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PDF
ACS758-Datasheet.pdf
Allegro website Typical Overcurrent Capabilities 1,2 Characteristic Symbol Notes Rating Units TA= 25°C, 1s duration, 1% duty cycle 1200 A Overcurrent POC TA= 85°C, 1s duration, 1% duty cycle 900 A TA= 150°C, 1s duration, 1% duty cycle 600 A 1Test was done with Allegro evaluation board. The maximum allowed
in „Stromsensor ACS758ECB-200U-PFF-T“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ACS758-Datasheet.pdf
Allegro website Typical Overcurrent Capabilities 1,2 Characteristic Symbol Notes Rating Units TA= 25°C, 1s duration, 1% duty cycle 1200 A Overcurrent POC TA= 85°C, 1s duration, 1% duty cycle 900 A TA= 150°C, 1s duration, 1% duty cycle 600 A 1Test was done with Allegro evaluation board. The maximum allowed
in „Auslegen Tiefpassfilter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ACS758-Datasheet.pdf
Allegro website Typical Overcurrent Capabilities 1,2 Characteristic Symbol Notes Rating Units TA= 25°C, 1s duration, 1% duty cycle 1200 A Overcurrent POC TA= 85°C, 1s duration, 1% duty cycle 900 A TA= 150°C, 1s duration, 1% duty cycle 600 A 1Test was done with Allegro evaluation board. The maximum allowed
in „Beispiel Anwendungen/Application zu ADCs - Abtastrate & Auflösung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lcd_2x16_spec.pdf
1. F o r 5 * 8 d o t ch aracter p attern s C h aracter C o d es C h aracter P a tte rn s ( D D R A M d ata ) C G R A M A d d ress ( C G R A M d ata ) 7 6 5 4 3 2 1 0 5 4 3 2 1 0 7 6 5 4 3 2 1 0 H ig h L o w H ig h L o w H ig h L o w 0 0 0 * *
in „2x16 LCD PROBLEM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ina114.pdf
100k 1M 1 10 100 1k 10k Frequency (Hz) Frequency (Hz) ® 4 INA114 TYPICAL PERFORMANCE CURVES (CONT) At T = +25°C, V = ±15V, unless otherwise noted. A S SETTLING TIME vs GAIN OFFSET VOLTAGE WARM-UP vs TIME 1200 6 1000 ) 4 µ ) ( G ≥ 100 µ 800 g 2 ( a m C T 600 e 0 g 0.01% a l o e 400 V –2 S 0.1% e f 200
in „OP INA114 Regelt nur bis 2,25V am Ausgang“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PCF1252_X_FAM_3.pdf
current VO= 2.0 V; −0.75 −2 − mA VDD = 2.4 V; see Fig.7 R reset time CCT = 1 nF; note 3 400 1000 2000 s S save time CCT = 1 nF; note 3 40 100 200 s t /t reset to save time ratio − 10 − R S Cint CT internal capacitance − 100 − pF Notes 1. Long time stability of COMIN switch pointSPand voltage trip pointTRIP
in „Tipsend2 Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datenblatt-160715-ixys-standarddiode-dsei2x121-02a-sot-227-4-200-v-123-a.pdf
= 1 A; -di/dt = 400 A/ms; V = 30 V; T = 25°C 35 50 ns P 4.95 5.97 0.195 0.235 rr F R VJ Q 26.54 26.90 1.045 1.059 I V = 100 V; I = 100 A; -di /dt = 200 A/ms 12 15 A RM R F F R 3.94 4.42 0.155 0.174 L £ 0.05 mH; T VJ100°C S 4.72 4.85 0.186 0.191 T 24.59 25.07 0.968 0.987 U -0.05 0.1 -0.002 0.004 V 3.30
in „IGBT schon bei kleiner Last durchgebrannt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RequiresAcrobat6.pdf
cycle ≤ 2% V DD on off Switching R D Switching VIN td(on) r td(off) tf Test Circuit D VOUT Waveforms 90% 90 % VGEN Output, OUT 10% 10% RG DUT INVERTED G 90% 50% 50% S Input, IN 10% PULSE WIDTH GF9926 Dual N-Channel Enhancement-Mode MOSFET Ratings and Characteristic Curves (TA= 25°C unless otherwise noted
in „Ersatz-MosFet für GF9926“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TNY256.pdf
