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P698__1_.pdf
Phasedisplacement=thedifferencebetweentheprimarycurrent(Ipa)phasevectorandthe(secondaryvoltage(Vout)phase pa vectorminus90degrees) 4. Kr=Ratedtransformationconstant 5. Ls=Secondarywindinginductance Vsa = K FI Fr<< SRF 6. Rs=Secondarywindingresistance r r pa 7. SRF=SelfResonateFrequency 8. Ipa=Actualprimarycurrent 9. Vsa=Actualsecondaryoutputvoltage Mechanicals Schematics PA3202NL WHITE 2 GREEN 3 1 pulseelectronics.com P698.E (5/12) Pulse Jack ® SIDEWINDER - CURRENT SENSOR PA320XNL Series El ect r oni cs Mechanicals Schematics PA3206NL 1 2 3 5 Mechanicals Schematics PA3208NL
in „Strommessung mit einer Luftspule“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
US80KS-01.PDF
Resonance Frequency 80 - 100 80 - 100 kHz Resonance Q (2) 4 - 9 4 - 9 Sound Pressure Output (3) 6 mPa/V 102 dB (4) 0.3 mV/Pa Sensitivity -90 dB Horizontal Beam Directivi(5) 360 360 Degree Vertical Beam Directivity ±25 ±25 Degree Capacitance 200 200 pF max 400 (6) Drive voltage (7) Vp max 100 Storage
in „Suche Ultraschall Transducer 80kHz“ · Analoge Elektronik und Schaltungstechnik ·
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STM32F103_Industrial_Board_R1.pdf
GND RXINP 3 PA3 26 PA3 G PE3 2 PE3 1 ADJ/GND DC-JACK_CUI_PJ-102A 7 4 2 PA4 29 3 PE4 D 2 C2+ V+ PA5 30 PA4/NSS1/DAC1 PE4 4 PE5 GND AZ1117E D TXOUT C2 C4 PA5/SCK1 PE5 6 0u1 0u1 3V3 SPI1 PA6 31 PA6/MISO1 PE6 5 PE6 1 5
in „STM32F103VET6 Industrial Board Schaltbild“ · Mikrocontroller und Digitale Elektronik ·
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stm32g030c6.pdf
9 8 7 6 5 3 3 3 2 2 2 2 2 PB9 1 24 PA13 2 23 PC14-OSC32_IN PA12 [PA10] 3 22 PC15-OSC32_OUT PA11 [PA9] 4 21 VDD/VDDA PA10 LQFP32 VSS/VSSA 5 20 PC6 NRST 6 19 PA9 PA0 7 18 PA8 PA1 8 17 PB2 1 1 1 1 1 1 1 A A A A A A B B P P P P P P P P DS12991
in „Muß der STM32G programmiert werden?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MainBoard.pdf
k k k k k 5V 3 IN DOUT 2 AD3V3 RXD1 89 PA5/RXD1 ERX0/PB5 34 D5 0 0 0 0 0 N TXD1 90 31 D6 1 1 1 1 1 C16 G C18 91 PA6/TXD1 ERX1/PB6 38 D7 +10µF/10V + 100n 13 PA7/SCK1/SPI0_NPCS1 ERXER/PB7 28 D8 8 9 1 1 1 C 1 C17 D24 14 PA8/RTS1/SPI0_NPCS2 EMDC
in „AT91SAM7X256 - Inbetriebnahme“ · Mikrocontroller und Digitale Elektronik ·
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Datei
CPE_Projekt_Wetterstation_T_RH.c
%2.0f",wf(dd)); if(!ini_OK) Scheduler__wait(_,3*sec); // start signal block DO__write_open_drain(_,PA4,1); DO__write_open_drain(_,PA4,0); Scheduler__wait(_,10*ms); DO__write_open_drain(_,PA4,1); Scheduler__wait(_,40*us); DI__read(_,PA4); Scheduler__wait(_,40*us); //check sensor reply block if(DI__read(_,PA4) == 0) Scheduler__wait(_,90*us); while(DI__read(_,PA4) == 0); ui8 sum = 0; ui8 temp1 = 0, temp2 = 0; ui8 feucht1 = 0, feucht2 = 0; int i; for(i = 39; i >= 0; i = i - 1) //read data block { while(DI_
in „DHT22 Sensor readings unrealisitc with STM32F407 uC“ · µC & Digital Electronics ·
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PDF
AVR-DD-Product-Brief-DS40002215A-1.pdf
