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PDF
STLinkMini.pdf
30 1 T_SWO_RX1 31 PA9 +5V 2 R1 33 USB_DM 32 PA10 D- PA11 D+ 3 USB_DP 33 PA12 ID 4 R2 33 PGM_SWDIO 34 PA13 GND 5 PGM_SWDCLK 37 R17 R18 38 PA14 PA15 MINIUSB T_NRST 18 PB0 470 470 TP6 19 PB1 G G G G R6 10k BOOT1 20 39 PB2 PB3 1 2 3 4 40 PB4 C C C C 41 PB5 I2C1_SCL 42 I2C1_SDA 43 PB6 PB7 TP2 45 PB8 TP3 46 PB9 +3,3V TP4 21 PB10 X2 22 R9 100 TP5 25 PB11 PB12 26 PB13 1 RST R11 22 T_NRST T_JTMS 27 PB14 2 28 3 SWCLK R10 22 T_JTCK PB15 4 STM32F103C8T6
in „Erstes PCB mit Eagle: STM32 Breakout Board“ · Platinen ·
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PDF
irf3708.pdf
Symbol Parameter Max. Units V Drain-Source Voltage 30 V DS VGS Gate-to-Source Voltage ±12 V D @ TC= 25°C Continuous Drain CurreGS,@ 10V 62 I @ T = 70°C Continuous Drain Current,@ 10V 52 A D C GS DM Pulsed Drain Curr nt 248 PD@T C 25°C Maximum Power DissipatRon 87 W PD@T C 70°C Maximum Power DissipatRon
in „IRF3708 als Schalter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
eGC.pdf
_1 PIIC20R16 R14 IO_L49N_M1DQ11_1 T15C20RIO_L50P_M1UDQS_1 PIIC20TIO_L50N_M1UDQSN_1 PIIC20TIO_L51P_M1DQ12_1 PIIC20T13 R12 IO_L51N_M1DQ13_1 T12C20RIO_L52P_M1DQ14_1 PIIC20TIO_L52N_M1DQ15_1 PIIC20LIO_L53P_1 PIIC20L13 M13 IO_L53N_VREF_1 M14C20MIO_L74P_AWAKE
in „[Suche] Interessierte(n) an Projekt (ARM/FPGA)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRF9Z34-Vishay.pdf
220AB Lead (Pb)-free IRF9Z34PbF SiHF9Z34-E3 IRF9Z34 SnPb SiHF9Z34 ABSOLUTE MAXIMUM RATINGS (T = 25 °C, unless Ctherwise noted) PARAMETER SYMBOL LIMIT UNIT Drain-Source Voltage VDS - 60 V Gate-Source Voltage V GS ± 20 T = 25 °C - 18 Continuous Drain Current VGS at - 10 V C ID TC = 100 °C - 13 A a Pulsed Drain Current DM - 72 Linear Derating Factor 0.59 W/°C b Single Pulse Avalanche Energy EAS 370 mJ Repetitive Avalanche Current AR - 18 A Repetitive Avalanche Energy EAR 8.8 mJ Maximum Power Dissipation T = 25 °C P 88
in „Saito Pro Charger Batterieladegerät - Mikrocontroller ATmel ATTINY26L defekt?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irfp2907.pdf
other applications. G D S Gate Drain Source Absolute Maximum Ratings Parameter Max. Units D @ TC= 25°C Continuous Drain CurrenGS @ 10V 209 D @ TC= 100°C Continuous Drain CurrenGS @ 10V 148 A I Pulsed Drain Current 840 DM PD@T C 25°C Power Dissipation 470 W Linear Derating Factor 3.1 W/°C V Gate-to-Source
in „Sinusendstufe für 300A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRFP2907.pdf
other applications. G D S Gate Drain Source Absolute Maximum Ratings Parameter Max. Units D @ TC= 25°C Continuous Drain CurrenGS @ 10V 209 D @ TC= 100°C Continuous Drain CurrenGS @ 10V 148 A I Pulsed Drain Current 840 DM PD@T C 25°C Power Dissipation 470 W Linear Derating Factor 3.1 W/°C V Gate-to-Source
in „Auto-Kühler-Lüfter per PWM manuell steuern“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
irl1404.pdf
