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BTS4140N.pdf
(SCp) = f(V bb); tm= 100 µs IL(SC) = f(V ON ), Vbb = 13,5V 1.2 1 A -40°C A 25°C p ) S 0.8 S L L I 150°C I 0.6 0.6 0.4 0.4 0.2 0.2 0 0 0 5 10 15 20 25 30 35 40 V 50 0 4 8 12 16 V 24 V V bb ON Page 14 2004-01-27 BTS 4140 N Typ. standby current Maximum allowable inductive
in „+12V mit +3.3V schalten P-MOSFET?“ · Analoge Elektronik und Schaltungstechnik ·
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MIC6211.pdf
Current Input Bias Current Input Offset Current vs. Temperature vs. Temperature vs. Temperature 1.4 90 20 VS= ±15V 80 1.3 15 70 VS= 5V V S ±15V 1.2 60 10 VS= 5V 50 VS= ±15V 1.1 5 V S 5V 40 30 1.-40 -20 0 20 40 60 80 100 -40 -20 0 20 40 60 80 100 -40 -20 0 20 40 60 80 100 TEMPERATURE°(C) TEMPERATURE
in „Einstellbarer Linearregler - in etwa so?“ · Analoge Elektronik und Schaltungstechnik ·
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74LS193.pdf
5 L June 198S 1 3 / 54LS193/DM54LS193/DM74LS193 D M Synchronous 4-Bit Up/Down Binary 4 Counters with Dual Clock L S General Description 9 This circuit is a synchronous up/down 4-bit binary counter.gned to be cascaded
in „Binär-Zähler - fertig kaufen oder Lötvorlage gesucht“ · Mikrocontroller und Digitale Elektronik ·
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STM.pdf
V IH V 6.0 or 5.9 6.0 5.9 5.9 4.5 V IL I=-4.0 mA 4.18 4.31 4.13 4.10 O 6.0 O =-5.2 mA 5.68 5.8 5.63 5.60 V OL Low Level Output 2.0 VI= 0.0 0.1 0.1 0.1 Voltage 4.5 V IO= 20 A 0.0 0.1 0.1 0.1 IH V 6.0 or 0.0 0.1 0.1 0.1 4.5 V IL O= 4.0 mA 0.17 0.26 0.33 0.40 6.0 O = 5.2 mA 0.18 0.26 0.33 0.40 II Input Leakage VI= V CC or GND 〉 0.1 〉 1 〉 1 A 6.0 Current ICC Quiescent Supply 6.0 VI= V CC or GND 4 40 80 A Current 4/13 M54/M74HC165 AC ELECTRICAL
in „Arduino + 74HC165“ · Mikrocontroller und Digitale Elektronik ·
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Betriebs-___Bedienungsanleitung-VariTrans_A_21000-de-Knick.pdf
S2 S1 0 0...10V 0...20 mA A 21036 P0/00 1 0...10V 4...20 mA A 21037 P0/00 www.knick.de 7 3 0...10V 0...10V A 21038 P0/00 knick@knick.de Zubehör / Accessories Order No. 8 4 Hutschienen-Busverbinder: Hilfsenergiebrückung
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151904-da-01-en-HCNR200_Optokoppler.pdf
PD . Figure 3. K3 Drift vs. Temperature. Figure 4. I PD2 Error vs. Input I PD (See Note 4). 0.035 S 0.02 1.2 = NLBF 50TH PERCENTILE T T -55°C = NL 90TH PERCENTILE P 0 V < PD < 15 V C 1.1 – 0.03 BF % 0.015 5 nA < I< 50 µA E -40°C Y L PD O 1.0 25°C I
in „analoges Signal galvanische Trennung“ · Mikrocontroller und Digitale Elektronik ·
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HCNR200_Optokoppler.pdf