DS40002215A-page 9 AVR DD Family Pinout 2.3 20-Pin SOIC GND 1 20 VDD PF6(RESET) 2 19 PD7 PF7(UPDI) 3 18 PD6 PA0(XTAL1) 4 17 PD5 PA1(XTAL2) 5 16 PD4 PA2 6 15 VDDIO2 PA3 7 14 PC3 PA4 8 13 PC2 PA5 9 12 PC1 PA6 10 11 PA7 Power Functionality Power Supply Programming/Debug Ground Clock/Crystal Pin on VDD Power Domain
in „AVR-DD im Anrollen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Airframe-Esp32.pdf
PA1 PI0 PAPA0 P PC O C 1 6 PI0 PA0 PR P1C O R 1 9 PC PA PA1 PI01 P PA0 C O C 5 0 P5PC1 PI0 PA0 C OC 5 PA1 PI01 P PA0C O R8 C O R 3 4 P4 P8P3P32 PI0P C 3 PA0 P PA0C O R 2 1 P P4 PI0 P AIC10 57 PI01 P PA0
in „CP2102 ESP32-S3 USB Verbindung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at27c512.pdf
Ordering Information (Continued) ACC ICC(mA) (ns) Active Standby Ordering Code Package Operation Range 90 20 0.1 AT27C512R-90JC 32J Commercial AT27C512R-90PC 28P6 (0°C to 70°C) AT27C512R-90RC 28R AT27C512R-90TC 28T 20 0.1 AT27C512R-90JI 32J Industrial AT27C512R-90PI 28P6 (-40°C to 85°C) AT27C512R-90RI 28R AT27C512R-90TI 28T 20 0.1 AT27C512R-90JA 32J Automotive AT27C512R-90PA 28P6 (-40°C to 125°C) AT27C512R-90RA 28R 120 20 0.1 AT27C512R-12JC 32J Commercial AT27C512R-12PC 28P6 (0°C to 70°C) AT27C512R-12RC 28R AT27C512R
in „Eprom Vergleichstyp“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
cnt >= LUFT_SLEEP_TICKS ) { LUFT_PWM =0; cnt = 0; } else cnt++; } } //Taster betätigt if( PINA & (1<<PA4) ) { LED_GREEN; LUFT_PWM = LUFT_START * PWM_FAKTOR; PORTA |= (1<<PA2); _delay_ms(25); PORTA &= ~(1<<PA2); _delay_ms(100); cnt=0; } else LED_OFF; } } else //Vakuum-Modus { while(1) { if( PINA & (1<<PA4
in „Pick & Place-Stift mit Unterdruckpumpe & Fußschalter“ · Platinen ·
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Schematic_Scope_1014D_2023-01-06.pdf
8VSSA PB5 41 9VDDA PB4 40 MATRIX_3A 1 2 1 2 1 2 1 2 1 2 1 2 R153 10 39 MATRIX_4A 10K CH2_POS_B 11 PA0 PB3 38 MATRIX_5A MATRIX_4A CH2_POS_A 12 PA1 PA15 37 MATRIX_6A S25 S24 S23 S22 S21 S20 B CH2_RNG_B 13 PA2 PA14 36 SWCLK CH2_CONF ORIG SLOW CH1 CH1_CONF CH2 B CH1_RNG_A 14 PA3 PF735 1 2 1 2 1 2 1 2 1 2 1 2 R154 CH1_POS_A 15 PA4 PF634 10K CH1_POS_B 16 PA5 PA13 33 SWDIO MATRIX_5A CH1_RNG_B 17 PA6 PA12 32 POWER_HOLD S31 S30 S29 S28 S27 S26 MATRIX_1B 18 PA7 PA11 31 POWER_ON/OFF GEN NEXT F3 F4 F5 F6 MATRIX_2B 19 PB0 PA10 30 CONTROL_TX
in „Fnirsi 1014d defekt“ · Mikrocontroller und Digitale Elektronik ·
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PA70.pdf
mit feiner Spitze nötig. • Aufstecken des Bodenbleches. Wenn alles richtig gemacht wurde, muß das PA-Modul durch die Aussparung schauen und bündig mit dem Bodenblech abschließen. • Deckel abnehmen und BNC-Buchsen und Duko an der Platine anlöten. • PA auf den Kühlkörper anschrauben (Abstandsbolzen nicht
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PDF
Intersil_ICL8052_ICL8068_ICL71C03.pdf
Offset Voltage V OS VCM = 0V - 20 65 mV Input Current (Either Input) (Note 7) IIN VCM = 0V - 80 150 pA Common-Mode Rejection Ratio CMRR VCM = ±10V 70 90 - dB Non-Linear Component of Common-Mode Rejection VCM = ±2V - 110 - dB Ratio (Note 8) Large Signal Voltage Gain A R = 50kΩ 20,000 - - V/V V L Slew Rate
