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AVR_VGA.pdf
3 2 18 R1 6 L C6 C7 100n 22 PC1(ADC1) 25 13 B 2 IC4A 4 A1 Y1 16 R3 470 G 2 12 21 GND PC2(ADC2) 26 14 C 7 6 A2 Y2 14 R5 470 7 r 100n 20 AREF PC3(ADC3) 27 3 D QH 74AC08N 8 A3 Y3 12 470 B 3 13 G AVCC PC4(ADC4/SDA) 28 4 E 4 A4 Y4 8 Clock Switch C8 +5V PC5(ADC5/SCL) 5 F 6 1 4 14 100n 9 6 G 5 IC4B G 9 PB6
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Interfacing_the_Serial_RS232_Port.pdf
are Baud Rate Generator Chips such as the AY-5-8116, a more cheaper (and common)alternative is the 74HC4060 14-bit Binary Counter and Oscillator. The 74HC4060, being a 14 bit binary counter/divider only has outputs for some of it's stages. Only Q4 to Q14 is available for use as they have external connections
in „fehlerfreie UART-Übertragung?“ · Mikrocontroller und Digitale Elektronik ·
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MIC94030BM4.PDF
A1.0 A 3V R 40 R 1.5V R D 1.4V D0.5 D1 2V 20 1.0V 0 1.2V 0.0 0 1V 0.0 0.5 1.0 1.5 2.0 0 2 4 6 8 10 12 14 0 2 4 6 8 10 12 14 DRAIN-TO-SOURCE VOLTAGE (V) DRAIN-TO-SOURCE VOLTAGE (V) DRAIN-TO-SOURCE VOLTAGE (V) 300 s Pulse Test 80 s Pulse Test 6 1997 6-43 MIC94030/94031 Micrel Typical Applications SS* +5V
in „MOSFET ohne Body-Diode“ · Analoge Elektronik und Schaltungstechnik ·
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S7200SH.pdf
T255 T101 bis T255 Zähler Z0 bis Z255 Z0 bis Z255 Z0 bis Z255 Z0 bis Z255 Z0 bis Z255 Schnelle Zähler HC0 bis HC5 HC0 bis HC5 HC0 bis HC5 HC0 bis HC5 HC0 bis HC5 Ablaufsteuerungsrelais (S) S0.0 bis S31.7 S0.0 bis S31.7 S0.0 bis S31.7 S0.0 bis S31.7 S0.0 bis S31.7 Akkumulatoren AC0 bis AC3 AC0 bis AC3 AC0
in „SPS Step 7-Micro/win v4.0“ · Mikrocontroller und Digitale Elektronik ·
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PCF8574.pdf
, 11 data input 1Y, 2Y, 3Y 12, 6, 8 data output V CC 14 supply voltage 74HC_HCT11 All information provided in this document is subject to leg©Nexperia B.V. 2017. All rights reserved Product data sheet Rev. 6 — 19 November 2015 2 of 14 Nexperia 74HC11; 74HCT11
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AD7709__3_.pdf
SF Data Update Word Rate (Hz) 20 mV 40 mV 80 mV 160 mV 320 mV 640 mV 1.28 V 2.56 V 13 105.3 12 13 14 15 15 15.5 16 16 69 19.79 13 14 15 16 16 16 16 16 255 5.35 14 15 16 16 16 16 16 16 DIN WEN R/W STBY OSCPD 0 0 A1 A0 DOUT DOUT ADC STATUS REGISTER (8 BITS) DIN REGISTER DOUT CONFIG(24 BITS)EGISTER SELECT
in „AD7709, digitaler ground fürs Quarz?“ · Mikrocontroller und Digitale Elektronik ·
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Dokumentation_MBHATM128-0206.pdf
/13 Der ISP Programmieranschluss: 13 Beschreibung Seite 13 Die Belegung der Stiftleiste/Pins Seite 14 ISP Programmierung Seite 14 Schaltplan Selbstbau ISP-Dongle Seite 14 Sonstiges: 15 Schaltplan MBHATM128 V1.0 MICRO-BRAIN-MODUL Seite 15 Bauteilliste Seite 16 Beispiele zum Verbinden von einfachen Aktoren
in „atmega128 modul“ · Markt ·