PD . Figure 3. K3 Drift vs. Temperature. Figure 4. I PD2 Error vs. Input I PD (See Note 4). 0.035 S 0.02 1.2 = NLBF 50TH PERCENTILE T T -55°C = NL 90TH PERCENTILE P 0 V < PD < 15 V C 1.1 – 0.03 BF % 0.015 5 nA < I< 50 µA E -40°C Y L PD O 1.0 25°C I
in „ADC mit galv. Trennung“ · Mikrocontroller und Digitale Elektronik ·
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HCNR200.pdf
PD . Figure 3. K3 Drift vs. Temperature. Figure 4. I PD2 Error vs. Input I PD (See Note 4). 0.035 S 0.02 1.2 = NLBF 50TH PERCENTILE T T -55°C = NL 90TH PERCENTILE P 0 V < PD < 15 V C 1.1 – 0.03 BF % 0.015 5 nA < I< 50 µA E -40°C Y L PD O 1.0 25°C I
in „Energy Meter mit ADE7769 - AVR“ · Mikrocontroller und Digitale Elektronik ·
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NPort_5600_Series_QIG_v4.pdf
the NPort 5610 for theNPort 5630 to 72 VDC, -20 to -72 VDC) Power Consumption NPort 5610-8/16: 141 mA for 100V, 93 mA for 240V NPort 5610-8/16-48V: 135 mA (at 48V max.) NPort 5630-8/16: 152 mA for 100V, 98 mA for 240V NPort 5650-8/16: 158 mA @ 100 VAC, 102 mA @ 240 VAC Pin RS-232 Pin RS-422/RS-485-4W RS-485-2W NPort 5650-8/16-S-SC: 164 mA @ 100 VAC, 110 mA @ 240 VAC 1 DSR (in) 1 – – NPort 5650-8/16-M-SC: 174 mA @ 100 VAC, 113 mA @ 240 VAC 2 RTS(out) 2 – – 3 GND 3 TxD+ – Serial Cables for the NPort 5650 (RS-422/4-wire RS-485
in „RS232 Device Server macht Probleme“ · PC Hard- und Software ·
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LM2574.pdf
Limit (Note 2) SYSTEM PARAMETERS (Note 3) Test Circuit Figure 2 V Output Voltage V = 12V, I = 100 mA 3.3 V OUT IN LOAD 3.234 V(Min) 3.366 V(Max) VOUT Output Voltage 4.75V ≤ VIN≤ 40V, 0.1A ≤ LOAD ≤ 0.5A 3.3 V LM2574 3.168/3.135 V(Min) 3.432/3.465 V(Max) VOUT Output Voltage 4.75V ≤ VIN≤ 60V, 0.1A ≤ LOAD
in „Ersatz für 7805 gesucht“ · Mikrocontroller und Digitale Elektronik ·
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LM2574.pdf
Limit (Note 2) SYSTEM PARAMETERS (Note 3) Test Circuit Figure 2 V Output Voltage V = 12V, I = 100 mA 3.3 V OUT IN LOAD 3.234 V(Min) 3.366 V(Max) VOUT Output Voltage 4.75V ≤ VIN≤ 40V, 0.1A ≤ LOAD ≤ 0.5A 3.3 V LM2574 3.168/3.135 V(Min) 3.432/3.465 V(Max) VOUT Output Voltage 4.75V ≤ VIN≤ 60V, 0.1A ≤ LOAD
in „Iverting Buck Boost -5V“ · Analoge Elektronik und Schaltungstechnik ·
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MB91F465DA-FujitsuMediaDevices.pdf
voltage 3*1 VO3 HVss5 − 0.3 HV DD5 + 0.3 V Stepper motor controller Maximum clamp current CLAMP − 4.0 + 4.0 mA *3 Total maximum clamp current Σ |CLAMP| ⎯ 20 mA *3 “L” level maximum ⎯ 10 mA output current* IOL ⎯ 40 mA Stepper motor controller ⎯ 8 mA “L” level average IOLAV output current* ⎯ 30 mA Stepper motor controller “L” level total maximum ⎯ 100 mA output current ΣIOL ⎯ 360 mA Stepper motor controller ⎯ 50 mA “L” level total average ΣOLAV output current* ⎯ 230 mA Stepper motor controller “H” level maximum ⎯ − 10 mA 4 IOH output current* ⎯ − 40
