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TeileATxMega4.pdf
Menge Wert Package Bauteile 2 27p C0603 C102, C103 4 22p C0603 C21, C22, C69, C70 3 10n C0603 C61, C74, C83 1 220u ELKO‐ESR‐F C62 1 100n C1206 C63 14 100n C0603 C64, C67, C72, C73, C75, C76, C84, C85, C86, C87, C88, C89, C90, C101 3 3u3 ELKO‐B C65, C77, C91 1 100u ELKO‐D C66 1 3n3 C0603 C68 1 100p C0603
in „ATxMegaBoard 4“ · Markt ·
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HausAutoTest.pdf
QG 7B N 7C R B J 3 CAN_GND QH 7 8 8B G 8C 11 D4 R21 B R 2 U18 9 LED CAN_L 9 2 1 R 1 CAN_H QH R22 D5 74HC595 P1 1 2 3 4 GND 5 6 P8 CAN 1 3V3 CON2 U15 1ULN2803 2 MAX3378 MOSI0 14 15 1 18 3 1 VL VCC 14 9 DAT2 SER QA 1 2 1B M 1C 17 4 CS_SDKarte 2 13 1 Connect:SD_Card_Receptacle QB 2B C 2C 1 I/O_VL1 I/O_VCC1
in „AT32UC3C2 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HausAutoTest.pdf
QG 7B N 7C R B J 3 CAN_GND QH 7 8 8B G 8C 11 D4 R21 B R 2 U18 9 LED CAN_L 9 2 1 R 1 CAN_H QH R22 D5 74HC595 P1 1 2 3 4 GND 5 6 P8 CAN 1 3V3 CON2 U15 1ULN2803 2 MAX3378 MOSI0 14 15 1 18 3 1 VL VCC 14 9 DAT2 SER QA 1 2 1B M 1C 17 4 CS_SDKarte 2 13 1 Connect:SD_Card_Receptacle QB 2B C 2C 1 I/O_VL1 I/O_VCC1
in „AT32UC3C2 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HausAutoTest.pdf
CAN_GND QH 7 8 8B G 8C 11 10 D4 R27 B R 2 10k U18 9 11 LED CAN_L R18 9 2 1 R 1 CAN_H QH R28 GND D5 74HC595 P1 1 2 3 4 GND V 5 6 5 P7 CAN 1 5 0 3V3 CON1 U15 1ULN2803 2 R 1 MAX3378 MOSI0 14 15 1 18 3 1 VL VCC 14 9 DAT2 SER QA 1 2 1B M 1C 17 4 CS_SDKarte 2 13 1 Connect:SD_Card_Receptacle QB 2B C 2C 1 I/
in „AT32UC3C2 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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HausAutoTest.pdf
CAN_GND QH 7 8 8B G 8C 11 10 D4 R27 B R 2 10k U18 9 11 LED CAN_L R18 9 2 1 R 1 CAN_H QH R28 GND D5 74HC595 P1 1 2 3 4 GND V 5 6 5 P7 CAN 1 5 0 3V3 CON1 GND U15 1ULN2803 2 R 1 MAX3378 0 k MOSI0 14 15 1 18 3 1 VL VCC 14 9 DAT2 R 1 SER QA 1 2 1B M 1C 17 4 CS_SDKarte 2 13 1 Connect:SD_Card_Receptacle QB
in „AT32UC3C2 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HausAutoTest.pdf
CAN_GND QH 7 8 8B G 8C 11 3 D4 R27 B R 2 10k U18 9 2 LED CAN_L R18 9 1 2 1 R 1 CAN_H QH R28 P8 D5 74HC595 GND P1 1 2 3 4 GND V 5 6 5 CAN 5 0 3V3 CON1 GND U15 1ULN2803 11 R 1 MAX3378 0 k MOSI0 14 15 1 18 10 1 VL VCC 14 9 DAT2 R 1 SER QA 1 2 1B M 1C 17 9 CS_SDKarte 2 13 1 Connect:SD_Card_Receptacle QB
in „Layout prüfen“ · Platinen ·
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PDF
