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PDF
SSM5N15FU__DP_.pdf
voltage VGS (V) R – I R – V DS (ON) D DS (ON) GS 10 6 Common Source Common Source I = 10 mA Ta = 25°C 5 D 8 e c n a t i ) i ) 4 e ( 6 e (Ω r r o N VGS = 2.5 V O N Ta = 100°C e ( e ( 3 r S r S o D 4 o D 25°C - R - R 2 i i r 4 V r D
in „(S)uche UPA572“ · Markt ·
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Datei
Clockplot_ino.ino
right servos // - added code to support DS1307, DS1337 and DS3231 real time clock chips // - see http://www.pjrc.com/teensy/td_libs_DS1307RTC.html for how to hook up the real time clock // delete or mark the next line as comment if you don't
in „Plotclock zusammenbauen und programmieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
plotclock.c
right servos // - added code to support DS1307, DS1337 and DS3231 real time clock chips // - see http://www.pjrc.com/teensy/td_libs_DS1307RTC.html for how to hook up the real time clock // delete or mark the next line as comment if you don't
in „Plotclock zusammenbauen und programmieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
ss=8,18,28,38,48,58 if ( ss%10 == 8 ) { // Auslesen? if ( auslesen == 1 ) { // (erste) ID ins RAM holen memcpy_P(tempID,DS18B20IDs[0],OW_ROMCODE_SIZE); while ( tempID[0] != 0 ) { //while ( tempID[0] == 0x10 ) { // Hiermit wird jeweils
in „HTML-Header zerschossen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
17060711197339.pdf
6.4Buck-boost 结构 可以保持 5S左右 R1=1M (Vomax−13)/5≤ R2 ≤ (Vomin−13)/1.5 其中: Vomax 是输出的最大电压 Vomin 是输出的最小电压 S41xx-DS-1p1 Page 6 of 10 S41xx 系列开关调色温控制芯片 SOP8 封装说明 S41xx-DS-1p1 Page 7 of 10 S41xx 系列开关调色温控制芯片 Min DIP8 封装说明 S41xx-DS-1p1 Page 8 of 10 S41xx 系列开关调色温控制芯片 SOT23-6 封装说明 S41xx-DS-1p1 Page 9 of 10 S41xx 系列开关调色温控制芯片
in „LED Lampe, automatische Farbtemperatur Umschaltung abschalten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BME680.pdf
sensor RMS Noise 0.12 Pa, equiv. to 1.7 cm Offset temperature coefficient ±1.3 Pa/K, equiv. to ±10.9 cm at 1 °C temperature change Modifications reserved |Data subject not change without notice | Printed in Germanynt number: BST-BME680-DS001-00 Revision_1.0_072017 Bosch Sensortec | BME680 Datasheet
in „PIR-Sensor wird von BME680 gestört, warum?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BME680.pdf
sensor RMS Noise 0.12 Pa, equiv. to 1.7 cm Offset temperature coefficient ±1.3 Pa/K, equiv. to ±10.9 cm at 1 °C temperature change Modifications reserved |Data subject not change without notice | Printed in Germanynt number: BST-BME680-DS001-00 Revision_1.0_072017 Bosch Sensortec | BME680 Datasheet
in „BME680 Berechnung Temperatur Luftfeuchtigkeit Druck Gas Fragen Initialisierung Assembler ASM ATmega8“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TB6560schv1.2.pdf
RE0/RD/AN5 8 25 DCY-1 39 RB6/PGC/(ICSP_CLK) RE1/WR/AN6 9 6 6 6 6 40 RB7/PGD/(ICSP_DATA) RE2/CS/AN7 10 24 DCY-2 SENS-B 11 6 B 8B B B D DS DS DS S 15 19 2 14 2 16 RC0/T1OSO/T1CLK RD0/PSP0 20 TQ1 SENS-A 1 17 RC1/T1OSI/CCP2* RD1/PSP1 21 1 1 . . 18 RC2/CCP1 RD2/PSP2 22 TQ2 R R 1 RC3/SCK/SCL RD3/PSP3 2 2 5
in „Schrittmotorsteuerung TB6560 - Motor spinnt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FDC638P-D.PDF
