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Sound.pdf
P3.7 11 J3 V V GND C12 5 XTALI S3 1 33p AIN+ 12 1 2 GND Sound 1 6 5 3 13 2 TXD 7 C2- C1- 10 1 AIN- 14 S4 C COM 7 14 T2O T2I 11 VCC RST P1.2 15 1 2 Sound 2 C 3 RXD 8 T1O T1I 9 C10 1µ/50V 2 P1.3 16 GND R2I D R2O RXD P1.4 38400Baud 8 13 R1I V G R1O 12 3 TXD P1.5 17 4 6 INT0 D P1.6 18 VCC 20K 20K GND 9 6
in „Geräusche mit AVR“ · Mikrocontroller und Digitale Elektronik ·
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schaltplan.pdf
P2A/AN9/RB3 24 LED4_G R11 LED1_B 6 RA4/CCP5/T0CKI P1B/INT2/AN8/RB2 23 G2 C LED1_B LED1_G 7 RA5/AN4/SS/HLVDIN P1C/INT1/AN10/RB1 22 G4 V 8 VSS INT0/AN12/RB0 21 LED4_B LED1_G R12 C LED1_R 9 RA7/CLKI/OSC1 VDD 20 C3 V GND LED4_R 10 RA6/CLKO/OSC2 VSS 19 LED1_R R13 LED3_B 11 18 100nF LED3_G 12 RC0/P2B RX1/DT1/AN19/RC7 17 G1 13 RC1/P2A TX1/P3A/AN18/RC6 16 GND 4 2 0 LED3_R 14 RC2/AN14/P1A SDO1/AN17/RC5 15 SWITCH_2 BUCHS_3_ABGEW GND 3 R 1 RC3/AN15/SCK1/SCL1 SDI1/SDA1/AN16/RC4 POTI 1 LED2_B R14 2 POTI PIC18F26K22SO28W 2 1 SWITCH_2 3 R15 LED2_R JP1 JP3 R16 GND GND LED2_G R17
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rx-tx.pdf
11 T1IN T1OUT 14 1 22p PD2(INT0) 4 U$1 10 T2IN T2OUT 7 2 6 8 5 RXD 12 13 3 7 GND PD3(INT1) 6 2 DTR 9 R1OUT R1IN 8 4 8 0u1 C1 7 PD4(XCK/T0) 11 VDD R2OUT R2IN 5 9 VCC PD5(T1) 12 u 1 3 MAX3232CPE PD6(AIN0) 13 0 C CE PD7(AIN1) 4 CSN PB0(ICP) 14 0 PB1(OC1A) 15 5 SCK 7 PB2(SS/OC1B) 16 M PB3(MOSI/OC2) 17 6 MOSI F PB4(MISO) 18 R ATMEGA328 PB5(SCK) 19 7 MISO 8 IC3 R1 IRQ 1 1k0 LED1 JP1 GND 1 2 3 4 RESET 5 6 ISP 8 7 6 5 4 3 2 1 JP8 LCD Sender / Empfänger
in „NRF24L01+ mit ATMEGA328P Standalone“ · Mikrocontroller und Digitale Elektronik ·
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MQC11.pdf
R 1 R 1 R 1 R 1 R 1 R 1 R 1 Z7 Z6 Z5 Z4 Z3 Z2 Z1 7xIRLML6401 o.ä. A A Q1 Q2 Q3 Q4 Q5 Q6 Q7 V + 20 14 21 ROW0 VCC 19 ROW1 16 22 ROW3 GND 24 23 ROW4 18 ROW5 17 ROW6 THERMAL 3 THERMAL 6 5 1 COL0 THERMAL 10 + 8MHz RC 8 COL1 THERMAL 13 k IC1 4 COL2 R 1 11 COL3 Connect Thermals B RST 29 PC6(/RESET/PCINT14
in „VQC10 am Mega8 o.16??“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ff.h
Number of root directory entries (FAT12/16) */ WORD csize; /* Cluster size [sectors] */ #if FF_MAX_SS != FF_MIN_SS WORD ssize; /* Sector size (512, 1024, 2048 or 4096) */ #endif #if FF_USE_LFN WCHAR* lfnbuf; /* LFN working buffer */ #endif #if FF_FS_EXFAT BYTE* dirbuf; /* Directory entry block scratchpad
in „Arduino Sloeber - C Code einbinden“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Picoscope.txt
supports USB 2.0) Usb300 : 0 (no, port not supports USB 3.0) ReservedMBZ : 0x00 Flags : 0x00 DevIsOpAtSsOrHigher : 0 (Device is not operating at SuperSpeed or higher) DevIsSsCapOrHigher : 0 (Device is not SuperSpeed capable or higher) DevIsOpAtSsPlusOrHigher : 0 (Device is not operating at SuperSpeedPlus or higher) DevIsSsPlusCapOrHigher : 0 (Device is not SuperSpeedPlus capable or higher) ReservedMBZ : 0x00 Data (HexDump) : 07 00 00 00 10 00 00 00 03 00 00 00 00 00 00 00 ................ ---------------------- Device
