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PDF
hc86.pdf
MC74HC86A Quad 2-Input Exclusive OR Gate High–Performance Silicon–Gate CMOS The MC74HC86A is identical in pinout to the LS86. The device inputs are compatible with standard CMOS outputs; with pullup http:
in „Vollbrücke, wo kondensatoren einbauen?“ · Analoge Elektronik und Schaltungstechnik ·
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Propeller_v4_Sch.pdf
15ADDRESS5 ADDRESS12 4 29 /WR_RAM DATA6 17 6D 6Q 16ADDRESS6 ADDRESS7 5 28 ADDRESS13 18 7D 7Q 19 6 27 DATA7 8D 8Q ADDRESS7 ADDRESS6 7 26 ADDRESS8 ADDRESS5 ADDRESS9 1 OC ADDRESS4 8 25 ADDRESS11 /CS_A0-7 0V 11 CLK ADDRESS3 9 24 /RD_RAM ADDRESS2 10 23 ADDRESS10 HC374 latches on +ve edge74HC374N ADDRESS1
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PDF
hc595.pdf
SN54HC595, SN74HC595 8-BIT SHIFT REGISTERS WITH 3-STATE OUTPUT REGISTERS SCLS041B – DECEMBER 1982 – REVISED MAY 1997 SN54HC595 . . . J OR W PACKAGE D 8-Bit Serial-In, Parallel-Out Shift SN74HC595 . . . D OR
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PDF
Kurzeinfuehrung_Target.pdf
Kurzeinführung - IBFWiki http://www.friedrich-eichenzell.de/ibfwiki/index.php?title=Kurzeinf... Die Bauteile 74HC04_DIN 74HC08_DIN und 74HC121 , den Widerstand R_MET_2,2K_0204 , den Kondensator C_FOLIE_0,022µF_RM7,62 und die Steckverbinder K1...K4 finden Sie in der Bibliothek Standard.SYM3001. Die Kontakte K1
in „Target Platinenlayout?“ · Platinen ·
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PDF
MUX_IC_CD74HC4051E.pdf
CD54/74HC4051, CD54/74HCT4051, CD54/74HC4052, CD74HCT4052, Data sheet acquired from Harris Semiconductor SCHS122I CD54/74HC4053, CD74HCT4053 High-Speed CMOS Logic November 1997 - Revised July 2004 Analog Multiplexers
in „Arduino I2C Probleme Sonsoren werden manchmal nicht gefunden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
giessotomat02_sch.pdf
Arduino_Nano_Rev3 SV9 C 1 30 3 C 2 1_D1_[TX] 30_VIN 29 2 V 1 2_D0_[RX] 29_GND 1 1 3 3_RESET 28_RESET 28 1 2 2 74 HC 151 2 4 4_GND 27_5V 27 1 74 HC 237 3 3 3 5 5_D2_{INT0} 26_(A7) 26 2 IC2 4 6 6_D3_{INT1} 25_(A6) 25 3 IC1 R1 U$1 4 D0 W 6 5 7 7_D4_(T0) 24_D19_(A5)_[SCL]24 4 1 A Y0 15 2N7002_WO 3 D1 6 8 23 5 2 14
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AD_Frontend8.pdf
max) 2048Hz (norm) 14 7 3C44 5 M 10 SIGIN 15 6 0 4 k 5 0 C29 0,1uF D DOUT ZEN R 1 R 3 R 1 1n2 D 1uF 74HC4046 1 3 4 2 U12-A 6 VREF1 C1 C2 U12-B 5 74HC00 10uF 10uF 3 Q0 CLK 1 U8 + + 74HC00 CH1 4 2 1 VINL VREF1 14 Q1 CLK CH5 2 13 5 Q2 U14 VINR VREF2 MR 7 12 10 +5V 6 XI/O0 A 3 DGND 1 AGND 12 Q3 U5-A 14 XI/O1 B 9 8 15 XI/O2 4 1 11 74HC4520 11 6 VDD M VCC 13 XI/O3 INH 5 P 10 CXO/I SCKI FMT 3 CYO/I 1 YI/O0 VEE 7 6 BCK BYPAS 9 5 YI/O1 2 7 8 4 YI/O2 Patientenstromkr. Zwischenstromkreis LRCK DOUT YI/O3 U5-B 2 k 3 k 74HC4052 C 11 Q0 CLK
