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AN-4147_Design_Guidelines_for_RCD_Snubber_Flyback__FAI.pdf
FSDM311, The power emission from R snis calculated as follows: respectively. V 2 2 P = sn = 150 = 1.6W (10) Rsn 14k Let the maximum ripple of the snubber capacitor voltage be 10% and the snubber capacitance is obtained as follows: V Csn = sn = 150 = 10nF (11) ΔVsn sn s 15 ×4k 6×k The results with 14kΩ (3W) and 10nF are shown in Figures 6 and 7. Figure 6. Start-up Waveforms with 10nF Snubber Capacitor and 14kΩ Snubber Resistor © 2006 Fairchild Semiconductor Corporation www.fairchildsemi.com Rev. 1.1.0 4 AN-4147
in „Flyback-Wandler Störungen auf Versorgung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Design_Guidelines_for_RCD_Snubber_of_Flyback_Converters-Fairchild_AN4147.pdf
FSDM311, The power emission from R snis calculated as follows: respectively. V 2 2 P = sn = 150 = 1.6W (10) Rsn 14k Let the maximum ripple of the snubber capacitor voltage be 10% and the snubber capacitance is obtained as follows: V Csn = sn = 150 = 10nF (11) ΔVsn sn s 15 ×4k 6×k The results with 14kΩ (3W) and 10nF are shown in Figures 6 and 7. Figure 6. Start-up Waveforms with 10nF Snubber Capacitor and 14kΩ Snubber Resistor © 2006 Fairchild Semiconductor Corporation www.fairchildsemi.com Rev. 1.1.0 4 AN-4147
in „Schaltnetzteil Verständnisfrage“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
on-semiconductor-rfp70n06-mosfet.pdf
On Resistance (Note 2) r I = 70A, V = 10V (Figure 9) - - 0.014 Ω DS(ON) D GS Turn-On Time (ON) VDD = 30V, D ≈ 70A, RL= 0.43Ω, - - 190 ns V = 10V, R = 2.5Ω Turn-On Delay Time td(ON) GS GS - 10 - ns (Figure 13) Rise Time tr - 137 - ns Turn-Off
in „DC Wandler wiederbeleben“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
temp2.c
Start mit Master-Reset-Impuls u. Abfrage: Slave presence Bus_Reset(); // Skip ROM-Befehl, da nur ein DS1820 angeschlossen ist Byte_Schreiben(0xCC); Byte_Schreiben(0x44); // Befehl: Start Conversion an DS1820 _delay_ms(1000); // >800 ms warten // 2.Befehlszyklus: Messwerte (Scratch Pad) auslesen // Start
in „DS18S20, Atmega8, AVR Studio“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2N7000-D.PDF
− −10 nAdc ON CHARACTERISTICS (Note 1) Gate Threshold Voltage (VDS = VGS, D = 1.0 mAdc) VGS(th) 0.8 3.0 Vdc Static Drain−Source On−Resistance rDS(on) W (VGS = 10 Vdc,DI = 0.5 Adc) − 5.0 (GS = 4.5 Vdc,DI = 75 mAdc) − 6.0 Drain−Source On−Voltage VDS(on) Vdc (V = 10 Vdc, I = 0.5 Adc) − 2.5 GS D (GS = 4.5 Vdc,DI = 75 mAdc) − 0.45 On−State Drain Current (VGS = 4.5 Vdc, DS= 10 Vdc) d(on) 75 − mAdc Forward Transconductance (VDS = 10 Vdc,DI = 200 mAdc) gfs 100 − mmhos
in „ESD-Demonstrator / 2n7000 MOS-FET zerstören“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
1.5KE6V8A.PDF