in „LCD Display / Controller eines Schweißgerätes prüfen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MIC2951.pdf
4 6 mA 8 mA MIC2951-3.3 (±1%),LI = 100µA 100 180 µA 300 µA MIC2951-3.3 (±1%),LI = 100mA 1.7 2.5 mA MIC2951-3.3 (±1%),LI = 150mA 4 6 mA 10 mA MIC2951-4.8 (±1%),LI = 100µA 120 180 µA 300 µA MIC2951-4.8 (±1%),LI = 100mA 1.7 2.5 mA 3.5 mA MIC2951-4.8 (±1%),LI = 150mA 4 6 mA 8 mA Dropout Ground Current MIC295x-02/-03/-05/-06,IN = 4.5L, I = 100µA 280 350 µA 400 µA 350 µA MIC2951-3.3 (±1%), IN= 3.0V,LI = 100µA 150 400 µA MIC2951-4.8
in „Highside-Switch gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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UC3842B.pdf
. Current. Vsat D95IN341 Ii D95IN342 (V) Source Saturation (mA) Vi (Load to Ground) -1 TA=25˚C T A-40˚C 20 -2 Vi15V 80 s Pulsed Load 120Hz Rate 15 3 10 4 4 RT=10K 3 2 CT=3.3nF 2 T A-40˚C 8 8 VFB=0V TA=25˚C C C Sense0V 5 U U TA=25˚C 1 Sink Saturation GND (Load to Vi 0 0 0 200 400 600 O (mA) 0 10 20 30
in „Reparatur Schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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uc3842b.pdf
. Current. Vsat D95IN341 Ii D95IN342 (V) Source Saturation (mA) Vi (Load to Ground) -1 TA=25˚C T A-40˚C 20 -2 Vi15V 80 s Pulsed Load 120Hz Rate 15 3 10 4 4 RT=10K 3 2 CT=3.3nF 2 T A-40˚C 8 8 VFB=0V TA=25˚C C C Sense0V 5 U U TA=25˚C 1 Sink Saturation GND (Load to Vi 0 0 0 200 400 600 O (mA) 0 10 20 30
in „40-390V HV DC-DC-Wandler vom Chinamann“ · Analoge Elektronik und Schaltungstechnik ·
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DAP8A.pdf
Pin 5,ICC2 6 − 1.2 1.4 mA F = 40 kHz (Note 2) SW Internal IC Consumption, 1.0 nF Output Load on Pin 5,ICC2 6 − 1.4 1.6 mA FSW = 60 kHz (Note 2) Internal IC Consumption, 1.0 nF Output Load on Pin 5,ICC2 6 − 2.0 2.2 mA FSW =
in „Widerstand gesucht“ · Mikrocontroller und Digitale Elektronik ·
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TIC126A_ComsetSemiconductors.pdf
range -40 to +110 °C Tstg Storage temperature range -40 to +125 °C Lead temperature 1.6 mm from case TL 230 °C for 10 seconds 30/10/2012 COMSET SEMICONDUCTORS 1 | 4 datpd-eet SEMICONDUCTORS TIC126A, TIC126B, TIC126C
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SSM2019.pdf
Gain to Output 1 V/V POWER SUPPLY Supply Voltage Range VS ±5 ±18 V Supply Current SY V CM= 0 V, L = ±4.6 ±7.5 mA V CM= 0 V, S = ±18 V, L = ±4.7 ±8.5 mA Specifications subject to change without notice. –2– A REV. SSM2019 ABSOLUTE MAXIMUM RATINGS 1 Supply Voltage . . . . . . . . . . . . . . . . . . . .
