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PDF
CodeBoard_2_0_Schematic.pdf
Display Q P27-A15 31 X2-9 D0 +5V - - - - - GND N P26-A14 30 X2-10 D1 2 2 2 2 2Display G C2 33p P25-A13 29 X2-12 D2 X XX XX X2-26 +5V 20 XTAL2 P24-A12 28 X2-11 D3 X2-5 27 D4 X2-25 +5V A 100n 44 P23-A11 26 X2-13 - 1 R17 E 22 VCC P22-A10 25 X2-14 D5 GND X 2 10µ 4.7k 1 2 C10 GND P21-A9 24 X2-15 D6 X C7 35
in „8051: An Port 0 kann nichts ausgegeben werden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CodeBoard_2_0_Schematic.pdf
Display Q P27-A15 31 X2-9 D0 +5V - - - - - GND N P26-A14 30 X2-10 D1 2 2 2 2 2Display G C2 33p P25-A13 29 X2-12 D2 X XX XX X2-26 +5V 20 XTAL2 P24-A12 28 X2-11 D3 X2-5 27 D4 X2-25 +5V A 100n 44 P23-A11 26 X2-13 - 1 R17 E 22 VCC P22-A10 25 X2-14 D5 GND X 2 10µ 4.7k 1 2 C10 GND P21-A9 24 X2-15 D6 X C7 35
in „8051: An Port 1 nur 3.5V anstatt 5V ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
nFET_ZXM61N02FTA.pdf
ZXM61N02F mm 20V N-CHANNEL ENHANCEMENT MODE MOSFET SUMMARY V (BR)DSS=20V; R DS(ON) =0.18V; I =D.7A DESCRIPTION structure that combines the benefits of low on-resistance with fast switching speed. This makes them ideal for high efficiency, low voltage, power management applications
in „Kann diese Schaltung den 74HC132 killen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheet.pdf
Open 1 Open Adapter Frame2 Peak Adapter Frame2 Peak Adapter Frame 2 Adapter Frame 2 TOP252PN/GN 21 W 13 W TOP252EN 10 W 21 W 6 W 13 W 9 W 15 W 6 W 10 W TOP253EN 21 W 43 W 13 W 29 W TOP252MN 21 W 13 W TOP254EN/YN 30 W 62 W 20 W 43 W TOP253PN/GN 38 W 25 W TOP255EN/YN 40 W 81 W 26 W 57 W 15 W 25 W 9 W 15
in „Verzweifelt: Wie Widerstände und Kapazitäten eines Sperrwandler IC´s auslegen?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
kc85keyboard_V0.ino
TIME_WORD 13500//10% unter 14300 //tDW = 14 tu = 14,336 ms Wortabstand #define TIME_DOUBLEWORD 185000 //tDS = 13 tu = 19,456 ms Doppelwortabstand //?? keine doku dazu gefunden #define TIME_MAXIMUM 200000 #define TIME_AUTORESET_LOOP 10000 //milliseconds #define DEBOUNCE_TIME 70 //milliseconds /* * //original
in „Tastatur KC85 mit USB-Anschluss ausrüsten“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MCP2510Report.htm
><font face="Verdana" size="2">25</font></td> </tr> <tr> <td width="35%" bgcolor="#C0C0C0" height="13"><font face="Verdana" size="2"><strong>% Error of Target Baud Rate</strong></font></td> <td width="65%" bgcolor="#C0C0C0" height="13"><font face="Verdana" size="2">0,0 %</font></td> </tr> </table> <p
in „PIC18F2680 CAN Baudrate auf 16 kbs setzen ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tms320lf2407a.pdf
TMS320LF2407A PGE 91 EMU1/OFF W/R/IOPC0 19 90 EMU0 D12 20 89 WE XINT2/ADCSOC/IOPD0 21 88 CAP4/QEP3/IOPE7 D13 22 87 DS XINT1/IOPA2 23 86 V DD D14 24 85 V SS SCITXD/IOPA0 25 84 PS SCIRXD/IOPA1 26 83 CAP1/QEP1/IOPA3 D15 27 82 IS V SS 28 81 CAP5/QEP4/IOPF0 VDD 29 80 A0 SPISIMO/IOPC2 30 79 CAP2/QEP2/IOPA4 A15 31
in „TMS320LF2407 ???“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
Vergleichsliste.pdf