–3.8 A 52 65 V GS = –4.5 V, D = –4.5 J =125°C 54 72 ID(on) On–State Drain Current V GS = –4.5 V, V DS= –5 V –20 A g Forward Transconductance V = –10 V, I = –4.5 A 15 S FS DS D Dynamic Characteristics C iss Input Capacitance V DS = –10 V, V GS = 0 V, 1160 pF C oss Output Capacitance f = 1.0 MHz 195 pF
in „richtiger n-Kanal MOSFET, 3,3V soll 5V und 100mA schalten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BME280_Datasheet.pdf
700 … 900hPa pressure A rel ±0.12 hPa V = 3.3V 25 . . . 40 °C DD 7 When changing temperature by e.g. 10 °C at constant pressure / altitude, the measured pressure / altitude will change by (10 × TCO P. BST-BME280-DS001-10 | Revision 1.1 | May 2015 Bosch Sensortec © Bosch Sensortec GmbH reserves all rights
in „PIC18F, Sensor auslesen I2C“ · Mikrocontroller und Digitale Elektronik ·
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Datei
umrech.txt
------------------------------------------- Scanning-Bus-for-DS18X20 2-DS18X20-Sensor(s)-available: #-in-Bus-:1-:-FC:10-(18S)SN:-8C-79-0B-02-08-00-CRC:5F--CRC-O.K.- #-in-Bus-:2-:-FC:10-(18S)SN:-E0-76-0B-02-08-00-CRC:8E--CRC-O.K.- Sensor#-1-is-a-DS18S20/DS1820-which-is-parasite-powered
in „DS18S20 - extended resolution bei Temperaturen um 0°C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM2576.pdf
-36 DS011476-37 DS011476-38 7 www.national.com Typical Performance Characteristics (Circuit of Figure 2) (Continued) Feedback Pin Current Maximum Power Dissipation (TO-263) (See Note 10) DS011476-4 DS011476
in „Netzteil selbstbau“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NSC-LM2576-5.pdf
-36 DS011476-37 DS011476-38 7 www.national.com Typical Performance Characteristics (Circuit of Figure 2) (Continued) Feedback Pin Current Maximum Power Dissipation (TO-263) (See Note 10) DS011476-4 DS011476
in „KFZ Spannung mit LM2576 Diode vor die Spule?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BLF578.pdf
Parameter Conditions Min Typ Max Unit DSX drain cut-off current V GS = VGS(th) 3.75 V; 58 70 - A V = 10 V DS GSS gate leakage current V GS = 11 V; DS = 0 V - - 280 nA RDS(on) drain-source on-state V GS = VGS(th) 3.75 V; - 0.07 - resistance ID= 16.66 A Crs feedback capacitance V GS = 0 V; DS = 50 V; -
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PDF
PMV48XPA.pdf
provided in this document is subject to legalNexperia B.V. 2017. All rights reserved Product data sheet 10 March 2014 3 / 15 Nexperia PMV48XPA 20 V, P-channel Trench MOSFET - 10 017aaa125 D (A) Limit DSon = VDS D - 10 (1) (2) - 1 (3) (4) - 1 (5) - 10 (6) - 2 - 10- 10 1 - 1 - 10 - 10 V (V) DS I = single pulse
in „Bauteil gesucht: Markierung: WDZ - SOT23-3“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
ds1620.c
------------------------------------------------------- void DS1620_write(unsigned char m) // Funnktion um Daten in den DS1302 zu schreiben { unsigned char k,b=1; RST_1620 = 1; for (k=0; k<10; k++) { CLK_1620 = 0; DQ_1620 = (m & b); // Send bit to 1620 CLK_1620 =
in „Mal wieder DS1820“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irl630.pdf
