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Pinbelegungstabelle eines LCD-Displays
Pin No. | Symbol | Level | Description 1 | VSS | 0V | GND 2 | VDD | 3.0V | Power supply for logic 3 | Vo | (Variable) | Contrast Adjustment 4 | A0 | H/L | H : Data L : Instruction 5 | CS1 | H/L | Chip enable IC1 6 | CS2 | H/L | Chip enable IC2 7 | NC | – | No connection
in „Was ist das für ein Display?“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Datei
hd44780.inc.asm
Funktionen für HD44780 ; AVR / LCD-Display & Definition (Pin am LCD) ; --------------------- ; PC0 = DB4 (11) ; PC1 = DB5 (12) ; PC2 = DB6 (13) ; PC3 = DB7 (14) ; PC4 = RS (DI) (4) ; PC5 = E (6) ;***********************************************************************************************************
in „lcd routines umgeschrieben -fehler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
encoder_accel.asm
lds old,$006B ;Byte im SRAM wird nun als old verwendet 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 „Drehgeber mit "Gangschaltung" = Beschleunigung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCB_Project_11.pdf
D CVCC 1 PGND PIU305 Res2 PICD16 E DB3 PICD01 PC10 PCPIU302 VCC AGND PIU308 PR10k PICD15 R/W DB4 PICD01 Size Number PICD14 RS Revision DB5 PICD01 1uF U3 DB6 PICD01 GND GND GND GND MCP16311/2 GND GND GND GND A4 3 14 Date: 15.03.2019 Sh16et3 V0 of DB7 PICD01 File: C:\Users\..\PCB_DentaClear11.SchDoc Drawn By: 1 2 3 4 COJ1 PU1 PO0 P1 COS P1 P3 P1 COOUT PRP2 P3 CO12 P1 P0 PRP3 PS2 CO13 PS0 PAW COIC CS2 P2 P3PPPP0P PPPP PI PRP5 CO15 P0 PRP6 P PI1HALG
in „VNH3sp30 Revision?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LCD.txt
_WDT_OFF & _PWRTE_OFF ;***** VARIABLE DEFINITIONS loop EQU 0x20 d1 EQU 0x21 d2 EQU 0x22 ; RS --> RA3 ; R/W --> RA6 ; Enable --> RA4 ; DB0 --> RB0 ; DB1 --> RB1 ; DB2 --> RB2 ; DB3 --> RB3 ; DB4 --> RB4 ; DB5 --> RB5 ; DB6 --> RB6 ; DB7 --> RB7 ; Hintergundbeleuchtung --> RA1 #define RS PORTA, 3 #define
in „LC Display (KS0066) programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MatchPort_IntegrationGuide.pdf
available CPs. Table 2-2. RS232 Connections MatchPort b/g DCE Connector DTE Connector Signal Description DB9 DB25 Signal DB9 DB25 Signal (Logic) RXDx Data In 2 3 RXDx 3 2 TXDx TXDx Data Out 3 2 TXDx 2 3 RXDx RTSx H/W Flow Control 7 4 RTSx 8 5 CTSx Output CTSx H/W Flow Control Input 8 5 CTSx 7 4 RTSx CPx Modem
in „Wlan Modul Spannung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
carrera.asm
Wait_100ms rcall Wait_100ms rcall Wait_100ms rcall Wait_100ms ret ;* ;* ;* Strings ;* ;* TXT_Reset: .db " Reset!", 0 TXT_L1_Head: .db "Bahn 1: ", 0 TXT_L1_Fill: .db " Bahn2 : ", 0 TXT_L1_Tail: .db " ", 0 TXT_L2_Head: .db " ", 0 TXT_L2_Fill: .db " ", 0 TXT_L2_Tail: .db " ", 0 TXT_L3_Head: .db "Runde: ", 0 TXT_L3_Fill: .db " Runde: ", 0 TXT_L3_Tail: .db " ", 0 TXT_L4_Head: .db "Beste: ", 0 TXT_L4_Fill: .db " Beste: ", 0 TXT_L4_Tail: .db " ", 0 ;* ;* ;* SRAM ;* ;* .DSEG ; Umschalten auf das SRAM Datensegment ;
in „Entprellung / Blockieren von Mehrfachinput“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LCD.ASM
