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lcdcon.asm
SW 640x480 LCD, wie es in vielen alten * ;* Notebooks verbaut ist. * ;* Außer einem mega8515, einem 74HC32, dem 74x573 Adresslatch im Datenbus, * ;* und einem 64kB SRAM (mit 55ns oder schneller) werden keine weiteren * ;* Bauteile benötig. Neue Daten werden über RS232 mit 115200Baud in den * ;* Speicher
in „LCD Controller für 640x480 LCD mit mega8515“ · Projekte & Code ·
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Teile20.09..pdf
Teile MiniLA / 20.09.08 Preise bei 25 Stück unter Vorbehalt EP incl.Mwst benötigte Menge GP Hauptteil 1 CLPD XC95288XL-6TQG144CDarius 20,70 € 1 Stück 20,70 € 1 Sram K7B803625B-Pl65 EBV 7,30 € 1 Stück 7,30 € 1 Oszillator
in „[S] Leute die einen Logic Analyzer (MiniLA) bauen wollen“ · Markt ·
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nixie_smd.pdf
ADC0)PA0 40 HV_ADC 11 C 30 AVCC JP1 +5V 1 OC HV Supply 31 AGND (SCK)PB7 8 1 2 V GND (MISO)PB6 7 3 4 74HC573D 1 D 10 VCC (MOSI)PB5 6 5 6 r + N +5V 11 GND (SS)PB4 5 7 8 o C5 G (AIN1/OC0)PB3 4 9 10 D 2 1D 1Q 19 7 t +C3 3 7 (AIN0/INT2)PB2 3 N 3 2D 2Q 18 0 c R 4 100nF (T1)PB1 1 ISP G 5 3D 3Q 16 S e H 470µF
in „74HC573 8 Bit Adresslatch - Wozu ist OE?“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan einer IDD-Messschaltung für STM8L-Discovery
Figure 10. STM8L-DISCOVERY IDD measurement circuit U4 MAX9938FEUK+ U6 74H1G66STR U7 74LX1G04CTR U8 M74HC4060TTR T1 STT5PF20V T2 STT5PF20V R20 2 R21 2K R10 R17 R19 R23 30K R26 10K C11 1uF C13 100nF C12 1nF JP1 SB11 SB12 SB14 PF0 PE6 PC4 IDD Measurement IDD WAKEUP IDD CNT EN
in „Strommessung im µA-mA Bereich - Automatischen Umschalten, Ansätze, Fragen“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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Schematic02.pdf
C DTSM-6 74HC14N VCC T X X E C D C C N N R10 I T R E 5 / A A 1 14 PD3 INT1 R C C ADC1 PC1 X3 2 13 A D D5 R11 PS2 10k C10 3 12 A 100n 4 11 PD4 XCK/T0 ADC0 PC0 6 5 10 GND CLK_IN 5 NC 6 9 ADC7 ADC7 6 5 4 3 2 1 0 4 CLK 7 8 VCC AGND 1 1 1 1 1 1 1 9 3 VCC ATMega8-16AU GND R13 2 NC GND VCC U3 DATA_IN 1 DATA 10k AREF 74HC4049N S3 GND VCC ADC6 ADC6 DTSM-6 C11 1 2 3 4 5 6 7 8 DATA_OUT T1 100n AVCC BC846B PB6 XTAL1/TOSC1 B C 1 / PB7 XTAL2/TO0C2 1 1 1 O S SCK PB5 CLK_OUT T2 1 I I C C S O I BC846B T A A I O S M M C7 C 16p
in „Mein erstes AVR Board“ · Platinen ·
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RBC-1200_Control_Panel.pdf
QD 3 e R4 150R 3 dp QC 2 d R5 150R 12 1 c R6 150R 13 RCK QB 15 dp R7 150R GND G QA SM320361G-0 GND 74HC595 DS1 s 11 12 s 7 a DIG1 9 a b DIG2 C 4 c DIG3 8 t 2 6 r 1 d DIG4 W 10 e ( f C4 C10 C6 C3 C8 C7 C9 5 g 3 C dp C DNP DNP DNP DNP DNP DNP DNP C5 DNP SM420401G (CA) L9 L8 L7 L10 L6 L4 L5 VCC LED LED
in „STC ISP Programming Software Sicherheitsfrage“ · Mikrocontroller und Digitale Elektronik ·
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fs20.h
