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LCD_Filter_Schematic.pdf
1 2 3 4 A A IC1F +5V +5V D 5 6 N 5 G 74HC14N + D 1 C G V C7 IC1C B IC1P N 9 8 B D N 100n G E 7 G R2 74HC14N H 10k S E A GND GND S D 1 +5V G 2 R1 IC1E IC1B GND 3 R 3 4 11 10 D 4 2k2 C1 N 6 74HC14N 74HC14N G 7 220p 8 9 GND 10 C R3 IC1D IC1A C E 1 2 13 12 SV1 2k2 1 C2 74HC14N 74HC14N 3 220p 4 GND SV2 D R4 2k2 C3 220p GND D 5 R5 D D 2k2 C4 220p GND 6 R6 D 2k2 C5 220p GND 7 R7 E D E 2k2 C6 220p GND F F 1 2 3 4
in „LCD verliert Zeichen“ · Mikrocontroller und Digitale Elektronik ·
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schematic.pdf
11 6 12 ns CCK QG 6 6 PD6 18 1 2 7 13 MISO us QH 7 7 PD7 19 3 4 13 14 SCK ISP ms RCK PB0/ICP1 1 5 6 14 9 VCC 6 Reset G RCO PD4/T0 8x 68R 2 1 4 6 7 0 3 5 10 4 PRE 5 PRE 9 0 1 2 3 3 Q 11 Q 74HC74 74HC590 CLK CLK 4x 4,7k 2 12 D 6 D 8 VCC VCC 1 Q 13 Q CLR CLR J1..J4 1/2 74HC74 1/2 74HC74 100n 100n
in „Frequenzzähler 1Hz - 40MHz“ · Mikrocontroller und Digitale Elektronik ·
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FIFO_1MHz.pdf
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(ADC5/SCL) 9 GND PB6(XTAL1/TOSC1) 10 10 2 11 SER 9 C +5V n PB7(XTAL2/TOSC2) PD0(RXD) 3 12 A QH DOUT 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 74HC165D G 74HC04N 74HC04N PB4(MISO) 19 PB5(SCK) IC3 IC5A D 2
in „Schieberegister ersetzen“ · Mikrocontroller und Digitale Elektronik ·
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m74hc4094.pdf
V excess voltage. Table 1. Device summary Order code Temperature range Package Packaging Marking M74HC4094RM13TR -55/+125 °C SO16 74HC4094 M74HC4094YRM13TR (1) -40/+125 °C SO16(automotivegrade) 74HC4094Y Tape and reel M74HC4094TTR -55/+125 °C TSSOP16 HC4094 (1) M74HC4094YTTR -40/+125° °C TSSOP16 (automotive
in „segment anzeige“ · Analoge Elektronik und Schaltungstechnik ·
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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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FIFO_1MHz.pdf
AREF PC3(ADC3) 26 G 5 20 AVCC PC4(ADC4/SDA) 28 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 74HC04N PB4(MISO) 19 PB5(SCK) IC3 IC5A D 2
in „Schieberegister ersetzen“ · Mikrocontroller und Digitale Elektronik ·
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classd2.pdf
11 10 9 8 2 e P$8 6R2 T1 + T3 6R2 P$8 0 C 2 4070D IR2110SHO IRFR1205 IRFR1205 HO IR2110S 4 LM393D 74HC14D 1k100p 74HC14D 74HC14D 2 P$7 R8 R12 P$7 2 A 5 IC6B + VB 4,7u 0 0 4,7u VB + C4 k 1 4 P$11 P$6 3 3 P$6 P$11 GND 3 R 6 e VDD VS C6 1 U u 0 U 2 C8 VS VDD 1 4070D 1k P$12 HIN D M 1 1 M D HIN P$12 1k
in „Class D - so machbar?“ · Analoge Elektronik und Schaltungstechnik ·
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GPS_10MHz_Timepulse_Jitter_Filter.PDF
