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FK743M5-XIH6.pdf
NLF 3A0C3FP 0 R P1 LN4 IPCU10U2 PA3 PF3 PI MCU10H 4 NLFC_A34A0CMFP GND PI0 GND GND SWCLKPA14 USART1-RX PA10 PA4 IPCU10U3 PI MCU10J 5 FMC_A4 PF4 MCU1B 3.3V P I P1 0 1 1 5 P IP 1 0 5 NPA5 T3 PA4 PF4 J4 NFMC_A5 PF55 A1 E6 SWDIO PA13 USART1-TXPA9 NLD MI0PIXCLK 0 PA6 NLP6 PIMCU10T3 PA5 PF5 PI MCU10J 4 NLQ PI0BK10I O3 PF6 PIMC U10A1 VSS VDD PIMCU10E6 P I P1 0 2 2 6 P IP 1 0 6 DC I_PIXCLK - PA6 PA6 PIMCU10R3 PA6 PF6 PI MCU10K 2 QS I_BK1_IO3 PF6 PIMCU10A17 VSS VDD
in „STM32H743 mit 32MByte externem SDRAM“ · Mikrocontroller und Digitale Elektronik ·
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RAC01-05SC.pdf
Max Single Number Range Voltage Current typ. Capacitive (VAC) (VDC) (mA) (%) Load Output RAC01-3.3SC 90-277 3.3 300 65 2200µF RAC02-3.3SC 600 66 RAC01-05SC 90-277 5 200 68 2200µF RAC02-05SC 400 70 E224736 RAC01-09SC 90-277 9 111 72 1200µF RAC02-09SC 222 74 RAC01-12SC 90-277 12 83 72 1000µF RAC02-12SC 167
in „Schutzklasse 2 -> AC/DC Wandler -> Eigenentwicklung -> Zulässig?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DruckSEnsor.c
build 589 mit C-Compiler:WinAVR-20080610 // // // Funktion : Barometer mit Anzeige des Luftdrucks in hPa und der Höhe in m // // // Displayanzeige: Start (fuer 2s): Betrieb: // +----------------+ +----------------+ // |- Projekt -| |- Druck in hPa-| // |- Barometer -| |- Höhe in m -| // +---------------
in „10bit AD-Wandler auf 12bit“ · Mikrocontroller und Digitale Elektronik ·
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FK723M1-ZGT6.zh-CN.en.pdf
1 PE2 3.3V 0 R GND GND PA3 37 PA2 PE2 2 PE3 17 16 PA3 PE3 VDD VSS DCMI_HSYNC - PA4 PA4 40 PA4 PE4 3 PE4 DCMI_D4 - PE4 30 VDD VSS 38 2. It is recommended to use 5V power supply, and then get 3.3V to the MCU through the onboard
in „Neues Blackboard mit STM32H723“ · Mikrocontroller und Digitale Elektronik ·
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Wohnraumuhr1_280820_Rev1.2A.pdf
3 2 1 6 6 6 6 6 6 6 6 6 6 6 6 6 7 7 6 6 6 6 6 6 6 6 6 6 6 6 6 6 IC5 GND 4 5 J2-2 C3 9 RESET (ADC7)PA7 33 100n C C (ADC6)PA6 34 J1-1 J1-2 1 1 1 1 1 1 1 1 1 1 2 2 2 33 2 2 2 2 2 2 3 3 3 3 3 3 3 3 V V 35 R R R R R R R R R R R R R RR R R R R R R R R R R R R R R C11 GND A (ADC5)PA5 36 2 0 8 7 6 5 GND +47µ/25V 12 (ADC4)PA4 37 GND R 7 ON R3 XTAL2 (ADC3)PA3 38 4 1k X1 (ADC2)PA2 39 0 ISP 4,0MHz (ADC1)PA1 40 S 1 23 4 N 1 B 1 13 (ADC0)PA0 1 2 3 4 2 B R4 2 XTAL1 8 3 C2 C1 +5V (SCK)PB7 7 4 100k 3 27p 33p (MISO)PB6 6 5 32 (MOSI
in „wohnraumuhr 2 - leiterplatte nach projekt scott huehn“ · Mikrocontroller und Digitale Elektronik ·
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atmel_32uc.pdf
39 PA 14 64 PC01 89 TMS 15 PB29 40 PA15 65 PB00 90 TCK 16 PB30 41 PA16 66 PB01 91 TDO 17 PB31 42 PA17 67 VDDIO 92 TDI 18 RESET_N 43 PA18 68 VDDIO 93 PC04 19 PA00 44 PA19 69 GND 94 PC05 20 PA01 45 PA20 70 PB02
in „V: ATMEL 32UC3A0512-U“ · Markt ·
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fiostdv20_datasheet.pdf
