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Datei
hmi.c
, 0x07, 0x30, 0xAA, 0x28}; /* Außen 1 */ //uint8_t lau8_RomId[] = {0x85, 0x02, 0x13, 0x18, 0xF3, 0x34, 0xAA, 0x28}; /* Terrasse 24x1 */ //uint8_t lau8_RomId[] = {0xEC, 0x01, 0x13, 0x1F, 0xBD, 0x02, 0x58, 0x28}; /* Flur Nord (zu Essen) 26x1 38x0 */ //uint8_t lau8_RomId[] = {0x99, 0x02, 0x13, 0x19, 0x0D
in „1 Wire manche Teilnehmer antworten nicht“ · Mikrocontroller und Digitale Elektronik ·
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arm.pdf
C28 C29 C30 C31 C32 6 5 8 7 10n 10n 10n 10n 10n 10n 10n 10n 10n 10n 10n C33 R22C R23 R22D R22A R22B C34 10n X3 4k7 4k7 4k7 4k7 4k7 5 0 1 9 1 2 4 6 8 9 8 6 6 74 8 4 0 GND 10n B1 CR1632FH GND 1 6 7 8 1 1 1 1 1 1 2 8 1 3 2 2 2 1 3 4 1 2 4 3 8 ) ) ) ) ) ) ) ) ) ) ) ) ) 134 TRST 3 3 3 3 3 3 3 3 3 3 3 3 3 A
in „LPC2468 External Memory Controller Frage“ · Mikrocontroller und Digitale Elektronik ·
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58740807_protel_schematic.pdf
2,08V R94 R129 TLC272 D10 196R 1 12k1 4 RM4004G /TRIAC2 GND GND OUT2 Heizung Kanal 2 VCC VCC 24VAC C34 VREF GND inv. ST 10µ/50V R131 24VAC VREF VREF R125 R121 46R4 3k32 R101 10R VDD D24 R72 R136 R134 Fehlermeldung : E01, E02, E10, E11, E12 10k 1 O3 6 464k 200k 20k N6B 2 8 N7A D28 LL4148 5 R118 3 4 LM358
in „Suche Service Manual oder Schaltplan für Weller WMD-3“ · Mechanik, Gehäuse, Werkzeug ·
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ssd1623.pdf
...................................................................................................34 14.3 POWER DOWN SEQUENCE ....................................................................................................................................35 14.4 DC/DC START UP ...................
in „E-Ink Display im Blutzuckermeßgerät“ · Mikrocontroller und Digitale Elektronik ·
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EA_DOG128.pdf
1µ H (ADC6)PA6 31 3 3 4 M (ADC5)PA5 32 C14 222 C13Q 12 7 33 9 0 07 0 32 1µ C1 D 1 2 XTAL2 (ADC4)PA4 34 R 1 1R 1 D D VOUT G C 2 8 (ADC3)PA3 35 36 V D 31 1µ C2 XTAL1 (ADC2)PA2 36 37 SI V CAP3P 29 (ADC1)PA1 37 38 SCL 30 AREF (ADC0)PA0 A0 CAP1N GND C15 27 AVCC 28 GND (SCK)PB7 3 40 CS1B CAP1P 29 1µ C3 B +3V3 (MISO)PB6 2 39 RST - B 17 (MOSI)PB5 1 2 CAP2P 28 5 VCC (SS)PB4 44 1 38 43 1 M 1 27 1µ C4 (AIN1/OC0)PB3 42 A1 G D CAP2N C16 18 (AIN0/INT2)PB2 41 18 D L 6 (T1)PB1 40 K1 25 1µ C5 39 GND (T0/XCK)PB0 2 V4 A2 (TOSC2)PC7 26 V3 24 1µ C6 (TOSC1)PC6 25 19 K2 GND (TDI)
in „Grafik LCD mit AVR“ · Mikrocontroller und Digitale Elektronik ·
