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OPTREX_F-51320AE_TechSpec.pdf
...................................................................................................13 4. I/O Terminal ....................................................................................................................................................15 5. Test.........................
in „Pollin Grafik LCD-Modul OPTREX F-51320AE“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SDA5243.PDF
theSAA5231integratedchip whichextracts TCS/SCS 12 29 D7 Teletext information embedded in a composite R 13 28 D6 video signaland upto eightkilobytesof staticRAM memory which canbe usedto store a maximum of G 14 27 D5 8 pages of display data. A complete system also 15 26 D4 comprises a microprocessor controling
in „Externer Videotextdecoder“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SDA5243.PDF
theSAA5231integratedchip whichextracts TCS/SCS 12 29 D7 Teletext information embedded in a composite R 13 28 D6 video signaland upto eightkilobytesof staticRAM memory which canbe usedto store a maximum of G 14 27 D5 8 pages of display data. A complete system also 15 26 D4 comprises a microprocessor controling
in „Welches I²C-Protokol? Testbildgenerator mit SDA5243“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MRF150.pdf
Zero Gate Voltage Drain CurrDSt= 50 V,GS = 0) DSS — — 5.0 mAdc Gate–Body Leakage CurrentGSV= 20 V, DS = 0) GSS — — 1.0 Adc ON CHARACTERISTICS Gate Threshold Voltage (= 10 V, I = 100 mA) V 1.0 3.0 5.0 Vdc DS D GS(th) Drain–Source On–Voltage (V= 10 V, I = 10 A) V 1.0 3.0 5.0 Vdc GS D DS(on) Forward Transconductance (V= 10 V, I = 5.0 A) g 4.0 7.0 — mhos DS D fs DYNAMIC CHARACTERISTICS Input CapacitanceDSV= 50 V,GS = 0, f = 1.0 MHz) Ciss — 400 — pF Output CapacitanceDSV= 50 V,GS = 0, f = 1.0 MHz) Coss — 240 — pF Reverse Transfer CapacitancDS(= 50 V,GS =
in „Wärmeleitpad gesucht für POWER FET MRF150“ · Analoge Elektronik und Schaltungstechnik ·
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aod522.pdf
V 90 A D(n) DS GS VGS = 10 V,DI = 21.8 A 0.007 Drain-Source On-State Resistance RDS(on) VGS = 4.5 V,DI = 18A 0.009 a Forward Transconductance gfs V DS = 15 V,DI = 21.8 A 160 S b Dynam i Input Capacita ce Ciss 2201
in „Suche einfache Möglichkeit 24V 6A DC zu schalten“ · Analoge Elektronik und Schaltungstechnik ·
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Product_preview_LPST096096A00-T4__Rev_0.0_.pdf
0 0 1 * * VS1 VS0 VS : Booster control clock setting Panel duty& scan 0 1 1 0 0 0 1 0 0 1 0 * SHI DS1 DS0 SHIFT : Common shift direction set direction [2H] FT DS1,DS0 : duty ratio setting Oscillator RF control RF : control the feedback resistor [3H] 0 1 1 0 0 0 1 0 0 1 1 CKS RF2 RF1 RF0 of oscillator
in „O-LED Display von SMI“ · Mikrocontroller und Digitale Elektronik ·
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Seite141.pdf
C3906KT146(R,S) Q1065 RY107 P P POLYPROPYLENE FILM CAPACITOR -56.0 1 D 0 K 0 K 0 K - 2 0 2 0 2 0 981-2A-5DS-SP7 6 S SEMICONDUCTIVE CERAMIC CAPACITOR R 1 R 1 R 1 RY107 0 5 Y - 981-2A-5DS-SP7 R 2 0 0 K 3 K 7 K 8 K 9 K 0 - 1 2 0 0 0 2 0 2 0 2 0 2 8 R 1 1 1 1 1 1 1 1 1 1 9 TE101 K 0 R R R R R FR RY102 0 . 2 3
in „Welcher Kondensator ist das? Womit kann ich ihn ersetzten?“ · Analoge Elektronik und Schaltungstechnik ·
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74HC_HCT594_CNV_2.pdf
