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Datei
neuro.asm
the classic pop bp mov bp,ax sub bp,(100h+(getip-start)); patch5: jmp short conti db 81h conti: jmp lab1 ;--- Constants --------------------------------------------------------- sprbef equ 3 ; 3 Bytes for a JUMP monat equ 01h ; Date of activation itsme equ "sh" ; Signature DOS_N equ
in „Retro Fieber: Z80 oder 68000 ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DataVision_DG12864-12.pdf
high) / Data (low) Datenblatt zum T6963C. 9 /RST Reset (aktiv low) Erzeugung der negativen LCD-Be- 10 DB0 Datenbus Bit 0 triebsspannung 11 DB1 Datenbus Bit 1 12 DB2 Datenbus Bit 2 13 DB3 Datenbus Bit 3 Das Display benötigt zum Betrieb eine negative Spannung V O im Bereich von 14 DB4 Datenbus Bit 4 –2 bis
in „[V] Grafikdisplay 240x128“ · Markt ·
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AT-64020.pdf
microwave • High Gain at 1 dB Compression: frequencies. 10.0 dBTypical G1 dB at 2.0 GHz 6.5 dBTypical G1 dB at 4.0 GHz Excellent device uniformity, performance and reliability • 35%Total Efficiency are produced by the use of ion-implantation
in „[S] RF-Transistor AT-64020 oder einen adäquaten Ersatz“ · Markt ·
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PDF
BT_44005VSS-STF-06-LED04HK.pdf
signal: “High” for Read mode. “Low” for Write mode. 6 N/C No connection. 7 DB0 Data input/output (LSB) 8 DB1 Data input/output 9 DB2 Data input/output 10 DB3 Data input/output 11 DB4 Data input/output 12 DB5 Data input/output 13 DB6 Data input/output 14 DB7 Data input/output (
in „LCD Display - 2x Enable Leitung“ · Mikrocontroller und Digitale Elektronik ·
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Mikrofon_4165.pdf
0.007dB/°C (-10°C<t<+50°C) Ordering Information 0° incidence free-field response: 6.5Hz to 8kHz: ±2 dB EQUIVALENT AIR VOLUME: 3 1 5Hz to 12.5kHz: ±3dB 50mm (250Hz) Type 4130 /2” Microphone In accordance with IEC651 Type 2 Random-Incidence Response: EXPECTED LONG-TERM STABILITY: Includes the following
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PGA-105_.pdf
Gain, Low Noise MonolithicAmplifier 0.04-2.6 GHz Product Features • Excellent gain flatness, ±0.25 dB over 0.1-2.0 GHz • Gain, 15.0 dB typ. at 2 GHz • High IP3, 39 dBm typ. at 0.9 GHz • P1dB 19.3 dBm typ. at 2 GHz • Low noise figure, 1.9 dB at 2 GHz • No external matching components required PGA-105+
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Tabelle der Steuerungs- und Anzeigebefehle für ein LCD-Modul
Specification 11. CONTROL AND DISPLAY INSTRUCTION (Please refer SPLC780 DATASHEETS) Instruction Code RS RW DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 Description Execution time (fosc=270KHz) Clear Display 0 0 0 1 1.52ms Return Home 0 0 0 1 - 1.52ms Entry Mode Set 0 0 0 1 I/D S 38µs Display ON/OFF Control 0 0 0 1 D C B
in „LCD Display Problem“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Datei
lcd_routinen.c
Programms aufgerufen werden. void lcd_init( void ) { // verwendete Pins auf Ausgang schalten uint8_t pins_db = (0x0F << LCD_DB); // 4 Datenleitungen uint8_t pins_rs = (1<<LCD_RS); // R/S Leitung uint8_t pins_en = (1<<LCD_EN); // Enable Leitung uint8_t pins_rw = (1<<LCD_RW); // RW Leitung LCD_DDR_DB |= pins_db
