrinkable Tu15 . . . ) . ) 11 DB4 0 2 . )( A ) A 320*240 Dots 12 DB5 . ± 0 A 0 A 8 0 . 1 3 2 3 6 Left Right 13 DB6 1 0 3 9 0 8 190.0±5.0 1 9 9 61.0±0.7 14 DB7 15 CS 16 RES Bottom 17 Vee . 1.5 18 SEL 4-O3.5PTH ± (T.P) 19 FG 0 4-O6.0PAD . 1.0 5 2 (PCB) 20 WAIT . 1 Supporting tape 2 37.9 LED
in „Anstuerung eines Grafik LCDs. Fragen zu Display und Controller“ · Mikrocontroller und Digitale Elektronik ·
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Datei
z80.asm
adc zh,temp2 lpm insdecl,Z+ lpm insdech,Z .if INS_DEBUG cpi trace,0 breq notrace2 rcall printstr .db ", decoded=",0 mov temp,insdech rcall printhex mov temp,insdecl rcall printhex rcall printstr .db ".",13,0 notrace2: .endif ; *** Stage 3: Fetch operand. Use the fetch jumptable for this. mov temp,insdecl
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avr-m8_z80.asm
adc zh,temp2 lpm insdecl,Z+ lpm insdech,Z .if INS_DEBUG cpi trace,0 breq notrace2 rcall printstr .db ", decoded=",0 mov temp,insdech rcall printhex mov temp,insdecl rcall printhex rcall printstr .db ".",13,0 notrace2: .endif ; *** Stage 3: Fetch operand. Use the fetch jumptable for this. mov temp,insdecl
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test.c
#include <reg51.h> sbit led=0x80; //Hier ist die led low activ verschaltet. sbit DB4=0xB0;// Die Bezeichnungen der Ports des Displays sbit DB5=0xB1;//1 zu 1 verkabel wie der Name, also DB5 an D5 sbit DB6=0xB2; sbit DB7=0xB3; sbit RS=0xB4; sbit EN=0xB5; // R/W liegt fest auf GND void
in „LCD ansteuern, fragen zu tutorial in assembler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LEDS.ASM
brne _ldo1 rjmp loop wait: ldi wait0, byte1(waittime/5) ldi wait1, byte2(waittime/5) ldi wait2, byte3(waittime/5) _wai1: subi wait0, 1 sbci wait1, 0 sbci wait2, 0 brne _wai1 ret POLIZEI: .db 8, 0b00001111 .db 0b00000000, 0b00001111 .db 0b00000000, 0b11110000 .db 0b00000000, 0b11110000 .db 0b00000000, 0 WECHSEL: .db 2, 0b00001111 .db 0b11110000, 0 FLASHER: .db 2, 0b00000000 .db 0b11111111, 0 LINKS: .db 8, 0b00000001 .db 0b00000010, 0b00000100 .db 0b00001000, 0b00010000 .db 0b00100000, 0b01000000 .db 0b10000000,
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AR-500X-Controller.pdf
PR R21N4001 1N4148 DB0 8 a PI()) R8 p GND 22 CN3 i W P1 PI07P7 PII106 PIC01 SePIC301 D +5V .CPBS1a0S 1 Vdd DB2 PIC01 SePIC3021 C T AA110 PIIC02 DB3 PIC01 SePIC3032 C ACPBS1a0S 2 z PYY1 XTAL1 DB5 PIC01 SePIC3043 P2 PK2 SRDUH-SS-105D1 B H DB6 PIC01 SePIC3054 PDD4 O P 4 PY DB4 PIC02 !DPIC3065 PD1N4148 T BAT. 3 PIIC03 P1.2PIC02 !DPIC3076 3.6V C3P0 PCC4 XTAL2 P1.1PIC02 !DPIC3087 P P P0 5 V E P1.0 8 - P2 22pFP0 PC2pF Q3PQ CR 0 7 PR PI1 P3 PR1
in „SCN8049H Prozessor“ · Mikrocontroller und Digitale Elektronik ·
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Motorola_MC44353_MC44354_MC44355_1998.pdf
/pF D Video S/N – Figure 6 Figure 6 dB C See Note 2 Differential Phase Figure 7 Figure 7 Figure 7 ⋅ C Differentical Gain On line CCIR 310, worst from the – 1.0 5 % C first 4 steps out of 5 Luma/Sync ratio Input ratio 7.0:3.0 6.8/3.2 – 7.2
in „Pollin ist pleite :-(“ · Offtopic ·
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Schematic_Scope_1014D_2023-01-06.pdf
40 40 1K PE4/CSI_D1/LCD_D16/DA_LRCK 45 F1C100S_FPGA_DB3 41 41 30 VCC-DRAM PE5/CSI_D2/LCD_D17/DA_IN 44 F1C100S_FPGA_DB4 42 42 31 43 F1C100S_FPGA_DB5 43 32 VCC-DRAM PE6/CSI_D3/PWM1/DA_OUT/OWA_OUT 42 F1C100S_FPGA_DB6 R44 44 43 GND R29 C46 34 VCC-DRAM PE7/CSI_D4
in „Fnirsi 1014d defekt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TA2149BFN.pdf
ON Input limiting voltage V Vin▯ 80dB V EMF, 37 42 47 dB V EMF in (lim) IF ▯3dB limiting Recovered output voltage VOD Vin 80dB V EMF 200 250 300 mVrms Signal to noise ratio S/N Vin 80dB V EMF 75 dB Total harmonic distortion THD Vin 80dB V EMF 0.3 % FM IF AM
in „Kein Radioempfang iHome iH8 mit TA2149BFN“ · HF, Funk und Felder ·