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Datei
ADC2.c
Beantype : Init_ADC ** Version : Bean 01.180, Driver 01.07, CPU db: 2.87.434 ** Compiler : CodeWarrior HC12 C Compiler ** Date/Time : 18.11.2010, 14:46 ** Abstract : ** This file implements the ADC (ADC0) module initialization ** according to the Peripheral Initialization Bean settings, ** and defines interrupt
in „ADC Prog Problem Freescale S12X Familie“ · Mikrocontroller und Digitale Elektronik ·
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fla-203.pdf
D D D D D T + P + D0 - D7 A0 - A15 RD, WR, EN LCD X2 Decoder 16 LCD-DB7 CPU 1 1 1 15 LCD-DB6 A A A 14 LCD-DB5 68HC11 13 LCD-DB4 12 LCD-DB3 S1 11 LCD-DB2 EN 10 LCD-DB1 RD RD, WR, EN 9 LCD-DB0 WR 8 LCD-E N , 1 7 7 LCD-R/W A15 R A - 6 LCD-RS , 0 0 A14 D A D 5 LCD- -5V A13 R 4 LCD+ +5V A12 3 A8 - A18 A11
in „Kommunikation mit Leistungsprüfstand BOSCH FLA203“ · PC Hard- und Software ·
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Bild
Schaltplan mit 74HC4067 Multiplexer und Takt-Tastern
CLK 19, SDO 8, SDO 17, P15 16, P02 15, P00 14, P04 13, P14 27, P12 26, P05 10, P18 9, GND 7, P21 6, RX 5, TX 4, P22 3, P23 2, GND 1, 5V 20, GND 21, SD3 22, SD2 23, GND 25, P14 27, V 28, P25 30, P33 32, P32 31, P35 34, P34 33, SVN 35, SVP 36, EN 37, 3V3 38, 74HC4067, C 1 bis C 13, SIG 8, TACT_BUTTON, GND, 3V3
in „Merkwürdiges Verhalten des 74hc4067“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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Schaltplan mit 74HC4067 Multiplexer und Takt-Tastern
CLK 19, SDO 8, SDO 17, P15 16, P02 15, P00 14, P04 13, P14 27, P12 26, P05 10, P18 9, GND 7, P21 6, RX 5, TX 4, P22 3, P23 2, GND 1, 5V 20, GND 21, SD3 22, SD2 23, GND 25, P14 27, V 28, P25 30, P33 32, P32 31, P35 34, P34 33, SVN 35, SVP 36, EN 37, 3V3 38, 74HC4067, C 1 bis C 13, SIG 8, TACT_BUTTON, GND, 3V3
in „Merkwürdiges Verhalten des 74hc4067“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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Ausschnitt eines elektronischen Schaltplans
TXD-USB_L 42 RXD-USB_L 43 MR 12 QE 5 QF 4 QG 14 QH 13 QI 15 QJ 1 QL 2 QM 3 QN 8 RS 11 RTC 10 CTC 9 QD 7 BOOT_H 60 PA9 TXD1-BOOT PA10 RXD1-BOOT SWD-TMS PA13 SWC-TCK PA14 PH3-BOOT0 SWD-TDO T2.2 PB3 NRST 39k R31 R32 10 15k,1% C14 10n D4 MC74HC4060A R30
in „MCU per UART flashen“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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Nixie_Uhr_mit_8_Ziffern_Uhr_und_Anzeige_Schaltplan.pdf
J3 7 22 Alarm2 GND +5V 8 21 C10 H +5V 22nF GND H 9 20 Alarm1 X1 10 19 HDR1X3 J5 11 18 +5V 12 17 A1 HC-49/U_5MHz 13 16 C8 C9 B1 I 22pF 22pF 14 15 C1 I DIP28 D1 A2 B2 C2 D2 J J GND HDR1X10 K K L L M M N N O O 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15
in „Hilfe - PIC 16F768 Resetet sich sändig - Hilfe“ · Mikrocontroller und Digitale Elektronik ·
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LCD_Extender_SMD_4Bit_schematics.pdf
