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CD00277537.pdf
M9 - PE11 I/O FT PE11 TIM2_CH3 43 - - L9 - PE12 I/O FT PE12 TIM2_CH4/SPI1_NSS 44 - - M10 - PE13 I/O FT PE13 SPI1_SCK 45 - - M11 - PE14 I/O FT PE14 SPI1_MISO DocID17659 Rev 10 37/129 46 Pin descriptions STM32L151x6
in „SPI-Schnittstelle Befehl: SPI_I2S_SendData(spi2, data)“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan mit CH340G und LGT8F328P Mikrocontroller
3.3V C D U5 LGT8F328P-QFP32L 22 21 20 19 18 17 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 PD2/INT0/OC3B 30 PD1/TXD/OC3A 29 PDO/RXD 28 PC6/RSTN 27 PC5/ADC5/SCK 26 PC4/ADC4/SDA 25 PC3/ADC3/APN1 24 PC2/ADC2/APN0 23 PC1/ADC1/APP1 22 PC0/ADC0/APP0 21 PE3/ADC3/ACIN 20 PE2/SWD 19 PE1/ADC6/ACXP 18 PE0/SWC/APN4 17 PBS/SCK/AC1P D13 D12 D11 D10 OC2B/INT1/PD3 OC1B/OC0A/PE4 OC1A/PB1 OC0A/ACP/TXD/PD6 ACIN/PDN 27 CLKO/ICP1/PB0 OC1A/PB1 SPSS/OC1B/PB2 OC2A/MOSI/PB3 MISO/PB4 +5V GND
in „LGT8F328p mit CH340 Programieren?“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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BB_Schem_75839_b.pdf
July 25, 2006 Sheet 12 of 15 5 4 3 2 1 5 4 3 2 1 VCC CSI Connector 1 Wire Connector 1 C136 0.1uF 2 PE1A PE1B PE1C GND A1 1 B1 1 C1 1 CSI_D0 A2 B2 CSI_D1 C2 J7 A3 2 B3 2 C3 2 D U27 GND CSI_D2 A4 3 GND B4 3 GND CSI_D3 C4 3 VCC VCC 1 D CSI_D4 A5 4 B5 4 CSI_D5 C5 4 RTCK_GPIO 2 5 CSI_D6 A6 5 B6 5 CSI_D7 C6
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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lm2576.pdf
Manufacturer's Part Number Inductor Code Inductor Value Schott (1) Pulse Eng.(2) Renco (3) L47 47 μH 671 26980 PE-53112 RL2442 L68 68 μH 671 26990 PE-92114 RL2443 L100 100 μH 671 27000 PE-92108 RL2444 L150 150 μH 671 27010 PE-53113 RL1954 L220 220 μH 671 27020 PE-52626 RL1953 L330 330 μH 671 27030 PE-52627 RL1952 L470 470 μH 671 27040 PE-53114 RL1951 L680 680 μH 671 27050 PE-52629 RL1950 H150 150 μH 671 27060 PE-53115 RL2445 H220 220 μH 671 27070 PE-53116 RL2446 H330 330 μH 671 27080 PE-53117 RL2447 H470 470 μH 671 27090 PE-53118 RL1961
in „einstellbare Konstantstromquelle bis 2A Vin bis 27V“ · Analoge Elektronik und Schaltungstechnik ·
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0279834120.pdf
L1 L2 L3 H07V-K 11 12 14 -T100 . +A11 9 disconnecting switch PE 10mm² 5 5 100VA 230V / Interrupteur F104 (48V) 1 2 3 PE PE 0,5A (2,5A) . / PE 1 -X11 PE 1 L3 L PE * 1 L2 110 110 110 110 11L110 -X11 -X11 P 8 L1 0 9 BK 16L110 -W5 1 / 0 0 /5.4 2 -X11 PE 5 2 1 9 L - /
in „Kran Motor polumschaltbar Klemmenbrett Belegung unklar“ · Haus & Smart Home ·
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CY7C68013.pdf
GPIFADR4 RxD0 PORTC3/GPIFADR3 TxD0 PORTC2/GPIFADR2 RxD1 PORTC1/GPIFADR1 TxD1 PORTC0/GPIFADR0 INT4 INT5# PE7/GPIFADR8 TIMER2 PE6/T2EX TIMER1 PE5/INT6 TIMER0 PE4/RxD1OUT PE3/RxD0OUT PE1/T1OUT RD# PE0/T0OUT WR# CS# D7 D5 OE# D4 PSEN# D3 D2 A15 D1 A14 D0 A13 A12 A11 A10 128 A9 A8 A7 A6 A5 A4 EA A3 A2 A1 A0 Figure
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CY7C68013.pdf
