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PDF
MC14538B-D.PDF
Symbol Vdc Min Typ Max Unit (Note 7) Output Rise Time tTLH ns t = (1.35 ns/pF) C + 33 ns 5.0 − 100 200 TLH L TLH = (0.60 ns/pF)LC + 20 ns 10 − 50 100 TLH = (0.40 ns/pF)LC + 20 ns 15 − 40 80 Output Fall Time tTHL ns THL = (1.35 ns/pF)LC + 33 ns 5.0 − 100 200 t = (0.60 ns/pF) C + 20 ns 10 − 50 100 THL
in „Max. Pulsverlängerung mit CD4098“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RIGOL-DSA815-TG_Unpublished-Information_2014-09-12.pdf
Cont.Single.AVG Reset.TG.TG.On.Off.TG Level.TG Lvl Offset.Power Sweep.On.Off. Power Range.Normalize.Stor Ref.Normalize.On.Off.Norm Ref Lvl.Norm Ref Pos. Ref Trace.View.Blank.ALC.Auto.On.Off.Measure.VSWR.On.Off.Meas Fctn.Off.T-Power. ACP.Chan Pwr.OBW.EBW.C/N Ratio.Harmo Dist.TOI.Restart.Pause.Resume.Meas Mode
in „Rigol DSA815 Spektrum Analyser“ · PC Hard- und Software ·
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PDF
Transistortester094k.pdf
wird bei jedem Einschalten neu gemessen, wenn die Funktion in der Makefile gewählt wird (WITH_AUTO_REF). Da ich den Eindruck habe, das die Referenzspannung etwas zu niedrig gemessen wird, kann man die gemessene Spannung mit einer Konstanten korrigieren, die in der Makefile definiert werden kann (REF_KORR
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PDF
16389fg.pdf
Voltage Common Mode Voltage 300 400 10000 ) ) VS= 5V, 0V μ280 ( 300 8000 ( E I260 TA= 125°C A A 6000 L L 200 ( P240 V T A220 T 100 E R TA= 25°C S R 60 TA= –55°C P200 F 0 C T T T = 25°C S 40 E180 P–100 A I R TA= –55°C I T 20 C160 I TA= 125°C TA= –55°C P TA= 125°C Y E–200 I 0 TA= 25°C P140 N U H–300 –20 S120
in „Alternative gesucht zu OpAmp“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ms5534b.pdf
actual temperature s Difference between actual temperature and reference r temperature: dT(D2) = D2 - ref P dT = 1092 dT = D2 - UT1 Actual temperature: TEMP(D2) = 20°+dT(D2)*TEMPSENS TEMP = 287 10 = 28.7 °C TEMP = 200 + dT*(C6+50)/2 (0.1°C resolution) Calculate temperature compensated pressure Offset at
in „3 Wire Interface SPI???“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ms5534b.pdf
actual temperature s Difference between actual temperature and reference r temperature: dT(D2) = D2 - ref P dT = 1092 dT = D2 - UT1 Actual temperature: TEMP(D2) = 20°+dT(D2)*TEMPSENS TEMP = 287 10 = 28.7 °C TEMP = 200 + dT*(C6+50)/2 (0.1°C resolution) Calculate temperature compensated pressure Offset at
in „Frage zu dieser SPI Kommunikation mit einen ALTIMETER Sensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KWH080KQ03-F01.pdf
Note 2 Color chromaticity Note 5 W Y 0.28 0.33 0.38 - Note 6 NTSC Sa (60) (65) - % Note 8 Luminance L 200 250 - cd/m² Note 6 Luminance uniformity YU 70 75 - % Note 7 Test Conditions: 1. V CC.3V, I L180mA (Backliyht current), the ambient temperature is 25℃. 2. The test systems refer to Note 2. Part No: KWH080KQ03
in „NXP verschenkt ARM-Chips“ · Mikrocontroller und Digitale Elektronik ·
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PDF
s-gu256x128d-3xxxhard_e02.pdf
47kЊ CPU 47Њ ▯ Port1-b3 ▯ 47kЊ Input port ▯ x4 ▯ 47Њ Port1-b0 ▯ ▯ VCC ▯ ▯ GND GU256X128D-3xxx ▯ ▯ Refer to 3.3 Electrical Characteristics “General purpose I/O port supply Voltage for -3xxx series.” For controlling, refer to 256x128dot “General function” software spec., “I/O Port Input/Output setting”
in „[V] Verkaufe VFD Grafik Display mit RS232 Interface von Noritake“ · Markt ·
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PDF
MSO5062D_3.2.35_Bugs_140121.0.pdf
.....................................................................7 7. Wrong V0 activation with RefB Cursor source.....................................................................7 8. Hardcoded labels..............................................................................................