----------------------------------------------------------* ;* 1. GND : GND * ;* 2. +5V : +5V * ;* 3. Vo Contrast : über 10k Poti auf +5V * ;* 4. RS Daten oder Code Input : 27. PC6 * ;* 5. R/W : 16. PD6 * ;* 6. Enable : 23. PC2 * ;* 7. DB0 : 39. PA0 * ;* 8. DB1 : 38. PA1 * ;* 9. DB2 : 37. PA2 * ;* 10. DB3 : 36. PA3 * ;* 11. DB4 : 35. PA4 * ;* 12. DB5 : 34. PA5 * ;* 13. DB6 : 33. PA6 * ;* 14. DB7 : 32. PA7 * ;* 15. Anode LED : +5V * ;* 16. Katode LED : GND * ;******************************************
in „LCD 8 Bit Ansteuerung (AVR, Assembler)“ · Projekte & Code ·
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Datei
8080int-jmp.asm
table, stolen from z80ex, Z80 emulation library. ; http://z80ex.sourceforge.net/ ; The S, Z, 5 and 3 bits and the parity of the lookup value ; .org (PC+255) & 0xff00 .org opcjmp + 256 sz53p_tab: .db 0x44,0x00,0x00,0x04,0x00,0x04,0x04,0x00 .db 0x08,0x0c,0x0c,0x08,0x0c,0x08,0x08,0x0c .db 0x00,0x04,0x04,0x00,0x04,0x00,0x00,0x04 .db 0x0c,0x08,0x08,0x0c,0x08,0x0c,0x0c,0x08 .db 0x20,0x24,0x24,0x20,0x24,0x20,0x20,0x24 .db 0x2c,0x28,0x28,0x2c,0x28,0x2c,0x2c,0x28 .db 0x24,0x20,0x20,0x24,0x20,0x24,0x24,0x20 .db 0x28,0x2c,0x2c,0x28,0x2c
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Datei
8080int-jmp.asm
table, stolen from z80ex, Z80 emulation library. ; http://z80ex.sourceforge.net/ ; The S, Z, 5 and 3 bits and the parity of the lookup value ; .org (PC+255) & 0xff00 .org opcjmp + 256 sz53p_tab: .db 0x44,0x00,0x00,0x04,0x00,0x04,0x04,0x00 .db 0x08,0x0c,0x0c,0x08,0x0c,0x08,0x08,0x0c .db 0x00,0x04,0x04,0x00,0x04,0x00,0x00,0x04 .db 0x0c,0x08,0x08,0x0c,0x08,0x0c,0x0c,0x08 .db 0x20,0x24,0x24,0x20,0x24,0x20,0x20,0x24 .db 0x2c,0x28,0x28,0x2c,0x28,0x2c,0x2c,0x28 .db 0x24,0x20,0x20,0x24,0x20,0x24,0x24,0x20 .db 0x28,0x2c,0x2c,0x28,0x2c
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Datei
8080int-jmp.asm
table, stolen from z80ex, Z80 emulation library. ; http://z80ex.sourceforge.net/ ; The S, Z, 5 and 3 bits and the parity of the lookup value ; .org (PC+255) & 0xff00 .org opcjmp + 256 sz53p_tab: .db 0x44,0x00,0x00,0x04,0x00,0x04,0x04,0x00 .db 0x08,0x0c,0x0c,0x08,0x0c,0x08,0x08,0x0c .db 0x00,0x04,0x04,0x00,0x04,0x00,0x00,0x04 .db 0x0c,0x08,0x08,0x0c,0x08,0x0c,0x0c,0x08 .db 0x20,0x24,0x24,0x20,0x24,0x20,0x20,0x24 .db 0x2c,0x28,0x28,0x2c,0x28,0x2c,0x2c,0x28 .db 0x24,0x20,0x20,0x24,0x20,0x24,0x24,0x20 .db 0x28,0x2c,0x2c,0x28,0x2c
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Datei
8080int-jmp.asm
table, stolen from z80ex, Z80 emulation library. ; http://z80ex.sourceforge.net/ ; The S, Z, 5 and 3 bits and the parity of the lookup value ; .org (PC+255) & 0xff00 .org opcjmp + 256 sz53p_tab: .db 0x44,0x00,0x00,0x04,0x00,0x04,0x04,0x00 .db 0x08,0x0c,0x0c,0x08,0x0c,0x08,0x08,0x0c .db 0x00,0x04,0x04,0x00,0x04,0x00,0x00,0x04 .db 0x0c,0x08,0x08,0x0c,0x08,0x0c,0x0c,0x08 .db 0x20,0x24,0x24,0x20,0x24,0x20,0x20,0x24 .db 0x2c,0x28,0x28,0x2c,0x28,0x2c,0x2c,0x28 .db 0x24,0x20,0x20,0x24,0x20,0x24,0x24,0x20 .db 0x28,0x2c,0x2c,0x28,0x2c
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Datei
8080int-jmp.asm