GPIFADR4 RxD0 PORTC3/GPIFADR3 TxD0 PORTC2/GPIFADR2 RxD1 PORTC1/GPIFADR1 TxD1 PORTC0/GPIFADR0 INT4 INT5# PE7/GPIFADR8 TIMER2 PE6/T2EX TIMER1 PE5/INT6 TIMER0 PE4/RxD1OUT PE3/RxD0OUT PE1/T1OUT RD# PE0/T0OUT WR# CS# D7 D5 OE# D4 PSEN# D3 D2 A15 D1 A14 D0 A13 A12 A11 A10 128 A9 A8 A7 A6 A5 A4 EA A3 A2 A1 A0 Figure
in „Stereokamera CY7C68013A + 2 mal MT9D131“ · Mikrocontroller und Digitale Elektronik ·
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GH025A_A3__-_090622.pdf
-30℃ ↔ 70℃ ,250cycle 5 Thermal Shock Test (30min) (30min) Amplitude:1.5mm 6 Vibration test Frequency :10~55Hz Position:three perpendicular planes Duration1000hrs Temp : 80℃ 7 High Temperature Operation test
in „Display ansteurern“ · Mikrocontroller und Digitale Elektronik ·
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CPU_ECB_sheet.pdf
DESEL 3.3V B1 +3V3 ARESET A2 B2 +5V A2 B2 +5V J2 A3 ARESET 5.0V B3 A18 A3 NC 5.0V B3 A18 D0 A4 NC PE4 B4 A17 D0 A4 A19 A18 B4 A17 A1 C1 D0 PE3 D0 A17 A2 C2 D1 A5 D1 PE2 B5 A16 D1 A5 D1 A16 B5 A16 A3 C3 D2 A6 D2 A15 B6 A15 D2 A6 D2 A15 B6 A15 A4 C4 D3 A7 B7 A14 D3 A7 B7 A14 D4 A8 D3 A14 B8 A13 D4 A8
in „Z180-Stamp Modul“ · Mikrocontroller und Digitale Elektronik ·
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GSMParkHeatingControl.pdf
C T T T D H O A A D D D D N D 1 1 PEN F F FP PA3/AD3 R801 DBG_RXD G P C R D D I G V V G G G G N G PE0/RXD0/PDI P P P PA4/AD4 Lüften/Heizen 10K DBG_TXD I T T POWERKEY J800 J801 PE1/TXD0/PDO PA5/AD5 SH_ON/OFF 10K 0 D N A PE2/XCK0/AIN0 PA6/AD6 EXT_ON/OFF 0 RXD RI PE3/OC3A/AIN1 PA7/AD7 EXT_L/H 7 L SV _ R703 TXD PE4/OC3B/INT4 IC800 PG2/ALE X CR 0 TP7 1PPS PE5/OC3C/INT5 PC7/A15 D M 0 10K STATUS PE6/T3/INT6 PC6/A14 +3,3V_ON/OFF R I _ R704 22 SIM_DATA TEMP_DATA PE7/ICP3/INT7 PC5/A13 SD_CS A S 6 R705 22 PB0/SS PC4/
in „Bitte um Überprüfung: GSM Steuerung mit GPS“ · Mikrocontroller und Digitale Elektronik ·
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603A.pdf
5.88 -2.88 +0.12 TX Output Power PO Rl : 50 ohm RFG : 1 ( -0.74 ) dBm RFG : 2 ( +1.36 ) RFG : 3 +0.30 +3.30 +6.30 Modulation Deviation Dev Pre-emphasis : off +/- 50 +/- 75 +/- 100 kHz STEREO Modulation Distortion THD Dev : +/- 75kHz 1.5 % Modulation SN Ratio SNR STEREO 48 55 dB Stereo Separation SEP
in „[AVR] FM-Transmitter für 1,50EUR --> Ansteuerung?“ · Mikrocontroller und Digitale Elektronik ·
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PINOUT-STAMP.pdf
Stamp Module AVR Z180 all A B all Z180 AVR 1 DESEL 1 +3.3 volts DC /ARESET nc 2 2 +5.0 volts DC 3 A18 PE4 A19 3 D0 4 4 A17 PE3 5 A16 PE2 D1 5 D2 6 6 A15 7 D3 7 A14 D4 8 8 A13 9 D5 9 A12 D6 10 10 A11 11 D7 11 A10 PG4 /RTS0 12 12 A9 PG5 13 /CTS0 13 A8 SCK /DCD0 14 14 A7 MOSI 15 TXA0 15 A6 MISO RXA0 16 16
in „Z180-Stamp Modul“ · Mikrocontroller und Digitale Elektronik ·
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MK_STM32F4_Sensorboard_Schematic.pdf