in „ADC Vref auf Ground“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sn74hc595.pdf
SN54HC595, SN74HC595 8-BIT SHIFT REGISTERS WITH 3-STATE OUTPUT REGISTERS SCLS041C – DECEMBER 1982 – REVISED JUNE 2000 SN54HC595 . . . J OR W PACKAGE D 8-Bit Serial-In, Parallel-Out Shift D High-Current 3-State
in „Wieviele 74HC595 am SPI-Bus möglich?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SPS_MUX.pdf
5 I4 O4 14 8 QE 11 6 I5 O5 13 CLK QF 12 7 I6 O6 12 9 QG 13 8 I7 O7 11 D CLR QH D 9 I8 O8 10 +24V D 74HC164N N GND CD+ G ULN2803 4 + K25 K26 K27 K28 K29 K30 K31 K32 O O O O O O O O 1 1 1 1 1 1 1 1 N N N N N N N N IC9B 5 6 7 8 9 0 1 2 10 PRE Q 9 K K K K K K K K 12 D IC4 IC8 2 2 2 2 2 2 2 2 M M M M M M
in „SPS erweitern für 32 Temperatureingänge“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Universalzaehler.pdf
2 _ QF 16 06 ; ~ ALE RESH ~ I I I I I 1 1 1 1 1 1 1I I -----vc• A - I6 Q H ~ ~ PSEN r ~R Q r-"--< 74HC590 <>-B4 P2 1 PO 1~38'$-l -+-H-t--H-+--t-+--+-'ID;-,'1,-./ 74LS7.~4 <Ce#. P2 2 P0.2~35~--~-++-+--+-+-H-++-+--+-+--:co~3c-' ZAHL2 LT13 5 IC5 >--[)~ P2 3 PO 3 ~5~--~~-t-H-+-H-t-+-H-+---';~~ 04 '----I
in „Universalzähler ELV“ · Mikrocontroller und Digitale Elektronik ·
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PDF
gbdso_uk.pdf
. COMPONENTS LIST C2,C4,C5,C8,C9,C11,C12,C14,C17- IC2 = DS1267S100 (Dallas Semiconductor) C21,C23,C27,C29,C30 = 100nF IC4 = MAX114CAG (Maxim) All components SMA (surface C3,C13 = 1pF8 NP0 IC5 = 74HC175D mount assembly) C6,C15 = 15pF NP0 IC6 = 74HC138D C7,C16 = 220pF NP0 IC7 = AT27C256R-12JC in PLCC44
in „Bameboy-LCD mit avr“ · Mikrocontroller und Digitale Elektronik ·
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PDF
gbdso_uk.pdf
. COMPONENTS LIST C2,C4,C5,C8,C9,C11,C12,C14,C17- IC2 = DS1267S100 (Dallas Semiconductor) C21,C23,C27,C29,C30 = 100nF IC4 = MAX114CAG (Maxim) All components SMA (surface C3,C13 = 1pF8 NP0 IC5 = 74HC175D mount assembly) C6,C15 = 15pF NP0 IC6 = 74HC138D C7,C16 = 220pF NP0 IC7 = AT27C256R-12JC in PLCC44
in „Alternative zu teurem Oszilloskop“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
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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PDF
STK200SCHEMATIC.PDF
AD2 4 D2 Q2 17 8 A1 D1 13 RD 10 33pF 2 AD3 5 D3 Q3 16 7 A2 D2 15 0 1 2 3 4 AD4 6 D4 Q4 15 6 A3 D3 16 74HC00 1 2 3 4 5 6 7 8 9 1 1 1 1 1 AD5 D5 Q5 A4 D4 74HC00 74HC00 AD6 7 D6 Q6 14 5 A5 D5 17 D2 A A A A A A A A AD7 8 D7 Q7 13 4 A6 D6 18 BAT85 0 1 2 3 4 5 6 7 9 D8 Q8 12 3 A7 D7 19 4 25 Clock Generation Circuit A R ALE 11 24 A8 W RD 1 C 21 A9 WR OC 23 A10 U3B A15 A11 74HC573 2 A12 4 +5V A8 26 A13 6 R15 CLOCK 1 4 5 A9 A14 4 100R A10 20 A11 22 CE 74HC00 Programming Interface A12 27 OE WE R2 L.E.D +5 62256RAM 82K MOSI R1 1 2 P-RESET 3 4 2K Y1 SCK 5 6 7 8 MISO 9 10 +5V
in „LCD Hardware Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stk200_schematic.pdf