table, stolen from z80ex, Z80 emulation library. ; http://z80ex.sourceforge.net/ ; The S, Z, 5 and 3 bits and the parity of the lookup value ; .org (PC+255) & 0xff00 .org opcjmp + 256 sz53p_tab: .db 0x44,0x00,0x00,0x04,0x00,0x04,0x04,0x00 .db 0x08,0x0c,0x0c,0x08,0x0c,0x08,0x08,0x0c .db 0x00,0x04,0x04,0x00,0x04,0x00,0x00,0x04 .db 0x0c,0x08,0x08,0x0c,0x08,0x0c,0x0c,0x08 .db 0x20,0x24,0x24,0x20,0x24,0x20,0x20,0x24 .db 0x2c,0x28,0x28,0x2c,0x28,0x2c,0x2c,0x28 .db 0x24,0x20,0x20,0x24,0x20,0x24,0x24,0x20 .db 0x28,0x2c,0x2c,0x28,0x2c
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Datei
RGBLED_DimmerHSV_001.asm
---------------------- .dseg ; HSB H =Farbton(grad) ; S =Sätigung , B =Helligkeit Zwischenwert01: .db 1 ; = B*(1-S) Zwischenwert02: .db 1 ; = B*(1-S*f) Zwischenwert03: .db 1 ; = B*(1-S*(1-f)) Zwischenwert_f: .db 1 ; = (hsb_H/6 -42) warum 42 weil es ca 1/6 von 255 ist RGB_R: .db 1 RGB_G: .db 1 RGB_B: .db 1 hsb_h: .db 1 hsb_s: .db 1 hsb_b: .db 1 .def par1 = r16 .def par2 = r17 .def par3 = r18 ;------------------------------------------------------------------------------ ; Code segment schreibe in Flash
in „HSB LED Steuerung mit Atmega 8 in ASM suche Hilfe“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lok_tn15.asm
automatisieren sowie das Einstellen von Kalibrationsbyte und DCC-Adresse ;im Kopf des Quelltextes ermöglichen. .db adress,0x00 ;CV1 Adresse und CV2 StartSpeed .db cv3_4,cv3_4 ;CV3 IncVAL und CV4 DecVal (oben vorberechnet) .db 0x80,calibyte ;CV5 MaxSpeed und CV6 OSCCAL .db 0xFF,0x01 ;CV7 Hersteller und CV8 Typ ID .db 0xFF,0xFF ;CV9 Frei und CV10 Frei .db 0xFF,0xFF ;CV11 Frei und CV12 Frei .db 0xFF,0xFF ;CV13 Frei und CV14 Frei .db 0xFF,0xFF ;CV15 Frei und CV16 Frei .db 0x00,0x02 ;CV17 HI-Byte und CV18 LO-Byte .db
in „DCC Decoder“ · Projekte & Code ·
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PDF
schematic-T962.pdf
SCL0/CAP0.0 22 SCL GND 14 36 C DB7 13 40 P1.23/PIPESTAT2 34 HEAT (SHT 2) C DB6 12 44 P1.22/PIPESTAT1 P0.9/RXD1/PWM6/EINT3 GND DB5 11 48 P1.21/PIPESTAT0 33 COOL (SHT 2) 3.3V 5.0V DB4 10 4 P1.20/TRACESYNC P0.8/TXD1/PWM4/AD1.1 DB3 9 8 P1.19/TRACEPKT3 17 R21 390 L2 DB2 8 12 P1.18/TRACEPKT2 P0.31 DB1 P1.17/TRACEPKT1 RED DB0 7 16 P1.16/TRACEPKT0 P0.28/AD0.1/CAP0.2/MAT0.2 13 TC1 (SHT 3) 2 7 ISP E 6 53 P0.18/CAP1.3/MISO1/MAT1.3 R 4 2.54-5P R/W 5 54 P0.19
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Datei
SMY202.HEX.txt
202D40000E05024143024443012F000404050553544F5245012F013F00282728024F4E04F8 :202D60004155544F034F4646055245534554013F0028282828283A3B28282828283D013FF2 :202D80000028282828B1051CC70105121CF0B301F4E11CC70106121CF0B1021CC701051297 :202DA0001CC701011200C701021200B1311DC70104121DB301F4E11DC70106121DB1E01DF5 :202DC000C70106121DB1261DC70105121DB1A41DC70105121DB18C1DC70105121DB1C11DB3
in „[V] Rohde und Schwarz SMY02 9kHz-2.080Gh Signal Generator“ · Markt ·
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PDF
LTC224210fc.pdf
Ratio 70MHz Input l 58.2 60.4 dB (Note 12) 140MHz Input 60.3 dB 240MHz Input 60.2 dB IMD Intermodulation Distortion IN1= 135MHz, fIN2= 140MHz 81 dBc 224210fc 3 LTC2242-10 INTERNAL REFERENCE CHARACTERISTICS (Note 4) PARAMETER CONDITIONS
