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TT-AM-SCH.pdf
E A P$3 REF G LBO P$4 R 3 PD6(AIN0) 13 8 D0 P 2 +C9 4 C7 100n PD7(AIN1) 9 D2 I R 7 R 1 6 PB0(ICP) 14 10 D3 D 2 C3 +C8 C6 P 100u 1 7 PB1(OC1A) 15 11 D4 C 6 C11 1 R 2 PB2(SS/OC1B) 16 12 D5 L _ n u n 7 K E PB3(MOSI/OC2) 17 13 D6 R GND 0 0 0 R 1 100n L C12 100n PB4(MISO) 18 14 D7 X 1 1 1 1 PB5(SCK) 19 15
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CO2-Messgeraet_sch.pdf
SV1-7 + D4 SV1-8 V V D5 SV1-9 5 5 D6 SV1-10 GND + + D7 SV1-11 5 CS1 SV1-12 + CS2 SV1-13 GND +5V SV1-14 R/W SV1-15 3 k D/I SV1-16 R 10 E SV1-17 VEE k SV1-18 1 0 R 1 MEGA8-P LED* SV1-19 GND SV1-20 1 PC6(/RESET) PC0(ADC0) 23 V PC1(ADC1) 24 CS2 5 22 25 CS1 GND +JP2 21 GND PC2(ADC2) 26 1 PWM 20 AREF PC3(ADC3
in „avr asm LCD Problem“ · Mikrocontroller und Digitale Elektronik ·
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Schematic_LM5145.pdf
1 2 3 4 5 A A CN1 VIN WJ2EDGVC-5.08-2P 1 2 C14 C13 C12 GND 10u 10u 10u VIN VIN GND GND GND R4 1 1 U1 2.1 5 6 7 8 S S LM5145RGYR C4 CSD19534Q5A D D D D 21 100n Q1 1 EP 20 G S S S EN 2 EN/UVLO VIN 19 GND 4 3 2 1 R13 CN2 3 RT SW 18 L2 0.01 WJ2EDGVC-5.08-2P B 4 SS/TRK HO 17 100n 4.7uH R12 B 5 COMP BST 16 C2 0.01 1 6 FB NC 15 VCC 2 R5 VCC 7 AGND EP 14 R1 1.15k R11 3.4k SYNCOUT VCC 5 6 7 8 11.8 R8 C7 8 SYNCIN LO 13 D D D D R9 C9 C10 C11 GND C6 10n R2 20k 9 NC PGND
in „LM5145 Step down wird heiß“ · Analoge Elektronik und Schaltungstechnik ·
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93LC46.pdf
ORG VCC 2 C C C 7 V SS (including auto-erase) 6 6 6 Automatic ERAL before WRAL CS 3 X X X 6 DO Power on/off data protection circuitry CLK 4 5 DI Industry standard 3-wire serial I/O Device status signal during erase/write cycles
in „Probleme mit SPI EEPROM“ · Mikrocontroller und Digitale Elektronik ·
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i2c.pdf
each bus line must be twisted with In general, the wiring must be so chosen that crosstalk and a V SS return. Alternatively, the SCL line can be twisted withSS V interference to/from the bus lines is minimized. The bus lines are return, and the SDA line twisted with a DD return. In the latter case, capacitors
in „Suche I²C Bus Grundlagen“ · Mikrocontroller und Digitale Elektronik ·
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CAN_uC_V2_01Jan2013_Stromlauf.pdf
K1 15 14 13 12 11 18 7 6 5 4 3 2 1 K1X15 0 P O 9 4 3 2 1 p O D K C C D _ _ _ _ _ _ _ D _ S _ S S D D D I I I I C P P I 2 I I _ R T G G G GP n S S S R T T 1 P82B96 und Pico-Gate AND* zum Entkoppeln von SPI und
in „Anforderungssammlung CAN Hausbus mit PIC µC“ · Haus & Smart Home ·
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ATXK_H11_32768.pdf
Hidden Creek Ln Spicewood TX 78669 ABRACON IS Phone: 512-371-6159 | Fax: 512-351-8858 REVISED: 02-14-23 ISO9001-2015 For terms and conditions of sales, please visit: CERTIFIED www.abracon.com 32.768kHz TCXO ATXK-H11 Request Samples Check Inventory 3.28 x 2.58 x 1.36 mm RoHS/RoHS II Compliant MSL Level
