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csvview.pdf
zwingend in den ersten beiden Spalten Datum im Format „TT.MM.JJJJ“ und Uhrzeit im Format „HH:MM“, „HH:MM:SS“ oder „HH:MM:SS,<Sekundenbruchteil>“ enthalten. Das Spaltentrennzeichen ist normalerweise das Semikolon. DieAnzahl der Datenspalten ist nur begrenzt durch die maximale Zeilenlänge von 1400 Zeichen. Bei
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ml280epson_tcm3-37706.pdf
ESC I Dezimal Zeichen Dezimal Zeichen Dezimal Zeichen Dezimal Zeichen 0 à 16 § 128 à 144 § 1 è 17 ß 129 è 145 ß 2 ù 18 DC2 130 ù 146 DC2 3 ò 19 DC3 131 ò 147 DC3 4 ì 20 DC4 132 ì 148 DC4 5 ° 21 ø 133 ° 149 ø 6 £ 22 " 134 £ 150 " 7 BEL 23 Ä 135 BEL 151 Ä 8 BS 24 CAN 136 BS 152 CAN 9 HT 25 Ü 137 HT 153
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Datei
RFM_02_test_IRQ.bas
= Low , Phase = 0 , Clockrate = 4 , Noss = 0 'Config Spi = Soft , Din = Pinb.4 , Dout = Portb.3 , Ss = Portb.2 , Clock = Portb.5 'init the spi Spiinit Waitms 100 Toggle Led Call Rf_cmd(&Hcc00) Call Rf_cmd(&H8b62) '433MHzband, 11.5pf, fsk90kHz, 2MHz clock Call Rf_cmd(&Ha620) '433.92MHz Call Rf_cmd(&Hc811
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Display_v1.pdf
2RESETH 4 RESET (ADC0/PCINT0)PA0 37LCD_NO_RES + 2 0 (ADC1/PCINT1)PA1 35CS2 3 4 Q 2 7 (ADC2/PCINT2)PA2 34CS1 5 6 2 p XTAL2 (ADC3/PCINT3)PA3 33CD RESET C n 8 (ADC4/PCINT4)PA4 32RW 3 0 n XTAL1 (ADC5/PCINT5)PA5 31EN C 1 2 0 29 (ADC6/PCINT6)PA6 30 GND D S 1 2 S E C n 27 AREF (ADC7/PCINT7)PA7 V V V D D D D D
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vga_prototyp_rev011.pdf
X1-3 R A D5 4 F 1 G 1 IC5 D6 5 G X1-4 R GND 9 RESET (ADC7)PA7 33 D7 6 H 74HC244N X1-5 D (ADC6)PA6 34 GND N X1-6 5 L (ADC5)PA5 35 2 CLK G X1-7 1 C 12 36 CE 15 B XTAL2 (ADC4)PA4 37 PL 1 INH X1-8 S 13 (ADC3)PA3 38 SH/LD X1-9 D XTAL1 (ADC2)PA2 39 74HC165N +5V X1-10 32 (ADC1)PA1 40 X1-11 +5V AREF (ADC0)PA0
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Winkelmesser.pdf
6 A 8 4 b A 2 c d 1 e 9 f 10 g DP 5 7-SEG_SA10-21 IC1 LED5 9 RESET (ADC7)PA7 33 7 a A 3 (ADC6)PA6 34 6 b A 8 (ADC5)PA5 35 4 c 12 XTAL2 (ADC4)PA4 36 2 d 37 1 e 13 (ADC3)PA3 38 9 f XTAL1 (ADC2)PA2 39 10 5 32 (ADC1)PA1 40 g DP 30 AREF (ADC0)PA0 7-SEG_SA10-21 AVCC 31 AGND (SCK)PB7 8 LED6 (MISO)PB6 7 7 a A 3 10 VCC (MOSI)PB5 6 6 b A 8 11 GND (SS)PB4 5 4 c (AIN1/OC0)PB3 4 2 d 3 1 e (AIN0/INT2)PB2 2 9 f (T1)PB1 1 10 5 (T0/XCK)PB0 IC2 g DP 29 1 16 7-SEG_SA10-21 (TOSC2)PC7 I1 O1 (TOSC1)PC6 28 2 I2 O2 15 LED7 (TDI)PC5 27 3 I3 O3 14 7 a A 3 (TDO)PC4
in „12 Stk. 7Seg.-Anzeigen Multiplexen“ · Mikrocontroller und Digitale Elektronik ·
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Winkelmesser2.sch.pdf