R7 0R0 0R0 R8 5 + R9 0R0 TC2030NL +5V k 2 1 k 4 1 2 1 R 2 1R 3 4 n 0R0 R10 5 6 2 0 3 C 1 D 0R0 N MA14-1 X2 GND G D 74HC573D 1 N +5V 2 G 1 OC 3 VEE 11 C 4 RS IC2 5 RW D 9 12 19 1 6 E N 8 8D 8Q 13 18 (SCK)PB7 RESET 7 G 7 7D 7Q 14 17 (MISO)PB6 8 6 6D 6Q 15 16 (MOSI)PB5 4 Q1 9 5 5D 5Q 16 15 PB4 XTAL2 4D 4Q (OCI)PB3 16MHz 10 4 3D 3Q 17 14 PB2 XTAL1 5 11 DB4 3 2D 2Q 18 13 (AIN1)PB1 +5V 12 DB5 2 1D 1Q 19 12 (AIN0)PB0 VCC 20 C3 C4 13 DB6 GND 10 14 DB7 11 C1 22p 22p 10k 9 (ICP)PD6 X1 8 (T1)PD5 100n +5V R1 7 (T0)PD4 6 (INT1)PD3 (INT0)PD2 3
in „HD44780 Extender“ · Mikrocontroller und Digitale Elektronik ·
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LCD_Extender_SMD_4Bit_schematics.pdf
R7 0R0 0R0 R8 5 + R9 0R0 TC2030NL +5V k 2 1 k 4 1 2 1 R 2 1R 3 4 n 0R0 R10 5 6 2 0 3 C 1 D 0R0 N MA14-1 X2 GND G D 74HC573D 1 N +5V 2 G 1 OC 3 VEE 11 C 4 RS IC2 5 RW D 9 12 19 1 6 E N 8 8D 8Q 13 18 (SCK)PB7 RESET 7 G 7 7D 7Q 14 17 (MISO)PB6 8 6 6D 6Q 15 16 (MOSI)PB5 4 Q1 9 5 5D 5Q 16 15 PB4 XTAL2 4D 4Q (OCI)PB3 16MHz 10 4 3D 3Q 17 14 PB2 XTAL1 5 11 DB4 3 2D 2Q 18 13 (AIN1)PB1 +5V 12 DB5 2 1D 1Q 19 12 (AIN0)PB0 VCC 20 C3 C4 13 DB6 GND 10 14 DB7 11 C1 22p 22p 10k 9 (ICP)PD6 X1 8 (T1)PD5 100n +5V R1 7 (T0)PD4 6 (INT1)PD3 (INT0)PD2 3
in „LCD Extender“ · Projekte & Code ·
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STM32F107-SK-SCH-revA.pdf
/TIM2_CH3 TRESIN MICROPHONE 100k 33k 4 Z3 C91 PC15/OSC32_OUT 9 R104 NA Q2 GND TDO 13 14 C56 PA3/USART2_RX/ADC12_IN3/TIM2_CH4 TCKIN 1-L 47pF BZV55C2V4 32768Hz/6pF C14 20pF RST 15 16 14 TMSIN R95 +5V_USB_J-LINK 2 C89 47pF ACC_INT 97 PE0/TIM4_ETR 81 CAN1_RX PD0 R-T R153 10k 17 18 100nF 8 VSSA
in „Cortex M3 STM32F107VC beim Reset passiert nichts“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Temperatur.bas
Word Dim C As Single Dim Temperatur As Integer Dim Msb As Byte Dim Lsb As Byte Dim I2c_sensorinit(14) As Byte Dim Slave_adress As Byte Dim Data_register As Byte Slave_adress = &H28 'Slave Adresse I2c_sensorinit(1) = 84 'T I2c_sensorinit(2) = 101 'e I2c_sensorinit(3) = 109 'm I2c_sensorinit(4) = 112
in „Hilfe --> I2C Slave mit Bascom“ · Mikrocontroller und Digitale Elektronik ·
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nixie_uhr_mit_8_ziffern_3_neue_Version_-_Otto.pdf
R41 6 THR C2 100nF 100nF C3 IRF730 10k 2 TRI C 470uF-POL 2.2uF-POL R8 MPSA92 R10 MPSA92 R12 MPSA92 R14 MPSA92 1K _LIN C14 C 47k 47k 47k 47k Key = A 50% 47pF 5 CON GND C16 1 LM555CM 2.2nF Q12 D5 C1 Q5 R37 R15 470 D 22nF Pin1: GND D Pin2: MCLR 33k MPSA42 Pin3: RB7 HDR1X5 MPSA42 BZX79-C5V6 Pin4: RB6/DCF
in „Hilfe - PIC 16F768 Resetet sich sändig - Hilfe“ · Mikrocontroller und Digitale Elektronik ·
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avr_vga.pdf
3 2 18 R9 6 L C2 C14100n 22 PC1(ADC1) 25 13 B 2 IC7A 4 A1 Y1 16 R10 470 G 2 12 21 GND PC2(ADC2) 26 14 C 7 6 A2 Y2 14 R11 470 7 ü 100n 20 AREF PC3(ADC3) 27 3 D QH 74AC08D 8 A3 Y3 12 470 B 3 13 G AVCC PC4(ADC4/SDA) E A4 Y4 C16 PC5(ADC5/SCL) 28 4 F 4 8 Clock Switch 100n +5V 5 G 6 1 G 4 14 9 PB6(XTAL1/TOSC1