in „Anschluss TCXO“ · Analoge Elektronik und Schaltungstechnik ·
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89C51CC01C-SLSUM.pdf
and DLC Ch.0 - Message Data - byte 0 Ch.14 - ID Tag - 2 Message Data 8 Bytes Ch.14 - ID Tag - 3 Ch.14 - ID Tag - 4 ID Tag - 1 Ch.0 - ID Tag - 1 Ch.14 - ID Mask - 1 ID Tag - 2 Ch.0 - ID Tag - 2 Ch.14 - ID Mask - 2 ID Tag - 3 Ch.0 - ID Tag - 3 Ch.14 - ID Mask - 3 ID Tag - 4 Ch.0 - ID Tag - 4 Ch.14 - ID Mask - 4 ID Mask - 1 Ch.0 - ID Mask- 1 Ch.14 TimStmp High ID Mask - 2 Ch.0 - ID Mask- 2 ID Mask - 3 Ch.14 TimStmp Low Ch.0 - ID Mask- 3 ID Mask -
in „Bit Adressierung“ · Mikrocontroller und Digitale Elektronik ·
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Hauptplatine.pdf
PIP905 Taster B NPin 5 PIU504 PB3 (AIN1/OC0) PA3 (ADC3) PI360POT3 PIP9044 3 PIP903 P4P4 B PIU106 PB4 (SS) PA4 (ADC4) PIU1035Pin 100 PIP802 1 PIP9022 1 PIP901 PIP401 PIU107 PB5 (MOSI) PA5 (ADC5) PIU1034Pin 111 2 I2C POT1 PIP402 1 PIU108 PB7 (SCK)) PA7 (ADC7) PIU1033Pin 122 LDR T1 2 GND GND Taster VCC POTX
in „AVR Wecker mit Netzwerk“ · Mikrocontroller und Digitale Elektronik ·
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Hauptplatine.pdf
PIP905 Taster B NPin 5 PIU504 PB3 (AIN1/OC0) PA3 (ADC3) PI360POT3 PIP9044 3 PIP903 P4P4 B PIU106 PB4 (SS) PA4 (ADC4) PIU1035Pin 100 PIP802 1 PIP9022 1 PIP901 PIP401 PIU107 PB5 (MOSI) PA5 (ADC5) PIU1034Pin 111 2 I2C POT1 PIP402 1 PIU108 PB7 (SCK)) PA7 (ADC7) PIU1033Pin 122 LDR T1 2 GND GND Taster VCC POTX
in „AVR Wecker mit Netzwerk“ · Mikrocontroller und Digitale Elektronik ·
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EMS_PIC.pdf
OSCO DCD 6 R + RI 1 7 R n 23 R 2 2 7 GND 9 0 CBUS0 22 R 2 C 1 17 CBUS1 13 LED1 1 2 4 3V3OUT CBUS3 14 LED2 3 4 3 GND 15 USBDP CBUS4 12 V 5 6 2 16 USBDM + 7 8 5 1 5 TEST 26 C14 IC2 + + 25 GND GND SV1 GND 7 100n 1 RE3/MCLR/VPP KBI3/PGD/RB7 28 GND GND 18 2 RA0/AN0 KBI2/PGC/RB6 27 1 2 GND 21 D 3 RA1/AN1
in „Buderus EMS-"Gateway" mit PIC18F / Sammelbestellung“ · Haus & Smart Home ·
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powercontrol.pdf
VDD 31 CS CS -5 SV2 A 10k (ADC6)PA6 32 PA6 MISO 15 SO TXCAN 1 1 TXD 10 9 A 21 (ADC5)PA5 EIN1 MOSI 14 2 4 6 +24V PD7 1 2 2 C z7 XTAL2 (ADC4)PA4 33 EIN2 13 SI RXCAN RXD CANL -4 PD4 8 7 PD6 1 p Q M (ADC3)PA3 34 EIN3 SCK SCK PB3 6 5 PD5 S 2 C 18 35 CLKOUT 3 72 5 VREF CANH 7 -3 4 3 3 4 XTAL1 (ADC2)PA2 36
in „Meinung zu meiner Schaltung“ · Mikrocontroller und Digitale Elektronik ·
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powercontrol_v1.1.pdf
17 18 -6 IC4 RESET RESET VDD 1 CS 16 CS +5V -5 + 1 C1+ 1 u+5V MISO 15 SO TXCAN 1 1 TXD u 0 V+ 2 C 1 14 2 4 6 +24V 1 1 3 + MOSI 13 SI RXCAN RXD CANL -4 C C1- 6 + D SCK SCK V- N CLKOUT 3 72 5 VREF CANH 7 -3 + 4 C2+ u 2 G INT 12 INT OSC1 8 C2 8 RS 0 u 9 1 C 1 1 C 5 X6 11 h 1 -2 C2- 1 RX0BF Q6 1 10 RX1BF 1 82 R -1 TXD 11 T1IN T1OUT 14 2 6 4 TX0RTS OSC2 7 C2 GND D 10 T2IN T2OUT 7 3 7 5 CAN N 12 13 4 8 6 TX1RTS 9 2 1 G RXD 9 R1OUT R1IN 8 5 9 TX2RTS VSS P R2OUT R2IN J MCP2515-E/SO MAX232ECWE GND GND GND B B V CNY17F 5 RESET IC2 4 2 D