Gate-to-Source Forward Leakage ––– ––– 100 nA V GS= 10V Gate-to-Source Reverse Leakage ––– ––– -100 V GS= -10V Qg Total Gate Charge ––– ––– 40 ID= 9.0A Qgs Gate-to-Source Charge ––– ––– 5.5 nC V DS= 160V Qgd Gate-to-Drain ("Miller") Charge ––– ––– 24 V GS
in „Kontrolle der Kühlkörperberechnung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CLC_Configurable_Logic_Cell_Tips__n_Tricks.pdf
selection of eight logic functions. These eight logic functions are shown in Figure 3 through Figure 10. DS41631B-page 2 2012 Microchip Technology Inc. Configurable Logic Cell Tips ’n Tricks FIGURE 3: AND-OR FIGURE 4: OR-XOR 2012 Microchip Technology Inc. DS41631B-page 3 Configurable Logic Cell Tips
in „Funktionsgenerator, NCO, PIC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FDW2501NZ.pdf
Temperature I = 250 µA, Referenced to 25°C 14 mV/°C ∆T J Coefficient D DSS Zero Gate Voltage Drain Current V DS= 16 V, V GS= 0 V 1 µA GSSF Gate–Body Leakage, Forward V GS= 12 V, V DS= 0 V 10 µA GSSR Gate–Body Leakage, Reverse V GS= –12 V, V DS= 0 V –10 µA On Characteristics (Note 2) VGS(th) Gate Threshold Voltage
in „N-Fet leitet auch bei 0v Gate-Spannung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
542-01945-0-Z86E04.pdf
General-Purpose Register File Port 2 Port 0 I/O I/O (Bit Programmable) Figure 1. Functional Block Diagram DS97Z8X1104 P R E L I M I N A R Y 3 Z86E04/E08 CMOS Z8 OTP Microcontrollers Zilog GENERAL DESCRIPTION (Continued) D7–0 AD 10–0 Z8 MCU AD 10–0 Address MUX D7–0 Data MUX EPROM Address AD 10–0 Counter D7–0
in „Pollin Ladegerät WCFD0801500IFOON : Rückwärts Ingenieur gesucht !“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NL6448AC33-29.pdf
cold cathode fluorescent lamp Power consumption 7.1 W (typ., 3.3 V, 12.0 V) 4 Data Sheet EN0439EJ1V0DS00 NL6448AC33-29 GENERAL SPECIFICATIONS Item Specification Unit Module size 243.0 ± 0.5 (H)× 185.1 ±0.5 (V)× 11.2 max. (D) mm +0.7 Inverter size 25.0 ± 0.5 (H)× 105.0–0.3 (V) ×10.2 max. (D) mm Display
in „[S] Leute die eine "Grafikkarte" für uC bauen wollen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP73837.pdf
Microchip Technology Inc. DS22071A-page 1 MCP73837/8 Package Types MCP73837/8 MCP73837/8 10-Lead DFN 3 mm x 3 mm 10-Lead MSOP V VAC 1 10 V BAT V AC 1 10 BAT VUSB 2 9 THERM VUSB 2 9 THERM STAT1 3 8 PG (TE) STAT1 3 8 PG (TE) STAT2
in „Verständnissfrage - MCP73837“ · Mikrocontroller und Digitale Elektronik ·
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Datei
230523_Log.txt
. 14:32:10 F: -TBildList.Destroy. 14:32:10 F: -TfrmTypAuswahl.FormDestroy 14:32:10 F: -mnBTypAendClick 14:32:10 F: -spBauteilTypClick 14:32:10 F: spFilterPaint 14:32:10 F: -spFilterPaint 14:32:10 F: spFilterPaint 14:32:10 F: -spFilterPaint 14:32:10 F: TBildList.OnTimer.BildBauteil False 0 0 155 0 0 0 14:32:10 F: qryBeforeOpen_ 14:32:10 SELECT Foto_ID FROM tree_typ WHERE ID=155 14:32:10 F: -qryBeforeOpen_ 14:32:10 F: -
in „EleLa - Elektronik Lagerverwaltung V4.0“ · Projekte & Code ·
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PDF
DMP10H400SEQ-838150.pdf
