-
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 ·
-
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 ·
-
PDF
Teileliste-04-18-2233.pdf
9 0,80 EUR 0,28 EUR 32 Spannungsregler ET7805 0630 3 0,10 EUR 33 Standardquarz, Grundton 8,000 Mhz HC49/U-S 8,0000-HC49U-S 10 0,25 EUR 0,09 EUR 34 Standardquarz, Grundton 8,000 Mhz HC18 8,0000-HC18 2 0,27 EUR 0,09 EUR 35 Standardquarz, Grundton 12,000 Mhz HC49/U-S 12,0000-HC49U-S 2 0,21 EUR 0,07 EUR 36 Standardquarz, Grundton 16,000 Mhz HC49/U-S 16,0000-HC49U-S 12 0,25 EUR 0,09 EUR 37 Standardquarz, Grundton 16,000 Mhz HC49/U-S 2 0,05 EUR 38 Standardquarz, Grundton 16,000 Mhz HC18 16,0000-HC18 5 0,29 EUR 0,10 EUR 39 Standardquarz, 3. Oberton
in „Bauelemente abzugeben“ · Markt ·
-
PDF
Teileliste-04-19-1539.pdf
9 0,80 EUR 0,28 EUR 32 Spannungsregler ET7805 0630 3 0,10 EUR 33 Standardquarz, Grundton 8,000 Mhz HC49/U-S 8,0000-HC49U-S 0 0,25 EUR 0,09 EUR 34 Standardquarz, Grundton 8,000 Mhz HC18 8,0000-HC18 0 0,27 EUR 0,09 EUR 35 Standardquarz, Grundton 12,000 Mhz HC49/U-S 12,0000-HC49U-S 0 0,21 EUR 0,07 EUR 36 Standardquarz, Grundton 16,000 Mhz HC49/U-S 16,0000-HC49U-S 0 0,25 EUR 0,09 EUR 37 Standardquarz, Grundton 16,000 Mhz HC49/U-S 0 0,05 EUR 38 Standardquarz, Grundton 16,000 Mhz HC18 16,0000-HC18 0 0,29 EUR 0,10 EUR 39 Standardquarz, 3. Oberton
in „Bauelemente abzugeben“ · Markt ·
-
PDF
Teileliste-04-19-1957.pdf
9 0,80 EUR 0,28 EUR 32 Spannungsregler ET7805 0630 3 0,10 EUR 33 Standardquarz, Grundton 8,000 Mhz HC49/U-S 8,0000-HC49U-S 0 0,25 EUR 0,09 EUR 34 Standardquarz, Grundton 8,000 Mhz HC18 8,0000-HC18 0 0,27 EUR 0,09 EUR 35 Standardquarz, Grundton 12,000 Mhz HC49/U-S 12,0000-HC49U-S 0 0,21 EUR 0,07 EUR 36 Standardquarz, Grundton 16,000 Mhz HC49/U-S 16,0000-HC49U-S 0 0,25 EUR 0,09 EUR 37 Standardquarz, Grundton 16,000 Mhz HC49/U-S 0 0,05 EUR 38 Standardquarz, Grundton 16,000 Mhz HC18 16,0000-HC18 0 0,29 EUR 0,10 EUR 39 Standardquarz, 3. Oberton
in „Bauelemente abzugeben“ · Markt ·
-
PDF
Teileliste-04-20-1111.pdf
9 0,80 EUR 0,28 EUR 32 Spannungsregler ET7805 0630 3 0,10 EUR 33 Standardquarz, Grundton 8,000 Mhz HC49/U-S 8,0000-HC49U-S 0 0,25 EUR 0,09 EUR 34 Standardquarz, Grundton 8,000 Mhz HC18 8,0000-HC18 0 0,27 EUR 0,09 EUR 35 Standardquarz, Grundton 12,000 Mhz HC49/U-S 12,0000-HC49U-S 0 0,21 EUR 0,07 EUR 36 Standardquarz, Grundton 16,000 Mhz HC49/U-S 16,0000-HC49U-S 0 0,25 EUR 0,09 EUR 37 Standardquarz, Grundton 16,000 Mhz HC49/U-S 0 0,05 EUR 38 Standardquarz, Grundton 16,000 Mhz HC18 16,0000-HC18 0 0,29 EUR 0,10 EUR 39 Standardquarz, 3. Oberton
in „Bauelemente abzugeben“ · Markt ·
-
PDF
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 ·