in „Meinung zu meiner Schaltung“ · Mikrocontroller und Digitale Elektronik ·
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powercontrol1.2.pdf
(ADC6)PA6 31 PA6 CS 16 CS +5V -5 A p (ADC5)PA5 32 EIN1 MISO 15 SO TXCAN 1 1 TXD 1 2 2 C 7 33 MOSI 14 2 4 6 +24V 1 1 h XTAL2 (ADC4)PA4 34 EIN2 13 SI RXCAN RXD CANL -4 S 22 Q 6 (ADC3)PA3 EIN3 SCK SCK 2 C 18 XTAL1 (ADC2)PA2 35 AUS1 CLKOUT 3 72 5 VREF CANH 7 -3 3 4 n 36 AUS2 INT 12 8 C2 8 0 1 C 29 (ADC1
in „Meinung zu meiner Schaltung“ · Mikrocontroller und Digitale Elektronik ·
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avrcp_m.pdf
PC3(ADC3) D4_A4 A3 DQ3 RTS 3 TXD G 20 AVCC PC4(ADC4/SDA) 27 D5_A5 15 A4 100n 10µ 19 RESET CTS 11 C14 C8 PC5(ADC5/SCL) 28 16 A5 DTR 2 100n +3V3 D6_A6 17 A6 27 OSCI DSR 9 9 PB6(XTAL1/TOSC1) D7_A7 18 A7 3 28 OSCO DCD 10 100n MOSI_A8 19 A8 2 RI 6 C1 27p 10 PB7(XTAL2/TOSC2) PD0(RXD) 2 D0_A0 MISO_A9 21 A9
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Netzteil_Controller.pdf
12 8 DISPLAY-8 GND GND G 31 DISPLAY-1 PD7(AIN1) 13 9 DISPLAY-9 C9 C13 24 1 100n 100n 100n LM35DT-2 14 10 R2 R5 C GND GND GND GND PB0(ICP) 15 DISPLAY-10100k 100k C PB1(OC1A) 16 CURRENT PB2(SS/OC1B) 17 VOLTAGE KK1 PB3(MOSI/OC2) 18 ISP-4R3 R6 SK104-PAD PB4(MISO) 19 ISP-1 100C10 100k C12 PB5(SCK) ISP-3 +
in „Labornetzgerät - Fragen zum Schaltplan“ · Analoge Elektronik und Schaltungstechnik ·
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Controller_V1.sch.pdf
PD6(AIN0) C 0 100 n PD7(AIN1) 13 io 0 P10 010 19 P190 _ 0 a 100 n pas 1U supa0s 11 p s 1 D PB0(ICP) 14 io 0 P11 011 18-GND P180 supp0 D N 15 io 0 N G PB1(OC1A) 16 io 0 JP2 P12 0 P170 G V PB2(SS/OC1B) 12 17-3V3OUT 5 0 X1 PB3(MOSI/OC2) 17 io 0 pa1 0 + s pas10 18 io 0 pa2 0 P13 0 P160 pas20 B PB4(MISO) 13 16-USBDM PB5(SCK) 19 io 0 pas 0 pas 0 S pas 0 P14 0 P150 pas 0 U pas 0 14 15-USBDP IC2 pas 0 OWN_PLATINE_FT232 0 1 pas 0 sup 0 1 p p D pas 0 N +U_C4_TANTAU_C3 pas 0 G pas 0 4,7µF 100 n 0 1 pas 0 1 p p pas 0 D sup 0 N s pas 0 G p 1 pas 0 p pas 0 / K
in „Spannungseinbruch Atmega8“ · Mikrocontroller und Digitale Elektronik ·
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Athlet_BCH6L2560_SCH.pdf
PCINT20/XCK/T0)_PD4 PD1_(TXD/PCINT17) 31 3 3 4 3 GND_2 PD0_(RXD/PCINT16) 30 4 VCC_2 PC6_(RESET/PCINT14) 29 SWS003 5 PC5_(ADC5/SCL/PCINT13) 28 6 GND_3 27 7 VCC PC4_(ADC4/SDA/PCINT12) 26 8 (PCINT6/XTAL1/TOSC1)_PB6 PC3_(ADC3/PCINT11) 25 10k 7 (PCINT7/XTAL2/TOSC2)_PB7 PC2_(ADC2/PCINT10) C 9 (PCINT21/OC0B/
in „Bosch Athlet 25,2 V Akku 7 Stück Tauschen“ · Analoge Elektronik und Schaltungstechnik ·
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sh7020.pdf