6 * 400 = 8000, with prescaler 128 gives 62.5 * -> test if value is between 33 and 73 */ #define FS20_PULSE_ZERO(x) FS20_BETWEEN((x), 33, 73) /* one is 600uS: F_CPU/10^6 * 600 = 12000, with prescaler 128 gives 93.75 * -> test if value is between 74 and 105 */ #define FS20_PULSE_ONE(x) FS20_BETWEEN((x), 74, 105) /* maximal difference between two pulses is 115.2 uS, * which means 18 timer cycles with prescaler 128 */ #define FS20_PULSE_DIFFERENCE(x,y) FS20_SYMM(x, y, 68) /* ws300 timing: */ /* one is a
in „RFM01 - 838.35MHz ASK OOK / FS20“ · Mikrocontroller und Digitale Elektronik ·
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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 ·
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AN1010.pdf
RST 27 V RH E 5 E PB0 26 1 V SS STRA 4 42 AS PB1 25 STRB 6 40 R/W PB2 9 A0/D0 38 AD0 PB3 24 T V SS 20 PB4 10 A1/D1 37 PB4 22 O PD0 PB5 11 A2/D2 36 AD1 PB5 21 P } 21 PD1 PB6 12 A3/D3 35 AD2 PB6 20 } M D 22 PD2 PB7 13 A4/D4 33 AD3 PB7 19 8 T 23 PD3 IC1 PB3 14 A5/D5 32 AD4 IC2 H O 24 PD4 MC68HC11A1FN PB2
in „Programm zum MC68HC11 auslesen und programmieren“ · Mikrocontroller und Digitale Elektronik ·
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MIC94030BM4.PDF
6-43 MIC94030/94031 Micrel Typical Applications SS* +5V S D MIC94030 G a On L Off 74HC04 * Substrate must be connected to source Figure 1. Power Switch Application +12V Internal Resistor G S Open Drain SS* Output MIC94031 D d a L * Substrate must be connected to source Figure 2. Power
in „MOSFET ohne Body-Diode“ · Analoge Elektronik und Schaltungstechnik ·
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LTC1864.pdf
U 7 V Q A O L S R S V Q A O L S R S U 74 V VD G 6 5 4 3 2 0 9 6 5 4 3 2 0 9 4 5 5 D 1 1 1 1 1 1 1 1 1 1 1 1 1 1 C 5 8 4 U 7 F V 6 2 0 . 20 4 7 4 G C 1 6 1 1 C J C D A A 8 4 8 4 5 U 7 U 7 F 1 1 2 3 U 7 2 2 1 D A C C 4 Ω C 0 U 7 1 4 R 2 I U 7
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ADC_LTC1865.pdf
U 7 V Q A O L S R S V Q A O L S R S U 74 V VD G 6 5 4 3 2 0 9 6 5 4 3 2 0 9 4 5 5 D 1 1 1 1 1 1 1 1 1 1 1 1 1 1 C 5 8 4 U 7 F V 6 2 0 . 20 4 7 4 G C 1 6 1 1 C J C D A A 8 4 8 4 5 U 7 U 7 F 1 1 2 3 U 7 2 2 1 D A C C 4 Ω C 0 U 7 1 4 R 2 I U 7
in „LTC1865 Halber Messbereich“ · Mikrocontroller und Digitale Elektronik ·
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ttester.pdf
PCINT17) 13 D6 4 PC2(TCK/PCINT18) 24 14 R29 6 25 R21 15 D7 PC3(TMS/PCINT19) 26 1 0 360k 8 PC4(TD0/PCINT20) 33−270 16 R 2 10 27 C25 6 9 PC5(TDI/PCINT21) 28 PC6(TOSC1/PCINT22) VCC 39p 4 4 12 PC7(TOSC2/PCINT23) 29 ISP 3 M IC3 11 1 MISO VCC 2 R 2 VCC 13 3 4 14 7 SCK MOSI Vdd Vss Reset 5 6 RESET GND C17 74HC4052 100n 10 74HC4060 9 A 6 B 11 CLKI CLKO 10 74HC4052 INH 12 RESET CLKO 9 10 A 12 9 B ) 14 X0 13 Q4 5 6 INH x 15 X1 X Q5 5 e 11 X2 Q6 4 12 X0 P V HF 1 1 X3 Q7 6 6 14 X1 X 13 T ( 3 5 Y0 3 Q8 14 1 15 X2 5mA/1mA R 2 Y1
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Grundig-DVDP-7000-Service-Manual.pdf
AOL_O 10 Control D502 9 16 3 L504 FB300 CVBS/Y_O_J AOR_O 0(0805)/RLS4AR_I Y2 17 2 VIDEO_IN/OUT VDD 74HC02 Y1 18 1 CVBS D503 R434 SW SLIDE-6P2T 0(0805)/RLS4148 10K AOL_O AL_I If AV_SW=High,Then Input=AV_IN U501D If AV_SW=Low,Then Input=PLAYER 11 Speaker_Control 13 HP_IN3 VDD 12 HP_IN3 VDD 74HC02 J506