P P P P P P 87 7 VDD_IO SDI_A/G SPI3_1_MOSI 15 VDD SDI 4 SPI1_MOSI CON-BOOT0 CON-BOOT1 BUTTON1 91 PE2/BUTTON PD6 88 DRDY_LSM303DLHC V 8 VDD 27 10uF 0.1uF RES SDO 5 SPI1_MISO 1 2 ALERT 46 PB5/ALERT PD7 4 INT1_LSM303DLHC 3 9 VDD SDO_A 26 SPI3_1_MISO 8 CS SPI1_CS_L3GD20 LED_YELLOW PE15/LED_Y PE5 DRDY_HMC5883L + VDD SDO_G SPI3_1_MISO C4 C2 RES 2 1 LED_BLUE 45 PE14/LED_B PE6 5 SDO_BMP180 CS_A 23 SPI3_CS_LSM330DLC_A 9 RES DRDY/INT2 6 DRDY/INT2_L3GD20 LED_RED 44 PE13/LED_R ExtraPins PC13 7 CS_BMP180 10 RES CS_G 22 SPI3_CS_LSM330DLC_G 10 RES INT1 7 INT1_L3GD20 CON
in „I2C-Kommunikation stoppt nach ca. 1-5 Sekunden“ · Mikrocontroller und Digitale Elektronik ·
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MK_STM32F4_Sensorboard_Schematic-2.pdf
P P P P P P 87 7 VDD_IO SDI_A/G SPI3_1_MOSI 15 VDD SDI 4 SPI1_MOSI CON-BOOT0 CON-BOOT1 BUTTON1 91 PE2/BUTTON PD6 88 DRDY_LSM303DLHC V 8 VDD 27 10uF 0.1uF RES SDO 5 SPI1_MISO 1 2 ALERT 46 PB5/ALERT PD7 4 INT1_LSM303DLHC 3 9 VDD SDO_A 26 SPI3_1_MISO 8 CS SPI1_CS_L3GD20 LED_YELLOW PE15/LED_Y PE5 DRDY_HMC5883L + VDD SDO_G SPI3_1_MISO C4 C2 RES 2 1 LED_BLUE 45 PE14/LED_B PE6 5 SDO_BMP180 CS_A 23 SPI3_CS_LSM330DLC_A 9 RES DRDY/INT2 6 DRDY/INT2_L3GD20 LED_RED 44 PE13/LED_R ExtraPins PC13 7 CS_BMP180 10 RES CS_G 22 SPI3_CS_LSM330DLC_G 10 RES INT1 7 INT1_L3GD20 CON
in „EAGLE: Sprungfahnen“ · Platinen ·
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Datei
ettft240320tp3_2_rev_b.c
_________________________ * * - Data GLCD | : PF[0..7] | Connect: DB8..DB15 * * - Control GLCD | : PE2 | Connect: CS-H * * - | : PE3 | Connect: RS-H(0=cmm,1=data) * * - | : PE4 | Connect: WR-H(Write) * * - | : PE5 | Connect: RD-H(Read) * * - | : PE6 | Connect: RES-H(Reset) * * - Back Light GLCD | : PE7
in „ET-TFT320240 Rev.3.2 Code in Modul und Header aufteilen“ · Mikrocontroller und Digitale Elektronik ·
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ONJU_Schematic.pdf
kOhms LED2 3V3 LED3 3V3 LED4 3V3 LED5 3V3 10 0101JIP 14V CR3 GND 10 kOhms CLE1 VDD PLE201 VDD PILD30 VDD PLE41 VDD PIED01 CLD FH34SRJ-10S-0.5SH(50) PR LED1 LED6 RGB_CTRL PIE0DIN DOUT PLD2 PIED0 DIN DOUT PLE202 PLE34 DIN DOUT PILD30 PIED04DIN DOUT PLE42 PLE50 DIN DOUT PIED02 3PE0 DIN DOUT PE6 PIE0 PLD1 4PE0 PE6 SMPS 3V3 P6 VDD GND PLE203 PILD30 PLE43 PIED033 P VDD GND GND C6C SK6812D-EC3210R GND GND GND GND CSK6812D-EC3210R DC in 0.1 µF GND SK6812MINI-E SK6812MINI-E SK6812MINI-E SK6812MINI-E 0.1 µF GND
in „Bitte um Review meiner erweiterten ONYU-Schaltpläne (Bluetooth-Erweiterung mit CSR8635)“ · Mikrocontroller und Digitale Elektronik ·
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hd6402.pdf
use in Reflow solder processing RBR5 8 33 TBR8 applications. RBR4 9 32 TBR7 RBR3 10 31 TBR6 RBR2 11 30 TBR5 RBR1 12 29 TBR4 PE 13 28 TBR3 FE 14 27 TBR2 OE 15 26 TBR1 SFD 16 25 TRO RRC 17 24 TRE DRR 18 23 TBRL DR 19 22 TBRE RRI 20 21 MR 1 CAUTION: These devices are sensitive to electrostatic discharge;
in „IC gesucht: RS-232 eingehendes Byte an 8 Ports“ · Mikrocontroller und Digitale Elektronik ·
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7404-Manual-Rev06-1.pdf
Manual Funktionsgeneratoren Function Generators TOE 7402 / TOE 7404 7404-Manual-Rev06.doc Software V1.30+ TOELLNER ELECTRONIC INSTRUMENTE GMBH Gahlenfeldstraße 31, 58313 Herdecke, Germany ▯ +49 (0) 23 30 - 97 91 91 • Fax +49 (0) 23 30 - 97 91 97 E-Mail: info@toellner.de • Internet: www.toellner.de Technische