No. MCU Mode OM version) 1 AD0 AD0 29 A8 A8 2 AD1 AD1 30 A9 OE 3 AD2 AD2 31 A10 A10 4 Vss Vss 32 V SS V SS 5 AD3 AD3 33 A11 A11 6 AD4 AD4 34 A12 A12 7 AD5 AD5 35 A13 A13 8 AD6 AD6 36 A14 A14 9 AD7 AD7 37 A15 A15 10 AD8 NC 38 V CC V CC 11 AD9 NC 39 A16 A16 12 AD10 NC 40 A17 V CC 13 VCC VCC 41 V SS V SS 14 AD11 NC 42 A18 V CC 15 VSS VSS 43 A19 NC 16 AD12 NC 44 A20 NC 17 AD13 NC 45 A21 NC 18 AD14 NC 46 CS0 NC 19 AD15 NC 47 CS1/CASH NC 20 A0(HBS) A0 48 CS2 NC 21 A1 A1 49 CS3/CASL NC 22 A2 A2 50 V SS V SS
in „welche GPS-Maus ?“ · Mikrocontroller und Digitale Elektronik ·
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24c04_V2.pdf
MODE/WC* PRE Write Protect Enable E1-E2 Chip Enable Inputs SDA Serial Data Address Input/Output V SS AI00851E SCL Serial Clock MODE Multibyte/Page Write Mode (C version) WC Write Control (W version) V CC Supply Voltage V Ground SS Note: WC signal is only available for ST24/25W04 products. February 1999
in „I²C - EEPROM's (24C04 ...)“ · Mikrocontroller und Digitale Elektronik ·
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dmf50081.pdf
Maximum Ratings VSS=0V Parameter Symbol Conditions Min. Max. Units Supply Voltage V -V - -0.3 7.0 V CC SS (Logic) Supply Voltage VCCV EE - 0 35.0 V (LCD Drive) Input Voltage V I - -0.3 VCC0.3 V 2.2.DC Characteristics Ta=25 ℃ , VSS0V Parameter Symbol Conditions Min. Typ. Max. Units Supply Voltage VCCV SS
in „LCD Driving Voltage“ · Offtopic ·
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dmf50081n.pdf
Maximum Ratings VSS=0V Parameter Symbol Conditions Min. Max. Units Supply Voltage V -V - -0.3 7.0 V CC SS (Logic) Supply Voltage VCCV EE - 0 35.0 V (LCD Drive) Input Voltage V I - -0.3 VCC0.3 V 2.2.DC Characteristics Ta=25 ℃ , VSS0V Parameter Symbol Conditions Min. Typ. Max. Units Supply Voltage VCCV SS
in „Controllerless LCD“ · Mikrocontroller und Digitale Elektronik ·
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PFC_FBC.pdf
(SO14) D k N 1 1 R18 20k 2 4 1 L_SENSE L_SENSE 10k R14 5 R 1 A 1 B 7 R 0 _ 1 O T _ 2 N - Messung der Netzspannung mit galvanischer Trennung +3.3V_TO_N +5V_PRI C38 IC12 SI8902 C41 10µF / 1100nF 100nF 10µF /
in „PFC + Vollbrücken-Gegentaktwandler“ · Analoge Elektronik und Schaltungstechnik ·
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HMI_board.pdf
\Git\E-Last\03_Schaltplan\01_Eagle\HMI_board.sch (Sheet: 1/1) 3 V + JST-XH-05-PIN-LONG-PAD V +3V3 X14-1 3 m 1 m X14-2 + h R h L1 X14-3 k k R , , 1 kOhm @ 100MHz IC1 4 4 L2 6 1 SCL VCC IO1 1 kOhm @ 100MHz 5 2 L3 IO4 IO2 SDA 4 3 1 kOhm @ 100MHz IO3 GND TPD4E004 C1 X14-4 X14-5 100nF GND GND TITLE: HMI_board
in „Schaltplankontrolle Last- + HMI-Board“ · Mikrocontroller und Digitale Elektronik ·
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S29JL064H_00_A7_e.pdf
2.0 V for periods of up to 20 ns. See Figure 12.1 on page 42. Maximum DC input voltage on pin A9 is SS +12.5 V which may overshoot to +14.0 V for periods up to 20 ns. Maximum DC input voltage on WP#/ACC is +9.5 V which may overshoot to +12.0 V for periods up to 20 ns. 3. No more than one output may be