in „Wie arbeitet der SM2019 Vorverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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bq25504.pdf
Functions RGT Package 16 Pins Top View R S T A S B S B S L V V V 6 5 4 3 1 1 1 1 VSS 1 12 AVSS VIN_DC 2 11 VBAT_OK Thermal VOC_SAMP 3 Pad 10 OK_PROG VREF_SAMP 4 9 OK_HYST 5 6 7 8 G V I V O _ D _ P T V T Not to scale T B B O V V Pin Functions
in „CJMCU-25504 Jumper setzen“ · Analoge Elektronik und Schaltungstechnik ·
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LOGO-Broschuere.pdf
. 265 V DC 10,8 V ... 28,8 V AC 85 ... 265 V DC 100 ... 253 V max. DC 5 V DC 100 ... 253 V max. AC 40 V/DC 30 V mind. DC 8,5 V max. AC 40 V/DC 30 V mind. AC 79 V/DC 79 V, 0,08 mA 1,5 mA (I3 ... I6) 0,1 mA (I 1, I 2, I 7, I 8) mind. AC 79 V/DC 79 V , 0,08 mA 4 Relais 4 Relais 4 Relais 10 A bei ohmscher
in „Programmierbarer hardwaretrigger/Schnellschaltrelais“ · Mikrocontroller und Digitale Elektronik ·
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XLampXBD.pdf
L D D S Product family data sheet 4 5 e v 6 A ® ® Cree XLamp XB-D LED s PRODUCT DESCRI PTIO N FEATURES Table of Contents The XLamp XB-D LED brings • Cree’s smallest lighting class Flux Characteristics.......
in „Keine angaben über erforderliche Kühlung bei 100W LED“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datenblatt_LCD_Modul.pdf
VF 25 °C - 4.2 4.6 LEDFORWARDCURRENT IF 25 °C - 220 440 DISPLAY POSITION 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 MA 00 01 0F LED WHITE VOLTAGE * ILED *3.5 V 50 60 75 DISPLAY RAM ADDRESS 40 41 4F 10 11 1F OPTIONS:
in „Display Programmierung mit GCC 16x4 Display“ · Mikrocontroller und Digitale Elektronik ·
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5821.pdf
100% 100% 100% 2 100% 100% 100% 100% 100% Dwg. EP-010-4A 1 100% 100% 100% 100% 100% TYPICAL OUTPUT DRIVER Number of Outputs ON UCN5821LW Max. Allowable Duty Cycle (OUT = 200 mA at Ambient Temperature of OUT VDD = 12 V) 25C 40°C 50°C 60°C 70°C 8 67% 59% 54%
in „Datenblatt vom UCN5821A gesucht“ · Mikrocontroller und Digitale Elektronik ·
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Infineon_TLE4206_2G_DS_v01_04_EN-2322569.pdf
Current Consumption Supply current I – 12 20 mA – S Supply current IS – 20 30 mA IOUT1= 0.4 A IOUT2 = – 0.4 A Supply current IS – 30 50 mA IOUT1 = 0.8 A IOUT2 = – 0.8 A Over- and Under Voltage Lockout UV Switch ON voltage V – 7.4 8 V V increasing
in „[V] 4St "ältere" Siemens Motorteiber TLE4206 DIL14 (3€)“ · Markt ·
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adum1200_1201.pdf
(CR Grade Only) VDD1Supply Current DD1 (25) 3.4 4.8 mA 12.5 MHz logic signal freq. VDD2Supply Current DD2 (25) 3.4 4.8 mA 12.5 MHz logic signal freq. For All Models Input Currents IA,IB −10 +0.01 +10 μA 0 V ≤ VIA VIB (V DD1 or VDD2) Logic High Input
in „USB-RS232-Konverter mit galvanischer Trennung“ · Mikrocontroller und Digitale Elektronik ·