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SMD-PHILIPS_1999.pdf
BZV85-C15 C15 PH SOD66 (DO41) BZV90-C13 BZV90C13 SC-73/SOT223 BZV85-C16 C16 PH SOD66 (DO41) BZV90-C15 BZV90C15 SC-73/SOT223 BZV85-C18 C18 PH SOD66 (DO41) BZV90-C16 BZV90C16 SC-73/SOT223 BZV85-C20 C20 PH SOD66 (DO41) BZV90-C18 BZV90C18
in „Datenbuch Valvo 1977 gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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Mainboard_Schaltung.pdf
0 1 1 R T 100k E 4 5 (INT1)PD3 n E D DND R7 9 7 z R IC4 JP1 ) ) GND C 4 H 10 36 (ADC7)PA7 (RXD)PD0 1 1 1 -UB +UB T F 6 RESET (ADC7)PA7 37 (ADC6)PA6 (TXD)PD1 2 C C 6 5 5 7 9 (ADC6)PA6 38 (ADC5)PA5 D 3 ( ( R 1 C 2 Q 4 13 (ADC5)PA5 39 (ADC4)PA4 N B 4 F XTAL2 (ADC4)PA4 40 G - 5 P 7 p (ADC3)PA3 (ADC3)PA3 B J 1 2 3 4 5 6 C 2 14 XTAL1 (ADC2)PA2 41 (ADC2)PA2 + 6 F (ADC1)PA1 42 (ADC1)PA1 LED1 0 35 AREF (ADC0)PA0 43 (ADC0)PA0 A 10a C3 DIG0 C 1 33 AVCC GND 6 B B 9b C8 DIG0 N 34 AGND (SCK)PB7 9 (SCK)PB7 (MOSI
in „MAX7219: 3-Segment-Anzeige macht Probleme“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F407ZG-board-schematic.pdf
_NSS/SPI3_NSS/USART2_CK/DCMI_HSYNC/OTG_HS_SOF/I2S3_WS/ADC12_IN4/DAC1_OUTSOFT_SPI1_MOSI PA4 3 7 3.3V 3.3V HN1x2(Close) 52 VDD_6 PA5/SPI1_SCK/OTG_HS_ULPI_CK/TIM2_CH1_ETR/TIM8_CHIN/ADC12_IN5/DAC2_OUTPI1_SCK PA5 CAN1_TX 1 TXD RS 8 R118 4 8 ) R36 0 62 VDD_7 PA6/SPI1_MISO/TIM8_BKIN/TIM13_CH1/DCMI_PIXCLK
in „8Mbit/s Manchester Code codieren und decodieren mit STM32F407“ · Mikrocontroller und Digitale Elektronik ·
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STM32F407ZG-board-schematic.pdf
_NSS/SPI3_NSS/USART2_CK/DCMI_HSYNC/OTG_HS_SOF/I2S3_WS/ADC12_IN4/DAC1_OUTSOFT_SPI1_MOSI PA4 3 7 3.3V 3.3V HN1x2(Close) 52 VDD_6 PA5/SPI1_SCK/OTG_HS_ULPI_CK/TIM2_CH1_ETR/TIM8_CHIN/ADC12_IN5/DAC2_OUTPI1_SCK PA5 CAN1_TX 1 TXD RS 8 R118 4 8 ) R36 0 62 VDD_7 PA6/SPI1_MISO/TIM8_BKIN/TIM13_CH1/DCMI_PIXCLK
in „Problem: SPI Remap am STM32F407ZG“ · Mikrocontroller und Digitale Elektronik ·
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MPXM2202.pdf
kPa Linearity) MPXM2202D/G Series -0.6 0.4 %V FSS MPXM2202A Series -1.0 1.0 (5) Pressure Hysteresis (0 to 100 kPa) ±0.1 %V FSS Temperature Hysteresis5(-40°C to +125°C) ±0.5 %V FSS Temperature Effect on Full
in „Drucksensor MPXM2202“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
kPa Linearity) MPXM2202D/G Series -0.6 0.4 %V FSS MPXM2202A Series -1.0 1.0 (5) Pressure Hysteresis (0 to 100 kPa) ±0.1 %V FSS Temperature Hysteresis5(-40°C to +125°C) ±0.5 %V FSS Temperature Effect on Full
in „Drucksensor MPXM2202GS funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan mit ATmega128 und ILI9341 Display
ATmega128GZ2560 VCC Reset R1 10k Reset PF0(ADC7) 97 PF1(ADC6) 95 PF2(ADC5) 93 PF3(ADC4) 92 PF4(ADC3) 90 PF5(ADC2) 89 PF6(ADC1) 87 PF7(ADC0) 85 PK0(ADC7/PCINT0) 83 PK1(ADC6/PCINT1) 81 PK2(ADC5/PCINT2) 79 PK3(ADC4/PCINT3) 77 PK4(ADC3/PCINT4) 75 PK5(ADC2/PCINT5) 73 PK6(ADC1/PCINT6) 71 PK7(ADC0/PCINT7) 69 PA7(AD7) 72 PA6(AD6) 70 PA5(AD5) 68 PA4(AD4) 66 PA3(AD3) 64 PA2(AD2) 62 PA1(AD1) 60 PA0(AD0) 58 PE0(OC3C/PCINT8) 56 PE1(OC3B/PCINT9) 54 PB6(OC8/PCINT10) 52 PB2(MOSI) 50 PB3(MISO) 48 PB1(SCK) ILI9341 240x320