in „[Verkaufe] 5xSDRAM (4Meg x 16 x 4 Banks) und 5xFLASH (64Meg 8 o. 16 Bit)“ · Markt ·
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mainboard.sch.pdf
40 G 30 AREF (ADC0)PA0 T 31 AVCC 8 R6 V+ AGND (SCK)PB7 7 10 (MISO)PB6 6 C11 VCC (MOSI)PB5 5 11 GND (SS)PB4 5 K D (AIN1/OC0)PB3 4 1 2 N (AIN0/INT2)PB2 3 5 G (T1)PB1 2 R5 T (T0/XCK)PB0 1 GND GND (TOSC2)PC7 29 (TOSC1)PC6 28 4 27 K1 2 N (TDI)PC5 26 G (TDO)PC4 25 T (TMS)PC3 24 R4 (TCK)PC2 23 (SDA)PC1 22 (SCL
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mainboardalone.sch.pdf
(ADC0)PA0 X3-9 31 AVCC 8 R6 V+ AGND (SCK)PB7 7 X3-8 (MISO)PB6 10 VCC (MOSI)PB5 6 X3-7 C11 11 GND (SS)PB4 5 (AIN1/OC0)PB3 4 GND X3-6 (AIN0/INT2)PB2 3 T5 (T1)PB1 2 R5 X3-5 (T0/XCK)PB0 1 X3-4 GND GND (TOSC2)PC7 29 (TOSC1)PC6 28 27 GND X3-3 (TDI)PC5 26 T4 (TDO)PC4 25 X3-2 (TMS)PC3 24 R4 (TCK)PC2 23 X3-1
in „Wie Board erstellen“ · Mikrocontroller und Digitale Elektronik ·
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Schematic.pdf
1 2 3 4 A A U1 10 PB0(SS) PA0 (AD0) 51 11 PB1(SCK) PA1 (AD1) 50 12 PB2(MOSI) PA2 (AD2) 49 13 48 14 PB3(MISO) PA3 (AD3) 47 15 PB4(OC0) PA4 (AD4) 46 16 PB5(OC1A) PA5 (AD5) 45 CON1 U2A 17 PB6(OC1B) PA6 (AD6) 44 PB7(OC2/OC1C) PA7
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motorensteuerung.pdf
7 VCC PD5(T1) 11 IC3 1 V 2 V 3 V 4 V 12 9 4 D B D B D BY D B 1 PD6(AIN0) 13 VCC VS P PD7(AIN1) 6 1 14 11 ENABLE_A SEN_A 15 L-MOTOR PB0(ICP) 15 ENABLE_B SEN_B Motor Links PB1(OC1A) 16 5 2 M PB2(SS/OC1B) 17 7 INPUT1 OUT1 3 PB3(MOSI/OC2) INPUT2 OUT2 2 PB4(MISO) 18 10 INPUT3 OUT3 13 P +C4 PB5(SCK) 19 12 INPUT4 OUT4 14 7 7 7 7 2u2/16V IC1 8 GND 2 2 2 2 5 Y 6 Y 7 Y 8 Y GND R2 L298 D B D B D B D B $ P GND 10k R-MOTOR o Motor Rechts 2 4 6 8 1 c M n o C 2 1 1 3 5 7 9 P P J I GND GND 16.12.09 09:03 f=0.90 /home/lucabert
in „Meinung über Schaltkreis“ · Mikrocontroller und Digitale Elektronik ·
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noname.pdf
ICP1)PB04 2 1 V3(LCDrive) C C C 1 15 +3.3V V4(LCDrive) 25 C+3.3V (PCINT1/OC1A)PB1 D1 27 (PCINT2/OC1B/SS)PB216 CAP2N C10 20 17 35 VDD CAP2P 28 GND AVCC (PCINT3/OC2A/MOSI)PB3 34 29 C C (PCINT4/MISO)PB418 VDD2 CAP1P C 19 32 VOUT CAP1N 30 (PCINT5/SCK)PB5 31 21 AREF (PCINT6/XTAL1/TOSC1)PB69 C CAP3P C13 C 3
in „DOGM128L-6 Kontrastspannung“ · Mikrocontroller und Digitale Elektronik ·
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Tx.pdf
(XCK/T0) 11 PD5_SW_UP R S D VCC PD5(T1) 12 R3 PD6(AIN0) PD6_SW_DOWN PC2_LED3 PD7(AIN1) 13 PB0(ICP) 14 H&3 15 PB1(OC1A) 16 PB2(SS/OC1B) 17 PB3(MOSI/OC2) PB3_MOSI PB4(MISO) 18 PB4_MISO PB5(SCK) 19 PB5_SCK PD3_SW_START T S IC1 A S P 5 PD4_SW_STOP O S C S C PD5_SW_UP P S ANT. U Antenne F A 7 PD6_SW_DOWN
in „DW & AVR Dragon und Problem“ · Mikrocontroller und Digitale Elektronik ·
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EMV_Empfehlung.pdf