in „Suche Service-Unterlagen / Bestückungsplan für Toellner TOE 7404 (SMD-Serie 7400)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
cpp.txt
= 23 / PH4 =24 / PH 5 = 25 / PH6 = 26 PORTH |= (1<<PH3)|(1<<PH4)|(1<<PH5)|(1<<PH6); DDRE &= ~((1<<PE3)|(1<<PE4)|(1<<PE5)); //PIN 2,3,5 / PE4 =19 / PE5 = 20 / PE3 = 22 PORTE |= (1<<PE3)|(1<<PE4)|(1<<PE5); DDRG &= ~((1<<PG5)|(1<<PG1)|(1<<PG2)); //PIN 4 PIN 39,40 / PG1 = 0 /PG2 = 1 /PG5 = 21 PORTG |= (
in „Probleme: C++ Programmierung MEGA 2560“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.cpp
= 23 / PH4 =24 / PH 5 = 25 / PH6 = 26 PORTH |= (1<<PH3)|(1<<PH4)|(1<<PH5)|(1<<PH6); DDRE &= ~((1<<PE3)|(1<<PE4)|(1<<PE5)); //PIN 2,3,5 / PE4 =19 / PE5 = 20 / PE3 = 22 PORTE |= (1<<PE3)|(1<<PE4)|(1<<PE5); DDRG &= ~((1<<PG5)|(1<<PG1)|(1<<PG2)); //PIN 4 PIN 39,40 / PG1 = 0 /PG2 = 1 /PG5 = 21 PORTG |= (
in „Probleme: C++ Programmierung MEGA 2560“ · Mikrocontroller und Digitale Elektronik ·
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RK_100_H_BANDELIN.pdf
100 H Temperature control RK 100 H Réglage de température RK 100 H Einstellbarer Temperaturbereich: 30 – 80 °C Adjustable temperature range: 30 – 80 °C Plage de température réglable : 30 à 80 °C Heizleistung: 140 W Heating power: 140 W Puissance de chauffage : 140 W Trockenlaufschutz der Heizung Dry run
in „[V] BANDELIN SONOREX SUPER RK100 Ultraschallreiniger“ · Markt ·
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atxmega128_board-sch1.pdf
p H 92 XTAL1_PR1 OC0C_RXD0_PD2 27 C 22 1 M OC0D_TXD0_PD3 28 Q 8 OC1A_/SS_PD4 29 OC1B_XCK1_MOSI_PD5 30 GND RXD1_MISO_PD6 31 32 GND TXD1_SCK_CLKO_EVO_PD7 35 OC0A_/OC0A_SDA_PE0 36 OC0B_OC0A_XCK0_SCL_PE1 37 OC0C_/OC0B_RXD0_PE2 OC0D_OC0B_TXD0_PE3 38 /OC0C_OC1A_/SS_PE4 39 OC0C_OC1B_XCK1_MOSI_PE5 40 /OC0D_RXD1_MISO_PE6 41 OC0D_TXD1_SCK_CLKO_EVO_PE7 42 45 OC0A_SDA_PF0 46 OC0B_XCK0_SCL_PF1 47 OC0C_RXD0_PF2 48 OC0D_TXD0_PF3 49 OC1A_/SS_PF4 OC1B_XCK1_MOSI_PF5 50 RXD1_MISO_PF6 51 TXD1_SCK_PF7 52 /WE_PH0 55 56 /CAS_/RE_PH1
in „ATxmega-Experimentierplatine in Gold/Schwarz ab 12.04.10 eventuell Bausatz“ · Markt ·
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VWEW-Fachtagung_2005.pdf
„Ergänzende Hinweise zur selbsttätigen Freischaltstelle“ vom VDN Unterscheidung Anlagenleistung > 30 kVA: Jederzeit zugängliche Netztrennstelle ≤ 30 kVA: Selbsttätige Freischaltstelle zum öffentlichen Netz Drei Verfahren für selbsttätige Freischaltstelle: Impedanzsprung (bekannt als „ENS“) Dreiphasige
in „Trafoloser Wechselrichter-Schaltbild gesucht“ · Mikrocontroller und Digitale Elektronik ·
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ds.pdf
Tasterklemme M (Gelb) I JF 24,0 8.1 Abb. 11: Abmessungen Klemme M Abb. 12: Abmessungen Tasterklemme M PE -T PE N N 230 V A C dSM 16 A 230 V A C dS M t4w 230 VAC 44ko 230 VAC digltaISTROM digitalSTROM GE4CL 200 Leuchte 2 Leuchte 1 230 V 230 V Abb. 13: Anschlussplan Klemme L (Gelb) Abb. 14: Anschlussplan