. GND 1 2 74HC14 1 2 1 2 IC1d 2 C1 3T1 74HC14 10MHz K 2-30p 1 R 4 C-Diode 1 2 4 BF981 9 8 2 2 2 F 2 1 2 1 0 0 0 0 2 n 0 1nF 1 7 1 2 9 2 4 1 3 6 2 2 1 74HC14 R 1 4 R 1 2 R 1 2 C 3 R 1 2 2 D1 2 2 IC1e 3 1 n 0 7 C 1 R 2 R 2 1 1 11 10 20KTrimmerFeinabgleichVCO10MHz GND 74HC14 IC1f 13 12 74HC14
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schaltplan_74hc14.pdf
schaltplan_74hc14.pdf
in „Logarex eHZ liefert keine zuverlässigen Daten mit IR-Lesekopf“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Bestückte Leiterplatte mit integrierten Schaltkreisen
7C1 HD63B03RP JAPAN, MM74HC373N, 74HC74N, 7VJ170PS, Cmk6601 E, 74HC74N, 7VJ170PS, Cmk6601 E, 74HC373N, SRM2017C1E, F91 715, 74HC20E, H.9448, 74HC14, SN74HC14, 74HC20E, H.9448, 80W100-D, 80 9581.02.0, ADDAC80N-CBI-V, 9721 B74090
in „[V] Konvolut Leiterplatten mit div. IC“ · Markt · · Platinenfotos
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EntwurfV3.pdf
D- D2_N D+ 3 D2_P GND 4 SHIELD USB2-B-90 PE GND +3V3 4 C 1 IC2-D IC2-E 9 8 RESET 100k 11 10 R2 5 0 74HC14-PW C 074HC14-PW R1M 1 GND n g t u GND c e t n e s t g u D i +5V_2 e t g t d l u l i h a h Flankenerkennung (+/-) 2 s c s 100 ms High Pulse 1000 ms LOW Pulse r V s V 0 +3V3 o 5 m 5 11 P + U + R IC2
in „Einfache USB Upstream Port Umschaltung“ · Mikrocontroller und Digitale Elektronik ·
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Bestandsliste_mit_Preisen1.pdf
m.Preset gem.Clear/Takt 6 Stk 0,24 € 1,46 € 7473 2 J-K-Flipflops mit Clear 39 Stk 0,36 € 14,14 € SN74LS107 2 J-K-Flipflops mit Clear 25 Stk 0,49 € 12,25 € 74107 2 J-K-Flipflops mit Clear 8 Stk 0,25 € 1,98 € SN74LS73 2 J-K-Flipflops mit Clear 2 Stk 0,13 € 0,26 € 74HC107 2 J-K-Flipflops mit Clear
in „Auflösung Elektronik Shop“ · Markt ·
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prototyp-schaltplan.pdf
R 1 R 1 R 1 R 1 74HC14N 2 10 PD0(RXD) PB7(XTAL2/TOSC2) GND 5 5 GND IC1C 3 PD1(TXD) + + 22k 4 PD2(INT0) 0 0 2 0 9 8 5 PD3(INT1) GND 8 R L1P3 LSP4 R 1 1 2 3 4 R28 C 1 6 PD4(XCK/T0) k s s s s 74HC14N 11 PD5(T1) VCC 7 T3 T4
in „Midicontroller zur Steuerung einer DMX-Software“ · Projekte & Code ·
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FGG6V1.pdf
verdrahtet Endstufe TTL Differential Am Schalter verdrahten X V- IC4E S$1 D 3 4 A B 1 1 Form 74HC14N 2 E S (Amsi) 7 S 3 1 k V+ 00 4 e R 1 R1 A 2 E 5 e C15 8 S 6 b 150p/63V IC4F 0 0 E 5 6 ST2 R1 A 74HC14N 1 IC4C Q C Pin1-2-6(C) t 74HC14N 2 C S1A t 1 5 TC1 Kondensator a 3 C3 - C7 Hochertige Bauteile 2 S d IC4B Q 3 e Form 11 10 C44 V+ Ta +F 4 e r Ausgang 100n M 5 e l S 7 D 74HC14N C7 M 6 E VCO Out 11 h S2C G IC4P IC4D Digital 4u7/16V F S 1 9 8 1 2 A F 2 S TR1 S 4 n F A 3 4 C 74HC14N 50k ) C 0 C 4 C 4 C0 9 4 e 1 k 1 V IC4A E B E 4 6 TC2 Form 5 e R 1 13 12 n W R S 6 E SMD C10
in „Redesign RIM FGG6“ · Analoge Elektronik und Schaltungstechnik ·