9 33 FERRIT_8 RESET (ADC7)PA7 34 (ADC6)PA6 35 12 (ADC5)PA5 36 XTAL2 (ADC4)PA4 37 VCC/2 (ADC3)PA3 C14 + C15 13 XTAL1 (ADC2)PA2 38 (ADC1)PA1 39 10uF 100nF 32 AREF (ADC0)PA0 40 AGND 30 AVCC 31 GND (SCK)PB7 8 (MISO)PB6 7 10 6 FERRIT_9 11 VCC (MOSI)PB5 5 GND (SS)PB4 4 (AIN1/OC0)PB3 3 (AIN0/INT2)PB2 2 VCC
in „Wie gehen Profis vor, wenn ein Produkt EMV konform sein soll?“ · Mikrocontroller und Digitale Elektronik ·
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SCH_Schematic1_2025-04-25-1.pdf
TXD 21 3 2 3 ADC RXD 20 4 3 GND GND +3.3V 4 EN IO5 19 RPM4 +3.3V 4 RPM1 5 IO16 IO4 18 RPM5 PWM1 6 IO14 IO0 17 1 SW2 2 RPM2 7 IO12 IO2 16 RPM3 8 IO13 IO15 15 1k▯' 3 4 +3.3V 9 VCC GND 14 R1k Fan Header 10CS0 SCLK 13 11MISO MOSI 12 D D CN1 IO9 IO10 N N N ▯B GND 1 MOSFET PWM G G G ▯B 2 1 FAN+ 3 2 +12V RPM1
in „PWM Lüfter Steuerung mit ESP8266 Tacho Problem“ · Mikrocontroller und Digitale Elektronik ·
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enc28j60.pdf
Inter-Packet Gap (BBIPG<6:0>) 14 MAIPGL — Non-Back-to-Back Inter-Packet Gap Low Byte (MAIPGL<6:0>) 14 MAIPGH — Non-Back-to-Back Inter-Packet Gap High Byte (MAIPGH<6:0>) 14 MACLCON1 — — — — Retransmission Maximum (RETMAX<3:0>) 14 MACLCON2
in „ENC28J60 Resetpin“ · Mikrocontroller und Digitale Elektronik ·
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LPC_2119_2129_Datenblatt.pdf
CAP0.2 P1.19/TRACEPKT3 4 45 P0.15/RI1/EINT2 P0.24/TD2 5 44 P1.21/PIPESTAT0 VSS 6 43 V3 V 7 42 V 3A SS P1.18/TRACEPKT2 8 41 P0.14/DCD1/EINT1 LPC2119/LPC2129 P0.25/RD1 9 40 P1.22/PIPESTAT1 TD1 10 39 P0.13/DTR1/MAT1.1 P0.27/AIN0/CAP0.1/MAT0.1 11 38 P0.12/DSR1/MAT1.0 P1.17/TRACEPKT1 12 37 P0.11/CTS1/CAP1.1
in „LPC 2129 Versorgungsspannung via PIN“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
39662c.pdf
Low Byte (MAIPGL<6:0>) 14 MAIPGH Non-Back-to-Back Inter-Packet Gap High Byte (MAIPGH<6:0>) 14 MACLCON1 Retransmission Maximum (RETMAX<3:0>) 14 MACLCON2 Collision Window (COLWIN<5:0>) 14 MAMXFLL Maximum Frame Length Low Byte (
in „Webserver mit XC167“ · Mikrocontroller und Digitale Elektronik ·
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ATMega_48_88_168.pdf
PB4 (MISO/PCINT4) (PCINT22/OC0A/AIN0) PD6 12 17 PB3 (MOSI/OC2A/PCINT3) (PCINT23/AIN1) PD7 13 16 PB2 (SS/OC1B/PCINT2) (PCINT0/CLKO/ICP1) PB0 14 15 PB1 (OC1A/PCINT1) TQFP Top View MLF Top View ) ) 3 2 1 1 ) T T 4 T T ) ) ) 1 I I 1 0) ) ) ) 1 I I 1 0) 1 7 1 T C C T T 1 1 1 N P P T T T T T I L A I N NI N T
in „I2C/TWI TWBR > 10 warum?“ · Mikrocontroller und Digitale Elektronik ·
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MC1488.pdf
Operating D SUFFIX Temperature Range PLASTIC PACKAGE Device Package CASE 751A MC1488P Plastic (SO–14) TA =0 to + 75⋅C MC1488D SO–14 PIN CONNECTIONS V 1 14 V Simplified Application EE CC LineDriver Interconnecting LineReceiver InputA 2 13 InputD1 MC1488 Cable MC1489 OutputA 3 12 InputD2 InputB14 11 OutputD
in „Suche "echten" Pegelwandler 3.3V <-> RS232“ · Mikrocontroller und Digitale Elektronik ·
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xmega_a1.pdf