in „Reparatur Picoscope 2203“ · Mikrocontroller und Digitale Elektronik ·
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XC6206.pdf
=30mA Maximum Output IOUTMAX VOUT≧V OUT(E) 0.9 E-4(*5) - - mA ② Current Short Circuit SHORT VOUT=V SS - E-5(*5) - mA ② Current Input Voltage VIN 1.8 - 6.0 V ② Output Voltage ΔV OUT/ OUT=30mA, Temperature (ΔTopr・ - ±100 - ppm/℃ ② Characteristics VOUT ) -40℃≦Topr≦85℃ *1: Unless otherwise stated, VIN V
in „Welches IC ist das ?“ · Analoge Elektronik und Schaltungstechnik ·
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TARGET__USB-Prog-V3.1.T3001.pdf
IC3 +5V 7Vin Vout 6 +3,3V C12 2 10µ 1 RT 1 1 2 5GND R17 R21 2 200 330k 1 SHDN/SS 8 1 1 R16 100k R18 R22 2 1 33k 10k +V 2 2 2BURST 2 1 C13 10n 2 3SW1 R19 R20 C14 Vc 10 2 1 2 1 2 1 2 1 C2 L100 30k 100 330p 4,7µ 1 2 1 2 15p z 2 1 +V 2 H 4SW2 FB 9 1 M 3 M Y 1 4 R 1 1 LTC3530 1 C1 2 R23
in „Projekt: USBprog – ein Volks-Universalprogrammiergerät“ · News ·
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ixTDM-Schematic.pdf
1 2 3 4 5 6 7 8 12V VCC VDD 5V P1 U1 VCC C3 Cap Semi 2 8 Vin Vout 1 VCC 1 VCC 100n R14/15 -> 0R wenn U3 nicht bestückt D D D D P2 GND R11 nach Bedarf zur Terminierung bestücken Header 2 C2 G G G G C1 MOSI 1 2 R9 8 A Cap Semi Cap Semi Res Semi D A 1: Black 2: Brown 100n 100n RESET 3 4 np
in „Sammelbestellung? Mini-Platine: 3 Kanal Power-PWM mit ATMega+IR+RS485“ · Mikrocontroller und Digitale Elektronik ·
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avrcp_m.pdf
PC5(ADC5/SCL) 28 D5_A5 12 A5 DTR 2 C8 D6_A6 13 A6 NC 5 100n 27 OSCI DSR 9 9 PB6(XTAL1/TOSC1) D7_A7 14 A7 28 OSCO DCD 10 Clock Switch MOSI_A8 15 A8 6 10 2 D0_A0 10 +3V3 RI JP2 1 2 3 PB7(XTAL2/TOSC2) PD0(RXD) 3 D1_A1 /WE 3 VCC 23 PD1(TXD) 4 D2_A2 /OE 16 WE CBUS0 22 27p 8 PD2(INT0) 5 D3_A3 /RAS 4 OE 5V
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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avrcp_m.pdf
) 14 RXD_AVR RXD_AVR D2_A2 8 A1 I/O2 18 D6_A6 GND 7 PB1(OC1A) 15 TXD_AVR TXD_AVR D3_A3 A2 I/O3 D7_A7 C5 18 16 CS 9 A3 I/O4 19 10n GND 21 PB2(SS/OC1B) 17 MOSI_A8 D4_A4 11 A4 GND PB3(MOSI/OC2) 18 MISO_A9 D5_A5 12 A5 FT232RL IC1 PB4(MISO) 19 SCK_A10 D6_A6 13 A6 NC 5 ATmega168 PB5(SCK) D7_A7 14 A7 MOSI_A8 15 A8 10 +3V3 M /WE 3 VCC C 0 0 /OE 16 WE 100n JP3 T A _ _ _ A _ /RAS 4 OE 1 +3V3 S K O S O K S /CAS 17 RAS 20 C4 2 RESET_CPM R S M M M S M CS CAS VSS 3 C 4 RXD_AVR 5 3 1 C 5 TXD_AVR SV1 6
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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hs_sed1375.pdf
1-G7 1-G12 1-B12 FPDAT5 1-G637 1-G2 1-B2 1-B7 1-R8 1-R13 1-G13 FPDAT4 1-R3 1-G3 1-G8 1-B8 1-B13 1-R14 1-R638 FPDAT3 1-B3 1-R4 1-R9 1-G9 1-G14 1-B14 1-B638 FPDAT2 1-G4 1-B4 1-B9 1-R10 1-R15 1-G15 1-G639 FPDAT1 1-R5 1-G5 1-G10 1-B10 1-B15 1-R16 1-R640 FPDAT0 1-B5 1-R6 1-R11 1-G11 1-G16 1-B16 1-B640 * Diagram
in „TFT an M16C62“ · Mikrocontroller und Digitale Elektronik ·
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87C257.pdf
device by following the programming procedure. For applications where the content is programmed A0-A14 Q0-Q7 only one time and erasure is not required, the M87C257 is offered in PlasticLeaded Chip Carrier, E package. M87C257 G Table 1. Signal Names ASVPP A0 - A14 Address Inputs Q0 - Q7 Data Outputs VSS