8 ( 10 T E R 6 V =-60V, I =-5A R 1 V DS D C ( PW=10ms G I V 4 R 0.1 P W100ms D P =1s I W TJ(MAX)150℃ T =25℃ P W10s 2 0.01 C DC Single Pulse DUT on 1*MRP board V GS-10V 0 0.001 0 2 4 6 8 10 12 14 16 18 0.1 1 10 100 1000 Qg, TOTAL GATE CHARGE (nC) V , DRAIN-SOURCE VOLTAGE (V) DS Figure 11. Gate Charge Figure 12. SOA, Safe Operation Area 4 of 7 DMP10H400SEQ December 2015 Document Number DS38396 Rev. 2 - 2 www.diodes.com
in „Externe Festplatte durch falsches Netzteil zerstört“ · PC Hard- und Software ·
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PDF
IPD053N06N_Infineon.pdf
. output characteristics 6 Typ. drain-source on resistance I =f(V ); T =25 °C R =f(I ); T =25 °C D DS j DS(on) D j parameter: V GS parameter: V GS 180 16 10 V 7 V 160 6 V 14 5 V 5.5 V 6 V 140 12 120 ] 10 5.5 V W ] 100 [ [ ) 8 I ( 80 D R 6 7 V 60 5 V 10 V 40 4 2 20 0 0 0.0 0.5 1.0 1.5 2.0 2.5 3.0 0 20
in „12V mit Logic Mosfet schalten - funktioniert nicht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tpc8123.pdf
I (A) D D 4 2009-07-27 TPC8123 R DS (ON) – Ta IDR – V DS 20 −100 Common source −4.5 Pulse test A −10 e 16 ( n −3 t D s Ω D = −2.8, −5.5, −11 A I −10 r m t - ( 12 e O ) r e N c r ( VGS = −4.5 V e −1 u D 8 ID = −2.8, −5.5, −11 A r VGS = 0 V - R v −1 i r r VGS = −10 V i D 4 r Common source D Ta = 25°C Pulse test 0−80 −40 0 40 80 120 160 −0.10 0.2 0.4 0.6 0.8 1 1.2 Ambient temperature Ta (°C) Drain−source voltage V (V) DS Capacitance – V DS Vth – Ta 10000 −2 V (
in „Autobatterie Ladegerät Transistor defekt - Äquivalentes Bauteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MTE011N10RFP-CystechElectonics.pdf
Electronics Corp. Revised Date : 2016.04.27 Page No. : 1/ 8 N-Channel Enhancement Mode Power MOSFET MTE011N10RFP BV DSS 100V ID@V GS=10V, TC=25°C 34A Features ID@V GS=10V, TA=25°C 9A Low On Resistance R DS(ON@V GS=10V, ID=11A 11 mΩ(typ) Simple Drive Requirement Low Gate Charge Fast Switching Characteristic
in „IC identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MPLINK_TUTORIAL.pdf
button. Then click on Node Properties. Figure 2.2: Edit Project Dialog 1998 Microchip Technology Inc. DS51185A-page 9 MPLINK Tutorial 2. In the Node Properties dialog, select MPLINK as the Language Tool and, if desired, set other linker options. Figure 2.3: Node Properties Dialog DS51185A-page 10 1998
in „Anfängerfrage zu Assembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM78xx__Fixspannungsregler.pdf
Performance Characteristics 8 X X Maximum Average Power Dissipation Maximum Average Power Dissipation DS007746-5 DS007746-6 Peak Output Current Output Voltage (Normalized to 1V at T J 25˚C) DS007746-7 DS007746-8 Ripple Rejection Ripple Rejection DS007746-9 DS007746-10 5 www.national.com X X 7 Typical Performance Characteristics (Continued) M L Output Impedance Dropout Voltage DS007746-11 DS007746-12 Dropout Characteristics Quiescent Current DS007746-13 DS007746-14 Quiescent Current DS007746-15 www.national.com 6 M 7 Physical Dimensions inches (millimeters) unless otherwise noted
in „Spannungsversorgung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
78XX_05_12_15.pdf