Rev1.5 DRAFT (17-Oct-10) DocID: 530002 3 of 7 Aimagin SCHEMATIC DIAGRAM MCU Extension Connector U1 PA0 14 PA0-WKUP PB0 26 PB0 +3V3J9 +3V3 PA1 15 PA1 PB1 27 PB1 R24 PA0 1 (Out 3V3) 1 PA2 16 PA2 PB2/BOOT1 28 PB2 BOOT1 PA1 2 PC9 2 PA3 17 PA3 PB3/JTDO 55 PB3 10K PA2 3 PC8 3 PA4 20 56 PB4 PA3 PC7 PA5 21 PA4 PB4/JNTRST 57 PB5 PA4 4 PC6 4 PA6 22 PA5 PB5 58 PB6 PA5 5 PC5 5 U5V PA7 23 PA6 PB6 59 PB7 SW1 1 +3V3 PA6 6 PC4 6 CN2 U5V PA8 41 PA7 PB7 61 PB8 R18 2 PA7 7 PC3 7 1 U2 PA9 42 PA8 PB8 62 PB9 3 PA8 8 PC2 8 6 Vbus 2 1 6 R6 0
in „Aimagin FioStd wird nicht mehr erkannt.“ · Mikrocontroller und Digitale Elektronik ·
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Transistoren_cht.pdf
-8(Dual) TPC8203 A NEC uPA1754* 30 0.032 7 SOP-8(Dual) TPC8203 A NEC uPA1755* 30 0.032 7 SOP-8(Dual) TPC8203 A NEC uPA1756* 20 0.03 6 SOP-8(Dual) TPC8204 A NEC uPA1757* 20 0.023 7 SOP-8(Dual) TPC8204 A NEC uPA1758* 30 0.03 6 SOP-8(Dual) TPC8203 A NEC uPA1800 30 5 TSSOP-8(Single) NEC uPA1801 20 6 TSSOP-8(Single) TPCS8002 A NEC uPA1802* 20 7 TSSOP-8(Single) TPCS8002 A NEC uPA1810 -12 -4 TSSOP-8(Single) NEC uPA1811 -20 -4 TSSOP-8(Single) NEC uPA1812 -30
in „Frage Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
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Power_MOSET_Cross_reference.pdf
-8(Dual) TPC8203 A NEC uPA1754* 30 0.032 7 SOP-8(Dual) TPC8203 A NEC uPA1755* 30 0.032 7 SOP-8(Dual) TPC8203 A NEC uPA1756* 20 0.03 6 SOP-8(Dual) TPC8204 A NEC uPA1757* 20 0.023 7 SOP-8(Dual) TPC8204 A NEC uPA1758* 30 0.03 6 SOP-8(Dual) TPC8203 A NEC uPA1800 30 5 TSSOP-8(Single) NEC uPA1801 20 6 TSSOP-8(Single) TPCS8002 A NEC uPA1802* 20 7 TSSOP-8(Single) TPCS8002 A NEC uPA1810 -12 -4 TSSOP-8(Single) NEC uPA1811 -20 -4 TSSOP-8(Single) NEC uPA1812 -30
in „Schaltregler Fragen“ · Analoge Elektronik und Schaltungstechnik ·
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DoppelMagnetruehrer.PDF
PG GND_Z BI Technologies EN11-VSM1AF20 GND GND GND_Z B B +3V3 U1O U 1 40 NV ltage_Power_AA P2O P 2 PA0/SYNC/ADC0/AC0/AREF PI41040 NV ltage_Power_BB 10 PA1/SYNC/ADC1/AC1 PIU1042 PIP2090 PA2/SYNPA3/SYNC/ADC3/AC3 PIU1043 PIP208 PA4/SYNC/ADC4/AC4 PIU1044 PIP207 PA5/SYNC/ADC5/AC5 PIU101 PIP206 PA6/SYNC/ADC6/AC6/AC1OUT PIU102 PIP205 PA7/SYNC/ADC7/AC7/AC0OUT PIU103 P3P204 4 P2P203 PB0/SYNC/ADC8/AREF PI5104 P1P202 PB1/SYNC/ADC9 PIU106 PIP201 PB2/SYNPB3/SYNC/ADC11/DAC1 PIU107 TE Connectivity 1-640456-0 PC0/SYNC/OC0A/OC0ALS/SDA/SDAIN PIU1010
in „Platine für Doppelmagnetrüher“ · Analoge Elektronik und Schaltungstechnik ·
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tlc274.pdf
of input 25°C to 2.1 µV/°C VIO offset voltage 125°C I Input offset current (see Note 4) 25°C 0.1 60 pA IO 125°C 1.4 15 nA V O =2.5 V, VIC= 2.5 V 25°C 0.6 60 pA IB Input bias current (see Note 4) 125°C 9 35 nA 0 –0.3 25°C to to V 4 4.2 VICR Common-mode input voltage range (see Note 5) 0 Full range to V
in „Beschaltung von Photodioden“ · Mikrocontroller und Digitale Elektronik ·
