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DE-DP004_Ver1.0_EN.pdf
Data Drive U3 74HC595 U4 ULN2003 +5V 10 15 7 10 R1 331 A0 16 SCLR QA 1 6 7B 7C 11 R2 331 A1 VCC QB 2 5 6B 6C 12 R3 331 A2 8 QC 3 4 5B 5C 13 R4 331 A3 GND QD 4 3 4B 4C 14 R5 331 A4 DIMM_OUT 13 QE 5 2 3B 3C 15 R6 331 A5
in „! Vorsicht NEWB 7-Segmentanzeigen via PC ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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hct541.pdf
125 C o Symbol Parameter VCC Unit (V) 54HC and 74HC 74HC 54HC Min. Typ. Max. Min. Max. Min. Max. V IH High Level Input 4.5 2.0 2.0 2.0 V Voltage to 5.5 V IL Low Level Input 4.5 0.8 0.8 0.8 V Voltage to 5.5 VOH High Level VI= IO=-20 A 4.4 4.5
in „High Voltage Programmer“ · Mikrocontroller und Digitale Elektronik ·
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flipdot_neu_Register.pdf
a 5x3 Dots 5 + 74HC574D 1 OC 1 74HC221D R 4075D 13 11 15 10 12 CLK 4 R/C 14 11 12 9 Q C C1 8Q 8D IC1C 13 7Q 7D 8 R 3 4075D 5 14 6Q 6D 7 6 4 15 5Q 5D 6 13 Q B 2 3 16 5 1 4075D 8 IC1B 17 4Q 4D 4 A 9 2 18 3Q 3D 3 IC10A 1
in „Flipdot Display Projekt (Hilfe Logik Erbeten)“ · Mikrocontroller und Digitale Elektronik ·
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Schieberegister_SN74HC595_Datenblatt.pdf
connection ORDERING INFORMATION † ORDERABLE TOP-SIDE TA PACKAGE PART NUMBER MARKING PDIP − N Tube of 25 SN74HC595N SN74HC595N Tube of 40 SN74HC595D SOIC − D Reel of 2500 SN74HC595DR HC595 Reel of 250 SN74HC595DT −40°C to 85°C Tube of 40 SN74HC595DW SOIC − DW Reel of 2000 SN74HC595DWR HC595 SOP − NS Reel of 2000 SN74HC595NSR HC595 SSOP − DB Reel of 2000 SN74HC595DBR HC595 CDIP − J Tube of 25 SNJ54HC595J SNJ54HC595J −55°C to 125°CCFP − W Tube of 150 SNJ54HC595W SNJ54HC595W LCCC − FK Tube of 55 SNJ54HC595FK SNJ54HC595FK
in „Auswahl Schalterarray“ · Mikrocontroller und Digitale Elektronik ·
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Schaltpläne einer CAN Bus Arbitrationslogik
Figure 2. CAN Bus Arbitration Logic Circuit TX1 U2 SN74HC32 1 2 VF1 U3 SN74HC32 1 3 2 U11 SN74HC04 2 1 RX2 U7 SN74HC04 1 2 U5 SN74HC08 1 2 VF3 U9 500k 220n Delay Line 210ns U14 SN74HC08 1 2 U8 SN74HC04 1 2 Delay Line 210ns U13 SN74HC32 1 3 2 U10 SN74HC32
in „Funktionsweise CAN <-> LWL <-> CAN“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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74HC_HCT138_CNV_2.pdf
INTEGRATED CIRCUITS DATA SHEET For a complete data sheet, please also download: • The IC06 74HC/HCT/HCU/HCMOS Logic Family Specifications • The IC06 74HC/HCT/HCU/HCMOS Logic Package Information • The IC06 74HC/HCT/HCU/HCMOS Logic Package Outlines 74HC/HCT138 3-to-8 line decoder/demultiplexer;
in „Steckkontakt“ · Mikrocontroller und Digitale Elektronik ·
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M74HC04B1.pdf
PLH ≅ PHL ORDER CODES ■ WIDE OPERATING VOLTAGE RANGE: PACKAGE TUBE T & R VCC (OPR) = 2V to 6V DIP M74HC04B1R ■ PIN AND FUNCTION COMPATIBLE WITH SOP M74HC04M1R M74HC04RM13TR 74 SERIES 04 TSSOP M74HC04TTR DESCRIPTION The M74HC04 is an high speed CMOS HEX All inputs are equipped with protection circuits