Performance Characteristics 8 X X Maximum Average Power Dissipation Maximum Average Power Dissipation DS007746-5 DS007746-6 Peak Output Current Output Voltage (Normalized to 1V at T J 25˚C) DS007746-7 DS007746-8 Ripple Rejection Ripple Rejection DS007746-9 DS007746-10 5 www.national.com X X 7 Typical Performance Characteristics (Continued) M L Output Impedance Dropout Voltage DS007746-11 DS007746-12 Dropout Characteristics Quiescent Current DS007746-13 DS007746-14 Quiescent Current DS007746-15 www.national.com 6 M 7 Physical Dimensions inches (millimeters) unless otherwise noted
in „7812 Spannungsregler nur 5V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
si1402dh.pdf
e n 0.0 ) r ( V e 4 ) o ( - 0.2 P G V 2 - 0.4 - 0.6 0 - 50 - 25 0 25 50 75 100 125 150 0.01 0.1 1 10 30 T J Temperature (°C) Time (s) Threshold Voltage Single Pulse Power, Junction-to-Ambient 100 DM Limited Limited by R * 10 DS(on) ) 100 µs ( n e u C 1 1 ms i r ID(on) - Limited 10 ms ID 0.1 TC= 25 °C 100 ms Single Pulse 10 s, 1 s DC BVDSS Limited 0.01 0.1 1 10 100 V DS- Drain-to-Source Voltage (V) * V > minimum V at which R is specified GS GS DS(on) Safe Operating Area, Junction-to-Case www.vishay.com Document Number:
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Datei
ds1307.c
Stunden = 0; int Wochentag = 0; int Datum = 0; int Monat = 0; int Jahr_msb = 0; int Jahr_lsb = 0; int ds1307_started = 0; //DS1307 aktivert/deaktiviert static volatile int RX_buffer[10]; //RS232 Receive Buffer static volatile int index_rxBuf_W = 0; //Index wo RXBuffer zuletzt geschrieben wurde static volatile
in „DS1307 verhält sich komisch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irf3708.pdf
PULSE WIDTH Tj = 25°C Tj = 175°C 1 1 0.1 1 10 100 0.1 1 10 100 V , Drain-to-Source Voltage (V) V , Drain-to-Source Voltage (V) DS DS Fig 1. Typical Output Characteristics Fig 2. Typical Output Characteristics 1000 2.5 D = 62A e ) n ( t t i 2.0 e
in „IRF3708 als Schalter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
fsp204-2f01-sema_2.pdf
1 2 3 4 5 6 7 8 D S6 DS8 ! F1 FL1:2 ! FL2:1 FL3:1 L1 B A T2 4 ! BS1 RS18 L ! 43 21 21 ! N TC1 R2 CY 1 ! BD1 ! D 5 + C1 R 23 R10 T2:9 DS5 RS 14 Q S13 1 ! C 2 QS10 C ! RS 15 RS20 C7 C 8 L2 D 3 QS 5 QS 9 Z1 ! L5 T2:3 RS 12 ! C Y2 D 1 T2 11 DS 9 D6 T2 10 7 5 6 D 12 R1 34 34 C 29 R 41 T2:6 DS 7 S S S D N FL11 FL2 2 F L32 T3 2 D R R DS10 ! ! ! ! ! R39 Q S7 T31 L4 4 D10 D11 ZD S1 F G C25 RS 2 ! R36 L4:10 C9 Q42N 4401 SP08N80T25 QS16 CN 1 Q3 SPP08N80C
in „SNT FSP204-2F01(S7) Problem 24V Ausgang“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
00954A.pdf
Hz C = C1 = 0.47 µF x 1.20 = 0.56 µF (assuming ±20% capacitor) R = R1 = 470 x 0.9 = 423 (assuming ±10% resistor) INMAX = 16.0 mA FIGURE 2: V OUT AT START-UP WITH 10 KΩ LOAD 2004 Microchip Technology Inc. DS00954A-page 3 AN954 If the load is increased, the behavior of the circuit changes in several
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PDF
00954A.pdf
Hz C = C1 = 0.47 µF x 1.20 = 0.56 µF (assuming ±20% capacitor) R = R1 = 470 x 0.9 = 423 (assuming ±10% resistor) INMAX = 16.0 mA FIGURE 2: V OUT AT START-UP WITH 10 KΩ LOAD 2004 Microchip Technology Inc. DS00954A-page 3 AN954 If the load is increased, the behavior of the circuit changes in several