in „AVR Transistortester MEGA2560 Shield“ · Markt · · Schaltpläne
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PDF
IC1210-F128LQ_Datasheet.pdf
7 PA0 IO_TR 90 Port A bit 0 PA1 IO_TR 91 Port A bit 1 PA2 IO_TR 93 Port A bit 2 PA3 IO_TR 95 Port A bit 3 PA4 IO_TR 97 Port A bit 4 PA5 IO_TR 96 Port A bit 5 PA6 IO_TR 94 Port A bit 6 PA7 IO_TR 92 Port A
in „MCS-52 (IC1210-F128LQ)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TXT-ExternalControlManual-P-PA-PX-PHHL-english.txt
NP905/901W/VT800 Series NP3250 : NP1250/2250/3250/3251W Series P420 : NP-P350X/P420X/P350W Series PA600 : NP-PA600X/PA500X/PA550W/PA500U Series PX750 : NP-PX750U Series P501 : NP-P501X/P451X/P451W/P401W/PE501X Series PA622 : NP-PA721X/PA621X/PA671W/PA571W/PA621W/PA521U Series(MM) NP-PA722X/PA622X/PA672W
in „Befehl an COM port mit Batch Beamer NEC LT380“ · Softwareentwicklung ·
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PDF
BK4802N_Datasheet_V1.1_EN.pdf
Parameter Symbol Min Typ Max Unit Parameter VDD3.3V, CE = H RX Current IRX TRX = L — 21 — mA Audio PA OFF VDD3.3V, CE = H RX Waiting I TRX = L — 2.3 — mA Current RX_Wait Audio PA OFF Power Saving V =3.3V, CE = H TX Current ITX DD — 20 — mA TRX = H Power-down I V =3.3V, CE = L — 50 — nA Current PD DD
in „Tranceiver Chip RDA1846 Erfahrungen Selbstbau“ · HF, Funk und Felder ·
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Datei
8515def.inc
***************** ; PORTA - Port A Data Register .equ PORTA0 = 0 ; Port A Data Register bit 0 .equ PA0 = 0 ; For compatibility .equ PORTA1 = 1 ; Port A Data Register bit 1 .equ PA1 = 1 ; For compatibility .equ PORTA2 = 2 ; Port A Data Register bit 2 .equ PA2 = 2 ; For compatibility .equ PORTA3 = 3 ; Port A Data Register bit 3 .equ PA3 = 3 ; For compatibility .equ PORTA4 = 4 ; Port A Data Register bit 4 .equ PA4 = 4 ; For compatibility .equ PORTA5 = 5 ; Port A Data Register bit 5 .equ PA5 = 5 ; For compatibility .equ PORTA6 = 6 ;
in „STK500 und UART“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Klingel.c
Klingel oben) PORTB |= (1<<PB2); //Pin B2 (Schalter innen) Pull-Up Wiederstand aktivieren PORTA |= (1<<PA0) | (1<<PA1)|(1<<PA2)|(1<<PA3)|(1<<PA4)|(1<<PA5)|(1<<PA6)|(1<<PA7); //Dippschalter für die Zeiteinstellung Pull-Up Wiederstand; A7 (Taster außen); aktivieren //Externer Interupt //GIMSK |= (1<<INT0);
in „Klingel macht was sie will. Attiny 24 und GCC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
nmot_icp.c
Taktfrequenz ergibt sich dann die Signalfrequenz Erg = F_CPU / Erg; // f = 1 / t if(Erg>1){ PORTA|=(1<<PA0); } if(Erg>5){ PORTA|=(1<<PA1); } if(Erg>8){ PORTA|=(1<<PA2); } if(Erg>10){ PORTA|=(1<<PA3); } delay_ms(10); PORTA&=~(1<<PA0); PORTA&=~(1<<PA1); PORTA&=~(1<<PA2); PORTA&=~(1<<PA3); } } //General short delays void delay_ms(uint8_t x) { uint8_t y, z; for ( ; x > 0 ; x--){ for ( y = 0 ; y < 90 ; y++){ for ( z = 0 ; z < 6 ; z++){ asm volatile ("nop"); } } } } void ioinit (void) { //1 = output, 0 = input DDRA = 0b11111111; //All outputs DDRB = 0b00000000; //All inputs DDRD = 0b00000000; //All