-
PDF
SCHEMATIC1___PAGE1.pdf
D1A NOTE: This Logic is used to pull down 74HC00 data bus pins during system reset. DS 1 A[0..19] RW 2 3 D2A D1B & 74HC32 74HC00 VCC C1 VCC 10n RESET 1 4 D[0..15] 2 1 3 5 & 6 D3A 9 1 5 4 D6 2x 512kB NVRAM 2x 512kB FLASH 74HC05 1 1 2 3 4 6 7 8 8
in „Schaltung mit 68332“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
TSL220.PDF
SOES003 – AUGUST 1990 – REVISED JUNE 1991 APPLICATION INFORMATION VCC VCC VCC VCC 14 16 6 3 4 16 5 SN74HC4024 1/2 J K SN74HC153 OUT CLK Q CK 12 6 7 2 1 15 1 QA 11 5 C0 Y Output C TSL220 SN74HC76 QB C1 4 9 4 To P 2 QC 6 3 C2 5 CLR QD C3 14 A Range 7 B 2 Select Inputs 1 8 From P NOTE: Adjust C for useful
in „timer 2 interrupt?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
nkat20-21.pdf
.170 -.126 74HC 390 SMD -.355 -.237 -.182 74HC 21 SMD -.383 -.255 -.196 74HC 393 SMD -.404 -.238 -.176 74HC 30 SMD -.225 -.150 -.115 74HC 423 SMD -.913 -.609 -.468 74HC 32 SMD -.256 -.151 -.112 74HC 540 SMD -.596 -.397 -.305 74HC 73 SMD -.270 -.180 -.138 74HC 541 SMD -.423 -.249 -.184 74HC 74 SMD -.206 -.121 -.090 74HC 563 SMD -.543 -.362 -.279 74HC 86 SMD -.180 -.120 -.092 74HC 573 SMD -.476 -.280 -.207 74HC 112 SMD -.687
-
PDF
Schaltplan_Gesamt.pdf
R82 LD33 QG 7 QG 7 VCC QH R62 VCC QH R83 13 GND 9 LD13 13 GND 9 LD34 G QH* R63 G QH* R84 LD14 LD35 74HC595N 74HC595N 4 r r r r r r r C C + e D e D e D e D e D e D e D 0 2 g L g L g L g L g L g L g L C C R71 R85 LD15 1 LD36 R72 . R86 ] 14 SER QA 15 LD16 5 14 SER QA 15 LD37 4 QB 1 [ QB 1 . 11 SCK QC 2 R73 LD17 L 11 SCK QC 2 R87 LD38 [ 10 3 10 3 D SCL QD 4 R74 LD18 SCL QD 4 R88 LD39 L 12 QE 5 12 QE 5 RCK QF 6 R75 LD19 RCK QF 6 R89 LD40 VCC QG 7 VCC QG 7 GND QH R76 LD20 GND QH R90 LD40 13 9 13 9 R8 - 93 = 270 Ohm G QH* R77 LD21 G QH* R91 LD42 74HC595N 74HC595N
in „Schieberegister ( M74HC959) bei 0V an SI undefinierte Ausgabe“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
IC_LEXIKON_-_NEU.pdf
Bezeich4 AbgMeng ab k5 ALLE30 toshiba 2x8mi 74hc4060ap 9227h LaNrNOS Pos EurSStFREIKHerSte PinBA Bezeich1 Bezeich2 Bezeich3 Bezeich4 AbgMeng ab k5 5stk40 toshiba 2x8mi 74hc148ap 9301h LaNrNOS Pos EurSStFREIKHerSte PinBA Bezeich1 Bezeich2 Bezeich3
in „(V) Bauelemente 70er-90er zu verkaufen Vintage Retro“ · Markt ·
-
PDF
Midi-Controller-Entwurf-01.pdf
N INH XB6 74HC14N G 1 SH/LD +5V 74HC14N Flash[6..10] IC304F IC301F X308-1 5 6 74HC165N 5 6 X302-4 74HC14N XA5 10 74HC14N XB7 11 SER 9 3 12 A QH 3 0 IC302A XA8 B MEGA8-P R 1 XA9 13 C X302-5 13 12 IC305A XA10 14 D
in „Midicontroller zur Steuerung einer DMX-Software“ · Projekte & Code ·
-
PDF
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 ·