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FGG6_-Redesign.pdf
Schalter verdrahten X Am Schalter verdrahtet V- IC4E Endstufe TTL Differential S2A D A B 3 4 Form 1 S 1 74HC14N T E 2 (Amsi) 5 V+ 0k S 3 A 1 0 R1 A 4 n R 1 C15 T E 5 b 150p/63V IC4F 0 k S 6 E ST2 R10 A 5 6 1 74HC14N 1 Q Pin1-2-6(C) IC4C C S1A 74HC14N 2 C Timing C3 - C7 Hochwertige Bauteile 1% 1 S 5 TC1 Kondensator
in „ELO XR2206 PLL-Schleife (Sinus - Rechteck) alte Schaltung gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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74hc76_Matorola.pdf
MOTOROLA SEMICONDUCTOR TECHNICAL DATA MC74HC76 Dual JK Flip-Flop With Set and Reset High–Performance Silicon–Gate CMOS N SUFFIX The MC74HC76 is identical in pinout to the LS76. The device inputs 16 PLASTIC PACKAGE CASE 648–08 are compatible with
in „toggle flip flop areitet unsauber“ · Mikrocontroller und Digitale Elektronik ·
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marantz-sr8200-9200-service-manual.pdf
TERMINAL,YKF41-5040 YT02210070 DK71 482213081324 CHIPDIODE,1SS302 HZ20018050 QA01 482220931568 IC,CMOS74HCU04FLAT HC700400Z0 LF81 /N 996500001576 RELAY,MR82-24USR LY20240480 TAPING QA03 996500001342 IC,TC74HC151AF HC715100Z0 PF14-COMPONENT QA04 996500001342 IC,TC74HC151AF HC715100Z0 CIRCUITBOARD PF14-CAPACITORS
in „MARANZ RC3200 datenkabel belegung gesucht“ · Mikrocontroller und Digitale Elektronik ·
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flipdot_V01.pdf
Flipdot Display 74HC138D 7 5 A3 6 Ziffern 9 Y7 G2B 4 D 10 Y6 G2A 6 N 11 Y5 G1 A7 G 12 Y4 a 5x3 Dots 13 Y3 3 14 Y2 C 2 A2 CLK_Z0H 15 Y1 B 1 A1 Y0 A A0 IC2 +5V Ziffer0 B[0..7] 74HC574D OC 1 74HC221D R CLK 11 4075D R/C 15
in „Flipdot Display Projekt (Hilfe Logik Erbeten)“ · Mikrocontroller und Digitale Elektronik ·
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xone92.pdf
C5299 ISSUE: 3 SHEET: 2 OF 2 A B C D E F G FILTER SWITCH LOGIC U5E 1 +5 VCC U6A 11 10 R50 6K81% R 74HC14 R46 R1 R2 R3 2 DATA A 10K 10K 10K U5A L Q 6 6K81% R51 C U5D +5 C4 3K31% 1 2 +5V R47 T 5 9 8 3 S Q R41 100N 6K81% 74HC14 +5 CLOCK R 74HC14 10K 1% U8 R52 P 1 VDD VSS 8 3K31% SW2B 4 2 GP5 GP0 7 R48
in „Fehlersuche in DJ-Mixer (Allen & Heath Xone:92)“ · Analoge Elektronik und Schaltungstechnik ·
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7segshift.pdf
13 e2 4 e DP 7 DP2 f2 13 QH 7 9 8 1DP2 1a2 14 d2 5 d AN 6 a2 14 1b2 b2 M74HC595 RN8 1c2 15 HDSP-F101 c2 15 1DP2 16 DP2 16 U3 1d3 17 VCC2 D4 d3 17 11 9 R101 1e3 18 1 10 a3 e3 18 SCK QH' 19 AN a 19 12 RCK QA 15 16 1 1d3 1g3 20 f3 2 f b 9 b3 g3 20
in „7-Segm. über Schieberegister“ · Mikrocontroller und Digitale Elektronik ·
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flipdot_V02.pdf