in „Hz ausgeben an LED's beim ICP Verfahren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
spansion_inc_am29f040b_eol_21445e8-3004346.pdf
Addr Data Addr Data Read (Note 5) 1 RA RD Reset (Note 6) 1 XXX F0 Manufacturer ID 4 555 AA 2AA 55 555 90 X00 01 Autoselect Device ID 4 555 AA 2AA 55 555 90 X01 A4 (Note 7) Sector Protect Verify SA 00 (Note 8) 4 555 AA 2AA 55 555 90 X02 01 Program 4 555 AA 2AA 55 555 A0 PA PD Chip Erase 6 555 AA 2AA 55 555
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Schaltplan eines AT90CAN128-16AI Mikrocontrollers
U1 AT90CAN128-16AI, VCC_2, VCC, GND_2, GND, AVCC, AGND, AREF, RESET, XTAL2, XTAL1, PG0_(WR), PG1, PG2_(ALE), PG3, PG4, PF7_(ADC7_TDI), PF6_(ADC6_TDO), PF5_(ADC5_TMS), PF4_(ADC4_TCK), PF3_(ADC3), PF2_(ADC2), PF1_(ADC1), PF0_(ADC0), PA0_(AD0), PA1_(AD1), PA2_(AD2), PA3_(AD3), PA4_(AD4), PA6_(AD5), PA7_(AD7), PB0_(SS), PB1_(SCK), PB2_(MOSI), PB3_(MISO), PC0_(A8), PC1_(A9), PC2_(A10), PC3_(A11), PC4_(A12), PC5_(A13), PC6_(A14), PC7_(
in „SPI Kommunikation zwischen AT90CAN und ATmega16 (AVR)“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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PDF
BMP581.pdf
pressure A p_rel 900 – 1100 ± 0.4 Pa accuracy hPa hPa, 25 °C, 1 kPa steps Absolute Pressure Ap_abs 300 – 1100 ± 30 Pa accuracy hPa, -5 – 65 °C, including TCO © Bosch Sensortec GmbH 2023 | All rights reserved, also regarding any disposal
in „Datenlogger Pendeluhr“ · Mikrocontroller und Digitale Elektronik ·
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Datei
V9_PWM_Rampe_2.asm
5 Sekunden bremsen. ; Strombegrenzung beim Fahren über Trimmer einstellbar. ; ; Portbelegungen: ; PA0= Fet high 50V "UP" PIN 20 FET: 0=Inaktiv / 1= aktiv ; PA1= Fet high 50V "Down" PIN 19 FET: 0=Inaktiv / 1= aktiv ; PA2= Current Motor ist "ADC2" PIN 18 ; PA3= Status LED out PIN 17 ; PA4= IN 1 (low level) Stop up PIN 14 ; PA5= IN 2 (low level) Stop down PIN 13 ; PA6= IN 3 (high level) UP PIN 12 ; PA7= IN 4 (high level) down PIN 11 ; ; PB0= MOSI / (OC1A___) PIN 1 ; PB1= Fet low / MISO / OC1A "UP" PIN 2 FET: 0=Aktiv / 1= inaktiv
in „Tiny26: Rampe Runterzählen geht nur bis 125“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD820.pdf
Offset overTemperature 0.5 3 0.5 2 mV Offset Drift 2 2 μV/°C Input Bias Current VCM= 0V 2 25 2 10 pA VCM= −10V 40 40 pA AtT MAX VCM= 0V 0.5 5 0.5 2.5 nA Input Offset Current 2 20 2 10 pA AtT 0.5 0.5 nA MAX Open-Loop Gain VOUT= −10V to +10V RL= 100 kΩ 500 2000 500 2000 V/mV TMINtoTMAX 500 500 V/mV RL
in „Präzisionsgleichrichter Gleichrichter Zweiweggleichrichter im IC?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
ATB_Menue_1.c
/ Pin 4-T1 Pin 5-T2 Pin 6-T3 // Pin 7-T4 Pin 8-T5 // P30 Board 1 Prozessor Port A-Buchsenleiste // PA 0-Pin 1-frei PA 1-Pin 2-Servo // PA 2-Pin 3-LED PA 3-Pin 4-T1 // PA 4-Pin 5-T2 PA 5-Pin 6-T3 // PA 6-Pin 7-T4 PA 7-Pin 8-T5 // T1-hoch, T3-enter, T4-zurück, T7-runter #include <avr/io.h> // Einbindung
in „Einfaches Menue mit I2C Bus in C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
H72326ad_DE_8473_ECT_Industrial_Pressure_Transmitter.pdf