-
Datei
Bauteile.txt
Digi-Key Neupreis @ 1 Stk.: 2.73000USD Neupreis @ 1 Stk.: 2.73000USD VHB: 1.50 EUR Anzahl: 2 MPN: MC74HC244ADTG Desc: 74HC Series Octal 3-State Non-Inverting Buffer/Line Driver/Line Receiver URL: https://octopart.com/mc74hc244adtg-on+semiconductor-1280928 Lieferant: Digi-Key Neupreis @ 1 Stk.: 0.50000USD
-
PDF
marantz-sr8200-9200-service-manual.pdf
HC009505K0 Q683 IC,TC74VHC00FS HC005105K0 JU82 JACK,LGY6501-0600 YJ01004670 Q684 IC,TC74VHC32FT HC009505K0 3.5MINIJACK L691 EMIFILTER,DSS306-91-F-223Z FM12223010 Q685 IC,TC74VHC125FT HC009405K0 QR44 IC,
in „MARANZ RC3200 datenkabel belegung gesucht“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
-_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 ·
-
PDF
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 ·
-
PDF
MAX4617-MAX4619.pdf
three single-pole/double-throw (SPDT) 4 switches (MAX4619). Pin Compatible with Industry-Standard 6 74HC4051/74HC4052/74HC4053 and 1 These CMOS devices can operate continuously with a MAX4581/MAX4582/MAX4583 +2V to +5.5V single supply. Each switch can handle Guaranteed On-Resistance 7 Rail-to-Rail® analog
in „CMOS analog multiplexer MAX4619“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Peavey_Semiconductors_Cross_Ref_2009.pdf
D FLIP-FLOP 74H238 70410238 3 TO 8 DECODER 74HC02 QUAD 2 INPUT 70410002 NOR GATE 74HC04 70430004 CMOS HEX INVERT 74HC08 70430008 QUAD AND GATE 74HC10 70430010 CMOS 74HC14N (SCHMITT) 70420014 TRIGGER INVERT 74HC32P 70410032 74HC85 (4 BIT) 70410085 MAGNITUDE COM. 74HC86 QUAD EXCLUSIVE 70410086 OR GATE 74HC123 (ONE SHOT) 70430123 DUAL TRIGGER 74HC132 QUAD 2 INPUT 70400132 NAND GATE 74HC221 70430221 DUAL NON RETRIG 74HC148 70400148
in „Transistor Ersatztypen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Peavey_Semiconductors_CrossRef_2010.pdf
D FLIP-FLOP 74H238 70410238 3 TO 8 DECODER 74HC02 QUAD 2 INPUT 70410002 NOR GATE 74HC04 70430004 CMOS HEX INVERT 74HC08 70430008 QUAD AND GATE 74HC10 70430010 CMOS 74HC14N (SCHMITT) 70420014 TRIGGER INVERT 74HC32P 70410032 74HC85 (4 BIT) 70410085 MAGNITUDE COM. 74HC86 QUAD EXCLUSIVE 70410086 OR GATE 74HC123 (ONE SHOT) 70430123 DUAL TRIGGER 74HC132 QUAD 2 INPUT 70400132 NAND GATE 74HC221 70430221 DUAL NON RETRIG 74HC148 70400148
in „Transistor Ersatztypen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
ElektronikBauteile.pdf
gerade WSL 20G 0,07 € 0,58 € 82 2 Pfostenstecker, 20-polig, mit Verrieglung, gerade PSL 20 0,37 € 0,74 € 83 2 Pfostenstecker, 20-polig, mit Verrieglung, gew. PSL 20W 0,59 € 1,18 € 84 0,66 Flachbandkabel AWG28, 24-pol., farb., 3m-Ring AWG 28-24F 3M 9,45 € 6,24 € ~2m übrig 85 10 Hohlstecker, Øi= 2,1mm Øa