in „Projekt Signal-Auswertung mit High-Speed-ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PDC_10-1_Datasheet.pdf
D IRECTIONAL C OUPLERS 50 & 75 Plug-In 6 to 30 dB C OUPLING up to 10W 5 kHz to2000 MHz TDC PDC P4DC PDC-20A-5 FREQ. COUPLING MAINLINE LOSS DIRECTIVITY VSWR CASE C PRICE POWER N RANGE dB dB dB (:1) INPUT, W STYLE N $ MHz C MODEL T L M J U L M J U L MU
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Datei
cd-loader.dump.hex.txt
210d 8072 cdba 05c9 2139 077e 23b7 (.!..r....!9.~#. 00005c0: ca28 07ba 20f7 3a8e 81b7 c47d 053a 0d80 .(.. .:....}.:.. 00005d0: fe3e 2006 cd67 07c3 3507 fe21 2056 fd21 .> ..g..5..! V.! 00005e0: 4f80 3e06 fd77 00db 38fd 7701 db3a fd77 O.>..w..8.w..:.w 00005f0: 02db 3cfd 7703 db3e
in „Suche KL5C80A12 (Z80 Clone) Datenblatt / Register-Map“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCB_Project_DC11.pdf
PIU306 PIL201 PIL202 Res2 P32 C2 PILCD10VDD 1 PIIN01 Res2 S CO11 C121 PIREN10PIREN101 O VFB PIU301 R52k3 CO13 C141 PILCD10VSS DB0 PILCD107 8A 1 0 Cap C0 Cap Res2 O R0 P30Cap C0 Cap PILCD10A5 DB1 PILCD108 D CINN 8 10 10uF 10uF 1M PIU303EN B RB1RB 10uF 10uF Title DB2 PILCD109 D COVCC 1 PGND PIU305 Res2 PILCD106 DB3 PILCD1010 PICVC102 PICVVCC01IAGND PIU308 R10k PILCD10R/W DB4 PILCD1011 Size Number PILCD10RS RevisioDB5 PILCD1012 1uF U3U A4 DB6 PILCD1013 GND GND GND GND MCP16311/2 GND GND GND GND PILCD10V0 DB7 PILCD1014
in „PWM Frequenz für den VNH3SP30-E“ · Mikrocontroller und Digitale Elektronik ·
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PDF
E0123N10.pdf
burst write operation can be started by inputting a new write command in the write cycle. Figure 10-3. Write/Write Command CL = 2, 3, BL = 4 T0 T1 T2 T3 T4 T5 T6 T7 T8 T9 T10 CLK Command WRITa WRITb Hi - Z DQ Da1 Db1 Db2 Db3 Db4 (2) Read cycle The preceding burst read operation can be aborted and a burst
in „VGA Grafikkarte mit AVR und 8MB SDRAM“ · Projekte & Code ·
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CAD-Ansicht und Foto einer LCD-Adapterplatine
EXT GND VCC UP LCD-CON 1 15 GND NC RS 14 BLK SI SCK 13 SO T RS 11 CS DB01 10 WR DB02 9 DB03 DB02 DB04 DB05 DB05 DB07 DB08 DB11 3 DB10 DB12 DB13 DB14 DB15 1 RST GND 2 LCD TESTER1 LCD F-51661GNCJU-MLW-AA +5V D1 R1 EXT-BKI GND VCC 16-BIT INTERFACE LCD
in „LCD-Modul F51661GNCJU-MLW-AA * Info *“ · Mikrocontroller und Digitale Elektronik · · Layouts
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PDF
LT_1787fc.pdf
VSENSE = 100mV, VSSupply = 5V ● 7.76 8 8.24 V/V Output Voltage Gain Error –V = 100mV, V Supply = 5V ● –3 1 3 % SENSE S VSPSRR VSSupply Rejection Ratio VSENSE= 0V, S Supply = 2.5V to 36V (LT1787) ● 120 135 dB VSENSE= 0V, VSSupply = 2.5V to 60V (LT1787HV) ● 120 135 dB VEESRR Negative Supply Rejection Ratio
in „Logger für Strom und Spannung im Selbstbau“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT_1787fc.pdf
VSENSE = 100mV, VSSupply = 5V ● 7.76 8 8.24 V/V Output Voltage Gain Error –V = 100mV, V Supply = 5V ● –3 1 3 % SENSE S VSPSRR VSSupply Rejection Ratio VSENSE= 0V, S Supply = 2.5V to 36V (LT1787) ● 120 135 dB VSENSE= 0V, VSSupply = 2.5V to 60V (LT1787HV) ● 120 135 dB VEESRR Negative Supply Rejection Ratio