AD2 4 D2 Q2 17 8 A1 D1 13 RD 10 33pF 2 AD3 5 D3 Q3 16 7 A2 D2 15 0 1 2 3 4 AD4 6 D4 Q4 15 6 A3 D3 16 74HC00 1 2 3 4 5 6 7 8 9 1 1 1 1 1 AD5 D5 Q5 A4 D4 74HC00 74HC00 AD6 7 D6 Q6 14 5 A5 D5 17 D2 A A A A A A A A AD7 8 D7 Q7 13 4 A6 D6 18 BAT85 0 1 2 3 4 5 6 7 9 D8 Q8 12 3 A7 D7 19 4 25 Clock Generation Circuit A R ALE 11 24 A8 W RD 1 C 21 A9 WR OC 23 A10 U3B A15 A11 74HC573 2 A12 4 +5V A8 26 A13 6 R15 CLOCK 1 4 5 A9 A14 4 100R A10 20 A11 22 CE 74HC00 Programming Interface A12 27 OE WE R2 L.E.D +5 62256RAM 82K MOSI R1 1 2 P-RESET 3 4 2K Y1 SCK 5 6 7 8 MISO 9 10 +5V
in „ATtiny13 und STK200 über PonyProg2000 flashen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stk200_schematic.pdf
AD2 4 D2 Q2 17 8 A1 D1 13 RD 10 33pF 2 AD3 5 D3 Q3 16 7 A2 D2 15 0 1 2 3 4 AD4 6 D4 Q4 15 6 A3 D3 16 74HC00 1 2 3 4 5 6 7 8 9 1 1 1 1 1 AD5 D5 Q5 A4 D4 74HC00 74HC00 AD6 7 D6 Q6 14 5 A5 D5 17 D2 A A A A A A A A AD7 8 D7 Q7 13 4 A6 D6 18 BAT85 0 1 2 3 4 5 6 7 9 D8 Q8 12 3 A7 D7 19 4 25 Clock Generation Circuit A R ALE 11 24 A8 W RD 1 C 21 A9 WR OC 23 A10 U3B A15 A11 74HC573 2 A12 4 +5V A8 26 A13 6 R15 CLOCK 1 4 5 A9 A14 4 100R A10 20 A11 22 CE 74HC00 Programming Interface A12 27 OE WE R2 L.E.D +5 62256RAM 82K MOSI R1 1 2 P-RESET 3 4 2K Y1 SCK 5 6 7 8 MISO 9 10 +5V
in „DS1820 Code + Atmel90S8515“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK200SCHEM.PDF
AD2 4 D2 Q2 17 8 A1 D1 13 RD 10 33pF 2 AD3 5 D3 Q3 16 7 A2 D2 15 0 1 2 3 4 AD4 6 D4 Q4 15 6 A3 D3 16 74HC00 1 2 3 4 5 6 7 8 9 1 1 1 1 1 AD5 D5 Q5 A4 D4 74HC00 74HC00 AD6 7 D6 Q6 14 5 A5 D5 17 D2 A A A A A A A A AD7 8 D7 Q7 13 4 A6 D6 18 BAT85 0 1 2 3 4 5 6 7 9 D8 Q8 12 3 A7 D7 19 4 25 Clock Generation Circuit A R ALE 11 24 A8 W RD 1 C 21 A9 WR OC 23 A10 U3B A15 A11 74HC573 2 A12 4 +5V A8 26 A13 6 R15 CLOCK 1 4 5 A9 A14 4 100R A10 20 A11 22 CE 74HC00 Programming Interface A12 27 OE WE R2 L.E.D +5 62256RAM 82K MOSI R1 1 2 P-RESET 3 4 2K Y1 SCK 5 6 7 8 MISO 9 10 +5V
in „Schaltplan für STK 200“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stk200_schematic.pdf
AD2 4 D2 Q2 17 8 A1 D1 13 RD 10 33pF 2 AD3 5 D3 Q3 16 7 A2 D2 15 0 1 2 3 4 AD4 6 D4 Q4 15 6 A3 D3 16 74HC00 1 2 3 4 5 6 7 8 9 1 1 1 1 1 AD5 D5 Q5 A4 D4 74HC00 74HC00 AD6 7 D6 Q6 14 5 A5 D5 17 D2 A A A A A A A A AD7 8 D7 Q7 13 4 A6 D6 18 BAT85 0 1 2 3 4 5 6 7 9 D8 Q8 12 3 A7 D7 19 4 25 Clock Generation Circuit A R ALE 11 24 A8 W RD 1 C 21 A9 WR OC 23 A10 U3B A15 A11 74HC573 2 A12 4 +5V A8 26 A13 6 R15 CLOCK 1 4 5 A9 A14 4 100R A10 20 A11 22 CE 74HC00 Programming Interface A12 27 OE WE R2 L.E.D +5 62256RAM 82K MOSI R1 1 2 P-RESET 3 4 2K Y1 SCK 5 6 7 8 MISO 9 10 +5V
in „AVR_90S8535“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK200S.pdf