in „RC-Oszillator mit 74HC04 spinnt“ · Analoge Elektronik und Schaltungstechnik ·
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Vacuumierer_2021_01_07.pdf
0,01uF Q10 F 1 x x 13 9 x x 5 BC337 2 F A e e Q A e e Q 3 2 B C R 10 B C R C12 GND GND 0,01uF 3 11 CLR CLR U7A Q 4 Q 12 +12V 74HC14 GND GND GND U7D U7E U1A U1B GND 74HC14 74HC14 1 2 74LS221 74LS221 R6 220k R? C5
in „Vakuumiermaschine Platine - Funktion?“ · Analoge Elektronik und Schaltungstechnik ·
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ESP8266-12-Breakout_07.pdf
GND 0 0 2 0 0 3 0 0 0 0 6 1 1 1 1 1 2 1 1 1 7 1 8 1 9 1 R M R M R M R M IC4B R M R M R M R M IC4C 11 10 9 8 C2TX _ RES_EXT 74HC14D X 74HC14D IC4E 9 IC2C IC3 R IC1E 3 4 10 8 R10 14 12 3 4 C1TX 11 X X0 13 I2SO_DATA IC4F 3 IC2B IC4D 1K0 X1 TCK_MOSI_13 5 6 4 6 1 2 1 74HIC2A IC1F 74AC27D 15 2 74HC14D C1RTS 5 RST RX_EXT 2 12 5 6 C2RXD Y Y0 1 TX0_1 Y1 BS2_TDO_SS_15 IC1B14D 74AC27D IC1A14D 13 74AC27D 74HC14D 4 Z Z0 5 C3RTS 11 10 C2DTR 13 12 Z1 3 74HC14D 74HC14DGND JP1 INH 6 COM1.TXD> C1TX 1 2 TX0_1 >COM1.RXD A 11 COM1.GND GND 3 4 C1RTS <COM1.RTS B 10 COM1.DTR> C1DTR 5 6 C2TX
in „ESP8266 Breakout, 4 x VCOM, JTAG-Debugger“ · Mikrocontroller und Digitale Elektronik ·
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TI74HC244.pdf
SN54HC244, SN74HC244 OCTAL BUFFERS AND LINE DRIVERS WITH 3-STATE OUTPUTS SCLS130B – DECEMBER 1982 – REVISED MAY 1997 SN54HC244 . . . J OR W PACKAGE D 3-State Outputs Drive Bus Lines or Buffer SN74HC244 . .
in „SN74HCT244?“ · Mikrocontroller und Digitale Elektronik ·
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datasheet_5_.pdf
INTEGRATED CIRCUITS DATA SHEET For a complete data sheet, please also download: • The IC06 74HC/HCT/HCU/HCMOS Logic Family Specifications • The IC06 74HC/HCT/HCU/HCMOS Logic Package Information • The IC06 74HC/HCT/HCU/HCMOS Logic Package Outlines 74HC/HCT195 4-bit parallel access shift register
in „74hct195 an rs232“ · Mikrocontroller und Digitale Elektronik ·
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elektronische_Bauelemente.pdf
6 RS422-Interface-IC DS26C32ATN 5 Flip-Flop MM74HC74AN 12 2kbit-TTL-Prom N82S130N 10 12bit A-D-converter ADDAC80N-CBI-V 5 C-Mos 74LV04N 6 1K-Bit TTL Bipolar PROM N82S129AN 6 Leitungsempfänger RS232 SN75189AN 10 Operationsverstärker LM258N 10 analoger
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EPROM Emulator NG Leiterplatte
MyGeekyHobby.com "EPROM EMULATOR NG" HW v2.2d - Jun 2022 span hardware Power RUN Load D3 Green D2 Red SW1 U6 74HC595 U7 74HC595 C3 C4 U11 74HC595 RH3 10K U10 74HC595 RH2 10K U3 74HC08 C2 U9 74HC541 RH1 10K R2 1k R8 10k M1 U2 74HC00 R3 10k R1 1k K Q1 AT48 33719028 V66 250611 U1 74HC00 Q2 2N4403 C5 22uF Q3 2N4401
in „Platine Eprom Emulator“ · Markt · · Platinenfotos
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Wohnraumuhr2_Rev1.2.pdf