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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000202020-qs-01-en-SCHALTPLAN_MCU_AKKULADESTATION_CHARGE_MA.pdf
4 C2 VRH 30 D1 R4 SA2 R23 R9 C5 1N4148 100k 5 C3 B7 29 220k 100k 0u1 C4 S9CD SA1 0µ1 Y25 6 C4 MC68HC-908 B6 28 R17 S10CD SA0 Y2 1k0 Y26 7 C5 B5 27 Vtst S2CD MA2 Y13 8 C6 B4 26 MA1 9 E0/TxD B3 25 MUX2 R7 MA0 1/3 CD4053 47k 10 E1/RxD B2 24 12 +15V R3 SC 14 100k 11 IRQ B1 23 ZD1 SD 13 ZPD12V LCD-Brightness
in „Charge Manager 2020 Fehler beheben - wie?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
struct Relais K7_Ein = { 12, 13, 12 }; struct Relais K7_Aus = { 13, 12, 13 }; struct Relais K8_Ein = { 14, 15, 14 }; struct Relais K8_Aus = { 15, 14, 15 }; struct Relais K9_Ein = { 16, 17, 16 }; struct Relais K9_Aus = { 17, 16, 17 }; struct Relais K10_Ein = { 18, 19, 18 }; struct Relais K10_Aus = { 19, 18
in „Interrupt Variable übergeben“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
struct Relais K7_Ein = { 12, 13, 12 }; struct Relais K7_Aus = { 13, 12, 13 }; struct Relais K8_Ein = { 14, 15, 14 }; struct Relais K8_Aus = { 15, 14, 15 }; struct Relais K9_Ein = { 16, 17, 16 }; struct Relais K9_Aus = { 17, 16, 17 }; struct Relais K10_Ein = { 18, 19, 18 }; struct Relais K10_Aus = { 19, 18
in „Parsen klappt nur bis zur ersten Stelle.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
16Bit_Schieberegister.asm
Anschlüsse Output Shift Register ; Output Enable, Pin13 liegt Hardwareseitig auf Masse ; (Pin am 74HC595) .equ LCK = PB4 ;Ausgang uC (S-Daten an Ausgänge übergeben) (Latch Clock,Pin 12) .equ SCK = PB5 ;Ausgang uC (Takt zum Durchschieben) (Shift Clock,Pin 11) .equ RST = PB3 ;Ausgang uC (Shiftregister löschen) (Reset, Pin 10) .equ SOUT = PB7 ;Ausgang uC (Serielle Daten f. Shiftregister) (A, Pin 14) ; Anschlüsse Input Shift Register ; (Pin 74HC165) .equ PCK = PB2 ;Ausgang uC Parallel Clock (Eintakten Paralleldaten ins Shiftregister) (CK, Pin 2) .equ PLD = PB0 ;Ausgang uC Parallel Load (Übernahme
in „Hilfe zur Tastenentprellung von P.Dannegger“ · Mikrocontroller und Digitale Elektronik ·
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Switch.pdf
-G5LE-14-DC12 G5LE-14-DC12 A1 SPDT 33.3 360.0 12 400 653-G5LE-14-AP3-DC12 G5LE-14-AP3-DC12 A1 SPDT 33.3 360.0 12 400 ** 653-G5LE-14-DC24 G5LE-14-DC24 A1 SPDT 16.7 1440.0 24 400 ** 653-G5LE-14-AP3-DC24 G5LE-14
in „Ausfallursache Printtaster DeLonghi Kaffeeautomat?“ · Mikrocontroller und Digitale Elektronik ·
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Display_2_sch.pdf
4 3 R 4 R 3 1B GND GND 5 7 74AC573N 6 2A 2Y 1 P$1 11 2B 9 11 OC P$1 P$1 10 3A 3Y C P$1 3B P$1 P$1 14 4A 4Y 12 0 0 9 8D 8Q 12 13 4B R 0 C 1 IC1 8 7D 7Q 13 IC6 X1 D 9 RESET (AD7)PA7 32 7 6D 6Q 14 10 A0$1 IP$1 11 1 A/B 1 G p (AD6)PA6 33 6 5D 5Q 15 9 A1$1 IP$1 12 15 G 2 8 7 34 5 16 8 P$1 13 0 3 D C Q2 18