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DSO203.pdf
D+ STM32F103VCT6 PA2_T23 25 ADC_EN 72 I/O I/O 10 C70 105 70 26 71 2 nPD P C S 2V8 D- 2 PA11_D- PA3 30 69 I/O I/O 73 C25 105 E T I C S O Ax5 4 PE3 PA5 31 SCK 68 I/O I/O 76 L6 S R M E U13 M M Z 1 2 3 4 5 7 6 9 1 8 AC2 5 PE5 PA6_T31 32 SDA 66 I/O VPP_FAST 5 100uH BZ B K K K K K K K K K K Bx1 PE6 PA7_T32
in „Welches aktuelle DSO ist gut ?“ · Mikrocontroller und Digitale Elektronik ·
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CPU_ECB_sheet_V02.pdf
STAMP A1 B1 A1 B1 NC 3.3V +3V3 DESEL 3.3V +3V3 ARESET A2 ARESET 5.0V B2 +5V A2 NC 5.0V B2 +5V J2 A3 NC PE4 B3 A18 A3 A19 A18 B3 A18 A1 C1 D0 A4 B4 A17 D0 A4 B4 A17 A2 C2 D1 A5 D0 PE3 B5 A16 D1 A5 D0 A17 B5 A16 D2 D1 PE2 A15 D2 D1 A16 A15 A3 C3 A6 D2 A15 B6 A6 D2 A15 B6 A4 C4 D3 A7 D3 A14 B7 A14 D3 A7 D3
in „Z180-Stamp Modul“ · Mikrocontroller und Digitale Elektronik ·
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xminilab-schematics-2.1.pdf
1u C13 DB7 5 C 16MHz 37 PR0 R D P P P P P P P P A G 33 +5V 2 VCC 3.3u DB6 6 3.3u PR1 ATXMEGA32A4U PE3 CTS R16 DB5 D +3.3V C18 C19 C21 PE2 32 1 GND 820k DB4 7 0.1u 0.1u 0.1u 9 VCC PE1 29 J8 DB3 8 1 19 VCC PE0 28 DB2 9 2 31 VCC CON6 10 8 1 8 GND PB3 7 SDIN / DB1 11 2 18 GND PB1 5 SCLK / DB0 12 x 3 30
in „Stromversorgung mit LM7805 (Xminilab)“ · Mikrocontroller und Digitale Elektronik ·
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xminilab-schematics-2.1.pdf
1u C13 DB7 5 C 16MHz 37 PR0 R D P P P P P P P P A G 33 +5V 2 VCC 3.3u DB6 6 3.3u PR1 ATXMEGA32A4U PE3 CTS R16 DB5 D +3.3V C18 C19 C21 PE2 32 1 GND 820k DB4 7 0.1u 0.1u 0.1u 9 VCC PE1 29 J8 DB3 8 1 19 VCC PE0 28 DB2 9 2 31 VCC CON6 10 8 1 8 GND PB3 7 SDIN / DB1 11 2 18 GND PB1 5 SCLK / DB0 12 x 3 30
in „Auswerten symmetrischer potentialfreier Leitungen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xminilab-schematics-2.1.pdf
1u C13 DB7 5 C 16MHz 37 PR0 R D P P P P P P P P A G 33 +5V 2 VCC 3.3u DB6 6 3.3u PR1 ATXMEGA32A4U PE3 CTS R16 DB5 D +3.3V C18 C19 C21 PE2 32 1 GND 820k DB4 7 0.1u 0.1u 0.1u 9 VCC PE1 29 J8 DB3 8 1 19 VCC PE0 28 DB2 9 2 31 VCC CON6 10 8 1 8 GND PB3 7 SDIN / DB1 11 2 18 GND PB1 5 SCLK / DB0 12 x 3 30
in „ATXmega - Pin Eingang oder Ausgang“ · Mikrocontroller und Digitale Elektronik ·
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1912111437_INJOINIC-IP6518-NEW_C432569.pdf
IP6518 最大输出 45W,集成 Type-C PD 输出和各种快充输出协议 (DCP/QC2.0/QC3.0/ PE+1.1/PE2.0/FCP/AFC/SFCP/SCP/ USB PD)的 SOC IC 1 特性 3 简介 同步开关降压转换器 IP6518 是一款集成同步开关的降压转换器、 支 内置功率 MOS 输入工作电压范围:10.5V 到 32V 持 13 种输出快充协议、支持 Type-C 输出和 USB PD 协议,为车载充电器、快充适配器、智能排插 输出电压范围:3V 到 20V,
in „36V DC to USB-C PD Controller 20V/5V“ · Analoge Elektronik und Schaltungstechnik ·
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A20_user_manual_v1.3_20141010.pdf
PD26 LCD0_HSYNC SMC_SLK PD27 LCD0_VSYNC SMC_SDA Port D(PD) Multiplex Function Select Table Port E(PE) Multiplex Function Select PE0 TS0_CLK CSI0_PCLK PE1 TS0_ERR CSI0_MCLK PE2 TS0_SYNC CSI0_HSYNC PE3 TS0_DLVD CSI0_VSYNC PE4 TS0_D0 CSI0_D0 PE5 TS0_D1 CSI0_D1 PE6 TS0_D2 CSI0_D2 PE7 TS0_D3 CSI0_D3 PE8