Flipdot Display 74HC138D 6 Ziffern 7 5 A3 CLK_Z6H 9 Y7 G2B 4 D CLK_Z5H 10 Y6 G2A 6 A7 G CLK_Z4H 11 Y5 G1 a 5x3 Dots CLK_Z3H 12 Y4 CLK_Z2H 13 Y3 3 A2 CLK_Z1H 14 Y2 C 2 A1 CLK_Z0H 15 Y1 B 1 A0 Y0 A IC2 +5V Ziffer1 B[0..7] 74HC574D 1 1 OC 11 74HC221D R CLK 15 V+ 4075D 13 B7 12 9 D7 4 R/C 14 D B B B B B B B B EN_Z0Z 10 12 B6 13 8Q 8D 8 D6 Q C G C1 11 B5 14 7Q 7D 7 D5 3 IC1C 4075D 5 15 6Q 6D 6 R 1 2 3 4 5 6 7 8 9 6 4 B4 16
in „Flipdot Display Projekt (Hilfe Logik Erbeten)“ · Mikrocontroller und Digitale Elektronik ·
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SPS_MUX.pdf
C C C C C C C 2 B QB 4 2 I2 O2 17 QC 5 3 I3 O3 16 QD 6 4 I4 O4 15 QE 10 5 I5 O5 14 B 8 CLK QF 11 6 I6 O6 13 B QG 12 7 I7 O7 12 9 CLR QH 13 8 I8 O8 11 2 2 N 9 GND CD+ 10 +24V R 2 R 2 74HC164N G ULN2803 V 2 + O O O O O O O O GND K9 K10 K11 K12 K13 K14 K15 K16 N N N N N N N N 1 1 1 1
in „SPS erweitern für 32 Temperatureingänge“ · Analoge Elektronik und Schaltungstechnik ·
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Schaltplan mit Invertierern und Relais-Ansteuerung
3.3V Raspi GND Raspi PWR_FLAG PWR_FLAG GND +3.3V Relais_01x16_Pin J1 R1 bis R32 20 kOhm 74HC14 U1A J4 Conn_01x08_MountingPin J5 Conn_01x08_MountingPin 74HC14 U1G GND VCC U2G 74HC14 GND VCC U3G 74HC14 74HC14 U3E
in „Lichtsteuerung über i2c - ULN2803A - S12-100“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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Schaltplan einer digitalen Uhr mit 7-Segment-Anzeigen
Display X13.3, LED1 bis LED4, 74HC4017N, IC7, 74HC14N, IC8, 74HC132N, IC9, 50Hz X14.4, 50Hz X14.2, 74HC130N, IC10, 74HC40103, X13.1 Taste Wch.Tag, X13.2 Taste MRN/TE, X13.3 Taste Stunde, X13.4 Taste SYNC, X14.1 Tagesimpuls, X14.3 2,5
in „Uhr mit cmos-ICs“ · Projekte & Code · · Schaltpläne
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Datei
com74hc595_lcd.h
LCD extern void com74hc595_lcd_command(unsigned char d); // Enable-Puls extern void com74hc595_lcd_enable(void); // character output extern void com74hc595_lcd_data(unsigned char d); // String output extern void com74hc595
in „Problem mit Lcd an 74HC595, Atmega32, [c]“ · Mikrocontroller und Digitale Elektronik ·
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Merkur1.pdf
PIU6013 SCL PIU40173.4/T0 P1.1/T2EXPIU40412 OE VCC PIU302310 Q6 PIU6012 PIU40183.5/T1 P1.2PIU405 SN74HC573ADW PIU302A11 B I0 P 0168pF31 PIU608 Q7 PIU6011 PIU40193.6/WR P1.3PIU40613 GND PIU302612 B R1R R2R R3R GND Q8 P3.7/RD 5 4 3 2 1 0 P1.5PIU40714 PIU302A14 GND PIU3014 1K 1K 4,7K M74HC4094B1R 1 1 1
in „Frage zum 80C31“ · Mikrocontroller und Digitale Elektronik ·
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BLDC-_Controller_rev.1.1.pdf
+ 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 BEMF GND N$24 N$27 Phase W V N$29 4 + +C18 N$7 R13 R18 1000uF 2k 2k Q9 Q10 IR2181 IRFB3206 IRFB3206 GND N$12 R14 R17 N$31 1 IC6A