aussen,DIN3858 19 G3/4"Frontmembran 2) 4) 52 Elektrischer GerätesteckerEN175301-803-A(DIN43650-A),Mat.PA 05 Anschluss GerätesteckerM12x1,5-polig,Mat.PA(AlteForm),Mat.PBT(NeueForm) 35 Gerätestecker,Industriestandard(Kontaktdistanz9.4mm),Mat.PBT 01 GerätesteckerPackardMetriPack,Mat.PBT 51 5) 6) KabelPUR(KabelverschraubungPA6-3),-20°C…+70°C 24 KabelPVC(KabelverschraubungPA6-3),-5°C…+60°C 5) 6) 9) 22 KabelRaychem(KabelverschraubungPA6-3),-20°C…+100°C 5) 6) 9) 08 H 2326ad Seite2/9 ECT8473 8473 . XX XX XX XX XX XX Ausgangs- Ausgangssignal Lastwiderstand I(supply) U(supply
in „Drucksensor (Druckmessumformer) - welche Signalart für Arduino: Spannung oder I2C“ · Mikrocontroller und Digitale Elektronik ·
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3d_drucker_print_v16.pdf
TM TM Arduino MEGA 2560 Arduino MEGA 2560 +5V +5V S IC6 S IC7 4 h RESET 30 RESET (AD7)PA7 71EN-Z3 4 h RESET 30 RESET (AD7)PA7 71 FIL_SENSOR1 - M 72EN-Z2 - M 72 FIL_SENSOR2 1 2 3 1 2 3 1 2 3 1 2 3 1 2 3 1 2 3 1 2 3 1 2 3 1 2 3 1 2 3 1 2 3 1 2 3 H 16 33 (AD6)PA6 73EN-Z1 H 1 33 (AD6)PA6 73 FIL_SENSOR3 D XTAL2 (AD5)PA5 74EN-E4 D XTAL2 (AD5)PA5 74 FIL_SENSOR4 C N 34 (AD4)PA4 75 N 34 (AD4)PA4 75 C G XTAL1 (AD3)PA3 76EN-E2 G XTAL1 (AD3)PA3 76 FIL_SENSOR5 V (AD2)PA2 EN-E1 ISP_BOOTLOADER (AD2)PA2 98 AREF (AD1)PA1 77EN-E3
in „Eigenes 3D-Drucker Board - Viele Fragen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DG211_70040.pdf
NOTED) rDS(on)vs. VDand Power Supply Voltages DS(on) vs. VDand Temperature 110 100 V+ = 15 V ) 100 ) 90 V– = –15 V W W ( 90 ( 80 c "5 V c a a i 80 i 70 e e - 70 - 60 125_C n n e 60 "10 V e 50 85_C r r o 50 "15 V o 40 25_C - - i 40 i 30 –55_C r "20 V r ) 30 ) 20 n n ( 20 ( 10 D D r r 10 0 –20 –16 –12 –8
in „Integrator resetten, bzw. ersatz für SD211“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DG212_Siliconix.pdf
NOTED) rDS(on)vs. VDand Power Supply Voltages DS(on) vs. VDand Temperature 110 100 V+ = 15 V ) 100 ) 90 V– = –15 V W W ( 90 ( 80 c "5 V c a a i 80 i 70 e e - 70 - 60 125_C n n e 60 "10 V e 50 85_C r r o 50 "15 V o 40 25_C - - i 40 i 30 –55_C r "20 V r ) 30 ) 20 n n ( 20 ( 10 D D r r 10 0 –20 –16 –12 –8
in „Analogschalter mit Logikpegel-Shifter“ · Analoge Elektronik und Schaltungstechnik ·
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MEGA_WiFi-R3-AT2560-ESP8266-32MB-CH340G-1.pdf
1 2 3 4 5 6 7 8 +5V J4 +5V VDD3.3 U3 PA0 1 2 PA1 PA2 3 4 PA3 C2 RESET 30 71 PA7 PA4 5 6 PA5 VDD3.3 VDD3.3 VDD3.3 VDD3.3 RESET [AD7]PA7 7 8 R15 Y1 [AD6]PA6 72 PA6 PA6 9 10 PA7 C15 C22 SW3 16MHz R5 33 XTAL2 [AD5]PA5 73 PA5 PC7 11 12 PC6 C21 R17 DGND GPIO13 [AD4]PA4 74 PA4 PC5 13 14 PC4 C1 34 XTAL1 [AD3]PA3 75 PA3 PC3 15 16 PC2 C19 C20 Y3 VDD3.3 [AD2]PA2 76 PA2 PC1 17 18 PC0 RXD C25 77 PA1 PD7 PG2 A 26M AREF 98 [AD1]PA1 78 PA0 PG1 19 20 PG0 A 100 AREF [AD0]PA0
in „Compilation error: exit status 1“ · Mikrocontroller und Digitale Elektronik ·
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Datenblatt eines p-Kanal MOSFETs