CP C1/ Q 1 1 Q 3 3 14 D S D S14 1D 2D 15 Q0 Q 2 2 Q 4 4 13 ST R 1 14 D Q 3 594 Q1 S 3 Q 5 5 12 ST CP 2 Q Q 4 3 2 4 Q 6 11 SH Q3 Q 5 5 6 CP 4 Q 5 4 Q 6 6 Q 7 7 10 SH R Q5 Q 7 6 Q 7 GND 8 9 Q7' 7 6 SH R ST R Q7 MBC318 9 Q ' 7 10 13 MBC319 MBC322 - 1 Fig.1 Logic
in „AVR - Multiplexing (Helligkeit)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC_HCT594_CNV_2.pdf
CP C1/ Q 1 1 Q 3 3 14 D S D S14 1D 2D 15 Q0 Q 2 2 Q 4 4 13 ST R 1 14 D Q 3 594 Q1 S 3 Q 5 5 12 ST CP 2 Q Q 4 3 2 4 Q 6 11 SH Q3 Q 5 5 6 CP 4 Q 5 4 Q 6 6 Q 7 7 10 SH R Q5 Q 7 6 Q 7 GND 8 9 Q7' 7 6 SH R ST R Q7 MBC318 9 Q ' 7 10 13 MBC319 MBC322 - 1 Fig.1 Logic
in „7-Segm. Anzeige“ · Mikrocontroller und Digitale Elektronik ·
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data.pdf
SWITCH Features Product Summary • Over temperature shutdown • Over current shutdown • Active clamp R ds(on) 25m (max) • Low current & logic level input • E.S.D protection V clamp 50V Ihutdown 35A Description T T 1.5 s TheIPS0151/IPS0151Sarefullyprotectedthreeterminal on/ off SMART POWER MOSFETs that feature
in „Problem mit MOSFET-Schalter“ · Analoge Elektronik und Schaltungstechnik ·
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d041048.pdf
STD5NM50(-1) C3 C L2 1n Q1 (optimal) HOLD/DELAY 14 100n V * RU SPD04N50, 2 A CX1 CX2 odeSPD07N60, 4 13 5 2 GL1 IRF830A GT FB 1 b 100n 100n ( CY2 C1 C1* 5 CS VCC 12 2x 1mH 265V f R1.1 R1.2 1n 0,5A 33n s m 7 7 6 11 N 275V e 3 4 4 COM ENI D HV9901P S10K275 sCDV-1.0-A / 42V15 10 01l 7 SYNC ENO 10 S07K275
in „Cree LED an 230V“ · Mikrocontroller und Digitale Elektronik ·
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Datei
GenericTypeDefs.h
***** FileName: GenericTypeDefs.h Dependencies: None Processor: PIC10, PIC12, PIC16, PIC18, PIC24, dsPIC, PIC32 Compiler: MPLAB C Compilers for PIC18, PIC24, dsPIC, & PIC32 Hi-Tech PICC PRO, Hi-Tech PICC18 PRO Company: Microchip Technology Inc. Software License Agreement The software supplied herewith
in „Anfängerproblem PIC18“ · Mikrocontroller und Digitale Elektronik ·
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FPGA-TN-02001-3-2-iCE40-Programming-Configuration.pdf
drives the SPI_SS pin Low when CRESET_B is released, forcing the iCE40 FPGA into SPI peripheral mode. 13.2.SPI Slave Configuration Process Figure 13.2 illustrates the interface timing for the SPI slave mode and Figure 13.3 outlines the resulting configuration process. The actual timing specifications appear
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Ultraschallotrungssystem_Lego_Mindstorms.pdf
if (raw>=DS_SERIAL_THRESHOLD) ds_serial_bitcount[channel] = 8; else ds_serial_sequence[channel]=0; } else { ds_serial_data[channel] = (ds_serial_data[channel]<<1) | (raw>=DS_SERIAL_THRESHOLD?1:0); ds_serial_bitcount[channel]--; if (ds_serial_bitcount[channel]==0) { if (ds_serial_handler[channel]!=DS_SERIAL_NOHANDLER) ds_serial_handler[channel](((unsigned char)(2-channel))&3, ds_serial_data[channel], ds_serial_sequence[channel]); ds_serial_sequence
in „Ortung mittels Ultraschall - Projektvorstellung / Hilfegesuch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mindstorms.pdf
if (raw>=DS_SERIAL_THRESHOLD) ds_serial_bitcount[channel] = 8; else ds_serial_sequence[channel]=0; } else { ds_serial_data[channel] = (ds_serial_data[channel]<<1) | (raw>=DS_SERIAL_THRESHOLD?1:0); ds_serial_bitcount[channel]--; if (ds_serial_bitcount[channel]==0) { if (ds_serial_handler[channel]!=DS_SERIAL_NOHANDLER) ds_serial_handler[channel](((unsigned char)(2-channel))&3, ds_serial_data[channel], ds_serial_sequence[channel]); ds_serial_sequence