in „Tekway/Hantek/Voltcraft MSO“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SIM300_HD_V1.06.pdf
mode, driving the PWRKEY to a low level voltage for a period will cause SIM300 to power down (Please refer to the power down scenarios in 3.3.2.1). The table follow briefly summarizes the AT commands that are used usually during alarm mode, for details of the instructions refer to document [1]: Table 7:
in „GSM sim300 mit SAM7-EX256 kommunizieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BC1.2_FINAL.pdf
Specification, Revision 1.2 December 7, 2010 Table 5-3 Resistances Parameter Symbol Conditions Min Max Units Ref Charger to Accessory port R ACA_CHG_ACC Note 1 400 mΩ 6.2.6 OTG to Accessory port R ACA_OTG_ACC Note 1 200 mΩ 6.2.6 Charger to OTG port R ACA_CHG_OTG Note 1 200 mΩ 6.2.6 Data line leakage resistance
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AM27C010.pdf
Number Am27C010 VCC = 5.0 V ± 5% -45 -255 Speed Options VCC = 5.0 V ± 10% -45 -55 -70 -90 -120 -150 -200 Max Access Time (ns) 45 55 70 90 120 150 200 250 CE# (E#) Access (ns) 45 55 70 90 120 150 200 250 OE# (G#) Access (ns) 25 35 35 40 50 65 75 75 CONNECTION DIAGRAMS Top View DIP PLCC ) # VPP 1 32 VCC
in „OTP "E"EPROM programmieren amd 27c010“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tsc2003.pdf
+2.7V, V = External +2.5V, I C bus frequency = 3.4MHz, PD1 = PD0 =0, unless otherwise noted. A DD REF SUPPLY CURRENT vs TEMPERATURE SUPPLY CURRENT vs V DD 300 1200 High-Speed Mode = 3.4MHz 1100 250 1000 High-Speed Mode = 3.4MHz ) ) 900 A A (200 t 800 n n 700 r r u150 u 600 Fast Mode = 400kHz y Fast
in „Touchscreen Controller“ · Analoge Elektronik und Schaltungstechnik ·
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IL300.pdf
= 0 °C to 75 °C Photoconductive Operation Frequency response I = 10 mA, MOD = ± 4.0 mA, BW (-3 db) 200 KHz Fq R L 50 Ω Phase response at 200 kHz V = - 15 V -45 Deg. det 1. Bin Sorting: K3 (transfer gain) is sorted into bins that are ± 6 % , as follows: Bin A = 0.557 - 0.626 Bin B = 0.620 - 0.696 Bin
in „wie linear sind optokoppler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
IL300.pdf
= 0 °C to 75 °C Photoconductive Operation Frequency response I = 10 mA, MOD = ± 4.0 mA, BW (-3 db) 200 KHz Fq R L 50 Ω Phase response at 200 kHz V = - 15 V -45 Deg. det 1. Bin Sorting: K3 (transfer gain) is sorted into bins that are ± 6 % , as follows: Bin A = 0.557 - 0.626 Bin B = 0.620 - 0.696 Bin
in „AC Strom mit IL300 messen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX1496_EagleDirectionParameters.pdf
0.1µF capacitor to GND. Negative Reference Voltage Input. For internal-reference operation, connect REF- to GND. 2 REF- Pwr/In ? For external-reference operation, bypass REF- to GND with a 0.1µF capacitor and set VREF- from -2.2V to +2.2V, provided VREF+ > VREF-. Positive Reference Voltage Input. For internal-reference operation, connect a 4.7µF 3 REF+ Pwr/In ? capacitor from REF+ to GND. For external-reference operation, bypass REF+ to GND with a 0.1µF capacitor and set VREF+ from -2.2V to +2.2V, provided VREF+ > VREF-. Positive Analog Input. Positive
