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717-0933-01.pdf
PCINT6)PB6 15 PB6 11 RTS 19 4k7 VCC (OC1A/PCINT5)PB5 PB5 CTS RESET USB-VBUS 52 VCC (OC2A/PCINT4)PB4 14 PB4 2 DTR (MISO/PCINT3)PB3 13 PB3 9 DSR OSCI 27 (MOSI/PCINT2)PB2 12 PB2 10 DCD OSCO 28 R104 22 GND (SCK/PCINT1)PB1 11 SCK PB1 6 RI 10k 53 GND (SS/PCINT0)PB0 10 PB0 R102 23 0 0 0 42 PC7 10k 22 CBUS0 1 1 1 (A15)PC7 41 PC6 13 CBUS1 17 (A14)PC6 40 PC5 14 CBUS2 3V3OUT 2 3 4 (A13)PC5 39 12 CBUS3 15 1 1 1 (A12)PC4 PC4 CBUS4 USBDP USB-DP C C C (A11)PC3 38 PC3 USBDM 16 USB-DM (A10)PC2 37 PC2 26 TEST (A9)PC1 36 PC1 GND 25 (A8)PC0 35 PC0 7 GND
in „Kleines ATMEGA128-Board mit USB“ · Mikrocontroller und Digitale Elektronik ·
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PDF
radmarathon_led_treiber.sch.pdf
14 R6 N S1 (TMS)PC3 24 6 I5 O5 13 R7 G (TCK)PC2 23 7 I6 O6 12 R8 (SDA)PC1 I7 O7 R9 1 3 (SCL)PC0 22 8 I8 O8 11 2 4 9 VS GND 10 0 2 3 4 5 6 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 +5V R10 (OC2)PD7 21 1 2 3 4 5 6
in „ATMEGA32 LED's ansteuern / Kabellänge“ · Mikrocontroller und Digitale Elektronik ·
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PDF
schematic_v31.pdf
MISO 9 10 2 27 C 29 (ADC1)PA1 37 PD4 /RD XOUT V 27 AREF (ADC0)PA0 PA0 R13 100R 3 26 28 AVCC 3 PB3 R14 100R PD5 /WR/SK XIN C AGND (SCK)PB7 PB7 PB2 R15 100R C (MISO)PB6 2 PB6 PB1 PD2 4 INTR MODE0 25 V GND 17 (MOSI)PB5 1 PB5 C 5 VCC (SS)PB4 44 PB4 C 5 DRQ MODE1 24 38 (AIN1/OC0)PB3 43 PB3 V C (AIN0/INT2)
in „Probleme mit Bascom –AVR - Version 2.0.7.5.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MK_3_02.sch.pdf
= VCC V 4 2 N 3 = SCK 5 100K G LED1 4 = MOSI V + Gelb Activ 5 R1 1K2 5 = /RES + LED2 6 = GND 10K R14 A IC1 R2 Gelb 1 A 5 30 u 2 5 6 1 0 17 VCC (PCINT7/ADC7)PA7 31 R3 1K2 LED3 P + 0 C C R 1 38 VCC (PCINT6/ADC6)PA6 32 Grün 2 3 2 7 0 n VCC (PCINT5/ADC5)PA5 33 R4 1K2 2 Q C 1 L F 0 (PCINT4/ADC4)PA4 34 LED4
in „ATmega 644 Ports Parallel geschaltet MK3 Programmer“ · Mikrocontroller und Digitale Elektronik ·
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Board_AT89S8253.pdf
P0.4 (AD5) P0.5 38 10 RST (AD6) P0.6 37 36 11 (AD7) P0.7 P3.0 (RxD) 10k 13 P3.1 (TxD) 24 (A8) P2.0 14 P3.2 (/INT0) 25 15 (A9) P2.1 P3.3 (/INT1) (A10) P2.2 26 16 P3.4 (T0) (A11) P2.3 27 17 P3.5 (T1) 28 18 (A12) P2.4 P3.6 (/WR) (A13) P2.5 29 19 P3.7 (/RD) (A14) P2.6 30 31 (A15) P2.7 Vcc 2 P1.0 (T2) 3 P1.1 (T2Ex) 4 P1.2 5 P1.3 6 P1.4 (/SS) 1 2 7 P1.5 (MOSI) 8 P1.6 (MISO) 9 P1.7 (SCK) 22 33 GND ALE, /PROG /PSEN 32 9 10 10pin male header
in „AT89S8253 -READ/WRITE LOCKED?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Board_AT89S8253.pdf
P0.4 (AD5) P0.5 38 10 RST (AD6) P0.6 37 36 11 (AD7) P0.7 P3.0 (RxD) 10k 13 P3.1 (TxD) 24 (A8) P2.0 14 P3.2 (/INT0) 25 15 (A9) P2.1 P3.3 (/INT1) (A10) P2.2 26 16 P3.4 (T0) (A11) P2.3 27 17 P3.5 (T1) 28 18 (A12) P2.4 P3.6 (/WR) (A13) P2.5 29 19 P3.7 (/RD) (A14) P2.6 30 31 (A15) P2.7 Vcc 2 P1.0 (T2) 3 P1.1 (T2Ex) 4 P1.2 5 P1.3 6 P1.4 (/SS) 1 2 7 P1.5 (MOSI) 8 P1.6 (MISO) 9 P1.7 (SCK) 22 33 GND ALE, /PROG /PSEN 32 9 10 10pin male header