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2005700034_IBC_MonoSol_365_OS9-HC_Datenblatt_Europa___Japan_DE.pdf
11,43 11,52 11,60 Gewicht (kg) 20,0 Modulwirkungsgrad (%) 20,04 20,31 20,59 Max.Testlast, Druck/Zug (Pa) 5400/2400 2 Leistungstoleranz (Wp) –0/+5 –0/+5 –0/+5 Max. zulässige Last , Druck/Zug (Pa) 3600/1600 3,2 (eisenarmes Frontabdeckung (mm) Solarglas mitAnti Elektrische Daten (NOCT): reflexionsbeschichtung
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2005700058_IBC_MonoSol_450_OS9-HC_Datenblatt_Europa___Japan_DE.pdf
11,53 11,60 11,66 Gewicht (kg) 23,5 Modulwirkungsgrad (%) 20,47 20,70 20,93 Max.Testlast, Druck/Zug (Pa) 5400/2400 2 Leistungstoleranz (Wp) –0/+5 –0/+5 –0/+5 Max. zulässige Last , Druck/Zug (Pa) 3600/1600 3,2 (eisenarmes Frontabdeckung (mm) Solarglas mitAnti Elektrische Daten (NOCT): reflexionsbeschichtung
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CD00161566.pdf
_1 PC7 PC8 F VSSA PC2 PA2 PA5 PB0 PC6 PB15 PB14 V G REF+ PA0-WKUP PA3 PA6 PB1 PB2 PB10 PB13 H VDDA PA1 PA4 PA7 PC4 PC5 PB11 PB12 AI15494 DocID13587 Rev 16 25/105 104 Pinouts and pin description STM32F103x8, STM32F103xB Figure
in „[F] STM32F103: Lastkondensatoren“ · Mikrocontroller und Digitale Elektronik ·
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doc1925.pdf
Support The system software currently supports the following devices in all speed grades: n ATtiny11 n AT90S4433 n ATtiny12 n AT90S4434 n ATtiny15 n AT90S8515 n ATtiny22 n AT90S8535 n ATtiny28 n ATmega8 n AT90S1200 n ATmega16 n AT90S2313 n ATmega161 n AT90S2323 n ATmega163 n AT90S2333 n ATmega323 (1) n AT90S2343
in „STK500 als ISP“ · Mikrocontroller und Digitale Elektronik ·
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stk500.pdf
Support The system software currently supports the following devices in all speed grades: n ATtiny11 n AT90S4433 n ATtiny12 n AT90S4434 n ATtiny15 n AT90S8515 n ATtiny22 n AT90S8535 n ATtiny28 n ATmega8 n AT90S1200 n ATmega16 n AT90S2313 n ATmega161 n AT90S2323 n ATmega163 n AT90S2333 n ATmega323 (1) n AT90S2343
in „STK500 mit Breadboard“ · Mikrocontroller und Digitale Elektronik ·
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AVR32-64SD20-28-32-48-ProductBrief-DS40002417.pdf
subsidiaries AVR SD Product Brief Pinout 4. Pinout 4.1 20-Pin SSOP GND 1 20 VDD RESET 2 19 PD7 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
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THM_P__Mainboard.pdf
+5V +6V IC1 8 T1 +5V 7 I U2 +3V3 5 O4 C3 n C1 C2 EN GND IC3 7 0 D 1u 51 21 C 1 N A MIC5200-5.0YMM PA0(AD0) VCC G A 10n 100n 50 PA1(AD1) GND 22 n D R 1 1 7 49 PA2(AD2) 8 0 IC4 C 4 N 48 PA3(AD3) C 1 N MAX1148BEUP G 47 PA4(AD4) VCC_52 52 G DGND 5 0 D 46 PA5(AD5) GND_53 53 D 1 CH0 VDD 20 C 1 D 45 PA6(AD6) 0 2 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
in „Probleme mit AT90CAN64 SPI Übertragung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32F43x.lib.txt