in „externes EPROM auslesen“ · Mikrocontroller und Digitale Elektronik ·
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spec.pdf
Maximum Ratings VSS=0V Parameter Symbol Conditions Min. Max. Units Supply Voltage V -V - -0.3 7.0 V DD SS (Logic) Supply Voltage V DD-VEE - 0 30.0 V (LCD Drive) Input Voltage V I - -0.3 VDD+0.3 V 2.2.DC Characteristics Ta=25 ℃ , SS=0V Parameter Symbol Conditions Min. Typ. Max. Units Supply Voltage V DD-VSS
in „Einfacher Low Cost LCD Controller für 320x240 LCD im Textmodus“ · Projekte & Code ·
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BTT_SKR_V1.4-SCH.pdf
Y 13 VREFP P2.9/USB_CONNECT/RXD2/ENET_MDIO 63 SSEL0 Motor Driver C11 2 R22 3 NPWR C12 FB3 R42 10K 14 NC P0.16/RXD1/SSEL0/SSEL 62 SCK0 100UF/35V 1 PROBE 10K 0.1UF 15 RSTOUT 0 1 P0.15/TXD1/SCK0/SCK 61 MISO0 R23 Probe 1+5V R41 10K 16 VREFN 1 1 . P P0.17/CTS1/MISO0/MISO 60 MOSI0 10K J9 2NPWR 120R RESET
in „Induktiven Sensor (6-36V) an Microcontroller/Mainboard anschließen“ · Mikrocontroller und Digitale Elektronik ·
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Datenblatt_2200-1201_08.01.2021.pdf
Betätigungswerkzeug Anschließbare Leiterwerkstoffe Kupfer Nennquerschnitt 1 mm² Eindrähtiger Leiter 0,14 … 1,5 mm² / 24 … 16 AWG Eindrähtiger Leiter; direkt steckbar 0,5 … 1,5 mm² / 20 … 16 AWG Feindrähtiger Leiter 0,14 … 1,5 mm² / 24 … 16 AWG Feindrähtiger Leiter; mit Aderendhülse mit Kunststoffkragen
in „Anschluss Installationskabel 2x0,6 an D-Sub 9 Stecker“ · Haus & Smart Home ·
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PDF
BTT_SKR_V1.4SCH.pdf
Y 13 VREFP P2.9/USB_CONNECT/RXD2/ENET_MDIO 63 SSEL0 Motor Driver C11 2 R22 3 NPWR C12 FB3 R42 10K 14 NC P0.16/RXD1/SSEL0/SSEL 62 SCK0 100UF/35V 1 PROBE 10K 0.1UF 15 RSTOUT 0 1 P0.15/TXD1/SCK0/SCK 61 MISO0 R23 Probe 1+5V R41 10K 16 VREFN 1 1 . P P0.17/CTS1/MISO0/MISO 60 MOSI0 10K J9 2NPWR 120R RESET
in „3D-Drucker, Mainboard-Lüfteranschluss erweitern“ · Mikrocontroller und Digitale Elektronik ·
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mic3202.pdf
OPEN H 250 D25% U VCC= 5V C ILED 1A S I L = 47uH 0.5 NO-SWITCHING W 2LED 4LED 6LED 8LED S 0 0% 0.0 6 14 22 30 38 6 14 22 30 38 6 14 22 30 38 INPUT VOLTAGE (V) INPUT VOLTAGE (V) INPUT VOLTAGE (V) V INutdown Current VCC Voltage CS Voltage vs. Input Voltage vs. Input Voltage vs. Input Voltage 0.5 5.050 250
in „MIC3202 : welche empfohlene Schaltung ist geeignet?“ · Mikrocontroller und Digitale Elektronik ·
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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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Projekt_VRSReplace_0.9.8.pdf
Solarpumpe..................................................................................................14 Timer für Warmwasser................................................................................................15 Block „Schaltzeiten“............................................................