configurable slew rate limitation to reduce electromagnetic emission. 27 8067I–AVR–04/09 XMEGA A1 14.3.1 Push-pull Figure 14-1. I/O configuration - Totem-pole DIRn OUTn Pn INn 14.3.2 Pull-down Figure 14-2. I/O configuration - Totem-pole with pull-down (on input) DIRn OUTn Pn INn 14.3.3 Pull-up Figure
in „Welchen Wert hat der Pull-up-Widerstand dieses XMega?“ · Mikrocontroller und Digitale Elektronik ·
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sharp_r733.pdf
.............. S3(13) SEG 4 (5) ..............................SEG 10 (11)...................... S2(14) SEG 5 (6) ..............................SEG 11 (12)...................... S1(15) 55-57 SEG12- SORTIE Borneinutilisée. SEG14 58 VDD ENTREE Borne d’entrée de tension d’alimentation. Connectée à la masse
in „Fragen zu einem Trafo einer Sharp R733(W) Mikrowelle“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
sharp_r733.pdf
.............. S3(13) SEG 4 (5) ..............................SEG 10 (11)...................... S2(14) SEG 5 (6) ..............................SEG 11 (12)...................... S1(15) 55-57 SEG12- SORTIE Borneinutilisée. SEG14 58 VDD ENTREE Borne d’entrée de tension d’alimentation. Connectée à la masse
in „Fragen zu einem Trafo einer Sharp R733(W) Mikrowelle“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Component_Candidacy_of_Second_Side_Reflow_with_Lead-Free_Solder.pdf
0.1597 5.48 34.31 QFP208 U4 0.5 N/A Lead free 28 28 0.1597 5.48 34.31 QFP100 U20 0.5 N/A Lead free 14 14 0.0769 0.66 8.58 PLCC44 U54 1.27 N/A Lead free 16:6 16:6 0.0880 2.44 27.73 Component Candidacy of Second Side Reflow with Lead-Free Solder 1579 Table 2 Factors and Levels for DOE. Factors Level 1 Level
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AppNote_v1.1.pdf
74AC16244DL X1-5 X1-6 X2-5 X2-6 SCK 1 1OE 1 1OE B X1-7 X1-8 PF10 [1] X2-7 X2-8 [2] SDIN 48 48 B PC14 [2] X1-9 X1-10 [2] PC15 X2-9 X2-10 2OE 2OE [2] [2] 25 3OE 25 3OE MICROSD_CMD X1-11 X1-12 PC13 X2-11 X2-12 24 4OE 24 4OE MICROSD_CD [2] X1-13 X1-14 [2] MICROSD_DATA0 X2-13 X2-14 47 2 B[0:4] 47 2 [2] [
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debounce.html
0,1,2,3,0,1,... And the state tables and Karnaugh ;maps are: ; ;State Table: Karnaugh Maps: ;pres next B ; SS SS 0 1 ; AB AB +---+---+ +---+---+ ;-------- A 0| | 1 | | 1 | | ; 00 01 +---+---+ +---+---+ ; 01 10 1| 1 | | | 1 | | ; 10 11 +---+---+ +---+---+ ; 11 00 A+ = A ^ B B+ = ~B ; ; Here's the PIC code that implements the counter: ; MOVF SB,W ;W = B ; XORWF SA,F ;A+ = A ^ B ; COMF SB,F ;B+ = ~B ; 14 instructions ; 15 cycles ; Inputs: ; csa - The current sample ; Outputs ; cva - The current value (filtered version of csa) ; ; RAM used ; count_A, ; count_B - State variables for the 8 2-bit counters
in „Vertikale Counter“ · Mikrocontroller und Digitale Elektronik ·
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D810022B.PDF