R 50 50 1 1 I X JTDO 89 -2200 1000 300 R 50 50 1 1 O X JTMS 72 -2200 900 300 R 50 50 1 1 I X JTRST 90 -2200 800 300 R 50 50 1 1 I X NRST 14 -2200 700 300 R 50 50 1 1 I X PA0 23 -2200 600 300 R 50 50 1 1 B X PA1 24 -2200 500 300 R 50 50 1 1 B X PA2 25 -2200 400 300 R 50 50 1 1 B X PA3 26 -2200 300 300 R 50 50 1 1 B X PA4 29 -2200 200 300 R 50 50 1 1 B X PA5 30 -2200 100 300 R 50 50 1 1 B X PA6 31 -2200 0 300 R 50 50 1 1 B X PA7 32 -2200 -100 300 R 50 50 1 1 B X PA8 67 -2200 -200 300 R 50 50 1 1 B X PA9 68 -2200 -300
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MyPC_sch.pdf
IOVCC0 14 R4 3 3 GND V DREQ IOVCC1 19 IC7 ETH_SO . R5 26 IOVCC2 XMEGA128A1 3 100k VS_TX 27 TX 5 AVR_RST 90 /Reset_PDI 95 PA0 CVCC1 7 PDI_DATA 89 PDI_Data ADC0_ADC1_AC1_PA1 96 PA1 33 GPIO0 CVCC2 24 ADC2_AC2_DAC0_PA2 97 PA2 34 GPIO1 CVCC3 31 ADC3_AC3_DAC1_PA3 98 PA3 9 GPIO2 ADC4_AC4_PA4 99 PA4 R26 10 GPIO3 AVCC0 38 N 3 GND ADC5_AC5_PA5 100 PA5 N N 36 GPIO4 AVCC1 43 G 13 GND ADC6_AC6_PA6 1 PA6 G 8 G 100k 25 GPIO5 AVCC2 45 23 GND ADC7_AC7_AC0OUT_PA7 2 PA7 Klinke 1 C 1 470 R22 11 GPIO6 33 GND 2 N 12 GPIO7 GND0 4 43 GND ADC0_AC0_AREF_PB0
in „Bitte Schaltplan&Layout checken“ · Mikrocontroller und Digitale Elektronik ·
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MyPC_sch.pdf
IOVCC0 14 R4 3 3 GND V DREQ IOVCC1 19 IC7 ETH_SO . R5 26 IOVCC2 XMEGA128A1 3 VS_TX 27 RX 5 AVR_RST 90 95 PA0 100k TX CVCC0 7 PDI_DATA 89 /Reset_PDI ADC0_AC0_AREF_PA0 96 PA1 33 CVCC1 24 PDI_Data ADC1_AC1_PA1 97 PA2 34 GPIO0 CVCC2 31 ADC2_AC2_DAC0_PA2 98 PA3 9 GPIO2 CVCC3 ADC3_ADC4_AC4_PA4 99 PA4 10 GPIO3 AVCC0 38 10u N 3 GND ADC5_AC5_PA5 100 PA5 N N R26 36 GPIO4 AVCC1 43 L3 G 13 GND ADC6_AC6_PA6 1 PA6 G 8 G 100k 25 GPIO5 AVCC2 45 23 GND ADC7_AC7_AC0OUT_PA7 2 PA7 Klinke 1 C 1 470 R22 11 GPIO6 33 GND 2 N 12 GPIO7 GND0 4 43 GND ADC0_AC0
in „Bitte Schaltplan&Layout checken“ · Mikrocontroller und Digitale Elektronik ·
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Datei
BA741.txt
5.000 BA 741/741]/741M pA 741/7413/741M Operationsverstärker ALLGEMEINE BESCHREIBUNG Der BA 741 ist ein monolithischer Operationsverstärker mit einem breiten Anwendungsspektrum in analogen Schaltungen. Er zeichnet sich aus durch
in „Datenblatt und Funktionsbeschreibung für Operationsverstärker ßA 741 gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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2021_11_09_Projektierungshandbuch_de.pdf
Mauerdurchbruch mit Regenschutzgitter erfolgen. Luftführungskomponente Druckverlust Luftkanal gerade 1 Pa/m Luftkanal Bogen 90 ° 4 Pa/Stk Regenschutzgitter 5 Pa Lichtschacht Ansaug 5 Pa Lichtschacht Ausblas 7–10 Pa Tab. 2.5: Anhaltswerte für das Systemzubehör Luftführung HINWEIS Als maximal zulässiger Druckverlust
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PX3524.pdf
PX3524 PA-1-10RBG14-A-ZVG/US/ /V Drucksensoren 1: Dichtung FPM / DIN 3869-14 Produktmerkmale Elektronischer Drucksensor Steckverbindung e1-konform Prozessanschluss: G ¼ A / M5 I Analogausgang Messbereich: -1..