wide acceptance throughout the industry. Absolute Maximum Ratings Parameter Max. Units D @ TC= 25°C Continuous Drain CurrenGS@ 10V 160 D @ TC= 100°C Continuous Drain CurrenGS@ 10V 110 A DM Pulsed Drain Current 640 PD@T C 25°C Power Dissipation 200 W Linear Derating Factor 1.3 W/°C VGS Gate-to-Source
in „Geiger Counter Sparkfun“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Funkschau_Inhalt_1980-1990.pdf
/14 Computer-Standards: Kompatibilität 87/3/47 Computermonitor 87/4/49 Computer-Software: 500 Mio. DM Verlust durch Raubkopien 87/24/16 D/A-Interface für C 64 87/11/75 DAT als Datenspeicher 87/23/18 DC/DC-Wandler 87/23/69 Der PC als Datenbank 87/13/36 Diskettenformate: Zwei Welten in einem Gehäuse 87
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PDF
USB3320_STM32F4.pdf
1 U$1G$1 PE2 2 PE3 3 PE4 4 PE5 5 PE6 USB3320 IC1 6 VBAT 7 PC13/RTC_AF1 RESETB REFSEL2 D 8 PC14/OSC32_IN REFSEL1 N 9 PC15/OSC32_OUT 5 DP REFSEL0 G 10 VSS 4 DM 11 VDD 3 VBUS D0 12 PH0/OSC_IN 2 ID D1 13 PH1/OSC_OUT R1 +3V 14 1 D2 15 NRST 10k SPK_L D3 16 PC0 SPK_R D4
in „STM32F4 USB High Speed VCP mit USB3320 PHY“ · Projekte & Code ·
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PDF
Boris_Voyager.sch.pdf
1 2 3 4 5 6 C13 4.7u +3V3 + C8 IC2 ATMEGA1284P-AU 27p C9 C10 100n 27p 5 VCC_2 XTAL2 7 XTAL1 17 VCC_3 Q2 S1 S2 S3 S4 S5 C12 100n 38 9 27 VCC PD0 10 RXD_AVR/2.4A 3 4 3 4 3 4 3 4 3 4 AVCC PD1 TXD_AVR/2.4A 1 2 1 2 1 2 1 2 1 2 A C6 PD2 11 INT0 A 100n 29 AREF PD3 12 +3V3+3V3 Z1 RESET/2.4A 4 13 +3V3 C1 S6 S7 S8 S9 S10 ~RESET PD4 14 100n 8 PD5 15 2 1 3 4 3 4 3 4 3 4 3 4 XTAL1 XTAL1 PD6 0 R 0R IC1 1 2 1 2 1 2 1 2 1 2 PD7 16 L 1 1
in „Noch ein Taschenrechner auf ATMega Basis“ · Projekte & Code ·
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PDF
IRFP_3703.pdf
Switching Losses l Fully Avalanche Rated TO-247AC Absolute Maximum Ratings Parameter Max. Units D @ TC= 25°C Continuous Drain CurreGS@ 10V 210 I @ T = 100°C Continuous Drain Current@ 10V 100 A D C GS DM Pulsed Drain Current 1000 PD@T C 25°C Power Dissipation 230 W PD@T A 25°C Power Dissipation 3.8 Linear Derating
in „[Projekt] Einstellbares Netzteil 12V/60A auf 0,5-2,5V/250A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
182853-da-01-en-IRLR_8103V.pdf
IRLR8103V Units Drain-Source Voltage V DS 30 V Gate-Source Voltage V ±20 GS Continuous Drain or Source T C = 25°C ID 91 Current (VGS≥ 10V) T C 90°C 63 A Pulsed Drain Current I 363 DM Power Dissipation T C = 25°C PD 115 W T C 90°C 60 Junction & Storage Temperature Range T ,T –55 to 150 °C J STG Continuous
in „Drehzahlmesser für Drehbank“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irl2203npbf.pdf
wide acceptance throughout the industry. Absolute Maximum Ratings Parameter Max. Units D @ TC= 25°C Continuous Drain CurrenGS @ 10V 116 D @ TC= 100°C Continuous Drain CurrenGS @ 10V 82 A DM Pulsed Drain Curre t 400 PD@T C 25°C Power Dissipation 180 W Linear Derating Factor 1.2 W/°C VGS Gate-to-Source
in „IRL2203N defekt?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
EYSF2SSXX_3_SEP_01.pdf