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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"," "); for(var i = 0;i<zeichensatz.length;i++){ if(zeichen==zeichensatz[i]&&zeichen!="undefined"){ ziffer=i; gefunden=1; break; } } if(gefunden==0){ //Fehlerbehandlung } ziffer++; buchstabe=zeichensatz
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Layout_v2.8.pdf
LCD16 14 =5 13 LCD15 5 k 0 k 2 LCD14 R49 7 300 LCD13 4 0 0 0 LM358N 8 LM358N GND LCD12 12 - 11 LCD11 R34 R 1 R 1 6 GND 10 W0 9 64 9 k 4,7k 7 Reg-Command V 8 ED 7 10k 5 4 , 5 5 LCD6 6 5 4 0 0 0 4 R47 F 4 IC1B k 2 LCD4 4 3 10k V R33 R 1 R 1 0 0 0 5 2 1 R0050 3 5 32 C 1 1 0 2 1 10k 5 GND 1 way switch R LCD16X2
in „Schematic + Board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Layout_v2.8.pdf
LCD16 14 =5 13 LCD15 5 k 0 k 2 LCD14 R49 7 300 LCD13 4 0 0 0 LM358N 8 LM358N GND LCD12 12 - 11 LCD11 R34 R 1 R 1 6 R0001 GND 10 W0 9 64 9 k 4,7k 7 Reg-Command V 8 ED 7 10k 5 4 , 5 100 5 LCD6 6 5 4 0 0 0R 4 R47 F 4 IC1B C19 k 2 LCD4 4 3 10k V R33 R 1 R 1 0 0 0 5 2 1 R0050 3 5 32 C 1 100nF 1 0 2 1 10k 5 GND
in „Schematic + Board“ · Mikrocontroller und Digitale Elektronik ·
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STM32H7-Disco_full.PDF
PI PC TP1 C24 C27 C25 PU4 C30 D44 C26 CO28 C29 C32 PI4.7uF P24.7uF P51.0uF PU5Vcc PI85PI01PI02 P0SSL34 PI 100nFPI22uF PI22uF PC22uF 2 2 2 P0 En Boot 2 2 2 2 2 P3 +14.8V_ext C31 1P81 PI81 100nF C34 P01.0uF PU7Pgood Vbias P35.6nF 2 1P81SyncH PI88 2 GND 1P81FSW Comp GND PI1 P P3 PU6Ilim PI89 OC C3 R38 R39 GND 1P81SS FB PI52PI5 PR02PR0 PI21.0uF P7.5k P360R P1 P1 P1 17 Gnd 2 2 2 R41 R42 C36 P81Gnd_Therm P3 150nF 820R P51k P20k P222nF L7987 C37 GND P +14.8V_bat +14.8V 2 2 2 P3820pF R43 SW1 0 1 2 P2k4 J18 2 PW0 2 PI8
in „STM32H7-Disco erster Test“ · Mikrocontroller und Digitale Elektronik ·
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Nexys4_DDR_schematic.pdf
IO_L21N_T3_DQPIIC80U7_DQ3 IO_L21N_T3_DQSPIIC80J3 IO_L24N_T3_A00_D16_14 IO_L22N_T3_A16_15C80F18 IO_L22N_T3_34C80U6_DQ6 IO_L22N_T3_35C80J2 IO_L23P_T3_FOE_B_1580J17 IO_L23P_T3_34C80R7_DQ0 IO_L23P_T3_35C80K2 XC7A100T-1CSG324C IO_L23N_T3_FWE_B_1580J18 IO_L23N_T3_34C80T6_LDMDM IO_L23N_T3_35C80K1 C IO_L24P_T3_RS1_
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medibus_drager__1_.pdf
and time from the responding device. The response field has the following format: TIME DATE (HH:MM:SS) (DD-MMM-YY) 0 +8 +17 TIME: Eight byte field containing ASCII numeric cha- racters representing the current time in hours (HH), minutes (MM), and seconds (SS). Leading zeroes shall not be suppressed.