in „800x480-Farbdisplay mit uC verwenden“ · Mikrocontroller und Digitale Elektronik ·
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SDR-CQDL-02.pdf
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 Board auf 28200 kHz eingestellt. Im Bild 2 sind die Spektren bei 28200 kHz und 7050 kHz für diese Konfiguration dargestellt
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BB_Schem_75839_b.pdf
3Y3 3A3 32 4 5 6 Y4 10 CS_IO0_B B_D11 3Y4 3A4 4 G1 Y5 9 CS_IO1_B 19 30 1 8 B_CS1_B 5 G2A Y6 7 B_D12 20 4Y1 4A1 29 2 7 G2B Y7 B_D13 4Y2 4A2 1 B_D14 22 4Y3 4A3 27 3 6 MC74LCX138 B_D15 23 4Y4 4A4 26 4 5 R9 1K 1OE 1 RP2 10k x 4 2OE 48 2 3OE 25 Chip Select Address 24 4OE GND CS_LAN_B 0xCC000000 U4A 74LCX16244
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PSpice.ini
fontitalic=0 fontname=MS Sans Serif [PART LIBS] LIB1=1_shot [.slb , .plb] LIB2=7400 [.slb , .plb] LIB3=74ac [.slb , .plb] LIB4=74act [.slb , .plb] LIB5=74als [.slb , .plb] LIB6=74as [.slb , .plb] LIB7=74f [.slb , .plb] LIB8=74h [.slb , .plb] LIB9=74hc [.slb , .plb] LIB10=74hct [.slb , .plb] LIB11=74l [.slb , .plb] LIB12=74ls [.slb , .plb] LIB13=74s [.slb , .plb] LIB14=abm [.slb] LIB15=adv_lin [.slb , .plb] LIB16=analog [.slb , .plb] LIB17=analog_p [.slb] LIB18=ana_swit [.slb , .plb] LIB19=anlg_dev [.slb , .plb] LIB20=anl_misc
in „new Pspice version suckz: Model used by is undefined“ · Analoge Elektronik und Schaltungstechnik ·
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Alto_D1__D2__D3__D4_Power_Amp_Service_Manual.pdf
PCB D3-FR_VER060801 1 17 HB02301 PCB D4 FAN POWER_VER060915 1 18 HB02259 PCB D-3-LED_VER060721 1 19 HC00949 speakon LD4015 female 4 20 HC00950 Combo MIC jack LA1117 90° 4 21 HA04916 header wiring 4P 310mm UL1007 16AWG 1 22 HA04917 header wiring 4P 160mm UL1007 16AWG 1 23 HA04918 header wiring 6P-3P/3P
in „Endstufe reparieren, Bauteil identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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avrcp_m.pdf
k 74VHCT08D COM COM 5 100nN N N N 100n 1 ICCP C C C C C4 R5 SCDA5A0201 D D V V V V D 7 G 1 2 2 1 1 2 3 4 5 6 1 2 3 4 5 6 +5V + 0 0 C17 3 1 A S2 Reset 10µ R7 R8 74HC166D A 1 3 RESET_VGA 1 23 2 74AC08D X3 2
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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z80_peripherie.sch.pdf
pwr 0 sup 0 N C a a a G PA[0..7],PB[0..7],PC[0..7] V IC1 p p p p s SV4 D0 io 08 D0 CLK0 9 in 0 PB4 74HC165N 3 pas 1 D1 io 07 11 in 0 PA4 0 74HC151N 1 in 0 5V 27 2 pas 1 io 06 D1 GATE0 10 out 0 p 7 in 0 SH/LD 15 in 0 C A PIO7 26 D2 D2 OUT0 PIO6 6 G PA0 INH C LED8 A 1 pas 1 D0 D3 io 05 D3 1 C C 9 in 0
in „Retro Fieber: Z80 oder 68000 ?“ · Mikrocontroller und Digitale Elektronik ·
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Aim_TTi_QL_Series_II_Service_Manual_48511-1740.pdf