MOSFET designed for... Analog Switches Digital Switching BENEFITS High Off-Isolation ID(off) < 100 pA IS(off) < 100 pA Very High Impedance Cgs < 100 pA IGSS < 100 pA Rugged Zener Protected Input ABSOLUTE MAXIMUM RATINGS (25°C) Drain-to-Source Voltage -30 V Gate-to-Source Voltage -30 V Gate-to-Drain Voltage
in „Suche ein Datenblatt zu WM135“ · Analoge Elektronik und Schaltungstechnik · · Screenshots
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usr_scm_stm32com-a2-1.pdf
BOOT0 12 OSC_IN U300P R300 13 OSC_OUT U300C L300 6 VBAT NC 73 150R/0805 PC0 15 PC0 22 VDDA VSSA 19 PA0 23 PA0 PC1 16 PC1 BLM11P600S 21 VREF+ VREF- 20 PA1 24 PC2 17 50 49 PA2 25 PA1 PC3 18 PC2 75 VDD_1 VSS_1 74 PA3 26 PA2 PC4 33 PC3 100 VDD_2 VSS_2 99 PA4 29 PA3 PC5 34 PC4 28 VDD_3 VSS_3 27 PA5 30 PA4 PC6 63 PC5 11 VDD_4 VSS_4 10 31 PA5 64 PC6 VDD_5 VSS_5 PA6 32 PA6 PC7 65 PC7 PA7 PA7 PC8 PC8 STM32F107VCT6 PA8 67 PA8 PC9 66 PC9 PA9 68 PA9 PC11 PC10 PC10 78 PC10 PA10 69 PA10 PC10 PC11 PC11 79 PC11 PA11 70 PA11 PC12 80 PC12 PA12 71 PA12
in „STM32-comStick USB-Bootloader“ · Mikrocontroller und Digitale Elektronik ·
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v1-oben.pdf
3 3 + S R k IC2 470 R 1 C-RES 30 RESET/PG5 PA7 72 R-RES-ISP PA6 73 4,5nf PA5 74 V V PA4 75 + + GND PA3 76 PA2 77 L-AVCC 100 PA1 78 C-VCC1 C-VCC2 C-VCC3 100nF AVCC PA0 10µH 99 AGND (OC2A/PCINT15)PB7 26 4 3 4 3 4 3 4 3 4 3 4 3 4 3 4 3 100nF 100nF
in „first Projekt - div Steuerungen per Atmel im Auto“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Auszug__fw4.asm
.include "tn12def.inc" .def psz = r28 .def tmp = r16 .def pa = r17 ;Einstellregister für Wartezeit bei Pause .def rt = r18 .def tpp = r19 .def wz1 = r20 ;wartezeit bis alarm .def tpi = r21 ;tmp für Interrupt pause .def tp1 = r22 .def pa2 = r23 .def job = r24 .
in „Interrupt Tiny12“ · Mikrocontroller und Digitale Elektronik ·
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Nokia_6100_LCD_Display_Driver.pdf
be able to PWM the backlight, but I doubt anyone would want the backlight to be at half brightness. PA18 PA17 PA12 PA2 PB20 Figure 5. Hardware Interface to Nokia 6100 LCD Display (Olimex design) Addressing Pixel Memory The Philips PCF8833 controller has a 17424 word memory (132 x 132), where each word
in „Alles was man über das Nokia 6100 Display wissen muss“ · Mikrocontroller und Digitale Elektronik ·
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opa2134.pdf
C ±1 ±3(3) mV A vs Temperature TA= –40°C to +85°C ±2 V/°C vs Power Supply (PSRR) VS= ±2.5V to ±18V 90 106 dB Channel Separation (Dual, Quad) dc, R = 2k 135 dB L f = 20kHz, L = 2k 130 dB INPUT BIAS CURRENT Input Bias Current V CM=0V +5 ±100 pA vs Temperature3) See Typical Curve ±5 nA (4) Input Offset Current V CM=0V ±2 ±50 pA INPUT VOLTAGE RANGE Common-Mode Voltage Range (V–)+2.5 ±13 (V+)–2.5 V Common-Mode Rejection V = –12.5V to +12.5V 86 100 dB CM TA= –40°C to +85°C 90 dB INPUT IMPEDANCE Differential 1013|| 2 || pF Common-Mode
in „Hilfe bei Bemessung der Widerstände an OpAmp“ · Analoge Elektronik und Schaltungstechnik ·
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flash.pdf
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 I 2 I 2 I PA1 PA0 PC2 X PC3 X PC4 X PC5 X #PC3 17 18 #PC2 5 E 6 E 3 E 4 E PC1 19 20 PC0 P P P P J 3 J3 J