n c B19 R121 13 d km n c ENA 13 G QH* 9 B4 R106 10 e B20 R122 10 e B5 9 f B21 9 f 74HC595N B6 R107 8 g B22 R123 8 g B7 R108 4 h u p B23 R124 4 h u p B8 R109 3 k B24 R125 3 k 14 15 B8 B9 R110 2 m g t r d B25 R126 2 m g t r d B SER QA R111 R127 B QB 1
in „wohnraumuhr 2 - leiterplatte nach projekt scott huehn“ · Mikrocontroller und Digitale Elektronik ·
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74.pdf
1 2 3 4 U1 +5 AL41 A VCC 16 U2A AL52 B 2 AL63 15 008 3 C Y0 14 1 008 6 Y1 13 A14 4 OE1 Y2 12 MC74HC00AD A A155 OE2A Y3 11 4 U2B A OE2B Y4 Y5 10 6 Y6 9 5 8 GND Y7 7 LCD6 MC74HC00AD M74HC238B1R GND GND U5 U6 +5 3 16 10 GND 2 CLK VCC rosa 1 SI 9 D0 9 D8 Q8 12 AL0 STB QS D1 8 D7 Q7 13 AL1 15 OE Q'S 10
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Debounce.pdf
Key Debounce IC9A IC12A KEY-STATE 1 4 5 KEY-STATE =1 3 2 PR Q R1 IC2A 2 3 D 1 IC6A IC10A 1 CLK 6 IC1A =1 3 1 IC8A 74HC86 1 CL Q & & 1 2 2 3 1 & 3 74HC74 2 3 2 2 74HC04 74HC86 2 IC11A IC13A S1 74HC08 74HC08 1 1 4 PR Q 5 KEY-PRESS 74HC08 3 2 D KEY-PRESS 2 3 CLK 1 1 CL Q 6 74HC32 74HC74 READ-KEY-PRESS IC3A IC14A 1 IC5A 4 5 KEY-CT0 & 3 1 2 2 PR Q KEY-CT0 2 3 D 1 CLK 6 74HC08 74HC04 CL Q 74HC74 IC7A IC15A IC4A 1 =1 4 PR Q 5 KEY-CT1 1 & 3 2 D 3 2 3 CLK KEY-CT1 2 100Hz 1 CL Q 6 74HC86 74HC08 74HC74 Peter Dannegger
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Debounce-1.pdf
Key Debounce IC9A IC12A KEY-STATE 1 4 5 KEY-STATE =1 3 2 PR Q R1 IC2A 2 3 D 1 IC6A IC10A 1 CLK 6 IC1A =1 3 1 IC8A 74HC86 1 CL Q & & 1 2 2 3 1 & 3 74HC74 2 3 2 2 74HC04 74HC86 2 IC11A IC13A S1 74HC08 74HC08 1 1 4 PR Q 5 KEY-PRESS 74HC08 3 2 D KEY-PRESS 2 3 CLK 1 1 CL Q 6 74HC32 74HC74 READ-KEY-PRESS IC3A IC14A 1 IC5A 4 5 KEY-CT0 & 3 1 2 2 PR Q KEY-CT0 2 3 D 1 CLK 6 74HC08 74HC04 CL Q 74HC74 IC7A IC15A IC4A 1 =1 4 PR Q 5 KEY-CT1 1 & 3 2 D 3 2 3 CLK KEY-CT1 2 100Hz 1 CL Q 6 74HC86 74HC08 74HC74 Peter Dannegger
in „Universelle Tastenabfrage nach PeDa in AVR Assembler“ · Mikrocontroller und Digitale Elektronik ·
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Debounce-1.pdf
Key Debounce IC9A IC12A KEY-STATE 1 4 5 KEY-STATE =1 3 2 PR Q R1 IC2A 2 3 D 1 IC6A IC10A 1 CLK 6 IC1A =1 3 1 IC8A 74HC86 1 CL Q & & 1 2 2 3 1 & 3 74HC74 2 3 2 2 74HC04 74HC86 2 IC11A IC13A S1 74HC08 74HC08 1 1 4 PR Q 5 KEY-PRESS 74HC08 3 2 D KEY-PRESS 2 3 CLK 1 1 CL Q 6 74HC32 74HC74 READ-KEY-PRESS IC3A IC14A 1 IC5A 4 5 KEY-CT0 & 3 1 2 2 PR Q KEY-CT0 2 3 D 1 CLK 6 74HC08 74HC04 CL Q 74HC74 IC7A IC15A IC4A 1 =1 4 PR Q 5 KEY-CT1 1 & 3 2 D 3 2 3 CLK KEY-CT1 2 100Hz 1 CL Q 6 74HC86 74HC08 74HC74 Peter Dannegger
in „Universelle Tastenabfrage nach PeDa in AVR Assembler“ · Mikrocontroller und Digitale Elektronik ·
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classd2.pdf
V 5 + k V n 1 R 1 + GND 1 8 1 C 8 IC6C 1N4148 D5 + 3 IC3A V 2A IC2B IC2C 10 D3 5 1N4148 A 5 1 13 12 R3 11 10 9 8 9 e P$8 6R2 T1 + T3 6R2 P$8 u C 2 IC2P 4070D IR2110SHO IRFR1205 IRFR1205 HO IR2110S 2 LM393D 74HC14D 1100p 74HC14D 74HC14D V P$7 R8 R12 P$7 V A 4 7 G 5 IC6B + VB
