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PDF
p75nf75.pdf
10V, I = 40A DS(on) resistance GS D 0.0095 0.011 Ω Table 4. Dynamic Symbol Parameter Test conditions Min. Typ. Max. Unit (1) Forward transconductance V = 15V, I = 40A 20 S gfs DS D C iss Input capacitance 3700 pF C
in „Unbekanntes Bauteil im Akkuschrauber“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
Schaltplan mit CAN-Transceivern und Pegelwandlern
K6, +5V, +12V, RAZSIRITEV, R13, TXD, RXD, CANL, CANH, GND, VREF, VCC, RS, PCA82C251T/N3, DS4, PESD1CAN, 74HC02D, IC7C, IC6D, 4k7, R16, C8, 100p, 74HC32D, IC7B, IC7A, D4, K4, CAN0, U4, U3, K3, CAN1, R8, IC5C, IC5D, IC6B, C6, R12, 100p, 74HC32D, IC5A, IC5B, D3, 74HC02D, DS3, PESD1CAN, U2, K2, CAN2, R5, IC3D, IC2C, R7, C3, 100p, 74HC32D, IC3B, D2, 74HC02D, IC3A, IC2D, 4k7, C4, 4k7, R11, C5, 100p, 74HC32D, IC2A, IC2B, DS2, PESD1CAN
in „CAN-Repeater mit Arbitrierung hängt sich auf - falsche Gatter?“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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PDF
ZXRE330.pdf
1.37 - b - - 0.38 c - - 0.38 D 4.27 4.78 - D1 - - 3.87 L L1 E 4.32 4.83 - e - - 1.27 e2 2.40 2.90 - L 12.98 15.00 - b L1 12.80 15.00 - L2 0.80 - - L3 2.00 3.00 - e e c e2 e2 All Dimensions in mm BULK AMMO D1 A2 h ø ZXRE330 7 of 9 July 2018 Document number: DS36772 Rev 3 - 2 www.diodes.com © Diodes Incorporated
in „Spannungsreferenz 3,3v gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MW-BIC-2200.pdf
r S u p p ly w ith S in g le O u tp u t B I C - 2 2 0 0 s e r i e s SPECIFICATION M ODEL BIC-2200-12 BIC-2200-24 BIC-2200-48 BIC-2200-96 DC VOLTAGE 12V 24V 48V 96V RATED CURRENT 180A 90A 45A 22.5A RATED POW ER 2160W FULL POWER VOLTAGE RANGE 12 ~ 15V 24 ~ 28V 48 ~ 65V 96 ~ 112V RIPPLE & NOISE (m ax.)
in „LifePo4 mit Labornetz laden und gleichzeit entladen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ZXMN2B01F.pdf
V I = 250A, V =0V (BR)DSS D GS voltage Zero gate voltage drain current I 1 A V = 20V, V =0V DSS DS GS Gate-body leakage I 100 nA V =±8V, V =0V GSS GS DS Gate-source threshold voltage VGS(th) 0.4 1.0 V ID= 250A, VDS=V GS Static drain-source on-state RDS(on) 0.100 ⍀ V GS= 4.5V,DI = 2.4A (*) resistance
in „LED-Spannungswandler mit MOSFET ?“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Schaltplan mit zwei 74HC595 Schieberegistern
GND C? 1uF/10V GND SR DATA 14 IC? 74HC595PW,118 16 VCC 15 Q0 1 Q1 2 Q2 3 Q3 4 Q4 5 Q5 6 Q6 7 Q7 10 DS 4 MR 5 Q4 11 SHCP 6 Q5 12 STCLK 7 Q6 13 OE 8 GND 9 Q7S SR RST SR SHCLK STCLK +3.3VIN C? 100nF/50V GND C? 1uF/10V GND SR RST 14 IC? 74HC595PW,118 16 VCC 15 Q0 1 Q1 2 Q2 3 Q3 4 Q4 5 Q5 6 Q6 7 Q7 10 DS 4 MR 5 Q4 11 SHCP 6 Q5 12 STCLK 7 Q6 13 OE 8 GND 9 Q7S SR RST SR SHCLK STCLK GND - Reset: nMR low and then high again - DS: Data input, only high for one SHCLK - STCP: can be the same CLK as SHCP
in „32-bit Shift-Counter“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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PDF
audiopcb.pdf