Ω 5 W S2 470 Ω D EN/UV S1 S S 2 MΩ S S 50 V S BP 10 V 150 V 0.1 µF NOTE: This test circuit is not applicable for current limit or output characteristic measurements. PI-2352-011899 Figure 14. TinySwitch General
in „Brauche Dringend Hilfe bei Bauteilbestimmung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Switch.pdf
MOUSER Crydom Stückpreis m LAGER-NR. Teile-Nr. Abb.Eingangsspannung Ausgangsspannung 1 10 25 50 558-DC60S3-B DC60S3-B A 3.5-32VDC 3-60VDC 558-DC60S5-B DC60S5-B A 3.5-32VDC 3-60VDC 558-DC60S7-B DC60S7-B A 3.5-32VDC 3-60VDC H 558-DC60SA3-B DC60SA3-B A 90-280VAC 3-60VDC a 558-DC60SA5-B DC60SA5-B A 90-280VAC
in „Ausfallursache Printtaster DeLonghi Kaffeeautomat?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS301V402.pdf
device is the server. If a device handles more than one server SDO the default SDO must be located at index 1200h as the first server 2 SDO. This entry is read only . All additional server SDOs are invalid by default (invalid bit - see Table 54), there description is located at subsequent indicies. It
in „CanOpen Protokoll (für Freescale Controller)“ · Mikrocontroller und Digitale Elektronik ·
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2723615.pdf
patterns Table 1. F o r 5 * 8 d o t ch aracter p attern s C h aracter C o d es C h aracter P a tte rn s ( D D R A M d ata ) C G R A M A d d ress ( C G R A M d ata ) 7 6 5 4 3 2 1 0 5 4 3 2 1 0 7 6 5 4 3 2 1 0 H ig h L o w H ig h L o w H ig h L o w 0 0 0 * *
in „Winstar WH1602B Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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Data_Schottky___HF_Dioden.pdf
higher Q 0,45 0,40 0,36 BB 215 25 600 200-1-500 12 Sot high Q from 1 to 100MHz BB 510 1,00 0,95 0,90 23 it is the SMD version of BB509 and BB112 at 470MHz 123 BB 515 = 721 0,45 0,40 0,36 2 22 0,5 Ω 9 pF 30 for VHF-UHF ,very good Q 323 BB 535 = 721S 0,45 0,40 0,35 Sod MW-HF-VHF very wide capacitance
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CPC1981Y.pdf
LED Forward Current vs.Temperature (IL=100mA ) DC (IL=100mA ) DC )1.8 5.0 0.09 ( 4.5 p1.7 0.08 r1.6 s 4.0 s0.07 e ( 3.5 ( g1.5 IF=10mA e e0.06 l IF=5mA i 3.0 i0.05 V1.4 IF=2mA T2.5 T d n 2.0 f0.04 a1.3 n n0.03 r u 1.5 u F1.2 T 1.0 T0.02 D1.1 0.01 E 0.5 L1.0 0 0 -50 -25 0 25 50 75 100 0 5 10 15 20 25
in „Welches SSR für Zündunterbrecher bzw. Alternativen zum SSR?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
eliza.bas
: COLOR 15, 1, 1: CLS 20 PRINT 30 DIM C1$(40) 40 GOSUB 1070 50 DIM C$(72), I$(72), K$(72), F$(72), S$(72), R$(72), P$(72), Z$(72) 60 DIM S(37), R(37), N(37) 70 N1 = 37 80 N2 = 14 90 N3 = 117 100 FOR X = 1 TO N1 + N2 + N3 110 READ Z$ 120 NEXT X 130 FOR X = 1 TO N1 140 READ S(X), L 150 R(X) = S(X) 160
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485.pdf
at the output when the driver is idle or disconnected • Disadvantages – Increased driver loading increases the driver’s output power consumption. – High power dissipation – Fewer U.L.s available for receivers
in „Widerstände RS485“ · Mikrocontroller und Digitale Elektronik ·
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PDF
485.pdf
at the output when the driver is idle or disconnected • Disadvantages – Increased driver loading increases the driver’s output power consumption. – High power dissipation – Fewer U.L.s available for receivers