bi-directional device. 2. For bi-directional devices hRving V volts and underR the I limit is doubled. DS21503 Rev. 10 - 2 2 of 4 1.5KE6V8(C)A - 1.5KE400(C)A www.diodes.com 10,000 )p Ip Measured at ( 100 Peak Valpp I Zero Bias T F N ( R E R C 1000 U A C Half Valpp I /2 I S A L P U 50 C Measured at P ,T Stand-off
in „Welches Bauteil (Diode?) ist das?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STD5NM50.pdf
Voltage IDSS Zero Gate Voltage VDS = Max Rating 1 µA Drain Current GS = 0) VDS = Max Rating,CT = 125 °C 10 µA IGSS Gate-body Leakage VGS = ±30V ±100 nA Current (DS = 0) ON (1) Symbol Parameter Test Conditions Min. Typ. Max. Unit V GS(th) Gate Threshold Voltage VDS = VGS,DI = 250µA 3 4 5 V RDS(on) Static Drain-source
in „Dynamischer Wärmewiderstand => Cth Rth“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
printf_large.c
} if (f>0x00ffffff) { // this part is from Frank van der Hulst signed char exp; for (exp = 0; f >= 10.0; exp++) f /=10.0; for ( ; f < 1.0; exp--) f *=10.0; if (negative) { output_char ('-', p); charsOutputted++; } else { if (sign) { output_char ('+', p); charsOutputted++; } } charsOutputted += OUTPUT_FLOAT
in „Float-Berechnung auf 8051 mit SDCC“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Schaltplan mit zwei 74HC595 Schieberegistern
+3.3VIN C? 100nF/50V 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
VNS1NV04DTR.pdf
DRAIN 2 INPUT 2 CURRENT AND VOLTAGE CONVENTIONS IN1 RIN1 D1 INPUT 1 DRAIN 1 V IIN2 RIN2 ID2 V IN1 DS1 INPUT 2 DRAIN 2 V IN2 SOURCE 1 V SOURCE 2 DS1 2/14 1 VNS1NV04D THERMAL DATA Symbol Parameter Value Unit R Thermal Resistance Junction-lead (per channel) MAX 30 °C/W thj-lead R thj-amb Thermal Resistance
in „[V] Highside-Schalter“ · Markt ·
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Datei
RL78-Toolchain-Prefix-File-List.txt
users 4200088 Jan 5 10:51 rl78-elf-objcopy -rwxr-xr-x 1 mw users 4844176 Jan 5 10:51 rl78-elf-objdump -rwxr-xr-x 1 mw users 3455456 Jan 5 10:51 rl78-elf-ranlib -rwxr-xr-x 1 mw users 1213408 Jan 5 10:51 rl78-elf-readelf -rwxr-xr-x
in „RL78/G14 Renesas - Free Linux Toolchain“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ssd1803a.pdf
frequency for FE frequency (POR: 011) (when DH’ = "1") POR DS4~1=1111 Determine the line for display shift. DS1 = "1/0": 1st line display shift enable/disable Shift DS2 = "1/0": 2nd line display shift enable 1 1 0 0 0 0 0 1 DS4 DS3 DS2 DS1 enable/disable DS3 =
in „Probleme mit EADOGM204-4 und ATMEGA32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ssd1803a_2_0.pdf
frequency for FE frequency (POR: 011) (when DH’ = "1") POR DS4~1=1111 Determine the line for display shift. DS1 = "1/0": 1st line display shift enable/disable Shift DS2 = "1/0": 2nd line display shift enable 1 1 0 0 0 0 0 1 DS4 DS3 DS2 DS1 enable/disable DS3 =
in „Display DOGM-204A/SSD1803A mit I2C - ROM Auswahl“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TWI_DS1307_routines.asm