in „Regelung Solarthermie - Ersatz für auroMATIC 560“ · Projekte & Code ·
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AtMega644P_Datasheet.pdf
12-7. Overriding Signals for Alternate Functions in PB7:PB4 Signal PB7/SCK/ PB6/MISO/ PB5/MOSI/ PB4/SS/OC0B/ Name PCINT15 PCINT14 PCINT13 PCINT12 PUOE SPE MSTR SPE MSTR SPE MSTR SPE MSTR PUOV PORTB7 PUD PORTB14 PUD PORTB13 PUD PORTB12 PUD DDOE SPE MSTR SPE MSTR SPE MSTR SPE MSTR DDOV 0 0 0 0 PVOE SPE
in „Alkoholmessgerät programmieren“ · Mikrocontroller und Digitale Elektronik ·
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atmega644.pdf
12-7. Overriding Signals for Alternate Functions in PB7:PB4 Signal PB7/SCK/ PB6/MISO/ PB5/MOSI/ PB4/SS/OC0B/ Name PCINT15 PCINT14 PCINT13 PCINT12 PUOE SPE MSTR SPE MSTR SPE MSTR SPE MSTR PUOV PORTB7 PUD PORTB14 PUD PORTB13 PUD PORTB12 PUD DDOE SPE MSTR SPE MSTR SPE MSTR SPE MSTR DDOV 0 0 0 0 PVOE SPE
in „SPI-Kommunikation Atmega644 - ADS1118“ · Mikrocontroller und Digitale Elektronik ·
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spra524.pdf
---------------------------------------- LACC one ; assume theta (theta_h) is in ; quadrant 1 SACL SS ; 1=>SS, sign of SIN(theta) SACL SC ; 1=>SC, sign of COS(theta) LACC theta_r ; SACL theta_m ; theta=>theta_m SUB theta_90 ; BLEZ E_Q ; jump to end if 90>=theta ; assume theta (theta_h) is in quadrant
in „Raumzeigermodulation mit ARM implementieren“ · Mikrocontroller und Digitale Elektronik ·
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SAK-C167CR-LM_HA.pdf
CC17IO 10 99 EA P8.2/CC18IO 11 98 ALE P8.3/CC19IO 12 97 READY P8.4/CC20IO 13 96 WR/WRL P8.5/CC21IO 14 95 RD P8.6/CC22IO 15 94 V SS P8.7/CC23IO 16 93 VDD V 17 92 P4.7/A23 DD V SS 18 C167CR 91 P4.6/A22/CAN1_TxD P7.0/POUT0 19 90 P4.5/A21/CAN1_RxD P7.1/POUT1 20 89 P4.4/A20 P7.2/POUT2 21 88 P4.3/A19 P7.3/
in „Problem mit Infinion C167CR mit AM29F200B-70SE“ · Mikrocontroller und Digitale Elektronik ·
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LC72130.pdf
Block Diagram No. 4973-3/22 LC72130, 72130M Specifications Absolute Maximum Ratings at Ta = 25°C, V SS = 0 V Parameter Symbol Pins Ratings Unit Maximum supply voltage V DDmax VDD –0.3 to +7.0 V VIN max CE, CL, DI, AIN1, AIN2 –0.3 to +7.0 V Maximum input voltage V 2 max XIN, FMIN, AMIN, IFIN –0.3 to V
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UpdateBeschreibung.pdf
16.09.2011 fertig Bug Status Tasten werden nicht gedrückt Jetzt sollte es gehen. V1.2.11916 gezeigt 14.09.2011 fertig Feature Gehäuse Import/Export Filter für Nun kann in der Export Datenbank im Schnellsuchen Feld zum Bauteil gesprungen werden. V1.2.11922 Export Daten Wenn die "Y" Filter Taste gedrückt
in „EleLa - Elektronik Lagerverwaltung ab V1.2.11A26“ · Projekte & Code ·
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Schema_Mikrocontrollerteil.pdf