AD2 4 D2 Q2 17 8 A1 D1 13 RD 10 33pF 2 AD3 5 D3 Q3 16 7 A2 D2 15 0 1 2 3 4 AD4 6 D4 Q4 15 6 A3 D3 16 74HC00 1 2 3 4 5 6 7 8 9 1 1 1 1 1 AD5 D5 Q5 A4 D4 74HC00 74HC00 AD6 7 D6 Q6 14 5 A5 D5 17 D2 A A A A A A A A AD7 8 D7 Q7 13 4 A6 D6 18 BAT85 0 1 2 3 4 5 6 7 9 D8 Q8 12 3 A7 D7 19 4 25 Clock Generation Circuit A R ALE 11 24 A8 W RD 1 C 21 A9 WR OC 23 A10 U3B A15 A11 74HC573 2 A12 4 +5V A8 26 A13 6 R15 CLOCK 1 4 5 A9 A14 4 100R A10 20 A11 22 CE 74HC00 Programming Interface A12 27 OE WE R2 L.E.D +5 62256RAM 82K MOSI R1 1 2 P-RESET 3 4 2K Y1 SCK 5 6 7 8 MISO 9 10 +5V
in „SRam am Atmega162 ohne zusätzliche Bauteile betreiben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stk200_schematic.pdf
AD2 4 D2 Q2 17 8 A1 D1 13 RD 10 33pF 2 AD3 5 D3 Q3 16 7 A2 D2 15 0 1 2 3 4 AD4 6 D4 Q4 15 6 A3 D3 16 74HC00 1 2 3 4 5 6 7 8 9 1 1 1 1 1 AD5 D5 Q5 A4 D4 74HC00 74HC00 AD6 7 D6 Q6 14 5 A5 D5 17 D2 A A A A A A A A AD7 8 D7 Q7 13 4 A6 D6 18 BAT85 0 1 2 3 4 5 6 7 9 D8 Q8 12 3 A7 D7 19 4 25 Clock Generation Circuit A R ALE 11 24 A8 W RD 1 C 21 A9 WR OC 23 A10 U3B A15 A11 74HC573 2 A12 4 +5V A8 26 A13 6 R15 CLOCK 1 4 5 A9 A14 4 100R A10 20 A11 22 CE 74HC00 Programming Interface A12 27 OE WE R2 L.E.D +5 62256RAM 82K MOSI R1 1 2 P-RESET 3 4 2K Y1 SCK 5 6 7 8 MISO 9 10 +5V
in „Kanda AVR Starterboard und noch keine Ahnung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Stk200_schematic.pdf
AD2 4 D2 Q2 17 8 A1 D1 13 RD 10 33pF 2 AD3 5 D3 Q3 16 7 A2 D2 15 0 1 2 3 4 AD4 6 D4 Q4 15 6 A3 D3 16 74HC00 1 2 3 4 5 6 7 8 9 1 1 1 1 1 AD5 D5 Q5 A4 D4 74HC00 74HC00 AD6 7 D6 Q6 14 5 A5 D5 17 D2 A A A A A A A A AD7 8 D7 Q7 13 4 A6 D6 18 BAT85 0 1 2 3 4 5 6 7 9 D8 Q8 12 3 A7 D7 19 4 25 Clock Generation Circuit A R ALE 11 24 A8 W RD 1 C 21 A9 WR OC 23 A10 U3B A15 A11 74HC573 2 A12 4 +5V A8 26 A13 6 R15 CLOCK 1 4 5 A9 A14 4 100R A10 20 A11 22 CE 74HC00 Programming Interface A12 27 OE WE R2 L.E.D +5 62256RAM 82K MOSI R1 1 2 P-RESET 3 4 2K Y1 SCK 5 6 7 8 MISO 9 10 +5V
in „Schaltplan STK200 und STK500 gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK200_schematic.pdf
AD2 4 D2 Q2 17 8 A1 D1 13 RD 10 33pF 2 AD3 5 D3 Q3 16 7 A2 D2 15 0 1 2 3 4 AD4 6 D4 Q4 15 6 A3 D3 16 74HC00 1 2 3 4 5 6 7 8 9 1 1 1 1 1 AD5 D5 Q5 A4 D4 74HC00 74HC00 AD6 7 D6 Q6 14 5 A5 D5 17 D2 A A A A A A A A AD7 8 D7 Q7 13 4 A6 D6 18 BAT85 0 1 2 3 4 5 6 7 9 D8 Q8 12 3 A7 D7 19 4 25 Clock Generation Circuit A R ALE 11 24 A8 W RD 1 C 21 A9 WR OC 23 A10 U3B A15 A11 74HC573 2 A12 4 +5V A8 26 A13 6 R15 CLOCK 1 4 5 A9 A14 4 100R A10 20 A11 22 CE 74HC00 Programming Interface A12 27 OE WE R2 L.E.D +5 62256RAM 82K MOSI R1 1 2 P-RESET 3 4 2K Y1 SCK 5 6 7 8 MISO 9 10 +5V
in „Wer kennt dieses AVR-Board?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
flipdot_V02.pdf
] 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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PDF
Peavey_Semiconductors_Cross_Ref_2009.pdf