in „AT89S8253 -READ/WRITE LOCKED?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Board_AT89S8253.pdf
39 XTAL1 38 (AD5) P0.5 (AD6) P0.6 37 10 RST (AD7) P0.7 36 11 P3.0 (RxD) 13 P3.1 (TxD) (A8) P2.0 24 14 25 P3.2 (/INT0) (A9) P2.1 15 26 P3.3 (/INT1) (A10) P2.2 16 P3.4 (T0) (A11) P2.3 27 17 P3.5 (T1) (A12) P2.4 28 18 29 P3.6 (/WR) (A13) P2.5 19 30 P3.7 (/RD) (A14) P2.6 (A15) P2.7 31 Vcc 2 P1.0 (T2) 3 P1.1 (T2Ex) 4 P1.2 5 P1.3 6 P1.4 (/SS) 1 2 7 P1.5 (MOSI) 8 P1.6 (MISO) 9 P1.7 (SCK) 22 33 GND ALE, /PROG 32 /PSEN 9 10 10pin male header
in „AT89S8253 -READ/WRITE LOCKED?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RS232-USB_Converter.pdf
7 2 4 V- VCC PD5(T1) 12 V 8 3 +C2 C2+ V+ PD6(AIN0) 13 X2 + PD7(AIN1) 9 4 5 C2- C4 R1 1 5 PB0(ICP) 14 R2 2 B G2 11 T1IN T1OUT 14 GND PB1(OC1A) 15 3 S 10 T2IN T2OUT 7 PB2(SS/OC1B) 16 4 U 12 13 17 GND 9 R1OUT R1IN 8 PB3(MOSI/OC2) 18 R2OUT R2IN PB4(MISO) 19 PB5(SCK) MAX232 GND IC1
in „AVR-Tastaturweiche RS232 USB“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Hantek_Tekway_DSO_v1.03.pdf
PIU10010R6 VD21 PIU10010JCAMRESET/GPJ12 VSSi PIU10010A3 9 PIUP8010SDDATA1/GPE8 UART C 7 / VD22/nSS1/GPD14PIU50010N7 VD23 PIUG3010HCAMDATA0/GPJ0 CAMERAIF VSSi PIB10010A4 _ n LnSRAS LnSCAS PIU10010J9DATA2/GPE9 6 7 P / 5 C P T VD23/nSS0/GPD15PIU10010U5 PIU10010H5AMDATA1/GPJ1 VSSi PIU10010A12 O0C PIC1PIC101101
in „TEKWAY DST1xx2B Oszilloskop“ · Mikrocontroller und Digitale Elektronik ·
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K_LINEPLAYITV100.pdf
Port 78K0/KF1 CN5 Port 78K0/KF1 CN6 Port 78K0/KF1 1 AV 1 P13, TxD6 1 P03, SI11 1 P43, AD3 REF 2 AV SS 2 P14, RxD6 2 P02, SO11 2 P42, AD2 3 P120, INTP0 3 P15, TOH0 3 P01, TI010, TO00 3 P41, AD1 P33,TI51,TO51,INTP4 P16, TOH1, INTP5 P00, TI000 P40, AD0 4 4 4 4 5 P32, INTP3 5 P17, TI50, TO50 5 P67, ASTB
in „[V] NEC V850 Demonstration Kit K-Line "Play it"“ · Markt ·
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DE200610__1_.pdf
- leistung: 3500 Watt MSP430 F2012 N DIL-14 2k 128 10 2.85 MSP430 F2012 PW TSSOP-14 2k 128 10 3.10 95 MSP430 F2003 N DIL-14 1k 128 10 3.70 Gehäuse Flash SRAM I/O 85 POWERBOX M1 Gerätemanager 39. MSP430 F2003 PW TSSOP-14 1k 128 10 4.10 MSP430 F169
in „ekg schaltung aus heft 10/2006“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ATmega1284P_128KByte.pdf
into SPI MSTR OUTPUT and SPI SLAVE INPUT. Table 14-7. 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
in „ATmega1284P versus ohne P“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schaltplan_33.pdf
22K 11 6 + ( R553 1K 0.0047 2.2K 0.01 R R 3 L 0 V 680K 13 Q110 Q111 PLL_PS R325 22K 12 3 5 9 u 3 3 1 14 Q505D p KRC404 KRC404 0 E 3 2 C 0 C1u 12 5 0 6 K 13 3 1 4 C C548 6 C 1 3 R 1 Q B 82p 5 .7 LM324MX M HZK2ALL C546 R550 R551 Q509 R 4 1 14 3 0.1 10K 10K 1SS372 Q510 0 0 0 0 0 6 6 6 6 13 C549 2 0 9 K 1 1 1 1 5 5 5 5 15 2 Q507D 14 2 SSM3K03FE 2 5 .7 6 7 8 9 7 5 6 12 3 5 K 5 R 4 1 2 2 2 2 3 3 3 3 16 1 3 1 10K2 C328 0 4.1 5 2 C 3 0 4 1 C C C C R R R R X301 C326 C 220p 4 0 5 LM324MX 5 - 1 R 8 0 1 1 0 1 . S108 5 21.25MHz 0.01 Q1SV217