in „AD 8323 : Analog Digital Wandler 16-Bit, Parallel, 500kSPS“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD7193.pdf
data rate, 60 Hz ± 1 Hz Fast Settling Internal Clock 3 @ 50 Hz 26 dB FS[9:0] = 6, average by 16, 50 Hz ± 0.5 Hz @ 60 Hz 26 dB FS[9:0] = 5, average by 16, 60 Hz ± 0.5 Hz External Clock @ 50 Hz 40 dB FS[9:0] = 6, average by 16, 50 Hz ± 0.5 Hz 3 @ 60 Hz 40
in „USB-Soundkarte zu einem Spannungslogger umbauen, wie die Eingänge schützen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
JHD204A.pdf
voltage V DD-V - 4.5 5.0 5.5 V SS Input high voltage V IH - 2.2 - V DD V Input low voltage V IL - -0.3 - 0.6 V Output high voltageV OH -IOH=02mA 2.4 - - V Output low voltage V OL IOL=1.2mA - - 0.4 V Operating voltage DD VDD=5.0V - 2.0 5.0 mA 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 VSS V CC VEE RS R/W E DB0 DB1 DB2 DB3 DB4 DB5 DB6 DB7 LED+ LED- AC Characteristics Read Mode Timing Diagram Write Mode Timing Diagram Timing Connection 的 的 的 数据 自定义符号 横 自定义符号 横 自定义符号 竖 竖 自定义符号 提供 软件延时 提供 软件延时 基于 的硬件延时 检查 忙 为数据
in „HD44780 - Kontrast lässt sich nicht eintellen“ · Mikrocontroller und Digitale Elektronik ·
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CAD-Darstellung von DB9-Steckverbindern
COM, COM, A10, J2, DB9_Female_MountingHoles, COM, COM, A11, J4, DB9_Female_MountingHoles, COM, COM, A12, J3, DB9_Female_MountingHoles, COM, COM, A13, J8, DB9_Female_MountingHoles, COM, COM, A14, J5, DB9_Female_MountingHoles, COM, COM, A15, J8, DB9_Female_MountingHoles, COM, COM, A16, J9, DB9_Female_MountingHoles, COM, COM, A17, J10, DB9_Female_MountingHoles, COM, COM, A18, J11, DB9_Female_MountingHoles, COM, COM, A19, J12, DB9_Female_MountingHoles
in „Adapter PCB Analog +/-10V“ · Platinen · · Layouts
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PDF
Orion_Rev_3.0__1_.pdf
INA11 51 13 DA11 34 RX1 IN MICRO COAXIAL L11 L8 C53 ENC DB11 56 10NF DA12 35 INA12 1 2 1 2 DB12 57 3V3 3P3VA DA13 36 INA13 MMZ2012R601A MMZ2012R601A 3P3VA_LT2208 DB13 58 DA14 INA14 DB14 37 DA15 59 INA15 C73 C74 5 VDD DB15 38 1000PF 100NF 6 15 VDD 60 ENC+ 16
in „Suche Firma die für Privat BGA FPGA reballing macht“ · Markt ·
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Frequenzgang-Messung eines VNA-Spektrumanalysators
MultiView Spectrum VNA Trc1 S21 dB Mag 1 dB/ Ref -7 dB Cal Mem2[Trc1] S21 dB Mag 1 dB/ Ref -7 dB R 100.00000 MHz -10.4513 dB ΔM1 1.531000 GHz 0.2459 dB ΔM2 2.90002 GHz 0.0720 dB ΔM3 4.107003 GHz -2.4217 dB ΔM4 4.40000 GHz -3.0511 dB Ch1
in „HP461 - Verstärker 20/40dB“ · HF, Funk und Felder · · Screenshots
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PDF
AD8132.pdf
3 MΩ Input Capacitance 1 pF Input Common-ModeVoltage 0.3 to 3.0 V CMRR ΔV OUT, dmVIN, cmΔIN, cm±1V; resistors matched to 0.01% −70 −60 dB AD8132W only,T MINtoTMAX −60 dB OUTPUT CHARACTERISTICS AD8132W
in „Schutzbeschaltung für ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
173193-da-01-en-MT_8870.pdf