in „Kondensatornetzteil: Frage.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
transformerless_AC_DC.pdf
Hz C = C1 = 0.47 µF x 1.20 = 0.56 µF (assuming ±20% capacitor) R = R1 = 470 x 0.9 = 423 (assuming ±10% resistor) INMAX = 16.0 mA FIGURE 2: V OUT AT START-UP WITH 10 KΩ LOAD 2004 Microchip Technology Inc. DS00954A-page 3 AN954 If the load is increased, the behavior of the circuit changes in several
in „230V AC auf 5V DC Bauteile“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Therm.txt
1 ...poke to PSW to use DSEG ; This is internal data memory ORG 20H ; Bit adressable memory SENP: DS 1 SENP1 BIT SENP.0 MINUS BIT SENP.1 MIN1 BIT SENP.2 COUNT: DS 1 SPEED: DS 1 VALUE_1: DS 1 VALUE_2: DS 1 VALUE_3: DS 1 TEMP1: DS 1 TEMP1D: DS 1 RAM: DS 9 TEP1: DS 1 TEP2: DS 1 STACK: DS 1 ; Stack begins
in „Programm(A51) DS1820 auf DS18b20 Umstellen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Therm.txt
1 ...poke to PSW to use DSEG ; This is internal data memory ORG 20H ; Bit adressable memory SENP: DS 1 SENP1 BIT SENP.0 MINUS BIT SENP.1 MIN1 BIT SENP.2 COUNT: DS 1 SPEED: DS 1 VALUE_1: DS 1 VALUE_2: DS 1 VALUE_3: DS 1 TEMP1: DS 1 TEMP1D: DS 1 RAM: DS 9 TEP1: DS 1 TEP2: DS 1 STACK: DS 1 ; Stack begins
in „Programm(A51) DS1820 auf DS18b20 Umstellen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
21709c_EEPROM.pdf
which can be obtained from Microchip’s web site: www.microchip.com. 2003 Microchip Technology Inc. DS21709C-page 3 24AA02/24LC02B FIGURE 1-1: BUS TIMING DATA 5 4 2 3 SCL 7 8 9 10 6 SDA 14 IN 11 12 SDA OUT FIGURE 1-2: BUS TIMING START/STOP D4 SCL 6 7 10 SDA Start Stop DS21709C-page 4 2003 Microchip
in „EEPROM mit Infineon XC2200 ueber IIC benutzten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
21709c.pdf
which can be obtained from Microchip’s web site: www.microchip.com. 2003 Microchip Technology Inc. DS21709C-page 3 24AA02/24LC02B FIGURE 1-1: BUS TIMING DATA 5 4 2 3 SCL 7 8 9 10 6 SDA 14 IN 11 12 SDA OUT FIGURE 1-2: BUS TIMING START/STOP D4 SCL 6 7 10 SDA Start Stop DS21709C-page 4 2003 Microchip
in „24LC02B mit (scheinbar) seltsamer Adressierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PMV15UNEA.pdf
charge T j 25 °C - 1.3 - nC GS QGD gate-drain charge - 2.1 - nC Ciss input capacitance V DS = 10 V; f = 1 MHz; GS = 0 V; - 1220 - pF T = 25 °C Coss output capacitance j - 124 - pF Crss reverse transfer - 102 - pF capacitance d(on) turn-on delay time V DS = 10 V; D = 6 A; VGS= 4.5 V; - 10 -
in „Wahl des SynchrongleichrichterMOSFETs für Buck Converter“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
ds1307.c
}; /* * initialize the accellerometer */ void ds1307_init() { #if DS1307_I2CINIT == 1 //init i2c i2c_init(); _delay_us(10); #endif } /* * transform decimal value to bcd */ uint8_t ds1307_dec2bcd(uint8_t val) { return val + 6 * (val / 10); } /* * transform
in „ATmega16 liefert kein Signal an allen Pins außer I2c“ · Mikrocontroller und Digitale Elektronik ·
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PDF
93C86.pdf
1 01 A10 A9 A8 A7 A6 A5 A4 A3 A2 A1 A0 D7 - D0 (RDY/BSY) 22 WRAL 1 00 0 1 X X X X X X X X X D7 - D0 (RDY/BSY) 22 EWDS 1 00 0 0 X X X X X X X X X — High-Z 14 DS21132F-page 4 1996-2012 Microchip Technology Inc