in „Grafikfähiger LCD Controller für 320x240 LCD mit 4 Graustufen“ · Projekte & Code ·
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HCS-3602_schematics_opt.pdf
+SVB Pl U7 11 P2 D 12 D P3 n Norrnol 14 ~ ~ : o - - SET Preset 74HCI65 I +SVB .---+------ Remote RI RI RI RI RI RI RI RI SET 1 10 IOI IO 10 10 JO 10 10 IO ·I 'C '" M - ·I 'C "' -e- M N " " ~· " - Ul U2 I i<m otcContro 74HC595 74HC595 VCC GND
in „Manson HCS-3602 HCS-3600 Reparatur“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT1161.pdf
V GATE + V = 12V 7 8.5 10 V V += 24V 10 12 14 V V = 48V 10 12 14 V + tON Turn-ON Time V = 24V, V GATE > 32V, CGATE= 1000pF 100 220 400 s tOFF Turn-OFF Time V = 24V, V GATE < 2V, GATE = 1000pF 75 200 s + + tOFF(CL) Current Limit Turn-OFF Time V =
in „Erfahrungen mit LT1161“ · Mikrocontroller und Digitale Elektronik ·
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top2008.pdf
__EEPROM-XICOR X2816, X2816A, X2816B, X28C16, X28C16A, X28C16B, X2817A, X28C17, X2864A, X28C64, X28HC64, X28C256, X28HC256, X28TC256, X28VC256, X28C64*32PIN, X28HC64*32PIN, X28C256*32PIN, X28HC256*32PIN, X28TC256*32PIN, X28VC256*32PIN, X28C010, X28HT010, X28C020, X28HT020, ____EEPROM-LINKSMART LST28001
in „[V] Top 853 Universal Programmer + 74er Tester“ · Markt ·
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Datei
can-receiver.bas
odd id's with 29 bit identifier ' use CAN_TX to send a message, you can choose every MOb from 0 to 14, you can use more than 1 MOb to send a message ' after transmission the MOb is deactivated and have to "restart" by a new trasnmission via CAN_TX ' ' the receiver software contains different demos, to
in „AVR AT90CAN128 bei CAN-Empfang langsam“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Fahrrad-Motorabschaltung_2512_2018_Sch.pdf
+5V +5V +5V +5V +5V +5V R161 3 C1 1k R1 RV1 1 retriggerbares 1 C14 1k 220k 100n R11 R13 R15 10u16V 1 Motor 1 Monoflop: D16 2 1 74HC123 11k 11M 1k 1 2 AN v > 8km/h R2 v < 8km/h High, wenn v < 8 km/h SWITCH +Reed P1 1 1 A C11 R14 9 A Reedkontakt ~1 ca. 1Hz bei 8 km/h
in „Suche Baustein, der in Abhängigkeit von Zeit (Frequenz) schaltet“ · Mikrocontroller und Digitale Elektronik ·
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TNC2-CPM.pdf
A9 A9 24 A9 A10 23 A10 A10 21 A10 A11 25 A11 A11 23 A11 A12 4 A12 A12 2 A12 A13 28 A13 26 A[0..15] A14 29 A13 A[0..15] A14 1 A13 3 A14 A14 2 A15 WR 27 A16 20 WE\ CSR0 CE\ CSE 22 CE\ RD 22 OE\ RD 24 OE\ WR 31 WE/ AM29F010J IC2 4 A0 10 11 D0 C 9 A0 O0 12 A1 8 A1 O1 13 D1 A2 A2 O2 D2 IC5 A3 7 A3 O3 15 D3
in „Z80 Einplatinencomputer für Lernzwecke“ · Mikrocontroller und Digitale Elektronik ·
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prop_BOM.pdf
270 Video D/A 20 Widerstand 10K 4 0,08 0,32 Reichelt METALL 10,0K 21 Widerst.netzw. 4x150 Ohm 1 0,14 0,14 Reichelt SIL 8-4 150 SD-Card Serienwiderst. 22 Widerst.netzw. 6x22 K 1 0,09 0,09 Reichelt SIL 7-6 22K SD-Card Pullup 23 Widerst.netzw. 4x10 K 1 0,09 0,09 Reichelt SIL 5-4 10K Key/Mouse Pullup 24 Widerst.netzw. 4x100 Ohm 1 0,14 0,14 Reichelt SIL 8-4 100 Key/Mouse Serienwider. 25 Elko Subminiatur 0,1/63 6 0,07 0,42 Reichelt SM 0,1/63RAD 26 Elko Subminiatur 100/16 4 0,07 0,28 Reichelt SM 100/16RAD 27 Kondensator 100n 9 0,12 1,08