in „avr-gcc stört sich an uint_8 und uint“ · Mikrocontroller und Digitale Elektronik ·
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AD811.pdf
= NO CONNECT 0 Figure3.20-TerminalLCC(E-20A) GENERAL DESCRIPTION NC 1 20 NC A wideband current feedback operational amplifier,theAD811 NC 2 19 NC is optimized for broadcast-quality video systems.The −3 dB NC 3 18 NC bandwidth
in „2 Spannungen in einer Schaltung“ · Analoge Elektronik und Schaltungstechnik ·
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LM118KFWL2_Solomon_Disp.PDF
: 886-7-788-68FAX : 886-7-788-6806~8 PAGE : 7 7. DIMENSION OUTLINE. 13.0 NO SPECIFIED TOLERANCE: 0±3 SCALE : NTS UNIT : mm INTERFACE PIN CONNECTION. PIN NO 1 2 3 4 5 6 7 8 9 10 SYMBOL VSS VDD VO RS R/W E DB0 DB1 DB2 DB3 PIN NO 11 12 13 14 15 16 SYMBOL DB4 DB5 DB6 DB7 N.C N.C REV : 8 SOLOMON GOLDENTEK
in „Geiger Counter Sparkfun“ · Mikrocontroller und Digitale Elektronik ·
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RF_Attenuator_R1.pdf
1 2 3 4 SHIELDEDCOMPARTMENT 1 dB 2 dB 4 dB 8 dB 16 dB 32 dB 32 dB 32 dB J1 K1:1 K2:1 K3:1 K4:1 K5:1 K6:1 K7:1 K8:1 J2 3 7 2 7 2 7 2 7 2 7 2 7 2 7 2 7 2 2 D 1 6 3 6 3 6 3 6 3 6 3 6 3 6 3 6 3 1 D INP OUTP 2 5 4 5 4 5 4 5 4 5 4 5 4 5 4 5 4 3 SMA G6K-2P G6K-2P G6K-2P G6K-2P G6K-2P G6K-2P G6K-2P G6K-2P R R 4 4 SMA R3 R6 R9 R12 R27 5 5 1 R 1 R 2 9 1 0 5 3 5 6R19 11R5 23R7 52R3 154R 5 R R 6 R 3 1 R 3 1 R1 R2 R4 R5 R7 R8 R10 R11 R13 R14 R R R
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RF_Attenuator_R1.pdf
1 2 3 4 SHIELDEDCOMPARTMENT 1 dB 2 dB 4 dB 8 dB 16 dB 32 dB 32 dB 32 dB J1 K1:1 K2:1 K3:1 K4:1 K5:1 K6:1 K7:1 K8:1 J2 3 7 2 7 2 7 2 7 2 7 2 7 2 7 2 7 2 2 D 1 6 3 6 3 6 3 6 3 6 3 6 3 6 3 6 3 1 D INP OUTP 2 5 4 5 4 5 4 5 4 5 4 5 4 5 4 5 4 3 SMA G6K-2P G6K-2P G6K-2P G6K-2P G6K-2P G6K-2P G6K-2P G6K-2P R R 4 4 SMA R3 R6 R9 R12 R27 5 5 1 R 1 R 2 9 1 0 5 3 5 6R19 11R5 23R7 52R3 154R 5 R R 6 R 3 1 R 3 1 R1 R2 R4 R5 R7 R8 R10 R11 R13 R14 R R R
in „Digitaler Abschwächer“ · Analoge Elektronik und Schaltungstechnik ·
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AC-202A.pdf
0V) 2 VDD Supply Voltage for Logic (+5V or +3.3V) 3 VO Contrast Adjustment 4 RS Data/Instruction Select 5 R/W Read/Write Select 6 E Enable Signal 7 DB0 Data Bus 8 DB1 Data Bus 9 DB2 Data Bus 10 DB3 Data Bus 11 DB4 Data Bus 12 DB5 Data Bus 13 DB6 Data Bus 14 DB7 Data Bus 15 LED_A LED Power Supply + (5V) 16 LED_K LED Power Supply - (5V) AMPIRE CO., LTD. 7 7 POWER SUPPLY LCD Module VDD(+5V) VDD(+3.3V) LCDBias LCDBias Circuit Circuit R1 VO VR VO -3.3V R8 LCD Module
in „Spannungsverstärkung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
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 <----> (OC1A) PD5 o| 15 26 |o PC5 (A13) ; (WR) PD6 o| 16 25 |o PC4 (A12) ; (RD) PD7 o| 17 24 |o PC3 (A11) ; XTAL2 o| 18 23 |o PC2 (A10) ; XTAL1 o| 19 22 |o PC1 (A9) ; GND o| 20 21 |o PC0 (A8) ----> Summer ; |______________| ; ;Lcdpin = Pin , Db4 = PortD.4 , Db5 = PortD.5 , Db6 = PortD.6 , Db7 = PortD
in „Uhren Tuto mit Wecker“ · Mikrocontroller und Digitale Elektronik ·
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Datei
log.txt