in „PX3524 mit ARDUINO verwenden“ · Mikrocontroller und Digitale Elektronik ·
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schema-electrique-1395717-renkforce-rf2000-imprimante-3d-appareil-pret-a-lemploi-banc-dimpression-chauffant.pdf
3 6 8 1 D 33k 5 RT/CLK O GND 9 R3 5 5 - V3 P 36.5k V2 8 8 SCS_1 PL0 35 PL0 (ICP4) C C C C C (AD0) PA0 78 PA0 D_LED T PC0 T ZLLS350 0 0 DIR_DRV3 PL1 36 C C C C C 77 PA1 D_D6 B T 0 0 PL2 37 PL1 (ICP5) V V V V A (AD1) PA1 76 PA2 C C22 R4 1 1 SCS_2 PL3 38 PL2 (T5) (AD2) PA2 75 PA3 ENA_DRV4 3 C19 R96 R6 15n 237k R5 C12 C13 SERVO_1 PL4 39 PL3 (OC5A) (AD3) PA3 74 PA4 OUT1 J 1n 10k 56k C20 C21 10k SERVO_2 PL5 40 PL4 (OC5B) (AD4) PA4 73 PA5 STP_DRV4 C C14 C15 C16 C17 C18 W1 1.8n 47p SERVO_3 PL6 PL5 (OC5C) (AD5) PA5 PA6 OUT2 S 100n 10n 1n 10n 100n SCS_4 PL7
in „Spannungseinbruch nach Spule“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
sketch_juli29a_Regent.ino
5V)*1023=94 // 2,5A 4,20V // 2,5A*230V=575W // (4,20V/5V)*1023=859 if(werta >= 96 && werta <= 859){ pa = map(werta, 96, 859, 115, 575); } else { wertp = werta; listep(); pa = p; } if(wertb >= 96 && wertb <= 859) { pb = map(wertb, 96, 859, 115, 575); } else { wertp = wertb; listep(); pb = p; } if(wertc
in „int und long miteinander verrechnen und int Resultat?“ · Mikrocontroller und Digitale Elektronik ·
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stm32_magic_eye2.pdf
s 1 C13 JP1 C PA3 20 MAX7219_0_SS 15 H16 L06 P W C1 1n Jumper 22p 22p PA4 D D SEG_F _ S PA5 21 SPI1_SCK N N SEG_G 17 H17 H00 H01 H02 H03 H04 H05 H06 H07 S 1n 22 SPI1_MISO G G 2 PA6 TP1 4 9 PA7 23 SPI1_MOSI TestPoint GNDD GNDD 41 D57 D58 D59 D60 D61 D62 D63 D64 PA8 LED LED LED LED LED LED LED LED PA9 42 +3V3 +5VA GNDD 43 GNDD L07 GNDD PA10 44 PA11 D PA12 45 D XTAL1 5 46 SWDIO PD0 PA13 XTAL2 6 PD1 PA14 49 SWCLK C18 100n +5V +5VA 54 50 10µ C23 L2 PD2 PA15 STM32F103RCTx
in „STM32F103 und I2S Probleme“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Code.txt
1<<PD5) | (1<<PD3) | (1<<PD2) | (1<<PD1); PORTA = (1<<PA1) #define zifferSechs PORTD = (1<<PD5) | (1<<PD3) | (1<<PD2) | (1<<PD1); PORTA = (1<<PA1) | (1<<PA0) #define zifferSieben PORTD = (1<<PD3) | (1<<PD4) | (1<<PD5); PORTA = 0; #define zifferAcht PORTD = (1<<PD1) | (1<<PD2) | (1<<PD3) | (1<<PD4) | (1<<PD5); PORTA = (1<<PA0) | (1<<PA1) #define zifferNeun PORTD = (1<<PD1) | (1<<PD2) | (1<<PD3) | (1<<PD4) | (1<<PD5); PORTA = (1<<PA1) #define zifferAus PORTA = 0; PORTD = 0 // ==============================================
in „Compiler Optimization Level (-O1) ändert Ablauflogik?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Code.c
1<<PD5) | (1<<PD3) | (1<<PD2) | (1<<PD1); PORTA = (1<<PA1) #define zifferSechs PORTD = (1<<PD5) | (1<<PD3) | (1<<PD2) | (1<<PD1); PORTA = (1<<PA1) | (1<<PA0) #define zifferSieben PORTD = (1<<PD3) | (1<<PD4) | (1<<PD5); PORTA = 0; #define zifferAcht PORTD = (1<<PD1) | (1<<PD2) | (1<<PD3) | (1<<PD4) | (1<<PD5); PORTA = (1<<PA0) | (1<<PA1) #define zifferNeun PORTD = (1<<PD1) | (1<<PD2) | (1<<PD3) | (1<<PD4) | (1<<PD5); PORTA = (1<<PA1) #define zifferAus PORTA = 0; PORTD = 0 // ==============================================
in „Compiler Optimization Level (-O1) ändert Ablauflogik?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
CDPLAYER.ASM