in „Suche Transreceiver Ultraschallkapseln mit 80° Detektionswinkel“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AA_Stim_neu3.A51
SEGMENT IDATA ; ?STACK im indirekt adressierbaren internen RAM RSEG ?STACK ; ?STACK-Segment waehlen DS 10h ; Reserviere z.B. 16 Bytes Stack ; ;------------------------------------------------------------------------------ ;------------------------------------------------------------------------------
in „Microansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NTMFS4C09N.pdf
ISS Output Capacitance C 610 OSS VGS = 0 V, f = 1 MHz,DS= 15 V pF Reverse Transfer Capacitance C 126 RSS Capacitance Ratio C /C V = 0 V, V = 15 V, f = 1 MHz 0.101 RSS ISS GS DS Total Gate Charge Q 10.9 G(TOT) Threshold Gate Charge Q 1.9 G(TH) Gate−to−Source Charge Q 3.4 nC GS VGS = 4.5 V, DS = 15 V;DI = 30 A Gate−to−Drain Charge Q 5.4 GD Gate Plateau Voltage V 3.1 V GP Total Gate Charge Q V = 10 V, V = 15 V; I = 30 A 22.2 nC G(TOT) GS DS D SWITCHING CHARACTERISTICS (Note 7) Turn−On Delay
in „Kontrolle Eagle Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SPLC501C_v1.8.pdf
.................................................................................................. 13 5.7. T HEO SCILLATOC IRCUI........................C........................................................................................................................................ 13 5.8. T HEC
in „Welche Signale sind das? LCD Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SPLC501C_v1.8.pdf
.................................................................................................. 13 5.7. T HEO SCILLATOC IRCUI........................C........................................................................................................................................ 13 5.8. T HEC
in „LCD-Display Signal abgreifen, verändern und weiterschicken“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Dallas_WaitForConversion_Bsp_002.ino
anpassen DeviceAddress sensor2 = { 0x10, 0x8A, 0xB, 0xAC, 0x2, 0x8, 0x0, 0x2C }; int resolution = 9; // DS18S20 only 9bit, other 9...12 unsigned long _lastTempRequest = 0; // Zwischenspeicher unsigned int _ConversionDelay = 750; // default 750ms, okay für alle DS1820 Typen boolean _allow_TempRequest = true
in „AVR Frequenzmessung, DS18S20“ · Mikrocontroller und Digitale Elektronik ·
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Datei
serielle_Schnittstelle_EPROM_80C31.asm
Schnittstelle: 9600 Baud, no parity, 8 Bit, 1 Stopbit, (keine Handshakes) Basic: {OPEN "COM1:9600,N,8,1,CS,DS,CD" AS#1} mit WR/STROBE Adres- Da- Mnemonik: Kommentar: sen: ten: -------------------------------------------------------------------- 00 00 ]------ NOP Keine Operation 01 75 ]-START MOV SCON,#50Hex
in „Unsauberes UART Signal“ · Mikrocontroller und Digitale Elektronik ·
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bq24780s.pdf
ms timeout BOOT Deglitch for watchdog reset signal 10 ms WDI Watchdog timeout period, REG0x12 [14:13] = 01(2) 4 5 6 (2) WDI Watchdog timeout period, REG0x12 [14:13] = 10 70 88 105 s (2) WDI Watchdog timeout period, REG0x12 [14:13] = 11 (default) 140 175 210 PWM DRIVER TIMING t Driver dead time from
in „Widerstand Bestimmung“ · Mikrocontroller und Digitale Elektronik ·
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STEVAL-3DP001V1_Data.pdf