Mit "Database=./Elektronik.sq3" 20:17:21 15.08.12 Start program V2.0.12811-64 (Linux) 20:17:21 Use INI file: /home/lucas/EleLa/EleLa.ini 20:17:21 Parameter [DB] Protocol=sqlite-3 20:17:21 Parameter [DB] Database=/home/lucas/EleLa/
in „EleLa - Elektronik Lagerverwaltung ab V2.0“ · Projekte & Code ·
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PDF
MGA-62563__AV02-1237EN_.pdf
0.93 1.4 0.06 [1,2] [1] G test Associated Gain in test circuit f = 0.5 GHz dB 20.4 22 23.4 0.36 OIP3 test[1,2 Ouput 3 Order Intercept in test circuit [1] f = 0.5 GHz dBm 30 32.9 0.51 NF 50ý [3 Noise Figure in 50Ω system f = 0.1 GHz dB 1.1 f = 0.2 GHz 1.0 f = 0.5 GHz 0.8 f = 1.0
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hd44780_init.pdf
instruc-tion execution time. Table 6 Instructions Execution Time Code (max) (when f or cp Instruction RS R/: DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0 Description fOSCis 270 kHz) Clear 0 0 0 0 0 0 0 0 0 1 Clears entire display and sets display DDRAM address 0 in address counter. Return 0 0 0 0 0 0 0 0 1 — Sets DDRAM address
in „LCD 2 Zeilen Ausgabe“ · Mikrocontroller und Digitale Elektronik ·
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RF_Attenuator_R1_schematic.pdf
1 2 3 4 SHIELDED COMPARTMENT 1 dB 2 dB 4 dB 8 dB 16 dB 32 dB 32 dB 32 dB J1 J2 K1A K2A K3A K4A K5A K6A K7A K8A D 3 7 2 7 2 7 2 7 2 7 2 7 2 7 2 7 2 2 D 1 6 3 6 3 6 3 6 3 6 3 6 3 6 3 6 3 1 INP 2 5 4 5 4 5 4
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Datei
akkulader.bas
reserviert $framesize = 32 '***************** LCD Initialisieren ************************************* 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 Config Lcd_ein = Output Lcd_kontrast Alias Portb.4 Config
in „Eine .bas nach .hex umwandeln“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ENI503L.pdf
Frequency 2 to 510MHz 1 to 500MHz 1.5 to 400MHz 1.5 to 400MHz Coverage Maximum Class A Linear Power 3 Watts 25 Watts 50 Watts 100 Watts Output Gain 40dB (nominal) 50dB (nominal) 50dB (nominal) 50dB (nominal) Gain Variation ± 1.5 dB ± 1.5 dB ± 1.5 dB ± 1.5 dB Typical 3 Order Intermodulation Intercept
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PDF
Winstar320240bx.pdf
V WR Power Supply 6 RD 8080 family:Read signal,6800 family:Enable cInput Voltage VI 0 --- VDD V 7 DB0 Data bus line Note: VSS=0 Volt , VDD=5.0 Volt . 8 DB1 Data bus line 9 DB2 Data bus line 10 DB3 Data bus line 11 DB4 Data bus line Standard Value 12 Item Symbol Condition min. typ. max. Unit DB5 Data
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PDF
Winstar320240bx.pdf
V WR Power Supply 6 RD 8080 family:Read signal,6800 family:Enable cInput Voltage VI 0 --- VDD V 7 DB0 Data bus line Note: VSS=0 Volt , VDD=5.0 Volt . 8 DB1 Data bus line 9 DB2 Data bus line 10 DB3 Data bus line 11 DB4 Data bus line Standard Value 12 Item Symbol Condition min. typ. max. Unit DB5 Data
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PDF
Winstar320240bx.pdf
V WR Power Supply 6 RD 8080 family:Read signal,6800 family:Enable cInput Voltage VI 0 --- VDD V 7 DB0 Data bus line Note: VSS=0 Volt , VDD=5.0 Volt . 8 DB1 Data bus line 9 DB2 Data bus line 10 DB3 Data bus line 11 DB4 Data bus line Standard Value 12 Item Symbol Condition min. typ. max. Unit DB5 Data