JE9016 JE9018 ECG109 1N60 1S188FM ECG110M 1N542 1S188F 1N34M ECG112 1S750 1S1922 1SS16 1SS99 ECG113A DS-17 DS-131 ECG114 DS-19 DS-133 ECG115 DS-18 DS-132 ECG116 1N4007 1N3549 1N2070 ECG117 1S1694 1N5412 1N5399 ECG118 HVT-30S US144HFP ECG119 HVT-185 US17HFP ECG121 2SB471 2SB375 2N457B ECG123 2N1420 2N1711
in „ECG45 was ist das?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
digilent-starter-xc3s500e_blinky.ucf
NET "DAC_CS" LOC = "N8" | IOSTANDARD = LVCMOS33 | SLEW = SLOW | DRIVE = 8 ; # 1-Wire Secure EEPROM (DS) #NET "DS_WIRE" LOC = "U4" | IOSTANDARD = LVTTL | SLEW = SLOW | DRIVE = 8 ; ## Ethernet PHY (E) #NET "E_COL" LOC = "U6" | IOSTANDARD = LVCMOS33 ; #NET "E_CRS" LOC = "U13" | IOSTANDARD = LVCMOS33 ; #NET
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CAD-Ansicht eines Leiterplatten-Layouts mit Bestückungsdaten
right corner 862 x 0 Please enter Boardsize 150 x 70 Top Bottom 9 C1 0 C10 10 C11 100 C12 100uF/10V C13 100uF/10V C14 100uF/16V C15 16 C16 10uF C17 15pF C18 1k C19 1mF C20 200 C21 20m C22 22uF C24 22uF/16V C25 25MHz C26 32.768kHz C3 475 C30 47uF C31 47uF/6.3V C32 6 Layers C33 690 C34 75 C52 C54 C44 C19 C18 C20 C16 C15 100uF/10V 100uF/10V 8X02N DS26LU32 DS26LU32
in „Altium Designer - Assistent zur manuellen Bauteilbestückung“ · Platinen · · Layouts
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Bild
Leiterplatten-Layout eines ESP-12 STM32F103C8T6 Projekts
GND R L BOCT0 R17 1k ESP - 12 STM32F103C8T6 A11 A12 A15 B1 B12 B14 C14 C15 3V5 GND IC IO Q1 DCF LED1 DS1820 R15 100R 28 68 GND PIN 3V5 DS1820 R10 82 BS170 Q2 IC2 LM358 R9 3k R8 LED DCF 100nF R3 100R IC2 R2 10k R14 10k R16 100R R12 10k R13 10k R2 16k R4 4.7uF R7 10k R1 1k R5 100 R6 1k 4.7uF 5V RX TX GND
in „WordClock mit WS2812“ · Projekte & Code · · Layouts
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PDF
AD9857.pdf
be transferred DATA is shown in Figure 21 and Figure 22. Rev. C | Page 18 of 40 AD9857 TxENABLE t DS DH PDCLK t DS D<13:0> 0 Q 0 I1 Q1 IN Q N - 8 tDH 1 0 Figure21.14-BitParallelPortTimingDiagram—QuadratureModulationMode TxENABLE DS DH PDCLK DS 2 D<13:0> 0 1 I2 I3 K – 1 K C 1 tDH 0 Figure22.14-BitParallelPortTimingDiagram—InterpolatingDACMode
in „Updatepin zur Aktivierung beschriebener Kontrollregister“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD9857.pdf
be transferred DATA is shown in Figure 21 and Figure 22. Rev. C | Page 18 of 40 AD9857 TxENABLE t DS DH PDCLK t DS D<13:0> 0 Q 0 I1 Q1 IN Q N - 8 tDH 1 0 Figure21.14-BitParallelPortTimingDiagram—QuadratureModulationMode TxENABLE DS DH PDCLK DS 2 D<13:0> 0 1 I2 I3 K – 1 K C 1 tDH 0 Figure22.14-BitParallelPortTimingDiagram—InterpolatingDACMode
in „Mit MSP430F2013 parallele Datenübertragung programmieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ANI.PAS
FreeMem (VirScr,64000); FreeMem (VirScr2,64000); END; procedure flip(source,dest:Word); begin asm push ds mov ax, [Dest] mov es, ax mov ax, [Source] mov ds, ax xor si, si xor di, di mov cx, 32000 rep movsw pop ds end; end; Procedure putico(X,Y:Word;VAR sprt : icon;Where:Word); ASSEMBLER; label _Redraw, _
in „TPC 6.1 macht 2 Array mit 64000 Byte“ · Softwareentwicklung ·