******************************************************** .include "8515def.inc" ; Device = ATMEL AT90S8515 .device at90s8515 .def temp =r19 ; Definition einiger Register .def DataH =r16 .def DataL =r17 ;***************************** RESET ********************************** .org $0000 RJMP Starta ; Definierte
in „CD Laufwerk: packet command“ · Mikrocontroller und Digitale Elektronik ·
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A195-E1.pdf
Pressure medium Air Driving method Constant current drive Drive current 100 μA DC Pressure range 0 to 37 kPa Withstand pressure 53 kPa Absolute maximum current 130 μA DC Ambient operating temperature 0 to 50°C (with no condensation or icing) Ambient operating humidity 15% to 95% (with no condensation or icing
in „Aufbau eines Blutdruckmessgerät“ · Mikrocontroller und Digitale Elektronik ·
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Steuerung.pdf
GND - - - - - - - 1 A V V V V V V V 5 - S S S S S S S S GND V S 5 P + J 1 2 IC1 z 2 H 30 RESET (AD7)PA7 71 C 1 6 (AD6)PA6 72 1 Q 1 33 XTAL2 (AD5)PA5 73 C (AD4)PA4 74 34 XTAL1 (AD3)PA3 75 V 98 (AD2)PA2 77 GND 5 100 AREF (AD1)PA1 78 B + 99 AVCC (AD0)PA0 B AGND 26 GND (OC0A/OC1C/PCINT7)PB7 25 10 (OC1B/PCINT6
in „Cadsoft Eagle“ · Platinen ·
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Steuerung.pdf
- - - - - - - 1 - A V V V V V V V 5 V S S S S S S S SGND 5 S + k R 1 n IC1 z C 4 2 H 30 RESET (AD7)PA7 71 C 1 6 (AD6)PA6 72 1 Q 1 33 XTAL2 (AD5)PA5 73 C (AD4)PA4 74 34 XTAL1 (AD3)PA3 75 98 (AD2)PA2 77 GND 100 AREF (AD1)PA1 78 B 99 AVCC (AD0)PA0 B C13 +5V AGND 26 V GND (OC0A/OC1C/PCINT7)PB7 25 + GND 10
in „Cadsoft Eagle“ · Platinen ·
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Mabuchi_Motors_Complete.pdf
MODEL RANGE NOMINAL FREQUENCY SPEED CURRENT INPUT PULLOUTTORQUE AC.V AC.V Hz r/min A W mN·m g·cm CO-241PA-112700 220 ~ 240 230 50 3000 0.10 10.2 32.3 330 CO-241PA-161300 100 ~ 120 120 60 3600 0.17 8.5 27.4 280 Direction of rotation is controlled mechanically. UNIT:MILLIMETERS DIRECTION OF ROTATION 45.0 10.0
in „12 V Motor aus der Al-ko Mover Einheit M20 Ams1“ · Fahrzeugelektronik ·
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Apex_PA03.pdf
PO W ER O PER ATIO N AL AM PLIFIER S PA03 • PA03A M I C R O T E C H N O L O G Y H T T P : / / W W W . A P E X M I C R O ( 8 0 0 ) 5 4 6 - A ( 8 0 0 ) 5 4 6 - 2 7 3 9 FEATURES • MO-127 COPPER POWER DIP™ PACKAGE • HIGH INTERNAL POWER DISSIPATION
in „Hochleistungs-Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
CM_2_metre_Lindenblad.txt
3 MHz for 6-m, 2-m & 70-cm ' ' RP choices in order of increasing calculation time: ' RP 0 1 1 1510 90 90 1 1 0 0 ' 1D Gain toward 0-deg Azimuth - SIDE GAIN ' RP 0 1 1 1510 90 0 1 1 0 0 ' 1D Gain toward 90-deg Azimuth - FORWARD GAIN ' RP 0 1 1 1510 90 180 1 1 0 0 ' 1D Gain toward 270-deg Azimuth - REVERSE GAIN ' RP 0 1 37 1510 90 0 1 5 0 0 ' 2D (Left only) Azimuthal Gain Slice RP 0 1 73 1510 90 0 1 5 0 0 ' 2D Azimuthal Gain Slice - PREFERRED ' RP 0 73 1 1510 90 0 5 1 0 0 ' 2D Elevation Gain Slice ' RP 0 73 73 1510 90 0 5 5 0
in „EZNEC Parasitic Lindenblad Antenna for 70cm File“ · HF, Funk und Felder ·
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Datei
main.c