ULN2003AD SOIC16 IC38 27227-0210 IC SM 4021 IC34-35 ,IC41 27227-0940 IC SM 4094 SO16 IC28 27239-0000 IC SM 74HC00 SO14 IC8 27239-0140 IC SM 74HC14 SO14 IC7 27239-5740 IC SM 74HC574 SO20 IC32-33 27250-2290 IC SM PIC16F887-I/PT 44TQFP IC9 27403-0130 IC SM 24LC16B/SN SOIC8 IC31 35555-5130 PCB - POWER - nQL355/564
in „wegen Aim TTi Netzteil Qualität“ · Analoge Elektronik und Schaltungstechnik ·
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S1L50282F23K200.pdf
CONTROLLER FOR TFT COLOR LCD MODULE S1L50282F23K200 Adaptable LCD Modules Type: NL2432DR22-xxB Type: NL2432HC22-xxA Type: NL2432HC22-xxB SPECIFICATIONS (1st edition) Signature of writer Approved by Date T. ITO Feb. 1, 2005 Checked by Date Prepared by Date R. KAWASHIMA Feb. 1, 2005 Published by Product Design
in „LCD Timing-Controller gesucht“ · Mikrocontroller und Digitale Elektronik ·
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MachXO2FamilyDataSheet.pdf
ns tSU Clock to Data Setup – PIO Input Register MachXO2-2000HC-HE –0.20 — –0.20 — –0.20 — ns MachXO2-4000HC-HE –0.23 — –0.23 — –0.23 — ns MachXO2-7000HC-HE –0.23 — –0.23 — –0.23 — ns MachXO2-256HC-HE 1.75 — 1.95 — 2.16 — ns MachXO2-640HC-HE 1.75 — 1.95 — 2.16 —
in „Statemachine springt in falsche "states" warum?“ · FPGA, VHDL & Co. ·
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pt1000-v1.1.pdf
SCK QC 3 PT4EN SCL QD 4 PT3EN +3V12 QE 5 PT2EN PTCS RCK QF 6 PT1EN QG 7 PT0EN QH D 13 9 N G QH* G 74HC595D 05.04.16 20:11 /home/georg/pt1000/pt1000.sch (Sheet: 1/6) 10k RESET +3V3 R15 4 7 D C 4 N MEGA8-AI ATMega328p G 29 PC6(/RESET) PC0(ADC0) 23 ADC5 0 PC1(ADC1) 24 ADC4 3 N C 1 21 GND PC2(ADC2) 25 ADC3
in „8x Temperaturanzeige mit LCD, SD-Datenlogger und RTC“ · Projekte & Code ·
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Elektronikladen07.pdf
. . . . . . . 72 MSP430 Eval/Proto Boards . . . . . 72 COBRA5329 (*) . . . . . . . . . . . . . . . 20 MSP430 Starter Boards . . . . . . . . 73 COBRA Connect (*) . . . . . . . . . . . 21 MSP430 easyWeb III . . . . . . . . . . 74 HC08 Welcome Kit . . . . . . . . . . . . 22 FlashPro430 . . . . . . . . .
in „MC68000 von Motorolla“ · Mikrocontroller und Digitale Elektronik ·
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korad_ka3005p_display-board.pdf
4 d R17 OE Q2 1 R6 100 5 Ce d ce d ce d ce d c Q1 R7 100 g 100 GND16 VDD Q0 15 R8 100 3 DP NPN VCC 74HC95 D2 D6 D1 D5 D3 GND C Q8 C R12 2 U3 1 9 8 6 100 9 8 VCC Q8 GND 7 GND 11 9 8 6 NPN 10 Q7 6 GND R9 100 10 a DPY 11 MR Q6 5 R10100 7 f a a GND SHCP Q5 R11 100 bc a a Q4 12 STCP Q4 4 R12 100 1 e f bf
in „korad ka3005p“ · Analoge Elektronik und Schaltungstechnik ·
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ISP1160_PHI.pdf
on page 50 14 94 HcRhStatus 32 Section 10.3.3 on page 51 15 95 HcRhPortStatus[1] 32 Section 10.3.4 on page 53 16 96 HcRhPortStatus[2] 32 Section 10.3.4 on page 53 20 A0 HcHardwareConfiguration 16 Section 10.4.1 on page 57
in „USB Host Controller (ISP1160) an StrongARM 1110 anbinden“ · Mikrocontroller und Digitale Elektronik ·