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PDF
MP2354DS.pdf
/W Part Number* Package Temperature Notes: 1) Exceeding these ratings may damage the device. MP2354DS SOIC8 –40°C to +85°C 2) The device is not guaranteed to function outside of its For Tape & Reel, add suffix –Z (eg. MP2354DS–Z) operating conditions. *For Lead Free, add suffix –LF (eg. MP2354DS–LF–Z
in „[S] Step Down Converter MP2354DS (für Fritzbox 7170)“ · Markt ·
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PDF
ISL88731.PDF
choice of low-side FET is a trade-off between P = 1 –- - - I 2 r (EQ. 10) conduction losses (r DS(ON) ) and cost. A good rule of thumb for Q2 VIN BAT DSON the rDS(ON) of the low-side FET is 2x the DS(ON) of the high-side FET. Choose a low-side MOSFET that has the lowest possible on- The LGATE
in „Chip gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
29F400.pdf
A5 20 29 DQ0 A4 21 28 OE# A3 22 27 VSS A2 23 26 CE# A1 24 25 A0 A16 1 48 A15 BYTE# 2 47 A14 V 3 46 A13 SS DQ15/A-1 4 45 A12 DQ7 5 44 A11 DQ14 6 43 A10 DQ6 7 42 A9 DQ13 8 41 A8 DQ5 9 40 NC DQ12 10 39 NC DQ4 11 38 WE# V 12 48-Pin TSOP—Reverse Pinout 37 RESET# CC 13 36 NC DQ11 DQ3 14 35 NC DQ10 15 34 RY/
in „AT91 & OpenOCD Externes Flash Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STA508.pdf
Package ■ MULTIPOWER BCD TECHNOLOGY ■ MINIMUM INPUT OUTPUT PULSE WIDTH DISTORTION PowerSO36 ■ 200mΩ R dsON COMPLEMENTARY DMOS OUTPUT STAGE Table 1. Order Codes ■ CMOS COMPATIBLE LOGIC INPUTS Part Number Package ■ THERMAL PROTECTION STA508 PowerSO36 ■ THERMAL WARNING OUTPUT ■ UNDER VOLTAGE PROTECTION The
in „Heimkino ( Harman Hs 250 defekt )“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HM-10_DataSheet_V550_2017-07.pdf
V2.1+EDR HM-10 2.2-3.7V 27 * 13 * 2.2 256Kb CC2540/1 V4.0 BLE HM-11 2.2-3.7V 18 * 13 * 2.2 256Kb CC2540/1 V4.0 BLE HM-12 2.5-3.9V 27 * 13 * 2.2 64KB Dual mode EDR 40 + BLE 40 HM-13 2.5-3.9V 18 * 13 * 2.2 64KB Dual mode EDR 40 + BLE 40 HM-14 2.2-4.0V 13 * 12 * 2.0 Dual mode EDR40 + BLE 40 HM-15 5V 65 * 32 * 16 256Kb CC2540 BLE V4.0 HM-16 2.1-5.5V 27 * 13 * 2.2 128KB BLE V4.1 HM-17 2.1-5.5V 18 * 13 * 2.2 128KB BLE V4.1 HM-18 2.1-5.5V 27 * 13 * 2.2 256KB
in „Hilfe bei BTLE iBeacon bzw. CENTRAL-Mode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FDB8832_Logic__N__Temp_ok_.pdf
Source Breakdown Voltage ID= 250µA, VGS = 0V 30 - - V - - 1 DSS Zero Gate Voltage Drain Current V DS= 24V µA V GS= 0V TJ= 150°C - - 250 I Gate to Source Leakage Current V = ±20V - - ±100 nA GSS GS On Characteristics VGS(th) Gate to Source Threshold Voltage V DS= VGS, D = 250µA 1.0 1.6 3.0 V I = 80A,
in „Mini-heizung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
5005cpe.pdf
10 - ns CE, RD, WR Pulse Width tCE,tRD,tWR 80 - ns Data Setup Time tDS 80 - ns Data Hold Time tDH 40 - ns Access Time ACC - 150 ns Output Hold Time tOH 10 50 ns C/D tCDS CDH CE tCE,RD,tWR RD, WR tDS tDH D0 D7 (WRITE) tACC tOH D0 D7 (READ) DMF5005N-SEW-ABE-CP (CP) No. 2001
in „Anschluss eines LCD-Displays“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Si_4322.pdf