PIN_RED (1 << PB2) //OC0A #define DDR_GREEN DDRA #define PORT_GREEN PORTA #define PIN_GREEN (1 << PA7) //OC0B #define DDR_BLUE DDRA #define PORT_BLUE PORTA #define PIN_BLUE (1 << PA6) #define SWITCH_RED_ON() TCCR0A |= (1 << COM0A1); #define SWITCH_GREEN_ON() TCCR0A |= (1 << COM0B1); #define SWITCH_RGB_OFF
in „int16 wird bei Addition kleiner“ · Mikrocontroller und Digitale Elektronik ·
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LT3575.pdf
VOUT+ 5V 5V, 700mA C1 R1 C6 R8 10 μF 200k V 0.22μF 1k T1 2.6μH C5 IN 24 μH 47μF SHDN/UVLO – R2 VOUT 90.9k D2 R3 80.6k LT3575 RFB R REF R4 6.04k TC RILIM SW SS VC GND TEST BIAS R6 R5 R7 28.7k 10k 4.53k V IN T1: PULSE PA2454NL C2 C3 D1: PDS835L 10nF 33nF D2: PMEG6010 C5: MURATA, GRM32ER71A476K 3575 TA02
in „LT3575 Simulation Problem Ausgangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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ATtiny416_50002683A.pdf
Serial Target I/O Program/Debug SharedI/Os NC VUSB UPDI GND NC CLK OUT NC CDCTX VREG CDCRX VCC GND UPDI PA0 PC3 CDCTX PA1 PC2 CDCRX PA2 PC1 PA3 PC0 PA4 PB0 PA5 PB1 PA6 PB2 PA7 PB3 USERLED PB5 PB4 USERBTN User LED User button ATtiny416 © 2017 Microchip Technology Inc. User Guide DS50002683A-page 5 ATtiny416
in „Neue 8-Bit Tinys vorgestellt: 417/814/816/817“ · Mikrocontroller und Digitale Elektronik ·
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Ein___Ausg_nge.pdf
Out N N N 100yF E G G + 5 1 330yF +330yH 5 3 6 SD ERR U1 +5V C18 D39 1N5819 51 64 MIC29201X/TO220 50 PA0/AD0 AVCC 49 PA1/AD1 21 48 PA2/AD2 VCC 52 Ein & Ausgänge PA3/AD3 VCC 47 PA4/AD4 46 PA5/AD5 AREF 62 45 PA6/AD6 LM2575HVS-12V 44 25 Hier sollen mind. 20 Ein & Ausgänge entstehen. +12V PA7/AD7 PD0/SCL/INT0
in „Messtechnik (Ein & Ausgangsproblem)“ · Mikrocontroller und Digitale Elektronik ·
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tmpz84c015-stamp-64k.pdf
R1 A10 96 20 3 c 10K DESEL 95 A10 ARDY 21 4 D7 11 11 A10 V 1 30 CS2 A11 94 A11 ASTB 22 5 2 A12 A12 PA7 A9 3 22 A13 93 A13 PA6 23 6 RTSA 12 12 MREQ J2 CS1 A14 92 A14 PA5 24 7 A15 91 25 8 CTSA 13 13 A8 RD 24 OE 70 A15 PA4 26 9 NC A7RF PA3 27 10 DCDA 14 14 A7 WR 29 PA2 WE PA1 28 11 A6 29 12 TxDA 15 15 VCC
in „Z180-Stamp Modul“ · Mikrocontroller und Digitale Elektronik ·
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DC__AC_and_Pulse_Load__KOA___MLCC_reliability___overload_.pdf
DC, AC and Pulse Load of Multilayer Ceramic Capacitors Bolivar Drive * P.O. Box 547 Bradford, PA 16701 USA PhFax: 814-362-8883 www.koaspeer.com DC,AC and Pulse Load of Multilayer Ceramic Capacitors CONTENTS Introduction 3 DC load 4 AC load 5 Pulse load 7 ESD pulses 7 Automotive pulses 9 Surge pulses
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STM32F2X7VGT6-DK-A.pdf
ETH_RMII_REF_CLK/ETH_MII_RX_CLK/USART2_RTS/UART4_RX/TIM5_CH2/TIM2_CH2/ADC_IN1 VREF+ +3.3V C1151 PA15_TDI 3 4 PA2_ETH_MDIO 25 PC1/ETH_MDC/ADC_INT11 11 PA13_TMS 5 6 PA2/ETH_MDIO/USART2_TX/TIM5_CH3/TIM9_CH1/TIM2_CH3 VDD 7 8 PA8_MCO1 67 PA8/MCO1/USART1_CK/TIM1_CH1/I2C3_SCL/OTG_FS_SOF VDD 19 PA14_TCK 9
in „STM32F207 Ethernet + RMII“ · Mikrocontroller und Digitale Elektronik ·
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STM32F2X7VGT6-DK-A.pdf
ETH_RMII_REF_CLK/ETH_MII_RX_CLK/USART2_RTS/UART4_RX/TIM5_CH2/TIM2_CH2/ADC_IN1 VREF+ +3.3V C1151 PA15_TDI 3 4 PA2_ETH_MDIO 25 PC1/ETH_MDC/ADC_INT11 11 PA13_TMS 5 6 PA2/ETH_MDIO/USART2_TX/TIM5_CH3/TIM9_CH1/TIM2_CH3 VDD 7 8 PA8_MCO1 67 PA8/MCO1/USART1_CK/TIM1_CH1/I2C3_SCL/OTG_FS_SOF VDD 19 PA14_TCK 9