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Spartan-3A_FPGA_Family.pdf
0.3 3 4 mA XC3S700A 0.3 3 4 mA XC3S1400A 0.3 3 4 mA CCAUXQ Quiescent VCCAUXsupply current XC3S50A 3 8 10 mA XC3S200A 5 12 15 mA XC3S400A 5 18 24 mA XC3S700A 6 28 34 mA XC3S1400A 10 50 58 mA Notes: 1. The numbers
in „Ultraschallgerät(Medizin) HMI Touch Vertikale Streifen“ · FPGA, VHDL & Co. ·
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MAX889.pdf
3.3V) (VIN = 3.3V, V OUT = -2.5V) IN OUT A 50 c 100 c 100 c 9 9 9 A 90 X 90 A M M MAX889R M MAX889R M 40 80 80 V C = 2.2 F 70 70 ( OUT ) ) L 30 ( 60 ( 60 P C C MAX889T R E 50 MAX889T E 50 MAX889S U I I T 20 COUT = 4.7 F F 40 MAX889S E 40 U E O 30 30 10 COUT= 10 F 20 20 10 10 0 0 0 0 50 100 150 200 250 300
in „Negative Betriebsspannung erzeugen“ · Analoge Elektronik und Schaltungstechnik ·
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CAT4016_-_Catalyst_-_16ch_Constant_Current_LED_driver.pdf
otherwise specified. LED Current vs. LED Pin Voltage Supply Current vs. VDD Pin Voltage 70 6.0 All LED's ON ]60 A A m5.5 m50 [ [ N5.0 N40 E E R4.5 R30 U U C C20 Y4.0 D P L U3.5 10 S All LED's OFF 0 3.0 0.0 0.3 0.6 0.9 1.2 1.5 3.0 3.5 4.0 4.5 5.0 5.5 LED PIN [V] VDD [V] LED Current vs. VDD Pin Voltage Supply
in „Leerlaufsicherheit CAT4016“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bq24072.pdf
Temperature 120 4.6 L = 1 A VIN= 5 V 4.4 T100 U V - 4.2 T 80 VBAT = 3 V e B a 4 - l e V a 60 VBAT = 3.9 V u 3.8 l t V u 3.6 u 40 - o O o V 3.4 D 20 3.2 0 3 0 25 50 75 100 125 2 2.5 3 3.5 4 4.5 TJ- Junction Temperature
in „[V] 3St TI LiIon Lade/ Batterie-Management Chips: BQ24725RG und BQ24072RG“ · Markt ·
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tempf_lm335.pdf
thermocouple type THERMO- R3 SEEBECK COUPLE ( 1%) COEFFICIENT J 377 52.3 µV/˚C T 308 42.8 µV/˚C K 293 40.8 µV/˚C S 45.8 6.4 µV/˚C Adjustments: Compensates for both sensor and resistor tolerances 1. Short LM329B 2. Adjust R1 for Seebeck Coefficient times ambient temperature (in degrees K) across R3. 3. Short
in „Temperaturmessung mit μC und LM 335“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM135_LM235_LM335TO92_NSC.pdf
thermocouple type THERMO- R3 SEEBECK COUPLE ( 1%) COEFFICIENT J 377 52.3 µV/˚C T 308 42.8 µV/˚C K 293 40.8 µV/˚C S 45.8 6.4 µV/˚C Adjustments: Compensates for both sensor and resistor tolerances 1. Short LM329B 2. Adjust R1 for Seebeck Coefficient times ambient temperature (in degrees K) across R3. 3. Short
in „Temperatusensor LM 335“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM135_LM235_LM335TO92_NSC.pdf
thermocouple type THERMO- R3 SEEBECK COUPLE ( 1%) COEFFICIENT J 377 52.3 µV/˚C T 308 42.8 µV/˚C K 293 40.8 µV/˚C S 45.8 6.4 µV/˚C Adjustments: Compensates for both sensor and resistor tolerances 1. Short LM329B 2. Adjust R1 for Seebeck Coefficient times ambient temperature (in degrees K) across R3. 3. Short