c 2 d 1 e 9 f 10 5 g DP 7-SEG_SA10-21 LED4 7 a 3 6 A 8 b A 4 c 2 d IC1 1 e 9 33 9 RESET (ADC7)PA7 34 10 f 5 (ADC6)PA6 g DP (ADC5)PA5 35 7-SEG_SA10-21 12 XTAL2 (ADC4)PA4 36 37 13 (ADC3)PA3 38 XTAL1 (ADC2)PA2 (ADC1)PA1 39 32 AREF (ADC0)PA0 40 30 31 AVCC 8 AGND (SCK)PB7 7 (MISO)PB6 LED5 10 VCC (MOSI)PB5 6 7 a A 3 11 GND (SS)PB4 5 6 b A 8 4 4 c (AIN1/OC0)PB3 3 2 (AIN0/INT2)PB2 d (T1)PB1 2 1 e (T0/XCK)PB0 1 9 f 10 g DP 5 29 (TOSC2)PC7 28 7-SEG_SA10-21 (TOSC1)PC6 (TDI)PC5 27 LED6 (TDO)PC4 26 7 a A 3 25 6 b 8 (TMS)PC3 24 4
in „12 Stk. 7Seg.-Anzeigen Multiplexen“ · Mikrocontroller und Digitale Elektronik ·
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Winkelmesser3.sch.pdf
2 c d 1 e 9 f 10 5 g DP 7-SEG_SA10-21 LED4 7 a A 3 6 8 4 b A c 2 d IC1 1 e 9 33 9 RESET (ADC7)PA7 34 10 f 5 (ADC6)PA6 g DP (ADC5)PA5 35 7-SEG_SA10-21 12 XTAL2 (ADC4)PA4 36 37 13 (ADC3)PA3 38 XTAL1 (ADC2)PA2 39 (ADC1)PA1 32 AREF (ADC0)PA0 40 30 AVCC 31 8 AGND (SCK)PB7 7 (MISO)PB6 LED5 10 VCC (MOSI)PB5 6 7 a A 3 11 GND (SS)PB4 5 6 b A 8 4 4 c (AIN1/OC0)PB3 3 2 (AIN0/INT2)PB2 2 1 d (T1)PB1 e (T0/XCK)PB0 1 9 f 10 g DP 5 29 (TOSC2)PC7 28 7-SEG_SA10-21 (TOSC1)PC6 (TDI)PC5 27 LED6 (TDO)PC4 26 7 a A 3 25 6 b A 8 (TMS)PC3 24
in „12 Stk. 7Seg.-Anzeigen Multiplexen“ · Mikrocontroller und Digitale Elektronik ·
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717-0933-01.pdf
27 (MOSI/PCINT2)PB2 12 PB2 10 DCD OSCO 28 R104 22 GND (SCK/PCINT1)PB1 11 SCK PB1 6 RI 10k 53 GND (SS/PCINT0)PB0 10 PB0 R102 23 0 0 0 42 PC7 10k 22 CBUS0 1 1 1 (A15)PC7 41 PC6 13 CBUS1 17 (A14)PC6 40 PC5 14 CBUS2 3V3OUT 2 3 4 (A13)PC5 39 12 CBUS3 15 1 1 1 (A12)PC4 PC4 CBUS4 USBDP USB-DP C C C (A11)PC3
in „Kleines ATMEGA128-Board mit USB“ · Mikrocontroller und Digitale Elektronik ·
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Datei
utf8_funcs.txt
der Codepage 437 ------------------------------------------------------------------------ 32: 33: ! 34: " 35: # 36: $ 37: % 38: & 39: ' 40: ( 41: ) 42: * 43: + 44: , 45: - 46: . 47: / 48: 0 49: 1 50: 2 51: 3 52: 4 53: 5 54: 6 55: 7 56: 8 57: 9 58: : 59: ; 60: < 61: = 62: > 63: ? 64: @ 65: A 66: B 67:
in „Cursorpositionierung, Farben und Codepage 437 Ausgabe im Linuxterminakl“ · Projekte & Code ·
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radmarathon_led_treiber.sch.pdf
C2 C1 GND C3 7 8 2 9 10 X2-2 10 100n 100n D N SV1 G GND IC2 10k 9 RESET (ADC7)PA7 33 R1 (ADC6)PA6 34 +5V (ADC5)PA5 35 IC4 100n 12 XTAL2 (ADC4)PA4 36 1 I1 O1 16 (ADC3)PA3 37 2 I2 O2 15 C5 13 38 3 14 XTAL1 (ADC2)PA2 39 4 I3 O3 13 32 (ADC1)PA1 40 5 I4 O4 12 30 AREF (ADC0)PA0 6 I5 O5 11 1 3 3 3 3 3 3 4
in „ATMEGA32 LED's ansteuern / Kabellänge“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan.pdf
PB4 DGND SCK N 53 GND (MISO)PB3 13 5 N 10 7 G (MOSI)PB2 12 4 G 18 PG3(TOSC2) (SCK)PB1 11 3 AVR ISP (SS)PB0 10 2 19 PG4(TOSC1) D 1 42 G 43 (A15)PC7 41 34 PG2(ALE) (A14)PC6 40DRG_B SPINDEL_RUN JP2 33 PG1(RD) (A13)PC5 39DRG_A SPINDEL_DIR D 1 2 1 PG0(WR) (A12)PC4 38 N PEN (A11)PC3 LSZ_B G (A10)PC2 37LSZ_A