in „Eagle - Welche "Direction" Parameter des Pins des MAX1496“ · Platinen ·
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ADS8364.pdf
1. MethodsofDrivingtheADS8364Single-Endedor Differential. ADS8364 10 SBAS219 www.ti.com +IN CM+ V REF +VREF CMVoltage –IN = CM Voltage –VREF CM– V REF t Single-Ended Inputs +IN CM+ 1/2V REF +VREF CMVoltage –VREF –IN CM– 1/2V REF t Differential Inputs (+IN) + (–IN) NOTES: Common-Mode Voltage (Differential
in „ADC ADS8364 ansprechen“ · Mikrocontroller und Digitale Elektronik ·
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2N3442_Audiopower_NPN.PDF
the transistor must not be R 2.0 subjected to greater dissipation than the curves indicate. T TJ= 200°C 100 ms E 1.0 1.0 ms The data of Figure 2 is based on T J(pk)= 200_C; T C L is variable depending on conditions. At high case C 0.7 CURRENT LIMIT 100 ms temperatures, thermal limitations will reduce
in „BJT-2N3442 von ON -ist der echt ?“ · Analoge Elektronik und Schaltungstechnik ·
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3105fb.pdf
m300 E 700 ) ( A ( G280 L 600 IC DISABLE E T V 500 I 80 O D Y T260 O 400 L U S D I240 E 300 H 60 T 200 220 100 200 0 40 –45 –30 –15 0 15 30 45 60 75 90 1.25 2.25 3.25 4.25 5.25 1.25 2.25 3.25 4.25 5.25 TEMPERATURE (°C) 3105 G01 SUPPLY VOLTAGE, VINOR VAUX(V) 3105 G02 SUPPLY VOLTAGE, VINOR VAUX (V)3105
in „Low power DC-DC Converter (step up)“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Programm.c
*************************************/ void init_ADC_UBat(void) { unsigned int dummy; ADMUX =(0<<REFS1) // Referrenzspannung: AVref |(0<<REFS0) // " - " |(0<<MUX2) // Kannal 0 |(0<<MUX1) // "-" |(0<<MUX0); // "-" ADCSRA =(1<<ADEN) //ADC Einschalten |(1<<ADPS2) //ADC Takt: F_Quarz/128 |(1<<ADPS1) //
in „ADC Auto-Trigger mit Timer1 Compare Match B“ · Mikrocontroller und Digitale Elektronik ·
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max5056.pdf
0.40–0.05 1.90 REF NO T833-1 8 1.50–0.10 2.30–0.10 0.65 BSC MO229 / WEEC 0.30–0.05 1.95 REF NO T833-2 8 1.50–0.10 2.30–0.10 0.65 BSC MO229 / WEEC 0.30–0.05 1.95 REF NO T833-3 8 1.50–0.10 2.30–0.10 0.65 BSC MO229 / WEEC 0.30–0.05 1.95 REF YES T1033-1 10 1.50–0.10 2.30–0.10 0.50 BSC MO229 / WEED-3 0.25–0.05 2.00 REF NO T1433-1 14 1.70–0.10 2.30–0.10 0.40 BSC - - - - 0.20–0.05 2.40 REF YES T1433-2 14 1.70–0.10 2.30–0.10 0.40 BSC - - -
in „Dual Mosfet Treiber“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Slave_CODE.txt
$regfile = "m8def.dat" $crystal = 16000000 $baud = 2400 $hwstack = 200 $swstack = 200 $framesize = 200 Print "VacControl 1.0" Print "19.08.2014 A.Hermann" Print "Slavesystem" ' ############## Allgemeine Variablen ################# ' ############## ################# ################# Dim Ref As Single Dim Fak As Single Dim E As Bit Dim I As Byte Dim Druck_volt As Integer Dim Druck_bar As Single Dim Druck_bar_ As String * 10 Dim Incomming_data As String * 10 Dim Send As String * 10 Declare