HausAutoTest.pdf
8C 11 3 D4 R27 B 6 CAN_GND QH 7 2 LED B J D 7 10k U18 9 2 1 HI CAN_H R18 9 1 S 8 CAN_L QH D5 P8 9 74HC595 GND P1 C40 1 2 C37 C39 GND 3 4 C38 GND GND GND V GND 100n 5 6 5 100n 100n 100n CAN 2 5 0 3V3 CON1 GND U15 1ULN2803 11 0 R 1 MAX3378 0 k MOSI0 14 15 1 18 10 1 2 1 VL VCC 14 9 DAT2 R 1 SER QA 1 2
in „Layout prüfen“ · Platinen ·
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PDF
Audi_SSP_175_-_OBD_II_1997_-_de.pdf
weiteren Verminderung der Abgaswerte werden können (z.B. Normen). (0,04 g/mi HC). NLEV (Non-Low Emission Vehicles) ZEV (Zero Emission Vehicles) Zulassungsstufe für Fahrzeuge, die die zur Zeit Zulassungsstufe für Fahrzeuge, die keine gültigen Anforderungen erfüllen (0,25 g/mi HC)
in „SRAM auslesen der von einer anderen CPU genutzt wird“ · Fahrzeugelektronik ·
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PDF
MAX187_MAX.pdf
BARRIER MUST BE ISOLATED POWER SCLK/INPUT CLOCK +5V 6N136 +5V 8 1 7 200 14 QH 3k 7 2 SER QG 6 6 3 74HC595 QF 5 11 SCK QE 4 10 F 5 4 QD 3 D11 (MSB) 74HC04 12 RCK QC 2 MAX187 6N136 1 D10 0.1 F 1 3 8 1 10 QB 15 D9 VDD SHDN 200 74HC04 SCLR QA 16 D8 2 AIN CS 7 3k 7 2 +5V 4 8 6 3 13 8 ANALOG REF SCLK 5 4 0.1 F INPUT 4.7 F 5 GND DOUT 6 470 9 6N136 QH′ QH 7 D7 1 8 14 SER QG 6 D6 2 7 74HC595 QF 5 D5 SIGNAL 8.2k 11 QE 4 GROUND 3 6 SCK 3 D4 4 5 12 QD 2 D3 RCK QC 1 D2 10 QB 15 D1 +5V SCLR QA D0(LSB) 16 +5V 13 8 0.1 F Figure 16. 12-Bit Isolated ADC 16 ___________________________________
in „AD-Wandler mittels Optokoppler anbinden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
3B036723d01.pdf
6 MC68HRev. 3D 0 6 H C 0 5 MC68HC05B4 H C MC68HC705B5 D MC68HC05B6 A MC68HC05B8 MC68HC05B16 MC68HC705B16 MC68HC05B32 MC68HC705B32 T A DATANICAL INTRODUCTI1N MODES OF OPERATION AND PIN D2SCRIPTIONS MEMORY AND REGIS3ERS INPUT/OUTPUT P4RTS
in „unbekanntes Touchpad, wie anschliessen und verwenden?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTC1864.pdf
74AC74 74AC86 U6 U7 C18 PRE Q 74HC163AD 74HC163AD 5V DIG 0.1μF D 1 RESET 16 1 RESET 16 2 VCC 15 2 VCC 15 U10 vCLK 3 CLK RCO 14 3 CLK RCO 14 LTC1799 CLR Q P0 Q0 P0 Q0 4 P1 Q1 13 4 P1 Q1 13 100k 1 V+ 5 5V 5 12 5 12 2 OUT DIG 6 P2 Q2 11 6 P2 Q2 11 3 GND 4 74AC74 7 P3 Q3 10 7 P3 Q3 10 SET DIV ENP ENT ENP ENT PRE Q 8 GND LO 9 8 GND LO 9 D U13C vCLK 74AC32 CLR Q CLK 18645 AI2 U13B 74AC32 Figure 6. LTC1864 Manchester Transmitter 18645fb 18 LTC1864/LTC1865 APPLICATIONS
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ADC_LTC1865.pdf
