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marantz-sr8200-9200-service-manual.pdf
QA05 482220931929 IC,OR-GATE74HC32 HC703200Z0 CF61 /S/U CER.0.01µFZ50V DK18103310 QA06 482220930426 IC,CMOS74HC00FLAT HC700000Z0 TAPING CF62 /S/U ELECT.10µF±20%50VRA-2 OA10605020 QA07 532220911578 IC,PCF8574I(I/OEXPANDER) HC10068490
in „MARANZ RC3200 datenkabel belegung gesucht“ · Mikrocontroller und Digitale Elektronik ·
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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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PDF
Wohnraumuhr2_Rev1.2.pdf
7 t f e B30 R131 7 t f e RCK QF 6 B14 B15 R116 5u 12 B31 R132 5 u 12 QG 7 B15 DP DP QH 13 G QH* 9 74HC595N 14 15 B16 SER QA QB 1 B17 11 SCK QC 2 B18 C 10 SCL QD 3 B19 C QE 4 B20 12 5 B21 RCK QF 6 B22 +5V +5V +5V +5V QG 7 B23 QH 6 6 6 6 13 G QH* 9 1C 1 C 1 C 1 C C101V C102V C103V C104V 74HC595N IC101P
in „wohnraumuhr 2 - leiterplatte nach projekt scott huehn“ · Mikrocontroller und Digitale Elektronik ·
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SK-schaltplan.pdf
2 100nF 100nF Voltage CONNECTOR U5A W4 3 3 W4 adjust R16 10K GND Z1 2 2 SOC10 SOC22 1 2 VDD W9 P1 74HC04 W2 1 1 (VPP 'x0/'x5) (PA5-25) JUMPERS SUBD25C-F-COUDE R7 W13 1 2 SOC20 GND DZ 8.2V GND 4.7K USER VDD 10K-RV GND (PA7-25) 1 150-SIL8-4R GND W20 14 1 R17 680 2 D0 1 RS3A 2 U5C GND RV1 1 2 15 W21 3 D1 3 RS3B 4 ENVPP 5 6 R5 10K T3 R18 750 BC547B-NPN-45V 1 2 16 RS3C W22 4 D2 5 6 OSCPI R19 820 17 74HC04 R12 1 2 5 D3 7 RS3D 8 TROMIN HEATER CONTROL POWER 18 U5B GND 1K W25 6 D4 1 RS1A 2 RESETP 3 4 RESETP/ LD6 R20 1K 19 U5D R13 1 2 7 D5 3 RS1B 4 TM2 R15 W6 150 W26 C 20 1K SOC2 9 8 R21 1.2K C 8 D6 7
in „ST Chip auslesen“ · Mikrocontroller und Digitale Elektronik ·
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-_IC_LEXIKON_-_multimaster.pdf
2x8mi 74hc4060ap 9227h LaNrNOS PosFRCkI HerSte PinBA Bezeich1 Bezeich2 Bezeich3 Bezeich4 081 k5 toshiba 2x8mi 74hc148ap 9301h LaNrNOS PosFRCkI HerSte PinBA Bezeich1 Bezeich2 Bezeich3 Bezeich4 082 k5 motor 2x8mi
in „(V) Bauelemente 70er-90er zu verkaufen Vintage Retro“ · Markt ·
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74HC_HCT244.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/HCT244 Octal buffer/line driver; 3-state
in „74lvc244 statt -hc-“ · Mikrocontroller und Digitale Elektronik ·
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74hc147.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/HCT147 10-to-4 line priority encoder Product
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PDF
74hc147.74hct147.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/HCT147 10-to-4 line priority encoder Product
in „Kapazitätsdekade im Selbstbau“ · Analoge Elektronik und Schaltungstechnik ·
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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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DE-DP004_Ver1.0_EN.pdf