in „H-Brücke DC-Offset“ · Analoge Elektronik und Schaltungstechnik ·
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AT89C51ED2-Controller_M.pdf
G C21 B B 1 HCPL2731 0.1uF U17D 7 5 9 8 U27 0 Mux_EN_2 M74HC05M1R VCC_Iso 4 0 1 1 +VF1 V01 7 Mux_EN_2 U2B 4 +VF2 VO2 6 Mux_Check VCC_Iso 3 5 7 VCC 3 4 Decoder_G1 2 -VF1 D VCC 8 C R 6 74LS02 1 3 N 4 U17E -VF2 G HCPL2731 0 C79 8 7 11 10 5 1 1 Mux-2_Select M74HC05M1R
in „Code Execution from external Flash in AT89C51ED2 uC“ · Mikrocontroller und Digitale Elektronik ·
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Leiterplatte mit 7-Segment-Anzeigen und Logik-ICs
3643458A_Y10_240916 M74HC45B1 98745 M74HC4543B1 99131R M74HC10B1 98809 M74HC4543B1 99131R M74HC10B1 98737 M74HC132B1 98635 M74HC4543B1 99131R M74HC4543B1 99131R M74HC4543B1 99131R TAG MONAT JAHR 5161AS 5161AS 5161AS
in „[V] Datumsanzeige mit cmos-ICs“ · Markt · · Platinenfotos
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AD_Frontend8.pdf
D DOUT ZEN R 1 R 3 R 1 1n2 D 1uF 74HC4046 1 3 4 2 U12-A 6 VREF1 C1 C2 U12-B 5 74HC00 10uF 10uF 3 Q0 CLK 1 U8 + + 74HC00 CH1 4 2 1 VINL VREF1 14 Q1 CLK CH5 2 13 5 Q2 U14 VINR VREF2 MR 7 12 10 +5V 6 XI/O0 A 3 DGND 1 AGND 12 Q3 U5-A 14 XI
in „ADC Vref auf Ground“ · Mikrocontroller und Digitale Elektronik ·
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68332_test.pdf
Tobias Plüss Datum: 19.04.2007 - D Seite 1 von 2 Masstab 100 % Dimension B 5 4 3 2 1 5 4 3 2 1 D4A D4B 74HC132 74HC132 1 4 X1 3 2 6 5 DB25M DSCLK & & 1 14 RESET 2 FREEZE 15 R2 10k 3 DSI 16 4 D 17 D 5 D3A 18 74HC74 VCC 6 2 5 VCC D3B 19 D Q 6 R5 4k7 74HC74 7 3 Q C5 CLK 100n 12 D Q 9 20 Q 8 8 1 CLR 11 CLK 21 4 PRE VCC 9 13 CLR 22 10 PRE 10 23 11 D4C 24 74HC132 12 D4D 9 25 74HC132 8 & 10 13 12 DSO 13 & 11 TP[0..15] C C PQ[0..7] PE[0..7] S8 PE0 PF[0..7] D2 74HC541 S7 PF0 2 18 PE1 VCC X5 VCC X6 VCC X4 PF1 A1 Y1 QSM TPU TPU PF2 3 A2
in „Motorola MC68332 und BD32“ · Mikrocontroller und Digitale Elektronik ·
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classd2.pdf
+ 4 k V R 1 + 8 1C 1 IC6A 1N4148 D5 A 3 IC3A V 2A IC2B IC2C e 3 D3 5 1N4148 n 5 1 13 IC2P 12 R3 11 10 9 8 2 HO P$8 6R2 T1 + T3 6R2 P$8 HO 7 C 2 D 1k 4070D IR2110S R8 IRFR1205 IRFR1205 R12 IR2110S - 4 4 LM393D 7G4HC14D 100p 74HC14D 74HC14D 5 VB P$7 P$7 VB 5 A 5 IC6B + 4,7u 2 2 4,7u + C4 3 R e 4 P$11 VDD
in „Class D - so machbar?“ · Analoge Elektronik und Schaltungstechnik ·
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Schaltplan einer Logikschaltung mit Transistoren
VCC R101 10k R109 47k U101A 74HC14 B0 A0 C101 1µ GND U105A 74HC86 U107A 74HC86 U101C 74HC14 R125 100k U101D 74HC14 C109 2µ U1DBA 74LS08 Q1D1 BSS138 R0 VDC R+ 1N4148 GND 100k R133 U105B 74HC86 mD01 R102 10k R110 47k U101B 74HC14 B1 A1 C102 1µ GND R118 100k U108B 74LS08 U101E 74HC14 U101F 74HC14 R126 100k C110 2µ U11A 74LS32 Q105 BSS138 R1 VDC R+ 1N4148 100k R137 GND
in „Ausschaltverzögerung für ein Relais“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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Wohnraumuhr_2_Rev2.1.pdf