in „STM32F2xx USART weigert sich“ · Mikrocontroller und Digitale Elektronik ·
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Core429I-Schematic.pdf
1 2 3 4 5 6 7 8 REG1 AMS1117 U1 Power SW1 PA0 40 142 PD0 i o PA1 41 PA0-WKUP<>USART2_CTS/UART4_TX/ETH_MII_CRS/TIM2_CH1_ETR/TIM5_CH1/TIM8_ETR<>ADC123_IN0/WKUP PD0<>FSMC_D2/CAN1_RX 143 PD1 V G V 1 8 PA2 42 PA1<>USART2_RTS/UART4_RX/ETH_RMII_REF_CLK
in „STM32F4x9 - FMC - SSD196x“ · Mikrocontroller und Digitale Elektronik ·
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eGC.pdf
SYSCON_IO_8 SYSCON_IO_0 SYSCON_IO_000 10 30 SY CON_UART_TXTX PIP401 1 2 PIP402 NLSYSCON0IO01 PIIC701PA0-WKUP1/ADC_IN0 PA9 PIIC7030NLSYSCON0UART0RX SYSCON_IO_9 PIP403 3 4 PIP404 SYSCON_IO_1 SYSCON_IO_1 PIIC701PA1/ADC_IN1 PA10 PIIC7031SY CON_UART_RX GND SYSCON_IO_10 PIP405 5 6 PIP406 SYSCON_IO_2 SYSCON_IO
in „[Suche] Interessierte(n) an Projekt (ARM/FPGA)“ · Mikrocontroller und Digitale Elektronik ·
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RC17xxHP-RC232_Datasheet.pdf
dBm dBm Sensitivity, (1.2 kbps) -118 dBm Supply voltage VCC 2.8 – 3.6 Volt Supply voltage Internal PA VCC_PA* Current consumption, RX /IDLE 31,7 mA Current consumption, TX (+27 dBm) 407 mA Current consumption, SLEEP Max 2.0 uA Temperature range -30 to +85 C *Voltage range on VCC_PA depends on module
in „[V] RADIOCRAFTS RC1701HP-RC232 169MHz Development Kit“ · Markt ·
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ATmega48PA-ATmega88PA-ATmega168PA_Datasheet.pdf
70 80 90 100 110 120 130 140 150160 Temperature (°C) 286 ATmega48PA/88PA/168PA [DATASHEET] 9223F–AVR–04/14 Figure 30-20. Bandgap Voltage versus V CC 1.15 1.125 ) ( 1.1 150 e g 1.075 125 l 85 o 1.05 V 25 a -40
in „Probleme mit Int Capt ISR ATmega48PA“ · Mikrocontroller und Digitale Elektronik ·
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CR-10_Schematic.pdf
12 P0U6012 P0U6177 P 0.1uF 12 P0U8012 P0U1717 P 0 N0RESET PA3 (ADC3/PCINT3) N0EXT0A2 RESET REF N0X0STEP 0 RESET REF N0Y0STEP 0 P RES T 4 P0U504 P0U5035 35 EXT-A2 13 P0U6013 P0U6016 X-STEP R 13 P0U8013 P0U8166 Y-STEP R 3 C24 RESET PA2 (ADC2/PCINT2) P0U5036 36 EXT-A1EXT0A1 9 14 ROSC STEP P0U6015 P 9 14 ROSC STEP P0U8155 P C PA1 (ADC1/PCINT1) R18 R P0SLEEP VDD VCC5V-M R28 R PSLEEP4 VDD VCC5V-M P 7 P0U507 P0U5037 37 SD-SSSD0SS P P C23 P0C2401 P0C2400 XTAL2 PA0 (ADC0/PCINT0) VCC5V-M P0R1802 P0R1801 R19 VCC5V-M P0R2802 P0R2801
in „Problem mit SD Card Melzi Creality3D V1.1.3 Sanguino Atmega 1284“ · Mikrocontroller und Digitale Elektronik ·
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CR-10_Schematic.pdf
12 P0U6012 P0U6177 P 0.1uF 12 P0U8012 P0U1717 P 0 N0RESET PA3 (ADC3/PCINT3) N0EXT0A2 RESET REF N0X0STEP 0 RESET REF N0Y0STEP 0 P RES T 4 P0U504 P0U5035 35 EXT-A2 13 P0U6013 P0U6016 X-STEP R 13 P0U8013 P0U8166 Y-STEP R 3 C24 RESET PA2 (ADC2/PCINT2) P0U5036 36 EXT-A1EXT0A1 9 14 ROSC STEP P0U6015 P 9 14 ROSC STEP P0U8155 P C PA1 (ADC1/PCINT1) R18 R P0SLEEP VDD VCC5V-M R28 R PSLEEP4 VDD VCC5V-M P 7 P0U507 P0U5037 37 SD-SSSD0SS P P C23 P0C2401 P0C2400 XTAL2 PA0 (ADC0/PCINT0) VCC5V-M P0R1802 P0R1801 R19 VCC5V-M P0R2802 P0R2801
in „Suche einfache Möglichkeit 24V 6A DC zu schalten“ · Analoge Elektronik und Schaltungstechnik ·