rcall BIN_to_BCD rcall TWI_byte_send ldi temp1, 12 rcall BIN_to_BCD rcall TWI_byte_send ldi temp1, 10 rcall BIN_to_BCD rcall TWI_byte_send ldi temp1, 0b00010000 ;SQWE rcall TWI_byte_send rcall TWI_stop clr temp1 sts TWCR, temp1 ret ;________________________________________________________ banner_DS1307: .DB "DS1307 RTC ", 0x00 banner_err: .DB "I2C Error", 0x00 banner_status: .DB "Status: ", 0x00, 0x00 init_err: .DB "Init Err", 0x00, 0x00 clock_values: .DB 0,0x47,0b00100000,4,0x03,0x12,0x09,0b00010000,0,0 nop
in „Probleme mit DS1307 und dessen Zeitausgabe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Halbleiterliste.pdf
2SK30A 1 Mosfet 4049BCD 4 Hex Inverting Buffer https://pdf.datasheetcatalog.com/datasheets/70/109093_DS.pdf 4085PC 4 CMOS Dual 2-wide 2-input and-or-invert gate https://www.ti.com/lit/ds/symlink/cd4085b.pdf 4520BPC 2 Dual 4 bit binary counter https://datasheetspdf.com/pdf-file/504568/FairchildSemiconductor
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PDF
EG4S20_integrated_SDRAM.pdf
IP DQ7 Data pin 7 Connect with IP DQ8 Data pin 8 Connect with IP DQ9 Data pin 9 Connect with IP DQ10 Data pin 10 Connect with IP DQ11 Data pin 11 Connect with IP DQ12 Data pin 12 Connect with IP DQ13 Data pin 13 Connect with IP DQ14 Data pin 14 Connect with IP DQ15 Data pin 15 Connect with IP DQ16 Data
in „SDRAM Burst lesen ohne Unterbrechung über Column, Row und Banks hinaus“ · FPGA, VHDL & Co. ·
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Datei
index.html
f0f8ff; } h1 { color: #2c3e50; font-size: 28px; } .reading { font-size: 64px; color: #007bff; margin: 10px 0; } .time-format { font-size: 38px; color: #7b7bff; margin: 10px 0; } .co2 { font-size: 64px; color: #28a745; font-weight: bold; margin: 15px 0; } .temp { font-size: 36px; color: #ff6b35; font-weight
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Datei
make_debug.txt
fp64_debug.o fp64_disd.o fp64_divsf3x.o fp64_ds.o fp64_expx.o fp64_exp10.o fp64_fdim.o fp64_fixxdfsi.o fp64_floor.o fp64_fma.o fp64_fmax.o fp64_fmod.o fp64_fmodx.o fp64_frexp.o fp64_fsplit3.o fp64_ftoa1.o fp64_gesd2.o fp64_getexp10.o fp64_hypot.o
in „fp64lib in Atmel Studio 7 importieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Main.c
include <stdio.h> #include <user_io.c> #include <avr/signal.h> #include <avr/interrupt.h> #include <ds18s20.h> #include <ds18s20.c> /* FCPU = 8 MHz _delay_ms = 32,77 ms _delay_us = 96,00 us*/ float temperature=0; uint8_t t1=13,t2=13,t3=10,t4=11; int main (void) { // PORTA (LED-OUT) DDRA = 0xFF; PORTA
in „float-wert umwandeln“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Schaltplan Dual Slim FDD Adapter v1.1
Dual Slim FDD Adapter v1.1 (C) RBSC 2022 CN3 1 DCHG 2 INDEX 3 NC1 4 DS1 5 NC2 6 DS0 7 INDEX 8 READY 9 INDEX 10 MOTON 11 DS0 12 DIR 13 DS1 14 STEP 15 DS2 16 UD 17 MOTON 18 UGATE 18 DIR 19 STEP 20 STEP 20 TK0 21 WD 22 WD 22 APBOT 23 WD 24 WGATE 24 WGATE 25 2KGND 26 SIDESEL