in „Beatmungsgerâte SchnittsteIIen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ht1632c.pdf
logic circuit. Rev. 1.20 2 June 28, 2011 HT1632C Absolute Maximum Ratings Supply Voltage...............SS-0.3V to SS+6.0V Storage Temperature............................-50°C to 125°C Input Voltage.................-0.3V to V.+0.3V Operating Temperature...........................-40°C to 85°C SS DD Note:
in „HT1632C mit welchen Bus ansteuern?“ · Mikrocontroller und Digitale Elektronik ·
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LT1930.pdf
Diagnostic Equipment ratedat36V,makingthedeviceidealforboostconverters Local 5V or 12V Supply upto34Vaswellasforsingle-endedprimaryinductance External Modems converter (SEPIC) and flyback designs. The LT1930 can PC Cards generate 5V at up to 480mA froma 3.3V supply or 5V at xDSL Power Supply 300mA fromfour
in „Step up UND down DCDC für uC Versorgung - Empfehlung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LED_treiber_ht1632cv120.pdf
logic circuit. Rev. 1.20 2 June 28, 2011 HT1632C Absolute Maximum Ratings Supply Voltage...............SS-0.3V to SS+6.0V Storage Temperature............................-50°C to 125°C Input Voltage.................-0.3V to V.+0.3V Operating Temperature...........................-40°C to 85°C SS DD Note:
in „HT1632C mit welchen Bus ansteuern?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ht1632cv120.pdf
logic circuit. Rev. 1.20 2 June 28, 2011 HT1632C Absolute Maximum Ratings Supply Voltage...............SS-0.3V to SS+6.0V Storage Temperature............................-50°C to 125°C Input Voltage.................-0.3V to V.+0.3V Operating Temperature...........................-40°C to 85°C SS DD Note:
in „HT1632C mit SPI steuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ht1632cv120.pdf
logic circuit. Rev. 1.20 2 June 28, 2011 HT1632C Absolute Maximum Ratings Supply Voltage...............SS-0.3V to SS+6.0V Storage Temperature............................-50°C to 125°C Input Voltage.................-0.3V to V.+0.3V Operating Temperature...........................-40°C to 85°C SS DD Note:
in „LED Matrix Schaltung gesucht sowie Bsp Programm“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ht1632cv130.pdf
circuit. Rev. 1.30 2 February 11, 2014 HT1632C Absolute Maximum Ratings Input Voltage...................SS−.3V to VDD0.3V Supply Voltage..................SS−.3V to V SS.0V Storage Temperature............................−50°C to 125°Cating Temperature..........................−40°C to 85°C Note: These are
in „8x8 RGB Matrix Ansteuerungsproblem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ht1632cv120.pdf
logic circuit. Rev. 1.20 2 June 28, 2011 HT1632C Absolute Maximum Ratings Supply Voltage...............SS-0.3V to SS+6.0V Storage Temperature............................-50°C to 125°C Input Voltage.................-0.3V to V.+0.3V Operating Temperature...........................-40°C to 85°C SS DD Note:
in „C-Code -> Verständnis problem..“ · Mikrocontroller und Digitale Elektronik ·
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mm5450.pdf