in „DDR3 RAM Datenleitung beliebig anschliessen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
STM32F107xx.txt
Building configuration: Project - STM3210C-EVAL Updating build tree... 30 file(s) deleted. Updating build tree... core_cm3.c main.c Error[Pe147]: declaration is incompatible with "__interwork __softfp unsigned long __get_PSP(void)" (declared at line 52 of "D:\ARM\IAR Systems
in „ATxMega o. ARM-Cortex-M3“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datenblatt-554092-schaffner-fn2090-3-06-fn2090-3-06-entstoerfilter-250-vac-3-a-14-mh-l-x-b-x-h-85-x-54-x-303-mm-1-st.pdf
voltage: 250VAC, 50/60Hz L L Operating frequency: dc to 400Hz P P‘ Cx R Cx Cx Rated currents: 1 to 30A @ 40°C max. N N‘ High potential test voltage: P –> PE 2000VAC for 2 sec (standard types) P –> PE 2500VAC for 2 sec (B types) PE Cy Cy1 P –> N 1100VDC for 2 sec Temperature range (operation and storage
in „Störgeräusch im Hausstromnetz“ · Analoge Elektronik und Schaltungstechnik ·
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RK2705_Pin_Description.pdf
18 LCD_D4 O lcd data[4] 19 LCD_D5 O lcd data[5] 20 LCD_D6 O lcd data[6] 21 LCD_D7 O lcd data[7] 22 PE0/LCD_D8 IO Pull up/O GPIO E0/LCD data[8] 23 PE1/LCD_D9 IO Pull up/O GPIO E1/LCD data[9] 24 PE2/LCD_D10 IO Pull up/O GPIO E2/LCD data[10] 25 PE3/LCD_D11 IO Pull up/O GPIO E3/LCD data[11] 26 PE4/LCD_D12 IO Pull up/O GPIO E4/LCD data[12] 27 PE5/LCD_D13 IO Pull up/O GPIO E5/LCD data[13] 28 PE6/LCD_D14 IO Pull up/O GPIO E6/LCD data[14] 29 PE7/LCD_D15 IO Pull up/O GPIO E7/LCD data[15] 30 PA0/LCD_D16/RXD0 IO Pull up/O/O GPIO A1/LCD data[16]/UART0
in „Handydummy (Attrappe)mit richtigem Display - Sony Ericsson Vivaz“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan.pdf
ADC4)PC4 28 18 RST RXCAN 3 +5VIO 3 VSS CANH 6 (SCL0/ADC5)PC5 17 CS CLKOUT/SOF 4 GND 4 VDD CANL 5 +5V 30 16 SO TX0RTS 5 IO RXD VREF TP1 1 0 (RXD0/OC3A)PD0 SI TX1RTS R 1 GND (TXD0/OC4A)PD1 31 15 NC' NC 6 +5VIO TJA1050 (INT0/OC3B/OC4B)PD2 32 14 SCK TX2RTS 7 I D (INT1/OC2B)PD3 1 D2_MCP2515_INT 13 INT OSC2
in „Schaltplan richtig zeichnen“ · Mikrocontroller und Digitale Elektronik ·
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can_g1251_v02_12f.eagle7.sch.pdf
SDA0/ADC4)PC4 28 A4_SDA (SCL0/ADC5)PC5 A5_SCL 2 2 GND L H GND 1 2 1 k MCP2515 +3V3 A N (RXD0/OC3A)PD0 30 RXD R R 2 IO JP2 C C (TXD0/OC4A)PD1 31 TXD 1 ALERT CS1 8 1 (INT0/OC3B/OC4B)PD2 32 D2_MCP2515_INT A4_SDA 2 SMDAT CS2 7 2 1 D3_RG+ A5_SCL 3 6 3 (INT1/OC2B)PD3 2 D4_BI1 4 SMCLK CS3 5 +5V 2 0 (XCK0/T0)PD4
in „Schaltplan richtig zeichnen“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan_2.pdf
SDA +3IO (SDA0/ADC4)PC4 28 JP2 SN1 (SCL0/ADC5)PC5 SCL 1 8 1 5 +5V ALERT CS1 +3V3 VDD (RXD0/OC3A)PD0 30 I+3V3 2 SMDAT CS2 7 2 IO GND (TXD0/OC4A)PD1 31 3 SMCLK CS3 6 3 JP3 D C17 1 SDA (INT0/OC3B/OC4B)PD2 32 INT 4 VDD GND 5 1 2 N (INT1/OC2B)PD3 1 3 4 G 100n 6 SCL H 1 n (XCK0/T0)PD4 2 BI1 CAP1203 u L 2 0
in „Schaltplan richtig zeichnen“ · Mikrocontroller und Digitale Elektronik ·