in „Pinbelegung 3,5" Floppy mit FPC26“ · PC Hard- und Software · · Schaltpläne
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PDF
NTE2399.pdf
CoefficienV (BR)DSSReference to +25 CD I = 1mA − 1.4 − V/ C T J Static Drain−to−Source On−ResistanReDS(on) VGS = 10V,DI = 1.9A, Note 4 − − 0.50 Gate Threshold Voltage VGS(th) VDS = VGS, D = 250 A 2.0 − 4.0 V Forward Transconductance gfs VDS = 100V,DI = 1.9A, Note4 2.1 − − mhos Drain−to−Source Leakage
in „Kühlkörper eines NTE2399 berechnen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
data.pdf
thickness. Symbol Parameter Min. Max. Units Test Conditions V Maximum drain to source voltage — 47 ds V in Maximum Input voltage -0.3 7 V Iin, max Maximum IN current -10 +10 mA I Diode max. continuous current) sd cont. (rth=62 C/W) IPS0151 — 2.8 TO220 free air o (rth=5 C/W) IPS0151 — 35 A TO220 + good
in „Problem mit MOSFET-Schalter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
p75nf75.pdf
Drain-source breakdown V(BR)DSS voltage ID= 250µA, GS = 0 75 V V = Max rating, IDSS Zero gate voltage drain DS 1 µA current (GS= 0) VDS = Max rating @125°C 10 µA Gate body leakage current IGSS VGS = ±20V ±100 nA (VDS = 0) VGS(th) Gate threshold voltage VDS= VGS, D = 250µA 2 3 4 V R Static drain-source on V = 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
in „Unbekanntes Bauteil im Akkuschrauber“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
Spezifikationstabelle für Series 900 Disk und Washer Resistors
RoHS Compliant SPECIFICATION Type Style Res. range (Ω) Peak energy (J) Watts Typical weight (g) 911DS Disk 10-750 9,000 9.5 80 912DS Disk 5-350 21,000 12 165 913DS Disk 3-220 33,000 14 275 914DS Disk 2-140 52,500 16 455 915DS Disk 1.5-100 70,000 18 608 913WS Washer 3.5-260 27,600 14 230 914WS Washer
in „Neue Bauteile – kleine Relais, nicht durchbrennende LED-Serienschaltungen und Co“ · Analoge Elektronik und Schaltungstechnik · · Screenshots
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PDF
2013821185244121.pdf
Coss VDS = 10 V, VS = 0 V,f = 1.0 MHz 175 pF Reverse Transfer Capacitance C rss 85 pF Total Gate Charge Qg 7 10 Gate-Source Charge Q gs VDS = 10V , VS = 4.5V , I = 3A 1.2 nC Gate-Drain Charge Q gd 1.9 Turn-On Delay Time t(on) 8 16 Rise Time tr VDD = 10V 10 18 ns Turn-Off Delay Time t(off) I = 1A , VS = 4.5V , R = 6 18 29 Fall Time tf 5 10 Maximum Continuous Drain-Source Diode Forward Current IS 1.3 A Diode Forward Voltage * VSD S = 1.7 A, GS= 0 V 0.65
in „Laderegler Li-Ion 3s“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
AquaDosierung.txt
= now() + 30; // NEU pinMode(tasterl, INPUT); // Port definieren NEU } void loop() { if (hour() < 10) { // wenn kleiner 10 schreibe eine 0 davor lcd.setCursor(0, 0); lcd.print("0"); pause_hour = 1; } else pause_hour = 0; if (minute() < 10) { // wenn kleiner 10 schreibe eine 0 davor lcd.setCursor(3, 0); lcd.print("0"); pause_min = 4; } else pause_min = 3; if (day() < 10) { // wenn kleiner 10 schreibe eine 0 davor lcd.setCursor(10, 0); lcd.print("0"); pause_day = 11; } else pause_day = 10; if (month() < 10) { // wenn kleiner 10 schreibe eine 0 davor lcd.setCursor(13,