brightness by setting a referencecompatibility s current through a variable resistor conneDD.d to V Y 34 or 35 outputs, 15 mA sink capability p Y Alphanumeric capability l Applications Y iJADIP Boarde 49§C/W y Y COPS TMor microprocessor displays Sockete 54§C/W Y D Y Industrial control indicator i Relay
in „LED-Ansteuerungs-IC M5450“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pins_arduino_1284.pdf
1 / D30) // INT2 (D 2) PB2 3| |38 PA2 (AI 2 / D29) // PWM (D 3) PB3 4| |37 PA3 (AI 3 / D28) // PWM/SS (D 4) PB4 5| |36 PA4 (AI 4 / D27) // MOSI (D 5) PB5 6| |35 PA5 (AI 5 / D26) // PWM/MISO (D 6) PB6 7| |34 PA6 (AI 6 / D25) // PWM/SCK (D 7) PB7 8| |33 PA7 (AI 7 / D24) // RST 9| |32 AREF // VCC 10| |31
in „FT800 TFT Display am ATmega 1284P geht nicht“ · Mikrocontroller und Digitale Elektronik ·
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39662c.pdf
Inter-Packet Gap Low Byte (MAIPGL<6:0>) -000 0000 34 MAIPGH Non-Back-to-Back Inter-Packet Gap High Byte (MAIPGH<6:0>) -000 0000 34 MACLCON1 Retransmission Maximum (RETMAX<3:0>) ---- 1111 34 MACLCON2 Collision Window (COLWIN<5:0>) --11 0111 34 MAMXFLL Maximum
in „Webserver mit XC167“ · Mikrocontroller und Digitale Elektronik ·
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S8254A_E.pdf
and Overdischarge Detection V CUn V CLn Batteryvoltage V DUn V DLn (n = 1 to 4) V DD DOPpinvoltage V SS V EB COPpinvoltage High-Z High-Z V SS V EB V DD 39 / 40V DD VMPpinvoltage 1 / 2VDD V SS Chargerconnection Loadconnection Overchargedetectiondelaytime(t ) CU OverdischargedetectiondelaytimDLt ) *1
in „TP4056 zuwarm (72+C) dumm verlötet und schlechte Idee ?“ · Analoge Elektronik und Schaltungstechnik ·
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S8254A_E-23610.pdf
and Overdischarge Detection V CUn V CLn Batteryvoltage V DUn V DLn (n = 1 to 4) V DD DOPpinvoltage V SS V EB+ COPpinvoltage High-Z High-Z V SS V EB+ V DD 39 / 40×V DD VMPpinvoltage 1 / 2×VDD V SS Chargerconnection Loadconnection Overchargedetectiondelaytime(t ) CU OverdischargedetectiondelaytimDLt ) *1
in „Wie funktioniert so ein Protection Board?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ABLIC-S-8254A.pdf
and Overdischarge Detection V CUn V CLn Batteryvoltage V DUn V DLn (n = 1 to 4) V DD DOPpinvoltage V SS V EB COPpinvoltage High-Z High-Z V SS V EB V DD 39 / 40V DD VMPpinvoltage 1 / 2VDD V SS Chargerconnection Loadconnection Overchargedetectiondelaytime(t ) CU OverdischargedetectiondelaytimDLt ) *1
in „BMS an Li-Ionen Akkupack 4S1P funktioniert nicht“ · Analoge Elektronik und Schaltungstechnik ·
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mainboard.sch.pdf
GND GND V 2 + 8 K1 2 N G T V R8 S0 0 7 R IC1 K D D 1 2 N N 1 2 9 RESET (ADC7)PA7 33 7 G G (ADC6)PA6 34 R7 T Q1 (ADC5)PA5 35 N C9 12 XTAL2 (ADC4)PA4 36 G (ADC3)PA3 37 D 13 XTAL1 (ADC2)PA2 38 6 G C10 39 K1 2 N 32 (ADC1)PA1 40 G 30 AREF (ADC0)PA0 T 31 AVCC 8 R6 V+ AGND (SCK)PB7 7 10 (MISO)PB6 6 C11 VCC (MOSI)PB5 5 11 GND (SS)PB4 5 K D (AIN1/OC0)PB3 4 1 2 N (AIN0/INT2)PB2 3 5 G (T1)PB1 2 R5 T (T0/XCK)PB0 1 GND GND (TOSC2)PC7 29 (TOSC1)PC6 28 4 27 K1 2 N (TDI)PC5 26 G (TDO)PC4 25 T (TMS)PC3 24 R4 (TCK)PC2 23 (SDA)PC1 22 (SCL