in „ATMega128 lässt sich programmieren aber tut nix“ · Mikrocontroller und Digitale Elektronik ·
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xMegaTeile.pdf
C-EUC0603 C10 CSD 1 ATXMEGA128 ATXMEGA128 IC1 ATXMEGA128A1-AU CSD 1 ENC28J60 ENC28J60 IC3 30363 CSD 1 ES2D SS24 D1 Digikey 1 FT232RL FT232RL IC5 3021 CSD 1 L5973D L5973D IC2 Digikey 1 MAX3232 MAX232 IC4 MAX 3232 CSE Reichelt MICROSD_SF- 1 MICROSD MICROSD_SF-MICROSD SD1 20195 CSD 1 TRJ0011 TRJ0011 U$1 450001
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xMegaTeile.pdf
C-EUC0603 C10 CSD 1 ATXMEGA128 ATXMEGA128 IC1 ATXMEGA128A1-AUCSD 1 ENC28J60 ENC28J60 IC3 30363 CSD 1 ES2D SS24 D1 CSD 1 FT232RL FT232RL IC5 3021 CSD MICROSD_SF- 1 MICROSD MICROSD_SF-MICROSD SDSLOT 20195 CSD 1 L5973D L5973D IC2 Digikey 1 TRJ0011 TRJ0011 U$1 450001 Pollin 1 220u CPOL-EUG C5 VF 220/50 K-G Reichelt
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Datei
flap_mehrzeilig.htm
","W","X","Y","Z","0","1","2","3","4","5","6","7","8","9",".",",","&","!","?","-","_","Ü","Ä","Ö","ß"," "); ziffer=zeichensatz.indexOf(zeichen); ziffer++; buchstabe=zeichensatz[ziffer]; return buchstabe; } //Ausgabe function part(){ $(what).html(fertig[zaehler]); zaehler++; setTimeout (part,150); }
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xMegaTeile.pdf
C-EUC0603 C10 CSD 1 ATXMEGA128 ATXMEGA128 IC1 ATXMEGA128A1-AU CSD 1 ENC28J60 ENC28J60 IC3 30363 CSD 1 ES2D SS24 D1 Digikey 1 FT232RL FT232RL IC5 3021 CSD 1 L5973D L5973D IC2 Digikey 1 MAX3232 MAX232 IC4 MAX 3232 CSE Reichelt MICROSD_SF- 1 MICROSD MICROSD_SF-MICROSD SD1 20195 CSD 1 TRJ0011 TRJ0011 U$1 450001
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schematic_v31.pdf
SV2 R 1 GND (ADC5)PA5 32 PA5 PB5 R8 100R MOSI 1 2 JP1 7 33 PA4 PB4 R9 100R 3 4 IC2 XTAL2 (ADC4)PA4 34 PA3 PB0 R10 100R RESET 5 6 PD3 1 28 8 (ADC3)PA3 35 PA2 PB7 R11 100R SCK 7 8 /CS CLKOUT C XTAL1 (ADC2)PA2 36 PA1 PB6 R12 100R MISO 9 10 2 27 C 29 (ADC1)PA1 37 PD4 /RD XOUT V 27 AREF (ADC0)PA0 PA0 R13
in „Probleme mit Bascom –AVR - Version 2.0.7.5.“ · Mikrocontroller und Digitale Elektronik ·
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dmm_vga.pdf
X1-3 R A D5 4 F 1 G 1 IC5 D6 5 G X1-4 R GND 9 RESET (ADC7)PA7 33 D7 6 H 74HC244N X1-5 D (ADC6)PA6 34 GND N X1-6 5 L (ADC5)PA5 35 2 CLK G X1-7 1 C 12 36 CE 15 B XTAL2 (ADC4)PA4 37 PL 1 INH X1-8 S 13 (ADC3)PA3 38 SH/LD X1-9 D XTAL1 (ADC2)PA2 39 74HC165N +5V X1-10 32 (ADC1)PA1 40 X1-11 +5V AREF (ADC0)PA0
in „VGA Terminal mit ATMega644“ · Mikrocontroller und Digitale Elektronik ·
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LaserExpomposer-Schaltplan.pdf
S C16 100n SCOPE: Laser Spannung GND GND GND Laser+ IC1 GND DIODE 9 33 1 V Laser- RESET (ADC7)PA7 34 2 5 D1 C8 22p (ADC6)PA6 35 3 Laserstrom + 1N4004 16MHZ 12 (ADC5)PA5 36 4 SV1 ISP 4 0 1N4004 XTAL2 (ADC4)PA4 37 D 10 9 1,5K T2 R 1 D2 1N4004 D C9 22p Q1 13 (ADC3)PA3 38 SV8 N 8 7 E BC547 D3 1N4004 N XTAL1