AD3)PA3 48 7 8 Q3 (AD2)PA2 49 9 10 (AD1)PA1 50 LCD_DB4 11 12 LCD_DB5 GND 8MHz (AD0)PA0 51 LCD_DB6 13 14 LCD_DB7 24 XTAL1 15 16 F 0 (OC2/OC1C)PB7 17 DA_LOAD +5V p C (OC1B)PB6 16 DA_IN T1 2 (OC1A)PB5 15 DA_CLOCK GND 62 AREF (OC0)PB4 14 LCD_BG (MISO)PB3 13 C9 (MOSI)PB2 12 (SCK)PB1 11 SCK 100nF (SS)PB0 10 18 PG3(TOSC2) (A15)PC7 42 OUT_IMPULS GND GND 19 PG4(TOSC1) (A14)PC6 41 TEMP_LED 43 PG2(ALE) (A13)PC5 40 ÜBERLAST_LED 34 PG1(RD) (A12)PC4 39 ABSCHALTSCHWELL_LED +5V 33 PG0(WR) (A11)PC3 38 1 PEN (A10)PC2 37 SWITCH_1_BUTTON (A9)PC1 35 SWITCH_1_B 7 8 1 (A8)PC0 SWITCH
in „Taktfrequenz des Mikrocontrollers“ · Mikrocontroller und Digitale Elektronik ·
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KITT2_Schaltbild.pdf
O2 LED8 nR 1 k OUT7 3 I3 O3 16 LED7 1 0 MEGA8-P k 1 OUT6 4 I4 O4 15 LED6 C 1 RESET 1 OUT5 5 I5 O5 14 LED5 N 1 PC6(/RESET) PC0(ADC0) 23 OUT4 6 I6 O6 13 LED4 G PC1(ADC1) 24 OUT3 7 I7 O7 12 LED3 22 AGND PC2(ADC2) 25 C4 C5 2 OUT2 8 I8 O8 11 LED2 21 AREF PC3(ADC3) 26 P P 9 GND CD+ 10 20 27 100n 100n C2 AVCC
in „Lauflicht mit ATMEGA 8“ · Mikrocontroller und Digitale Elektronik ·
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RGBW_Controller_Schaltplan.pdf
) 27 SW4 SW4 4 4 17 C10 V 28 SW3 SW5 5 5 16 R2 100n PC5(ADC5/SCL) 19 6 6 15 10k C8 7 ADC6 22 SW6 7 14 22p 12M PB6(XTAL1/TOSC1) ADC7 SW7 8 7 13 RESET C9 Q1 8 30 SW8 9 8 12 GND 22p PB7(XTAL2/TOSC2) PD0(RXD) 31 RXD SW9 10 9 11 PD1(TXD) TXD SW10 1 C14 PD2(INT0) 32 DIR_IO 100n GND N 3 GND PD3(INT1) 1 SW2
in „LM1117 Ersatz mit 24V Eingangsspannung?“ · Mikrocontroller und Digitale Elektronik ·
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24C16.pdf
with the AT24C16 by SERIAL CLOCK (SCL): The SCL input is used to positive tying A2, A1 and A0 to V SS. Device addressing is discussed edge clock data into each EEPROM device and negative in detail in the device addressing section. edge clock data out of each device. SERIAL DATA (SDA): The SDA pin is
in „Erstellen eines 24C16 Eeproms in Multisim“ · Mikrocontroller und Digitale Elektronik ·
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SCHEMATIC_Atmega.pdf
ExtRAM_D3 74 PA3/AD3 VCC 61 ExtRAM_D4 6 4D 4Q 15 ExtRAM_A4 ExtRAM_D2 73 PA4/AD4 VCC 80 ExtRAM_D5 7 5D 5Q 14 ExtRAM_A5 4 3 D ExtRAM_D1 72 PA5/AD5 VCC C101 ExtRAM_D6 8 6D 6Q 13 ExtRAM_A6 D ExtRAM_D0 71 PA6/AD6 98 ExtRAM_D7 9 7D 7Q 12 ExtRAM_A7 16MHz PA7/AD7 AREF 8D 8Q 100n ExtRAM_D[0:7] 19 PB0/SS/PCINT0 PG0/
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pif2_sch-1.pdf
GPIO6 1 PL3A/L_GPLLT_FB FINITn 110 PT36C/INITN GPIO12 2 PL3B/L_GPLLC_FB 111 GPIO5 3 1 VDD_(3.3v) GPIO14/UART_TXD 8 GPIO14 RA9 PT35B PL4A/L_GPLLT_IN 17 10 GPIO15 LEDR 112 PT35A CE1 4 PL4B/L_GPLLC_IN VDD_(3.3V) GPIO15/UART_RXD LEDG 113 5 114 PT33B 6 PL6A/PCLKT5_0 A PT33A PL6B/PCLKC5_0 A 6 GND GPIO10/SPI_M0SI