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PDF
mainboardalone.sch.pdf
GND GND GND GND GND GND GND GND GND T8 + R8 V S0 R IC1 GND N 1 2 9 RESET (ADC7)PA7 33 T7 G (ADC6)PA6 34 (ADC5)PA5 35 R7 D C9 Q1 12 36 GND G XTAL2 (ADC4)PA4 37 D 13 (ADC3)PA3 38 N XTAL1 (ADC2)PA2 39 GND G C10 32 (ADC1)PA1 40 T6 30 AREF (ADC0)PA0 X3-9 31 AVCC 8 R6 V+ AGND (SCK)PB7 7 X3-8 (MISO)PB6 10 VCC (MOSI)PB5 6 X3-7 C11 11 GND (SS)PB4 5 (AIN1/OC0)PB3 4 GND X3-6 (AIN0/INT2)PB2 3 T5 (T1)PB1 2 R5 X3-5 (T0/XCK)PB0 1 X3-4 GND GND (TOSC2)PC7 29 (TOSC1)PC6 28 27 GND X3-3 (TDI)PC5 26 T4 (TDO)PC4 25 X3-2 (TMS)PC3 24 R4 (TCK)PC2 23 X3-1
in „Wie Board erstellen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schematic.pdf
1 2 3 4 A A U1 10 PB0(SS) PA0 (AD0) 51 11 PB1(SCK) PA1 (AD1) 50 12 PB2(MOSI) PA2 (AD2) 49 13 48 14 PB3(MISO) PA3 (AD3) 47 15 PB4(OC0) PA4 (AD4) 46 16 PB5(OC1A) PA5 (AD5) 45 CON1 U2A 17 PB6(OC1B) PA6 (AD6) 44 PB7(OC2/OC1C) PA7
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AVR_FFT_Schematic.pdf
1 2 3 4 A A U1 GND 6 GND (ADC0) PA0 37 18 36 28 GND (ADC1) PA1 35 C1 39 GND (ADC2) PA2 34 JP1 100nF GND (ADC3) PA3 33 (ADC4) PA4 32 1 2 VCC 5 (ADC5) PA5 31 3 4 VCC VCC (ADC6) PA6 5 6 GND 17 VCC (ADC7) PA7 30 38 VCC ISP GND 27 AVCC (XCK/T0) PB0 40 (T1) PB1 41 29 AREF (AIN0/INT2) PB2 42 U2 C2 43 1 7 100nF (AIN1/OC0) PB3 44 CLK V+ VCC (~SS) PB4 1 8 5 R1 4 (MOSI) PB5 2 IN OUT 3 B VCC RESET (MISO) PB6 3 OPOUT 4 B 10K (SCK) PB7 OPIN- R2 C3 (SCL) PC0 19 VCC 6 GND V- 2 GND GND 7 XTAL2 (SDA) PC1 20 10K 2 8 XTAL1 (TCK) PC2 21 R3 MAX297 22pF (
in „Schnelle FFT in Assembler“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
AVR_FFT_Schematic.pdf
1 2 3 4 A A U1 GND 6 GND (ADC0) PA0 37 18 36 28 GND (ADC1) PA1 35 C1 39 GND (ADC2) PA2 34 JP1 100nF GND (ADC3) PA3 33 (ADC4) PA4 32 1 2 VCC 5 (ADC5) PA5 31 3 4 VCC VCC (ADC6) PA6 5 6 GND 17 VCC (ADC7) PA7 30 38 VCC ISP GND 27 AVCC (XCK/T0) PB0 40 (T1) PB1 41 29 AREF (AIN0/INT2) PB2 42 U2 C2 43 1 7 100nF (AIN1/OC0) PB3 44 CLK V+ VCC (~SS) PB4 1 8 5 R1 4 (MOSI) PB5 2 IN OUT 3 B VCC RESET (MISO) PB6 3 OPOUT 4 B 10K (SCK) PB7 OPIN- R2 C3 (SCL) PC0 19 VCC 6 GND V- 2 GND GND 7 XTAL2 (SDA) PC1 20 10K 2 8 XTAL1 (TCK) PC2 21 R3 MAX297 22pF (
in „AudioSchaltung für Line Out Signal“ · Mikrocontroller und Digitale Elektronik ·
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schaltplan_glcd_v15.pdf
100nF V C GND V GND GND GND GND GND h K M R 1 IC1 10K Kontrast 4 9 RESET (ADC7)PA7 33 p 8 (ADC6)PA6 34 A E C 2 1 , (ADC5)PA5 35 2 Q 3 12 XTAL2 (ADC4)PA4 36 S I VCC (ADC3)PA3 37 GND N 15GND VCC6 13 XTAL1 (ADC2)PA2 38 G 0 p C (ADC1)PA1 39 C 2 C 32 AREF (ADC0)PA0 40 V 30 AVCC SV1 GND 31 AGND (SCK)PB7 8 20 19 (MISO)PB6 7 18 17 100nF 10 VCC (MOSI)PB5 6 16 15 11 GND (SS)PB4 5 14 13 IC2 VCC C11 (AIN1/OC0)PB3 4 12 11 1uF + 1 C1+ (AIN0/INT2)PB2 3 10 9 C4 V+ 2 + 1uF (T1)PB1 2 8 7 3 C1- C6 (T0/XCK)PB0 1 6 5 V- 6 +1uF GND 4 3 1uF + 4 C2+ C7 (TOSC2)PC7 29 2 1 C5 (TOSC1)PC6
in „USB-Steuerung mit ATMega8“ · Mikrocontroller und Digitale Elektronik ·
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noname.pdf