74AC74 74AC86 U6 U7 C18 PRE Q 74HC163AD 74HC163AD 5V DIG 0.1μF D 1 RESET 16 1 RESET 16 2 VCC 15 2 VCC 15 U10 vCLK 3 CLK RCO 14 3 CLK RCO 14 LTC1799 CLR Q P0 Q0 P0 Q0 4 P1 Q1 13 4 P1 Q1 13 100k 1 V+ 5 5V 5 12 5 12 2 OUT DIG 6 P2 Q2 11 6 P2 Q2 11 3 GND 4 74AC74 7 P3 Q3 10 7 P3 Q3 10 SET DIV ENP ENT ENP ENT PRE Q 8 GND LO 9 8 GND LO 9 D U13C vCLK 74AC32 CLR Q CLK 18645 AI2 U13B 74AC32 Figure 6. LTC1864 Manchester Transmitter 18645fb 18 LTC1864/LTC1865 APPLICATIONS
in „LTC1865 Halber Messbereich“ · Mikrocontroller und Digitale Elektronik ·
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Display_2_sch.pdf
S1 Reset V 3 1 + 4 2 k 3 1 7 1 2 1A 1Y 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
in „Grafikfähiger LCD Controller für 320x240 LCD mit 4 Graustufen“ · Projekte & Code ·
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Datei
main.c
bit counter f_ref */ uint16_t w[1]; uint8_t b[3]; } nref; volatile union { /* 48 bit result */ uint32_t q[1]; uint8_t b[6]; } res; uint32_t fref; /* reference frequency */ uint8_t jumpers; /* jumper settings */ #define BUFSIZE 10 char buffer[BUFSIZE]; /* display buffer */ /* constants in EEPROM */ EEMEM
in „Frequenzzähler 1Hz - 40MHz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HausAutoTest1808.pdf
8C 11 3 D4 R27 B 6 CAN_GND QH 7 2 LED B J D 7 10k U18 9 2 1 HI CAN_H R18 9 1 S 8 CAN_L QH D5 P8 9 74HC595 GND P1 C40 1 2 C37 C39 GND 3 4 C38 GND GND GND V GND 100n 5 6 5 100n 100n 100n CAN 2 5 0 3V3 CON1 GND U15 1ULN2803 11 0 R 1 MAX3378 0 k MOSI0 14 15 1 18 10 1 2 1 VL VCC 14 9 DAT2 R 1 SER QA 1 2
in „Layout prüfen“ · Platinen ·
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PDF
AVR_Stamp_V1_0_sheet.pdf
PC1 PA2 34 A3 A3 5 3D 3Q 16 A11 B D4 12 12 A9 A6 D3 22 PC2 PA3 33 A4 A4 6 4D 4Q 15 A12 D5 13 13 A10 74HC00D D4 PC3 PA4 A5 A5 5D 5Q A13 D6 14 14 A11 23 PC4 PA5 32 7 6D 6Q 14 D7 15 15 A12 2 D5 24 PC5 PA6 31 A6 A6 8 7D 7Q 13 A14 A13 3 D6 25 PC6 PA7 30 A7 A7 9 8D 8Q 12 A15 16 16 1 D7 26 17 17 A14 IC2A PC7
in „Z180-Stamp Modul“ · Mikrocontroller und Digitale Elektronik ·
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ccba_lago_0321_gb.pdf
Expert - Electrical connections . . . . 14 Safety. . . . . . . . . . . . . . . . . . . . . . . . . . . (HC1)/ Define application. . . . . . . . . . . . . . . . . 14 13 Operating mode mixer circuit (HC2) . . . . 9 Controller rear side. . . . . . . . . . . . . . . . 16 Table of contents . . . . . . . . . . .