4 5 6 7 8 N N GND V V _ _ _ _ _ _ R10 R11 L A P P S S A A 10k 10k GND 0 1 6 7 2 2 2 2 2 9 8 TDA7439DS13TR TPA3140D2 TDA7439DS13TR D L A T T _ _ R3 G S S O O T T R_IN4 28 SD 1 AMP_SHUTDOWN_TTL A _ _ L U O 10k A I R X X L_IN4 7 FAULT 2 D U U C3 C11 M M 26 BSPL AMP_L_IN 1 C7 3 C23 R_IN3 SPK_L 1n L1 2 220n 25 LINP 1u C12 23 6 0 OUTPL 4 GND CREF L_IN3 0 FB 24 LINN GND 10u 24 1 GND GND 1u 9V_SUPPLY Vs 1 L2 R4 R5 R_IN2 2 1 2 23 OUTNL LIMRATE 5 C50 25 AGND TDA7439DS13TR 2 Way Terminal 5.08mmFB C4 56k 39k GND 1u L_IN2 5 C8
in „Radio Projekt mit Fehler, brauche Hilfe :(“ · Mikrocontroller und Digitale Elektronik ·
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PDF
V2Pro_Board_User_Guide_2_2.pdf
CLK.CAN.LVDS.N D11, Y11 Input Negative LVDS Clock Input - On-board 125 MHz LVDS Oscillator CLK.CAN.HS V12 Input On-board 100 MHz LVTTL Oscillator CLK.SOCKET U12 Input On-board socket for LVTTL Oscillator CLK.SMA.P D12, Y12 Input Positive Differential Clock Input – SMA connector CLK.SMA.N C12, W12 Input Negative
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PDF
viper20.pdf
Charging VDD = 5 V VDS = 70 V -2 mA Current (see fig. 2 and fig. 15) DD0 Operating Supply Current V DD = 12 V, FSW = 0 KHz 12 16 mA (see fig. 2) DD1 Operating Supply Current V DD = 12 V, FSW = 100 KHz 13 mA DD2 Operating Supply Current V DD = 12 V, FSW = 200 KHz 14 mA VDDoff Undervoltage Shutdown (see fig.
in „Besonders sparsame Standby-Schaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
504925-panasonic-aqz202-photomos-relais-1-st-1-schliesser-60-vdc-60-vac-3000-ma-polzahl-4.pdf
20 30 40 50 Load voltage, V LED forward current, mA 11.-(2) Turn on time vs. LED forward current 12.-(1) Turn off time vs. LED forward current 12.-(2) Turn off time vs. LED forward current characteristics (DC type) characteristics (AC/DC type) characteristics (DC type) Load voltage: 10 V (DC); Load
in „Suche Halbleiterelement als Ersatz für Relai in Radar-Bewegungsmelder“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
504925-panasonic-aqz202-photomos-relais-1-st-1-schliesser-60-vdc-60-vac-3000-ma-polzahl-4.pdf
20 30 40 50 Load voltage, V LED forward current, mA 11.-(2) Turn on time vs. LED forward current 12.-(1) Turn off time vs. LED forward current 12.-(2) Turn off time vs. LED forward current characteristics (DC type) characteristics (AC/DC type) characteristics (DC type) Load voltage: 10 V (DC); Load
in „Welche Eigenschaften haben Solid State Relais, SSR ?“ · Offtopic ·
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PDF
504925-panasonic-aqz202-photomos-relais-1-st-1-schliesser-60-vdc-60-vac-3000-ma-polzahl-4.pdf
20 30 40 50 Load voltage, V LED forward current, mA 11.-(2) Turn on time vs. LED forward current 12.-(1) Turn off time vs. LED forward current 12.-(2) Turn off time vs. LED forward current characteristics (DC type) characteristics (AC/DC type) characteristics (DC type) Load voltage: 10 V (DC); Load
in „Kann diese Schaltung den 74HC132 killen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
504925-panasonic-aqz202-photomos-relais-1-st-1-schliesser-60-vdc-60-vac-3000-ma-polzahl-4.pdf
20 30 40 50 Load voltage, V LED forward current, mA 11.-(2) Turn on time vs. LED forward current 12.-(1) Turn off time vs. LED forward current 12.-(2) Turn off time vs. LED forward current characteristics (DC type) characteristics (AC/DC type) characteristics (DC type) Load voltage: 10 V (DC); Load