in „2 RS-485 so richtig ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WM8978.pdf
0 PLLK [8:0] 0E9h PLL K Value 3 Table 55 PLL Frequency Ratio Control The PLL performs best when f 2s around 90MHz. Its stability peaks at N=8. Some example settings are shown in Table 56. PTD Rev 2.6 November 2005 w 73 WM8978 Preliminary Technical Data MCLK DESIRED F2 PRESCALE POSTSCALE R N K (MHZ)
in „GSM + GPS Modul von Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Adj_Charge_Pump_Linear_Technology_LT1761ES5-SD__1663783_.pdf
Bias Current Current Limit Current Limit 100 350 350 VOUT = 0V VIN= 7V 90 300 TJ= 25°C 300 VOUT= 0V ) 80 A n ( T 70 T250 A250 E E ( R 60 R I U C200 I200 C 50 I L I U150 N150 B 40 I R I - U J 30 R100 C100 A O 20 S 10 50 50 0 0 0 –50 –25 0 25 50 75 100 125 0 1 2 3 4 5 6 7 –50
in „Adjustable Charge Pump: LT1761ES5-SD - Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP6V11U_OpAmp.pdf
DD OUT DD V = V /2, R = 100 kΩ to V and C = 20 pF. L DD L L L 2.3 Frequency Response 100 140 100 ) 90 z PM 80 (20 90 ) t VDD= 5.5V B 70 u00 80 ( ( o i R 60 P80 70 r S 50 h a , CMRR i M R 40 w60 60 s R n h C 30 a40 50 P 20 PSRR n GBWP VDD= 1.6V a20 40 10 G 0 30 0 1.E+01 1.E+ 2 1.E+03 1.E+04 1.E+05 -50
in „OpAmps: Maximale Widerstandswerte“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DOC0942.pdf
MISOI) XTAL2 PB5(MOSI) XTAL1 PB4 PD2(INT0) PB3 R PD3 PB2 PD4(T0) PB1(AIN1) UIN PD5 PB0(AIN0) GND PD6 AT90S1200 Rev. 0942B–AVR–05/02 C 1 The time constant of the R/C network must be tuned so that the following equation is satisfied: 512 ▯ 2▯ 1002 -------RC l▯1 – -▯ ▯ RC = ------------ f 5 f Component values
in „ADC: Messung einer analogen Spannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AVR400.pdf
MISOI) XTAL2 PB5(MOSI) XTAL1 PB4 PD2(INT0) PB3 PD3 PB2 R PD4(T0) PB1(AIN1) UIN PD5 PB0(AIN0) GND PD6 AT90S1200 C Rev. 0942B–AVR–05/02 1 The time constant of the R/C network must be tuned so that the following equation is satisfied: --------RC ln1 – --⇒ RC = ----------- f 5 f Component values for some
in „AT90S2313 und die Beleuchtung messen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rscalc2.c
// to compile with gcc: gcc -ldl -lm rscalc2.c -o rscalc2 // 02.01.2011 Update time output like "1200" without ":" #include <stdio.h> #include <math.h> #include <stdlib.h> #include <time.h> #include <string.h> void usage(char* pname) { printf("USAGE: %s <lat> <lon> <timezone> [date] [option]\n", pname
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PDF
cd4051b.pdf
antenna theory, but different enough to warrant their own discussion. When a PCB trace turns a corner at a 90° angle, a reflection can occur. This is primarily due to the change of width of the trace. At the apex of the turn, the trace width is increased to 1.414 times its width. This upsets the transmission
in „4 in 1 Audio Switch“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheetMax3392.pdf
/O V L, V CC = +3.3V, V =L+1.8V) E 1600 t 350 t 2500 t 7 7 7 9 1400 X 300 X X M 8Mbps M 2000 M 7 A1200 A 250 A 3 ( 8Mbps, CLOAD = 15pF ( ( E1000 E E1500 8Mbps 3 R R 200 R C 800 500kbps, OPEN-DRAIN, CLOAD= 15pF C C X Y Y 150 Y L 600 L 500kbps, OPEN-DRAIN L1000 500kbps, OPEN-DRAIN A U U U S 400 S 100 S
in „Max3392 Pegelwandler, BlueNiceCom 4“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avraes.asm