SEN -80 -70 dBm 5 C/I co-channel CIC 14 dB 6 C/I 1MHz 0 dB CI1 7 C/I 2MHz CI2 -30 dB 8 C/I >3MHz CI3 -40 dB 9 Out of band spurious1 30MHz to 1GHz OSE1 -36 dBm 10 Out of band spurious2 1 to 12.75GHz OSE2 -30 dBm TAIYO YUDEN
in „bluetooth modul ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Anleitung.pdf
Kondensatoren, Dioden, LEDs, Widerstands-Arrays beachten: Bestückungsplan K3 LD1 D2 R3 7 S3 S4 S5 S1 C 3 1 I RN1 S6 D1 1 C8 © Kai Sachsenheimer K11 C 7 S7 K K8 K12 2 K14 4 1 R 0 I 4 S2 1 R P C13 K4 K5 C5 K13 K15 1 C14 R C9 K2 6 1 2 IC5 C2 C Q Q 2 K9 P C10 K K 3 2 X I 1 90S8535-Board für K16 M C L293D
in „AVR_Ctrl mit BasCom programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FT232H.pdf
VCC5V A A VBus P1 3 8 1 2 4 1 U1 2 GND L FT232HL-Reel 3 L1 40 H L I I I Reset 600R VRegIn VREGIN P V C C C 4 C1 39 V V V V 13 AD0 5 100nF VCC3V3 38 VCCD ADBUS0 14 AD1 6 VCC3V3 GND J1 VCore 37 VCORE ADBUS1 15 AD2 7 VCCA ADBUS2 8 VBUS 1 R1 ADBUS3 16 AD3 9 VCC5V D- 2 R2 6 DM ADBUS4 17 AD4 10 D+ 3 27 7 DP
in „Problem FT232H“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74ls154.pdf
Semiconductor CorporDS006394 www.fairchildsemi.com 5 1 Function Table S L Inputs Outputs 4 7 G1 G2 D C B A 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 M L L L L L L L H H H H H H H H H H H H H H H D L L L L L H H L H H H H H H H H H H H H H H L L L L H L H H L H H H H H H H H H H H H H L L L L H H H H H L H
in „Achtung, Newbie, LED-Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRF7822.pdf
Units Drain-Source Voltage V DS 30 V Gate-Source Voltage V ±12 GS Continuous Drain or Source TA= 25°C ID 18 Current (VGS≥ 4.5V) TA= 70°C 13 A Pulsed Drain CurrentQ I 150 DM Power Dissipation T = 25°C P 3.1 W A D TA= 70°C 3.0 Junction & Storage Temperature Range TJ,TSTG –55 to 150 °C Continuous Source
in „Falsches Ladegerät am Notebook :-(“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRF3708PBF.pdf
Symbol Parameter Max. Units V Drain-Source Voltage 30 V DS VGS Gate-to-Source Voltage ±12 V D @ TC= 25°C Continuous Drain CurreGS,@ 10V 62 I @ T = 70°C Continuous Drain Current,@ 10V 52 A D C GS DM Pulsed Drain Curr nt 248 PD@T C 25°C Maximum Power Dissipat on 87 W PD@T C 70°C Maximum Power Dissipat on
in „Transistor zum Schalten von 24V/12V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IRF3708_IR__1_.pdf
Symbol Parameter Max. Units V Drain-Source Voltage 30 V DS VGS Gate-to-Source Voltage ±12 V D @ TC= 25°C Continuous Drain CurreGS,@ 10V 62 I @ T = 70°C Continuous Drain Current,@ 10V 52 A D C GS DM Pulsed Drain Curr nt 248 PD@T C 25°C Maximum Power Dissipat on 87 W PD@T C 70°C Maximum Power Dissipat on
in „Mosfet Treiberschaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IRF3708_IR__1_.pdf
Symbol Parameter Max. Units V Drain-Source Voltage 30 V DS VGS Gate-to-Source Voltage ±12 V D @ TC= 25°C Continuous Drain CurreGS,@ 10V 62 I @ T = 70°C Continuous Drain Current,@ 10V 52 A D C GS DM Pulsed Drain Curr nt 248 PD@T C 25°C Maximum Power Dissipat on 87 W PD@T C 70°C Maximum Power Dissipat on