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HAMEG_HM1507-3_150MHZ_Oszilloskop_-_Service_Manual.pdf
_DC 0 P5018 D osx 1° cn c\ı HM4/7 osx 1° 15ÜR LED_GK ' 1_1-1F <\11 † 1 LL Z 1_ 1 >- 1 LED_GK › RFR 74Pxc4oa4 ff O <3 | cz II 74HC4D94 ›' B043 1_1\1R xcaoos 1_ı.11* 1* I1 1x/1AG1Off >( >c xcanox ÜÜO7 SGL xx E0_G 1 1STP Q0 4 O 1 STR 00 4 Q4 ED_G 013044 2 0 02 § ;~† Z 0 02 0s0xox . ROL Laufe; 1_LF 3 03
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Ricoh_MARKINGS.pdf
WLCSP-4-P1 2-14 Voltage Regulator R1114x Series R1114Qxxxx SC-82AB 2-15 R1114Nxxxx SOT-23-5 (SC-74A) 2-16 R1121N Series R1121Nxxxx SOT-23-5 (SC-74A) 2-17 R1122N Series R1122Nxxxx SOT-23-5 (SC-74A) 2-18 R1124N Series R1124Nxxxx SOT-23-5 (SC-74A) 2-19 R1130Hxxxx SOT-89-5 2-20 R1130x Series R1130Dxxxx
in „Elektronik Grundfoss Alpha 2 Pumpe - Bauteilbestimmung!“ · Analoge Elektronik und Schaltungstechnik ·
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Tabelle mit elektronischen Bauteilen und Spezifikationen
Optokoppler BT136-600 BT136-600 60M $\Omega$ 5,3 k$\Omega$ 82 Microcontroller W5080 5V 9,7A 1 $\Omega$ 282 74 xxx 74150N Multiplexer 13 RAM BS62LV256SCP70 18 Triac BT136-600 1691 Optokoppler SFH620A-3 Pin SMD 99 Dual Komparator LM393 IR 227 Mos-Fet IRF4930K 600V 13A 0,54m$\Omega$ TO-247 112 74 xxx 74HC374DW 24 Optokoppler BRT23H Pin 15 74 xxx 74 HCT 161 Counter 30 Treiber UCC 3801 69 EEPROM DS 8921M 8 Mos-Fet IRF2910PB 600V
in „Elektronik Bauteile Neuwertig , meist Leistungselektronik“ · Markt · · Screenshots
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430JTAG.pdf
TMS TMS 2 JTAG 22 10 9 CTDO 1 G TDI TDI 3 NC 10 9 TEST 21 9 10 GND 33K 330R TDO TDO 4 VCC 8 7 XOUT 20 8 R6 74HC244 R15 TEST 5 GND 6 5 RST 18 6 11 UB 9 XOUT GND 6 TDO 2 1 TDI EN_JTAG 17 5 CTCLK 33K 13 A1 Y1 7 330R XOUT 7 CTST 16 4 CTCK CRST R7 15 A2 Y2 5 R16 RST RST 8 15 3 CTMS 17 A3 Y3 3 9 EN_TCLK 14 2 CTDI 33K A4 Y4 330R 1 CRST EN_TCLK R8 19 JTAG J1 33K G 74HC244 R10 R9 LPT 330K 330K +3V B B JTAG T C R17 9013 103 333 R19 3K3 1. MSP430F11X MSP430F11X1 MSP430F13X & MSP430F14X 2. 1.8~3.6V Dc A A 3. CR2032 2001.08.28 1 2 3 4 µç×Ó°fi˝ˆłÕ¾˚˙Ò»‚öˆæˇò„·ª·óµç×ӣѧ
in „MSP430 JTAG -> Layout gesucht“ · Mikrocontroller und Digitale Elektronik ·
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psxpads.txt
--------- 3.interface circuit * PAD example /| 200ohm PAD SEL- ----o< |--------\/\/\/-- PS SEL- \| 74HC14 /| 200ohm PAD CMD- ----o< |--------\/\/\/-- PS CMD- \| 74HC14 /| 200ohm PAD CLK- ----o< |--------\/\/\/-- PS CLK- \| 74HC14 PAD DAT _________ | |\o -----| > ------------- PS DAT | |/ GND HC125 PAD ACK- _________ | |\o -----| > ------------- PS ACK- | |/ GND HC125 DAT & ACK- signal = open drain ------------------------------------------------------------------------------ 4.pad transfer format pad start command = '01h' pad id : 7-4 = controller type : 3-0 =
in „Protokoll Sony PSX2 Gamecontroller?“ · Mikrocontroller und Digitale Elektronik ·
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top2008.pdf