in „[V] - Elektroniksammlung“ · Markt ·
-
Datei
rbook_src.txt
shared clock, shared latch for output of the 8 7-segment displays const byte STP_Out_1_dataPin = 5; //75HC595_1 Pin14 const byte STP_Out_1_latchPin = 6; //75HC595_1 Pin12 const byte STP_Out_1_clockPin = 7; //75HC595_1 Pin11 //PTS(parallel to serial) for button input const byte PTS_In_1_latchPin = 11; //74HC165 Pin1 const byte PTS_In_1_clockPin = 13; //74HC165 Pin2 const byte PTS_In_1_dataPin = 12; //74HC165 Pin9 //CNY70-sensor (used as light-barrier for rolling-mechanism) const byte CNY70_In_Pin = 0; /*CNY seen from above, printed side showing to the
in „mc-Roadbook: Tachosignal entstören“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
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 ·
-
Bild
Grüne Leiterplatte mit Bestückungsdruck
F+Co. Opto-Net V.1.0 ST1 ST2 L621 OK3 L621 OK4 L621 OK5 L621 OK6 IC12 74HC541 IC13 IC18 IC1 74HC541 IC6 74HC573 ROMO ROM1 RAMO RAMI IC14 IC13 IC10 IC11 IC12 IC16 IC15 IC14 IC13 IC10 IC9 IC10 IC11 IC12 IC13 IC14 IC15 IC16 IC17 IC18 IC19 IC20 IC21 IC22 IC23 IC24 IC25 IC26 IC27
in „80C535 SBC - Unterlagen?“ · Mikrocontroller und Digitale Elektronik · · Layouts
-
Bild
Schaltplan mit ATmega8 und 74HC595
SW1, SW2, R1, R2, R3, U1 ATmega8A-PU, C2, C1, U2 74HC595, D1 bis D4, R4 bis R7, U3 74HC595, D5 bis D8, R8 bis R11, U4 74HC595, D9 bis D12, R12 bis R15, U5 ATtiny85, C4, R16 bis R19, GND, +5V
in „Fragen zur Schaltung“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
-
Bild
Zwei grüne Leiterplatten in einem Aluminiumgehäuse
74HC00N, 74HC85N, FFxN9217, V1.1, Zeitumstellung, 3643458R, Y40_250427, accurat, POE, LAN, 5V, 12V, 9V, INPUT 85-265Vac
in „1Hz aus DCF Wandler auf 50 Hz Synchromotor (Schaltwerk)?“ · Offtopic · · Platinenfotos
-
PDF
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 ·
-
Datei
logic_dil.txt
7416 7 74150 6 74175 5 AC 02 21 AC 04 1 AC 11 9 AC 32 31 AC 74 32 AC 138 15 AC 139 12 AC 151 18 AC 153 10 AC 163 5 AC 191 21 AC 373 25 AC 374 16 AC 541 34 ACT 373 14 HC 04 1 HC 10 15 HC 11 18 HC 14 3 HC 20 4 HC 27 23 HC 30 3 HC 42 6 HC 85 26 HC 86 3 HC 107 21 HC 109 21 HC 112 2 HC 123 43 HC 133 17 HC 137 2 Keramik HC 138 1 HC 139 26 HC 151 14 HC 153 5 Keramik HC 154 16 HC 157 60 HC 160 24 HC 164 4 HC 165 1 HC 173 25 HC 175 2 HC 190 2 HC 191 31 HC 193 19 HC 194 21 HC 221
-
PDF
dac8512.pdf
pulse of the final load. +5V DAC8512 4 The DAC’s clock input will be pulled high and the counter reset 74HC139 #2 VOUT2 to zero. As was shown in Figure 35, both the 74HC161’s and 16 4 5 8 VCC 1Y0 the DAC8512’s CLR pins are connected to a simple R-C timing 2 circuit that resets both ICs when the power in