deviation reject ±3.5% 2,3,5,9 6 Third tone tolerance -16 dB 2,3,4,5,9,10 7 Noise tolerance -12 dB 2,3,4,5,7,9,10 8 Dial tone tolerance +22 dB 2,3,4,5,8,9,11 ‡ Typical figures are°C and are for design aid only: not guaranteed
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Rohde & Schwarz FmLab.M103 Signalgenerator
FmLab.M103 Ein ON EL 0 x10^-3 Ausgangsbereich f. Ausgangsspannung Ausgangsspannung EMF FREED F. AMPL. 0 dB Ausgangsspannung Spannung Regler VOLTAGE CONTROL Mod. Eingang MOD. INPUT 1000 Hz 10 Hz 10 - 30 MHz 3,0 - 3,0 MHz 0,3 - 1,0 MHz 0,1 - 0,3 MHz Aus OFF 0 dB 3 Volt 0 dB 300 mV -20 dB 100 mV -30 dB 30 mV -40 dB 10 mV LEISTUNGS-MESSER 0,1-30 MHZ TYPE SMLR BN 41001 FNr. 1284/117 ROHDE & SCHWARZ MÜNCHEN POWER SIGNAL GENERATOR 0.1 TO 30 MC
in „Suche historische Mess/Prüfgeräte Sender/Empfänger speziell R&S“ · Markt · · Fotos
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PDF
techb_GraficLCD_de_en.pdf
Steckerleiste / STM32 F4 Discovery Male pin header PLUS LCD Beschreibung / Description 1 PIN E8 LCD PIN 6 DB0 = Datenbit 0 /data bit 0 2 PIN E9 LCD PIN 7 DB1 = Datenbit 1 /data bit 1 3 PIN E10 LCD PIN 8 DB2 = Datenbit 2 /data bit 2 4 PIN E11 LCD PIN 9 DB3 = Datenbit 3 /data bit 3 5 PIN E12 LCD PIN 10 DB4 = Datenbit 4 /data bit 4 6 PIN E13 LCD PIN 11 DB5 = Datenbit 5 /data bit 5 7 PIN E14 LCD PIN 12 DB6 = Datenbit 6 /data bit 6 8 PIN E15 LCD PIN 13 DB7 = Datenbit 7 /data bit 7 9 PIN B7 LCD PIN 1 CS1 10 PIN B4 LCD PIN 2 RST 11 PIN B9 LCD PIN 3 A0, RS
in „LCD Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TEA5767.pdf
; [3] 39 43 - dB +200 selectivity tune= 76 MHz to 108 MHz S low side 200 kHz f = −200 kHz; [3] 32 36 - dB −200 selectivity tune= 76 MHz to 108 MHz [3] S +100 high side 100 kHz f = +100 kHz; 8 12 - dB selectivity
in „Hilfe benötigt bei RDA5807SP Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
disp.asm
$NOMOD51 $INCLUDE(89s8252.mcu) DB0 EQU P2.0 DB1 EQU P2.1 DB2 EQU P2.2 DB3 EQU P2.3 DB4 EQU P2.4 DB5 EQU P2.5 DB6 EQU P2.6 DB7 EQU P2.7 EN EQU P0.0 RW EQU P0.1 RS EQU P0.2 DAT EQU P2 MOV P0, #00H MOV P1, #00H MOV P2, #00H MOV P3, #90H
in „KS0070B = 44780?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
Ground PARAMETER SYMBOL MIN D MAX UNIT 2 VDD 5V Power supply for logic Supply Voltage VDD-VSS 0 7.0 V 3 VL - Operating voltage for LC Operating Temperature TIN w0 500 °C 4 D/I H/L 1=Data, 0=Instruction Storage Temperature TOP -20 70 °C 5 R/W H/L 1=Data read, 0=Data write SwG 7 DB0 H/L->L Enable 8 DB1 H/L Electrical Characteristiws (VDD=5.0±0.25V 25°C) 9 DB2 H/L m PARAMETER SYM CONDITION MIN TYP MAX UNIT 10 DB3 H/L c o Input High Voltage V - .7 V - V V 11 DB4 H/L Data bus . Input Low Voltage VIH - - DD - .3 V V 12 DB5 H/L U Power Supply Voltage VIL-V V
in „Hilfe bei Anschluss Graphikdisplay“ · Mikrocontroller und Digitale Elektronik ·
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Datei
init.c
include <string.h> #include <avr/interrupt.h> void port_init(void) { //Ports auf Ausgang setzen // DB5=MOSI, DB7=SCK, DB4=SS, DB3=Display_RESET DA0=ready LED //DDRA = (1<<DDA0) ; DDRA = 0xff; DDRB = (1<<DDB5) | (1<<DDB7) | (1<<DDB4) | (1<<DDB3); DDRC = (1<<DDC0); //PortA auf Eingang: PA2, PA3, PA4 DDRA