BIT13 BIT8 BIT7 BIT1 BIT0 SDO BIT15 BIT14 BIT13 BIT8 BIT7 BIT1 BIT0 8 Si4322 Control Commands Control Word Related Parameters/Functions Configuration Setting Commandfrequency band, crystal oscillator load
in „RFM01 NIRQ immer high“ · Mikrocontroller und Digitale Elektronik ·
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Datei
hwinfop14s.txt
R: 13 U: i2c-dev D: c 89:13 N: i2c-13 L: 0 E: DEVPATH=/devices/pci0000:00/0000:00:02.0/drm/card0/card0-DP-3/i2c-13/i2c-dev/i2c-13 E: SUBSYSTEM=i2c-dev E: DEVNAME=/dev/i2c-13 E: MAJOR=89 E: MINOR=13 P: /devices
in „Lenovo Thinkpad P14s (Intel) freeze beim Steckerziehen“ · PC Hard- und Software ·
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PDF
Datenblatt_Baseband_Processeor_for_Multiband_GSM-GPRS_Application_Skyworks_CX805-30.pdf
Part No. [28-Pin QFN] [32-Pin TQFP] Compression, Part No. Part No. V.17 Fax, TAM, Worldwide SmartV.92 DS56-L147-203 CX81801-74 CX20493-21 — Y Y Y — SmartV.92/S DS56-L147-204 CX81801-74 CX20493-21 CX20442-11 Y Y Y Y SmartV.92/LF DS56-L147-206 CX81801-84 CX20493-31 — Y Y Y — SmartV.34 DS28-L147-203 CX81801-72 CX20493-21 — — Y Y — SmartV.34/S DS28-L147-204 CX81801-72 CX20493-21 CX20442-11 — Y Y Y SmartV.34/LF DS28-L147-206 CX81801-82 CX20493-31 — — Y Y — SmartV.32bis DS96-L147-203 CX81801-73 CX20493-21 — — — Y — SmartV.32bis/S DS96-L147-204
in „GSM-Modul (SIM908) nur analoge Ausgänge für Anruf?“ · HF, Funk und Felder ·
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Datei
Uhr_080209_mega328p.bas
S65_zeichen(byval Lx As Byte , Byval Ly As Byte , Byval Bcol As Word , Byval Fcol As Word , Byval Ds As Byte , Byval Lcd_text As String) Declare Sub S65_print(byval Lx As Byte , Byval Ly As Byte , Byval Bcol As Word , Byval Fcol As Word , Byval Ds As Byte , Byval Lcd_text As String) Config Spi = Hard
in „ATMega328p mit S65 Display und Hard-SPI (Bascom)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
csd18502kcs.pdf
BVDSS Drain to Source Voltage VGS = 0V,DI = 250μA 40 V DSS Drain to Source Leakage Current VGS = 0V, DS = 32V 1 μA I Gate to Source Leakage Current V = 0V, V = 20V 100 nA GSS DS GS VGS(th) Gate to Source Threshold Voltage VDS= V GS,DI = 250μA 1.5 1.8 2.1 V VGS = 4.5V,DI = 100A 3.3 4.3 mΩ RDS(on) Drain
in „Netzteil: 2 Mosfets parallel OK?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datasheet_MOSFET.pdf
Gate-to-Source 4.6 nC Qg(th) Gate Charge at Vth 3.4 nC Q Output Charge V = 30 V, V = 0 V 25 nC oss DS GS d(on) Turn On Delay Time 6 ns r Rise Time 15 ns VDS = 30 V, GS = 10 V, DS= 8 A, RG= 0 Ω d(off) Turn Off Delay Time 5 ns t Fall Time 19 ns ƒ DIODE CHARACTERISTICS VSD Diode Forward Voltage SD = 8 A
in „DRV8711 Steppermotortreiber - Hohe Geschwindigkeiten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Burr-Brown-ADS1230.pdf
2007 a) 20 Bits of Data Retrieval Data Data Ready New Data Ready MSB LSB DRDY/DOUT 19 18 17 0 PD HT tDS SCLK UPDATE SCLK 1 20 tSCLK t CONV b) 24 Bits of Data Retrieval Data Data Ready New Data Ready MSB LSB DRDY/DOUT 19 18 17 0 1 2 3 4 PD HT tDS SCLK UPDATE SCLK 1 20 21 22 23 24 tSCLK tCONV Figure 25.