segments. CLK_OUT is driven by a buffered output from CLK_IN with 74HC00. DATA_IN is data input pin of the first 74HC595, then all 74HC595 of cascaded boards will be serialized. All those pins receive only CMOS signals. DIMM_IN signal is for brightness control usage,
in „! Vorsicht NEWB 7-Segmentanzeigen via PC ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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elektronische_Bauelemente.pdf
Monostabiler Multivibrator SN74LS221N 25 RS232-Transceiver-IC MC145407P 41 8bit-microcontroller PIC16LC73A-041/SP 9 C-MOS MM74HC266AN MC74HC266 18 Operationsverstärker AD707BQ 18 Spannungspegelumsetzer HEF4104BP 57 Leitungstreiber
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cf-if-2.pdf
14DD3 DD4 9 10 DD11 G 4a NC G 4c D2 D2 7 A6 B6 13DD2 DD3 11 12 DD12 NC 14c D1 D1 8 A7 B7 12DD1 U1 74HC32 DD2 13 14 DD13 2c D0 9 D0 9 A8 B8 11DD0 NC 8 19 DD1 15 16 DD14 ENABLE NC 10 1 DIR DD0 17 18 DD15 NC /DREQ1 7432 15a GND 19 20 VCC (Key) c F F U2 74HC32 NC DMAREQ 21 22 GND IORQ- 1 27a 3 IOWR- 23 24 GND WR- 2 22c DIOR- 25 26 GND 24c RD- 7432 U2 74HC32 IORDY 27 28 CSEL U1 74HC32 4 NC A4 1 R1 E 7a 3 6 c 3K3 DMACK- 29 30 GND E A7 2 5 V 9c U1 74HC32 INTRQ 31 32 IOCS16- 4 7432 NC NC 7432 6 6x DA1 33 34 PDIAG- U3 5 NC 8a A5 1 3 7432 U2 74HC32 DA0 35
in „Z180-Stamp Modul“ · Mikrocontroller und Digitale Elektronik ·
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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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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 Y2 17 S6 4 A3 Y3 16 1
in „Motorola MC68332 und BD32“ · Mikrocontroller und Digitale Elektronik ·
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Bestandsliste_mit_Preisen1.pdf
Bit-Binärzähler (asynchron) 15 Stk 0,15 € 2,21 € HCF4021BE 8 Bit statisches Schieberegister(asynch) 16 Stk 0,20 € 3,16 € 74148 8 Bit Univers. Transc./Port Controller 2 Stk 0,36 € 0,72 € 74HC573 8 Bit Zwischenspeicher 16 Stk 0,18 € 2,88 € 74HC240 8 Bus-Leitungstreiber inv. Tristate 34 Stk 0,17 € 5,78 € SN74LS244
in „Auflösung Elektronik Shop“ · Markt ·
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RPI-OUT4_SCH.PDF
GPIO23 G IC1c IC1d DC- DC or AC 15 16 3 1 4 1 17 3V3 GPIO24 18 GPIO10 (MOSI) GND D 9 & 12 & RE2 K2 19 20 N 21 GPIO9 (MISO) GPIO25 22 G 8 11 1 GPIO11 (SCLK) GPIO8 10 13 2 D 23 24 G 25 GND GPIO7 26 ID_SD ID_SC 74HC132 74HC132 GND 27 28 D 29 GPIO5 GND 30 N +5V GPIO6 GPIO12 G 31 32 D 33 GPIO13 GND 34 N GPIO19 GPIO16 G 35 36 2 D 37 GPIO26 GPIO20 38 N 39 GND GPIO21 40 3 3 G R 3 AQZ102 1 2DC+ DC or AC3 2 IC2a IC2b 3 1DC- DC or AC4 1 1 & 4 & RE3 K3 3 6 1 2 5 2 74HC132 74HC132 +5VGND +3V 14 F 1 F 2 14 2 µ 1 C µ 1 C 0 IC1p 2 2 IC2p 4 3 AQZ102 2 2
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schaltplan-final.pdf
39k 1 9 8 RADR PC2 2 IC4 1 3 ST8 ENA_RADLED VCC R20 R6 74HC14 ST9 PC5 6k2 47k VCC 14 C 9 4 R23 R24 VCC SDI C SDO 5 180 180 12 V 15 6 1 1 11 RCLK QA 1 7 2 2 SRCLK QB 8 3 3 QC 2 9 4 ABSTL R5 R25 R26 ABSTR 4 10 CLR QD 3 10 5 47k 5 13 G QE 4 11 6 KANTEL 180