in „UART Problem beim senden“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Slave_V1.0.0_Adrr-132.bas
$regfile = "m8def.dat" $crystal = 16000000 $baud = 2400 $hwstack = 200 $swstack = 200 $framesize = 200 Print "VacControl 1.0" Print "19.08.2014 A.Hermann" Print "Slavesystem" ' ############## Allgemeine Variablen ################# ' ############## ################# ################# Dim Ref As Single Dim Fak As Single Dim E As Bit Dim I As Byte Dim Druck_volt As Integer Dim Druck_bar As Single Dim Druck_bar_ As String * 10 Dim Incomming_data As String * 10 Dim Send As String * 10 Declare
in „UART Problem beim senden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
rxv396.pdf
: OPERATION (1) TO: MAIN (3) FROM : MAIN (5) TO : MAIN (5) TO : MAIN (2) ● Semiconductor Location Ref. No. Location Ref. No. Location Ref. No. Location Ref. No. Location 5 Ref. No. Location D201 B2 D213 C3 Q201 B2 Q213 F2 Q224C F2 D202 C2 D214 F3 Q202 B2 Q214 F2 Q226 B3 D203 D2 D215 F3 Q203 C2 Q215
in „Yamaha RX-V396 RDS Fehlersuche“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Konv2.c
include <utime.h> #include <windows.h> #define MAXLINELENGTH 32768 typedef struct { int aktiv; char Name[200]; char Formel[200]; } satz; double X[1024],Y[1024],Z[1024]; double Ddummy[1024]; int Geduld=0; #include "parse.h" FILE *outfile; satz *feld; int Inspalten=8,spalten,Minzeit=0,Intervall=0,Startzeit=0
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Datei
Konv2.c
include <utime.h> #include <windows.h> #define MAXLINELENGTH 32768 typedef struct { int aktiv; char Name[200]; char Formel[200]; } satz; double X[1024],Y[1024],Z[1024]; double Ddummy[1024]; int Geduld=0; #include "parse.h" FILE *outfile; satz *feld; int Inspalten=8,spalten,Minzeit=0,Intervall=0,Startzeit=0
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Datei
ServoTester_ATTiny13.asm
definitions ;************************************************************************************ .def ADC_REF_L = R0 ; reference adc (=mid position) value low .def ADC_REF_H = R1 ; reference adc (=mid position) value high .def SREG_BACK0 = R2 ; SREG backup during interrupt .def WORK0 = R16 ; temporary register
in „Servo ansteuern mit AVR“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Quelltext.txt
*/ #define F_CPU 1000000UL #include <avr/io.h> #include <util/delay.h> { // PORTA 0 ADMUX= (1 << REFS1) | (1 << ADLAR); // ADW Einstellungen + Portauswahl ADCSRA= (1 << ADEN)| (1 << ADSC)| (1 << ADIE)| (1 << ADPS2) | (1 << ADPS1)| (1 << ADPS0) ; // ADW Einstellungen while(!(ADCSRA & (1 << ADIF))) {}
in „Vergleichen von Analogen Werten“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PT1000.c
dem anderen Anschluss am Eingang ADC0 (PT_IN_0). Vom Anschluss Vref des ATmega geht ein Widerstand R_REF 1000 Ohm 0,1% ebenfalls an den Eingang ADC0. PT1000 und 1000 Ohm Widerstand bilden somit einen Spannungsteiler, der bei 0 Grad C die Spannung an Vref genau 1:2 teilt. Mutige Anwender nutzen die Option