; known as AES. The target device class is Atmel's AVR, a family of very fast ; and very powerful flash MCUs, operating at clock rates up to 16 MHz, ; executing one instruction per clock cycle (16 MIPS). The implementation ; given here achieves an encryption
in „Assembler mit C verknüpfen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTC1864.pdf
Conversions of Temperature a DC Input Voltage 4096 Point FFT Nonaveraged 5 1800 0 VCC = 5V VCC= 5V S = 203.125kHz 4 VREF= 5V 1600 1534 TA= 25°C f = 99.72763kHz ) VREF= 5V –20 VN = 5V S 3 1400 CC ( VREF= 5V R 2 1200 1178 )–40 TA= 25°C R Y d E 1 N 1000 E–60 I 0 U U A Q 800 I N –1 R 729 P–80 E F M G –2
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ADC_LTC1865.pdf
Conversions of Temperature a DC Input Voltage 4096 Point FFT Nonaveraged 5 1800 0 VCC = 5V VCC= 5V S = 203.125kHz 4 VREF= 5V 1600 1534 TA= 25°C f = 99.72763kHz ) VREF= 5V –20 VN = 5V S 3 1400 CC ( VREF= 5V R 2 1200 1178 )–40 TA= 25°C R Y d E 1 N 1000 E–60 I 0 U U A Q 800 I N –1 R 729 P–80 E F M G –2
in „LTC1865 Halber Messbereich“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Ext_Clk.txt
.include "1200def.inc" ; Definitionen für den Atmel AT90S2313 .def temp1 = r16 .cseg rjmp reset ; Reset Handler reti ; IRQ0 Handler reti ; Timer0 Overflow Handler reti ; Analog Comparator Handler reset: ldi temp1,
in „Komplett Reset des Prozessors?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CAT4016_-_Catalyst_-_16ch_Constant_Current_LED_driver.pdf
ns lst total tbd BLANK Propagation delay BLANK to LED(n) off/on 60 300 ns lr LED rise time (10% to 90%) Pull-up resistor = 50Ω to 3.0V 40 200 ns lf LED fall time (90% to 10%) Pull-up resistor = 50Ω to 3.0V 30 250 ns SOUT tor SOUT rise time (10% to 90%) CL= 15pF 5 ns tof SOUT fall time (90% to 10%) CL
in „Leerlaufsicherheit CAT4016“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ltn154x3-l06.pdf
angle range(10≤ C/R) www.DaApprovalU.com Normal Line o o φ = 0 ,θ = 0 θ L θ R φ L φH 12 O’clock o θL=90 x y direction φH= 90 6 O’clock y' x' direction θR =90 o φ L 90 Note 2) Definition of Contrast Ratio (CR) : Ratio of gray max (Gmax) ,gray min (Gmin) at 5 points(4, 5, 7, 9, 10) CR(4) + CR(5) + CR(7)
in „BeagleBoard LVDS Transmitter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
edip128-6e.pdf
required. Strings and images can be placed with pixel accuracy. Text and graphics can be combined at any time. Different character sets can be used at same time. Each character set and the images can be zoomed from 2 to 8 times and rotated in 90° steps. With the largest character set, the words and
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PDF
ET0500G0DH6.pdf
> 4° C : ABSOLUTE HUMIDITY MUST BE LOWER THAN THE HUMIDITY OF 90%RH AT 40 °(96HRS MAX). 02101300-01-02 E M E R G I N G D I S P L A Y MODEL NO. VERSION PAGE TECHNOLOGIES CORPORATION E T 0 5 0 0 G 0 D H 6 5 3 4 . ELECTRICAL CHARACTERISTICS Ta = 25°C PARAMETER SYMBOL
in „EMV-Störung beim Display“ · Mikrocontroller und Digitale Elektronik ·
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Datei
CRC8XOR.ASM
specs.de */ ;* */ ;************************************************************************/ ; .device AT90S1200 .def crc = r16 .def a0 = r17 .def a1 = r18 ;input: a0 = data ; crc = crc ;output: crc = crc crc8: eor a0, crc ldi crc, 0 sbrc a0, 0 ldi crc, 0x5E ldi a1, 0xBC sbrc a0, 1 eor crc, a1 ldi a1, 0x61