in „Arduino LCD Backlight auto off“ · Mikrocontroller und Digitale Elektronik ·
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PDF
heds-1300.pdf
C F O 1.1 C T O I0.4 F O T A0.3 – 1.0 O 0.2 H 0.2 VF H HEDS-1300 P 0.1 0.9 P 0 HEDS-1200 0.8 0 0 5 10 15 20 25 30 35 40 45 50 1 µA 10 µA 100 µA 1 mA 10 mA 100 mA 2.5 3.0 3.5 4.0 4.55.0 5.5 6.0 6.5 IF– LED FORWARD CURRENT – mA F – FORWARD CURRENT (LOG SCALE) DISTANCE FROM REFERENCE PLANE OF SENSOR – mm
in „Kugelschreiber mit Barcodescanner bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTC1923.pdf
Regulators U TYPICAL APPLICATIO Laser Temperature Control Loop Achieving Setpoint Stability of 0.01°C 10k 10k 0.1% PLLLPF RT 330pF 82k + RSLEW CT 1µF REF REF VREF V DD TMP LA = 10 VDD SDSYNC VREF 10k CMD LTC1658 VOUT – NTC 4.7µF CNTRL PDRVB 10µF 10M EAOUT NDRVB MPA* L1 L2 MPB** 100k 10µH COOLER 10µH FB
in „Peltier und PWM?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
en.CD00002654.pdf
voltage D GS V DS= max rating 50 µA DSS Zero gate voltage V = max rating, Drain currentGSV= 0) T C=125°C 500 µA s ) GSS Gate-body leakage V GS= ± 20 V ±400 nA current DS = 0) u c VGS(th) Gate threshold voltage V DS= VGS, D = 250 µA 2 d3 4 V R Static drain-source on V = 10 V, I = 125 A r o 0.0045 0.0055 Ω DS(on) resistance GS D P te Table 6. Dynamic le o Symbol Parameter Tess conditions Min. Typ. Max. Unit gfs Forward transconductance VDS = 20 , D =70 A - 60 - S Ciss Input
in „STE250NS10 Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
TempDisplay.c
**********************************************/ /* writeSensor /* Function: Writes commands to the DS18S20 /************************************************************************/ void writeSensor(int i){ if(i == 1){ DDRD |= DQ; PORTD &=~ DQ; _delay_us(10); //10//1 DDRD &=~ DQ; _delay_us(65); //65
in „Temperaturauswertung 1-WIRE AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm5642.pdf
nF CBOOT1 25 V C 7 DD L1 Vo1 = 1.8V, 7A 27 100 nF SYNC 5 SW1 SYNC 4.2 PH▯▯ C 9 R28 Q 2 7 m:▯ R 10 + 330 PF 9 LDRV1 23 2.26 220 k: ON/SS1 R11 6.3V C 21 Si4840DY k: 10 m:▯ S1 11 10 nF PGND 4 4.99 k: FB1 10 C13 10 nF C14 100 pF VIN ON/SS2 S2 C12 10 nF 13 R13 R 14 100: 24 ILIM2 VDD 1 6.8 k: C VDD KS2
in „Komisches Verhalten von LM5642MTCX“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DE.pdf
contact sets 4,000 Vrms (2 Form A, drop 6V DC 1A) 2 1 Form A 1 Form B) Nominal voltage* switching 10A 250V AC, 8A 250V AC, 8A 250V AC, Between contact and coil 5,000 Vrms capacity 10A 30V DC 8A 30V DC 8A 30V DC Surge voltage between contact and coil* 3 Min. 12,000 V (initial) Max. 4 Max. 10ms (typ.