in „Relais ersetzen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
4_5902390009465407372.pdf
20 30 40 50 Load voltage, V LED forward current, mA 11.-(2) Turn on time vs. LED forward current 12.-(1) Turn off time vs. LED forward current 12.-(2) Turn off time vs. LED forward current characteristics (DC type) characteristics (AC/DC type) characteristics (DC type) Load voltage: 10 V (DC); Load
in „CD4066 als Relaisersatz?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Funkmodul.pdf
is type-approved to ETS 300-220 for European use and delivers nominally +9dBm from a 5V supply at 12mA, while the 418.00 MHz unit has MPT 1340 type-approval for U.K. use and delivers -3dBm from a 5V supply at 5mA. Both modules measure 12 x 32 x 3.8 mm. The RX2 module is a double conversion FM superhet
in „Funkübertragung über uC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VRE104c_Thaler.pdf
HYBRID INCHES MILLIMETER INCHES MILLIMETER PACKAGE DIM MIN MAX MIN MAX DIM MIN MAX MIN MAX E .480 .500 12.1 12.7 A .120 .155 3.0 4.0 L .195 .215 4.9 5.4 Q .015 .035 0.4 0.9 D .775 .805 19.7 20.4 Q1 N/A .030 N/A 0.7 B .016 .020 0.4 0.5 C .009 .012 0.2 0.3 B1 .038 .042 0.9 1.0 G1 .290 .310 7.3 7.8 B2 .095 .105 2.4 2.6 S .085 .105 2.1 2.6 P .004 .006 0.10 0.15 VRE104DS REV. C SEPT 1994
in „[V] Referenzspannungsquellen VRE Thaler Corp.“ · Markt ·
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Datei
bootloaderV25.a51
DBIT 1 ; 1 if it is a CH551 or CH553 bReqError: DBIT 1 ; 1 on request Errors dseg at 0x21 wValueLo: DS 1 ; 0x21 TimeOut: DS 2 ; new in V2.5 BootKey: DS 8 ; Marker0: DS 1 ; rlen: DS 1 ; reqlen: DS 1 ; cmdbuffer: DS 64 ; DS 2 ; unused bRequest: DS 1 ; SnSum: DS 1 ; DescAddr: DS 2 ; CAddr: DS 2 ; Marker1: DS 1 STACK: xseg at 0 EP0_BUFFER: DS 8 ; 0x0000 the control endpoint DS 4 ; spare EP2_OUT_BUFFER: DS 64 ; 0x000C bulk out EP2_IN_BUFFER: DS 64 ; 0x004C bulk in cseg at StartAddress ; bootloader start ljmp
in „uC für 0,20€ CH552 / CH554 von WCH Billig Micro mit USB Funktion, Chip vorstellung“ · Mikrocontroller und Digitale Elektronik ·
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WZU-Rev1.3.pdf
R R R R R 0 0 0 0 0 0 LED2 0 0 0 0 0 0 6 6 6 6 6 6 0 6 6 6 6 6 6 2ZPD4,7 D10 750 R39 0 D6 D9 SA23-12 0 SA23-12 ISP ZPD4,7 SA23-12 0 SA23-12 ZPD4,7 K 4,0MHz 5 1 3 6 0 A R4 1M C1 1 5 0 R 6 C 1 SV2 3 7 0 k R R V 1 8 1 33p X1 NT04 4 3 2 1 1 2 R BC548B V 2 C µ 3 2 2 p 4 C 3 5 µ 7 X 2 ON 0R1 0 O 3 C 0 2 3
in „ELV - DCF Großuhr ELV9991 alias ZILOG Z86E0812PSC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LHC1-22XX_Super_LEDs.pdf
. Figure 6. Polar radiation pattern for LHC1 – xxxx – 120x / L2C1 – xxxx120xxxxxx. DS115 LUXEON CoB Core Range Product Datasheet 20150219 ©2015 Lumileds Holding B.V. All rights reserved. 12 Color Bin Definition 0.440 2200K 2700K 3000K BBL 0.420 2700K 3-step 3500K 3000K 3-step 3500K 3-
in „Entladeformel einer Spule“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Techniques_for_Robust_Touch_Sensing_Design_AN1334.pdf
Ensure unused LED/GPIO pins shorted to GND are not driven by controlling firmware. (Not Recommended) DS00001334B-page 12 2010-2013 Microchip Technology Inc. AN1334 • Bypass capacitor(s) should be placed close to the CAPACITIVE SENSOR SERIES RESISTANCE capacitive sensing controller’s VD pin(s). Adding