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PDF
Winstar320240bx.pdf
V WR Power Supply 6 RD 8080 family:Read signal,6800 family:Enable cInput Voltage VI 0 --- VDD V 7 DB0 Data bus line Note: VSS=0 Volt , VDD=5.0 Volt . 8 DB1 Data bus line 9 DB2 Data bus line 10 DB3 Data bus line 11 DB4 Data bus line Standard Value 12 Item Symbol Condition min. typ. max. Unit DB5 Data
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Datei
ATHDDRIV.ASM.txt
ST251-0 Disk access time=40ms cyls_1 dw 820 ; Anzahl der Zylinder heads_1 db 6 ; Anzahl der Koepfe dw 0 ; nicht benutzt wpc_1 dw 0FFFFh ; Schreib-Vorkompensation ab Zylinder db 0 ; nicht benutzt ctl_1 db 0 ; Kontrollbyte dw 0 ; nicht benutzt db 0 ; nicht benutzt land_1 dw 820
in „HDD Festplatte ATA IDE an AVR µC Mikrocontroller ATmega1284p Assembler - viele Fragen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
smp04.pdf
–40.9 dB. The 8 kHz case produces an 7.2 kHz. The signal-to-noise ratios measure 58.2 dB, 59.3 dB improved S/N performance of –48 dB. and 60 dB respectively. In the V.32 and V.33 modem environment, where a 1.8 kHz carrier signal frequency is applied to the SMP04, Figure 18 compares the spectral
in „Power Supply Bypassing - wie ist es richtig??“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
smp04.pdf
–40.9 dB. The 8 kHz case produces an 7.2 kHz. The signal-to-noise ratios measure 58.2 dB, 59.3 dB improved S/N performance of –48 dB. and 60 dB respectively. In the V.32 and V.33 modem environment, where a 1.8 kHz carrier signal frequency is applied to the SMP04, Figure 18 compares the spectral
in „Sample-and-Hold-Verstärker - wie richtig beschalten??“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
smp04.pdf
–40.9 dB. The 8 kHz case produces an 7.2 kHz. The signal-to-noise ratios measure 58.2 dB, 59.3 dB improved S/N performance of –48 dB. and 60 dB respectively. In the V.32 and V.33 modem environment, where a 1.8 kHz carrier signal frequency is applied to the SMP04, Figure 18 compares the spectral
in „Umgang mit Hold-Step bei Sample-and-Hold-Versärkern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NAN_YA_LMK62R125A1.pdf
Recommended 0 °C - 4,8 5,4 LC Driving Voltage VDD-V0 25 °C 4,2 4,7 5,2 V (Normally Temp- LCM) 50 °C 3,8 4,3 - -20 °C 5,9 6,4 7,2 Recommended 0 °C 5,7 6,4 7,2 LC Driving Voltage VDD-V0 25 °C 5,7 6,2 6,8 V (WIDE Temp. LCM) 50 °C 5,5 5,9 6,5 70 °C 5,3 5,5 6,1 Power Supply Current IDD VDD = 5,0 V - - 2,8 mA PIN No. SYMBOL Level Function 1 Vss - 0V 2 VDD - +5V Power Supply 3 Vo - L: INSTRUCTION CODE INPUT 4 RS H/L H: DATA INPUT 5 R/W H/L L: DATA WRITE (FROM MPU TO LCM) 6 E H,H –> L 7 DB0 H/L 8 DB1 H/L 9 DB2 H/L 10 DB3 H/L 11 DB4 H/L Data Bus Line 12 DB5 H/L 13 DB6 H/L 14
in „LCD-Modul funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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TRC103_Transceiver_RFM_121129.pdf
at 3 dB. By monitoring the two outputs of each stage, an estimation of the signal strength with a resolution of 3 dB and a dynamic range of 63 dB is obtained without IF gain compensation. This estimation