PLD-ATMEL ATF16V8, ATF16V8B, ATF16V8BL, ATF16V8BQ, ATF16V8BQL, ATF16V8C, ATF16V8CEXT, ATF16V8CZ, ATF20V8, ATF20V8B, ATF20V8BL, ATF20V8BQL, ATF22V10, ATF22V10L, ATF22V10B/L, ____PLD-LATTICE GAL16V8, GAL16V8A, GAL16V8B, GAL16V8C, GAL16V8D, GAL20V8, GAL20V8A, GAL20V8B, GAL22V10, GAL22V10A, GAL22V10B, GAL22V10C, GAL22V10D, ____PLD-NS GAL16V8, GAL16V8A, GAL20V8, GAL20V8A, GAL20V8, GAL22V10,, ____PLD-SGS/THOMSON GAL16V8, GAL16V8A, GAL16V8AS, GAL16V8S, GAL20V8, GAL20V8A, GAL20V8AS, GAL20V8S, GAL22V10, ____PLD-VLSI VP16V8, VP20V8, ____RAM-STAND 6116, 6264, 62256
in „[V] Top 853 Universal Programmer + 74er Tester“ · Markt ·
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STM32H7-Disco_full.PDF
2.2uF 100nF 74HC595D R1215 1k0 1k3 PT31TP 1.5mm 29 P22 PI10 P152 R161 U1 C137 TP3 2k0 PI11 PI10 CO16 PI13 1_In+1_Out PU0 PI30 PI1PT41TP 1.5mm GND PR211PR60 PI12 GND 1k0 1_In- 1.0uF TP4 R156 R163 1k0 C138 PR50 PI50
in „STM32H7-Disco erster Test“ · Mikrocontroller und Digitale Elektronik ·
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Display_2_sch.pdf
9 A1$1 IP$1 12 15 G 2 8 7 34 5 16 8 P$1 13 0 3 D C Q2 18 (AD5)PA5 35 4 4D 4Q 17 7 AP$1 IP$1 15 GND 74HC157N R 0 4 N 9 7 XTAL2 (AD4)PA4 36 3 3D 3Q 18 6 AP$1 IP$1 16 D 5 D C 2 19 (AD3)PA3 37 2 2D 2Q 19 5 AP$1 IP$1 17 +5V N 6 N XTAL1 (AD2)PA2 1D 1Q A5 IP$1 G G (AD1)PA1 38 4 A6$1 IP$1 18 7 (AD0)PA0 39 5
in „Grafikfähiger LCD Controller für 320x240 LCD mit 4 Graustufen“ · Projekte & Code ·
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DSO203.pdf
X1 11 3 AIN S1 26 11K 1 3 3 K 3 X3 X0 X0 X3 R29 R31 1 AIN NC 36 L10 R42 Ain 10V 3 OPA2354 R7 R9 2 3 74HC4052PW 74HC4052PW 12K 12K 4 GND NC 35 2V8 L1 3K3 4K7 R17 R21 C21 12 DFS NC 46 2V8 FB R5 R5A C19 C17 GND VDD FB 105 105 22uF/6.3V 16 GND VDD 33 R47 27 GND AD9288-40 VDD 28 51R 29 15 5 L2 C18 C20 C22
in „Welches aktuelle DSO ist gut ?“ · Mikrocontroller und Digitale Elektronik ·
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HC11.pdf
D4 X2 NW3 VCC RTS1 23 52 A5 7 19 D5 GND RTC62421 68B21 M MC-C R9 4,7k RAM1 24 PD3 VRH 51 A6 6 A5 O5 20 D6 C 1 MC-D 1 T6 GND RAM2 25 PD4 VRL 1 A7 5 A6 O6 21 D7 C20 C21 L 2 MC-S 2 T7 PD5 GND A8 27 A7 O7 PPB0 PPB1 s 3 3 T8 68HC11 GND A9 26 A8 R22 4,7k NW6 C r 4 VCC 4 C5 A9 C220n C230n C 5 5 T9 VCC U15 A10
in „MC68HC11 MOPS 1.3e GLCD KS0108 Problem“ · Mikrocontroller und Digitale Elektronik ·
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GL9540_ServiceManual.pdf
D Prlnted CfrcuLÈ Board S 2 200-30165 IC Dlgftal u4,u5 t4c3447P s 2 200-25 851 IC Dtgtral u10,ut3 74HC373N s 1 200-25 801 IC Dfgttal ull 74rrc365N S I 200-25362 IC Dfgital u14 74HC00N S I 200-25086 IC Dtgttal ul6 cD4001BcN NatLonal S 2 200-25L97 IC Digltal ul7,U18 74HC4024N S I 200-25]-52 IC Dtgftal ul9 cD4015BCt{ S 1 200-25596 IC Dfgttal u20 Natlonal S I 200-2526L IC Digltal u2L 7493 S 2 200-253L6 IC Dlgiral 74HC4049N S I 200-43200 Crystal 4.096 MHz Hz tJ22,U23 cD4066BCN Natl-ona1 S 1 '200-25293 IC Dtgftal 50 YI MM-l8N lfonltor Prod S 1
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Arcam-FMJ-P7.pdf