in „UV-Laserdrucker“ · Platinen ·
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LaserExposer-Hauptprozessor.pdf
Laser Spannung S GND C16 100n GND GND Laser+ GND DIODE IC1 Laser- 9 RESET (ADC7)PA7 33 1 5 (ADC6)PA6 34 2 Laserstrom + D1 C8 22p (ADC5)PA5 35 3 0 1N4004 16MHZ 12 XTAL2 (ADC4)PA4 36 4 SV1 ISP 1,5K T2 R 1 1N4004 (ADC3)PA3 37 N 10 9 BC547 D2 1N4004 N C9 22p Q113 XTAL1 (ADC2)PA2 38 SV8 G 8 7 R6 E D3 1N4004
in „UV-Laserdrucker“ · Platinen ·
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MK_3_02.sch.pdf
(PCINT6/ADC6)PA6 32 Grün 2 3 2 7 0 n VCC (PCINT5/ADC5)PA5 33 R4 1K2 2 Q C 1 L F 0 (PCINT4/ADC4)PA4 34 LED4 A 1 0 4 (PCINT3/ADC3)PA3 35 R5 1K2 Grün 3 VCC_EXT B 1 RESET (PCINT2/ADC2)PA2 36 GND GND 7 (PCINT1/ADC1)PA1 37 1K2 LED5 8 XTAL2 (PCINT0/ADC0)PA0 L8 Rot F GND XTAL1 3 29 (PCINT15/SCK)PB7 2 L1D7 27
in „ATmega 644 Ports Parallel geschaltet MK3 Programmer“ · Mikrocontroller und Digitale Elektronik ·
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MBM29LV800.pdf
/MBM29LV800BA 37 V CC N.C. 13 Standard Pinout 36 DQ 11 A 4 7 38 A12 N.C. 14 35 DQ 3 RY/BY 15 34 DQ 10 A 3 8 37 A13 A 18 16 33 DQ 2 A 2 9 36 A14 A 17 17 32 DQ 9 A7 18 31 DQ 1 A6 19 30 DQ 8 A 1 10 35 A15 A5 20 29 DQ 0 A 0 11 34 A16 A4 21 28 OE A3 22 27 V SS CE 12 33 BYTE A2 23 26 CE A1 24 A 0 25
in „650Stk. Flashbausteine 29LV800 1Mx8 / 512k x16, 3,3V“ · Markt ·
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slyy151a.pdf
the effect of this capacitor on C C output noise. e C Figure 5: Startup of the TPS7A85 vs. C . e NR/SS As you can see, increasing C NR/SS values results in longer startup times, preventing in-rush current from spiking and √ potentially triggering a current-limit event. e Another method to lower output
in „NRF24L01 funktioniert nicht mit LP2950-3.3“ · Analoge Elektronik und Schaltungstechnik ·
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WSM200.pdf
P0D92M00202 P 475/400V C06 PKB-07-C 0 X11 VH-7a6) 3 4 1 P0X101 P P 15:15 ¦ ¦ 0 0 0 C19 VH-03a2) K ß ß C 2 1 / » » Port VH7-a6) P 471/2KV 0 0 471/2KV 1 Ò Ò 3 R47 R48 3 P022/1W01 P02P20/212W10/21KVP01221/1PK0V1052:1501 P015:1502 P 2 1 0 C2 0 0 P0R4701 P0R4702 P0R4801 P0R4802 0 0 P0X11011 ¦ ¦ C P 1 1 P 22/1W 25:16 ß ß P 472/3KV R32 0 Q18 0 R30 P0475/400PV040715/400V 02 P0X11022 221/1KV 1W/2K ¡ ¡ 5W/47 P 6.8R 6.8R P 1 Ò Ò Q19 5W/47 475/400V P0X11033 K 0 0 0 0 0 0 / P P 0 0 K2837X3 K0837X3 0 P0475/400PV040715/400V
in „Inverter Elektroden-Schweißgerät abgeraucht -> IGBT defekt“ · Analoge Elektronik und Schaltungstechnik ·
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s8241.PDF
specified) Item Symbol Applicable pin Rating Unit Input voltage between VDD and VSSV DS VDD VSS−0.3 to SS+12 V VM input pin voltage V VM V −26 to V +0.3 V VM DD DD CO output pin voltage V CO CO VVM −0.3 toDD +0.3 V DO output pin voltage V DO V −0.3 to V +0.3 V DO SS DD SOT-23-5 250 (When not mounted on board