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Datei
partlist.txt
SCDA5A0201 SCDA5A0201 SCDA5A0201 (20.6375 30.48) R0 IC1 ATmega88-20P DIL28-3 atmel (37.465 50.165) R270 IC2 74S08D SO14 74xx-eu (18.0975 18.7325) MR90 IC3 FT232RL SSOP28 ftdichip (44.7675 21.59) R180 IC4 ATmega88-20P DIL28-3 atmel (20.32 99.695) R0 IC7 74AC08D SO14 74xx-eu (24.13 113.3475) R270 IC8 LF50CDT DPACK v-reg (36.195 116.84) MR0 IC9 LF33CDT DPACK v-reg (53.34 104.4575) MR0 IC10 74HC166D SO16 74xx-eu (13.6525 112.7125) R90 J1 DCJ0202 DCJ0202 con-jack (58.1025 128.905) R180 JP1 Power Switch JP2 jumper (58.7375 12.7) R270 JP2 Clock Switch JP2 jumper (26.035 46.0375) R90 JP3 TTL JP4
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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99geraete.txt
183 DT970 3.75 TSC820 TL062 TL062 TL062 CD4093 2-39b 29 183 DT970xx 3.75 TSC820 TL062 TL062 TL062 74HC14 2-40a 30 187 DT930F 4.5 ICL7129 ICM7556 TL062 ICM7555 CD4011 TL062 ICL8069 2-40b 31 187 DT930G 4.5 ICL7129 TL062 TL062 CD4011 ICM7556 ICL8069 LM358 2-40c 32 187 DT930F+ 4.5 ICL7129 LM358 TL062 CD4011
in „Suche Schaltplan / Bed-Anleitung Mastech M840D DMM gute Qualität“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX4617-MAX4619.pdf
three single-pole/double-throw (SPDT) 4 switches (MAX4619). Pin Compatible with Industry-Standard 6 74HC4051/74HC4052/74HC4053 and 1 These CMOS devices can operate continuously with a MAX4581/MAX4582/MAX4583 +2V to +5.5V single supply. Each switch can handle Guaranteed On-Resistance 7 Rail-to-Rail® analog
in „CMOS analog multiplexer MAX4619“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TIA-EIA-485.pdf
0.001 F, 100 V, 10% U3 IC, TIL126 Optocoupler/Isolator C5, C7 Capacitor, 100 F, 100 V, 10% U5 IC, SN74HC132N, Quadruple Positive NAND Gate C8 Capacitor, 100 F, 50 V, 10% VR1 Regulator, Voltage, UA78M05CKC, 5 V, Positive NOTES: A. The line-matching resistor, R ,Tis used only at the ends of the cable. Terminated
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PDF
TEKTRONIX_Component_Service_Manual_TDS_520B_Mod_CM_Digitizing_Oscilloscope_070-9710-03.pdf
N74F245D 45,SO20.300,24MMT&R A11U84 156–5054–01 IC,DIGITAL:FTTL,GATE,QUAD 2–INPUT 01295 SN74F32DR OR,74F32,SO14.150,16MMT&R A11U100 156–5054–01 IC,DIGITAL:FTTL,GATE,QUAD 2–INPUT 01295 SN74F32DR OR,74F32,
in „Tektronix TDS744A Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PA100D.pdf
I6 O6 15 QG 7 8 I7 O7 13 2 20m QH 9 I8 O8 12 3 17m/15m B 13 9 VS GND 4 12m/10m B G QH* A2982SLW 6m 74HC595D 1 RLY5-8 RN2 10k GND JP5 1 C 2 3 4 5 6 7 8 9 IC8 2 OPER/STBY V 14 SER QA 15 1 I1 O1 20 3 ANT1 QB 1 2 I2 O2 19 4 ANT2 11 SCK QC 2 3 I3 O3 18 10 SCL QD 3 4 I4 O4 17 RLY9-12 7 QE 4 5 I5 O5 16 D14
in „Schutzbeschaltung Analog-Eingänge / Durchsicht Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