C V D D G C M c 1 2 3 4 56 7 8 9 0 e 1 n V n _ o D N c V 6 0 e V C 1 n _ o 4 F D l R 0 6 0 V 1TAD_DS n C 1 0TAD_DS O KLC_DS 3TAD_DS 2TAD_DS D D DC_DS _ _ T T R O O O T R R C 1 1 1 1 1 1 1 9 r 0 0 E t N C C EE E E E E c 5 6 N V V 23 D K 0 1 e R R O A AA M C A A n C A DD C D D o 6 5 4 D c 6 S 4 D R 1
in „3D-Drucker Board bzw CNC-Board mit STM32F401“ · Mechanik, Gehäuse, Werkzeug ·
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Wavefront_AL1402G_OptoRec_Data_Sheet.pdf
1&2 data output. 11 OUT 3/4 Out Channels 3&4 data output. 12 OUT 5/6 Out Channels 5&6 data output. 13 OUT 7/8 Out Channels 7&8 data output. 14 USER0 Out User 0 data bit output. Used to receive timecode. 15 USER1 Out User 1 data bit output. Used to receive MIDI data. 16 USER2 Out User 2 data bit output
in „Multi-Room-Audio selbstgemacht“ · Mikrocontroller und Digitale Elektronik ·
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hexiangning-20.pdf
practical device; BSMSOGB160D (12) and practical device (data are given and compared. or similar (13)(14). Fig.4 shows igbt circuit Parametric sensitivity analysis is performed, and simulation and experimental results, at turn-off. It is validity of the composite macroscopic models is seen in these
in „Projekt: Leistungsstarkes Blitzgerät aus 12 Volt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
heds-1300.pdf
Sensing Selection Guide • Dimensional Monitoring Sensor Part Number HEDS-1200 HEDS-1300 Resolution 0.13 mm (0.005 in.) 0.19 mm (0.0075 in.) Package Dimensions LED Wavelength 820 nm 700 nm 9.40 (0.370) 8.51 (0.335) S.P. 12.0 R.P. MAXIMUM SIGNAL POINT – MSP (0.473) (0.200) REFERENCE PLANE CL 8.33 (0.328)
in „Kugelschreiber mit Barcodescanner bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AQ_Rly_Dm_lcd_lan_1_wire_18_11_12.ino
is not a DS18x20 family device."); return; } ds.reset(); ds.select(addr); ds.write(0x44,1); // start conversion, with parasite power on at the end delay(1000); // maybe 750ms is enough, maybe not // we might do a ds.depower() here, but the reset will take care of it. present = ds.reset(); ds.select(addr); ds.write(0xBE); // Read Scratchpad Serial.print(" Data = "); Serial.print(present,HEX); Serial.print(" "); for
in „Aquariumcontroller: hängt sich auf / stürzt ab / friert ein - Hilfe!“ · Mikrocontroller und Digitale Elektronik ·
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Datei
BCS33.ASM
. Merkzelle) arnd: ds 2 ; RND-Merkzelle areg2: ds 4 ; Arithmetik-Puffer2 ) acb2: ds 2 ; Ausdruckwert CB ) 2. Operand bzw. alh2: ds 2 ; Ausdruckwert LH ) Ergebnis asign2: ds 1 ; Vorzeichen ) areg1: ds 4 ; Arithmetik-Puffer1 ) acb1: ds 2 ; Ausdruckwert CB ) 1. Operand alh1: ds 2 ; Ausdruckwert LH ) asign1: ds 1 ; Vorzeichen ) ZWIREG: ds 4 ; Zwischenregister 2.Operand bei Mult./Div. BZ: ds 2 ; Anfang Eingabezeile BWS READPT: ds 2 ;
in „Z80 SBC Problem.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Forum.PDF
PI1rc4 C11 Pt Pt COJ0rc+3.3 C 6 P BT1_rtc J1_rtc PU0rc2VCC GND PI1rc1 Pt 2 120591-1 1025-7 2 F P2 DS3231S# +3.3 0 Pt 1 c C r 0 C C02 1 GND GND GND GND C n 0 1 1 U1_rtcB P PU0rc5 NC NC PI1rc0 P PU0rc6 PI1r0c 2 PU0rc7 NC NC PI1rc1 8 NC NC 12 PU0rc8 NC NC PI1rc1 DS3231S# GND GND GND D Title D Size Number
in „Raspberry Pi Compute Module 3 (Carrier Board)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BF256_FAIRCHILD.pdf