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Display eines Spektrumanalysators mit Kalibrierungsergebnissen
dB PASSED -77.0 dB +0.99 dB PASSED -76.0 dB +0.88 dB PASSED -75.0 dB +0.83 dB PASSED -74.0 dB +0.73 dB PASSED -73.0 dB +0.66 dB PASSED -72.0 dB +0.58 dB PASSED -71.0 dB +0.51 dB PASSED -70.0 dB +0.48 dB PASSED -69.0 dB +0.45 dB PASSED Center 1.75 GHz 350 MHz/ Span 3.5 GHz
in „[V] Konvolut älterer aber hochwertiger Messgeräte“ · Markt · · Fotos
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Datei
top_gesamt.vhd
fcnt : std_logic_vector (6 downto 0); signal dac_en : std_logic; signal rdfifo_Q1, rdfifo_Q2, rdfifo_Q3, rdfifo_db : std_logic; signal clk_db : std_logic; constant N: natural := 24; constant M: natural := 199; begin process(clk) begin if reset = '1' then fcnt <= (others => '0'); elsif rising_edge(clk)
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Datei
lcd.asm
0b00000 .db 0b00000, 0b00000 .db 0b00000, 0b00000 .db 0b00000, 0b00000 .db 0b00100, 0b00100 .db 0b01000, 0b00010 .db 0b11111, 0b11111 .db 0b01000, 0b00010 .db 0b00100, 0b00100 .db 0b00000, 0b00000 .db 0b00000, 0b00000 .db 0b11111, 0b01010 .db 0b11111, 0b11111 .db 0b11111, 0b01010 .db 0b11111, 0b11111 .db 0b11111, 0b01010 .db 0b11111, 0b11111 .db 0b11111, 0b01010 .db 0b11111, 0b00000 .db 0b00000, 0b00000 .db 0b10101, 0b10001
in „LCD an ATmega8 mit C ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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AD623.pdf
V CM=0Vto 3V 90 100 90 100 94 100 dB G=100 V CM=0Vto 3V 105 110 105 110 105 110 dB G=1000 V CM=0Vto 3V 105 110 105 110 105 110 dB OUTPUT Output Swing R =10 k +0.01 (+V ) – 0.5+0.01 (+V ) – 0.5 +0.01 (+V ) – 0.5
in „Op - Messbereich - Strom - ACS 750LCA-050“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Technische_Beschreibung_LCD-Addon.pdf
3 = Port D.4 LCD PIN 11 DB4 = Datenbit 4 4 = Port D.5 LCD PIN 12 DB5 = Datenbit 5 5 = Port D.6 LCD PIN 13 DB6 = Datenbit 6 6 = Port D.7 LCD PIN 14 DB7 = Datenbit 7 7 = Port B.0 (Jumper R/W) LCD PIN 5 R
in „2.Zeile LCD nicht erreichbar“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.h
#define EPORT PORTC #endif #ifndef EDDR #define EDDR DDRC #endif #ifndef E #define E PC4 #endif // DB 4 #ifndef DB4PORT #define DB4PORT PORTC #endif #ifndef DB4DDR #define DB4DDR DDRC #endif #ifndef DB4 #define DB4 PC3 #endif // DB 5 #ifndef DB5PORT #define DB5PORT PORTC #endif #ifndef DB5DDR #define DB5DDR DDRC #endif #ifndef DB5 #define DB5 PC2 #endif // DB 6 #ifndef DB6PORT #define DB6PORT PORTC #endif #ifndef DB6DDR #define DB6DDR DDRC #endif #ifndef DB6 #define DB6 PC1 #endif // DB 7 #ifndef DB7PORT
in „LCD in C: Befehle ja, Daten nein“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSM2019.pdf
/÷Hz n DYNAMIC RESPONSE Slew Rate SR G = 10 16 V/ms R L 2 kW C L 100 pF Small Signal Bandwidth BW –3 dB G = 1000 200 kHz G = 100 1000 kHz G = 10 1600 kHz G = 1 2000 kHz INPUT Input Offset Voltage V 0.05 0.25 mV IOS Input Bias Current B V CM= 0 V 3 10 mA Input Offset Current Ios V CM= 0 V ±0.001 ±1.0
in „Wie arbeitet der SM2019 Vorverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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photodiode_frontends.pdf