217369.pdf
.500 .500 1.07 .634 .634 .114 822472-4 6240 3-822472-4 44mm 2100 - 25.74 25.74 15.24 15.24 30.78 18.64 18.64 2.75 5 8 52 1.01 1.01 .600 .600 1.21 .734 .734 .108 822472-5 3220 3-822472-5 44mm 2100 S 0 30.82 30.82 20.32 20.32 37.98 23.72 23.72 2.90 o 9 68 1.21 1.21 .800 .800
in „Kühlkörper TO3 Befestigungslöcher zu groß?“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
488161_1_.pdf
´74, Morris Marina 1.3 1974 - 1977, Morris 1.3 HC 1975 - 78 4 41410 Austin 850 LC 1970 bis 73, Mini 1000 Automatic, 850 Kombi und Pritsche, Morris Marina 1.8 GT und HL 1976 - 78 B 41411 Mini 850 5 41412
in „Funktionsweise von analogen elektronischen Drehzahlmessern?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
GL9540_ServiceManual.pdf
D Prlnted CfrcuLÈ Board S 2 200-30165 IC Dlgftal u4,u5 t4c3447P s 2 200-25 851 IC Dtgtral u10,ut3 74HC373N s 1 200-25 801 IC Dfgttal ull 74rrc365N S I 200-25362 IC Dfgital u14 74HC00N S I 200-25086 IC Dtgttal ul6 cD4001BcN NatLonal S 2 200-25L97 IC Digltal ul7,U18 74HC4024N S I 200-25]-52 IC Dtgftal
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PDF
catalog.pdf
0.63mcd; 3mm; T-1; 7mA; 1.9V; 565nm; 25deg; GaP on GaP; 20V; 20mW; -40 Latches and Flip Flops MPN: 74HC573D [ID]: 000135 [Price]: 0.34 USD [QTY]: 3 Page 46/87 Bauteileliste vom 12.08.2022 [Category]: Latches and Flip Flops [Desc]: Latch Transparent 3-ST 8-CH D-Type 20-Pin SOIC Logic Gates MPN: SN74LVC1G32QDBVRQ1
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PDF
catalog.pdf
0.63mcd; 3mm; T-1; 7mA; 1.9V; 565nm; 25deg; GaP on GaP; 20V; 20mW; -40 Latches and Flip Flops MPN: 74HC573D [ID]: 000135 [Price]: 0.34 USD [QTY]: 3 [Category]: Latches and Flip Flops [Desc]: Latch Transparent 3-ST 8-CH D-Type 20-Pin SOIC Logic Gates MPN: SN74LVC1G32QDBVRQ1 [ID]: 000041 [Price]: 0.16
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z80_peripherie.sch.pdf
pwr 0 sup 0 N C a a a G PA[0..7],PB[0..7],PC[0..7] V IC1 p p p p s SV4 D0 io 08 D0 CLK0 9 in 0 PB4 74HC165N 3 pas 1 D1 io 07 11 in 0 PA4 0 74HC151N 1 in 0 5V 27 2 pas 1 io 06 D1 GATE0 10 out 0 p 7 in 0 SH/LD 15 in 0 C A PIO7 26 D2 D2 OUT0 PIO6 6 G PA0 INH C LED8 A 1 pas 1 D0 D3 io 05 D3 1 C C 9 in 0
in „Retro Fieber: Z80 oder 68000 ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
catalog-3.pdf
0.63mcd; 3mm; T-1; 7mA; 1.9V; 565nm; 25deg; GaP on GaP; 20V; 20mW; -40 Latches and Flip Flops MPN: 74HC573D [ID]: 000135 [Price]: 0.4685 USD [QTY]: 3 [Category]: Latches and Flip Flops [Desc]: Latch Transparent 3-ST 8-CH D-Type 20-Pin SOIC Logic Gates MPN: SN74LVC1G32QDBVRQ1 [ID]: 000041 [Price]: 0.2205
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Disp14SegSch.pdf
1 2 3 4 5 6 7 8 VCC VCC IC1 74HC595 VCC 16 IC2 74HC240 8 VCC 15 2 18 RN1D DDAT 14 QA 1 4 1A1 1Y1 16 10K T7 DCLK 11 SI QB 2 6 1A2 1Y2 14 BLANK V9P06 DSTB 12 CLK QC 3 8 1A3 1Y3 12 7 9 STB QD 4 11 1A4 1Y4 9 SO QE 2A1 2Y1 13 OE QF 5 13