in „Wie realisiert man Sensortasten?“ · Analoge Elektronik und Schaltungstechnik ·
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FDB8832_Logic__N__Temp_ok_.pdf
a N-Channel Logic Level PowerTrench MOSFET ® n e l 30V, 80A, 2.1mΩ L g Features Applications i TypDS(on) 1.5mΩ atGS= 5V,DI = 80A 12V Automotive Load Control c e Typ g(5) 100nC atGS = 5V Starter / Alternator Systems v l Low Miller Charge Electronic Power Steering Systems P o Low rrBody Diode ABS w r
in „Mini-heizung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Akkulader5.bas
Diese Subroutine dient zum Setzen des D/A-Wandlers 'mit der Variable Value wird ein Wert mit maximal 12 Bit übergeben, welcher 'dann an den D/A wandler geschickt wird Local Dacvalue As Word If Value < 4096 Then 'Prüfen, ob wert nicht längerals 12 bit ist Portd.4 = 0 Daccs = 0 'Chip select auf low legen
in „DS1821 Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Transistor_Dual_PushPull_ZXTC2045E6.pdf
. 11. For device with two active die running at equal power, split heatsink 50% to each collector. 12. Thermal resistance from junction to solder-point (at the end of the collector lead). 13. Refer to JEDEC specification JESD22-A114 and JESD22-A115. ZXTC2045E6 2 of 6 March 2015 Document Number: DS33645
in „Push/Pull in spannungsgeregelter Stromquelle / Frage zur Auslegung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DMG1023UV.pdf
1.5 Ω R DS (ON) VGS = -1.8V, D = -150mA - 20 VGS = -1.7V, D = -100mA - 25 V = -1.5V, I = -100mA GS D Forward Transfer Admittance |Yfs - 0.9 - S VDS = -10V, D = -250mA Diode Forward Voltage V -0.8 -1.2 V V = 0V, I = -150mA SD GS S DYNAMIC CHARACTERISTICS (Note 7) Input Capacitance C iss - 59.76 - pF - 12.07 - VDS = -16V, VGS = 0V, Output Capacitance Coss pF f = 1.0MHz Reverse Transfer Capacitance C rss - 6.36 - pF Total Gate Charge - 622.4 - pC Qg VGS = -4.5V, VDS= -10V, Gate-Source Charge Q gs - 100.3
in „MOSFET Ersatztypen für DMG1024 u. DMG1023 gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FV-1.pdf
EEPROMInterface EEPROM FV1 Interface XTALDrvr SPN1001 XTAL Semiconductor www.spinsemi.com SPN1001-DS-170829 – 29 August 2017 Spin FV-1 Reverb IC Semiconductor Featuring Spin Semiconductor Virtual Analog Technology LIN 1 28 LOUT RIN ROUT MID FV-1 REFP GND REFN SPN1001 CLIP GND AVDD 28 SOIC DVDD GND POT2
in „Schaltung mit Mono-Output zu Stereo-Output abändern“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FV-1.pdf
EEPROMInterface EEPROM FV1 Interface XTALDrvr SPN1001 XTAL Semiconductor www.spinsemi.com SPN1001-DS-170829 – 29 August 2017 Spin FV-1 Reverb IC Semiconductor Featuring Spin Semiconductor Virtual Analog Technology LIN 1 28 LOUT RIN ROUT MID FV-1 REFP GND REFN SPN1001 CLIP GND AVDD 28 SOIC DVDD GND POT2
in „Plattform für Effektgeräte“ · Analoge Elektronik und Schaltungstechnik ·
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csio-SR.pdf