in „24V-Ausgang potentialgetrennt aus einem STM32 3,3V“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD9853_PG28.PDF
100NH 100NH 19 J6 (180NH) (100NH) (150NH) E3 E4 E11E12 20 DAC OUT/ 1 2 1 2 1 2 FILTER IN E10 AMP 21 C6 C7 C8 C9 SMB 22 E9 SIG 68pF 100pF 82pF 56pF J7 23 (33pF) (82pF) (82pF) (39pF) FILTER OUT/ 24 SIG R3 AMP IN 25 50V 26 27 TXENABLE T ENABLE HI 4DM E13 28 X J9 T1A 29 JUMPER CONFIGURATION E7 E5 2 1 T1
in „[V] AD9833-Eval-Kit; Programmable Waveform-Generator“ · Markt ·
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PDF
MB1136.pdf
0 2 2 2 2 100K OSC_INSC0IN 5 P0U20515 PA12 P0U2032 USB_DMSB0DM C C C C C OSCIN PA11 P P P P P 0 OSC_OUTSC0OUT 6 P0U206 P0U2031 T_SWOT0SWO 0 C10 2 R N0STM0RST OSCOUT PA10 P0U2030 N0LED0STLINK C 20pF[N/A] 1 2 3 4 1 6 STM_RST 7 P0U20NRST PA9 30 LED_STLINK P S 0 8 P0U208
in „Mikrocontroller Spannung/Strom“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Nucleo_Board_Schematics.pdf
0 2 2 2 2 100K OSC_INSC0IN 5 P0U20515 PA12 P0U2032 USB_DMSB0DM C C C C C OSCIN PA11 P P P P P 0 OSC_OUTSC0OUT 6 P0U206 P0U2031 T_SWOT0SWO 0 C10 2 R N0STM0RST OSCOUT PA10 P0U2030 N0LED0STLINK C 20pF[N/A] 1 2 3 4 1 6 STM_RST 7 P0U20NRST PA9 30 LED_STLINK P S 0 8 P0U208
in „Erbitte Hilfe bei Fehlersuche - STM32F446“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD22057.pdf
Filtering section. S SOLENOID LOAD ANALOG Using the Midscale Offset Feature FLYBACK OUTPUT Figure 13 shows a more detailed schematic of the output am- DIODE 432kV plifier A2. Because this is a single supply device, the output +IN OFS +VSOUT C stage has no pull-down transistor. Such a transistor would
in „Grundsätzliches zur Spannungs,Srommessung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RF-24G_datasheet.pdf
@1000kbps) -80 dBm 3 Laipac Technology Inc. www.laipac.com Phone +1-905-7621228 Fax +1-905-7631737 C/ICO C/I Co-channel 6 dB C/I1ST 1sAdjacent Channel Selectivity C/I -1 dB 1MHz C/I2ND 2ndAdjacent Channel Selectivity C/I -16 dB 2MHz C/I3RD 3rAdjacent Channel Selectivity C/I 3MHz -26 dB RX B Blocking
in „[V] Grafik-LCDs, Pictiva-LCDs, TRW-24G Funkmodule“ · Markt ·
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PDF
SK-schaltplan.pdf
RTS 8 VCC VDD VDD VDD VDD SOC12 23 24 SOC17 SOC9 1 2 9 RD2 INP2 8 4 SOC13 25 26 SOC16 (PC4-25) 9 C17 C13 C1 C37 J1 HE10-16DM SOC14 SOC15 W19 MAX232 GND 5 W5 SOC13 27 28 100nF SOC23 SOC14 1 2 MW2X14C RS232 SUBD-9 CONNECTOR 1 2 (PA4-25) SOC3 3 4 GND GND GND GND W14 SOC12 5 6 GND SOC11 7 8 VDD 1 2 VDD R14 9 10 W6 A 11 12 A VCC VDD VDD VDD CTN 4,7K VPP 13 14 15 16 VDD C2 C7 C31 C18 C25 USER'S I/Os CONNECTOR J2 U5E 100nF THERMISTOR CIRCUIT 74HC04 100nF IN-SITU PROGRAMMING 13 12 11 10 GND GND CONNECTOR U5F PPG Development tools / GRENOBLE GND GND GND GND
in „ST Chip auslesen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DCF77_telegram.txt