in „Achtung, Newbie, LED-Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Schaltplan mit Logikgatter und Pegelwandler
SW1, VCC-5V, R36, 10k, C19, 60pF, OUT-TO-SC1, U7, 74HC14D, VCC, 1Y, 2Y, 3Y, 4Y, 5Y, 6Y, GND, 1A, 2A, 3A, 4A, 5A, 6A, VCC-3.3, R37, 10k, C22, 10uF, TXB0104D, OE, GND, B4, B3, B2, B1, VCCB, VCCA, U8, A1, A2, A3, A4, ESP32_OUT_MC, ESP32_OUT_SC, ESP32_IN_MC, ESP32_IN_SC, C20, 100nF, C21, 100nF, IN-FROM-MC1, R35, 10k, C18, 60pF
in „Schmitt-Trigger 74HC14 mit Level Shifter“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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Datei
Endprogramm.bas
Gc Do Ledaus Portc.3 = 0 Waitms 2 Portc.3 = 1 Ledein Waitms 2 Bc = Bc - 1 Loop Until Bc < 1 Rechts Hc = Cos(fc) Hc = Hc * 10 Dc = Hc Do Ledaus Portc.2 = 0 Waitms 2 Portc.2 = 1 Ledein Waitms 2 Dc = Dc - 1 Loop Until Dc < 1 Next Ac Runter Ic = 20 Motorlinks For Ac = 1 To 16 Step 1 Fc = Ac / 10 Runter Gc
in „Programmierung mit Bascom“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S1L50282F23K200.pdf
CONTROLLER FOR TFT COLOR LCD MODULE S1L50282F23K200 Adaptable LCD Modules Type: NL2432DR22-xxB Type: NL2432HC22-xxA Type: NL2432HC22-xxB SPECIFICATIONS (1st edition) Signature of writer Approved by Date T. ITO Feb. 1, 2005 Checked by Date Prepared by Date R. KAWASHIMA Feb. 1, 2005 Published by Product Design
in „LCD Timing-Controller gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lbo-5880_LEADER_anleitung.pdf
dOnoiy lctO \ 5880ht he mcrsbus PSTB 1 p y. PDB0 2 Nonw dtasrnslied O le rner wtL PDB l 3 p eht lgal PD32 4 shgl. 4 GND PDB3 5 () : sgnlgoud vl PDB4 () NCi NOtud 6 PDB5 7 Nott PHnrP K (cnowcg )s t lcdor hcLBO880 PDB6 8 PDB7 9 NC 10 BU SY 1 NC 1 NC 13 GND 14 - 7 - 9.0 REMO E Ades Rm teCotOl ( ) dªWih _ scO
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PDF
lbo-5880_LEADER_anleitung.pdf
dOnoiy lctO \ 5880ht he mcrsbus PSTB 1 p y. PDB0 2 Nonw dtasrnslied O le rner wtL PDB l 3 p eht lgal PD32 4 shgl. 4 GND PDB3 5 () : sgnlgoud vl PDB4 () NCi NOtud 6 PDB5 7 Nott PHnrP K (cnowcg )s t lcdor hcLBO880 PDB6 8 PDB7 9 NC 10 BU SY 1 NC 1 NC 13 GND 14 - 7 - 9.0 REMO E Ades Rm teCotOl ( ) dªWih _ scO
in „Problem Oszilloskop-Bedienung“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
DeviceList.txt
AT28C64B AT28HC64B AT28BC64B AT28PC64B AT28C64BL AT28C64E AT28C64F AT28C64X AT28C256 AT28HC256 AT28C512 AT28C010 AT28MC010 AT28MC010(P32) AT28MC010(T32) AT28C020 AT28C020(P32) AT28C020(T32) AT28MC020 AT28MC020(P32)
in „[V] Genius G540 EPROM/Flash/uC Programmer (USB)“ · Markt ·
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PDF
Grundig-DVDP-7000-Service-Manual.pdf