in „PIF_2 MachXO2-7000HC antwortet nicht“ · FPGA, VHDL & Co. ·
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eGC.pdf
MISO PIIC20IO_L48N_M1DQ9_1 gpmc_wait1PIIC10AA16PU_WAIT SS PIIC20IO_L48P_HDC_M1DQ8_1 gpmc_wait2PIIC10Y14 PIIC20T14 PIIC10V14 SPI K11 IO_L51P_M1DQ12_1 gpmc_wait3 G12C20IO_L42N_GCLK6_TRDY1_M1LDM_1 AM3505-ZER PIIC20IO_L38P_A5_M1CLK_1 PIIC20IO_L49P_M1DQ10_1 PIIC20IO_L46N_FOE_B_M1DQ3
in „[Suche] Interessierte(n) an Projekt (ARM/FPGA)“ · Mikrocontroller und Digitale Elektronik ·
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TypeManager_Print_Test_Sheet.pdf
quer durch Bayern 0123456789 ÄÖÜäöü 0 1 2 3 4 5 6 7 8 9 A B C D E F 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 0 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 1 32 ! 33 " 34 # 35$ 36 % 37 & 38 ' 39( 40 ) 41 * 42 + 43 , 44- 45 . 46 / 47 2 ! " # $ % & ' ( ) * + , - . / 0 48 1 49 2 50 3 514 52 5 53 6 54 7 558
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Dot5x7.pdf
quer durch Bayern 0123456789 ÄÖÜäöü 0 1 2 3 4 5 6 7 8 9 A B C D E F 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 0 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 1 32 ! 33 " 34 # 35$ 36 % 37 & 38 ' 39( 40 ) 41 * 42 + 43 , 44- 45 . 46 / 47 2 ! " # $ % & ' ( ) * + , - . / 0 48 1 49 2 50 3 514 52 5 53 6 54 7 558
in „Suche Font mit alphanumerischen 5x7/5x8 LCD Zeichen“ · PC Hard- und Software ·
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RV-3028-C7.pdf
Solder Pad: 3,2 0,9 0,9 0,9 0,9 0,5 , 0 4 1 0 , 0 , 0 0,4 3,2 x 1 a 0 m , Metal lid is connected to V SS (pin #5) 0 All dimensions in mm typical APPLICATIONS DESCRIPTION IoT The RV-3028-C7 is a SMT Real-Time Clock Module that incorporates Metering an integrated CMOS circuit together with an XTAL. It operates
in „STM32 LQFP löten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RV-3028-C7.pdf
Solder Pad: 3,2 0,9 0,9 0,9 0,9 0,5 , 0 4 1 0 , 0 , 0 0,4 3,2 x 1 a 0 m , Metal lid is connected to V SS (pin #5) 0 All dimensions in mm typical APPLICATIONS DESCRIPTION IoT The RV-3028-C7 is a SMD Real-Time Clock Module that incorporates Metering an integrated CMOS circuit together with an XTAL. It operates
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Datei
korgT3power.txt
CN12 225 165 4pin to FDD Floppy Disk Drive CN13 225 451 3pin to EL (electro-luminiscence) Backlight CN14 1269 468 3pin Mains CN15 1269 649 2pin Power Switch D1 995 281 DIP Bridge Rectifier 100FG?? SG07S?? auf dem Foto D2 684 410 44? 1650:ERB4408 D3 454 684 1SS84 D4 632 647 12V zener D5 524 388 5KQ30 on
in „Benötige Hilfe bei Reparatur: Schaltnetzteil von Korg T3 Keyboard“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
Ausschnitt eines Schaltplans