BIT P/A BA-6209 70406209 BA-6209 I.C. CA-3086 70423086 TRN ARRAY CA-3280E 70403280 CA-3280 I.C. CD-74HC04 70410004 HEX INVT. BUFFER CD-74HC27 70430027 3 INPUT NOR CD-74HCT11 70430011 CMOS TRIPLE INPUT AND ? Page 15 ORIGINAL ALTERNATE FIELD IN-HOUSE IN-HOUSE REPLACEMENT ORDER NUMBER NUMBER NUMBER NUMBER
in „Transistor Ersatztypen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Peavey_Semiconductors_CrossRef_2010.pdf
BIT P/A BA-6209 70406209 BA-6209 I.C. CA-3086 70423086 TRN ARRAY CA-3280E 70403280 CA-3280 I.C. CD-74HC04 70410004 HEX INVT. BUFFER CD-74HC27 70430027 3 INPUT NOR CD-74HCT11 70430011 CMOS TRIPLE INPUT AND ? Page 15 ORIGINAL ALTERNATE FIELD IN-HOUSE IN-HOUSE REPLACEMENT ORDER NUMBER NUMBER NUMBER NUMBER
in „Transistor Ersatztypen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Artikel_Flashboard.PDF
1 A10 21 19 AD7 1 RD P2.1 C1 EN A10 D7 6 DSR EN P2.2 23 A10 A11 23 A11 10 P1.0 1 P1.0 P2.3 24 A11 74HCT573 A12 2 A12 2 R2 P1.1 2 25 A12 A13 26 20 7 RTS P1.1 P2.4 A13 CS 3 RXD R7 27k D2 IC2.D P1.2 3 P1.2 P2.5 26 A13 A14 1 A14 P1.3 4 27 A14 8 CTS 2 12 11 P1.7 P1.4 5 P1.3 P2.6 28 A15 OE WE 4 DTR EN SCK
in „AT89C51AC2 ISP aber wie?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC_HCT123_Nexperia.pdf
74HC123; 74HCT123 Dual retriggerable monostable multivibrator with reset Rev. 10 — 3 December 2015 Product data sheet 1. General description The 74HC123; 74HCT123 are high-speed Si-gate CMOS devices and
in „Dauer-Trigger verbieten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ElektronikBauteile.pdf
AKL 249-03 0,54 € 2,70 € 105 2 MINI-DIN-Stecker, 6-polig SE-DIO M06 0,69 € 1,38 € 106 2 IC-SCHALTUNG 74HCT 244 0,15 € 0,30 € 107 5 Mini Uhrenquarz, 0,032768 MHz, TC38 0,032768 0,14 € 0,70 € 108 4 DIL-GLEICHRICHTER = DF04 B40C800DIP 0,10 € 0,40 € 109 3 Texas Instruments MSP430F149IRTDT 6,27 € 18,81 € digikey
in „[V] - Elektroniksammlung“ · Markt ·
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PDF
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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Datei
Packages.txt
27 SOIC08 27 SMD2 27 R0805W 27 E2-5 27 C050-035X075 27 0411/15 26 TSSOP20 26 SMARTLED-TTW 26 R0603R 25 SOT23-BEC 25 E1,8-4 25 C2.5-4 24 TQFP44 24 SOD64-12 24 SAL41B 24 RCL_C1206K 24 R1210 24 E5-4 24 E5-
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
Elektronik_Plan.pdf
IC2C GND GND GNDGND PB3(MOSI/OC2) 15 SV1-4 d 5 6 +5V PB4(MISO) 16 SV1-1 e PB5(SCK) 17 SV1-3 f SV3-6 74HC05N 1 n g SV2-4 SV2-6 IC1 C n DUMMY Q2 INT IC2B 4 1 0 aLED3 GND GNDINT 3 4 1 C D C 1 b COSV2-1 V C5 N n c 74HC05N IC2P G C 1 d IC2A N 100n e R23 1 2 7 G f S3 g R22 150 74HC05N n B3F-1002 SV2-2 z DUMMY
in „ADC Masseproblem?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EK2005_v1.1_Bill_of_Materials.pdf