in „BLDC- Controller 44VDC“ · Mikrocontroller und Digitale Elektronik ·
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SPI_74HC595.pdf
pin is used as the 74HC595 latch clock as described above. PP0 is used for the 74HC165 latch clock. Note the software must change the clock phase, CPHA, for reads/writes to this circuit. +5V 74HC595 10 RST QA 15 MOSI 14 SerIn
in „SPI + 74HC595“ · Mikrocontroller und Digitale Elektronik ·
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SPI_74HC595.pdf
pin is used as the 74HC595 latch clock as described above. PP0 is used for the 74HC165 latch clock. Note the software must change the clock phase, CPHA, for reads/writes to this circuit. +5V 74HC595 10 RST QA 15 MOSI 14 SerIn
in „Porterweiterug und I2C bus“ · Mikrocontroller und Digitale Elektronik ·
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Bestandsliste.pdf
0,25 € 1,98 € 36 SN74LS73 2 J-K-Flipfops mit Clear 2Stk 0,13 € 0,26 € 37 74HC107 2 J-K-Flipfops mit Clear 2 Stk 0,12 € 0,24 € 38 SN74LS113 2 J-K-Flipfops mit Preset 14Stk 0,11 € 1,51 € 39 SN74LS76 2 J-K-Flipfops mit Preset
in „Auflösung Elektronik Shop“ · Markt ·
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GLCD_mit_Graustufen_32K_NT.pdf
8 IC3C 7805 +5V 10 12V 1N4001 C 4 C 4 C 6 C 8 C 9 1 R8 LED1 0 C 1 C 1 C 1 C 2 V 2 IN OUT 2 V V V V 74HC02N D2 + C14 GND 1,5K C4 C5 C6 C7 C8 C9 IC3P IC4P IC5P IC6P C15 C16 IC2P D D D D 11 IC3D IC9 GND n n n n n n 7 G 7 G 8 G 4 G 13 470µ 330n 100n 0 0 0 0 0 0 0 D 1 12 1 1 1 1 1 1 1 G 74HC02N GND GND GND
in „Grafikfähiger LCD Controller für 320x240 LCD mit 4 Graustufen“ · Projekte & Code ·
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Debounce.pdf
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
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
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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Quarze.pdf
11,75 4,14 3 4194,304k - HC49 4,19 1,88 1 4,19 2,28 1 4,19 2,74 1 4,19 3,02 2 12,28 4,26 3 4433,619k - HC49 4,43 1,57 1 4,43 2,34 1 4,43 2,74 1 13,0 3,70 2 13,05 4,32 3 4433,619k - HC48 - - - - - - 1,86 1,44 1 5,3 3,1 2 5,3 3,58 3 5000k - HC49 5,00 2,33 1 5,00 2,68 1 5,00 2,90 1 14,7 3,94 2 14,7 4,46 3 8000k – HC49 1 8,00 0,16 1 8,00 0,17 1 8,00 3,30 3 8,00 3,62 3 24,0 4,74 3 8000k – HC49 2 8,00 2,66 1 8,00 3,06 2 8,00 3,30 2 8,00 3,66 4
in „NICOS – der Negative Impedance Converter - Oszillator“ · HF, Funk und Felder ·
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csio-SR.pdf
74HC165 74HC165 74HC595 U2 U3 U4 74165 74165 74595 IN15 11 P0 Q7 9 IN7 11 P0 Q7 9 13 G QA 15 OUT15 12 P1 Q7 7 12 P1 Q7 7 12 RCLK QB 1 OUT14 IN14 NC IN6 NC 10 2 c SRCLR QC OUT13 IN13 13 P2 IN5 13 P2 V 11 3 SRCLK QD OUT12 14 14 14 4 IN12 P3 IN4 P3 SER QE OUT11 5 IN11 3 P4 IN3 3 P4 QF OUT10 QG 6 4 4 OUT9 IN10 P5 IN2 P5 9 QHs QH 7 OUT8 5 P6 5 P6 IN9 IN1 6 6 IN8 P7 IN0 P7 1 PL 1 PL 74HC595 Vcc NC 10 DS 10 DS 74595 U5 2 CP1