in „LCD DEM20485 in gerade Zeile springen (c't-Bot)“ · 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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cf-if-2.pdf
14DD3 DD4 9 10 DD11 NC D2 D2 7 13 4c A6 B6 DD2 DD3 11 12 DD12 G D1 D1 8 12 NC G 14c A7 B7 DD1 D0 U1 74HC32 D0 9 A8 B8 11DD0 DD2 13 14 DD13 NC 2c 9 8 19 ENABLE DD1 15 16 DD14 10 NC 1 DIR DD0 17 18 DD15 7432 NC V GND 19 20 VCC (Key) c DMAREQ 21 22 GND F U2 74HC32 NC F 27a IORQ- 1 3 IOWR- 23 24 GND WR- 2 22c DIOR- 25 26 GND RD- 7432 24c U2 74HC32 NC IORDY 27 28 CSEL U1 74HC32 4 7a A4 1 6 c R1 DMACK- 29 30 GND 3 V 3K3 A7 2 U1 74HC32 5 E 9c 4 NC INTRQ 31 32 IOCS16- NC E 7432 7432 6 6x DA1 33 34 PDIAG- A5 1 U3 74HC00 5 NC 8a 3 7432 U2 74HC32
in „Z180-Stamp Modul“ · Mikrocontroller und Digitale Elektronik ·
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BFE-Di_230_schematic.pdf
f) R7 74HC11 7 A(d) A(e) 10 3 Q2 3 R4 8 9 R8 BRI2 R20 7 8 120 C(d) C(e) 120 4 6 10k 1 R 6 HLMP-2685 5 BC847 2 LED_RED VCC U1A GND 74HC11 U8A Q1 3 74HC74 1 4} 2 12 R19 1 2 { 5 13 10k BAR_FF_STATE2 D ~ Q 3 C BC847
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BFE-Di_230_schematic.pdf
f) R7 74HC11 7 A(d) A(e) 10 3 Q2 3 R4 8 9 R8 BRI2 R20 7 8 120 C(d) C(e) 120 4 6 10k 1 R 6 HLMP-2685 5 BC847 2 LED_RED VCC U1A GND 74HC11 U8A Q1 3 74HC74 1 4} 2 12 R19 1 2 { 5 13 10k BAR_FF_STATE2 D ~ Q 3 C BC847
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Bild
Digitale LED-Uhr auf Leiterplatte
Sync. Stunde Minute Wochentag Tag Monat Jahr 12:20 SO 22. 12. 2024 74HC4543N 74HC4543N 74HC4543N 74HC06N 74HC06N 74HC132N 74HC132N 74HC132N 74HC1
in „Uhr mit cmos-ICs“ · Projekte & Code · · Fotos
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Vacuumierer_2021_01_07.pdf
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 8 9 10 11 1k 0,01uF U7F F C 74HC14 0 1 F 4 +12V 4 5 0 C 6 7 13 12 1 1 1 GND 1 A x x Q 13 9 A x x Q 5 R24 2 C C 10 C
in „Vakuumiermaschine Platine - Funktion?“ · Analoge Elektronik und Schaltungstechnik ·
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AD_Frontend8.pdf
max) 2048Hz (norm) 14 7 3C44 5 M 10 SIGIN 15 6 0 4 k 5 0 C29 0,1uF 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/O1 B 9 8 15 XI/O2 4 1 11 74HC4520 11 6 VDD M VCC 13 XI/O3 INH 5 P 10 CXO/I SCKI FMT 3 CYO/I 1 YI/O0 VEE 7 6 BCK BYPAS 9 5 YI/O1 2 7 8 4 YI/O2 Patientenstromkr. Zwischenstromkreis LRCK DOUT YI/O3 U5-B 2 k 3 k 74HC4052 C 11 Q0 CLK
in „ADC Vref auf Ground“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Bestandsliste.pdf
8 Bit statsches Schieberegister(asynch) 16Stk 0,20 € 3,16 € 209 74148 8 Bit Univers. Transc./Port Controller 2Stk 0,36 € 0,72 € 210 74HC573 8 Bit Zwischenspeicher 16Stk 0,18 € 2,88 € 211 74HC240 8 Bus-Leitungstreiber inv. Tristate 34 Stk 0,17 € 5,78
in „Auflösung Elektronik Shop“ · Markt ·
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BLDC-_Controller_rev.1.1.pdf