PLACED 24 1 C24 CAP 0402 100nF cer.smd 25 1 C25 CAP 0402 100nF cer.smd 26 1 C26 CAP 0402 100nF cer.smd 27 1 C27 CAP 0402 100nF cer.smd 28 1 C28 CAP 0603 1uF cer.smd 29 1 C29 CAP 0402 100pF cer.smd 30 1 C30 CAP 0402 100pF cer.smd 31 1 C31 CAP 0603 1uF cer.smd 32 1 C32 CAP 0402 100nF cer.smd 33 1 C33 CAP 0402
in „NP Kondensator in Schaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EtherBoardSch.pdf
3 A7 A2 6 Q1 D1 7 D2 D2 49 AD1/PA1 GND GND /NICINT 2 HC04 1 4 INT1 SD14 87 1K0 1K0 1K0 1K0 D7 A7 25 A8 A3 9 Q2 D2 8 D3 D3 48 AD2/PA2 23 6 INT0 SD15 A8 Q3 D3 AD3/PA3 X2 6M4 2 4 6 8 /CSR 20 CS A9 24 A9 A4 12 Q4 D4 13 D4 D4 47 AD4/PA4 A0 5 SA0 LED0 61 /WR 27
in „Elektronik über ein Ethernet Netzwerk steuern?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Druckmessung.pdf
RESET) PC0(ADC0) 24 Q6 SV1-6 R6 A 22 GND PC2(ADC2) 25 V 21 AREF PC3(ADC3) 26 + 20 AVCC PC4(ADC4/SDA) 27 p PC5(ADC5/SCL) 28 C 2 p 9 PB6(XTAL1/TOSC1) GND C3 C 2 R2 LED1 100n z 1 10 PB7(XTAL2/TOSC2) PD0(RXD) 2 R3 7a COM 3 H T PD1(TXD) 4 150 R4 4c 8 +5V 6 X 8 PD2(INT0) 5 R5 150 2d GND PD3(INT1) 6 R7 150 1e
in „ATmega8 ADC-Durchschnittsberechnung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74hc240dcrxtx.pdf
2N4124 IC1 TO92 HEAT SINK 2 1 GND V 7 GND R49 FSK RIT SWITCH/TX OFF-SET IC4D 3 0 ( 42 5K Q7 1K 2 IC3 = 74C240 = 8V-12V 11 A B 10 0 R12 F R 1 1 1 E 10K 3 0 9 4 IC3=74HC240 = 8V 12 C 1 U 5 D 3 D 4 GND R T C SF GND GND 1 KL IC2 = RM PICOKEYER = JHP RMK 74HC4066N GND GND IC4C VALUES OPTIMIZED FOR 21.060MHz 9
in „einfacher 20m-CW-Sender mit AD9850 und MOSFET“ · HF, Funk und Felder ·
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PDF
K2000-schematics.pdf
R234 C243 C242 T SD5400 VN0605T 5.11K1% 103 103 C 2 ADQ0- 2 3 7 1 3 4 6 ADQ0 5 1 U148-A DISCHARGE 74HCT02 7 U148-B L104 AGND 74HCT02 1 +5VR R225 BLM32A07 470R 2 C201 3 AGND Q127 104 AGND VN0605T 1 Q133 VN0605T ADQ3 74HCT02 2 1 ISIG 1 L102BLM32A27 ADQ3- 6 1 3 2 5 4 3 U153-A 3 74HCT02 Q131 1 U153-B 7
in „Kalibrierung Keithley 2000 Multimeter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
85272_lc444_schaltplan.pdf
Q6 6 2 I1 O1 17 MK15 7 1 18 MK16 10 Q7 9 I0 O0 SCLR Qs1 LED-Cube ULN2803 +5V 74HC595 IC1 23 24 PCINT8 ADC0 PC0 PCINT9 ADC1 PC1 25 PCINT10 ADC2 PC2 AVCC 18 26 +USB 27 PCINT11 ADC3 PC3 20 PCINT12 SDA ADC4 PC4 AREF C5 C6 0 K +5V R18 28 PCINT13 SCL ADC5 PC5 ADC6 19 2 0 L1 4K7 29 PCINT14
in „LED CUBE selberbauen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Z180.pdf
1 2 3 4 5 6 A7 74HC00D 5 74HC00D 6 2 SDREQ 74HCT32D 4 3 A N 22p IC2B 1 1 R1 A G IC2A 3 WE XTAL1 2 C17 1k 1 18.432 MHz GND GND GND IC1A D Q VCC VCC U$1G$1 4 IC1B R2 G 22p U2 6 7 XTAL2 VCC_2 5 100n 13 ST /MREQ 63 5 OE VCC_3 17 60 /HALT /IORQ 62 1k C16 9 38 C15 4 3 t 61 66 VCC RX_AVR/2.5A 10 PD0 VCC 27 10K e 65 /RFSH /WR 67 74HCT32D TX_AVR/2.4A 11 PD1 AVCC 100n 100n R /M1 /RD C14 32 U1 13 SDREQ PD2 R12 2 1 1 VCC DQ0 BUSACK 12 PD3 AREF 29 C2 C9 S A18/TOUT 33 DQ1 14 LATCH 13 PD4 ~RESET 4 AVR_RESET/3.1B