2024-08-02_17563412... Fertig 18:51 29% C12 60 kHz/250 mV/ss R10 47K IC2 LM38 A R2 68K +9V BU1 C22 21n R32 2K 10K IC5 R34 10K R35 10K IC5 R36 10K R31 4.7K R28 330K R29 40 IN- IN+ COMM VREF- VREF+ TEST POL SP 21 20 37 38 39 32 31 30 29 IC6 40 19 AB4 23 A3 24 BC548C 220K R25 BC548C 470K R20 220K R17 +9V 239 30 29 11 10 9 15 14 13 12 11 10 9 2 3 4 5 6 7 8 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40
in „[S] LCD Thermometer mit ICL7106 (Conrad Bausatz)“ · Markt · · Screenshots
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Pinbelegung MAB8021 Mikrocontroller
PB 5 SCK D 13 P22 VCC PB 4 3,3 V P23 28 P21 D 11 MOSI PB 3 REF P2 27 P20 D 10 SS PB 2 PC 0 P00 4 D 9 PB 1 PC 1 P01 5 26 P17 D 8 PB 0 PC 2 P02 6 25 P16 D 7 PD 7 PC 3 P03 7 24 P15 D 6 PD 6 PC 4 P04 8 23 P14 D 5 PD 5 PC 5 P05 9 22 P13 D 4 PD 4 ADC 6 SCL A 5 21 P12 D 3 INT1 PD 3 ADC
in „Auerswald DLC 4830 Lichtcomputer“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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avrcp_m.pdf
(INT1) 5 D3_A3 /RAS 4 RAS 100n 17 13 R1 C23 Q1 +3V3 6 D4_A4 /CAS 17 20 X1 3V3OUT CBUS2 14 V 7 PD4(XCK/T0) 11 D5_A5 CAS VSS B + 100n 15 CBUS3 12 + VCC PD5(T1) 12 D6_A6 B USBDP CBUS4 10k 20 MHz PD6(AIN0) D7_A7 IC6 4256 B D- 16 USBDM C26 27p C3 PD7(AIN1) 13 D0_A0 6 1 D4_A4 S D+ TEST 26 D1_A1 7 A0 I/O1 2 D5_A5 U - 25 100n 14 RXD_AVR A1 I/O2 GND 7 PB0(ICP) 15 TXD_AVR RXD_AVR D2_A2 8 A2 I/O3 18 D6_A6 GND PB1(OC1A) CS TXD_AVR D3_A3 9 A3 I/O4 19 D7_A7 C5 GND 18 PB2(SS/OC1B) 16 D4_A4 11 10n GND 21 PB3(MOSI/OC2) 17 MOSI_A8 D5_
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Datei
spi-L431.h
SPI_DS_5, SPI_DS_6, SPI_DS_7, SPI_DS_8, SPI_DS_9, SPI_DS_10, SPI_DS_11, SPI_DS_12, SPI_DS_13, SPI_DS_14, SPI_DS_15, SPI_DS_16 } spi_data_size_enum; // Serial Peripheral Interface typedef volatile struct spi_struct { // 0x00 SPI_CR1 SPI Control register 1 uint32_t CPHA : 1; // 0 Clock Phase uint32_t CPOL
in „STM32: SPI - HAL durch eigenen code ersetzen“ · Mikrocontroller und Digitale Elektronik ·
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multimeter_Rev1.2.pdf
47µ PB0(ICP) 14 PB1(OC1A) 15 R18 180 DP GND GND GND GND GND GNDGND PB2(SS/OC1B) 16 R4 1k PB3(MOSI/OC2) 17 R3 1k PB4(MISO) 18 R2 1k PB5(SCK) 19 R1 1k IC2 JP1 1 2 C 3 4 C 5 6 R8 4,7k GND T5 BC547 R10 33k R 1 7 7 C9 R
in „Multimeter“ · Projekte & Code ·
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Protel_Schematic.pdf
22uF 4 VCCIO TXD 1 D1 Rcv fB 15 Rcv fB 15 D 1 20 5 Input1 3 +IN Input2 3 +IN D VCC RXD D2 Rcv Out 14 Sen1 Rcv Out 14 Sen2 2 GND GND GND 16 USBDM 2 12 2 12 3 15 USBDP 3V3OUT 17 CT Ref In CT Ref In 4 D GND m m 11 GND m m 11 N D D D S C7 1 C CRef Out 1 C CRef Out G N N N E -IN + - c e 10 -IN + - c e 10
in „Spannungsdifferenz Laptop - Veroboard Aufbau“ · Analoge Elektronik und Schaltungstechnik ·
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MMR70.pdf