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Schaltplan_1.2.pdf
GND 7 2 R 1 GND 10k R6 10k D4IC7B 0 1N4148 1 GND R5 10k T1A 0 /10V_EN R28 IRF7103 10k 7 - - - 1k R14R22339N 8 - J J J 14 2 0 0 10k 9 3 + + C 1 T1B D5IC7C - BUS_IN V V J2 IRF7103 1N4148 3 8 1 P 10k 2 7 2 5 VCC 5GND LM339N 7 6 6 6 B 6 3 + 16 I 8 R15R23 10 - J J J B 4 5 T2A 0 13 11 2 3 6 GND IRF7103 VENTILE1
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EGBT-045MS-046S_Bluetooth_Module_Manual_rev_1r0.pdf
Host controller: COMMAND RESPONSE AT+NAME?É AT+VERSION?É +VERSION:<VER>É EGBT-045MS Response +NAME:HC-05É OKÉ OKÉ where <VER> = Version Number Example: Set device name to “e-Gizmo” 4. Restore settings to Factory Defaults From Host controller: AT+NAME=e-GizmoÉ COMMAND RESPONSE EGBT-045MS Response OKÉ
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EGBT-045MS-046S_Bluetooth_Module_Manual_rev_1r0.pdf
Host controller: COMMAND RESPONSE AT+NAME?É AT+VERSION?É +VERSION:<VER>É EGBT-045MS Response +NAME:HC-05É OKÉ OKÉ where <VER> = Version Number Example: Set device name to “e-Gizmo” 4. Restore settings to Factory Defaults From Host controller: AT+NAME=e-GizmoÉ COMMAND RESPONSE EGBT-045MS Response OKÉ
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AVR_Stamp_V1_0_sheet.pdf
U MOSI/2.4B 4 4 A1 BUSACK 12 PD3 AREF 29 C2 C9 4 3 H SCK/2.4B LATCH 13 4 T S_TX/2.3A 5 5 A2 ZRESET 14 PD4 ~RESET Ü S_RX/2.3A 6 6 A3 WR 15 PD5 8 W A19 7 7 A4 6 2 RD PD6 XTAL1 PHI D0 8 8 A5 0 I 16 PD7 D1 9 9 A6 0 PA0 37 A0 A0 2 1D 1Q 19 A8 D2 10 10 A7 C D0 19 PC0 PA1 36 A1 A1 3 2D 2Q 18 A9 4 D1 20 35 A2
in „Z180-Stamp Modul“ · Mikrocontroller und Digitale Elektronik ·
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MCU_-_HR8P506_Datasheet_e.pdf
http://www.essemi.com HR8P506 Datasheet IRQ12~15 Priority Control Register (NVIC_PR3) Offset address:3HC Reset value:00000000_00000000_00000000_00000000B 31 30 29 28 27 26 25 24 23 22 21 20 19 18 17 16 PRI_15<1:0> Reserved PRI_14<1:0> Reserved 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0 PRI_13<1:0> Reserved PRI
in „Re - Programmierung eines Cortex M0“ · Mikrocontroller und Digitale Elektronik ·
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problem4051.pdf
3V3(250MA_MAX) 3V3_ X5 3V3_ 1 6 3V3 X4 EN VIN VIN 12 X3 15 X2 C 9 0 0/MOSI1/RX1/TOUCH A22/DAC1 A22 14 X1 10 1 A21 B 13 B 1/MISO1/TX1/TOUCH A21/DAC0 B X0 C A 11 2 2/PWM 39/A20 39 3 OUT V 3 38 6 3/PWM/CAN0TX/SCL2 38/A19/PWM/SDA1 1 4 4/PWM/CAN0RX/SDA2 37/A18/PWM/SCL1 37 74HC4051 5 5/PWM/TX1/MISO1 36/A17
in „was passiert in meiner schaltung? oO“ · Analoge Elektronik und Schaltungstechnik ·
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schaltplan.pdf