ICP1)PB04 2 1 V3(LCDrive) C C C 1 15 +3.3V V4(LCDrive) 25 C+3.3V (PCINT1/OC1A)PB1 D1 27 (PCINT2/OC1B/SS)PB216 CAP2N C10 20 17 35 VDD CAP2P 28 GND AVCC (PCINT3/OC2A/MOSI)PB3 34 29 C C (PCINT4/MISO)PB418 VDD2 CAP1P C 19 32 VOUT CAP1N 30 (PCINT5/SCK)PB5 31 21 AREF (PCINT6/XTAL1/TOSC1)PB69 C CAP3P C13 C 3
in „DOGM128L-6 Kontrastspannung“ · Mikrocontroller und Digitale Elektronik ·
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EMV_Empfehlung.pdf
Analogen Schaltungsanteile stören. AGND GND als Masse Fläche realisieren IC 9 33 FERRIT_8 RESET (ADC7)PA7 34 (ADC6)PA6 35 12 (ADC5)PA5 36 XTAL2 (ADC4)PA4 37 VCC/2 (ADC3)PA3 C14 + C15 13 XTAL1 (ADC2)PA2 38 (ADC1)PA1 39 10uF 100nF 32 AREF (ADC0)PA0 40 AGND 30 AVCC 31 GND (SCK)PB7 8 (MISO)PB6 7 10 6 FERRIT_9 11 VCC (MOSI)PB5 5 GND (SS)PB4 4 (AIN1/OC0)PB3 3 (AIN0/INT2)PB2 2 VCC C16 + (T1)PB1 C17 (T0/XCK)PB0 1 10uF 100nF (TOSC2)PC7 29 D (TOSC1)PC6 28 G (TDI)PC5 27 (TDO)PC4 26 7 25 (TMS)PC3 24 (TCK)PC2 23 7 Filter an den Eingangspins
in „Wie gehen Profis vor, wenn ein Produkt EMV konform sein soll?“ · Mikrocontroller und Digitale Elektronik ·
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SCH_Schematic1_2025-04-25-1.pdf
▯B 2 1 FAN+ 3 2 +12V RPM1 4 3 PWM1 4 ' R2k2 2 1 2 3 4 5 6 7 CN2 2 Q1 1 2 3 4 5 6 7 H1 GND 1 1 IRF9Z34NSTRLPBF-JSM FAN+ 2 2 RPM2 3 3 PWM2 200▯' Q2 FAN+ PWM1 4 4 R200 ' BC547B k CN3 R10k 1 D1 GND 1 D SS54 ▯C 2 1 N FAN+ ▯C FAN+ 3 2 G RPM3 4 3 GND PWM1 4 ▯U▯p▯d▯a▯t▯e▯ ▯D▯a▯t 2025-04-25 CN4 ▯S▯c▯h▯e▯m▯a▯t
in „PWM Lüfter Steuerung mit ESP8266 Tacho Problem“ · Mikrocontroller und Digitale Elektronik ·
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LTM8054.pdf
Phase V VIN LTM8054 VOUT 0.015Ω IN VOUT 7V TO 36V SVIN IOUT 12V IN 4.7µF 50V RUN + ×2 CTL 22µF 68µF SS INMON 25V 25V I 36.5k SYNC OUTMON COMP 100k 600kHz RT FB CLKOUT 11k MODE LL GND LT1636 VIN LTM8054 VOUT 0.015Ω SVIN IOUT IN 4.7µF RUN 50V ×2 COMP CTL 22µF + 68µF SS CLKOUT 100k 25V 25V SYNC I 36.5k INMON
in „DC/DC Wandler (Step Down) gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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bradl.pdf
Sample Pack. url: https: //www.vsl.co.at/de/Percussions/Plate_bells (besucht am 26.05.2018) (siehe S. 34). [7] Sibelius-Akatemia. Levykellot. 2018. url: http://www2.siba.fi/ lyomasoittimet/index.php?id=85&la=fi (besucht am 27.05.2018) (siehe S. 34). [8] Philippe Troccaz, Roland Woodcock und Freder´ ´Laville
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MCP4821-MCP4822.pdf
SDI SCK LDAC CS 2 8 7 AVSS 4 SCK 3 C 6 SHDN V SDI 4 M 5 LDAC Power-on DD Interface Logic Reset AV SS 8-Pin PDIP, SOIC, MSOP Input Input V DD 1 8 V Register Aegister B 2 OUTA 2.048V CS 2 8 7 AV SS DACA DAC B VREF 4 Register Register SCK 3 P 6 VOUTB SDI 4 C 5 M LDAC String String DAC A DAC B Gain Gain
in „Digital-Analog-Umsetzer (10V -> 1mV Auflösung)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
tvtext_v2.asm
********************* #else ;gfxmode push spian push spiaus #ifdef mega16 ldi spian, (1<<MOSI)|(1<<SS) ldi spiaus, (1<<DOUT)|(1<<SS) #else ldi spian, (1<<Sync)|(1<<MOSI)|(1<<SS) ldi spiaus, (1<<Sync)|(1<<DOUT)|(1<<SS) #endif comp: lds ZH,s_zh_line lds tempi,m_C_Cnt ; insert optionally blank lines cpi
in „AVR Videogenerator, 40x25 Zeichen, nur 60% CPU Auslastung !“ · Projekte & Code ·