in „µC soll Strom rausgeben“ · Mikrocontroller und Digitale Elektronik ·
-
Bild
Schaltplan einer Mikrocontroller-Schaltung mit LEDs
SW1 Button 1, SW2 Button 2, R1 10K, U1 ATmega85A-P, R2 470, R3 10K, U2 74HC595, LED Blau R4 220, LED Blau R7 220, LED Rot R8 220, LED Rot R11 220, LED Rot R12 220, LED Rot R16 220, LED Rot R19 220, LED Rot R20 220, LED Rot R21 220, LED Rot R23 220, LED Rot R24 220, LED Rot R25 220, LED Rot R26 220, LED Grün R27 220, LED Grün R28 220, U3 74HC595, U4 74HC595, AVR-ISP-6, C1 100 nF, C2 100 nF, R5 10K, R6 10K, R9 220, R10 220, R13 220, R14 220, R15 220, R17 220, R18 220, R22 220, R29 220, R30 220, R31 220, R32 220, R33 220, R34 220, R35 220
in „Fragen zur Schaltung“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
-
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 ·
-
PDF
STK300_Stromlaufplan.pdf
OE A3 470nF 3 VOUT VIN 1 13 8 EN + - 10 A A A 3 A A A A A11 A4 D233pF P P P P P P P P 4 A9 A5 C6 N 74HC00 4 A8 A6 G S1 74HC00 A13 A7 100nf WR WE A12 3V3 C4 C3 BAT85 1 R A15 A14 R4 470nF 2 220uF U3B A W 680R +5V AGND SW SPST WR 4 U3A Memory Expansion GND GND 6 1 RD 5 3 CS 2 74HC00 74HC00 Decoupling Capacitors
-
PDF
STK300S.pdf
OE A3 470nF 3 VOUT VIN 1 13 8 EN + - 10 A A A 3 A A A A A11 A4 D233pF P P P P P P P P 4 A9 A5 C6 N 74HC00 4 A8 A6 G S1 74HC00 A13 A7 100nf WR WE A12 3V3 C4 C3 BAT85 1 R A15 A14 R4 470nF 2 220uF U3B A W 680R +5V AGND SW SPST WR 4 U3A Memory Expansion GND GND 6 1 RD 5 3 CS 2 74HC00 74HC00 Decoupling Capacitors
in „Kanda AVR Starterboard und noch keine Ahnung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Magazin_Bauteile.pdf
Farnell 311-9293 0,527 2,11 4 CD74HC4050M96 6x Puffer, nichtinvertierend 2V-6V 16-SOIC Texas Instruments Digikey 296-14529-1-ND 0,450 1,80 2 5 SN74HC244N Puffer DIP 20 Texas Instruments Farnell 311-9483 0,770 3,85 3 1 CD74HC125M Puffer
-
PDF
lpc2468board.pdf
62K-V-B R101 10k R102 10k R103 10k R104 100k D13A 100k D13B 100k D13C 1 1 2 3 1 4 5 1 6 FPGA_IO_0 C103 74HC14D C104 74HC14D C105 74HC14D GND GND GND 100n 100n 100n R105 56 VCC GND VCC GND VCC GND GND V36 S5 S6 S7 KP-2012SGC DTSM-62K-V-B R106 DTSM-62K-V-B R107 DTSM-62K-V-B R108 10k R109 10k R110 10k R111 100k D13D 100k D13E 100k D13F 9 8 11 10 13 12 1 1 1 FPGA_IO_1 C106 74HC14D C107 74HC14D C108 74HC14D GND GND GND 100n 100n 100n GND C109 GND GND D VCC 100n D * Not assembled components Created: 01.10.2009 TPL GND ARM7-Controllerboard Checked: <CheckDate> <CheckedBy> Document
in „NXP verschenkt ARM-Chips“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
resteliste_2.pdf