Parameter Test Condition Min. Max. Units Off Characteristics V(BR)GSS Gate-Source Breakdown Voltage V DS= 0,GI = 1µA -30 V V Gate-Source V = 15V, I = 200µA -0.5 -7.5 V GS DS D VGS(off) Gate-Source Cutoff Voltage V DS= 15V, D = 10nA -0.5 -8 V GSS Gate Reverse Current V GS= -20V, GS = 0 -5 nA On Characteristics DSS Zero-Gate Voltage Drain Current BF256A V GS= 15V, GS = 0 3 7 mA BF256B 6 13 BF256C 11 18 Small Signal Characteristics gfs Common Source Forward Transconductance V DS= 15V, GS = 0, f = 1KHz 4.5 mmhos ©2003 Fairchild Semiconductor Corporation Rev. A, June 2003 B F Package Dimensions
in „BF256, Pinbelegung unterschiedlich“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HKT05N10-_5N10_-.pdf
HKT05N10 HIGH VOLTAGE MOSFET (N-CHANNEL) FEATURES Low on-resistance:VDS100V,R DS(ON)115mΩ@V =10GSI =3A D Low Input Capacitance Fast Switching Speed Low Input/Output Leakage Surface Mount device MECHANICAL DATA SOT-23 Case: SOT-23 Case Material: Molded Plastic. UL flammability
in „Unbekanntes SMD Bauelement 5N10“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
0704-015.pdf
in the conductive IC ground plane. I (%) Primary Current 90 Transducer Output 10 0 t Rise Time,rt 13 115NortheastCutoff,Box15036 ACS704ELC015-DS, Rev. 2 Worcester,Massachusetts01615-0036 (508)853-5000 www.allegromicro.com ACS704ELC-015 Standards and Physical Specifications Parameter Specification Flammability
in „Stromfluss detektor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0704-015.pdf
in the conductive IC ground plane. I (%) Primary Current 90 Transducer Output 10 0 t Rise Time,rt 13 115NortheastCutoff,Box15036 ACS704ELC015-DS, Rev. 2 Worcester,Massachusetts01615-0036 (508)853-5000 www.allegromicro.com ACS704ELC-015 Standards and Physical Specifications Parameter Specification Flammability
in „Gibts eigentlich auch ADCs, die Strom messen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0704-015.pdf
in the conductive IC ground plane. I (%) Primary Current 90 Transducer Output 10 0 t Rise Time,rt 13 115NortheastCutoff,Box15036 ACS704ELC015-DS, Rev. 2 Worcester,Massachusetts01615-0036 (508)853-5000 www.allegromicro.com ACS704ELC-015 Standards and Physical Specifications Parameter Specification Flammability
in „Spule als Stromwandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mosfet_K3673.pdf
C, See to Avalanche Energy Graph*2 Tch=150°C < < < < *3 F=-D , -di/dt=50A/µs, VccDSS, Tch=150°C *4 DS=700V *5 VGS=-30V *6 t=60sec, f=60Hz Electrical characteristics (c=25°C unless otherwise specified) Item Symbol Test Conditions Min. Typ. Max. Units Drain-source breakdown voltaget V(BR)DSS ID=250 A VGS =0V 700 V Gate threshold voltage VGS(th) ID= 250 A VDS=V GS 3.0 5.0 V V DS=700V V GS=0V T c=25°C 25 µA Zero gate voltage drain current IDSS V DS=560V V GS=0V Tch=125°C 250 Gate-source leakage current IGSS V GS=±30V V DS=0V 100 nA Drain-source on-state resistance RDS(on) ID=
in „Mosfet K3673 01“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AON6500.pdf
Drain-Source Breakdown Voltage ID=250 A, V GSV 30 V V =30V, V =0V 1 IDSS Zero Gate Voltage Drain Current DS GS A T J55°C 5 IGSS Gate-Body leakage current V DS=0V, VGS ±20V 100 nA VGS(th) Gate Threshold Voltage V DS GS, D=250 A 1 1.4 2 V V =10V, I =20A 0.75 0.95 GS D m R DS(ON) Static Drain-Source On-Resistance
in „Unbekanntes Bauteil?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
drv8811.pdf
REVISED JANUARY 2015 Thermal Information (continued) θJA Ω - O D R Temperature - °C Figure 17. TypicalDS(ON) vs Figure 18. Thermal Resistance Temperature vs Copper Area 11.4 Power Dissipation Power dissipation in the DRV8811 is dominated by the power dissipated in the output FET resistance, or R DS(ON).