in „Z180-Stamp Modul“ · Mikrocontroller und Digitale Elektronik ·
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5500-0080_VQC_DisplayAdapter_V2R1.pdf
- ROW DRIVER FB C ZSTROBE INP- 8 ZSTROBE- 33R 74HC138N Q1 VCCZ VCC R9 C13 1 2 VCCZ 1A MAX L1 +5V 9 VCC R7 VCC VCCLED GND 10 GND 10K VCCZ C6 C21 C22100uH 10K 1n0 3 Z1 CON10 R8 0u1 100uF 100uF 10K ROW SELECTOR R TBD to reduce EMI C14 C15 C16 AO3401A
in „Als Mikro noch Makro war: Die "Dicke Tal- Uhr"“ · HF, Funk und Felder ·
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Datei
beispiel.html
7454 </b></span> - <span style="color: blue;"><b> 7486 </b></span> - <span style="color: blue;"><b> 74HC36 </b></span> - <span style="color: blue;"><b> 74HC804 </b></span> - <span style="color: blue;"><b> 74HC805 </b></span> - <span style="color: blue;"><b> 74HC808 </b></span> - <span style="color: blue
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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0380507.pdf
Header J3 R1 D2 D1 J2 15 VCC SENSE 1 100 VCC D ERROR 1N5817 1N5817 D (WHITE) FPGA Header R13 J1 Notes: R14 R8 1K 1 VCC (1) All resistors 100 74HC1252 5.1K 0.01UF 1/8W, 5%, SMT J3 DONE R2 3 2 J2 unless otherwise 13 100 noted. SELECT 1 GND 2 GND (BROWN) GND J1 74HC125 2 GND (2) D6, BUSY, and PE 2 3 R9 J2 connected
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jtag_cable.pdf
Header J3 R1 D2 D1 J2 15 VCC SENSE 1 VCC 100 D (WHITE) 1N5817 1N5817 FPGA Header D R13 J1 Notes: R14 R8 1K 1 VCC (1) All resistors 100 74HC1252 5.1K 0.01UF 1/8W, 5%, SMT J3 DONE R2 unless otherwise 13 100 3 2 J2 SELECT 1 GND 2 GND noted. (BROWN) GND J1 74HC125 2 GND (2) D6, BUSY, and PE R9 J2 connected
in „CPLD Xilinx XC 9572XL wird heiß und stirbt“ · FPGA, VHDL & Co. ·
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PDF
jtag_cable.pdf
Header J3 R1 D2 D1 J2 15 VCC SENSE 1 VCC 100 D (WHITE) 1N5817 1N5817 FPGA Header D R13 J1 Notes: R14 R8 1K 1 VCC (1) All resistors 100 74HC1252 5.1K 0.01UF 1/8W, 5%, SMT J3 DONE R2 unless otherwise 13 100 3 2 J2 SELECT 1 GND 2 GND noted. (BROWN) GND J1 74HC125 2 GND (2) D6, BUSY, and PE R9 J2 connected
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jtag_cable.pdf
Header J3 R1 D2 D1 J2 15 VCC SENSE 1 VCC 100 D (WHITE) 1N5817 1N5817 FPGA Header D R13 J1 Notes: R14 R8 1K 1 VCC (1) All resistors 100 74HC1252 5.1K 0.01UF 1/8W, 5%, SMT J3 DONE R2 unless otherwise 13 100 3 2 J2 SELECT 1 GND 2 GND noted. (BROWN) GND J1 74HC125 2 GND (2) D6, BUSY, and PE R9 J2 connected
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jtag_cable.pdf