in „Li-Ion Akku mit oder ohne eingebaute Schutzschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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s8241.PDF
specified) Item Symbol Applicable pin Rating Unit Input voltage between VDD and VSSV DS VDD VSS−0.3 to SS+12 V VM input pin voltage V VM V −26 to V +0.3 V VM DD DD CO output pin voltage V CO CO VVM −0.3 toDD +0.3 V DO output pin voltage V DO V −0.3 to V +0.3 V DO SS DD SOT-23-5 250 (When not mounted on board
in „Li-Ion Protection in besser?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
s8241.PDF
specified) Item Symbol Applicable pin Rating Unit Input voltage between VDD and VSSV DS VDD VSS−0.3 to SS+12 V VM input pin voltage V VM V −26 to V +0.3 V VM DD DD CO output pin voltage V CO CO VVM −0.3 toDD +0.3 V DO output pin voltage V DO V −0.3 to V +0.3 V DO SS DD SOT-23-5 250 (When not mounted on board
in „Lademodul TP4056“ · Analoge Elektronik und Schaltungstechnik ·
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IP-4GVI83_Manual.pdf
Host IOR 26 Ground 27 IOCHRDY 28 Host ALE 29 DACK 1 30 Ground 31 IRQ 15 32 No Connect 33 Address 1 34 No Connect 35 Address 0 36 Address 2 37 Chip Select 0 38 Chip Select 1 39 Activity 40 Ground y Figure: 40 39 2 1 20 Installations Floppy Disk Connector (34-pins 2.54mm Pitch Pin-Header with Housing):
in „Problem mit alter ISA-Karte in neuem Board“ · PC Hard- und Software ·
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bq2040.pdf
LED. Provides overvoltage status from the Li-Ion protector circuit and can initiate a charge sus- V SS Ground pendrequest. SR Sense resistor input SMBD SMBus data The voltage drop (V SR ) across pins SR and V SS is monitored and integrated over time Open-drain bidirectional pin used to transfer to interpret
in „Das ewige Thema - Akkucontroller BQ2040 zurück setzen“ · Mikrocontroller und Digitale Elektronik ·
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BQ2040.PDF
LED. Provides overvoltage status from the Li-Ion protector circuit and can initiate a charge sus- V SS Ground pendrequest. SR Sense resistor input SMBD SMBus data The voltage drop (V SR ) across pins SR and V SS is monitored and integrated over time Open-drain bidirectional pin used to transfer to interpret
in „Win98 Diagnose Notebook Akku immer 50%“ · PC Hard- und Software ·
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PDF
Roten_6324433_TD.pdf
−4 −6 6 4.8 1.14 × 10 3.527 7.87 × 10 8 6.5 1.38 × 10−4 3.53 7.30 × 10−5 10 7.9 1.70 × 10−5 3.53 1.34 × 10−4 −4 −4 16 11.5 2.47 × 10 3.53 3.43 × 10 21 13.56 2.81 × 10−4 3.54 3.86 × 10−4 32 14.8 4.03 × 10−4 3.55 4.79 × 10−4 −4 −4 43 15.99 4.53 × 10 3.55 5.51 × 10 56 16.62 5.34 × 10−4 3.58 7.20 × 10−4 73 17 6.39 × 10−4 3.56 9.31 × 10−4 −1 −3 84 17.34 7.36 × 10 3.56 1.14 × 10 100 17.51 1.04 × 10−3 3.57 1.95 × 10−3 Abbildung 2.19: Messungen an der Schaltung ohne Operationsversta ¨rkermit einem fast leeren Akkumu- lator. W Helligkeit m2 V 1V] A1[A]