in „Pegelwandler RX TX?“ · Mikrocontroller und Digitale Elektronik ·
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M64282FP.pdf
Gaming, Human interface for PC, etc. 4. Block Diagram AGND AVDD VOUT PVDD PGND TSW READ RESET 16 15 14 13 12 11 10 9 Level Gain Edge Control Control Control Pixel Array 128 x 128 LOGIC 1 2 3 4 5 6 7 8 START NC SIN DVDD DGND LOAD Xrst Xck 1/18 ver. 1 .1E 5/21/98 Mitsubishi Integrated Circuit MITSUBISHI
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PDF
M64282FP.pdf
Gaming, Human interface for PC, etc. 4. Block Diagram AGND AVDD VOUT PVDD PGND TSW READ RESET 16 15 14 13 12 11 10 9 Level Gain Edge Control Control Control Pixel Array 128 x 128 LOGIC 1 2 3 4 5 6 7 8 START NC SIN DVDD DGND LOAD Xrst Xck 1/18 ver. 1 .1E 5/21/98 Mitsubishi Integrated Circuit MITSUBISHI
in „c-mos kamera auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
atmega32_v0.1.pdf
ADC0)PA0 40 3 4 30 AVCC 5 6 31 GND (SCK)PB7 8 7 8 7 9 10 10 (MISO)PB6 6 11 VCC (MOSI)PB5 5 CON1 GND (SS)PB4 4 (AIN1/OC0)PB3 (AIN0/INT2)PB2 3 (T1)PB1 2 (T0/XCK)PB0 1 29 (TOSC2)PC7 28 (TOSC1)PC6 27 (TDI)PC5 26 QG1 (TDO)PC4 (TMS)PC3 25 14 VCC (TCK)PC2 24 (SDA)PC1 23 C5 8 (SCL)PC0 22 7 OUT 21 GND (OC2)PD7 20 (ICP)PD6 (OC1A)PD5 19 (OC1B)PD4 18 (INT1)PD3 17 (INT0)PD2 16 C6 15 (TXD)PD1 14 (RXD)PD0 MEGA32-P 23.09.09 21:00 f=1.20 /home/philipp/eagle/atmega32_v0.1.sch (Sheet: 1/1)
in „USBasp auf Linux macht Probleme“ · Mikrocontroller und Digitale Elektronik ·
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PC_-_GSM_Schaltung.pdf
PGM 25 D 3 2 C2+ 5 RA2/AN2/VREF- RB4 26 R 6 5 6 RA3/AN3/VREF+ RB5 27 C2- 7 RA4/T0CKI RB6/PGC 28 11 14 GND RA5/AN4/SS* RB7/PGD 10 T1IN T1OUT 7 11 12 T2IN T2OUT 13 RC0/T1OSO/T1CKI 12 9 R1OUT R1IN 8 RC1/T1OSI/CCP2 13 GND R2OUT R2IN RC2/CCP1 14 RC3/SCK/SCL 15 MAX232 RC4/SDI/SDA 16 9 RC5/SDO 17 10 OSC1/CLKIN
in „GSM Modem tc35i, kommunikation serielle schnittstelle“ · Mikrocontroller und Digitale Elektronik ·
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lcd2usb_trough-hole_2b_schematic.pdf
XTAL1/TOSC1) GND 10 N 10 2 11 G PB7(XTAL2/TOSC2) PD0(RXD) 3 12 C3 22p PD1(TXD) 4 13 D 8 PD2(INT0) 5 14 N GND PD3(INT1) 6 T1 VCC 15 G 7 PD4(XCK/T0) 11 BC547 R1 16 VCC VCC PD5(T1) 12 VCC PD6(AIN0) 13 47 LCD PD7(AIN1) PB0(ICP) 14 100n +C4 PB1(OC1A) 15 PB2(SS/OC1B) 16 1K GND C5 10uF PB3(MOSI/OC2) 17 R5 PB4
in „Problem mit LCD2USB Variante“ · Mikrocontroller und Digitale Elektronik ·
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FN8222.pdf
to V .................................. -1V to +7Ve (at these or any other conditions above those SS Voltage on VH/R Hnd V /L L listed in the operational sections of this specification) is referenced to VSS ................................... -8V to +8Vmplied. Exposure to absolute maximum rating ∆V
in „digitales Poti gesucht“ · Mikrocontroller und Digitale Elektronik ·
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AEEM-727_lecture_6th_part__eddy_current_inspection.pdf