3 1 USB_5V G (MISO)PB6 2 k 2 SP_REF 17 (MOSI)PB5 1 2 , 3 MIC+/AUXIN_L GND 5 44 R 8 4 TP18 38 VCC (SS)PB4 43 AUDIO_L 5 MIC-/AUXIN_R VCC (AIN1/OC0)PB3 42 AUDIO_R 6 DFMS/SP_L 18 (AIN0/INT2)PB2 41 7 DTMS/SP_R D 6 (T1)PB1 40 GND RX/TX 8 VIDEO/STB N 39 GND (T0/XCK)PB0 TP14 D 9 VPPFLASH G 26 N 10 GND (TOSC2
in „[AVR] FM-Transmitter für 1,50EUR --> Ansteuerung?“ · Mikrocontroller und Digitale Elektronik ·
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untitled...pdf
T E 46 PA5 AGND 63 h p U S 45 PA6 2 2 C 2 O E D 44 PA7 XTAL2 23 Q 3 p 3.8V GND 3 N C 2 N G 10 PB0(SS) XTAL1 24 H 11 PB1(SCK) 1 2 3 8 4 5 6 7 I S 12 PB2(MOSI) PG0 33 G G G G G G G G 13 PB3(MISO) PG1 34 GSM-MODULE GM862GND 5 4 14 PB4 PG2 43 GND 1 VBATT GND 2 5 15 PB5 PG3 18 3 VBATT N N N N N N N N GND
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EMS_PIC.pdf
RX/DT 17 232_RX GND 4 V- 3V3OUT CBUS2 14 V R10 13 RC1/T1OSI RC6/TX/CK 16 232_TX 7 C2+ GND 15 CBUS3 12 GND +5 R9 14 RC2/CCP1 RC5/SDO 15 R11 V 1 C 5 USBD+ 16 USBDP CBUS4 + 10k RC3/SCK/SCL RC4/SDI/SDA + C2- USBD- USBDM 26 10k PIC18F2580-I/SP 10k 11 14 25 TEST Mode 232_TX 10 T1IN T1OUT 7 GND 7 1 O SOFT_TX 12 T2IN T2OUT 13 GND GND 18 2 2 5 232_RX 9 R2OUT R2IN 8 GND 21 3 3 4 SOFT_RX MAX232 FT232RL GND SW2 GND 08.09.2011 20:40:05 f=0.90 C:\Eigene Daten
in „Buderus EMS-"Gateway" mit PIC18F / Sammelbestellung“ · Haus & Smart Home ·
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EMS_PIC.pdf
RX/DT 17 232_RX GND 4 V- 3V3OUT CBUS2 14 V R10 13 RC1/T1OSI RC6/TX/CK 16 232_TX 7 C2+ GND 15 CBUS3 12 GND +5 R9 14 RC2/CCP1 RC5/SDO 15 R11 V 1 C 5 USBD+ 16 USBDP CBUS4 + 10k RC3/SCK/SCL RC4/SDI/SDA + C2- USBD- USBDM 26 10k PIC18F2580-I/SP 10k 11 14 25 TEST Mode 232_TX 10 T1IN T1OUT 7 GND 7 1 O SOFT_TX 12 T2IN T2OUT 13 GND GND 18 2 2 5 232_RX 9 R2OUT R2IN 8 GND 21 3 3 4 SOFT_RX MAX232 FT232RL GND SW2 GND 08.09.2011 20:40:05 f=0.90 C:\Eigene Daten
in „Junkers HT-Bus Heatronic 3 Schnittstelle“ · Haus & Smart Home ·
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ledmatrix.pdf
100u/10V 38 R3 Q1 82p Y1 (ADC2)PA2 330k BC547 B C1 16.000MHz (ADC3)PA3 37 2 2 D 12 36 TO-92 R8 R12 R14 X N XTAL2 (ADC4)PA4 E 3 4k7 4k7 4k7 2 1 Audio not populated (ADC5)PA5 35 1 _ 34 GND C7 C9 C11 N in (ADC6)PA6 R7 R15 O not populated (ADC7)PA7 33 100 3k9 P1 C D 13 470u/10V 8n2 2n2 N XTAL1 G C2 (T0/XCK
in „"LED-Spectrumanalyzer"software ohne Fouriertransformation“ · Projekte & Code ·
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MMR70.pdf
3 1 USB_5V G (MISO)PB6 2 k 2 SP_REF 17 (MOSI)PB5 1 2 , 3 MIC+/AUXIN_L GND 5 44 R 8 4 TP18 38 VCC (SS)PB4 43 AUDIO_L 5 MIC-/AUXIN_R VCC (AIN1/OC0)PB3 42 AUDIO_R 6 DFMS/SP_L 18 (AIN0/INT2)PB2 41 7 DTMS/SP_R D 6 (T1)PB1 40 GND RX/TX 8 VIDEO/STB N 39 GND (T0/XCK)PB0 TP14 D 9 VPPFLASH G 26 N 10 GND (TOSC2
in „FM- Funk Musikübertragung vom PC zum Radio“ · PC Hard- und Software ·