QG 6 R103 1k 16 c h 12 RCK QF 5 R118 1k 18 b a b QH 7 R104 1k 13 d km n c QG 6 R119 1k 16 c R105 1k 10 e QH 7 R220 1k 13 d h km n c 13 9 R106 1k 9 f R221 1k 10 e SV1-1 G QH* R107 1k 8 g 13 9 R222 1k 9 f R108 1k 4 h u p G QH* R223 1k 8 g 74HC595N R109 1k R224 1k u p 3 k g t d 74HC595N 4 h R110 1k 2 m r
in „wohnraumuhr 2 - leiterplatte nach projekt scott huehn“ · Mikrocontroller und Digitale Elektronik ·
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schaltplan-final.pdf
1 ENA_RADLED 7 MRECHTS 39k PC1 VCC SRCLK QB 2 ENA_SCHRANKE 8 RADL QC ENA_KANTLED 9 ENA_KANTLED 5 6 10 CLR QD 3 ENA_KLAPPLED 10 13 G QE 4 R19 74HC14 QF 5 ENA_MAUS VCC 6k2 U1 PC0 DQG 6 ENA_ERW1 MaussensorTR1 BS250 K C KLAPPE R4 N 7 ENA_ERW2 4k7 G QH VCC POT1 LCD VCC VCC VCC 74HC595 67W-5k TR2 BS250 KLAPPLED
in „LCD DEM20485 in gerade Zeile springen (c't-Bot)“ · Mikrocontroller und Digitale Elektronik ·
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audio-distribution-bus.pdf
A B + 33 13 C 0 0 0 D1 74HC4066N R 2 R 2 1.5KE12A T 74HC125N 3 D1 Q1 2 U 9 8 4 D2 Q2 5 3 T 6 D3 Q3 7 GND GND GND 2 U U1C 11 D4 Q4 10 O 1 13 D5 Q5 12 1 I +5V 14 D6 Q6 15 V D GND + CON6 A 1 C 9 K 74HC125N +C1 C4 V 1 CLK 1 2 GND
in „Audio GND nutzen“ · Mikrocontroller und Digitale Elektronik ·
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Leiterplatte mit 7-Segment-Anzeigen und Logik-ICs
8.8. 8.8. 8.8.8.8. 5161AS 5161AS 5161AS ST M74HC4543B1 99131R ST M74HC4543B1 99131R ST M74HC4543B1 99131R ST M74HC4543B1 99131R ST M74HC10B1 98809 SS M74HC02B1 98737 ST M74HC86B1 98749 SS M74HC00B1 98737 SS M74HC132B1 98635 3643458A_Y10_240916 TAG
in „[V] Datumsanzeige mit cmos-ICs“ · Markt · · Platinenfotos
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RPI-OUT4_SCH.PDF
+3V 2 6 K R 1 1 +5V 3 10K 2 1 1 R5 2 2 2 0 1 3 AQZ102 V R 1 3 1 1 , D 5 2DC+ DC or AC3 2 IC1a IC1b 1DC- DC or AC4 1 3 K1 1 & 4 & RE1 GND GND 3 6 1 2 +3V +5V 2 5 +5V 3V3 5V 74HC132 74HC132 GND 1 2 3 GPIO2 (SDA1) 5V 4 GPIO3 (SCL1
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Encoder.pdf
8 XSC1 VCC G A 5.0V T A A B C D 4 U1A XWG1 ~1PR 16 0 2 1D 1Q 5 O U3A O 3 6 B 1CLK ~1Q B ~1CLR O 1 74HC32D_2V GND X 74HC74D_2V U4A X U2A 74HC08N_2V C X C 31 15 74HC04D_2V 10 U1B R T ~2PR 12 2D 2Q 9 11 8 D 2CLK ~2Q D ~2CLR 13 U5A 74HC74D_2V U7A 74HC86D_2V 74HC00D_2V E E 10 U6B ~2PR 12 2D 2Q 9 F F 11 8 2CLK ~2Q ~2CLR 13 74HC74D_2V G G 0 1 2 3 4 5 6 7 8
in „Standard Logic mit ATF750CL-15X realisieren..“ · FPGA, VHDL & Co. ·
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Schaltplan eines Quad-Decoders
1 2 3 4 5 6 A 1 2 3 4 5 6 IC1 Q1 D1 ADEL BDEL 2 5 Q2 10 B 3 6 Q3 15 4 7 D4 12 5 Q4 1 9 IC3A 74HC00N 8 11 D5 6 IC3B 74HC00N 13 14 D6 10 74HC00N 16 17 IC2A 74HC86N 18 19 IC2B 74HC86N IC2C 74HC86N IC2D 74HC86N TP1 A_IN TP2 B_IN TP5 CLK +5V 74HC174N IC1P IC2P IC3P 100n VCC GND LEFT RIGHT TP3 TP4 IC3D 74HC00N GND Quad_decoder_Up_down 29.06.2026 12:37:45 Sheet: 1/1