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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5500-0080_VQC_DisplayAdapter_V2R1.pdf
11 R14 10K 3 Z3 VCC VCC OUT QG R4 G2B Y4 QH 13 Y5 10 R15 10K AO3401A 3 33R 9 R16 10K Q4 GND GND MC74HC164_SM1 Y6 7 1 2 MCP120T-460I/TT Y7 SAFETY DC LIMITER SP1 SP2 74HC138N 3 Z4 LED DUTY CYCLE CTL SLAVE J2 AO3401A R5 SCKOUT MASTER Q5 1 SCK (OUT) R23 U6B 1 2 33R DOUT 2 MOSI (OUT) 9 A Q 12 DL- 3 DLATCH
in „Als Mikro noch Makro war: Die "Dicke Tal- Uhr"“ · HF, Funk und Felder ·
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74HCT221__Nexperia.pdf
company name where appropriate. • Table 4: Derating values for tototal power dissipation updated. 74HCT221 v.3 20161026 Product data sheet - 74HC_HCT221 v.2 Modifications: • The format of this data sheet has been redesigned to comply with the new identity guidelines of NXP Semiconductors. • Legal texts have been adapted to the new company name where appropriate. • Type numbers 74HC221N, 74HC221D, 74HC221DB and 74HCT221N removed. 74HC_HCT221 v.2 19901201 Product specification - - 74HCT221 All information provided in this document is subject to legNexperia B.V. 2024. All rights
in „Frequenz- bzw. Ton- Toff- Limiter bauen“ · Mikrocontroller und Digitale Elektronik ·
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ToneLabSE_Service_manual.pdf
UPC4570G2-E2 (TS) KLM-2455/2500 5 324003042 IC TC7W04F (TE12L) (TS) KLM-2455/2500 2 324004146 IC HD74HC595FPEL (TS) KLM-2455/2500 1 324004165 IC HD74HC4040FPEL (TS) KLM-2455/2500 1 324004176 IC HD74HC05FPER (TS) KLM-2454 1 324006007 IC MSM5118165F-60JS7R1 (TS) KLM-2455/2500 1 324007002 IC BA10358F-T1
in „74 HC 595 Defekt feststellen?“ · Mikrocontroller und Digitale Elektronik ·
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FreePDF_XP_File.pdf
23 XTAL2 GND 63 3 CON103 PB6 56 24 XTAL1 A 2 CON102 PB7 57 MM74HC02 VCC 1 58 U2C Q1 ATmega128-16AI V1 CON10 59 8 LED 60 10 V2 + C4 C5 C6 C7 C8 CON64 5V1 1u 100n 100n 100n 100n 9 12MHz K GND MM74HC02 A GND C1 C2 C3 A U2D 100n 22p 22p 11 Title 13 GND GND GND GND 12 Size Number Revision MM74HC02 B Date: 16-Jan-2006 Sheet of GND File: Z:\ROUKO\..\steuerprint_V_EU.Sch Drawn By: 1 2 3 4 5 6 X1
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DM-KIT-SSK_for_BF533.pdf
: 12-Jun-2007 Sheet of File: D:\产品化方案 白金版 SSK533\stat定板it最r终wn 改y图 .ddb 1 2 3 4 5 6 1 2 3 4 E J56 R74 GND 1 1 21 21 VCC1V8 /RESET /RESET 0 3 2 22 23 DVCC1V8 D 4 4 24 24 R83 3V3 D 6 5 25 26 R84 VCC1V5 TEST2 TP75 DMB_SPI_MISO TP87 TEST1 R76 GND 7 7 27 27 R86 TEST0 1 1 VCC1V5 DMB_SPI_CSBI R77 9 8 A28 29
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flash.pdf
USB_RTS 2 S 2 T PE0 O #I2C_SDA 13 12 3 4 PF12 6 C 0 U PG1 X PE2 15 C 16 PE1 PF11 PB2 J P 1 E B 17 18 74HC14 PB1 5 6 PB0 3 J3 J3 B PE3 PC13 7 0 8 $COM_RTS $USB_RTS $PG1 PE5 19 20 PE4 U20E #PC5 X #PC4 11 10 PA7 9 0 10 PA6 11 _ 12 #PC2 #PC3 #PC4 #PC5 74HC14 PA5 N PA4 1 1 1 1 PA3 13 O 14 PA2 15 C 16 2 I 2