Hello world! This is the experimental 2313 board (C)DG4FAC at work. ? for help. *> *>ds Date/Time echo. SPACE to leave. 01.12.2013, 13:27:39 01.12.2013, 13:27:40 01.12.2013, 13:27:41 *>dm Date/Time echo. SPACE to leave. DCF: Synchronisation. 01.12.2013
in „Pollin DCF77 - Empfangsprobleme anderer Art“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dmesg.txt
: 0x000000fdf00000-0x000000fdffffff [ 0.368585] pci 0000:00:1c.2: PCI bridge, secondary bus 0000:03 [ 0.368587] pci 0000:00:1c.2: IO window: 0xc000-0xcfff [ 0.368591] pci 0000:00:1c.2: MEM window: 0xfea00000-0xfeafffff [ 0.368594] pci 0000:00:1c.2: PREFETCH window: 0x00000080400000-0x000000805fffff [ 0.368599] pci 0000:00:1c.4: PCI bridge, secondary bus 0000:02 [ 0.368602] pci 0000:00:1c.4: IO window: 0xb000-0xbfff [ 0.368605] pci 0000:00:1c.4: MEM window: 0xfe900000-0xfe9fffff [ 0.368609] pci 0000:00:1c.4: PREFETCH window
in „Sporadische Gnome-Abbrüche auf Ubuntu 10.04“ · PC Hard- und Software ·
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PDF
FT2232_datasheet.pdf
Connector 1 27R 2 3 42 14 31 46 0.1uF 3 27R V V V V A 4 C C C C V C C C C C I I C 10nF 6 3V3OUT O O 33nF A B FFT23 C 2D 8 VCC USB DM 41 7 PWREN# USB DP + 1.5K 0.1uF 0.1uF 10uF 5 RSTOUT# Decoupling Capacitors VCC 4 RESET# USB Bus powered circuits need to be
in „AVR-Programmierung via USB mit FT2232“ · Mikrocontroller und Digitale Elektronik ·
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PDF
fsp204-2f01-sema_2.pdf
+ + +CS 19 C N2:9 R 17 8 1 Q13 2N4403 Q7 R5 R 6 CS10 1 1 1 2 6 5 S S C C 5 + C17 RS 25 C C C N2:2 C R 4722K A1 C N2:3 7 3 C N2:4 + 3 C28 A ! 8 0 3 C N2:5 ! 1 4 2 1 C23 4 S S S DS2 R4 R13 R 16 C R19 2 4 6 R R R R
in „SNT FSP204-2F01(S7) Problem 24V Ausgang“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STPicProgK.pdf
+5V JP1 1 X1C 2 3 +5V 1 2 R1 33 1 D- T D+ 3 ID 4 R2 33 GND 5 22 R15 MINIUSB U1PAB MCLR_LO 10 PA0_WKUP G G G G /MCLR_HI 11 TX_2 12 PA1 R29 R30 R28 RX_2 13 PA2 1 2 3 4 PA3 C C C C VCCONOFF 14 PA4 15 PA5 4k7 4k7 22k
in „Padauk MCU für 0.038 USD aus Taiwan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Testboard_KK32F7.PDF
POMII0MII_TXD1 P OCAN2_RX2 0 R X PIU100PB12/TIM1_BKIN/I2C2_SMBA/SPI2_NSS/I2S2_WS/USART3_CK/CAN2_RX/OTG_HS_ULPI_D5/ETH_MII_TXD0/ETH_RMII_TXD0/OTG_HS_ID USART6_CTS/FMC_SDNCAS/DCMI_D13/PG15 PIU1000191 P SDNCASN C A S GND P OCAN2_TX2 0 T X PIU100PB13/TIM1_CH1N/
in „STM32F7 Discovery Board“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Mikrocontroller-Aufbau auf Breadboard mit USB-Modul
J8, GND, R3, UP, DM, VBUS, USB, STATUS, C14, C13, C12, C11, C10, C9, C8, C7, C6, C5, C4, C3, C2, C1, J6, LED1, SWDIO, POWER, SWCLK, 1, 2, 5, 10, 15, 20, 25, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19
in „Cypress PSoC4 4200DS verweigert sich“ · Mikrocontroller und Digitale Elektronik · · Fotos
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PDF
lpc2468_evb.PDF
11PIX1011 PIX1012 D12 6 5 4 TRST V V V V V V V V V V V V V A E D P2.8 / TD2 / TXD2 / TRACEPKT3 32 D2 13 14 D13 PIX206 PIX205 PID10TDI ( 3(3(3 ( ( 3(3 ( ( ( ( ) 3)3 ) V V V P2.9 / USB_CONNECT1 / RXD2 / EXTIN0 PID10132 PIX1013 PIX1014 PIX208 PIX207 PID10TMS D D D D D D D D D D C C C P2.10 / EINT0 PID1010