in „Temperatur + Anfänger“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM135.pdf
thermocouple type THERMO- R3 SEEBECK COUPLE ( 1%) COEFFICIENT J 377 52.3 µV/˚C T 308 42.8 µV/˚C K 293 40.8 µV/˚C S 45.8 6.4 µV/˚C Adjustments: Compensates for both sensor and resistor tolerances 1. Short LM329B 2. Adjust R1 for Seebeck Coefficient times ambient temperature (in degrees K) across R3. 3. Short
in „Spannungsversorgung LM135“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
r4k-80_datasheet_r14en.pdf
I V, I V, I 100% 100% 100% 1000 S 50% 50% 40% 40% 1300 S 100 S 10% 0 0 0 (9), (10) ON T (9) ON (10) ON T (9) ON (10) ON T status (1) Don’t send (2) 100.00% (3) 100.00% (4) 100.00%ɹ (1) 50.00%▯ (2) 40.00%▯ (3) 100.00% (1) 100.00%▯ (2)
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ics502.pdf
Input High Voltage V OE (pin 7) 2 V IH Input Low Voltage V IL OE (pin 7) 0.8 V Input High Voltage V IH S0, S1 VDD-0.5 V Input Mid Voltage VIM S1 VDD/2 V Input Low Voltage V IL S0, S1 0.5 V Output High Voltage V I = -25 mA 2.4 V OH OH Output Low Voltage VOL IOL= 25 mA 0.4 V IDD Operating Supply Current, 20 No load, 20 mA MHz crystal 100 MHz Short Circuit Current CLK output +70 mA On-Chip Pull-up Resistor Pin 7 270 kΩ Input Capacitance, S1, S0, and OE Pins 4, 6, 7 4 pF MDS 502 H 4 Revision 031105 Integrated Circuit Systems
in „Logic Analyzer bauen“ · Mikrocontroller und Digitale Elektronik ·
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XC6216.pdf
0 0 0 4 8 12 16 20 24 28 -40 -20 0 20 40 60 80 100 IInput Voltage: VIN(V) Ambient Temprature: T℃ ) XC6216B/D332 XC6216B/D332 VIN5.3V 10 10 9 9 )A 8 8 μ A ( 7 ( 7 S S n: 6 : 6 n n r 5 r 5 y 4 u l l 4 p 3 p 3
in „Suche Spannungsregler mit kleinem Ruhestrom <<2mA“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
XC6216.pdf
0 0 0 4 8 12 16 20 24 28 -40 -20 0 20 40 60 80 100 IInput Voltage: VIN(V) Ambient Temprature: T℃ ) XC6216B/D332 XC6216B/D332 VIN5.3V 10 10 9 9 )A 8 8 μ A ( 7 ( 7 S S n: 6 : 6 n n r 5 r 5 y 4 u l l 4 p 3 p 3
in „Suche Linearregler 5V für ca. 100uA minimal / 100mA max.“ · Mikrocontroller und Digitale Elektronik ·
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SN75185X.pdf
SECTION INPUT THRESHOLD VOLTAGE INPUT THRESHOLD VOLTAGE vs vs FREE-AIR TEMPERATURE SUPPLY VOLTAGE 2.4 2 2.2 1.8 VT+ 2 VT+ 1.6 V V e – g 1.8 e 1.4 l a o 1.6 l V V 1.2 l d h 1.4 o 1 e s r 1.2 r V T T h 0.8 t V – t p T u 0.6 I n 0.8 I 0.4 0.6 0.2 0.4 0 10 20 30 40 50 60 70 0 2 3 4 5 6 7 8 9 10 TA– Free-Air
in „80c32 anfänger fragen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Packages.txt
5 TQFP128 5 TO220BH 5 SOJ42 5 SM49 5 SCHURTER_LSG 5 RTRIM64P 5 R-10@2 5 PN61729-S 5 PANASONIC_C 5 NME 5 ML40 5 ML16 5 MA505 5 M5923 5 LI10 5 IC16PL 5 FE06 5 F4052 5 ES-2,5@2 5 EI30-1 5 D-2,5 5 C7.5B5 5 C075-052X106 5 AK500/3 5 AK300/3 5 3,81/1,4 5 2X02 5 2,15/1,0 5 1X09 5 02P 4 -XXX0603