in „Impulsausgabe mit Dreh-Inkrementalgeber“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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flipdot.pdf
IC11B 10 9 74HC574D PRE Q 74HC221D 12 D OC 1 5 4075D 13 CLK 11 R/C 15 + 11 CLK 10 12 4 Q C 14 13 8 11 12 9 CLR Q IC1C 13 8Q 8D 8 3 74HC74D 4075D 5 14 7Q 7D 7 R UDN2982LW 6 4 15 6Q 6D 6 13 2 5Q 5D Q B 10 GND VS
in „Flipdot Display Projekt (Hilfe Logik Erbeten)“ · Mikrocontroller und Digitale Elektronik ·
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0380507.pdf
P cable. 100PF C J3 R3 (3) U1 and U2 power: C 6 PROG 300 GND D4 VDD - pin 14 (BLUE) U1 GND - pin 7 74HC125 J3 DIN R4 5 6 R10 J2 2 300 100 5 TDI D0 4 J1 U2 (RED) C2 5 DIN 74HC125 J3 CTRL R5 100PF 5 6 5 300 4 D3 GND (GREEN) U1 U2 J3 R6 74HC125 R11 J2 74HC125 3 CLK 9 8 3 TCK 9 8 B D1 300 10 100 10 B (ORANGE) C3 J1 100PF 3 CCLK U2 74HC125 GND 12 11 13 U1 J3 R7 74HC125 R12 J2 GND 4 TMS_IN 12 11 6 TMS D2 300 13 100 J1 (YELLOW) C4 6 J3 100PF PROG 20 (BLACK) GND See note (2) GND J3 J3 D6 A 25 8 A J3 BUSY SHIELD 11 Title: JTAG/Parallel
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jtag_cable.pdf
cable. 100PF D/P C J3 R3 (3) U1 and U2 power: C 6 PROG D4 300 GND VDD - pin 14 (BLUE) GND - pin 7 74HC125 J3 DIN R4 R10 J2 2 300 5 6 5 TDI D0 4 100 J1 (RED) C2 5 74HC125 J3 R5 100PF DIN 5 6 5 CTRL D3 300 GND 4 (GREEN) U1 74HC125 J2 74HC125 J3 CLK R6 9 8 R11 3 9 8 B 300 100 TCK B (ORANGE) 10 J1 10 C3 3 CCLK 100PF 74HC125 12 11 GND U1 13 74HC125 J2 J4 TMS_IN R7 12 11 R12 6 GND 300 100 TMS (YELLOW) 13 J1 J3 100PF 6 PROG 20 GND GND See note (2) (BLACK) J3 GND J3 8 D6 A 25 J3 A 11 BUSY Title: JTAG/Parallel Download
in „CPLD Xilinx XC 9572XL wird heiß und stirbt“ · FPGA, VHDL & Co. ·
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jtag_cable.pdf
cable. 100PF D/P C J3 R3 (3) U1 and U2 power: C 6 PROG D4 300 GND VDD - pin 14 (BLUE) GND - pin 7 74HC125 J3 DIN R4 R10 J2 2 300 5 6 5 TDI D0 4 100 J1 (RED) C2 5 74HC125 J3 R5 100PF DIN 5 6 5 CTRL D3 300 GND 4 (GREEN) U1 74HC125 J2 74HC125 J3 CLK R6 9 8 R11 3 9 8 B 300 100 TCK B (ORANGE) 10 J1 10 C3 3 CCLK 100PF 74HC125 12 11 GND U1 13 74HC125 J2 J4 TMS_IN R7 12 11 R12 6 GND 300 100 TMS (YELLOW) 13 J1 J3 100PF 6 PROG 20 GND GND See note (2) (BLACK) J3 GND J3 8 D6 A 25 J3 A 11 BUSY Title: JTAG/Parallel Download
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jtag_cable.pdf
cable. 100PF D/P C J3 R3 (3) U1 and U2 power: C 6 PROG D4 300 GND VDD - pin 14 (BLUE) GND - pin 7 74HC125 J3 DIN R4 R10 J2 2 300 5 6 5 TDI D0 4 100 J1 (RED) C2 5 74HC125 J3 R5 100PF DIN 5 6 5 CTRL D3 300 GND 4 (GREEN) U1 74HC125 J2 74HC125 J3 CLK R6 9 8 R11 3 9 8 B 300 100 TCK B (ORANGE) 10 J1 10 C3 3 CCLK 100PF 74HC125 12 11 GND U1 13 74HC125 J2 J4 TMS_IN R7 12 11 R12 6 GND 300 100 TMS (YELLOW) 13 J1 J3 100PF 6 PROG 20 GND GND See note (2) (BLACK) J3 GND J3 8 D6 A 25 J3 A 11 BUSY Title: JTAG/Parallel Download
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jtag_cable.pdf