in „SCK läuft ständig obwohl nicht in while schleife“ · Mikrocontroller und Digitale Elektronik ·
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ke_4_211_2_gb.pdf
response and sensitivity have very Frequency response..................................20 to 20,000 Hz ± 3 dB tight tolerances and are independent of each other. The capsule dia- 40 to 15,000 Hz ± 2.5 dB phragm has a miniscule hole for the purpose of air pressure compensation. This hole precisely defines the
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Datei
flacker.asm
, LOW(3*P3STEP) ldi rmp2, HIGH(3*P3STEP) cp lowbyte, rmp cpc highbyte, rmp2 breq p3_ledan ldi rmp, LOW(4*P3STEP) ldi rmp2, HIGH(4*P3STEP) cp lowbyte, rmp cpc highbyte, rmp2 breq p3_ledaus ldi rmp, LOW(5*P3STEP) ldi rmp2, HIGH(5*P3STEP) cp lowbyte, rmp cpc highbyte, rmp2 breq p3_ledan ldi rmp, LOW(6*P3STEP) ldi rmp2, HIGH(6*P3STEP) cp lowbyte, rmp cpc highbyte, rmp2 breq p3_ledaus rjmp loopsleep p3_ledan: sbi LEDPORT, LED1 rjmp
in „Fehlersuche AVR-assembler“ · Mikrocontroller und Digitale Elektronik ·
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TDA2030.pdf
30 dB f = 40 to 15,000 Hz 0.1 0.5 % B Power Bandwidth G v 30 dB 10 to 140,000 Hz (-3 dB) Po= 12W R L= 4 Ri Input resistance (pin 1) 0.5 5 M G Voltage gain (open loop) 90 dB v G v Voltage gain (closed loop) f = 1 kHz 29.5 30 30.5 dB eN Input noise voltage B = 22 Hz to 22 KHz 3 10 V N Input noise current 80 200 pA SVR Supply voltage rejection R L 4 Gv= 30 dB 40 50 dB R g 22 k Vripple 0.5 eff fripple100 Hz I Drain current P = 14W
in „Verstärker für Lernpaket "Elektronik mit ICs" von Franzis“ · Analoge Elektronik und Schaltungstechnik ·
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DEM240128D_SBH-PW-N.pdf
0.40 mm x 0.40 mm z Dot Gap : 0.05 mm Version:4 PAGE: 4 DEM 240128D SBH-PW-N Product Specification 3. EXTERNALDIMENSIONS 4. BLOCK DIAGRAM FG WR RD S6B0086 C1~C80 CE C/D RST LCD: 240X128DOTS T6963C FS S6B0086 C81~C128 DB0~DB7 80 80 80 S6B0086 S6B0086 S6B0086 GND 8K VDD RAM V0 LED(+) BACKLIGHT LED(-)
in „Display mit T963C“ · Mikrocontroller und Digitale Elektronik ·
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CPC5620_21_R03.pdf
- - dB Per FCC part 68.3 Off-Hook Characteristics AC Impedance - 600 - Ω Tip to ring, using resistive termination application circuit Longitudinal Balance 40 - - dB Per FCC part 68.3 Return Loss - 26 - dB Into
in „Phone Line Interface“ · Markt ·
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Datei
rgb.asm
sonst 1e dec r20 brne loop dec r17 brne loop ret ;----------------------------------------- dimtab: .db 0, 1, 1, 1, 1, 2, 2, 2 .db 3, 4, 5, 6, 7, 8, 10, 11 .db 13, 15, 17, 19, 21, 23, 26, 28 .db 31, 34, 37, 40, 43, 47, 50, 54 .db 58, 62, 66, 71, 75, 80, 84, 89 .db 94,100,105,111,116,122,128,134 .db 141,147,154,161,168,175,182,190 .db 197,205,213,221,230,238,247,254
in „[ASM] RGB Tabelle komischer Wert“ · Mikrocontroller und Digitale Elektronik ·
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LM10.PDF