C12 P4.5 RESET 10 RESET V A8 25 A8 C A8 25 A8 A13 C13 P4.6 P P5.0 67 P5.0 11 C A9 24 A9 C A9 24 A9 A14 C14 P4.7 J1 2 P5.1 66 P5.1 1 OC A10 21 A10 V A10 21 A10 A15 C15 P6.0 C8 PE 4 PE P5.2 65 P5.2 C4 A11 23 A11 A11 23 A11 RESET A16 C16 P6.1 P5.3 64 P5.3 74HC573N A12 2 A12 A12 2 A12 JP1 A17 C17 P6.2 GND
in „80C535 Board“ · Mikrocontroller und Digitale Elektronik ·
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SerProg.pdf
CAN9Z90 J2 GND 100n VCC MAX232A GND R1 VCC 1k VCC 1 IC2A R2 R3 C 1k 1k C R3 2 SN74HC325 1k MD0 /RST T1 GND BC850 R24 MD1 VCC R25 10k 4 10k 10k IC2B R5 SN74HC125 5 6 MD2 R4 1k GND B 1 GND B IC2C SN74HC125 9 8 P00 GND 3 1 IC2D SN74HC125 12 11 P01 GND Title RS232 serial interface logic
in „Fujitsu MB91F011 internal flash read/write“ · Mikrocontroller und Digitale Elektronik ·
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SerProg.pdf
CAN9Z90 J2 GND 100n VCC MAX232A GND R1 VCC 1k VCC 1 IC2A R2 R3 C 1k 1k C R3 2 SN74HC325 1k MD0 /RST T1 GND BC850 R24 MD1 VCC R25 10k 4 10k 10k IC2B R5 SN74HC125 5 6 MD2 R4 1k GND B 1 GND B IC2C SN74HC125 9 8 P00 GND 3 1 IC2D SN74HC125 12 11 P01 GND Title RS232 serial interface logic
in „Fujitsu MB91F011 internal flash read/write“ · Mikrocontroller und Digitale Elektronik ·
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schematic.pdf
GND 10k 7 3 10k R6 GND D4IC7B - GND 1N4148 3 GND R5 10k 10k - 1 2 3 R28 LM339N 8 2 5 5 5 /10V_EN R14R22 14 - J J J 1k 9 2 n 10k D5IC7C 0 1 0 1N4148 1 V V J2 C 1 0 BUS_I8 1 10k - - - - 7 2 V 5 R23339N 10 - J J J 6 3 + 16CC IGND8 R15 13 2 B 5 4 V 10k 11 B 4 5 GND 1 D6IC7D 3 6 IC6 VENTILE1 + 1N4148 3 2
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PDF
LT-097_manual.pdf
R3 1 Widerstand 27 K-Ohm Raster 10mm U2-Sockel 1 IC-Sockel 40polig Polung beachten! U3-U13 11 IC 74HC138 DIP-16 Polung beachten! D1-D60 60 LED Minuten Indviduell 5mm, Raster 2,54mm Polung beachten! Q1 1 Quarz 16 Mhz HC49 C5, C6 2 Keramikkondensator 33pF Raster 2,54mm U14 1 Brückengleichrichter B80C1500
in „Coole LED-Uhr gefunden - kennt jmd. einen gleichwertigen Nachbau“ · Mikrocontroller und Digitale Elektronik ·
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Datei
fs20.h
counter decimal place 1 * 12 | rain counter decimal place 10 * 13 | rain counter decimal place 100 * 14 | unknown, seems to be some sort of checksum? * 15 | XOR checksum (XOR every nibble up to and including nibble 15, * | if correct, | the result is zero) * 16 | checksum, this is: (sum of nibbles 1 to
in „RFM01 - 838.35MHz ASK OOK / FS20“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Amilo_Core_Erzeugung.pdf
PC72 PU6B Mode PSW1_1 OFF ON ON 2 PL10 0.1u/25V_0603 0.1u/25V_0603 LM358 10A/2.5V PU6A QT4516RL060HC_6A_1806 1 Z2605 Z2606 5 D LM358 PC76 PR87 7 I_CPU [22] D Load-Line PSW1_2 OFF ON ON 4 0.1u/10V 10K_1 PR61 6 X7R PL9 100K_1 Z2602 QT4516RL060HC_6A_1806 Z2603 PC53 PR60 PC45 Z2607 0.1u/10V 11.3K_1 4.7u
in „Laptop geht nicht an: MOSFET 4C06N?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