in „DS18S20 CRC Berechnung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AC_Powerswitch_CPC1976Y.pdf
- 10 A DRM LEAK On-StateVoltage Drop IL=2A P - - 1.1 1.25 V P Critical Rate of Rise - dv/dt 1000 1200 - V/s Switching Speeds Turn-on F = 5 mA ton - - 0.5 cycles Turn-off t - - 0.5 cycles 1 off Zero-CrossTurn-OnVoltage 1st half-cycle - - 7 20 V Subsequent half-cycle - - - 5 V Holding Current - IH -
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PDF
AC_Powerswitch_CPC1976Y.pdf
- 10 A DRM LEAK On-StateVoltage Drop IL=2A P - - 1.1 1.25 V P Critical Rate of Rise - dv/dt 1000 1200 - V/s Switching Speeds Turn-on F = 5 mA ton - - 0.5 cycles Turn-off t - - 0.5 cycles 1 off Zero-CrossTurn-OnVoltage 1st half-cycle - - 7 20 V Subsequent half-cycle - - - 5 V Holding Current - IH -
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PDF
AC_Powerswitch_CPC1976Y.pdf
- 10 A DRM LEAK On-StateVoltage Drop IL=2A P - - 1.1 1.25 V P Critical Rate of Rise - dv/dt 1000 1200 - V/s Switching Speeds Turn-on F = 5 mA ton - - 0.5 cycles Turn-off t - - 0.5 cycles 1 off Zero-CrossTurn-OnVoltage 1st half-cycle - - 7 20 V Subsequent half-cycle - - - 5 V Holding Current - IH -
in „Zusätzlicher Schalter aber keine Ader frei.“ · Haus & Smart Home ·
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PDF
AC_Powerswitch_CPC1976Y.pdf
- 10 A DRM LEAK On-StateVoltage Drop IL=2A P - - 1.1 1.25 V P Critical Rate of Rise - dv/dt 1000 1200 - V/s Switching Speeds Turn-on F = 5 mA ton - - 0.5 cycles Turn-off t - - 0.5 cycles 1 off Zero-CrossTurn-OnVoltage 1st half-cycle - - 7 20 V Subsequent half-cycle - - - 5 V Holding Current - IH -
in „Suche Halbleiterelement als Ersatz für Relai in Radar-Bewegungsmelder“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AC_Powerswitch_CPC1976Y.pdf
- 10 A DRM LEAK On-StateVoltage Drop IL=2A P - - 1.1 1.25 V P Critical Rate of Rise - dv/dt 1000 1200 - V/s Switching Speeds Turn-on F = 5 mA ton - - 0.5 cycles Turn-off t - - 0.5 cycles 1 off Zero-CrossTurn-OnVoltage 1st half-cycle - - 7 20 V Subsequent half-cycle - - - 5 V Holding Current - IH -
in „Triac vs Relais“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AC_Powerswitch_CPC1976Y.pdf
- 10 A DRM LEAK On-StateVoltage Drop IL=2A P - - 1.1 1.25 V P Critical Rate of Rise - dv/dt 1000 1200 - V/s Switching Speeds Turn-on F = 5 mA ton - - 0.5 cycles Turn-off t - - 0.5 cycles 1 off Zero-CrossTurn-OnVoltage 1st half-cycle - - 7 20 V Subsequent half-cycle - - - 5 V Holding Current - IH -
in „Relais 12v nach Tagen benutzung kaputt - Jalousien steuerung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AC_Powerswitch_CPC1976Y.pdf
- 10 A DRM LEAK On-StateVoltage Drop IL=2A P - - 1.1 1.25 V P Critical Rate of Rise - dv/dt 1000 1200 - V/s Switching Speeds Turn-on F = 5 mA ton - - 0.5 cycles Turn-off t - - 0.5 cycles 1 off Zero-CrossTurn-OnVoltage 1st half-cycle - - 7 20 V Subsequent half-cycle - - - 5 V Holding Current - IH -
in „230VAC Max 200mA mit ESP32 3,3VDC schalten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AC_Powerswitch_CPC1976Y.pdf
- 10 A DRM LEAK On-StateVoltage Drop IL=2A P - - 1.1 1.25 V P Critical Rate of Rise - dv/dt 1000 1200 - V/s Switching Speeds Turn-on F = 5 mA ton - - 0.5 cycles Turn-off t - - 0.5 cycles 1 off Zero-CrossTurn-OnVoltage 1st half-cycle - - 7 20 V Subsequent half-cycle - - - 5 V Holding Current - IH -
in „Triac oder Relais“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AC_Powerswitch_CPC1976Y.pdf