buttheSNRlossislessthan T of laser intensity noise down to asshowninFig.1.Thiscircuitislinear,but 1 dB when i dRL≥ 200 mV. If that 1 dB is the shot-noise level was published.1In the extremely slow—its 3 dB corner f = c acceptable, we’ll choose R L= 200 mV/2 intervening years, in my work with ambi- 1/(
in „Photodioden-Frontend hohe Empfindlichkeit, mittlere Bandbreite?“ · Analoge Elektronik und Schaltungstechnik ·
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LCD.pdf
MULTI-INNO TECHNOLOGY CO,. LTD MI1602A Display Data Address Character 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 Line 1 80 81 82 83 84 85 86 87 88 89 8A 8B 8C 8D 8E 8F Line 2 C0 C1 C2 C3 C4 C5 C6 C7 C8 C9 CA CB CC CD CE CF NOTES: 1. DISPLAY TYPE: STN, YELLOW-GREEN MODE, TRANSFLECTIVE/POSITIVE. 2. DRIVE: KS0066 3. VIEWING ANGLE: 6 O’CLOCK. 4. PIN CONNECTION: 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 LED(-) VSS VDD VO RS R/W E DB0 DB1 DB2 DB3 DB4 DB5 DB6 DB7 LED(+) 5. OPERATING TEMP: -20~70 . ℃ 6. STORAGE TEMP -30
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Datei
nrf24_6.txt
-13 12:58:23.583] 42 27 A0:49:D3:33:9D 50:85:23:44:B3:46:12:94:A8:66:D5:6A:5C:44:D5:6A:AA:AD:B4:A5:B2:D5:53:5A:4D:6B:4A [2022-03-13 12:58:23.650] 42 27 DD:52:5F:38:55 B5:55:75:5B:D5:69:4A:9E:AA:B3:BB:5C:DB:53:FD:2E:DD:40:33:24:05:94
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
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datasheet-nanox.pdf
: JAN 2003 www.DataSheet4U.com NDM162 Pin Symbol Function Number 1 Vss GND 2 Vdd +5V 3 VL Contrast Adjustment 4 RS H/L Register Select Signal 5 R/W H/L Read/Write Signal 6 E H → L Enable Signal 7 DB0 H/L Data Bus Line 8 DB1 H/L Data Bus Line 9 DB2 H/L Data Bus Line 10 DB3 H/L Data Bus Line 11 DB4 H/L Data Bus Line 12 DB5 H/L Data Bus Line 13 DB6 H/L Data Bus Line 14 DB7 H/L Data Bus Line Dimensions (mm) NANOX http://www.nanox.co.jp Rev : JAN 2003 www.DataSheet4U.com NDM162 Character Table NANOX
in „Probleme mit LCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NANOX_NDM162.pdf
: JAN 2003 NDM162 Pin Symbol Function Number 1 Vss GND 2 Vdd +5V 3 VL Contrast Adjustment 4 RS H/L Register Select Signal 5 R/W H/L Read/Write Signal 6 E H → L Enable Signal 7 DB0 H/L Data Bus Line 8 DB1 H/L Data Bus Line 9 DB2 H/L Data Bus Line 10 DB3 H/L Data Bus Line 11 DB4 H/L Data Bus Line 12 DB5 H/L Data Bus Line 13 DB6 H/L Data Bus Line 14 DB7 H/L Data Bus Line Dimensions (mm) NANOX http://www.nanox.co.jp Rev : JAN 2003 NDM162 Character Table NANOX http://www.nanox.co.jp
in „LCD Kaputt?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
report.txt
.equ ReportDescriptorSize = 63 .equ JoystickReportCount =1 .equ JoystickReport1Size =3 ReportDescriptor: .db 0x05,0x01 ;Usage_Page (Generic Desktop) .db 0x09,0x04 ;Usage (Joystick) .db 0xA1,0x01 ;Collection (Application) .db 0x05,0x01 ;Usage_Page (Generic Desktop) .db 0x09,0x01 ;Usage (Pointer) .db 0xA1,0x00 ;Collection (Physical) .db 0x09,0x30 ;Usage (X) - OK .db 0x09,0x31 ;Usage (Y) - OK .db 0x15,0x81 ;Logical_Minimum (-127) .db 0x25,0x7F ;Logical Maximum (127) .db 0x75,0x08 ;Report_Size (8)
in „usb controller 8 achsen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LCD-Test-2.asm