in „Kann sich jemand mein Schema anschauen?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
general.ucf
NET "mcb3_dram_a[0]" LOC = "H2" ; NET "mcb3_dram_a[10]" LOC = "G4" ; NET "mcb3_dram_a[11]" LOC = "C1" ; NET "mcb3_dram_a[12]" LOC = "D1" ; NET "mcb3_dram_a[13]" LOC = "G6" ; NET "mcb3_dram_a[1]" LOC = "H1" ; NET "mcb3_dram_a[2]" LOC = "H5" ; NET "mcb3_dram_a[3]" LOC = "K6" ; NET "mcb3_dram_a[4]" LOC
in „MIG mit AXI4 Interfacenauf Spartan 6“ · FPGA, VHDL & Co. ·
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PDF
IRLB8748PBF.PDF
Current 370 DM P DT =C25°C Maximum Power Dissipation 75 P @T =C100°C Maximum Power Dissipation 38 W D Linear Derating Factor 0.5 W/°C TJ Operating Junction and -55 to + 175 T Storage Temperature Range STG °C Soldering
in „Funktionsprüfung MOSFET IRL B8748PbF“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BUK7514-55A.pdf
/ C Fig.1. Normalised power dissipation. Fig.3. Safe operating area. T mb = 25 ˚C PD% = 100⋅P /P = f(T ) D D 25 ˚C mb ID& I DM = f(V DS I DM single pulse; parameter t p ID% Normalised Current Derating Zth
in „Wärmewiderstandsberechnung FET“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BUK_7514-55.pdf
/ C Fig.1. Normalised power dissipation. Fig.3. Safe operating area. T mb = 25 ˚C PD% = 100⋅P /P = f(T ) D D 25 ˚C mb ID& I DM = f(V DS I DM single pulse; parameter t p ID% Normalised Current Derating Zth
in „Brauche Hilfe bei Motoransteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
T-3.pdf
/8W,1206,J,TP ,150V) 412-DJ3000-414 1 R115 CARBON FILM RESISTOR (3 OHM,2W,J,T-73) 412-STR880-478 1 C131,C132 CERAMIC CAPACITOR(0.1uF/50V,Z,TAPING,Y5V) 413-3113-035 2 C117 ELEC. CAPACITOR(1000uF/35V,M, 105℃,BULK 13*21)(Cd,Pb,Hg,Cr)10 1 C118 ELEC. CAPACITOR(1000uF/25V,M, 105℃,BULK 10*20) 413-DJ1900-111
in „Eprom von Denon DJ Laufwerk defekt Winbond 78e52“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pl2303.pdf
TRI_MODE VDD 8 21 GND DSR_N 9 20 VDD DCD_N 10 19 RESET CTS_N 11 18 GND_3V3 SHTD_N 12 17 VDD_3V3 EE_CLK 13 16 DM EE_DATA 14 15 DP PL-2303 Product Datasheet - 3 - Document Revision 1.3 Release Date: July, 2002 ds_pl2303_v14 Block Diagram USB Port USB Transceiver REGISTER/ Control USB CONFIG/ Unit SIE STATUS
in „USB - seriell Adapter für 1,- EUR!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lpc2468board.pdf
LCD_BKLIGHT MC_IO_1 BC847C MC_IO_2 MC_IO_3 GND R98 56 VCC VCC VCC C C GND V35 S2 S3 S4 KP-2012SGC DTSM-62K-V-B R99 DTSM-62K-V-B R100 DTSM-62K-V-B R101 10k R102 10k R103 10k R104 100k D13A 100k D13B 100k D13C 1 1 2 3 1 4 5 1 6
in „NXP verschenkt ARM-Chips“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schematics.pdf
A 2 0 B R 1 14 13 C Q MX12 MX11 MX10 15 R/C 3 CLR Q 4 C1 74HC123 100n GND E D D V SV1-13 IC3B C 9 A 2D 1 V 10 Tag Name +C2 C3 C4 C5 C6 V B Dr. Mario Hellmich 6 5 Salzgitter 1000µ 100n 100n 100n 100n IC2P IC3P 7 C Q Bearb