WITH SOFTWARE FOR P7 IC100-1 8S040 IC SKT 40PIN 0.6IN IC101 5J74259 IC 8 BIT ADDRESSABLE LATCH 74HC259N IC102 5J74259 IC 8 BIT ADDRESSABLE LATCH 74HC259N IC103 5J74259 IC 8 BIT ADDRESSABLE LATCH 74HC259N IC104 5M393A IC COMPARATOR LM393AN DIP-8 PACKAGE IC105 5T4N35 Opto Isolator 4N35 JP100 8K004
in „Bandbreite von analogen Audioschaltungen“ · Analoge Elektronik und Schaltungstechnik ·
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Arcam-FMJ-P7.pdf
WITH SOFTWARE FOR P7 IC100-1 8S040 IC SKT 40PIN 0.6IN IC101 5J74259 IC 8 BIT ADDRESSABLE LATCH 74HC259N IC102 5J74259 IC 8 BIT ADDRESSABLE LATCH 74HC259N IC103 5J74259 IC 8 BIT ADDRESSABLE LATCH 74HC259N IC104 5M393A IC COMPARATOR LM393AN DIP-8 PACKAGE IC105 5T4N35 Opto Isolator 4N35 JP100 8K004
in „Bester Audio OPV“ · Analoge Elektronik und Schaltungstechnik ·
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display2.c
#include <avr/io.h> #include "com74hc595.h" #include "display2.h" #include <util/delay.h> unsigned char BackLightState = OFF; void SeriellSenden_lcd_data( unsigned char d ) { SeriellSenden_lcd_Byte( d ); } void SeriellSenden_lcd_nibble
in „LCD ansteuerung/ schieberegister“ · Mikrocontroller und Digitale Elektronik ·
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19410_WFG7002_SFG7002_KM.pdf
AG 4 AG AG 13 D ker IC303 IC303 6 Sync. 5 B C323 50 Ohm AG R304 R305 AG u ref+ TTL 220 1 BU300 4k7 74HC132 3 100p BNC Tastverhaltnis 2 A ker Print AG AG C302 74HC132 AG 0 100n IC302 L300 R ker 1 REF V- 20 -5VA 13 10uH SMD 5k - AG 2 GND OUT 19 SIG fmax IC300 14 3 18 12 C 0 6 - A0 A0 GND L301 + TL084 R
in „Projekt: DDS basierter Funktionsgenerator mit AD5930“ · Mikrocontroller und Digitale Elektronik ·
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TEKTRONIX_Component_Service_Manual_TDS_520B_Mod_CM_Digitizing_Oscilloscope_070-9710-03.pdf
45,SO20.300,24MMT&R A11U45 156–5058–01 IC,DIGITAL:FTTL,TRANSCEIVER,OCTAL,3–STATE,74F2 1CH66 N74F245D 45,SO20.300,24MMT&R A11U46 156–5058–01 IC,DIGITAL:FTTL,TRANSCEIVER,OCTAL,3–STATE,74F2 1CH66 N74F245D 45,SO20.300,24MMT
in „Tektronix TDS744A Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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TSynth_Schematic_V1_1.pdf
1 3 1 C V I0 9 C4 2 2 2 2 2 2 2 2 8 C5 I1 MUX1_Com 1 COM I2 7 C6 6 C7 I3 GND 1 GND U2 I4 5 C8 2 CD74HC4067M 4 C9 2 & 3 cannot be used 0_RX1_MOSI1_TOUCH I5 #U5 duplicated with 26, 27 3 1_TX1_MISO1_TOUCH MUX_Addr_S0 10 S0 I6 3 C10 Teensy_Audio_RevC Display_CS 4 MUX_Addr_S1 11 2 C11 +3V3 2_PWM S1 I7 G
in „Electrotechnic T-Synth DIY Synthesizer - Platinenanalyse“ · Mikrocontroller und Digitale Elektronik ·
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ccba_lago_0321_gb.pdf
mode direct heating ----, , 1, 2, , ---- mode corresponds to the value in chapter “Set circuit (HC1) operating mode”. 09 Heat slope direct heating circuit 0.20–3.00 1,20 Room sensor influence P13 = ----: The mixer circuit operating mode cor- 10 direct heating circuit OFF, 0–20 10 responds to the value