74HC165 74HC165 74HC595 U2 U3 U4 74165 74165 74595 IN15 11 P0 Q7 9 IN7 11 P0 Q7 9 13 G QA 15 OUT15 12 P1 Q7 7 12 P1 Q7 7 12 RCLK QB 1 OUT14 IN14 NC IN6 NC 10 2 c SRCLR QC OUT13 IN13 13 P2 IN5 13 P2 V 11 3 SRCLK QD OUT12 14 14 14 4 IN12 P3 IN4 P3 SER QE OUT11 5 IN11 3 P4 IN3 3 P4 QF OUT10 QG 6 4 4 OUT9 IN10 P5 IN2 P5 9 QHs QH 7 OUT8 5 P6 5 P6 IN9 IN1 6 6 IN8 P7 IN0 P7 1 PL 1 PL 74HC595 Vcc NC 10 DS 10 DS 74595 U5 2 CP1 2 CP1 13 G QA 15 OUT7 74HC123 U1 K 15 CP2 15 CP2 12 RCLK QB 1 OUT6 1 01 R c 10 SRCLR QC 2 OUT5 V CLR Re/Ce V 3 15C1 11 SRCLK QD 3 OUT4 14 4 Ce 143.3n SER QE OUT3 5 B Q QF OUT2 2
in „Z180-Stamp Modul“ · Mikrocontroller und Digitale Elektronik ·
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Datei
OneWire.h
); #endif /************************************************************************ * * readOneWireDS18B20 of DS 18B20 * ************************************************************************/ void readOneWireDS18B20(void); /************************************************************************ * * writeInOneWireDS18B20 of DS 18B20 * write 2 user bytes (temp. threshold hi + lo) in DS18B20 ************************************************************************/ void writeInOneWireDS18B20 (void); /**************
in „Böses One-Wire device“ · Mikrocontroller und Digitale Elektronik ·
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PDF
app105.pdf
designated as “named XXX.” NOTE: The high–resolution temperature equation is slightly different for the DS1821 as compared to the DS1620, DS1623, DS1625, DS2434, and DS2435. DS1620, DS1623, and DS1625: 1. Issue Start Convert protocol (EEh). 2. When conversion is finished, read 9–bit temperature value (AAh
in „DS18S20 hohe Auflösung berechnen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PSMN5R5-60YS.pdf
breakdown voltage D = 250 µA; V GS = 0 V; j = 25 °C 60 - - V VGS(th) gate-source threshold D = 1 mA; V DS= V GS; Tj= 25 °C; 2 3 4 V voltage see Figure 10 and 11 VGSth D = 1 mA; V DS= V GS; Tj= -55 °C; - - 4.6 V see Figure 11 D = 1 mA; V DS= V GS; Tj= 175 °C; 0.95 - - V see Figure 11 DSS drain leakage current
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Datei
Thermo.c
stdio.h> #ifdef LCD_TEST #include "..\lcd\lcd.h" #endif // Anchlussbelegung: An welchen Pins hängt der DS1820 #define W1_PIN PB0 #define W1_IN PINB #define W1_OUT PORTB #define W1_DDR DDRB // Kommandos an den DS1820 #define MATCH_ROM 0x55 #define SKIP_ROM 0xCC #define SEARCH_ROM 0xF0 #define CONVERT_T 0x44
in „Anfängerfrage: Temperaturgesteuerter Heizer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
at49f1024.pdf
O5 I I OI C N N V W N A A 1 1 A7 8 33 I/O6 6 5 4 3 2 1 4 34 4 4 4 4 A8 9 32 I/07 I/O12 7 39 A13 GND 10 10 x 14 mm 31 GND I/O11 8 38 A12 A9 11 30 I/O8 I/O10 9 37 A11 A10 12 29 I/O9 I/O9 10 36 A10 A11 13 28 I/O10 I/O8 11 35 A9 A12 14 27 I/O11 GND 12 34 GND A13 15 26 I/O12 NC 13 33 NC A14
in „Atmel Programmiersoftware“ · 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
CP2104-EK.pdf
interface J1 UART signal access connector J2, J3 GPIO access connector J4 Power connector DS0–DS3 Green GPIO LEDs DS4 Red SUSPEND indicator LED _________ SUSPEND LED J2 DS4 DS3 DS2 P1 P2 RS232 Transceiver CP2104 Pin 1 J3 DS1 Pin 2 J1 J4 DS0 Figure 3. CP2104 Evaluation Board with Default Shorting
in „[V] kleines Eval Kit Silabs CP2104-EK ( USB- RS232)“ · Markt ·
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PDF