in „PT1000, einfache Auswertung mit AVR (ATmega328)“ · Projekte & Code ·
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PDF
MCP73832T.pdf
Comparator Filter tCHARGE 0.4 1.3 3.2 ms Average VBAT Status Indicator Status Output turn-off tOFF — — 200 µs SINK = 1 mA to 0 mA Status Output turn-on ON — — 200 µs SINK = 0 mA to 1 mA TEMPERATURE SPECIFICATIONS Electrical Specifications: Unless otherwise indicated, all limits apDDy foREG (typical) + 0.3V
in „LiPo-Charger mit MCP73832T“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MCP73831-2_ENG_TDS.pdf
Comparator Filter tCHARGE 0.4 1.3 3.2 ms Average VBAT Status Indicator Status Output turn-off tOFF — — 200 µs SINK = 1 mA to 0 mA Status Output turn-on ON — — 200 µs SINK = 0 mA to 1 mA TEMPERATURE SPECIFICATIONS Electrical Specifications: Unless otherwise indicated, all limits apDDy foREG (typical) + 0.3V
in „LiPo-IC MCP73831 kennt keine Ladeschlussspannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TEA5767.pdf
voltage f = 22.5 kHz; mod= 1 kHz; (S+N)/N = 26 dB; de-emphasis = 75 s; L = R; B AF= 300 Hz to 15 kHz S −200 low side 200 kHz f = −200 kHz; [2]32 36 - dB selectivity ftune 76 MHz to 108 MHz S +200 high side 200 kHz f = +200 kHz; [2]39 43 - dB selectivity ftune 76 MHz to 108 MHz V AFL left audio frequency V
in „Hilfe benötigt bei RDA5807SP Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm3916.pdf
−5 dB −0.5 +0.5 dB IN VIN = −7, −10, −20 dB −1 +1 dB VOLTAGE REFERENCE Output Voltage 0.1 mA ≤ IL(REF)≤ 4 mA, + 1.2 1.28 1.34 V V = VLED = 5Vg Line Regulation 3V ≤ V ≤ 18V 0.01 0.03 %/V Load Regulation 0.1 mA ≤ IL(REF)≤ 4 mA, V+ = V = 5V 0.4 2 % LED Output Voltage Change with Temperature 0˚C ≤ TA≤ +70˚C, IL(REF)= 1 mA, + 1 % V = VLED = 5V Adjust Pin Current 75 120 µA OUTPUT DRIVERS + LED Current V = V LED = 5V, L(REF)= 1 mA 7 10 13 mA LED Current Difference (Between Largest and VLED = 5V, ILED= 2 mA 0.12 0.4
in „Eingangstufe LCD Stereo VU Meter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ref3125.pdf
REF3112 REF3120 REF3125 REF3130 REF3133 REF3140 SBVS046C – DECEMBER 2003 – REVISED FEBRUARY 2006 15ppm/ °C Max, 100 µ A, SOT23-3 SERIES VOLTAGE REFERENCE FEATURES DESCRIPTION ● MicroSIZE PACKAGE: SOT23-
in „=> Referenzspannungsquelle für 2,5-4.5V Versorgung gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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sm6t100a.pdf
SM6T150CA, electrical overstress according to IEC 61000-4-4 and 5. This device is more generally SM6T200A, SM6T200CA, used against surges below 600 W (10/1000 μs). SM6T220A. SM6T220CA. The Planar technology makes it suitable for high-end equipment and SMPS where low leakage current and high junction temperature
in „Suche Diode GP839“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
INA186.pdf
output voltage difference from the IN+ to the IN– pins, and is offset by the voltage applied to the REF pin. Reference input. Enables bidirectional current sensing with an externally REF 1 3 — Analog input applied voltage. DCK and DDF packages only. Devices without a REF pin have the REF node grounded