) Phase U V 4 + V V +C16 + + 1000uF H Q1 Q2 1 0 2 0 IR2181 IRFB3206 IRFB3206 GND L 1 R 1 ATMEGA168-20AU 1 IC5A N$9 R1 3 1 8 8 29 PC6(/RESET) PC0(ADC0) 23 N$24 HIN VB 15 1 24 2 C1 5 M 21 PC1(ADC1) 25 N$27 74HC08D N$26 2 LIN H0 7 D Z N$7 U_OUT 20 GND PC2(ADC2) 26 N$29 0 1uF D 18 AREF PC3(ADC3) 27 4 IC5B
in „BLDC- Controller 44VDC“ · Mikrocontroller und Digitale Elektronik ·
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xone92.pdf
100/25 2 FILT_1_L 22K 1% 4 SW3B C14 C15 10K1% R C5 R23 22K 1% 5 R32 15K 4 4 FILT_2_L 680R 1% C6 6 20KB R40 R3 15P 1JP1 2K2 1% 6 100N 15K 5 100N 5 1K2 1% R4 15P e C3 1K2 1% JP2 G CN1A 1 2 LD1 74HC4052D 74HC4052D 2 33/16 1 SW3A POST_EQ_L 2 R34 +VA A W 3 8K21% R R1 LED_R/G C22 R 47K 1% C16 R28 PRE_R TL072D
in „Fehlersuche in DJ-Mixer (Allen & Heath Xone:92)“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
SN74HC595_1.vhd
library IEEE; use IEEE.STD_LOGIC_1164.ALL; use IEEE.NUMERIC_STD.ALL; entity SN74HC595_1 is Port( clk: in std_logic; data_1: in std_logic_vector(7 downto 0); SN74HC595_1_SER: out std_logic; SN74HC595_1_SRCLK: out std_logic; SN74HC595_1_RCLK: out std_logic); end SN74HC595_1; architecture
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PDF
classd2.pdf
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 4,7u 2 2 4,7u VB + V C4 k 1 V e 4 P$11 VDD VS P$6 3 3 P$6 VS VDD P$11 GND + 3 R + 6 C6 1 U u 0 U 2 C8 k 1 n 8 n 1 4070D P$12 HIN D M
in „H-Brücke DC-Offset“ · Analoge Elektronik und Schaltungstechnik ·
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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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PDF
device_list_hilo_all03_v9-12.pdf
*MC68HC705P6A *MC68HC705P9 *MC68HC705SR3 *MC68HC705X32 (EEPROM) *MC68HC705X32 (EPROM) *MC68HC705X4 *MC68HC711D3(PLCC-44/DIP-40) *MC68HC711E20(PLCC-52/QFP-64) *MC68HC711E9(PLCC-52/QFP-64) *MC68HC711E9/711E20
in „PROM programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SED1374_3Sch.pdf
CON1 GND 28 A12 74HC74N VCC A12 56 31 (A12)PC4 27 A11 A14 2 A11 57 A12 FP6 30 (A11)PC3 26 A10 3 A10 58 A11 FP7 26 3 (A10)PC2 25 1 e 59 A10 FP8 25 VCC 2 (A9)PC1 A9 IC4A A9 A9 FP9 R7 (A8)PC0 24 A8 SW1 VCC 74HC86N A8 62 A8
in „Grafikcontroller S1D13706“ · Mikrocontroller und Digitale Elektronik ·
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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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RPI-OUT2-B_SCH.PDF
(GEN3) GPI023 Os I T2 GPIO10(MOSI) GPGND4 * GPI09(MISO) GPI025_ 1a 74HC132 74HC132 § GPI011(SCLK) GPI08 o l GND GPI07 IDSD IDSC ©+5V © +5V GPI05 GND _ 1e> GPI06 GPI012 GPI019 GPI016 GPI026 GPIO20 GND GPI021 RasnherrvPI2R Shield IC2a IC2b IC2c IC2d U U & u & U :> r-£ ÿ8 P ' L13 74HC132 74HC132 74HC132 74HC132 Q ÿL. GND R7 >+3V f -£X 250K IC1p8 l 5 i l IC2p X X LD 1 o o GND GND GND GND GND GND GND
in „Kann diese Schaltung den 74HC132 killen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RPI-OUT2-B_SCH.PDF