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PDF
fertigungsspez.pdf
Panelgrößen verarbeitet. Format Brutto x Brutto Y Brutto-Fläche Netto X Netto Y Netto-Fläche (mm) (mm) (dm²) (mm) (mm) (dm²) DL1 302 402 12,14 268 367 9,836 D3 304 533 16,203 270 498 13,446 D4 383 533 20,414 349 498 17,38 D5 353 577 20,368 319 542 17,29 DL6 460 610 28,06 426 575 24,495 D7 353 610 21,533 321 580 18,618 ML1 302 402 12,14 266 362 9,63 ML2 302 457 13,801 272 417 11,342 MR3 300 452 13,56 264 412 10,877 ML3 305 530 16,203 269 490 13,316 ML5 351 577 20,253 315 537 17,073 ML6 460 610 28,06 424 570 24,168 RO3 305 457 13,939 271 422 11,436 Nur der Netto
in „Mischpultlayout bitte um Review (endlich komplett)“ · Platinen ·
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Datei
simple.s
equ ITM , 0xE0000000 .equ GPIOE_BASE , 0x40021000 .equ GPIOE_MODER , GPIOE_BASE + 0x00 @ pp. 287 of DM00031020.pdf .equ GPIOE_OTYPER , GPIOE_BASE + 0x04 .equ GPIOE_ODR , GPIOE_BASE + 0x14 .equ GPIOD_BASE , 0x40020C00 .equ GPIOD_MODER , GPIOD_BASE + 0x00 @ pp. 287 of DM00031020.pdf .equ GPIOD_OTYPER ,
in „STM32CubeIDE Debug View, Threads, Breakpoints“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STP6NK90ZFP.pdf
Drain-source voltage 900 V DS V GS Gate-source voltage ± 30 V (1) ID Drain current (continuous) Ct T = 25 °C 5.8 5.8 A ID Drain current (continuous) Ct T = 100 °C 3.65 3.65(1) A DM (2) Drain current (pulsed) 23.2 23.2 A P Total dissipation at T = 25 °C 140 30 W TOT C (3) dv/dt Peak diode recovery voltage slope
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PDF
STP6NK90ZFP.pdf
Drain-source voltage 900 V DS V GS Gate-source voltage ± 30 V (1) ID Drain current (continuous) Ct T = 25 °C 5.8 5.8 A ID Drain current (continuous) Ct T = 100 °C 3.65 3.65(1) A DM (2) Drain current (pulsed) 23.2 23.2 A P Total dissipation at T = 25 °C 140 30 W TOT C (3) dv/dt Peak diode recovery voltage slope
in „Unterschiedliche Power MOSFET kompatibel?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
irf7389.pdf
, Rise Time N-Ch 8.9 13 DD D G tr P-Ch 13 20 RD= 15Ω ns td(off) Turn-Off Delay Time N-Ch 26 39 P-Channel P-Ch 34 51 V = -15V, I = -1.0A, R = 6.0Ω, N-Ch 17 26 DD D G tf Fall Time P-Ch 32 48 RD= 15Ω C iss InputCapacitance N-Ch
in „Treiber für Push-Pull 12V?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irf7389.pdf
, Rise Time N-Ch 8.9 13 DD D G tr P-Ch 13 20 RD= 15Ω ns td(off) Turn-Off Delay Time N-Ch 26 39 P-Channel P-Ch 34 51 V = -15V, I = -1.0A, R = 6.0Ω, N-Ch 17 26 DD D G tf Fall Time P-Ch 32 48 RD= 15Ω C iss InputCapacitance N-Ch
in „Brushless DC Motorsteureung Dysfunktion AVR444“ · Analoge Elektronik und Schaltungstechnik ·
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Tidenuhr_Seite1.pdf
100K BP104FS C205 RESET LDR +3V3 C501 R501 IC201 100n 13 RESET OC0A/OC1C/PB7 12 1M GND 30 100n 14 OC1B/OC4B/PB6 29 34 VCC OC1A/OC4B/PB5 28 CDI GND L201 VCC PB4 120R@100MHz R201 MISO//PDO/PB3 11 MISO 220R 24 AVCC MOSI
in „Tidenuhr bauen“ · Mikrocontroller und Digitale Elektronik ·