Bezeichnung Angebot 24C02 WMN6P 30 SO8 2 KBit (256 x 8 Bit) 3,00 € 28F02DA 25 PLCC40 256K *8 Flash 8,00 € 74FCT244 50 SO20 DigitalIC 5,00 € 74HC373DW 50 SO20 TTL 5,00 € 74HC374D 50 SO20 TTL 5,00 € 74HCT4051 50 DIL16 TTL 5,00 € 74LS123 50 SO16 TTL 5,00 € 93C66BN6 25 DIL8 Serial EEPROM 3,00 € AD1100A 10 SO8 Analog
-
PDF
69034fe-6.pdf
< TRIGGERPULSEWIDTH<OUTPUTPULSEWIDTH CLK 4 TRIG 2 D PS Q 5 V+ 3 U4 6 C2 CLK R Q 0.1µF 1 1 GND V+ 8 74HC74-A PHILIPS SEMICONDUCTOR C1, 0.1µF 2 7 SDI SDI U6 OE V+ + LTC6903 16 V 3 6 10 9 C3 SCK SCK CLK CLK Q1 7 0.1µF OUTPUT 2n fCLK Q2 PULSE = f 4 5 Q3 6 WIDTH CLK SEN SEN CLK Q4 5 16 10 3 4 6 12 D PS Q
in „I2C Deadlock beim Senden - LTC6904“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
62522_FHT8V_2_km_um.pdf
P2.2/CL0 SEG10 54 1K +3V R16 D5 BUZ P2.3/BUZ SEG11 53 A 1 10K 25 P3.0/LCDSY SEG12 52 LL4148 26 51 74HC08 1 27 P3.1/LCDSY SEG13 50 IC2 IC3 28 P3.2 SEG14 49 R2 13 2 SDA 5 EEPROM P3.3 SEG15 48 T7 BCW67C T6 1K 11 & 3 SCL 6 6 VCL0 SEG16 A 12 7 C15 7 SEG17 47 8 VCL1 SEG18 46 ST3 ST4 BCW67C 74HC08 24C021 VCL2
in „Welcher µC wurde hier verbaut? Heizkörperregler SmartHome“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
LTC1864.pdf
74AC74 74AC86 U6 U7 C18 PRE Q 74HC163AD 74HC163AD 5V DIG 0.1μF D 1 RESET 16 1 RESET 16 2 VCC 15 2 VCC 15 U10 vCLK 3 CLK RCO 14 3 CLK RCO 14 LTC1799 CLR Q P0 Q0 P0 Q0 4 P1 Q1 13 4 P1 Q1 13 100k 1 V+ 5 5V
-
PDF
ADC_LTC1865.pdf
74AC74 74AC86 U6 U7 C18 PRE Q 74HC163AD 74HC163AD 5V DIG 0.1μF D 1 RESET 16 1 RESET 16 2 VCC 15 2 VCC 15 U10 vCLK 3 CLK RCO 14 3 CLK RCO 14 LTC1799 CLR Q P0 Q0 P0 Q0 4 P1 Q1 13 4 P1 Q1 13 100k 1 V+ 5 5V
in „LTC1865 Halber Messbereich“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Roland_G-70_Service_Notes_.pdf
+ D 5 CN8 1 SW0 2 SW1 TO ENCODER BOARD 3 ENCA ENC_SW1 4 GND 5 ENCB (CN1) 53015-0510 D D +5 IC11C R74 D +5 IC11A R75 10K 6 5 ENCA0 2 1 74HC14 IC11D C40 IC11G 1 74HC14 100 100nF C37 8 9 D 10nF D +5 74HC14 74HC14 D 7 R76 5VREF FL2 IC11F 10K ELKTR391CA IC11B 1 3 5VREF 12 13 R77 ENCB0 4 3 CN9 74HC14 D 2
in „Roland G-70 fährt nicht hoch.“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
Roland-G-70-Service-Manual.pdf
GAIN D +5 CN8 1 SW0 2 SW1 ENC_SW1 TO ENCODER BOARD 3 ENCA 4 GND 5 ENCB (CN1) 53015-0510 D D +5 IC11C R74 + IC11A R75 10K 6 5 D 5 ENCA0 2 1 74HC14 IC11D C40 IC11G 1 74HC14 100nF C37 100 8 9 D 10nF D +5 74HC14 74HC14 D 7 R76 5VREF FL2 IC11F 10K ELKTR391CA IC11B 5VREF R77 1 3 12 13 ENCB0 4 3 2 CN9 74HC14 D
in „Roland G-70 fährt nicht hoch.“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
stk300full.pdf