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HausAutoTest.pdf
8C 11 3 D4 R27 B 6 CAN_GND QH 7 2 LED B J D 7 10k U18 9 2 1 HI CAN_H R18 9 1 S 8 CAN_L QH D5 P8 9 74HC595 GND P1 C40 1 2 C37 C39 GND 3 4 C38 GND GND GND V GND 100n 5 6 5 100n 100n 100n CAN 2 5 0 3V3 CON1 GND U15 1ULN2803 11 0 R 1 MAX3378 0 k MOSI0 14 15 1 18 10 1 2 1 VL VCC 14 9 DAT2 R 1 SER QA 1 2
in „Layout prüfen“ · Platinen ·
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HausAutoTest.pdf
CAN_GND QH 7 8 8B G 8C 11 10 D4 R27 B R 2 10k U18 9 11 LED CAN_L R18 9 2 1 R 1 CAN_H QH R28 GND D5 74HC595 P1 1 2 3 4 GND V 5 6 5 P7 CAN 1 5 0 3V3 CON1 U15 1ULN2803 2 R 1 MAX3378 MOSI0 14 15 1 18 3 1 VL VCC 14 9 DAT2 SER QA 1 2 1B M 1C 17 4 CS_SDKarte 2 13 1 Connect:SD_Card_Receptacle QB 2B C 2C 1 I/
in „AT32UC3C2 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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ispdongle.pdf
Application Note AVR910 which micros. details a serial programmer using at AT90S1200. VCC VCC 0 2 J1 U1 74HC244 100K 5 DATA3 1 1G C VCC 4 DATA2 19 2G V 7 2 18 J2 8 DATA6 4 1A1 1Y1 16 LEDI 1 2 GND 6 DATA4 6 1A2 1Y2 14 RST 3 4 GND 8 1A3 1Y3 12 SCK 5 6 GND 1A4 1Y4 MISO 9 10 GND 11 2A1 2Y1 9 13 2A2 2Y2 7 ISP 9 17 2A3 D 2Y3 3 2 DATA7 2A4 G 2Y4 12 10 0 3 1 11 VCC 18 20 C1 21 0.1uF 22 23 24 25 ParallelPort Figure 1 : Schematic for the ATMEL ISP Value Added Dongle Using a 74HC244 Tri-State buffer as the main component, operation is extremely simple. The two Name Function
in „AVR ISP Dongle und AT89S52“ · Mikrocontroller und Digitale Elektronik ·
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ispdongle.pdf
Application Note AVR910 which micros. details a serial programmer using at AT90S1200. VCC VCC 0 2 J1 U1 74HC244 100K 5 DATA3 1 1G C VCC 4 DATA2 19 2G V 7 2 18 J2 8 DATA6 4 1A1 1Y1 16 LEDI 1 2 GND 6 DATA4 6 1A2 1Y2 14 RST 3 4 GND 8 1A3 1Y3 12 SCK 5 6 GND 1A4 1Y4 MISO 9 10 GND 11 2A1 2Y1 9 13 2A2 2Y2 7 ISP 9 17 2A3 D 2Y3 3 2 DATA7 2A4 G 2Y4 12 10 0 3 1 11 VCC 18 20 C1 21 0.1uF 22 23 24 25 ParallelPort Figure 1 : Schematic for the ATMEL ISP Value Added Dongle Using a 74HC244 Tri-State buffer as the main component, operation is extremely simple. The two Name Function
in „Dongle Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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ispdongle.pdf
Application Note AVR910 which micros. details a serial programmer using at AT90S1200. VCC VCC 0 2 J1 U1 74HC244 100K 5 DATA3 1 1G C VCC 4 DATA2 19 2G V 7 2 18 J2 8 DATA6 4 1A1 1Y1 16 LEDI 1 2 GND 6 DATA4 6 1A2 1Y2 14 RST 3 4 GND 8 1A3 1Y3 12 SCK 5 6 GND 1A4 1Y4 MISO 9 10 GND 11 2A1 2Y1 9 13 2A2 2Y2 7 ISP 9 17 2A3 D 2Y3 3 2 DATA7 2A4 G 2Y4 12 10 0 3 1 11 VCC 18 20 C1 21 0.1uF 22 23 24 25 ParallelPort Figure 1 : Schematic for the ATMEL ISP Value Added Dongle Using a 74HC244 Tri-State buffer as the main component, operation is extremely simple. The two Name Function
in „Spannungsveränderung schaltet Relais für ca. 30Sek->nur wi“ · Analoge Elektronik und Schaltungstechnik ·