in „Konzept für eine Waage gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Quarze.pdf
30,0 4,90 3 12000k – HC49 36,0 4,30 1 36,0 4,50 2 36,0 4,62 3 36,0 4,90 3 36,0 5,10 3 13824k - HC49 13,8 3,48 1 13,8 3,64 2 13,8 3,86 3 13,8 4,16 3 13,8 4,50 3 15000k - HC49 15,0 3,64 1 15,0 3,80 2 15,0 3,98 3 45,0 4,54 3 45,0 4,50 3 101,087M - HC49 60,8 4,20 2 60,8 4,10 3 60,8 4,22 3 60,8 4,10 3 60,8
in „NICOS – der Negative Impedance Converter - Oszillator“ · HF, Funk und Felder ·
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PDF
FK743M5-XIH6.pdf
VSS VCAP PIMCU10A7 PR80 PIR0 PIPWE101 PIOWR10 PB13 PIMC10U14 PB13 PIMC U10K9 VSS VCAP PIMCU10D1 PI90 PC92 GND 3.3V GND 电源指示LED,白光 NPB 44PIMC10U15 PI MCU10N 2 NFM _SDCKE0 PH2DS0 PIMCU10K10 PIMCU10U1 CO9 2.2uF 3K PB 55 T15 PB14 PH2 P2 NFM _SDNE0 PH33 K11
in „STM32H743 mit 32MByte externem SDRAM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
diode-ds31634.pdf
pulsed conditions. Pulse width = 300μs. Duty cycle ≤2%. 2DB1713 1 of 4 December 2008 Document number: DS31634 Rev. 2 - 2 www.diodes.com © Diodes Incorporated 2DB1713 2.0 3.0 2.5 ) 1.6 A ( ( B = -5mA N N O E2.0 T R IB= -4mA P 1.2 U S C I Note 4 R1.5 B = -3mA D T R 0.8 C E L W L1.0 B = -2mA P O T , , C P
in „Transistor als Schalter beim Akkuladen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Arduino_Project_Handbook_25_Practical_Projects_to_Get_You_Started.pdf
R egister Arduino 1 15: Q0 8: GND GND 2 1: Q1 9: SO Shift 4 DS 3 2: Q2 10: MR +5V 4 3: Q3 11: SH-CP 13 5 4: Q4 12: ST-CP 10 6 5: Q5 13: OE GND 7 6: Q6 14: DS Shift 1 SO 8 7: Q7 16: VCC +5V Red LED Pins Shift RE gister 4 Pins LED Shift Shift Matrix R egister R egister Arduino 9 15: Q0 8: GND GND 10 1: Q1 9: SO Shift 3 DS 11 2: Q2 10: MR +5V 12 3: Q3 11: SH-CP 13 13 4: Q4 12: ST-CP 10 14 5: Q5 13: OE GND 15 6: Q6 14: DS Shift 2 SO 16 7: Q7 16: VCC +5V 214 • p roject 24 5. The Arduino controls the LEDs through three PWM
in „LED Driver mit µC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TPS4H000.pdf
12.5 15 ms (off,diag) enters into standby mode. Ilkg(out) Output leakage current in off-state VVS = 13.5 V, VINx= VOUTx = 0, VDIAG_EN= 5 V 2 µA POWER STAGE V ≥ 3.5 V, T = 25°C 1000 r On-state resistance(1) VS J mΩ DS(on) VVS ≥ 3.5 V, J = 150°C 2000 ICL(int) Internal current limit Internal current limit
in „Highside-Switch gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DEM128064J_SBH-PW-N.pdf
...................................................................................................13 12. SEGMENT LAYOUT..........................................................................................................................14 13. IC LAYOUT...........................................