in „DC-DC Abwärtswandler“ · Analoge Elektronik und Schaltungstechnik ·
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MC9S08DZ60.pdf
1 BIT 0 LSB FIRST BIT 0 BIT 1 ... BIT 5 BIT 6 BIT 7 MISO (SLAVE OUT) SS OUT (MASTER) SS IN (SLAVE) Figure 13-10. SPI Clock Formats (CPHA = 1) When CPHA = 1, the slave begins to drive its MISO output when SS goes to active low, but the data is not defined until the first SPSCK
in „Delay Funktion für Freescale“ · Mikrocontroller und Digitale Elektronik ·
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VDMA_Einheitsblatt.pdf
e . r n a ö [ d d 6 P g o n r s t f n d e r m g t u l n a b V n r g i ] l A u 5 E [ : o a r - v P ß e 9 n ( r - l l 4 G K b s n T i g r p r V 3 T i i e d e f n e g E e u i W r h m t a i ß e m z r h 2 A B s 5 r n - e n 0 B n l 0 i P : V o f 9 1 L P r 1 e 6 2 l m 6 A a r i r i M S N Z P S V * Seite 67
in „Tips zur Optimierung einer Wohnraum-Temperaturregelung“ · Mikrocontroller und Digitale Elektronik ·
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HiSpeed_WideTemp_019.pdf
26 26 Ground IORDY 27 27 28 28 CSEL DMACK- 29 29 30 30 Ground INTRQ 31 31 32 32 reserved DA1 33 33 34 34 PDIAG- DA0 35 35 36 36 DA2 CS0- 37 37 38 38 CS1- DASP- 39 39 40 40 Ground ▯ÆNotes: 1. All pins are in a single row, with a 2.54 mm (0.100”) pitch. 2. The comments on the mating sequence apply to the
in „Was ist das für ein Stecker ?“ · Mikrocontroller und Digitale Elektronik ·
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PFC_FBC.pdf
PB5 44 D D I D D D D ADC mit SPI-Interface zur sekundärseitigen Spannungsmessung GND_PRI GND (OC0B/SS/PCINT12)PB4 I P (OC0A/AIN1/PCINT11)PB3 43 P T1 D16 T3 _ T6 D5 T8 D7 T10 T12 (INT2/AIN0/PCINT10)PB2 42 _ T1_GATE G IRF3205 T3_GATE G IRF3205 8 5 T6_GATE G IRF3205 RFN10NS3S T8_GATE G IRF3205 RFN10NS3S
in „PFC + Vollbrücken-Gegentaktwandler“ · Analoge Elektronik und Schaltungstechnik ·
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w78c31B.pdf
39 P0.0, AD0 P1.2 3 38 P0.1, AD1 P1.3 4 37 P0.2, AD2 P1.4 5 36 P0.3, AD3 P1.5 6 35 P0.4, AD4 7 P1.6 34 P0.5, AD5 P1.7 8 33 P0.6, AD6 RST 9 32 P0.7, AD7 RXD, P3.0 10 31 EA TXD, P3.1 11 30 ALE INT0, P3.2 12 29 PSEN INT1, P3.3 13 28 P2.7, A15 14 T0, P3.4 27 P2.6, A14 T1, P3.5 15 26 P2.5, A13 WR, P3.6 16
in „Formel für Kondensatoren für Quartz“ · Mikrocontroller und Digitale Elektronik ·
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MB1136.pdf
C26 P0C2601 P0C2602uF F373:PE9 & F401/F411:VCAP1 PA12PA12 45 P0U5A045A11 PB11/VCAP1 P0U5A033 33 SB34 F373:SD_VREF+ PA12 PB12/SD_VREF+ P0SB3401 P0SB3402 AVDD P0PD8 PD8PD8 P0TMS PA13PA13 46 P0U5A046 P0U5A034 34 F373:PB14 SB37P0SB3701 P0SB3702PB120PB12 PD8 TMS PA14PA14 49 PA13 PB13/PB14 P0U5A035 35 F373