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UMS-21100.pdf
,EIMcontrolsignals,andSDRAMcontrolsignals. m r f F e r Figure 3-17 shows the pin numbering for the PE1, PE2, and PE3 connectors. Table 3-17 through r f Table 3-19 provide signal descriptions. Table 3-17 covers PE1, Table 3-18 covers PE2 and Table 3-19 n b a i covers PE3. o v s t a n c e B a M9328MX21ADSE
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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ATMEGA_128.pdf
A A A G A P P P P P P P P G V P P P 6 6 6 6 6 5 5 5 5 5 5 5 5 5 5 4 PEN 1 48 PA3 (AD3) RXD0/(PDI) PE0 2 47 PA4 (AD4) (TXD0/PDO) PE1 3 46 PA5 (AD5) (XCK0/AIN0) PE2 4 45 PA6 (AD6) (OC3A/AIN1) PE3 5 44 PA7 (AD7) (OC3B/INT4) PE4 6 43 PG2(ALE) (OC3C/INT5) PE5 7 42 PC7 (A15) (T3/INT6) PE6 8 41 PC6 (A14) (
in „ATMEGA128 Board im Neuhold Newsletter 2/2011“ · Mikrocontroller und Digitale Elektronik ·
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Datei
system_stm32f4xx.c
<-> FMC_D15 | PE9 <-> FMC_D6 | PF12 <-> FMC_A6 | PG9 <-> FMC_NE2 | | PD11 <-> FMC_A16 | PE10 <-> FMC_D7 | PF13 <-> FMC_A7 |-----------------+ | PD12 <-> FMC_A17 | PE11 <-> FMC_D8 | PF14 <-> FMC_A8 | | PD13 <-> FMC_A18 | PE12 <-> FMC_D9 | PF15 <-> FMC_A9 | | PD14 <-> FMC_D0 | PE13 <-> FMC_D10 |-----------------+ | PD15 <-> FMC_D1 | PE14 <-> FMC_D11 | | | PE15 <-> FMC_D12 | +------------------+------------------+ */ /* Enable
in „STM32F103 Bluepill mit 128kb lässt sich nicht flashen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
system_stm32f4xx.c
<-> FMC_D15 | PE9 <-> FMC_D6 | PF12 <-> FMC_A6 | PG9 <-> FMC_NE2 | | PD11 <-> FMC_A16 | PE10 <-> FMC_D7 | PF13 <-> FMC_A7 |-----------------+ | PD12 <-> FMC_A17 | PE11 <-> FMC_D8 | PF14 <-> FMC_A8 | | PD13 <-> FMC_A18 | PE12 <-> FMC_D9 | PF15 <-> FMC_A9 | | PD14 <-> FMC_D0 | PE13 <-> FMC_D10 |-----------------+ | PD15 <-> FMC_D1 | PE14 <-> FMC_D11 | | | PE15 <-> FMC_D12 | +------------------+------------------+ */ /* Enable
in „stm32f411re timer clock speed ermitteln?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
kklcdxx.c
// lcd_send(..) - sendet ein Byte an LCD im 4-Bit-Modus // RS muss vorher richtig gesetzt sein // PE: data=zu sendendes Byte //--------------------------------------------------------------------------- void lcd_send(char data) { // aktuelles RS ermitteln char rs=lcdbyte; rs&=4; // High-Teil senden
in „I2C LCD mit Raspberry“ · Mikrocontroller und Digitale Elektronik ·
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Datei
kklcdxx.c
// lcd_send(..) - sendet ein Byte an LCD im 4-Bit-Modus // RS muss vorher richtig gesetzt sein // PE: data=zu sendendes Byte //--------------------------------------------------------------------------- void lcd_send(char data) { // aktuelles RS ermitteln char rs=lcdbyte; rs&=4; // High-Teil senden
in „Verzweiflung um LCD Lib von Peter Fleury“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sip_klingel_ND.ino
AddCopySipLine(const char *p, const char *psearch) { char *pa=strstr((char*)p, psearch); if (pa) { char *pe=strstr(pa, "\r"); if (pe==0) pe=strstr(pa, "\n"); if (pe>pa) { char c=*pe; *pe=0; AddSipLine("%s", pa); *pe=c; return true; } } return false; } int Sip::GrepInteger(const char *p, const char *psearch