Component Conductivity Sensitivity, Gauge Factor L 22 = 3 μH, f =1MHz, Re= 10 Ω , ΔR e ± 1Ω 0.42 0.14 0.12 0.40 c lift-off 0.10 t F a 0.38 r R ΔZ n c 0.08 e F l 0.36 g 0.06 m ΔZ ⊥ a o n G 0.04 N 0.34 0.02 absolute normal 0.32 0 0.28 0.3 0.32 0.34 0.36 0.38 0 0.2 0.4 0.6 0.8 1 Normalized Resistance Frequency
in „Literatur zu Wirbelstromsensoren gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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Webserver1.pdf
T3, INT6) (ADC3) PF3 57 INT7 PE7 (IC3, INT7) (TCK, ADC4) PF4 56 PF4 (TMS, ADC5) PF5 PF5 CS 10 PB0 (SS) (TDO, ADC6) PF6 55 PF6 C SCK 11 PB1 (SCK) (TDI, ADC7) PF7 54 PF7 C MOSI 12 PB2 (MOSI) V D MISO 13 PB3 (MISO) GND 53 N PB4 14 PB4 (OC0) VCC 52 G CY7C199CN PB5 15 PB5 (OC1A) 100nF C5 PB6 16 PB6 (OC1B)
in „WIZ810 (WIZ5100) an XMEM Interface (AVR)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TLC-Electronic.pdf
3.1 1 0.50 CP TRA110 7.4 13.0 5.1 7.6 3.1 1 0.50 CP TRA120 7.4 13.0 5.1 7.6 3.1 1 0.50 CP TRA135 9.4 14.5 5.1 7.6 3.1 1 0.50 CP TRA160 9.4 14.5 5.1 7.6 3.1 1 0.50 CP TRA185 9.4 14.5 5.1 7.6 3.1 1 0.50 CP TRA200 10.7 16.7 5.1 7.6 3.1 1 0.60 Cu TRA250 10.7 16.7 5.1 7.6 3.1 1 0.60 Cu TRA300 10.7 16.7 5.1
in „Wer kennt dieses Bauteil?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ME2108_Series.pdf
Ver 09 Package Dimensionsÿ▯ Nanjing Micro One Electronics Inc. 11/14 TEL: 025-84731186 www. microne. com. cn DC/DC Step up Converter ME2108 Series Ver 09 Nanjing Micro One Electronics Inc. 12/14 TEL: 025-84731186 www. microne. com. cn DC/DC Step up Converter ME2108 Series
in „Alle Jahre wieder: Fundstück in Weihnachtsbeleuchtung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
mXyzrssr.pdf
2000 - 1 - Revision A2 W49F002U PIN CONFIGURATIONS BLOCK DIAGRAM RESET 1 32 VDD V DD A16 2 31 WE V SS A15 3 30 A17 4 29 CE A12 A14 DQ0 A7 5 28 A13 OE . 6 27 CONTROL OUTPUT . A6 A8 BUFFER A5 7 32-pin 26 A9 WE DQ7 8 25 A11 A4 DIP RESET A3 9 24 OE 10 23 A10 A2 A1 11 22 CE A0 12 21 DQ7 BOOT BLOCK 3FFFF DQ0
in „Eprom Auslesen mit AVR“ · Mikrocontroller und Digitale Elektronik ·
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MEGA48V_88V_168V.pdf
(PCINT22/OC0A/AIN0) PD6 12 17 PB3 (MOSI/OC2A/PCINT3) 9 1 1 1 1 1 1 1 (PCINT23/AIN1) PD7 13 16 PB2 (SS/OC1B/PCINT2) 5 6 7 0 1 2 3 4 (PCINT0/CLKO/ICP1) PB0 14 15 PB1 (OC1A/PCINT1) P P P P P P P P 1 0 1) 1 A B I ) / I I P 1 1 S S B / / / C C M M C A 2 O 1 S /A 4 / C T L T / 2 N 2 / I / I 2 O C T 2 P 0T
in „analog comparator interrupt probleme mit atmegas“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CY7C63813-SXC-Cypress-Semiconductor-datasheet-11779157.pdf
connect 29 24 – – – – – NC No connect 30 – – – – – – NC No connect 31 – – – – – – NC No connect 16 14 16 15 12 17 11 Vcc Supply 13 11 13 12 9 14 8 V Ground SS The Stack Pointer Register (CPU_SP) holds the address of the current top of the stack in the data memory space. It is affected 6. CPU Architecture