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Datei
display.asm
--------------------------------------------------* ;* 1. GND : 01. GND * ;* 2. +5V : 02. +5V * ;* 3. Vo Contrast : 03. über 10k Poti auf +5V * ;* 4. RS Daten oder Code Input : 04. PC1 * ;* 5. R/W : 05. PC2 * ;* 6. Enable : 06. PC3 * ;* 7. DB0 : 07. PB0 * ;* 8. DB1 : 08. PB1 * ;* 9. DB2 : 09. PB2 * ;* 10. DB3 : 10. PB3 * ;* 11. DB4 : 11. PB4 * ;* 12. DB5 : 12. PB5 * ;* 13. DB6 : 13. PB6 * ;* 14. DB7 : 14. PB7 * ;* 15. Anode LED : 17. +5V über Vorwiderstand R14 * ;* 16. Katode LED : 18. GND * ;***********
in „[ AVR ] Probleme mit LCD-Display (KS0066)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Display_SC1602D.pdf
No. Symbol Level Pin Description Function 1 Vss -- Ground 0V 2 Vdd -- Supply Voltage for Logic 5V 3 Vo -- LCD Contrast Adjust By User 4 RS H/L Register Select H: Data, L: Instruction Code 5 R/W H/L Read / Write H: Data Read, L: Data Write 6 E H, HàL Enable Enable Signal 7 DB0 H/L Data Bit 0 8-Bit Interface 8 DB1 H/L Data Bit 1 8-Bit Interface 9 DB2 H/L Data Bit 2 8-Bit Interface 10 DB3 H/L Data Bit 3 8-Bit Interface 11 DB4 H/L Data Bit 4 4 or 8-Bit Interface 12 DB5 H/L Data Bit 5 4 or 8-Bit Interface 13 DB6
in „hd44780 / LCD SC1602D / ATmega16 (STK500)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DisplayNeu.asm
"1seitig" 1byte je eine Spalte ;bei 2Pages, 2bytes eine Spalte wie hier beim Smylie usw NullData: .db 6,0x3E,0x81,0x81,0x81,0x3E,0,0 EinsData: .db 5,0x04,0x42,0x7F,0x40,0 ZweiData: .db 6,0x46,0x61,0x51,0x49,0x46,0,0 DreiData: .db 6,0x22,0x41,0x49,0x49,0x36,0,0 VierData: .db 6,0x18,0x14,0x12,0x79,0x10,0,0 FuenfData: .db 6,0x2F,0x45,0x45,0x45,0x39,0,0 SechsData: .db 6,0x3E,0x49,0x49,0x49,0x32,0,0 SiebenData: .db 6,0x01,0x11,0x79,0x15,0x03,0,0 AchtData: .db 6,0x36,0x49,0x49,0x49,0x36,0,0 NeunData: .db 6,0x26,0x49,0x49,0x49,0x3E
in „Problem mit Adressierung, ADC Wert nutzen um "funktion" aufzurufen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uhr_mega8_250112.asm
Minuten_Zehner clr Stunden_Einer clr Stunden_Zehner sei END: rcall Einstellen rcall out_nummer rjmp END Codes: .db 0b00111111, 0b00000110 ; 0: a, b, c, d, e, f ; 1: b, c .db 0b01011011, 0b01001111 ; 2: a, b, d, e, g ; 3: a, b, c, d, g .db 0b01100110, 0b01101101 ; 4: b, c, f, g ; 5: a, c, d, f, g .db 0b01111101, 0b00000111 ; 6: a, c, d, e, f, g ; 7: a, b, c .db 0b01111111, 0b01101111 ; 8: a, b, c, d, e, f, g ; 9: a, b, c, d, f, g .db 0b10111111, 0b10000110 ; 0: 1: mit Dezimalpunkt .db 0b11011011, 0b11001111 ; 2: 3: mit Dezimalpunkt .db 0b11100110, 0b11101101
in „Uhr mit Atmega8 und LED“ · Mikrocontroller und Digitale Elektronik ·
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Datei
GLCD_BLAU.c
// Data_Port Steuer_Port // P0 --> DB0 P0 --> D/I (RS) // P1 --> DB1 P1 --> E // P2 --> DB2 P2 --> CS1 // P3 --> DB3 P3 --> CS2 // P4 --> DB4 // P5 --> DB5 // P6 --> DB6 // P7 --> DB7 #include <avr/io.h> #include "VarTimer8MHz.c" #define
in „Display 128x64 ks0108“ · Mikrocontroller und Digitale Elektronik ·
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Datei
log.txt
) VALUES (1), (2), (3), (4); Query OK, 4 rows affected (0.002 sec) Records: 4 Duplicates: 0 Warnings: 0 MariaDB [test]> SELECT * FROM `ding`; +----+---------------------+---------------------+------+ | id | createdAt | updatedAt
in „MySQL Force Update - wenn Value bereits gleich ist“ · Softwareentwicklung ·
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PDF
tda7498e.pdf
operating temperature 0 - 70 °C 3.4 Electrical specifications Unless otherwise stated, the values in the table below are specified for the conditions: VCC = 36 V, RL= 4 Ω, ROSC = R3 = 39 kΩ, C8 = 100 nF, f = 1 kHz, V = 23.6 dB Tamb =
in „Symmetrischer Filter, FilterPro, THS4531“ · Analoge Elektronik und Schaltungstechnik ·