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arm.pdf
4kPID150103PID1504 PIR1PIR10601R Q4PID1505 VCC PIOE501Q6PID1506 R107 4k7 Q7PID1507 PIR1PIR10701 Q7'ID1509 GND 74HC595D C104VCC 100n PIC10401 PIC10402 V313 KP-2012YC C GND R1 21 C D16D6D 56 PFPGA_CONFIGIG PID161PID16PIR1PIR12PIV3102 PIV3101 74HC14D GND V323 KP-2012EC R1 51 D16F6 56 13 12 PFPGA_STATUSUS PID161PID16PIR1PIR15PIV3202 PIV3201 74HC14D GND V3V3 KP-2012SGC 56 61 PIR1PIR16PIV3301VCCV3302 R125 1k 3 V404 POFPGA_CONF_DONER1PIRPIV4BC847C 2 GND D D C108VCC * Not assembled components 100n PIC10801 PIC10802 Created: 05.05.2010 tpl GND
in „ARM Board Layout“ · Platinen ·
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document.pdf
Efficiency (%) - - 63 - Output Power (W) - - 13.64 24.78 Speed (rpm) 5700 - 4700 2800 Torque (mNm) - 166.54 27.42 83.27 Application Examples: Lumbar Supports Johnson Electric sales@johnsonelectric.com http://www.johnsonelectric.com HC658L-101 Low Voltage DC Motors Outline Drawing: Performance Curves: Units in
in „Lager für 18v Motor“ · Offtopic ·
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DS203V2.6_SCH.pdf
X3 X0 X0 X3 R29 R31 1 AIN NC 36 L10 R42 OPA2354 2 K 12K 12K GND NC Ain L1 3K3 4K7 10V 3 R7 R9 2 3 74HC4052PW 74HC4052PW C21 4 DFS NC 35 2V8 R5 R5A R17 R21 C19 C17 12 GND VDD 46 FB 2V8 FB 105 105 16 GND VDD 33 R47 22uF/6.3V 27 GND AD9288-40 VDD 28 29 15 5 51R L2 C18 C20 C22 32 GND VDD 48 4 U7 CESD5V0AP
in „Oszilloskop aus STM32 und FPGA“ · Mikrocontroller und Digitale Elektronik ·
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voltcraft_lsp1403_Maplin_N27GG_Manson_SSP-7080_Extech_382260_psu-adjustable-voltage-0-36-v-dc-0-5-a-80-w_sch.pdf
KEY_COM U15 +5VA P0 P1 P2 P3 P4 P5 P6 P7 PB6 PB7 PB0 M1 M2 M3 M4 M5 M6 M7 M8 M9 CLK CS IN OUT U12MC74HC4052 L 1 Y1 VDD 16 R70 10K +5VA C32 C41 C42 C43 C44 C45 C46 C47 C48 C49 C50 C51 C56 C57 C58 C59 C60 C61 C62 C63 C64 C52 C53 C54 C55 13 12 V 2 Y0 Y 15 CURR X X0 14 3 Z1 X 14 VOL R72 10K C76 104 +5VA
in „Voltcraft LSP-1403 Netztgerät zerschossen“ · Mikrocontroller und Digitale Elektronik ·
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schaltplan.pdf
1 2 3 VDD3V3 470 VDDLED VDD3V3 470 R23 R20 U4 R22 R21 CD74HC4050M96 D D D L R 0 E E 1 16 T 7 1 3 7 1 0 L 4 L 2 VCC N.C 15 I 4 R - 4 R - X D E X 3 1Y 6Y 14 _ 3 5 A T L L R 4 1A 6A 13 E GPIO2 LED 5 K A 5 2Y N.C/212 M LED6 1 C 2 X USB_TXD 6 2A 5Y 11 T E R E Y 7
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SDR-CQDL-02.pdf
Vergleich mit dem Quarzoszillator betrachtet werden. Bild 2: Spektren des Blueberry Boards mit dem CY27EE16 Chip bei einer eingestellten Mittenfrequenz von 28200 kHz (grün) sowie nach der Teilung durch 4 am Ausgang des 74HC74 (gelb) bei 7050 kHz. Für einen Mittenfrequenz von 7050 kHz wird das Blueberry