Asus_p4p800-e_deluxe.pdf
• • 256MB KINGMAX MPXB62D-38KT3R KINGMAX SS KDL388P4EA-50 • • 512MB KINGMAX MPXC22D-38KT3R KINGMAX DS KDL388P4EA-50(A) • • 512MB KINGMAX MPXC22D-38KT3R KINGMAX DS V58C2256804SAT5B • • • 128MB NANYA NT128D64SH4B1G-5T NANYA SS NT5DS16M16BT-5T • • • 256MB Elixir M2U25664DS88B3G-5T Elixir SS N2DS25680BT-5T • • • 512MB Elixir M2U51264DS8HB3G-5T Elixir DS N2DS25680BT-5T • • • 256MB Kreton N/A Kreton SS VT3225804T-5 • • • 512MB Kreton N/A Kreton DS VT3225804T-5 • • • 256MB Veritech VT400FMV/2561103 Veritech SS VT56DD32M8PC-5 • • • A*
in „passende 2018er PC-Hardware unter Windows XP“ · PC Hard- und Software ·
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PDF
tk18a60v_en_datasheet_110131.pdf
V, f = 1 MHz 1600 pF iss DS GS Reverse transfer capacitance Crss 5 Output capacitance Coss 40 Effective output capacitance C o(er) VDS = 0 to 400 VGSV= 0 V 64 Gate resistance r V = OPEN, f = 1 MHz 10 Ω g DS Switching
in „Mosfet defekt - kann der Ersatztyp verwendet werden?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.lst
10 ; Public variables in this module 11 ;-------------------------------------------------------- 12 .globl _main 13 .globl _l 14 .globl _i 15 .globl _k 16 ;-------------------------------------------------------- 17 ; special function registers 18 ;--------------------------------------------------
in „Retro Fieber: Z80 oder 68000 ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ElektronikBauteile.pdf
0,07 € 0,58 € 77 3 Piano-Dip-Schalter, 8-polig DP 08 0,59 € 1,77 € 78 10 Op-amp, DIL-14 LM 324 DIL 0,12 € 1,20 € 79 1 Op-amp, DIL-14 LM 2902N 0,12 € 0,12 € 80 16 Pfostenbuchse, 20-polig, mit Zugentlastung PFL 20 0,13 € 2,08 € 81 8 Wannenstecker, 20-polig, gerade WSL 20G 0,07 € 0,58 € 82 2 Pfostenstecker
in „[V] - Elektroniksammlung“ · Markt ·
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PDF
2xNMOS_IRF7103.pdf
MaximumEffectiveTransientThermalImpedance,Junction-to-Ambient IRF7103 Current Regulator Same Type as D.U.T. 50K QG .2 F 12V .3 F 10V Q Q + GS GD VDS D.U.T. - VG V GS 3mA Charge IG ID Current Sampling Resistors Fig 12a. Basic Gate Charge Waveform Fig 12b. Gate Charge Test Circuit IRF7103 Peak Diode Recovery dv/dt Test Circuit
in „Spannungspeaks / Ripple durch Schaltregler. Abhilfe?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AVRnDxBoard.pdf
3K3 3K3 3K3 BSS138 BSS138 VDD OUT JP18 R42 R43 4 SDA U3 2 4 2 4 C 1 3K3 3K3 VCC C I2C PCA8574 1 JP12 JP13 V5V/3V3 SEL 2 C17 100n 1 3 1 3 3 1K R24 D13 C 12 P7 V A0 1 1K R23 D12 11 2 1K R22 D11 P6 A1 10 P5 A2 3 VCC VCC VCC 1K R21 D10 9 1K R20 D9 P4 7 P3 ~{INT}3 1K R19 D8 6 R44 R45 1K R18 D7 5 P2 14 3K3
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Datei
l__fung.bas
Bewegung Alias Pind.7 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 = . Const Pause = 150 '###
in „Ds1307 bleibt einach stehen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
at a nominal tude. 50%-50% duty cycle, facilitating high data rate operation. In this Data slicer DS2 can overcome this compromise once the signal case, the RF amplifiers are controlled by the PRATE resistor as de - level is high enough to enable its operation. DS2 is a “dB-below- scribed above. peak