AOL_O 10 Control D502 9 16 3 L504 FB300 CVBS/Y_O_J AOR_O 0(0805)/RLS4AR_I Y2 17 2 VIDEO_IN/OUT VDD 74HC02 Y1 18 1 CVBS D503 R434 SW SLIDE-6P2T 0(0805)/RLS4148 10K AOL_O AL_I If AV_SW=High,Then Input=AV_IN U501D If AV_SW=Low,Then Input=PLAYER 11 Speaker_Control 13 HP_IN3 VDD 12 HP_IN3 VDD 74HC02 J506
in „800x480-Farbdisplay mit uC verwenden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Cal-Adapter.pdf
C10 1 D IC1P D 100 S 8V CA ADAPTER X10 12 350 7847 02 X10 5 G D R13 X10 10 X10 1 1 5V D6 X10 2 BAS32 10E 5DX2 RE AY 10C 2 10D 6 3 7 12 13 9 10 5 IC1 3 Q1 G D G D Q0 BSS138 Q1 2 Q2 4 X10 6 Q3 7 Q4 10 6 0 D11 14 C Q5 1 R20 D 5V6 Q6 5 G D Q7 6 R12 Q8 9 X10 9 1 13 E A Q9 11 5V G D 15 12 D7 X10 7 RES C BAS32 1 10A 111 74HC4017 1DX2 RE AY 4 X10 8 R17 1 Q2 BSS138 G D X10 3 5V D8 BAS32 11E 5DX2 RE AY 2 6 11C 11D 12 13 9 10 3 7 G D G D Q3 G D BSS138 R15 X 470 0 1% 2 X R14 470 0 1% 5V G D D9 X BAS32 56 1% 1 1 11A X 1DX2 RE
in „Rohde & Schwarz URY mit Fehlermeldung "FLT" im Display“ · HF, Funk und Felder ·
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Datei
Endprogramm.bas
Gc Do Ledaus Portc.3 = 0 Waitms 2 Portc.3 = 1 Ledein Waitms 2 Bc = Bc - 1 Loop Until Bc < 1 Rechts Hc = Cos(fc) Hc = Hc * 10 Dc = Hc Do Ledaus Portc.2 = 0 Waitms 2 Portc.2 = 1 Ledein Waitms 2 Dc = Dc - 1 Loop Until Dc < 1 Next Ac Runter Ic = 20 Motorlinks For Ac = 1 To 16 Step 1 Fc = Ac / 10 Runter Gc
in „Programmierung mit Bascom“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS1000Z_Analog.pdf
PIQ2001 PIQ17PIR63PIR630P1IQ2101 PIQ180PPIR6402 P I U 3 0 2 P I U 3 PIR33023014 U1A R58COR36 R59 COR32 0 3 TLC274IPWR 165Ω 13 100Ω 13 665Ω Q2 200Ω 2 0 Q2 Q0 2 PIR320PIC020OFFSET_CH1R46U304R35 COC23 1 CR722 R73 R74 R75 R76 R77 30.1KΩ 196KΩ 2.77V 02 PIQ1101 PIQ1201 100Ω 100Ω 28.7Ω28.7Ω 22.1Ω 22.1Ω COC12
in „Analogverstärker für Mikrocontroller Oszilloskop“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
pt1000-v1.1.pdf
SCK QC 3 PT4EN SCL QD 4 PT3EN +3V12 QE 5 PT2EN PTCS RCK QF 6 PT1EN QG 7 PT0EN QH D 13 9 N G QH* G 74HC595D 05.04.16 20:11 /home/georg/pt1000/pt1000.sch (Sheet: 1/6) 10k RESET +3V3 R15 4 7 D C 4 N MEGA8-AI ATMega328p G 29 PC6(/RESET) PC0(ADC0) 23 ADC5 0 PC1(ADC1) 24 ADC4 3 N C 1 21 GND PC2(ADC2) 25 ADC3
in „8x Temperaturanzeige mit LCD, SD-Datenlogger und RTC“ · Projekte & Code ·
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Control_S03_Sch_4011.pdf
H H L High GND 100n 2R5 L 11 Off PDTA143ZT,215 4k7+47k 50V 0,1A hfe100 0,9Von 0,6Voff 250mW Ali 2,74€/50 Nexperia HEF4093BE=ST, CD4011, (5V SN7400, 74HC132=ST) Ein-NC Reset H 1 14IC1A 4 N13D T60+25cm Low T14+25cm 3-18V 3L T2 H Tab1 KABELQ2_VDE0100 S1 S2 2 1 NAND BC546B CD4011BE S3 Kabelquerschnitte
in „Laufzeitbegrenzung für 12V Pumpe mit Akku, Solarmodul, Step-Up, Zeitschaltuhrbetrieb LED-Anzeige MPP“ · Projekte & Code ·
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69034fe-6.pdf