in „INA186 Noise Problem“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
sony_ht-ct260h.pdf
3K C255 Main_SCL 0.022uF/25V/Y5V Main_SDA SPDIF_SCL 1000pF/50V/X7R SPDIF_SDA DV33 A_3.3V FB12 500/200mA A_3.3V 2.2uF/10V/Y5V C584 SD+3.3V FB11 500/200mA C SW3.3V FB10 500/200mA C580 0.1uF/25V/Y5V C583 C582 0.1uF/25V/Y5V 2.2uF/10V/Y5V CS_DATA0 9 2Y3 2A3 11 SPDIF_DATA AD_DATA 8 1A3 1Y3 12 CS_DATA0 R617
in „(V) 2 Platinen aus einer Sony Soundbar und Nixie Röhren“ · Markt ·
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PDF
CONTROL_IC_IR2109PBF_DIP_8__IR.pdf
Temperature vs. Supply Volta ge www.irf.com 9 IR2109 4 ( ) ( S ) & (PbF) 200 200 ) ) s 150 n 150 ( ( e m T T l l 100 Max. F 100 F f f - Max. - Typ. r r 50 u 50 T T Typ. 0 0 10 12 14 16 18 20 -50 -25 0 25 50 75 100 125 o V Supply Voltage (V) Temperature ( C) BIAS Figure 10A.
in „1. Schaltung Mosfet Treiber“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BC1.2_plus_errata_2012-3-15.pdf
Specification, Revision 1.2 March 15, 2012 Table 5-3 Resistances Parameter Symbol Conditions Min Max Units Ref 1) Charger to Accessory port R ACA_CHG_ACC 400 mΩ 6.2.6 1) OTG to Accessory port R ACA_OTG_ACC 200 mΩ 6.2.6 OTG to Accessory port R ADP_OTG_ACC 5) 25 Ω 6.2.6 (ADP-pass) 1) Charger to OTG port R ACA_CHG_OTG
in „5V USB Lademodul mit Kommunikation zu Gerät“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BC1.2_plus_errata_2012-3-15.pdf
Specification, Revision 1.2 March 15, 2012 Table 5-3 Resistances Parameter Symbol Conditions Min Max Units Ref 1) Charger to Accessory port R ACA_CHG_ACC 400 mΩ 6.2.6 1) OTG to Accessory port R ACA_OTG_ACC 200 mΩ 6.2.6 OTG to Accessory port R ADP_OTG_ACC 5) 25 Ω 6.2.6 (ADP-pass) 1) Charger to OTG port R ACA_CHG_OTG
in „Wie erkennt ein Handy ein starkes Netzteil?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IR2110-DataSheet.pdf
vs. VDD Supply Voltage Figure 8A. Turn-Off Time vs. Temperature 250 250 200 200 ) s Max . ( ( e Max. e 150 T150 i l y D Typ. l f 100 D 100 n f Typ T - r 50 50 T 0 0 10 12 14 16 18 20 0 2 4 6 8 10 12 14 16 18 2 0 VDD Supply Voltage (V) VCC /VBSSupply Voltage (V) Figure 8B. Turn-Off
in „Inverter DC/AC mit EGS002 China DEV-Board“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HCPL7800.pdf
UNLESS OTHERWISE SPECIFIED): xx.xx = 0.01 LEAD COPLANARITY xx.xxx = 0.005 MAXIMUM: 0.102 (0.004) * REFER TO OPTION 300 DATA SHEET FOR MORE INFORMATION. Maximum Solder Reflow Thermal Profile 260 240 220 T = 145°C, 1°C/SEC T = 115°C, 0.3°C/SEC 200 °180 – E160 R140 T A120 E100 P 80 E T = 100°C, 1.5°C/SEC
in „Galvanisch getrennten 1-10V Ausgang regeln“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HCPL7800.pdf
UNLESS OTHERWISE SPECIFIED): xx.xx = 0.01 LEAD COPLANARITY xx.xxx = 0.005 MAXIMUM: 0.102 (0.004) * REFER TO OPTION 300 DATA SHEET FOR MORE INFORMATION. Maximum Solder Reflow Thermal Profile 260 240 220 T = 145°C, 1°C/SEC T = 115°C, 0.3°C/SEC 200 °180 – E160 R140 T A120 E100 P 80 E T = 100°C, 1.5°C/SEC