in „asm Code für EEPROM 93C86“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BSS84_P-Kanal_FET.pdf
GS(th) Gate Threshold Voltage D = –1 mA,Referenced to 25°C 3 mV/°C ∆T J Temperature Coefficient R DS(on) Static Drain–Source VGS = –5 V, ID= –0.10 A 1.2 10 Ω On–Resistance VGS= –5 V,ID= –0.10 A,T J125°C 1.9 17 ID(on) On–State Drain Current VGS = –5 V, V DS= – 10 V –0.6 A g FS Forward Transconductance V DS= –25V, ID= – 0.10 A 0.05 0.6 S Dynamic Characteristics C iss Input Capacitance V = –25 V, V = 0 V, 73 pF DS GS C oss Output Capacitance f = 1.0 MHz 10 pF C rss Reverse Transfer Capacitance 5 pF R Gate
in „FET-Schaltung für Relais-Steuerung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2210280930_Diodes-Incorporated-AP63300WU-7_C2158012.pdf
VOUT = 3.3V, L = 4.7μH 100 90 80 ) 70 ( y 60 n 50 i f 40 E 30 20 10 0 0.001 0.010 0.100 1.000 10.000 IOUT (A) Figure 3. AP63301 Efficiency vs. Output Current AP63300/AP63301 2 of 22 August 2019 Document number: DS42002 Rev. 3 - 2 www.diodes.com © Diodes Incorporated
in „Step-Down-Wandler pfeift sehr laut, was tun?“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
24LC256_32k_I2C-EEPROM.pdf
obtained from Microchip’s web site: www.microchip.com. FIGURE 1-1: BUS TIMING DATA 5 2 D4 4 SCL 7 3 8 9 10 SDA 6 IN 16 13 14 SDA OUT WP (protected) 11 12 (unprotected) DS21203M-page 4 2004 Microchip Technology Inc. 24AA256/24LC256/24FC256 2.0 PIN DESCRIPTIONS The descriptions of the pins are listed in Table
in „immer noch EEprom“ · Mikrocontroller und Digitale Elektronik ·
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Datei
diagramm.asm
hinweis0: db "Cursor-up/-down + Enter-Taste nutzen" org 380h program: mov ax,2 ;Video-Modus 80X25X2 int 10h mov dx,VIDEO ;Extra-Segment initialisieren mov es,dx mov dx,DATEN ;Datensegment initialisieren mov ds,dx call _mono ;Attribut-Bytes initial. invers/normal call _clearscr ;Cursor weg push ds ;Datensegment
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PDF
IRF7401_IR.pdf
1.5V 20µs PULSE WIDTH 20µs PULSE WIDTH TA= 25°C TJ= 150°C 1 A 1 A 0.1 1 10 100 0.1 1 10 100 V , Drain-to-Source Voltage (V) V , Drain-to-Source Voltage (V) DS DS Fig 1. Typical Output Characteristics Fig 2. Typical Output Characteristics 1000 2.0 c ID = 6.9A a A s ( s n e 1.5
in „IRF7401 - Rds(On)?“ · Analoge Elektronik und Schaltungstechnik ·
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shugart.txt
from pin signal pin signal pin signal pin signal pin signal NC 4,6 NC Drive 8 True ready/NC Drive 10 Two sided/FD2S Drive 22 RDY Drive 24 Sector/NC +5 V 1,3,5 1 POW4 GND 15,17,19 2 POW3 GND 23,25 3 POW2 +12 V 4 POW1 FDC 2 DENSEL 2 REDWC 5 LSD 2 DENSEL/REDWC FDC 4 INU/HLD 4 NC 16 INU/DLOCK FDC 6 DS3/4 6 NC 32 SEL4 Drive 2 IDX 8 IDX 8 INDEX 6 IDX 20 IDX FDC 4 DRSEL 10 DS0/1 10 MOTEA 7 MOT1 26 SEL1 FDC 12 DS1/2 12 DRVSB 8 DS2 28 SEL2 FDC 14 DS2/3 14 DRVSA 9 DS1 30 SEL3 FDC 10 MOTon 16 MOTON 16 MOTEB 10 MOT2 18 LSD/HDL FDC 12 DIR 18 DIREC 18 DIR 11 DIR 34 DIR FDC 14
in „Ersatz einer Diskette im Diskettenlaufwerk??“ · Mikrocontroller und Digitale Elektronik ·