Header J3 R1 D2 D1 J2 15 VCC SENSE 1 VCC 100 D (WHITE) 1N5817 1N5817 FPGA Header D R13 J1 Notes: R14 R8 1K 1 VCC (1) All resistors 100 74HC1252 5.1K 0.01UF 1/8W, 5%, SMT J3 DONE R2 unless otherwise 13 100 3 2 J2 SELECT 1 GND 2 GND noted. (BROWN) GND J1 74HC125 2 GND (2) D6, BUSY, and PE R9 J2 connected
in „Xilinx JTAG-Kabel - Invertierend oder nicht?“ · FPGA, VHDL & Co. ·
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jtag_cable.pdf
Header J3 R1 D2 D1 J2 15 VCC SENSE 1 VCC 100 D (WHITE) 1N5817 1N5817 FPGA Header D R13 J1 Notes: R14 R8 1K 1 VCC (1) All resistors 100 74HC1252 5.1K 0.01UF 1/8W, 5%, SMT J3 DONE R2 unless otherwise 13 100 3 2 J2 SELECT 1 GND 2 GND noted. (BROWN) GND J1 74HC125 2 GND (2) D6, BUSY, and PE R9 J2 connected
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PDF
jtag_cable.pdf
Header J3 R1 D2 D1 J2 15 VCC SENSE 1 VCC 100 D (WHITE) 1N5817 1N5817 FPGA Header D R13 J1 Notes: R14 R8 1K 1 VCC (1) All resistors 100 74HC1252 5.1K 0.01UF 1/8W, 5%, SMT J3 DONE R2 unless otherwise 13 100 3 2 J2 SELECT 1 GND 2 GND noted. (BROWN) GND J1 74HC125 2 GND (2) D6, BUSY, and PE R9 J2 connected
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VQC10_ADAPTER.pdf
D CLR C RX/CX 14 TBD QG 13 DH G2B Y4 10 R10 4K7 Y6 2 V Cext QH Y5 9 R11 4K7 Y7 R1 VCC B 13 GND MC74HC164 Y6 7 GND D Q Y7 10K 1 A N Q 4 G 74HC138N 8 U1A J1 74HC123 R4 EN-LED GND VCC ENABLE LEDS 1 ZSTR 2K2 Z-STROBE- 2
in „Zeigt her Eure interessanten historischen Bauelemente“ · Offtopic ·
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CP_Robot_12b_sch.pdf
IC11A IC11B 37Out 0 s In13 I011t 0 10Out 0 TXD P a a SER0_TXD RXD 38In 0 P P IC11E 74HC14D Pas 1 Sup In 0s 1 4 Out 0 CENTIPAD_A R30 R29 2k7 1k 1k 1 1 a a IC7C 9 In 1 Sup 0+5V In 1p 0 74HC11D IC11F P P Out 8 10In 1 SER0_RXD1 In 1p 0 6 Out 0 Pas 1 Sup In 0s 1 6 Out 0 11In 1 In 1p 0 IC7A 1k 1 In 1 SER0_RXD2 IC7B 74HC14D Out12 2 In 1 SER0_RXD3 74HC11D 13 In 1 1 1 1 1 SER0_RXD4 P P P P 7 7 7 8 R R R R HAREROD +5V +5V r r Marcus Hasenstab P P 2 2 2 2 CP_Robot 4 4 s 1 s 1 s 1 s 1 info@harerod.de a 1 C a 1 C P P P P
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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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Sammlung verschiedener integrierter Schaltkreise auf Alufolie
HD74LS74AP, 4G3S, FG7340, 9009VI, HD74LS74AP, 4G2T, SN74LS74AN, PORTUGAL 8185A, SN74LS74AN, 4G2T, HD74LS393P, SM9036, LM324N, AD7524N, 8423C, SN74LS125AN, PORTUGAL, M74HC32B1, 98732, CD74HC32E, RCA H 801,
in „Preisfindung für Verkauf“ · Markt · · Fotos
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NEC HMC-503AA Leiterplatte
NEC HMC-503A 51 MC74HC02 TA LED1 NOTES Must warn on the drive to transport IC. 5039A RC 121 MC74HC14 MC74HC14 MC74HC14 MC74HC1
in „40 Jahre SMD“ · Mikrocontroller und Digitale Elektronik · · Platinenfotos