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XC866_ds_v12.pdf
VDDP 1) Input Hysteresis on HYSX CC 0.07 × – V XTAL1 VDDC Input low voltage at V SR V - 0.3 × V ILX SS XTAL1 0.5 V DDC Input high voltage atV SR 0.7 × V V IHX DDC XTAL1 VDDC + 0.5 Data Sheet 91 V1.2, 2007-10 XC866 Electrical Parameters Table 34 Input/Output Characteristics (Operating Conditions apply)
in „Wie schnell ist der Counter eines 8-Bir µC's“ · Mikrocontroller und Digitale Elektronik ·
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vs1033d.pdf
STATUS (RW) SCI STATUS contains information on the current status of VS1033. Name Bits Description SS DO NOT JUMP 15 Header decoding in progress, do not ff/rewind. SS VER 7:4 Version SS APDOWN2 3 Analog driver powerdown SS APDOWN1 2 Analog internal powerdown SS AVOL 1:0 Analog volume control SS VER is
in „Layout dringend“ · Platinen ·
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TPS_40210.pdf
inductor-current ON slope times the sense resistor amplified by the current-sense amplifier gain, Z ON ×4 34 1− 24 A CS, of 6. = 12×4 .34× 1+ Z ON ×4 34 Z 6. The conversion ratio from Equation (16) is OFF 1 1 M CCM = = � 2.1. 8. The inner current-loop transfer functionI T (s), 1−D 1−0.52 is determined from
in „Problem mit dem Hochsetzsteller (TPS 40210)“ · Analoge Elektronik und Schaltungstechnik ·
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d80166w.pdf
BSET bitoff.2 1) 30 2 SUBC Rw, Rw Rw, #data3 31 2 SUBCB Rb, Rb 32 4 SUBC reg, mem Semiconductor Group 34 SAB 80C166W/83C166W Hex- Num- Mnemonic Operands Hex- Num- Mnemonic Operands code ber of code ber of Bytes Bytes 33 4 SUBCB reg, mem 4C 2 SHL Rw, Rw 34 4 SUBC mem, reg 4D 2 JMPR cc_V, rel 35 4 SUBCB mem
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eGC.pdf
PIIC50H7 gpmc_d15 D15 A8 IO_L33P_0 D15 G7 I/O14 AM3505-ZER A1 PC9C20AIO_L33N_0 PIIC50I/O15 B PIIC20CIO_L34P_GCLK19_0 R0 B A2 PIIC20AIO_L34N_GCLK18_0 NANDFlash16 COR1 A3 BPIIC20BIO_L35P_GCLK17_0 R1 A[0..10] A4 APIIC20AIO_L35N_GCLK16_0 Resistor IC1K1 A5 PIIC20E7 R2.7 kOhm W5 A1 A6 E8 IO_L36P_GCLK15_0 gpmc_a1
in „[Suche] Interessierte(n) an Projekt (ARM/FPGA)“ · Mikrocontroller und Digitale Elektronik ·
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grip1.pdf
den Pin's 4 und 6 des 74S04 ein symmetrisches 15-MHz-Signal anliegen. IV. Die IC's ZU (1489) und Z34 (74LS163) werden nun bestückt. An Pin 6 des CPU-Sockels (Zl) sollte ein kräftiges 4-MHz-Taktsignal erkennbar sein, Pin 26 muß auf HIGH liegen. V. Jetzt kann der CPU-Teil in Betrieb genommen werden. Zu
in „Conitec PROF-80 Informationsseite“ · Mikrocontroller und Digitale Elektronik ·
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Mega128.pdf
OC0)PB4 13 4 C (MISO)PB3 12 3 V 1 GND D 18 (MOSI)PB2 11 2 2 G VCC PG3(TOSC2) (SCK)PB1 10 1 R 3 19 (SS)PB0 SV3 4 PG4(TOSC1) 42 8 5 43 (A15)PC7 41 7 6 34 PG2(ALE) (A14)PC6 40 6 1 7 33 PG1(RD) (A13)PC5 39 5 E 8 1 PEN(WR) ((A11)PC3 38 4 L (A10)PC2 37 3 SV6 (A9)PC1 36 2 C (A8)PC0 35 1 C GND SV4 (T2)PD7 32