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Every Development Board mit Mikrocontroller-Modul
R1 PE2 D13 3V3 R40 D12 PE1 PD3 D14 11 PE0 PD2 D15 D10 PB1 D16 DO D7 PB3 SDA D18 SCL D19 PA1 D4 PD20 D2 PA0 PD5* 5V GND D9 PB3 GND GND 5V D2 PA0 GND GND 5V D0 TX1 K34 SCL K37 CSI MOSI MISO SCK 5V GND R59 5V SCL SDA ADC A B 13 RV1 RV2 3V3 ext. 3V3 VREF 5V SW1 SW2 SW3 SW4 TP1 GND K12 3V3 nRF24L01 K30 MOSI K11 TX K12 K10 IRQ IRQ STATE K11 TX STATE K12 K13 K14 K15 K16 K17 K18 K19 K20 K21 K22 K23 K24 K25 K26 K27 K28 K29 K30 K31 K32 K33 K34 K35 K36 K37 K38 K39 K40 K41 K42 K43 K44 K45 K46 K47 K48 K49
in „Arduino Nano Testboard“ · Projekte & Code · · Platinenfotos
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CPU_ECB_sheet_V03.pdf
B1 +3V3 A1 B1 +3V3 A ARESETA2 NC 3.3V B2 A2 DESEL 3.3V B2 ARESET 5.0V A18 +5V NC 5.0V A18 +5V A3 NC PE4 B3 A3 A19 A18 B3 D0 A4 D0 PE3 B4 A17 D0 A4 D0 A17 B4 A17 D1 A5 B5 A16 D1 A5 B5 A16 D2 A6 D1 PE2 B6 A15 D2 A6 D1 A16 B6 A15 D3 A7 D2 A15 B7 A14 D3 A7 D2 A15 B7 A14 D3 A14 D3 A14 693061010911 D4 A8 D4
in „Z180-Stamp Modul“ · Mikrocontroller und Digitale Elektronik ·
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STM32F107.pdf
ADC12_IN9 / TIM3_CH4 (6/ 36 27 PB1 I/O PB1 TIM1_CH3N ETH_MII_RXD3 37 28 PB2 I/O FT PB2/BOOT1 38 - PE7 I/O FT PE7 TIM1_ETR 39 - PE8 I/O FT PE8 TIM1_CH1N 40 - PE9 I/O FT PE9 TIM1_CH1 41 - PE10 I/O FT PE10 TIM1_CH2N 42 - PE11 I/O FT PE11 TIM1_CH2 43 - PE12 I/O FT PE12 TIM1_CH3N 44 - PE13 I/O FT PE13 TIM1_CH3 45 - PE14 I/O FT PE14 TIM1_CH4 46 - PE15 I/O FT PE15 TIM1_BKIN (7) (6) 47 29 PB10 I/O FT PB10 I2C2_SCL /USART3_TX / TIM2_CH3 ETH_MII_RX_ER (7) (6) I2C2_SDA /USART3_RX / 48 30 PB11 I/O FT PB11 ETH_MII_TX_EN/
in „STM32-comStick USB-Bootloader“ · Mikrocontroller und Digitale Elektronik ·
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LM2585.pdf
Voltage V = 1.0V COMP VREF Reference Voltage VIN= 4V to 40V 2.0 mV Line Regulation G Error Amp I = −30 µA to +30 µA 1.193 0.678 2.259 mmho M COMP Transconductance VCOMP = 1.0V A VOL Error Amp VCOMP = 0.5V to 1.6V 260 151/75 V/V Voltage Gain R = 1.0 M (Note 6) COMP LM2585-5.0 Symbol Parameters Conditions
in „12V + 12V = 24V ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
VHDL-File.txt
RST => RST, -- port name => net name (int. signal name) CLK => CLK, -- formal association CE => CE, PE => PE, P(0) => P0, P(1) => P1, P(2) => P2, P(3) => P3, Q(0) => Q0, Q(1) => Q1, Q(2) => Q2, Q(3) => Q3, TC => TC); ------------------------------------------------------------------------------- STIMGEN
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Datei
Testfile.txt
==> RST, --port name ==> net name (int. signal name) CLK ==> CLK, --formal association CE ==> CE, PE ==> PE, P(0)==> P0, P(1)==> P1, P(2)==> P2, P(3)==> P3, Q(0)==> Q0, Q(1)==> Q1, Q(2)==> Q2, Q(3)==> Q3, TC ==> TC); -----------------------------------------------------------------------------------