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PDF
U13843EU3V0AN00.pdf
JP11 JP10 JP1 JP2 69.3 MHz 2 POD4 JP3 (Default) N C JP1 JP2 65.4 MHz JP3 JP1 JP2 62.0 MHz CN12 JP12 JP13 JP3 JP14 JP1 JP2 49.1 MHz CN42 JP3 CN13 6 P J CN7 CN14 UNB4111 Evaluation Board Jumper Settings Rev. 2.1d 2 V RC 4171A Graphics Display Controller LCD Controller The LCD controller is designed to work
in „Controller für Graphik LCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
digitalSTROM.pdf
jederzeit verschiedene Einstellungen direkt vor- Für Android: (Erhältlich über »Google Play«) nehmen. • dS Home Control • dS NFC • dS Dashboard Bild 34: Die Digitalstrom-App • dS Listener Quelle: Digitalstrom für mobile iOS-Geräte 22 de – das elektrohandwerk Gelernt ist Gelernt Das sind zum Beispiel die Namen
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PDF
7.5inch-e-paper-specification.pdf
- - Data_flag - Display Refresh 10 (DRF) 0 0 0 0 0 1 0 0 1 0 12h Image Process 0 0 0 0 0 1 0 0 1 1 13h 11 Command (IPC) 0 1 - - - # - # # # IP_EN, IP_SEL[2:0] 00h VCOM LUT(LUTC) 0 0 0 0 1 0 0 0 0 0 20h 12 (221-byte command, bytes 2-12 repeated 20 times) LUT Blue(LUTB) 0 0 0 0 1 0 0 0 0 1 21h 13 (261-
in „7.5" Waveshare E-Parper ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OLED_Display_1_12.pdf
hold time 0 - - ns tDS8 Data setup time 40 - - ns tDH8 Data hold time 30 - - ns tCH8 Output disable time 10 - 70 ns CL= 100pF tCC8 RD access time - - 280 ns CL = 100pF tCLW Control L pulse width (WR) 100 - - ns tCLR Control
in „SH1107G Beschaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sc4901.pdf
current returns from one output should be isolated from input. The two outputs were rated at 3.3V/13A and 2.5V/ thesignalcurrentreturnsgoingintotheAGNDpinsofother 13A for a total of 75W power. Of special interest are the outputs. A dedicated ground plane is strongly primary side waveforms shown in Fig
in „Schaltplan für Aktivgleichrichter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Schaltplan.pdf
5 C2+ V- 15 RxD<-PC 3 4 +5V C2- GND C4 TxD<-PC 5 6 C7 1µF 11 T1 14 1µF 7 8 100n 10 T2 7 9 10 12 R1 13 9 R2 8 10-PINSTECKER 2 D1 R1 ATTINY2313 47k MAX232E green V2 R2 11 PD6 C RESET 1 1N4148 C6 +5V C24 C R15 100n 1 X1 330R H1 12 PB0 V PD0/RxD 2 100n red 10k 2 +5V R3 3 13 PB1 PD1/TxD 3 X3 C 4 390R H2 +
in „ATtiny2313 ungewollter Reset?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Output.PDF
1 2 3 4 Pic.SchDoc U3 RC0 P11ER14 15 A RC2 PIURCLQB2U3015 A RC4 QD4U303 Analog V16 QF6U305 P13RCLQH9U307 PIGND8H'IU309 GNDN74HC595D U4 3ULM332AR2VCC P11ER14 15 PIVADJ+IP2.2k201 PIURCLQB2U4015 GND 1 QD4U403 B V16 QF6U405 B P13RCLQH9U407 PIGND8H'IU409 GNDN74HC595D P30R430R5PR6I04 1 2 3 4 12RR8R92R42 301R1144 1 2 3R3 82 Ohm 82Ohm 82 Ohm 80R07R87R57 68158155 8 7 6 5P36P465 8P08I05 8 7 6 5 P13P18DS1P01IDS21 9 8 4 01 0L2 abdegD abcdfD C 02L56L90ED 20326721LED Bar 9 1 C 2 1 1 1 1 12 1 1 1 1 1 1 1 1 K K K K 0 P1 7-Seg517-Segment PIPIR120PIBC547 2.2k 3 21 PIPIR1301 PIQBC547 2.2k 23 P1 PIPIR1401
in „Schaltungsüberprüfung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
58L128.pdf
ADSP# 10 VSS 35 SA 60 V SS 85 ADSC# 11 VDDQ 36 SA1 61 VDQ 86 OE# 12 DQb DQc 37 SA0 62 DQa 87 BWE# 13 DQb DQc 38 DNU 63 DQa 88 GW# 14 VSS 39 DNU 64 ZZ 89 CLK 15 VDD 40 VSS 65 VDD 90 VSS 16 NC 41 V DD 66 NC 91 VDD 17 VSS 42 DNU 67 V SS 92 CE2# 18 DQb DQd 43 DNU 68 DQa DQb 93 BWa# 19 DQb DQd 44 SA 69 DQa