struct Relais K7_Ein = { 12, 13, 12 }; struct Relais K7_Aus = { 13, 12, 13 }; struct Relais K8_Ein = { 14, 15, 14 }; struct Relais K8_Aus = { 15, 14, 15 }; struct Relais K9_Ein = { 16, 17, 16 }; struct Relais K9_Aus = { 17, 16, 17 }; struct Relais K10_Ein = { 18, 19, 18 }; struct Relais K10_Aus = { 19, 18
in „Verzögerung Zündung TRIAC für Phasenanschnitt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
U13843EU3V0AN00.pdf
JP1 JP2 69.3 MHz 2 POD4 JP3 (Default) N C JP1 JP2 65.4 MHz JP3 JP1 JP2 62.0 MHz CN12 JP12 JP13 JP3 JP14 JP1 JP2 49.1 MHz CN42 JP3 CN13 6 P J CN7 CN14 UNB4111 Evaluation Board Jumper Settings Rev. 2.1d 2 V RC 4171A Graphics Display Controller LCD Controller The LCD controller is designed to work with a
in „Controller für Graphik LCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Fmeter5.pdf
S S S S S S S SE 0.5 Hz ... 150 MHz J1 IC? IC? Q1 5 CF OCF 12 5 CF OCF 12 4 13 4 13 24MHz IC? VCC 14 CB OCB VCC 14 CB OCB C1 4 8 GND 11 CLR GND 11 CLR GND 22p XTALO T0 9 DIG1 VCC 15 LOAD 3 VCC 15 LOAD 3 T1 11 GND 1 A QA 2 GND 1 A QA 2 C2 5 P3.7 R? SEGE GND B QB GND B QB GND XTALI 220R GND 10 C QC 6 GND 10 C QC 6 22p AIN+ 12 R? GND 9 D QD 7 GND 9 D QD 7 AIN- 13 220R SEGD VCC 1 RST P1.2 14 74AC193 74HC193 P1.3 15 R? 220R SEGC DIG2 2 16 B DIG3 3 RXD P1.4 17 R? SEGB B DIG0 6 TXD P1.5 18 220R DIG4 7 INT0 P1.6 19 R? SEGA INT1 P1.7 220R R? 89C2051 220R SEGG VCC VCC VCC R? 220R SEGF R? SEGDP
in „Wo finde ich C - codeschnipsel“ · Mikrocontroller und Digitale Elektronik ·
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PDF
fmeter5.pdf
S S S S S S S SE 0.5 Hz ... 150 MHz J1 IC? IC? Q1 5 CF OCF 12 5 CF OCF 12 4 13 4 13 24MHz IC? VCC 14 CB OCB VCC 14 CB OCB C1 4 8 GND 11 CLR GND 11 CLR GND 22p XTALO T0 9 DIG1 VCC 15 LOAD 3 VCC 15 LOAD 3 T1 11 GND 1 A QA 2 GND 1 A QA 2 C2 5 P3.7 R? SEGE GND B QB GND B QB GND XTALI 220R GND 10 C QC 6 GND 10 C QC 6 22p AIN+ 12 R? GND 9 D QD 7 GND 9 D QD 7 AIN- 13 220R SEGD VCC 1 RST P1.2 14 74AC193 74HC193 P1.3 15 R? 220R SEGC DIG2 2 16 B DIG3 3 RXD P1.4 17 R? SEGB B DIG0 6 TXD P1.5 18 220R DIG4 7 INT0 P1.6 19 R? SEGA INT1 P1.7 220R R? 89C2051 220R SEGG VCC VCC VCC R? 220R SEGF R? SEGDP
in „prog. Temperatursteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Fmeter5.pdf
S S S S S S S SE 0.5 Hz ... 150 MHz J1 IC? IC? Q1 5 CF OCF 12 5 CF OCF 12 4 13 4 13 24MHz IC? VCC 14 CB OCB VCC 14 CB OCB C1 4 8 GND 11 CLR GND 11 CLR GND 22p XTALO T0 9 DIG1 VCC 15 LOAD 3 VCC 15 LOAD 3 T1 11 GND 1 A QA 2 GND 1 A QA 2 C2 5 P3.7 R? SEGE GND B QB GND B QB GND XTALI 220R GND 10 C QC 6 GND 10 C QC 6 22p AIN+ 12 R? GND 9 D QD 7 GND 9 D QD 7 AIN- 13 220R SEGD VCC 1 RST P1.2 14 74AC193 74HC193 P1.3 15 R? 220R SEGC DIG2 2 16 B DIG3 3 RXD P1.4 17 R? SEGB B DIG0 6 TXD P1.5 18 220R DIG4 7 INT0 P1.6 19 R? SEGA INT1 P1.7 220R R? 89C2051 220R SEGG VCC VCC VCC R? 220R SEGF R? SEGDP
in „Hilfe bei Assembler Program“ · Mikrocontroller und Digitale Elektronik ·