< TRIGGERPULSEWIDTH<OUTPUTPULSEWIDTH CLK 4 TRIG 2 D PS Q 5 V+ 3 U4 6 C2 CLK R Q 0.1µF 1 1 GND V+ 8 74HC74-A PHILIPS SEMICONDUCTOR C1, 0.1µF 2 7 SDI SDI U6 OE V+ + LTC6903 16 V 3 6 10 9 C3 SCK SCK CLK CLK Q1 7 0.1µF OUTPUT 2n fCLK Q2 PULSE = f 4 5 Q3 6 WIDTH CLK SEN SEN CLK Q4 5 16 10 3 4 6 12 D PS Q
in „I2C Deadlock beim Senden - LTC6904“ · Mikrocontroller und Digitale Elektronik ·
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asus-p701-unlocked.pdf
H_D#33 [15] H_PWRGD E4 PWRGOOD GTLREF[3] AC1 H_GTLREF2 1 HR10 0Ohm H_D#0 A25 D[1]# D[33]# AA24 H_D#32 1 VR_VID5 GTLREF[2] G1 H_GTLREF1 1 2 H_DPRSTP# [15] A19 D[0]# D[32]# Y26 HC3 H4 VID[5] GTLREF[1] E26 1 /X H_DINV#0 D25 DINV[0]# DINV[2]# T24 H_DINV#2 0.1UF/16V VR_VID4 G4 VID[4] GTLREF[0] AD26 H_GTLREF
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96055.pdf
.Output = Chr$(32) ' >> Bit Nummer binär kodiert MSComm1.Output = Chr$(ETX) Seite 79 Anhang Quellcodes If b6 = 2 Then cmdbit6.BackColor = &H80FF80 'bit gesetzt b6 = 0 End If If b6 = 1 Then cmdbit6.BackColor = &HC0C0C0
in „[V] Roboterarm 360Grad drehung 4Achsen komplett“ · Markt ·
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LCD_SCH.pdf
9 8 5 VD2 6 6 103 103 R25 B 4 VD1 7 7 102 102 R26 4 3 2 1 0 9 8U7 3 VD0 8 8 101 101 10K 1 1 1 1 1 74HC08 2 GND 9 100 GND 10K 1 10 GND GND 99 R28 11 10 99 98 R29 40PIN 12 11 98 97 P1.3 10K 1 2 3 4 5 6 7 12 97 10K 13 13 96 96 1 2 3 4 5 6 7 R20 +3.3V 14 VCCO3 VCCO1 95 +3.3V 15 15 VCCINT 94 +1.2V R44 L5
in „[V]erkaufe diverse sachen“ · Markt ·
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ADT7301_-__1_C_Accurate__13_Bit__Digital_Temperature_Sensor__ADT7301.pdf
ADT7301 TemperatureConversionEquations TEMPERATUREVALUEREGISTER Positive Temperature = ADC Code(d)/32 The temperature value register is a 14-bit read-only register that stores the temperature reading from the ADC in 13-bit twos Negative Temperature = (ADC Code(d) −16384)/32 complement format plus a sign
in „Implementierung eines ADT7301 an einem MSP430FR5729“ · Mikrocontroller und Digitale Elektronik ·
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DS3232M_RTC_Board_R1.pdf
1 2 3 4 DS323M RTC BOARD D D 3V3 3V3R U2 VCC 3V3 JP1 2 3 TP2 32KHZ VoutVin 1 TP4 REGEN C3 C5 Vss C4 32kHz 10uF, 16V R6 R1 3.3V 1u MCP1700 1u 100R0 1K R2 (CSNN) U1 100K GND GND GND GND J1 3V3 DS3232M C1 2 3 INTSQWDR RST- 1 SPARE GND Vcc INT/SQW 2 RESET 0u1 32KHZ 3 32KHZ RST 4 RST- INTSQW 4 INTSQW GND 5 GND R4 5 +5V 100R0 SDA TP1 1 8 R5 SCL 6 SDA CURR 32KHz SCL 7 7 SCL C B1 SDA 100R0 8 GND C TP3 2 3 2 3 6 Vbat GND HEADER 6 RTC+ R10 Q1 R11 Q3 BR1225-1HC C2 R7 JP3 0u1
in „RTC DS3231 - Temperatur Daten?“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan mit 74HC4067 Multiplexer und Takt-Tastern
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