in „4GSPS ADC SRAM Speicher“ · Mikrocontroller und Digitale Elektronik ·
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Datei
pse.txt
Elektronenaffinität [kJ/mol] - 1. Ionisationsenergie [eV] - Name (deutsch) - Name (englisch) 1 1 1 H 1.0079 73 13.598 Wasserstoff Hydrogen 2 18 1 He 4.0026 * 24.587 Helium Helium 3 1 2 Li 6.941 2.93 60 5.392 Lithium Lithium 4 2 2 Be 9.0122 4.98 0 9.322 Beryllium Beryllium 5 13 2 B 10.81 4.45 27 8.298 Bor Boron 6
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PDF
DTM_GHS_D_99.pdf
(13) mit einem Anzugsmoment von 30–40 Nm festziehen. Achtung: nur Originalschrauben verwenden! 14 • Die Kettenspannung ist richtig eingestellt, wenn sich die Kette etwa in der Mitte zwischen Kettenblatt
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Datei
AT32MENU_Int_anzeige_Abfrage_Passwort.bas
Echtzeituhr Ddrd = &HFE Ddrb.1 = 1 Config Sda = Portc.1 ' I2C Bus konfigurieren Config Scl = Portc.0 Const Ds1307w = &HD0 ' Addresse der Ds1307 Uhr Const Ds1307r = &HD1 Config Clock = User '' Interne Time/Date Routinen für Bascom konfigurieren Config Date = Dmy , Separator = . ' *********** Konfiguration Ende
in „Variabeln ändern in ISR“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dcfm8.c
stdlib.h> #include <string.h> //#include "i2cmaster.h" //#define Dev1621_1 0x90 // device address of DS1621-1 //#define Dev1621_2 0x92 // device address of DS1621-2 typedef unsigned char BYTE; typedef unsigned int WORD; #define F_CPU 3000000UL #define sbi(ADDRESS,BIT) (ADDRESS |= (1<<BIT)) #define cbi(
in „Funk-uhr über AVR Programmieren mit DCF01“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN734.pdf
memory address and offset value. movf Offset,W addwf FSR0L,F endm © 2008 Microchip Technology Inc. DS00734B-page 13 AN734 PRG CODE 0x00 goto Start INT1 CODE 0x08 goto Int INT2 CODE 0x18 goto Int MAIN CODE 0x30 ;--------------------------------------------------------------------- ; Main Code ;-------
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PDF
ml50x_schematics.pdf
Silkscreen T "System ACE" D % 87832-1420 L 5 5 PC4_HALT_B Title: System ACE A VCC3V3 "Status LED" C NC 14 13 SCHEM, ROHS COMPLIANT LED-GRN-SMT R50 PC4_TDI 12 11 ML505/6/7 VIRTEX-5 EVALUATION PLATFORM, 1280415 DS2 1SA_STAT_RES 1 SYSACE_STAT_LED PC4_TDO 10 9 0381241 PC4_TCK 8 7 A Silkscreen 140 1% PC4_TMS 6 5
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Bit_Time_Calculations_for_the_Microchip_CAN.htm
width="65%"><font face="Verdana" size="2">16</font></td> </tr> <tr> <td bgcolor="#C0C0C0" height="13" width="35%"><font face="Verdana" size="2"><strong>% Error of Target Baud Rate</strong></font></td> <td bgcolor="#C0C0C0" height="13" width="65%"><font face="Verdana" size="2">0,0 % (Actual Baud Rate
in „ATMEGA328P - CAN“ · Mikrocontroller und Digitale Elektronik ·
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CAN.htm
" width="65%"><font face="Verdana" size="2">8</font></td> </tr> <tr> <td bgcolor="#C0C0C0" height="13" width="35%"><font face="Verdana" size="2"><strong>% Error of Target Baud Rate</strong></font></td> <td bgcolor="#C0C0C0" height="13" width="65%"><font face="Verdana" size="2">0,0 %</font></td> </tr>
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