;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;; ;;Steureung eines LCD ;; ;;PortD ausgang: ;;0 - Db0 ;;1 - Db1 ;;2 - Db2 ;;3 - Db3 ;;4 - Db4 ;;5 - Db5 ;;6 - Db6 ;;7 - Db7 ;; ;;PortB ausgang: ;;0 - RS ;;1 - E ;;2 - Kontroll LED1 ;;3 - Leer ;;4 - Leer ;;5 - Leer ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
in „ATmega8 LCD HD44780 Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LCD-Test-2.asm
;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;; ;;Steureung eines LCD ;; ;;PortD ausgang: ;;0 - Db0 ;;1 - Db1 ;;2 - Db2 ;;3 - Db3 ;;4 - Db4 ;;5 - Db5 ;;6 - Db6 ;;7 - Db7 ;; ;;PortB ausgang: ;;0 - RS ;;1 - E ;;2 - Kontroll LED1 ;;3 - Leer ;;4 - Leer ;;5 - Leer ;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;;
in „ATmega8 LCD HD44780 Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AC164AYA-70-H-A_A_.pdf
Response time : (NOTE 3) Viewing angle Date: 2003/12/25 AMPIRE CO., LTD. 5 5 BLOCK DIAGRAM & INTERFACE COM LCD Panel 1-16 16*4 Chars E RS R/W DB0~DB7 0 1278D0B SEG 1-40 E - S 4 VDD Driver*2 VSS D, M, CL1, CL2 No. Symbol Function 1 VSS Ground (0V) 2 VDD Supply Voltage for Logic (+5V or +3.3V) 3 VO ContrastAdjustment 4 RS Data/Instruction Select 5 R/W Read/Write Select 6 E Enable Signal 7 DB0 Data Bus 8 DB1 Data Bus 9 DB2 Data Bus 10 DB3 Data Bus 11 DB4 Data Bus 12 DB5 Data Bus 13 DB6
in „Verkaufe Displays 16x4 OHNE Hintergrundbeleuchtung“ · Markt ·
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Datei
main.asm
=== SEG_TABLE: .db 0b00111111 ; 0 .db 0b00000110 ; 1 .db 0b01011011 ; 2 .db 0b01001111 ; 3 .db 0b01100110 ; 4 .db 0b01101101 ; 5 .db 0b01111101 ; 6 .db 0b00000111 ; 7 .db 0b01111111 ; 8 .db 0b01101111 ; 9 ; ===========
in „Frequenzanzeige und LM7001 mit ATTiny2313 macht mir Probleme..“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KWH024Q04-F01.pdf
RM IEE LEC TRO NIC ModelNo.: KWH 024Q04-F01 10. INTERFACE DESCRIPTION Pin No Symbol Description 1 DB0 Data bus 2 DB1 Data bus 3 DB2 Data bus 4 DB3 Data bus 5 GND1 Ground 6 VCC1 Power supply voltage to the interface pins 7 CS CHIP SELECT PIN 8 /RS Data/Command control Pin 9 /WR Write execution control
in „SAMMELBESTELLUNG: 2"2 TFT Display mit 16bit digital interface“ · Markt ·
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Datei
Brumm-Messungen.txt
: 35 mVeff -60 dB = 35 µV -120 dB = 35 nV Rauschabstand zum Nenneingangspegel des AV-Receivers: 75,2 dB Rauschen gemäß LTspice 20 Hz - 20 kHz = 34,9 µV (75,2 dB) 30 Hz - 20 kHz = 32,7 µV 40 Hz - 20 kHz = 31,0 µV 50 Hz
in „50Hz Notch-,Low-Passfilter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
OURDSO_V2.pdf
DA_0 GND 10k 104 10uF 28 VDD GND 12 IO, LVDS61n, DQ0B4/DQ1B4 92 DQ11 IO, LVDS44p, DQ0R4/DQ1R4 142 DB_0 33 VDD GND 16 IO, LVDS60p, (DPCLK4/DQS0B)/(DPCLK4/DQS0B) 94 DQ12 IO, LVDS42n, DQ0R3/DQ1R3 143 DB_1 4 4 +3.3 46 27 95 DQ4 144 DB_2 U14C U14D GND VDD GND 29 IO, LVDS60n 96 DQ3 IO, LVDS42p, DQ0R2/DQ1R2 145 DB_3 9 TL084D PWM3 R49 R50 13 TL084D 25 GND 32 IO, DQ0B3/DQ1B3 97 DQ13 IO, VREFB3N0 146 DB_4 D 8 R51 14 26 NC GND 34 IO, LVDS59p, DQ0B2/DQ1B2 99 DQ2 IO, LVDS39n, DQ0R1/DQ1R1 147 DB_5 D PWM1 R52 10 C 0603
in „Oszilloskop aus STM32 und FPGA“ · Mikrocontroller und Digitale Elektronik ·