- 10 A DRM LEAK On-StateVoltage Drop IL=2A P - - 1.1 1.25 V P Critical Rate of Rise - dv/dt 1000 1200 - V/s Switching Speeds Turn-on F = 5 mA ton - - 0.5 cycles Turn-off t - - 0.5 cycles 1 off Zero-CrossTurn-OnVoltage 1st half-cycle - - 7 20 V Subsequent half-cycle - - - 5 V Holding Current - IH -
in „MOSFET 230V AC / 3V3 Arduino“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AC_Powerswitch_CPC1976Y.pdf
- 10 A DRM LEAK On-StateVoltage Drop IL=2A P - - 1.1 1.25 V P Critical Rate of Rise - dv/dt 1000 1200 - V/s Switching Speeds Turn-on F = 5 mA ton - - 0.5 cycles Turn-off t - - 0.5 cycles 1 off Zero-CrossTurn-OnVoltage 1st half-cycle - - 7 20 V Subsequent half-cycle - - - 5 V Holding Current - IH -
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PDF
150141M173100_1_.pdf
and reliability functions or performance. Luminous Intensity vs. Forward Current: Derating Curve: 1200 40 35 1000 30 ] c 800 ] A 25 [ [ t t s e n r t 600 u 20 I C s r o a i r 15 m o u F L 400 10 200 5 0 0 20 40 60 80 100 0 0 5 10 15 20 25 30 35 Ambient Temperature [°C] Forward Current [mA] CHECKEDREVISIODATE
in „[V] ca. 320St. Würth SMD RGB LEDs PLCC4 Type: 150 141 M17 310 0“ · Markt ·
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PDF
LB064V02-TD01_HD-15-259_Ver1.0_13.10.2005.pdf
RMS Operating Frequency f 40 60 80 kHz *2 BL - - 1000 V RMS Ta=25 Kick-Off Voltage (*4) Vs Ta=- - - 1200 V RMS 30 at Power Consumption P BL - 2.04 2.25 Watt BL=TYP Life Time 20,000 - - Hrs *6 Note) The design of the inverter must have specifications for the lamp in LCD Assembly. The performance of the
in „[V] diverse Gegenstände“ · Markt ·
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PDF
AC164AYA-70-H-A_A_.pdf
equivalent. (5) 5V single power input. (6) Extended temperature type. (7) Excellent LC : VOP maintains at 5V for whole temp. range, no need extra temp. compensation circuit. 2 MECHANICALDATA Parameter Stand Value Unit Dot size 0.55(W) × 0.55(H) mm Dot pitch 0.60(W) × 0.60(H) mm Character size 2.95(W) × 4.75
in „Verkaufe Displays 16x4 OHNE Hintergrundbeleuchtung“ · Markt ·
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PDF
OWON-XDM1041-Handbuch.pdf
Off/On Off Math Function dB Rel R 50Ω dB Rel 0Ω Auto Clear Manual Clear Record Point 100 Interval 1S Auto On/Off Off Run/Stop Run Rel Off Beeper Off Threshold 50Ω Freq Mode Freq Unit ℃ Others Dual Off Display All Load KITS90 Mode DVC Range Auto Speed Low Communication interface settings Press the front
in „2x Multimeterdefekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MGA-62563__AV02-1237EN_.pdf
stdev=2.09 5000 100 2400 4500 2200 2000 4000 Y 80 ) N m 1800 m 3500 U -3 std +3 std ( 1600 o 3000 E 60 s 1400 s F b 1200 b 2500 R R 40 1000 2000 800 1500 600 20 1000 400 200 500 0 0 0 47 52 57 62 67 72 77 0 10 20 30 40 50 60 70 80 90 0 10 20 30 40 50 60 70 80 90 Id (mA) d (mA) Id(mA) Figure 5. Id @ 3V.
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PDF
mcp23009.pdf
address with R/W bit cleared) is then clocked into the device. The opcode is followed by The MCP23S09 address pointer will roll over to an address and at least one data byte. address zero after reaching the last register address. © 2009 Microchip Technology Inc. DS22121B-page 7 MCP23009/MCP23S09 2
in „Frage zu SPI und MCP23S09“ · Mikrocontroller und Digitale Elektronik ·