in „OPV mit niedriger Eingangskapazität“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lt1157.pdf
possible to switch either supply or ground 3 Microamps Standby Current reference loads through a low R DS(ON) N-channel switch 80 Microamps ON Current (N-channel switches are required at 3.3V because P- Drives Low Cost N-Channel Power MOSFETs channel MOSFETs do not have guaranteed R with DS(ON) No External
in „3V Gate-Treiber gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
twi_lib.h
0x22 // Stops temp conversions when device is in continuous mode #define DS1631_ReadTemperature 0xAA // Reads last converted temperature #define DS1631_AccessTH 0xA1 // Reads or writes to the 2-byte T-High register #define DS1631_AccessTL 0xA2 // Reads or writes to the 2-byte
in „TWI MUX per SW an einem Port“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCDTRTC.PDF
1 DS1820 VCC 7 14 GND VCC VCC C GND L L V 2 R1 VCC VCC C C B A DQ 2k2 9 8 2 1 D IC3 G J1 J2 1 PB5/RST VCC 8 VCC 1WIRE 2 PB3 PB2 7 3 GND LCD-RS 3 PB4 PB1 6 LCD-CK 4 5 LCD-E J1X2 J1X2 GND GND PB0 ATTINY12 IC7
in „Assembler lernen für Mikrocontroller-Programmierung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Thermo.c
stdio.h> #ifdef LCD_TEST #include "..\lcd\lcd.h" #endif // Anchlussbelegung: An welchen Pins hängt der DS1820 #define W1_PIN PB0 #define W1_IN PINB #define W1_OUT PORTB #define W1_DDR DDRB // Kommandos an den DS1820 #define MATCH_ROM 0x55 #define SKIP_ROM 0xCC #define SEARCH_ROM 0xF0 #define CONVERT_T 0x44
in „AVR mit 3V, DS18S20 mit 5V“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
der Sensoren // Position 0-4 eig. ID, Pos. 5+6 ist die Temperatur, Pos. 7 CRC-Byte PROGMEM uint8_t DS18B20IDs[MAXSENSORS+1][OW_ROMCODE_SIZE] = { OW_ID_T01, // 1. DS18B20 OW_ID_T02, OW_ID_T03, OW_ID_T04, OW_ID_T05, OW_ID_T06, OW_ID_T07, OW_ID_T08, OW_ID_Last }; // Endmarker uint8_t auslesen = 0; // 0
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Datei
main.c
der Sensoren // Position 0-4 eig. ID, Pos. 5+6 ist die Temperatur, Pos. 7 CRC-Byte PROGMEM uint8_t DS18B20IDs[MAXSENSORS+1][OW_ROMCODE_SIZE] = { OW_ID_T01, // 1. DS18B20 OW_ID_T02, OW_ID_T03, OW_ID_T04, OW_ID_T05, OW_ID_T06, OW_ID_T07, OW_ID_T08, OW_ID_Last }; // Endmarker uint8_t auslesen = 0; // 0
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Datei
main.c
der Sensoren // Position 0-4 eig. ID, Pos. 5+6 ist die Temperatur, Pos. 7 CRC-Byte PROGMEM uint8_t DS18B20IDs[MAXSENSORS+1][OW_ROMCODE_SIZE] = { OW_ID_T01, // 1. DS18B20 OW_ID_T02, OW_ID_T03, OW_ID_T04, OW_ID_T05, OW_ID_T06, OW_ID_T07, OW_ID_T08, OW_ID_Last }; // Endmarker uint8_t auslesen = 0; // 0
in „AVR NET IO RoBue 1.5 Automatischer Ablauf“ · Mikrocontroller und Digitale Elektronik ·
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PDF
QF5252F.pdf
Current Quiescent Current BAT0 17 uA T ON Time TON Time TON 5 us Efficiency Efficiency η L1 =180uH,C =12uF 84 % QX5252_DS03EN QX Micro Devices Co., Ltd. 4 of 9 www.qxmd.com.cn QX5252 Solar LED Driver Typical Electrical Curves o VBAT=1.2V, A =25 C, unless otherwise specified QX Micro Devices Co., Ltd. QX5252
in „[V] Induktivitäten 4,7µH bis 560µH (Aliexpress-Bestellung teilen)“ · Markt ·