in „Spart man Strom wenn man den ADC langsamer taktet?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
on.c
****************/ #include <mega8.h> #include <delay.h> #include <string.h> #include <stdlib.h> // DS1302 Real Time Clock functions #asm .equ __ds1302_port=0x18 ;PORTB .equ __ds1302_io=1 .equ __ds1302_sclk=0 .equ __ds1302_rst=7 #endasm #include <ds1302.h> // Standard Input/Output functions #include <
in „SPI ATmega8L Beschleunigungssenor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
QF5252F.pdf
internal circuits of QX5252 include switching driver, light control switching 2.5⋅η ⋅VBAT − PLED = ×10 circuit, over-discharge protection, and the L1 internal integrated Schottky diode. QX5252_DS03EN QX Micro Devices Co., Ltd. 6 of 9 www.qxmd.com.cn QX5252 Solar LED Driver Package Information Physical Dimensions for TO-94 Package: QX5252_DS03EN QX Micro Devices Co., Ltd. 7 of 9 www.qxmd.com.cn QX5252 Solar LED Driver Physical Dimensions for SOT23-5 Package: QX5252_DS03EN QX Micro Devices Co., Ltd. 8 of 9 www.qxmd.com.cn QX5252 Solar LED
in „[V] Induktivitäten 4,7µH bis 560µH (Aliexpress-Bestellung teilen)“ · Markt ·
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PDF
QX5252F_EN.pdf
internal circuits of QX5252 include switching driver, light control switching 2.5⋅η ⋅VBAT − PLED = ×10 circuit, over-discharge protection, and the L1 internal integrated Schottky diode. QX5252_DS03EN QX Micro Devices Co., Ltd. 6 of 9 www.qxmd.com.cn QX5252 Solar LED Driver Package Information Physical Dimensions for TO-94 Package: QX5252_DS03EN QX Micro Devices Co., Ltd. 7 of 9 www.qxmd.com.cn QX5252 Solar LED Driver Physical Dimensions for SOT23-5 Package: QX5252_DS03EN QX Micro Devices Co., Ltd. 8 of 9 www.qxmd.com.cn QX5252 Solar LED
in „Elektronik einer Solargartenleuchte defekt“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
index.html
f0f8ff; } h1 { color: #2c3e50; font-size: 28px; } .reading { font-size: 64px; color: #007bff; margin: 10px 0; } .time-format { font-size: 38px; color: #7b7bff; margin: 10px 0; } .co2 { font-size: 64px; color: #28a745; font-weight: bold; margin: 15px 0; } .temp { font-size: 36px; color: #ff6b35; font-weight
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Datei
ccpneu.h
skipped due to special version for TMS320 | 2003-10-14 1.39.00 Tri - version skipped due to special version for TMS320 | 2003-10-14 1.40.00 Tri - merge of versions: 1.37.03, 1.37.02 | 2003-10-16 1.41.00 Ds - minor bugfix set ROM to CCP_ROM | 2003-10-16 1.41.01 Ds - change the position of CCP_ROM | 2003-10-21 1.42.00 Tri - change the position of CCP_ROM |***************************************************************************/ #ifndef __CCPNEU_H_ #define __
in „XC16 Compiler Error“ · Mikrocontroller und Digitale Elektronik ·
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PDF
elektronische_Bauelemente.pdf
QC 8 80C51-Mikrocontroller P80C552EBA 90 7130 SA100J S0110P 24 Relais 3-1462037-0 32 Relais 2982C1 10 Relais 3150N2 12 Poti POT.3296X 0,5W 200R 22 Voltage to Frequency converteAD650BD 10 Diode U1520 27 Diode U820 25 Spannungsregler LM1085 35 Leistungs-Mosfet IRF540N 30 14N40FVL 33 Spannungsregler L4940V5
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PDF
ADG507A.pdf
–10 V V S +10 V, DS = 1 mA R ONMatch 5 5 5 % typ –10 V V S +10 V, DS = 1 mA IS(OFF), Off Input Leakage 0.02 0.02 0.02 nA typ V1 = 10 V, V2 = 710 V; Test Circuit 2 1 50 1 50 1 50 nA max ID(OFF), Off Output
in „Videopfad - LM1881 -Sync-Problem“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CJ2303.pdf
-15V, Rise Time tr 11 18 RL=10Ω, ID =-1.5A, Turn-Off Delay Time d(off) 11 18 VGEN=-10V,Rg=1Ω Fall Time tf 8 16 ns Turn-On Delay Time d(on) 36 44 VDD-15V, Rise Time tr 37 45 RL=10Ω, ID =-1.5A, Turn-Off Delay Time d(off) 12 18 VGEN=