/mV Shunt gain (Note 7) 1.5V≤V ≤6.5V, L=500 8 30 6 30 V/mV 0.1 mA≤OUT ≤10 mA 4 4 V/mV Common-mode −3.25V≤VCM≤2.4V (2.25V) 89 102 80 102 dB rejection VS=± 3.25V 83 74 dB − Supply-voltage −0.2V≥V ≥−5.4V 86 96 80 96 dB rejection V+=1.0V (1.2V) 80 74 dB 1.0V (1.1V) ≤V ≤6.3V 94 106 80 106 dB − V =0.2V 88 74 dB Offset voltage drift 2.0 5.0 µV/˚C Offset current drift 2.0 5.0 pA/˚C Bias current drift 60 90 pA/˚C Line regulation 1.2V (1.3V) SV ≤6.5V 0.001 0.01 0.001 0.02 % /V 0≤REF≤0.5 mA, VREF=200 mV 0.02 0.03
in „Suche Batteriewächter“ · Analoge Elektronik und Schaltungstechnik ·
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Schematic_062C.pdf
) LCD_D0 7 19 R23 0R C38 ROW3 PD2(RXD1/INT2) LCD_WR LCD_D1 DB0 A +5V R13 0R COUNTER R25 10K 28 PD3(TXD1/INT3) PG3/TOSC2 18 LCD_D2 8 DB1 29 PD4(ICP1) 9 DB2 C19 CTR 30 PD5(XCK1) LCD_D3 10 DB3 K 20 DNI 0.1u R54 31 PD6(T1) LCD_D4 11 DB4 2M PD7 32 PD7(T2) PG4/TOSC1 19 LCD_DI LCD_D5 12 DB5 VEE 18 U5 LCD_D6 13 1 C20 10uF 19 3 MD0 TP10 C21 LCD_D7 14 DB6 CONTRAST ADJ. VIN D0 4 MD1 TP11 R30 24 22pF DB7 2.6V D1 5 MD2 ANALOG 2K PF0 61 XTAL1
in „Oszilloskop erweitern“ · Mikrocontroller und Digitale Elektronik ·
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Schematic_062C.pdf
) LCD_D0 7 19 R23 0R C38 ROW3 PD2(RXD1/INT2) LCD_WR LCD_D1 DB0 A +5V R13 0R COUNTER R25 10K 28 PD3(TXD1/INT3) PG3/TOSC2 18 LCD_D2 8 DB1 29 PD4(ICP1) 9 DB2 C19 CTR 30 PD5(XCK1) LCD_D3 10 DB3 K 20 DNI 0.1u R54 31 PD6(T1) LCD_D4 11 DB4 2M PD7 32 PD7(T2) PG4/TOSC1 19 LCD_DI LCD_D5 12 DB5 VEE 18 U5 LCD_D6 13 1 C20 10uF 19 3 MD0 TP10 C21 LCD_D7 14 DB6 CONTRAST ADJ. VIN D0 4 MD1 TP11 R30 24 22pF DB7 2.6V D1 5 MD2 ANALOG 2K PF0 61 XTAL1
in „DCF77 Welches Modul taugt was“ · Mikrocontroller und Digitale Elektronik ·
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3DSanner_Stromlaufplan1.pdf
1 LCD_RS P$4 4 X3-14 SDA X3-15 CAMERA_PLUG LCD_R/W P$5 5 X3-16 CAMERA_RST GND LCD_EN P$6 X3-17 6 X3-18 CAMERA_XSDN LCD_DB0 P$7 7 X3-20 CAMERA_CLK X3-21 LCD_DB1 P$8 8 X3-22 DCMI_D[0..7] X3-23 DCMI_D0 LCD_DB2 P$9 9 X3-24 DCMI_D1 P$10 X3-25 DCMI_D3 LCD_DB3 10 X3-26 DCMI_D4 P$11 X3-28 DCMI_D5 11 X3-29 DCMI_D6 P$12 12 X3-30 DCMI_D7 X3-31 HSYSC P$13 13 C X3-32 VSYSC P$14 C X3-33 PIXCLK 14 X3-34 LCD_DB[0..3] P$15 X3-35 15 X3-37 V P$16 16
in „STM32 Boot0 Problem“ · Mikrocontroller und Digitale Elektronik ·
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50052T01e_01_110902.pdf
CD4 0DB5 1DB5 … nDB5 D3 CD3 0DB4 1DB4 … nDB4 D2 CD2 0DB3 1DB3 … nDB3 D1 CD1 0DB2 1DB2 … nDB2 D0 CD0 0DB1 1DB1 … nDB1 CD: 5CH when writing memory 5DH when reading memory When writing memory, nDR0 is set to nDR5
in „The Siemens S65 132x176, 65536 color display with AVR“ · Projekte & Code ·
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Datei
snippet.h
*************************************** typedef IO::PinList<RS, RW > CtrlBus; typedef IO::PinList< DB4, DB5, DB6, DB7> DataBus; typedef IO::PinList<RS, RW, EN, DB4, DB5, DB6, DB7> LcdPins; ... Die Deklaration in main sieht dann so aus und dabei ist die Zuordnung der Port-Pins mit minimalem Aufwand änderbar
in „statische Polymorphie per CRTP in Embedded Systemen“ · Mikrocontroller und Digitale Elektronik ·