Pin 9 PC4 TDO Pin 10 PA2 ADC2 ADC2 Pin 11 PC5 TDI Pin 12 PA3 ADC3 ADC3 Pin 13 PC6 TOSC1 TOSC1 Pin 14 PA4 ADC4 ADC4 Pin 15 PC7 TOSC2 TOSC2 Pin 16 PA5 ADC5 ADC5 Pin 17 PB0 XCK/T0 XCK/T0 Pin 18 PA6 ADC6 ADC6 Pin 19 PB1 T1 T1 Pin 20 PA7 ADC7 ADC7 Pin 21 PB2 INT2/AIN0 INT2/AIN0 Pin 22 AREF AREF AREF Pin 23 PB3 OC0/AIN1 OC0/AIN1 Pin 24 5V Pin 25 PB4 SS SS Pin 26 5V Pin 27 PB5 MOSI MOSI Pin 28 5V Pin 29 GND Pin 30 5V Pin 31 GND Pin 32 5V Pin 33 GND Pin 34 5V Atmel Evaluation-Bausatz Best.Nr. 810022
in „Pollin Board mit Attiny13A“ · Mikrocontroller und Digitale Elektronik ·
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Stromtastkoepfe_2009-11-13.pdf
Netzg.erf. 1.450,00 € 1.590,00 € 200mV/A 13 TCP303 150A 20mV/A 15MHz TCPA300 1.790,00 € 2.000,00 € 200mV/A 14 TCP305 50A 100mV/A 50MHz TCPA300 935,00 € 1.040,00 € 100mV/A 15 TCP312 30A 1V/A 100MHz TCPA300 1.110,00 € 1.240,00 € 16 TCP404XL 500A 1mV/A 2MHZ TCPA400 2.490,00 € 2.720,00 € 17 TCPA300 (Netzg.+Verst.) 100MHz -/- Auto-SS f.TCP3xx 1.530,00 € 1.680,00 € 18 TCPA400 (Netzg.+Verst.) 500MHz -/- Auto-SS f.TCP4xx 1.620,00 € 1.680,00 € 19 1103 (Netzgerät) -/- -/- 1.610,00 € 20 HIOKI ASM: Tel. 08123/986-0; keine "feste" Preisliste
in „Stromzange für Oszi? E3N? HZO50?“ · Analoge Elektronik und Schaltungstechnik ·
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gps-spec-IS_GPS_200J.pdf
10 1504 4343 11 11 3 4 11 252 11 1642 12 12 5 6 12 254 12 1750 13 13 6 7 13 255 13 1764 14 14 7 8 14 256 14 1772 15 15 8 9 15 257 15 1775 16 16 9 10 16 258 16 1776 17 17 1 4 17 469 17 1156 18 18 2 5 18 470 18 1467 19 19 3 6 19 471 19 1633 4343 * In the octal notation
in „Magisches Auge für GPS-Empfänger“ · Mikrocontroller und Digitale Elektronik ·
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F1E200_Datsheet_V1.pdf
.................................................................- 30 - 7.14.2 Feature......................................................................................................................- 30 - 7.14.3 Audio Codec Block Diagram ................................
in „Allwinner F1E200 Alternative“ · Mikrocontroller und Digitale Elektronik ·
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mini_edison_breakout_hvm_8_26.pdf
PVIN1 SW2 3 100mOhm 1% PVIN2 SW3 C1 D2BW319000 C47 10 22UF R117 10uF C3 2 AVIN 20% J21 CR7 15% 10% 13 14 1 2 2 1 25V 0.1uF EN VOS 1 9 R2 0R SS/TR 1 2 D2BW319000 C4 33000pF PG 4 6.3V J22 4 FB 5 IN_1 3 IN_2 8 DEF AGND 6 2 7 FSW THPAD 17 SHUNT PGND2 16 1 PGND1 15 GND DC_JACK_SMT NO STUFF C C 5V_SYS V_SYS U1
in „Intel Edison Breakout Board“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Projekt.c
define ST_eintr1 10 #define ST_eintr2 11 #define ST_eintr3 12 #define ST_eintr4 13 #define ST_eintr5 14 #define ST_eintr6 15 #define ST_eintr7 16 #define ST_eintr8 17 #define ST_eintr9 18 #define ST_eintr10 19 #define ST_eintr11 20 #define ST_eintr12 21 #define ST_eintr13 22 //Button definitions #define
in „Probleme mit Soft-PWM“ · Mikrocontroller und Digitale Elektronik ·