in „UV-Laserdrucker II“ · Platinen ·
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PDF
Regler_LM3488.pdf
ignoring the drop across the MOSFET and the diode), or (7) where D is the duty cycle of the switch, V Ds the forward voltage drop of the diode, and V is Qhe drop across the MOSFET when it is on. The following sections describe selection of components for a boost converter. Figure 13. Simplified Boost Converter
in „Kein PWM-Signal bei DC-DC Wandler; 12->140V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
37378-DI300.pdf
- Halogen- gie von Siemens jetzt den R DS(onum den lampe Faktor5bis10beigleicherChipfläche.So Bild 3: Arbeitsprinzip verringertsichdieVerlustleistungamTran- des Phasenanschnitt- sistor im eingeschalteten Zustand erheb- 996176904dimmers mit Triac
in „Mos-Fet wird heis“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
37378-DI300.pdf
- Halogen- gie von Siemens jetzt den R DS(onum den lampe Faktor5bis10beigleicherChipfläche.So Bild 3: Arbeitsprinzip verringertsichdieVerlustleistungamTran- des Phasenanschnitt- sistor im eingeschalteten Zustand erheb- 996176904dimmers mit Triac
in „Dimmer will nicht richtig dimmen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
nRF24L01.h
RX_ADDR_P5 0x0F #define TX_ADDR 0x10 #define RX_PW_P0 0x11 #define RX_PW_P1 0x12 #define RX_PW_P2 0x13 #define RX_PW_P3 0x14 #define RX_PW_P4 0x15 #define RX_PW_P5 0x16 #define FIFO_STATUS 0x17 //Bit Mnemonics #define MASK_RX_DR 6 #define MASK_TX_DS 5 #define MASK_MAX_RT 4 #define EN_CRC 3 #define CRCO
in „2,4 Ghz Kommunikation“ · Mikrocontroller und Digitale Elektronik ·
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Datei
nRF24L01.h
RX_ADDR_P5 0x0F #define TX_ADDR 0x10 #define RX_PW_P0 0x11 #define RX_PW_P1 0x12 #define RX_PW_P2 0x13 #define RX_PW_P3 0x14 #define RX_PW_P4 0x15 #define RX_PW_P5 0x16 #define FIFO_STATUS 0x17 //Bit Mnemonics #define MASK_RX_DR 6 #define MASK_TX_DS 5 #define MASK_MAX_RT 4 #define EN_CRC 3 #define CRCO
in „NRF24L01 und Atmega328P“ · Mikrocontroller und Digitale Elektronik ·
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PDF
edison-module_HG_331189.pdf
Edison 70-pin connector part numbers Hirose P/N Mating stack height DigiKey P/N Mouser P/N DF40C-70DS-0.4V(51) 1.5 mm n/a 798-DF40C70DS04V51 DF40C(2.0)-70DS-0.4V(51) 2.0 mm H11908CT-ND (low quantity) 798-DF40C2070DS04V51 H11908TR-ND (tape and reel) DF40HC(3.0)-70DS-0.4V(51) 3.0 mm n/a n/a The Intel®
in „Intel Edison Breakout Board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
top222y.pdf
generate a temperature-compensated current source voltage, V with a threshold voltage. High drain DS(ON) sourcewhichistrimmedtoaccuratelysettheoscillatorfrequency currentcausesV DS(ON)toexceedthethresholdvoltageandturns C 4 12/97 TOP221-227 VIN VIN DRAIN 0 V OUT 0 I OUT 0 1 2 8 1 2 8 1 • • • • • • V