in „Mikrocontroller Spannung/Strom“ · Analoge Elektronik und Schaltungstechnik ·
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Nucleo_Board_Schematics.pdf
C26 P0C2601 P0C2602uF F373:PE9 & F401/F411:VCAP1 PA12PA12 45 P0U5A045A11 PB11/VCAP1 P0U5A033 33 SB34 F373:SD_VREF+ PA12 PB12/SD_VREF+ P0SB3401 P0SB3402 AVDD P0PD8 PD8PD8 P0TMS PA13PA13 46 P0U5A046 P0U5A034 34 F373:PB14 SB37P0SB3701 P0SB3702PB120PB12 PD8 TMS PA14PA14 49 PA13 PB13/PB14 P0U5A035 35 F373
in „Erbitte Hilfe bei Fehlersuche - STM32F446“ · Mikrocontroller und Digitale Elektronik ·
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AVR_ATmega_328PB.pdf
EEAR8 Access R/W R/W R/W R/W Reset x x x x Bit 3 – EEAR11: EEPROM Address 11 Refer to EEARL on page 34. Bit 2 – EEAR10: EEPROM Address 10 Refer to EEARL on page 34. Bit 1 – EEAR9: EEPROM Address 9 Refer to EEARL on page 34. Bit 0 – EEAR8: EEPROM Address 8 Refer to EEARL on page 34. Atmel ATmega328PB [
in „ATmega328PB: UART(MC) empfängt falsche Daten“ · Mikrocontroller und Digitale Elektronik ·
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TDA1543.htm
>DD</sub></b> = 5 V also zwischen 1,8 .. 3,8 V. Damit ist die Amplitude klar begrenzt, auf 2 V<sub>SS</sub>.<br> Mit dem maximalen Stromhub von <b>I<sub>FS</sub></b> = 2,65 mA ergibt sich für den maximalen Spannungshub ein Widerstand <b>R<sub>L</sub></b> = 2 V / I<sub>FS</sub> = 760 <font face="symbol
in „PLL per Software“ · Mikrocontroller und Digitale Elektronik ·
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x234.pdf
0 P SV2-1 PaS2as 0 IC5 Pas3up 0 JP5 a In 9 33 I/O 0 A7 Pas 0 0 VCPas 2 1 Pas 0O 1 RESET (ADC7)PA7 34 I/O 0 Pas 0 X7-11 VDD SPas 0PER-3SMD a (ADC6)PA6 A6 X7-10 SV2-2 MOSPas 4 3 Pas 0K P (ADC5)PA5 35 I/O 0 A5 Pas 0 X7-12 GNPas 6 5 Pas 0T 0 9 I/O12 XTAL2 (ADC4)PA4 36 I/O 0 A4 Pas 0 X7-13 C GND 7 R 37 I
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report01.pdf
Boiler 2 │ 0.003083 800 8 07 31 20 54 65 6D 70 2E 1 Temp. 3 │ 0.005296 800 7 0E 20 20 20 35 32 DF 52ß 4 │ 0.007545 800 8 40 4B 65 69 6E 20 42 6F Kein Bo 5 │ 0.010699 800 8 47 69 6C 65 72 66 F5 68 ilerfõh 6 │ 0.01331 800 7 4E 6C 65 72 20 20 32 ler 2 7 │ 0.014821 800 2 83 BF 8 │ 0.481816 800 2 83 BF 9
in „Sommerauer-Lindner canbus Steuerung Hackgut“ · Haus & Smart Home ·
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NODEMCU_DEVKIT_V1_0.PDF
DVOUT P I U 4 0 2 C7C1 / P1CO8 N VDDUSB VDD5V 10uF 25V G P2 10uF 1 D1D GND U1 GND PID10PID102 1N5819/SS14/S4(SOD_323) GND B Working Output: 3.3V 800mA B Working Current Limit: 1000mA Max Current: 1000mA Max Supply Voltage: 20V Voltage Dropout:1.2V@800mA C C VER DATE 1.0 28/01/2015 ORGANIZATION D NODE MCU
in „NodmCU ESP8266 nicht zu flashen“ · Mikrocontroller und Digitale Elektronik ·
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515502_1__2_.pdf