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ATB_Ana_Prg_8.c
6-T3 // Pin 7-T4 Pin 8-T5 // P30 Board 1 Prozessor Port A-Buchsenleiste // PC 5-LED1 PC 6-LED2 // PA 0-Pin 1-frei PA 1-Pin 2-Servo // PA 2-Pin 3-LED PA 3-Pin 4-T1 // PA 4-Pin 5-T2 PA 5-Pin 6-T3 // PA 6-Pin 7-T4 PA 7-Pin 8-T5 #include <avr/io.h> // Einbindung Datein #include <avr/interrupt.h> #include
in „PCF 8591 - Hard- und Software“ · Mikrocontroller und Digitale Elektronik ·
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MagicLifeCounter.pdf
1 2 3 4 5 6 LCD17 IC1 9 RESET (PCI7/ADC7)PA7 33LCD14 (PCI6/ADC6)PA6 34LCD13 T 1 2 12 (PCI5/ADC5)PA5 36LCD12 S XTAL2 (PCI4/ADC4)PA4 37LCD11 +5V A R 13 (PCI3/ADC3)PA3 38LCD90 A 3 4 XTAL1 (PCI2/ADC2)PA2 39LCD8 32 (PCI1/ADC1)PA1 40LCD7 ISP1 1 2 LCD 30 AREF (PCI0/ADC0)PA0 3 4 LCD2 20 19LCD1 31 AGND (PCI15/SCK)PB7 8 ISP2 5 6 LCD18 18 17LCD17 +5V (PCI14/MISO)PB6 7 ISP3 ISP2 7 8 LCD16 16 15LCD15 10 VCC (PCI13/MOSI)PB5 6 ISP1 ISP3 9 10 LCD14 14 13LCD13 11 GND (PCI12/OC0B
in „Schaltplan Review“ · Mikrocontroller und Digitale Elektronik ·
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Schematic.pdf
FD2 27 5 A2 V V V B2 19 R70 4 C Q 2 PB3/FD3 28 6 A3 B3 18 R80 5 C 12 XTALIN PB4/FD4 29 7 A4 B4 17 R90 6 V 11 XTALOUT PB5/FD5 30 8 A5 B5 16 R10 7 PB6/FD6 31 9 A6 B6 15 R11 8 IC6 5 CLKOUT/T1OUT PB7/FD7 32 C 10 A7 B7 14 100 9 6 8 C2 C3 PD0/FD8 53 C 100 10 7 SCL VCC 12pF12pF 8 PD1/FD9 54 V 2 D D D WP M 9
in „Logikanalzyer mit FT232BL“ · Mikrocontroller und Digitale Elektronik ·
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NMEA_Mux___Bridge.pdf
2 R3 BC560B C13 R6 C17 R2 T2 0 IC5 10k k L1 R1 R7 R8 100n 3 k k 1 PB0 VCC 40 0 1 2 39 k R5 IC4 PB1 PA0 1 8 3 38 PBRSTVcc PB2 PA1 2 TD ST 7 4 PB3 PA2 37 R4 PFRA 010 L2 T1 10k 3 TOL RST 6 5 PB4 PA3 36 4 5 6 35 BC546B D1 GND RST PB5 (MOSI) PA4 Si 1 7 34 BAT85 JP5 JP6 PB6 (MISO PA5 LTC1232 8 PB7 (SCK) PA6 33 9 RESET PA7 32 10 31 PD0 (RXD) ICP IC1 11 30 IC3 PD1 (TXD) ALE C1 7805 C2 C3 12 PD2 (INT0) OC1B 29 1 C1+ Vcc 16 220u 220u 100n 1u C4 1u 2 15 13 PD3 (INT1) PC7 28 Vs+ GND 14 27 100n C5 3 14 PD4 PC6 C1- T1out 15
in „Hilfe bei Fehlersuche Arduino Funkverbindung“ · Mikrocontroller und Digitale Elektronik ·
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ATB_Menue_2.c
/ Pin 4-T1 Pin 5-T2 Pin 6-T3 // Pin 7-T4 Pin 8-T5 // P30 Board 1 Prozessor Port A-Buchsenleiste // PA 0-Pin 1-frei PA 1-Pin 2-Servo // PA 2-Pin 3-LED PA 3-Pin 4-T1 // PA 4-Pin 5-T2 PA 5-Pin 6-T3 // PA 6-Pin 7-T4 PA 7-Pin 8-T5 // T1-hoch, T3-enter, T4-zurück, T7-runter #include <avr/io.h> // Einbindung
in „Einfaches Menue mit I2C Bus in C“ · Mikrocontroller und Digitale Elektronik ·
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hy-stm32_schematic.pdf
10 T1IN T1OUT 7 PC-RXD2 2 6 C22 21 3V3 11 VSS_5 PB5/I2C1_SMBA/SPI3_MOSI/I2S3_SD/TIM3_CH2/SPI1_MOSI 90 PB4 DBGRQ 17 nSRST GND 18 PA2 T2IN T2OUT 7 2 1 2 0.1uF OSC_IN 12 VDD_5 PB4/NJTRST/SPI3_MISO/TIM3_CH1/SPI1_MISO 89 PB3 DBGACK 19 DBGRQ GND 20 12 13 PC-TXD2 3 7 21 1 OSC_OUT 13 OSC_IN PB3/JTDO/SPI3_SCK