in „Suche Ersatz für TOP222Y“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BUZ11-FSC.PDF
VGS(TH) VGS = VDS DI = 1mA (Figure 9) 2.1 3 4 V o Zero Gate Voltage Drain Current IDSS TJ= 25 C, V DS = 50V, GS = 0V - 20 250 µA T = 125 C, V = 50V, V = 0V - 100 1000 µA J DS GS Gate to Source Leakage Current I V = 20V, V = 0V - 10 100 nA GSS GS DS Drain to Source On Resistance (Note 2) r I = 15A, V
in „BUZ11 parallel als regelbarer 200 Watt Widerstand bis 20V 10A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
si3459bdv.pdf
noted Parameter Symbol Test Conditions Min. Typ. Max. Unit Static Drain-Source Breakdown Voltage V DS VGS = 0 V,DI = - 250 µA - 60 V V Temperature Coefficient ΔV /T - 65 DS DS J I = - 250 µA mV/°C V Temperature Coefficient ΔV GS(th)J D 4 GS(th) Gate-Source Threshold Voltage VGS(th) VDS = VGS , D = -
in „SMD Bauteil identifizieren "*"“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MX26LV400__2_.pdf
x 20mm) SYMBOL PIN NAME A0~A17 Address Input A15 1 48 A16 A14 2 47 BYTE# Q0~Q14 DataInput/Output A13 3 46 GND A12 4 45 Q15/A-1 Q15/A-1 Q15(Wordmode)/LSBaddr(Bytemode) A11 5 44 Q7 A10 6 43 Q14 CE# ChipEnableInput A9 7 42 Q6 A8 8 41 Q13 WE# Write Enable Input NC 9 40 Q5 NC 10 39 Q12 BYTE# Word/Byte Selection
in „falsche u-boot nand geflasht,J-Tag möglichkeit für Flytouch2?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MOSFET_Treiber_slup169.pdf
as: are shown in this model. Their respective roles C DS,0 will be discussed in the next chapter which is C DS ≈ dedicated to the switching procedure of the K 2⋅ V DS device. Unfortunately, non of the above mentioned capacitance values are defined directly
in „Igbt über Trafo --> Ansteuerungssignal unsauber“ · Mikrocontroller und Digitale Elektronik ·
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PDF
22070a-53890.pdf
Regulation vs. FIGURE 2-18: Load Regulation vs. Temperature. Temperature. © 2007 Microchip Technology Inc. DS22070A-page 13 MCP1824/MCP1824S Note: Unless otherwise indicated, C = 4.7 µF Ceramic (X7R), C = 4.7 µF Ceramic (X7R), I = 1 mA, OUT IN OUT Temperature = +25°C, V IN = V OUT + 0.5V, Fixed output, SHDN
in „[V] 50St.LowNoise Microchip LDO MCP1824T 3,3V/300mA SOT223-5 mit Shutdown“ · Markt ·
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PDF
LG_L1733TR_L1933TR_Monitor_Service_manual.pdf
C528 0CK104CF56A 0603B104K160CT100nF10%16V D704 0DS226009AA KDS2261.2V85V300MA2A4NS C529 0CK104CF56A 0603B104K160CT100nF10%16V D705 0DS226009AA KDS2261.2V85V300MA2A4NS C530 0CK104CF56A 0603B104K160CT100nF10%16V D706 0DS226009AA KDS2261.2V85V300MA2A4NS C531 0CK104CF56A 0603B104K160CT100nF10%16V D707 0DS226009AA KDS2261.2V85V300MA2A4NS C532 0CK104CF56A 0603B104K160CT100nF10%16V D708 0DS226009AA KDS2261.2V85V300MA2A4NS C533 0CK104CF56A 0603B104K160CT100nF10%16V D709 0DS226009AA KDS2261.2V85V300MA2A4NS
in „Monitor TFT und Röhre Computer“ · Analoge Elektronik und Schaltungstechnik ·