in „Suche Transistor equivalent zu „S3“ SOT-23“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
G32trust.asm
push 10h ; uType push offset Buffer ; lpCaption push offset Text ; lpText call ds:GetFocus push eax ; hWnd call ds:MessageBoxA pop edi pop esi retn 14h sub_10001810 endp ; ÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄÄ
in „Wer kann mir eine ASM File compelieren“ · Softwareentwicklung ·
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PDF
MT48LC16M16A2.PDF
A0–A9, 3 3 A11, A12 ROW COLUMNm ROW COLUMNb ROW AS tAH ENABLE AUTOPRECHARGE ENABLE AUTOPRECHARGE A10 ROW ROW ROW t t AS AH BA0, BA1 BANK 0 BANK 0 BANK 1 BANK 1 BANK 0 DS DH tDS tDH tDS tDH DS tDH DS tDH tDS DH tDS tDH DS tDH DINm DINm+ 1 D INm+ 2 DINm+ 3 DINb DINb + 1 DINb + 2 DINb + 3 DQ t t t t RCD
in „[Verkaufe] 5xSDRAM (4Meg x 16 x 4 Banks) und 5xFLASH (64Meg 8 o. 16 Bit)“ · Markt ·
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PDF
PSMN5R5-60YS.pdf
temperature Source-drain diode [1] S source current T mb = 25 °C; - 100 A SM peak source current tp≤ 10 µs; pulsed; Tmb = 25 °C - 418 A Avalanche ruggedness E non-repetitive V = 10 V; T = 25 °C; I = 100 A; V ≤ 60 V; - 170 mJ DS(AL)S GS j(init) D sup drain-sourceavalanche R GS = 50 Ω; unclamped energy [
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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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Datei
termometer.c
11,059 Mhz Liest die Temperatur ständig aus und sendet diese ohne Nachkommastelle über Seriell 8N1 DS1621 Adresse 0 (alle drei Adresspins auf GND) 10k-Ohm Buswiderstände *****************************************************************************/ #include <stdio.h> #include <avr/io.h> #include "i2cmaster.h
in „Hilfe bei meinem DS1621 Problem am ATmega16“ · 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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Silergy-Corp-SY8201ABC_C108052.pdf
Description Features SY8201 develops high efficiency synchronous step • Low R for internal switches DS(ON) down DC DC converter capable of delivering 1A . (top/bottom):350/150 m SY8201 operates over a wide input voltage range from • 4.5 27V input voltage range 4.5V to 27V and integrate main switch and
in „JBL Xtreme 2 keine Reaktion“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
nrf24l01.c
CSN_HIGH(); } void SwitchToRxMode() { CE_HIGH(); Delay_us(150); SPI_Write_Reg(WRITE_REG + CONFIG, MASK_TX_DS | MASK_MAX_RT | 0x0f); // Set PWR_UP bit, enable CRC(2 bytes) & Prim:TX. MAX_RT & TX_DS enabled.. } void SwitchToTxMode() { CE_LOW(); Delay_us(150); SPI_Write_Reg(WRITE_REG + CONFIG, MASK_TX_DS | MASK_MAX_RT
in „RFM12 vs nrf24l01“ · Mikrocontroller und Digitale Elektronik ·
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ch32v003_getting_started.pdf
ein Acknowledge gesendet 0 : es wird kein Acknowledge gesendet Rückgabe: vom I2C-Bus gelesenes Byte ds18b20_single.h / ds18b20_single.c Mit ds18b20_single kann ein DS18B20 Temperatur- sensor ausgelesen werden. Obwohl die Datenkommunikation des Sensors über einen "OneWire-Bus" erfolgt und der Sensor DS18B20
in „CH32V003: Selbstbauprogrammer und "Getting started"“ · Projekte & Code ·
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BAT54.pdf
recommended pad layout, which can be found on our website at http://www.diodes.com/datasheets/ap02001.pdf. DS11005 Rev. 12 - 2 1 of 3 BAT54 /A /C /S ) A (1000 T E W 200 R ( U 100 N C TA= +100°C I D A R S W TA= +125°C I R 10 D O E 100 F W U P O T A +25°C D N 1 P A N A TA= -25°C 0 S 0.1 0 25 50 75 100 125 I F
in „SMD Bauteil identifizieren“ · Mikrocontroller und Digitale Elektronik ·