in „8fach Trennverstärker 0..10V - wie realisieren?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
irfh4210d_pbf.pdf
Details For more information on board mounting, including footprint and stencil recommendation, please refer to application note AN-1136: http://www.irf.com/technical-info/appnotes/an-1136.pdf For more information on package inspection techniques, please refer to application note AN-1154: http://www.irf.com
in „Akkubohrschrauber 10,8V von Makita und Metabo“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
IRS2092.pdf
Frequency - 800 kHz T A Ambient Temperature -40 125 °C Note 1: Logic operational for Vs equal to –5 V to +200 V. Logic state held for Vs equal toBS5 V to –V . Note 2: Nominal voltage forREF is 5.1 V.OREFof 0.3 – 0.8 mA dictates total external resistor value on VREF to be 6.3 kΩ to 16.7 kΩ. Note 3: GND input
in „Car Hifi Endstufe kein Ton, axton D500 digital, Irs2092s Vorverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
085cs.pdf
electrolytic capacitors 085 CS SMD (Chip) Standard MBC488 280 Tandbook, 4 columns PAD ( C) 260 240 220 200 180 160 140 120 100 80 0 50 100 150 200 t (s) 250 Fig.5 Maximum temperature load during infrared reflow soldering. SMD MBC489 280 Tandbook, 4 columns oAD ( C) 260 240 220 200 180 160 140 120 100 80
in „Tantal vs Kerko“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
irf3708.pdf
24V, GS = 0V DSS ––– ––– 100 VDS = 24V, GS = 0V, J = 125°C I Gate-to-Source Forward Leakage ––– ––– 200 nA VGS = 12V GSS Gate-to-Source Reverse Leakage ––– ––– -200 VGS = -12V Dynamic @ T = 25°J (unless otherwise specified) Symbol Parameter Min. Typ. Max. Units Conditions gfs Forward Transconductance
in „IRF3708 als Schalter“ · Mikrocontroller und Digitale Elektronik ·
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Datei
gpio.h
a pin with the specified settings. * * \param pin The pin number. * \param mode The trigger mode (\ref GPIO_PIN_CHANGE, \ref GPIO_RISING_EDGE or * \ref GPIO_FALLING_EDGE). * * \return \ref GPIO_SUCCESS or \ref GPIO_INVALID_ARGUMENT. */ extern int gpio_enable_pin_interrupt(uint32_t pin, uint32_t mode)
in „Registernamen AT32UC3A1512“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tps65131.pdf
range IN VNEG Adjustable output voltage -15 -2 V range V Reference voltage I = 10 µA 1.2 1.213 1.225 V REF REF Positive feedback input FBP bias current V FBP= V REF 50 nA Negative feedback input FBN bias current V FBN= 0.1 VREF 50 nA Positive feedback regu- VFBP lation voltage V IN= 2.7 V to 5.5 V 1.189
in „OLED Sammelbestellung“ · Markt ·
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PDF
TBU-CA.pdf
Symbol Parameter Part Number Min. Typ. Max. Unit TBU-CAxxx-050-WH 50 75 100 TBU-CAxxx-100-WH 100 150 200 I Current required for the device to go from operating state to TBU-CAxxx-200-WH 200 300 400 mA trigger protected state TBU-CAxxx-300-WH 300 450 600 TBU-CAxxx-500-WH 500 750 1000 Vimp = 250 V Itriggermin
in „USB selbstrückstellende Schutzschaltung bis 24V“ · Mikrocontroller und Digitale Elektronik ·