5% C4 C6 C5 TP2 1/10W U1 0.015uF 2.2uF 0.1uF 1 C2 50V 50V 100V 100V 39pF 5% 10% 10% 10% 1 RT_CLK R6 SS_TR 56 53.6K_1% GND PVDD 1% GND 1/10W 55 GND VCC_3.3V EN_BUCK 2 COMP C7 C8 3 VSENSE 2.2uF 0.1uF PVDD3 54 100V 100V R9 R10 R11 R7 R8 PVDD2 53 10% 10% 10K_1% 10K_1% 10K_1% 10K_1% 29 1% 1% 1% 1% 7 PVDD1
in „Allgemeine Frage bezüglich Motor Treiber/Inverter“ · Analoge Elektronik und Schaltungstechnik ·
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te2200.pdf
INTP2 OUTPUT PORT PORT9 P90-P95 ANO0 PORT10 P100-P103 ANO1 D/A AV REF1 CONVERTER PORT12 P120-P127 AV SS PORT13 P130,P131 ANI0-ANI7 AV REF0 A/D RESET AV DD CONVERTER AV SS X1 P03 SYSTEMCONTROL X2 PCL CLOCKOUTPUT CONTROL XT1 XT2 BUZ BUZZEROUTPUT V DD V SS — 23 — Downloaded from www.Manualslib.com manuals
in „LCD identifizieren.“ · Mikrocontroller und Digitale Elektronik ·
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asus-p701-unlocked.pdf
EXP_RXN11 T34 CRT_BLUE GND EXP_RXN12 U30 NC70 2 1 10PF/50V EXP_RXN13 V34 /X CRT_GREEN EXP_RXN14 W30 NC71 2 1 10PF/50V [20] DDC_CLK E24 DDCCLK EXP_RXN15 Y34 /X CRT_RED [20] DDC_DATA E23 DDCDATA NC72 2 1 10PF/50V [20
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Datei
EMS_Adapter.xml
a1UXdHfdXAOpbEPvb8X3pjs88Rv6jytYT4Mftg7ST0NLLpkD7LlngAPaM/j39sfgcFRpP7qAF+ghfr5UiW+VX9Tm+gzidl3a27gmaQCZ85l5RsLJyjzJpN98ml7IYsi/uBEgBB6N34UTHsOCjoeaetr/9Wrqo1JKX7D+Q5X+JUPP5srkVUlT/KZHTBqp831xuifPciPYHk1665bK8fN95MdcN0l1sDp/dQ9MBgA/WrXaRiGjhZZGdW7O5Z9/gC7Xr29041Gv8C6xRlF5BZyHD52XOMhVa4iSs3Pwq6RsPrBvshOdM2G7MXQl0Jqr1rOpwruJxGvlToEHCYugutgF0i
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Datei
EMS_Adapter.xml
a1UXdHfdXAOpbEPvb8X3pjs88Rv6jytYT4Mftg7ST0NLLpkD7LlngAPaM/j39sfgcFRpP7qAF+ghfr5UiW+VX9Tm+gzidl3a27gmaQCZ85l5RsLJyjzJpN98ml7IYsi/uBEgBB6N34UTHsOCjoeaetr/9Wrqo1JKX7D+Q5X+JUPP5srkVUlT/KZHTBqp831xuifPciPYHk1665bK8fN95MdcN0l1sDp/dQ9MBgA/WrXaRiGjhZZGdW7O5Z9/gC7Xr29041Gv8C6xRlF5BZyHD52XOMhVa4iSs3Pwq6RsPrBvshOdM2G7MXQl0Jqr1rOpwruJxGvlToEHCYugutgF0i
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samsungRCProtokoll.pdf
the TEST pin (TEST pin I.R.LED drive TR) and V SS pin should be separated and connected directly with the battery terminal. — The ceramic capacitor (0.1 uFor 0.01uF) is recommended to use noise filter. 5-9 REMOTE CONTROL TX. SMDS When a breakpoint or
in „37.47kHz Rechteck erzeugen mit 7.3728MHz Quarz, welcher Timer Modus?“ · Mikrocontroller und Digitale Elektronik ·
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THM_P__Mainboard.pdf
CH1 SHDN 10 G 44 PA7(AD7) C 1 D +6V +3V3 3 CH2 D AVCC 64 G IC2 4 18 10 63 D 8 T1 5 CH3 CS 19 11 PB0(SS) GND(A) 62 7 I U2 6 CH4 SCLK 17 12 PB1(SCK) AREF 5 O4 C6 7 CH5 DIN 15 13 PB2(MOSI) C10 D C4 C5 EN GND 8 CH6 DOUT 16 14 PB3(MISO) 24 22p N 1u CH7 SSTRB 11 15 PB4(OC2A) XTAL1 G 10n 100n MIC5200-3.3YMM
in „Probleme mit AT90CAN64 SPI Übertragung“ · Mikrocontroller und Digitale Elektronik ·