in „Welche Relais und Controller zum Schalten von USB?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Midas.pdf
Midas LCD Part Number System MC COG 132033 A * 6 W * * ‐ S N T L W * * 1 2 3 4 5 6 7 8 9 ‐ 10 11 12 13 14 15 16 1 = MC: Midas Components 2 = Blank: COB (chip on board) COG: chip on glass 3 = No of dots (e.g. 240064 = 240 x 64 dots) (e.g. 21605 = 2 x 16 5mm C.H.) 4 = Series 5 = Series Variant: A to Z – see
in „Display mit SI7032: Wie Busy Flag lesen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schaltplan.pdf
PLLVCC 20 P43 GND6 30 D4 LVDSVCC 12 P1 1 CTRL LED 6 VLED+ P44 GND7 G0 P13 31 D5 100 GND P45 GND8 G1 P14 33 D6 A0P 9LVDS_Y0+ P48 GND9 G2 P15 GND A0N 8LVDS_Y0- R15 2 P49 GND10 G3 P16 34 D7 IC5 100 LT3593 = P50 GND11 G4 P17 35 D8 SN75LVDS8A1P 1LVDS_Y1+ G5 P18 37 D9 A1N 1LVDS_Y1- R14 G6 P19 39 D10 100 VLED
in „NXP verschenkt ARM-Chips“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schaltplan.pdf
PLLVCC 20 P43 GND6 30 D4 LVDSVCC 12 P1 1 CTRL LED 6 VLED+ P44 GND7 G0 P13 31 D5 100 GND P45 GND8 G1 P14 33 D6 A0P 9LVDS_Y0+ P48 GND9 G2 P15 GND A0N 8LVDS_Y0- R15 2 P49 GND10 G3 P16 34 D7 IC5 100 LT3593 = P50 GND11 G4 P17 35 D8 SN75LVDS8A1P 1LVDS_Y1+ G5 P18 37 D9 A1N 1LVDS_Y1- R14 G6 P19 39 D10 100 VLED
in „NXP verschenkt ARM-Chips“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
Specifications HEF, HEC • The IC04 LOCMOS HE4000B Logic Package Outlines/Information HEF, HEC HEF4060B MSI 14-stage ripple-carry binary counter/divider and oscillator Product specification January 1995 File under Integrated Circuits, IC04 Philips Semiconductors Product specification 14-stage ripple-carry binary
in „Quarz schwing nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
supercap_manual.pdf
system (F) system (F) (Ω) (mA) (V) П D H P Ὑ d1 d2 (g) FR0H223ZF 5.5 0.022 0.028 220 0.033 4.2 11.5 14.0 5.08 2.7 0.4 1.2 2.3 FR0H473ZF 5.5 0.047 0.060 110 0.071 4.2 14.5 14.0 5.08 2.4 0.4 1.2 3.9 FR0H104ZF 5.5 0.10 0.15 150 0.15 4.2 14.5 15.5 5.08 2.4 0.4 1.2 4.3 FR0H224ZF 5.5 0.22 0.33 180 0.33 4.2
in „Super cap - .1F 5.5V TOKIN“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
motor.pdf
PM25 S 24 15 1.420 Unipolar 200 0.950 1600 0.380 70 - / 24 48 7.5 2.380 Bipolar 200 1.590 2750 0.500 14 0.6 / ( 24 ) L 24 15 2.030 Bipolar 200 1.560 2400 0.650 8 0.6 / ( 24 ) PM35 S 24 15 1.650 Bipolar 200 1.100 2400 0.400 4.7 0.5 / ( 24 ) 48 7.5 5.200 Bipolar 200 3.100 2200 0.500 6.6 0.6 / ( 24 ) L 24
in „schrittmotor Steuerung“ · Platinen ·
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PDF
DoppelMagnetruehrer.PDF
PI23 Ta ho_Signal_b +3V3 3 U2 8 PD3/SYNC/OC0D/TXD0 PI24023 PIU203WP#/IO2 VDD PIU208 PD4/SYNC/OC1A/SS PI25024 NVUSB_03V3 7 C0 I1 P1 PD5PD6/SYNC/D-/RXD1/MISO PIU1026 D-L D 0 02 R2 PIU207HOLD#/IO3 C1O C C2 O C 3C O C 3 PIU109 VCC PD7/SYNC/D+/TXD1/SCK/CLKPER/EVOUT PIU1027 D+L D 0 R8O R 8 CR9 R 9 PIU201CE
in „Platine für Doppelmagnetrüher“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Schaltplan.pdf