cable. 100PF D/P C J3 R3 (3) U1 and U2 power: C 6 PROG D4 300 GND VDD - pin 14 (BLUE) GND - pin 7 74HC125 J3 DIN R4 R10 J2 2 300 5 6 5 TDI D0 4 100 J1 (RED) C2 5 74HC125 J3 R5 100PF DIN 5 6 5 CTRL D3 300 GND 4 (GREEN) U1 74HC125 J2 74HC125 J3 CLK R6 9 8 R11 3 9 8 B 300 100 TCK B (ORANGE) 10 J1 10 C3 3 CCLK 100PF 74HC125 12 11 GND U1 13 74HC125 J2 J4 TMS_IN R7 12 11 R12 6 GND 300 100 TMS (YELLOW) 13 J1 J3 100PF 6 PROG 20 GND GND See note (2) (BLACK) J3 GND J3 8 D6 A 25 J3 A 11 BUSY Title: JTAG/Parallel Download
in „Xilinx JTAG-Kabel - Invertierend oder nicht?“ · FPGA, VHDL & Co. ·
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jtag_cable.pdf
cable. 100PF D/P C J3 R3 (3) U1 and U2 power: C 6 PROG D4 300 GND VDD - pin 14 (BLUE) GND - pin 7 74HC125 J3 DIN R4 R10 J2 2 300 5 6 5 TDI D0 4 100 J1 (RED) C2 5 74HC125 J3 R5 100PF DIN 5 6 5 CTRL D3 300 GND 4 (GREEN) U1 74HC125 J2 74HC125 J3 CLK R6 9 8 R11 3 9 8 B 300 100 TCK B (ORANGE) 10 J1 10 C3 3 CCLK 100PF 74HC125 12 11 GND U1 13 74HC125 J2 J4 TMS_IN R7 12 11 R12 6 GND 300 100 TMS (YELLOW) 13 J1 J3 100PF 6 PROG 20 GND GND See note (2) (BLACK) J3 GND J3 8 D6 A 25 J3 A 11 BUSY Title: JTAG/Parallel Download
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jtag_cable.pdf
cable. 100PF D/P C J3 R3 (3) U1 and U2 power: C 6 PROG D4 300 GND VDD - pin 14 (BLUE) GND - pin 7 74HC125 J3 DIN R4 R10 J2 2 300 5 6 5 TDI D0 4 100 J1 (RED) C2 5 74HC125 J3 R5 100PF DIN 5 6 5 CTRL D3 300 GND 4 (GREEN) U1 74HC125 J2 74HC125 J3 CLK R6 9 8 R11 3 9 8 B 300 100 TCK B (ORANGE) 10 J1 10 C3 3 CCLK 100PF 74HC125 12 11 GND U1 13 74HC125 J2 J4 TMS_IN R7 12 11 R12 6 GND 300 100 TMS (YELLOW) 13 J1 J3 100PF 6 PROG 20 GND GND See note (2) (BLACK) J3 GND J3 8 D6 A 25 J3 A 11 BUSY Title: JTAG/Parallel Download
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schematic.pdf
47u ATmega8 74HC138 VCC 20 AVcc 2 1 7 21 PD0 A Y7 7x 2,2k ARef 3 2 9 100n PD1 B Y6 22 GND PD2 4 3 C Y5 10 Input 11 Y4 12 VCC 28 Y3 10k PC5 4 13 7 G1 Y2 Vcc 5 14 100n G2 Y1 22k VCC 6 15 calibration 8 G3 Y0 GND 100n
in „Frequenzzähler 1Hz - 40MHz“ · Mikrocontroller und Digitale Elektronik ·
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TNC2C.pdf
Pin 6 (DSR) = 5V Pin 7 GND Pin 8 (DCD) = 5V Pin 9 Stromversorgung +12V von V24 Port (Commodore PC 10/20) Alle anderen Pins NC (Not Connected) Die Pins 13 und 14 des 74HC139 sollten zusammen mit Pin 15 auf +5V an Pin 16 gelegt werden, um den Stromverbrauch noch mal um 2 mA zu senken. Aufgrund eines Layoutfehlers
in „Z80/UA880D mit 28C64 startet nicht“ · Mikrocontroller und Digitale Elektronik ·
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FIFO_1MHz.pdf
QA SER 14 DIN B 1 QB 2 QC SCK 11 CLK 3 QD SCL 10 +5V k 4 QE R 1 MEGA88-P 5 QF RCK 12 6 QG 1 PC6(/RESET) PC0(ADC0) 23 7 QH D PC1(ADC1) 24 D C1 N 22 GND PC2(ADC2) 25 9 QH* G 13 N 100n G 21 AREF PC3(ADC3) 26 G 5 20 AVCC PC4(ADC4/SDA) 28 74HC595N + PC5
in „Schieberegister ersetzen“ · Mikrocontroller und Digitale Elektronik ·
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FIFO_1MHz.pdf