(GEN3) GPI024 >rr T2 GPIO10(MOSI) GND GPI09(MISO) GPI025_ 1CD 74HC132 74HC132 GPI011(SCLK) GPI08 CDI GND GPI07 ID_SD ID_SC ©+5V © +5V GPI05 GND _ 1 GPI06 GPI012 CD GPI013 GND GPI026 GPIO20 GND GPI021 RaspharryPI?R Shield IC2a IC2b ZXMN3A01F IC2c IC2d U U :> r-£ & u P & U ÿ8 ' L 74HC132 74HC132 13 74HC132 74HC132 GND Ol Sil551 R7 Sil551 >+3V ZXMN3A01F _ 1K f 1 |1 250K R12 IC1pg x r r i IC2p X X LO 1 o o GND GND GND GND GND GND GND
in „Kann diese Schaltung den 74HC132 killen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
classd2.pdf
R22 500R 10n 1 L1 LS+ LS- L2 1 + C13 2 C3 P$14 LIN VCC P$34,7u + C11 C12 + 4,7uP$3 VCC LIN P$14 1k5 R20 1 R P$15 P$2 1N4148 D6 P$2 P$15 100n GND VSS COM C7 D4 220n 220n 1N4148 C9 COM VSS P$1 6R2 6R2 P$1 GND LO IRFR1205 IRFR1205 LO GND R7 GND R11 GND GND IC2D V 1 2 GND VB 1 + 5 74HC14D 5 VB + + 5 5 V 1
in „Class D - so machbar?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
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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PDF
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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PDF
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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PDF
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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PDF
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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FGG6V1.pdf
Schalter 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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Schematic_Prints.pdf
Q5 13 30 (A13) PC5 PD5(OC1A) 18 6 2 9 D6 Q6 12 31 (A14) PC6 PD6 (WR) 19 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 ·
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SLA_Antoniak.pdf
Q5 13 30 (A13) PC5 PD5 (OC1A) 18 6 2 9 D6 Q6 12 31 (A14) PC6 PD6 (WR) 19 5 D7 Q7 (A15) PC7 PD7 (RD) 74HC00 11 33 10 9 U5C 74HC00 1 LE PE1 (ALE) RESET 8 OE 32 PE2 (0C1B) X1 21 10 U6 74HC00 74HC573 D 35 PE0 (ICP/INT2) N X2 20 G P5 P6 U1 2 CH5 CH6 ATMEGA8515-16JI U3 R5 R6 U2 74HC4040 470k 470k 62256 GND
in „Wozu Latch vor Ram ?“ · 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 12 11 CLR U3B R 2 5 . 4.7u 100n U1P C6 74HC174N 4 3 C 4 R12 U1D N A B + 3 7 G 100p +5V 5 33 1 C K K 1 0 1 0 D2 GND GND GND 74HC4066N R 2 R 2 1.5KE12A GND GND 5 6 1 K 2 K 7 0 8 0 5 5 R 1 R 1 R 1 R 1 R 1 R1 1 + + R19 220K GND GND GND 1 2 R20 220K
in „Audio GND nutzen“ · Mikrocontroller und Digitale Elektronik ·
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All.txt
1 IC6 74HCT125N 74HCT125N DIL14 Quad bus BUFFER, 3-state 1 IC6 74HC573 74HC573 DIL-20 1 IC6 74HC1G04 74HC1G04 SOT353 1 IC6 74AHC573PW 74AHC573PW TSSOP20 8-bit D latch BUS DRIVER 1 IC6 74AC125N 74AC125N DIL14
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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CP_Robot_12b_sch.pdf
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