PLLVCC 20 P43 GND6 30 D4 LVDSVCC 12 P1 1 CTRL LED 6 VLED+ P44 GND7 G0 P13 31 D5 100 GND P45 GND8 G1 P14 33 D6 A0P 9 LVDS_Y0+ P48 GND9 G2 P15 GND A0N 8 LVDS_Y0- R15 2 P49 GND10 G3 P16 34 D7 IC5 100 LT3593 = P50 GND11 G4 P17 35 D8 SN75LVDS8A1P 11LVDS_Y1+ G5 P18 37 D9 A1N 10LVDS_Y1- R14 G6 P19 39 D10 100 VLED+ GND P47 VLED+ G7 P20 40 D11 A2P 15LVDS_Y2+ P46 VLED- 41 D12 A2N 14LVDS_Y2- R13 B0 P21 43 D13 100 GND B1 P22 CLKP 17LVDS_CLK+ B2 P23 GND 45 D14 CLKN 16LVDS_CLK- R12 B3 P24 46 D15 P39 TOUCH_X1 B4 P25 47 D16 PLLGND1 19 P40 TOUCH_Y1 B5 P26 1 D17 PLLGND2 21 P41 TOUCH_X2
in „NXP verschenkt ARM-Chips“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ESP32Radio.pdf
SENSOR_VP PCM5102APW _ _ - 4,7k 2 - 3 þÿ10µ100n 100n 100n T T VL082 J1 PWR_FLAG RST EN U U C54 GND C14 17 XSMT e e 4 R39 k R47 R49 25 21 12 i i 1 7 þÿ1µ BOOT IO0 SDO/SD0 GND SCK L L þÿ22µ25V 47k 4 IO02 24 IO2 SDI/SD1 22 26 17 R21 14 6 R32 2 GND C59 200p St-By IO4 SHD/SD2 DAC Data R22 22 DIN OUTL R33 470 SD CS 29 IO5 SWP/SD3 18 DAC BCLK 22 13 BCK OUTR 7 470 1 GND PWR_FLAG 14 19 R23 15 LineOut VCC PWR_FLAG GND Tx2 IO12 SCS/CMD DAC LRC 22 LRCK J16 þÿ2,2µ C58 43k 2k is PWR on 16 IO13 SCK/CLK 20 11 FLT VNEG 5 LineOUT_L 0 MP2307DN-LF +5V 13 34 IO IO 16 2 5 R3 L1 PWR off/on IO14
in „TDA7439DS Störgeräusche und ein kochender TDA7377“ · Mikrocontroller und Digitale Elektronik ·
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Datei
oled_s6e63d6_drv_8bit.c
Entry Mode (4110 für h = inc, v = dec) oled_write_para_8bit(0x4130); //CLS = 0; MDT1:0 = 00; BGR = 0; SS = 1; ID1:0 = 10; AM = 0; 262K Colour, Horizontal Update AM = 0 -> (H = increment,V = increment) oled_write_index_8bit(0x10); //Standby oled_write_para_8bit(0x0000); //Standby off oled_write_index_8bit
in „MCU Auswahl für Temperaturanzeige mit OLED“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Tabelle der Port-Funktionsmultiplexierung eines Atmel Mikrocontrollers
IN1 22 17 19 PA13 EVOUT AIN2 RXD MISO SCL LUT0-IN2 21 15 20 GA13 CLKI AIN3 XCK SCK WO3 LUT0-IN3 20 14 4 PA4 VDD AIN4 XOYO XDIR SS WO4 WOA LUT0-OUT 19 13 5 PA5 AIN5 X1Y1 OUT AIN5 WO5 WOB LUT1-OUT 18 12 6 PA6 AIN6 X2Y2 AIN6 WO2 17 11 7 PB5 AIN7 X3Y3 AINP WO2 LUT1-OUT 16 10 8 PB6 AIN8 DST AIN8 15 9 6 PB7 AIN9 14 8 7 PB2 TOSC2 EVOUT1 AIN10 X4Y4 TXD WO2 13 7 4 PB1 TOSC1 PC1 RXD SDA WO1 12 6 5 PB0 AIN11 X5Y5 XCK SCL WO0 11 5 3 PC2 EVOUT2 10 4 2 PC3 BREAK 9 3 1 PC4 8 2 0 PC5 Atmel ATtiny417 / ATtiny814 / ATtiny817
in „Clock-Output beim ATtiny814“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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PDF
Schaltplan_LM5122.pdf
47.5k 1 2 3.3µF 3.3µF 3.3µF X4 GND 5 VIN FB 10 + COUT1 +OUT2 COUTX1 GND 330µF 330µF 1µF 6 UVLO RES 14 12 SLOPE 7 8 SS SYNCIN_RT 13 B 5 1 MODE F . E SYNCOUT N D 2 R 2 B k O k k G P G OPT CSS CRES U 0 S 3 T . A E P R 8 R 1 R 4 100pF 470nF 9 2 1 GND GND TITLE: StepupDoppelseitigesLayoutV14 Document Number
in „LM5122 (Boost-Converter) Strombegrenzung / Spannungseinbruch bei Last“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
ALgAn102.bas