8 EN A A A 4 A A A A11 A4 Extern al Power Source (DC 33pF 10 P P P A P P P P D or AC) P A9 A5 C6 N 74HC00 A8 A6 G 74HC00 4 WR A13 A7 3V3 100nf C4 C3 S1 4 WE A12 R4 D2 BAT85 1 R A15 A14 470nF 2 220uF SW SPST U3B A W 680R U3A +5V AGND WR 4 MEMORY EXPANSION GND GND 6 1 RD 5 3 CS 2 74HC00 74HC00 Decoupling
in „stk300 LCD Interface Problem“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AN-339JP.pdf
to malfunction. In order to To enable the user to understand what latch-up is and how it e make MM54HC/MM74HC high speed CMOS logic easy to has been eliminated, it is useful to review the operating of a use and reliable it is very important to eliminate latch-up.simple discrete SCR, and then apply this
in „Induktionsspannung bei bistabilen Relais (1 Spule) direkt an Prozessor“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
sch2378.pdf
PC6 12 PC6 4-A4 5-D2 114 P41 19 20 P42 115 87 PF3 9 10 PF2 86 P40 113 13 PC7 116 P43 21 22 P44 117 85 PF1 11 12 PF0 5-B3 P41 114 P40 PC7 4-A4 5-D3 118 P45 23 24 P46 119 84 5-B2 P41 83 P62 13 14 P61 82 P42 115 73 PD0 120 P47 25 26 P90 121 81 P60 15 16 PD7 5-B3 P43 116 P42 PD0 74 PD1 4-C4 5-B1 122 P91
in „Renesas E10A-Emulator“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MAX187_MAX.pdf
BARRIER MUST BE ISOLATED POWER SCLK/INPUT CLOCK +5V 6N136 +5V 8 1 7 200 14 QH 3k 7 2 SER QG 6 6 3 74HC595 QF 5 11 SCK QE 4 10 F 5 4 QD 3 D11 (MSB) 74HC04 12 RCK QC 2 MAX187 6N136 1 D10 0.1 F 1 3 8 1 10 QB 15 D9 VDD SHDN 200 74HC04 SCLR QA 16 D8 2 AIN CS 7 3k 7 2 +5V 4 8 6 3 13 8 ANALOG REF SCLK 5 4 0.1 F INPUT 4.7 F 5 GND DOUT 6 470 9 6N136 QH′ QH 7 D7 1 8 14 SER QG 6 D6 2 7 74HC595 QF 5 D5 SIGNAL 8.2k 11 QE 4 GROUND 3 6 SCK 3 D4 4 5 12 QD 2 D3 RCK QC 1 D2 10 QB 15 D1 +5V SCLR QA D0(LSB) 16 +5V 13 8 0.1 F Figure 16. 12-Bit Isolated ADC 16 ___________________________________
in „AD-Wandler mittels Optokoppler anbinden“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
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
-
PDF
Artikel_Flashboard.PDF
P1.2 P3.2 18 17 COM1 P1.3 P3.3 +5V A8 16 15 RD A15 10µ P1.4 P3.4 D3 R5 A9 14 13 WR 63V P1.5 P3.5 BAT85 K A10 12 11 PSEN +5V 1 P1.6 P3.6 P1 A11 10 9 ALE P1.7 P3.7 8 C6 A12 8 7 +5V 11 A13 6 5 14 C3 14 K7 IC5.C 10k IC2 = 74HC126 IC2 IC5 & IC5.D & 100n A14 4 3 A15 2 1 IC5 = 74HCT00 7 100n 7 12 13 9 10 3 3
in „AT89C51AC2 ISP aber wie?“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
All.txt
, preset and clear 1 IC4 74HC595D 74HC595D SO16 8-bit SHIFT REGISTER, output latch 1 IC4 74HC32N 74HC32N DIL14 Quad 2-input OR gate 1 IC4 74HC14N 74HC14N DIL14 Hex schmitt trigger INVERTER 1 IC4 74HC138N 74HC138N DIL16 3-line to
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·