74HC595N + PC5(ADC5/SCL) 9 2 0R1 GND PB6(XTAL1/TOSC1) 10 10 2 J1 11 SER 9 C +5V n PB7(XTAL2/TOSC2) PD0(RXD) 3 12 A QH C 0 2 GND PD1(TXD) 4 13 B 1 C 8 PD2(INT0) 5 14 C 7 GND PD3(INT1) 6 3 D QH IC5F IC5E IC5D 7 PD4(XCK/T0) 11 4 E D 13 12 11 10 9 8 VCC PD5(T1) 12 5 F N PD6(AIN0) 13 6 G G 74HC04N 74HC04N 74HC04N PD7(AIN1) H 14 2 PB0(ICP) 15 15 CLK IC5B IC5C PB1(OC1A) 16 1 INH D 3 4 5 6 PB2(SS/OC1B) 17 SH/LD N PB3(MOSI/OC2) 18 74HC165N G 74HC04N
in „Schieberegister ersetzen“ · Mikrocontroller und Digitale Elektronik ·
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SK-schaltplan.pdf
RS5D 5 SOC26 USER/ PROG/ 1 100pF 100pF 100pF LD3 1 2 (PA1-25) SW9 + SIM/ 19 1G W9 SOC15 0 2G C8 C9 C10 1 RS5B 3 SOC25 (PB4-25) 1 2 1 RS4B D0 (en. VCC) 1 2 (PA2-25) W24 74HC125 3 74HC244 3 4 LD2 W8 1 RS4C RS5A 9 8 GND 5 6 D4 (dis. RESET/) 1 2 1 2 SOC24 GND U2C 74HC125 LD1 (PA3-25) B OSCPI 12 11 SOC7 VCC 1 RS4A 2 D1 (dis. VPP) 390-SIL10-9R W7 B 2 U2D (OSCIN-0) 100pF 10K-SIL8-4R SW2 3 PROG/ G1 SW-PUSH C15 DSS306 4 Px0/ ST62x0 74HC125 GND SOC3 GND 1 2 GND RS232 INTERFACE VDD Px5/ 1 1 2 U2A 3 1 132 3 (OSCIN-5) W12 CIRCUIT C30 C26 5 2 2
in „ST Chip auslesen“ · Mikrocontroller und Digitale Elektronik ·
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mux.pdf
SELECT1 SELECT0 74HC4051 74HC4051 4 4 Y7 Y7 2 Y6 Z 3 2 Y6 Z 3 5 Y5 5 Y5 1 Y4 1 Y4 12 Y3 C 9 12 Y3 C 9 15 10 15 10 14 Y2 B 11 14 Y2 B 11 13 Y1 A 13 Y1 A Y0 Y0 N E N E E V E V 4 3 3 3 3 3 3 3 7 6 5 4 3 2 1 0 GRUPPE 4 R R
in „Elektronischer Schalter gesucht“ · Mikrocontroller und Digitale Elektronik ·
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logik.pdf
IC1A 1 3 1 IC2A 2 2 6 74HC32 4 5 74HC20 IC2B IC3A VCC IC1B 9 1 4 10 2 6 8 6 5 12 4 13 5 74HC32 74HC20 74HC20 IC3B 9 10 IC1C 8 9 12 8 13 10 74HC20 74HC32
in „zählende Schaltung“ · Mikrocontroller und Digitale Elektronik ·
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logik.pdf
IC1A 1 IC2A 3 1 2 2 6 74HC86 4 5 74HC20 IC2B IC3A VCC IC1B 9 1 4 10 2 6 8 6 5 12 4 13 5 74HC86 74HC20 74HC20 9IC3B 10 IC1C 8 9 12 8 13 10 74HC20 74HC86
in „zählende Schaltung“ · Mikrocontroller und Digitale Elektronik ·
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BLDC-_Controller_rev.1.1.pdf
1000uF 3 IR2181 Q5 Q6 5 R3 IRFB3206 IRFB3206 GND 7 9 IC5C N$13 9 8 1 HIN VB 8 15 8 X1B 10 1 5 74HC08D N$33 2 7 C3 7 M V_OUT + 2 LIN H0 3 D Z N$12 4 12 IC5D 3 6 1 1uF N$12 PAD7 6 11 COM VS 2 A 8 13 4 5 D B 10 LO VCC 74HC08D +15V Q7 Q8 GND R4 IRFB3206 IRFB3206 C2 N$14 15 8 10uF 1 1 M D Z GND
in „BLDC- Controller 44VDC“ · Mikrocontroller und Digitale Elektronik ·
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Schematic_Prints.pdf
5 D7 Q7 (A15) PC7 PD7(RD) 74HC00 U5C 74HC00 11 LE 33 PE1 (ALE) RESET 10 9 1 OE 8 32 PE2 (0C1B) X1 21 10 U6 74HC573 D 74HC00 35 N 20 PE0 (ICP/INT2) G X2 P5 P6 U1 2 CH5 CH6 R5 R6 ATMEGA8515-16JI U3 470k 470k U2 74HC4040 62256 GND
in „Womit Protel-Schaltplan ansehen?“ · Mikrocontroller und Digitale Elektronik ·