$04 , $3e , $44 , $20 , $00 ' h[.t] .db $00 , $7e , $42 , $42 , $3c , $40 ' # [D] .db $00 , $7c , $14 , $14 , $08 , $00 ' $ [.p] .db $00 , $44 , $28 , $10 , $28 , $44 ' % [x] .db $00 , $fc , $20 , $10 , $3c , $00 ' & [u] .db $00 , $7c , $04 , $78 , $04 , $78 ' ' [m] .db $00 , $7c , $12 , $12 , $7c ,
in „Bascom .def not found“ · Mikrocontroller und Digitale Elektronik ·
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RF_Relay_Box.pdf
0603 GND GND 12k4 0603 0603 B B GND 0603 GND GND GND U2 NRF_MOSI 1 44 NRF_CE PB5 (MOSI/PCINT13) PB4 (SS/OC0B/PCINT12) NRF_MISO 2 PB6 (MISO/PCINT14) PB3 (AIN1/OC0A/PCINT11) 43 NRF_SCK 3 PB7 (SCK/PCINT15) PB2 (AIN0/INT2/PCINT10) 42 NRF_IRQ RESET 4 RESET PB1 (T1/CLKO/PCINT9) 41 NRF_CSN 5 40 3.3V 6 VCC PB0
in „ATmega 164P USART funktioniert nur mit beschaltung auf PB7“ · Mikrocontroller und Digitale Elektronik ·
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Cube.pdf
23 100n 11 GND DRAIN 15 R9 + CBUS1 22 19 GND DRAIN 04 33 +C33 C32 17 3V3OUT CBUS2 13 C15 33 CBUS3 14 4,7u 100n 15 USBDP CBUS4 12 16 USBDM GND TEST 26 GND 25 GND GND 7 TPIC6B595 18 D 1 NC NC 20 N GND 21 G G GND GN 9 Gn FT232RL RCK 12 RCK GND GND SER OUT18 SRCLRN 8 SRCLRn SV2 13 17 R66 8 7 R76 3 SRCK
in „Cube - Bitte Schaltplan und Layout überprüfen“ · Mikrocontroller und Digitale Elektronik ·
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pt1000-v1.1.pdf
1 R43 10k IC6B R 1 R 1 R14 10k IC4B 10k IC5B 5 10k IC1B 5 5 10k 7 ADC7 5 R10k 7 ADC3 10k 7 ADC5 6 R10k 7 ADC1 6 6 R55 LM358D 6 R27 LM358D R41 LM358D J9-2 0 5 R12 LM358D J5-2 0 2 J7-2 0 4 C16 3 0 5 R J2-2 0 3 C105 0 5 R C139 0
in „8x Temperaturanzeige mit LCD, SD-Datenlogger und RTC“ · Projekte & Code ·
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Controller_neu_final.pdf
5V + 0,5A 1 F1 L1 2 D1 1 2 3 GND +24 V 0,5A 1N400MESC26 5VDC_TEN4-2411 5 C8 +C1 22*2 +IN(VCC) +OUT 14 C10 + C9 8 N 1 ON/OFF D 1 100n 47u 2*2 -IN(GND) -OUT 16 100n 47u - 1 2 TEN_8-1211 4x Pull down 0V GND MC33064 D V G GND GND +15V + GND N 4 k 6 k 3 5 k GND G 2 1 2 1 3 R 1 RSET R R C14 + C132 5 RSET 5
in „MOSFET´s für H-Brücke, wie viele ?“ · Analoge Elektronik und Schaltungstechnik ·
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Controller_neu_final.pdf
5V + 0,5A 1 F1 L1 2 D1 1 2 3 GND +24 V 0,5A 1N400MESC26 5VDC_TEN4-2411 5 C8 +C1 22*2 +IN(VCC) +OUT 14 C10 + C9 8 N 1 ON/OFF D 1 100n 47u 2*2 -IN(GND) -OUT 16 100n 47u - 1 2 TEN_8-1211 4x Pull down 0V GND MC33064 D V G GND GND +15V + GND N 4 k 6 k 3 5 k GND G 2 1 2 1 3 R 1 RSET R R C14 + C132 5 RSET 5
in „LCD verliert Zeichen“ · Mikrocontroller und Digitale Elektronik ·
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ET-BASE_AVR_ATmega64-128_Schematic.pdf
/TCK) PA4(AD4) 46 PA4 +5V 9 10 GND PG1 D7 11 12 D6 PG0 PF5 55 PF5(ADC5/TMS) PA5(AD5) 45 PA5 PG3 13 14 PG2 PF6 54 PF6(ADC6/TDO) PA6(AD6) 44 PA6 PORTB PF7 PF7(ADC7/TDI) PA7(AD7) PA7 ET-CLCD PB0 1 2 PB1 PB0(SS) 10 PB0 PB2 3 4 PB3 10 10 PB1(SCK) 11 SCK PB1 PB4 5 6 PB5 PB2(MOSI) 12 PB2 PB6 7 8 PB7 PB3(MISO) 13 PB3 +5V 9 10 GND 64 14 AVCC PB4(OC0) 15 PB4 ISP LOAD PB5(OC1A) 16 PB5 PORTC MOSI +5V 62 PB6(OC1B) 17 PB6 PE0 1 2 +5V AREF PB7(0C2/OC1C) PB7 PC0 1 2 PC1 3 4 PC2 3 4 PC3 C RESET RESET 5 6 PC0(A8) 35 PC0 PC4 5 6 PC5 C PB1 SCK