in „ATmega128 Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan.pdf
RESET (ADC2) PA2 38 (ADC3) PA3 37 18k 1 PB0 (T0) (ADC4) PA4 36 R2 2 35 150k C 3 PB1 (T1) (ADC5) PA5 34 C4 C HD1 4 PB2 (AIN0) (ADC6) PA6 33 100n 5 PB3 (AIN1) (ADC7) PA7 6 VCC 6 PB4 (SS) 22 GND GND 5 7 PB5 (MOSI) PC0 23 VCC ISP 4 8 PB6 (MISO) PC1 24 3 PB7 (SCK) PC2 2 PC3 25 GND 1 GND C8 RxD 14 PD0 (RXD)
in „JTAGICE und AVRStudio: Target Fehler“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan.pdf
22p PB6(XTAL1/TOSC1) ADC7 R/W 36R/W O D 22p Q1 8 30 E 35E - N PB7(XTAL2/TOSC2) PD0(RXD) 31 LED_LS V 34D0 A G C9 PD1(TXD) T_MINUTE_UP + D1 y E PD2(INT0) 32 LED_FM 33D2 l 7 3 GND PD3(INT1) 1 FUNK_INPUT R2 10k 32D3 p +5V C 0 5 GND PD4(XCK/T0) 2 T_MINUTE_DOWN R3 10k 31D4 i 0 4 VCC PD5(T1) 9 T_SECOND_UP 10k
in „DOGM081 Display Fehlersuche *HILFE*“ · Mikrocontroller und Digitale Elektronik ·
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CAN___C_Dez2010_Bestueckung.pdf
100n 10µ 3 R BAV70 C15 C4 I U R2 10µ T 1R C D2 D6 10µ 0 T1 NDS355N 1 X C3 J R18 A 10µ M IC4 R14 M S SS14 10K 1K D4 T4 NDS355N LED-SMD1206 C9 22p R31 10K LT1121[A](C/I)S8-5 D5 R23 10K BAV70 C21 100n C17 Q2 32,768KHz R30 10K 4n7 HausBus@ C8 22p NDS355N C20 T3 MBP-Bayern. 100n dyndns.org C5 100n R6 4K7 R20
in „Konzept zu einem Hausbus auf CAN-Bus Basis und die Enstehung des Konzeptes“ · Haus & Smart Home ·
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Protel_Document.pdf
RESET (ADC2) PA2 38 (ADC3) PA3 37 18k 1 PB0 (T0) (ADC4) PA4 36 R2 2 35 150k C 3 PB1 (T1) (ADC5) PA5 34 C4 C HD1 4 PB2 (AIN0) (ADC6) PA6 33 100n 5 PB3 (AIN1) (ADC7) PA7 6 VCC 6 PB4 (SS) 22 GND GND 5 7 PB5 (MOSI) PC0 23 VCC ISP 4 8 PB6 (MISO) PC1 24 3 PB7 (SCK) PC2 2 PC3 25 GND 1 GND C8 RxD 14 PD0 (RXD)
in „JTAG ICE Evertool light Frage“ · Mikrocontroller und Digitale Elektronik ·
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steuerung.pdf
0 1 1 - R - R Q2 A 8 8 BC548 A T T V K K R2 + R1 IC1 1k 9 RESET (ADC7)PA7 33 4 k 2 k 10k (ADC6)PA6 34 R 1 R 1 (ADC5)PA5 35 12 XTAL2 (ADC4)PA4 36 V 13 (ADC3)PA3 38 2 4 9 XTAL1 (ADC2)PA2 39 + 2 C n32 (ADC1)PA1 40 K1 + 6 030 AREF (ADC0)PA0 1 Omron D K2 C 131 AVCC 8 1Omron D GND (MISO)PB6 7 1 2 +5V 10 VCC (MOSI)PB5 6 3 4 MOSI 1 11 GND (SS)PB4 5 RESET 5 6 Q4 1 (AIN1/OC0)PB3 4 BC548 Q3 (AIN0/INT2)PB2 3 ISP R10 BC548 B (T1)PB1 2 R3 B (T0/XCK)PB0 1 1k V 29 1k 2 4 1 (TOSC2)PC7 28 + (TOSC1)PC6 27 C7 Q1 C8 (TDI)PC5 26 D (TDO)PC4 25 22pF 22pF
in „Turbinensteuerung“ · Mikrocontroller und Digitale Elektronik ·
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steuerung.pdf
0 1 1 - R - R Q2 A 8 8 BC548 A T T V K K R2 + R1 IC1 1k 9 RESET (ADC7)PA7 33 4 k 2 k 10k (ADC6)PA6 34 R 1 R 1 (ADC5)PA5 35 12 XTAL2 (ADC4)PA4 36 V 13 (ADC3)PA3 38 2 4 9 XTAL1 (ADC2)PA2 39 + 2 C n32 (ADC1)PA1 40 K1 + 6 030 AREF (ADC0)PA0 1 Omron D K2 C 131 AVCC 8 1Omron D GND (MISO)PB6 7 1 2 +5V 10 VCC (MOSI)PB5 6 3 4 MOSI 1 11 GND (SS)PB4 5 RESET 5 6 Q4 1 (AIN1/OC0)PB3 4 BC548 Q3 (AIN0/INT2)PB2 3 ISP R10 BC548 B (T1)PB1 2 R3 B (T0/XCK)PB0 1 1k V 29 1k 2 4 1 (TOSC2)PC7 28 + (TOSC1)PC6 27 C7 Q1 C8 (TDI)PC5 26 D (TDO)PC4 25 22pF 22pF
in „Turbinensteuerung“ · Mikrocontroller und Digitale Elektronik ·