in „Programmierung mit AVRISP mkII klappt nicht“ · Mikrocontroller und Digitale Elektronik ·
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ET-BASE_20AVR_20ATmega64-128_Schematic.pdf
/TCK) PA4(AD4) 46 PA4 +5V 9 10 GND PG1 D7 11 12 D6 PG0 PF5 55 PF5(ADC5/TMS) PA5(AD5) 45 PA5 PG3 13 14 PG2 PF6 54 PF6(ADC6/TDO) PA6(AD6) 44 PA6 PORTB PF7 PF7(ADC7/TDI) PA7(AD7) PA7 ET-CLCD PB0 1 2 PB1 PB0(SS) 10 PB0 PB2 3 4 PB3 10 10 PB1(SCK) 11 SCK PB1 PB4 5 6 PB5 PB2(MOSI) 12 PB2 PB6 7 8 PB7 PB3(MISO) 13 PB3 +5V 9 10 GND 64 14 AVCC PB4(OC0) 15 PB4 ISP LOAD PB5(OC1A) 16 PB5 PORTC MOSI +5V 62 PB6(OC1B) 17 PB6 PE0 1 2 +5V AREF PB7(0C2/OC1C) PB7 PC0 1 2 PC1 3 4 PC2 3 4 PC3 C RESET RESET 5 6 PC0(A8) 35 PC0 PC4 5 6 PC5 C PB1 SCK
in „Attiny2313 u. Atmega128 über ISP Programmieren“ · Mikrocontroller und Digitale Elektronik ·
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avrcp_m.pdf
+3V3/5 8 GND PD3(INT1) 5 D3_A3 /CAS 23 CAS WE 4 /WE 17 13 R1 6 D4_A4 /RAS 5 22 /OE X1 3V3OUT CBUS2 14 14 VCC NC/TS 1 7 PD4(XCK/T0) 11 D5_A5 RAS OE B 1 100n 15 CBUS3 12 C3 VCC PD5(T1) 12 D6_A6 B - 2 16 USBDP CBUS4 10k 8100n PD6(AIN0) 13 D7_A7 U$1G$1 DRAM_4M_4 2 B USBDM PD7(AIN1) D0_A0 9 A0 DQ0 2 D4_A4 6 S 3 TEST 26 7 D1_A1 10 3 D5_A5 N U 4 25 GND GND OUT PB0(ICP) 14 RXD_AVR RXD_AVR D2_A2 11 A1 DQ1 24 D6_A6 P GND 7 +3V3 PB1(OC1A) 15 TXD_AVR TXD_AVR D3_A3 12 A2 DQ2 25 D7_A7 C5 GND 18 QG1 PB2(SS/OC1B) 16 CS D4_A4 15 A3 DQ3 10n GND 21 PB3(MOSI/OC2) 17 MOSI_A8 D5_A5
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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BLDC-_Controller.pdf
AIN0) 10 N$40 PD7(AIN1) 11 Art.Nr. 667206 +5V N$31 GND D 12 GND G n 3 PB0(ICP) 13 N$44 0 1 PB1(OC1A) 14 1 C PB2(SS/OC1B) 15 PB3(MOSI/OC2) 16 PB4(MISO) Phase V V PB5(SCK) 17 4 1 1 + IC4 N N +C17 X1A GND 1 Art.Nr. 810586 3 Q5 Q6 5 IR2181 IRFB3206 IRFB3206 GND 7 N$52 4 IC5B N$13 R5 9 6 N$32 N$32 1 8 R29 5
in „BLDC- Controller 44VDC“ · Mikrocontroller und Digitale Elektronik ·
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BLDC-_Controller.pdf
AIN0) 10 N$40 PD7(AIN1) 11 Art.Nr. 667206 +5V N$31 GND D 12 GND G n 3 PB0(ICP) 13 N$44 0 1 PB1(OC1A) 14 1 C PB2(SS/OC1B) 15 PB3(MOSI/OC2) 16 PB4(MISO) Phase V V PB5(SCK) 17 4 + IC4 +C17 X1A GND 1 Art.Nr. 810586 3 Q5 Q6 5 IR2181 IRFB3206 IRFB3206 GND 7 N$52 4 IC5B N$13 R5 9 6 1 8 R29 5 HIN VB 15 V X1B 2
in „BLDC- Controller 44VDC“ · Mikrocontroller und Digitale Elektronik ·
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BLDC-_Controller.pdf
AIN0) 10 N$40 PD7(AIN1) 11 Art.Nr. 667206 +5V N$31 GND D 12 GND G n 3 PB0(ICP) 13 N$44 0 1 PB1(OC1A) 14 1 C PB2(SS/OC1B) 15 PB3(MOSI/OC2) 16 PB4(MISO) Phase V V PB5(SCK) 17 4 + IC4 +C17 X1A GND 1 Art.Nr. 810586 3 Q5 Q6 5 IR2181 IRFB3206 IRFB3206 GND 7 N$52 4 IC5B N$13 R5 9 6 1 8 R29 5 HIN VB 15 V X1B 2
in „BLDC- Controller 44VDC“ · Mikrocontroller und Digitale Elektronik ·