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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Cypress_CY8C58LP_001-84932_0F-491909.pdf
= 3.3 V, [28] OUT BOOST [28] OUT BOOST LBOOST = 10 µH LBOOST = 22 µH 90 90 Vbat = 2.8 88 Vbat = 2.4 88 % Vbat = 1.8 % y 86 y 86 n n c 84 c 84 f f E E Vbat = 2.8 82 82 Vbat = 2.4 Vbat = 1.8 80 80 0 10 20 30 40 50 60 70 0 10 20 30 40 50 60 70 I , mA I , mA OUT OUT Notes 27.Based on device characterization
in „UART-Schnittstelle 2x verwenden?“ · Mikrocontroller und Digitale Elektronik ·
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MBI5040_Datasheet_V1.00-English.pdf
Maximum Rating Characteristic Symbol Rating Unit Supply Voltage VDD 0~7 V Input Pin Voltage (SDI) VIN -0.4~VDD0.4 V Output Current IOUT +80 mA Sustaining Voltage at OUT Port VDS -0.5~17 V GND Terminal Current IGND +1280 mA GF Type 2.52 Power Dissipation P W (On PCB, Ta=25°C) GTS Type D 3.53 GFN Type 3.13
in „TLC5940 (PWM driver) | Kauftip!“ · Mikrocontroller und Digitale Elektronik ·
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NCP1397.pdf
65 80 95 110 125 −40 −25 −10 5 20 35 50 65 80 95 110 125 TEMPERATURE (°C) TEMPERATURE (°C) Figure 4. VCC(on)Threshold Figure 5. CC(min) Threshold 60.05 510 60 509 59.95 ) 508 z z k k 507 ) 59.9 ) i a ( ( 506 S S F 59.85
in „Wegwerf-TV: Schaltnetzteil defekt?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RCD_Typ_B_Technik-Fibel_Siemens.pdf
Fehlerstrom-Schutzschalter (RCCB) 5SM3 • Typ B, Typ B+ • n= 16 … 80 A • I = 30, 300 und 500 mA ∆n • 2-polig (1+N) und 4-polig (3+N) • Ausführung K und S SIQUENCE FI/LS-Schalter (RCBO) 5SU1 • Typ B, Typ B+ • = 100 ... 125 A n • ∆n = 30, 300 mA und 1A • 4-polig • LS-Charakteristik C und D • Bemessungsschaltvermögen
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PDF
XLampXT-E.pdf
L D D S Product family data sheet 4 1 e v 1 ® ® A Cree XLamp XT-E LED s Product Description FEATURES TA BLE OF CONTENTS XLamp XT-E is Cree’s highest • Available in white, 80-CRI min Product Characteristics..
in „Verkaufe Restbestände Cree LEDs XT-E XTEAWT-00-0000-00000BFE4“ · Markt ·
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PDF
AD1974-1501665.pdf
IH@V IH2.4V 10 µA IL@V IL0.8V 10 µA High Level OutputVoltage (OH) OH = 1 mA DVDD − 0.60 V Low Level OutputVoltage (OL) OL= 1 mA 0.4 V Input Capacitance 5 pF Rev. D | Page 4 of 24 Data Sheet AD1974 POWER SUPPLY
in „Verwirrende Bauteilbezeichnung Datenblatt (AD1974)“ · Analoge Elektronik und Schaltungstechnik ·
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ADV7175A.pdf
0 100 kHz SCLOCK High Pulsewidth, t 1 4.0 s SCLOCK Low Pulsewidth, t 2 4.7 s Hold Time (Start Condition), t3 After This Period the First Clock Is Generated 4.0 s Setup Time (Start Condition), t4 Relevant for Repeated Start Condition 4.7 s
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lp2985-n.pdf
mA −1.5 1.5 −2.5 2.5 −2.5 2.5 −3.5 3.5 %V NOM 1 mA ≤ I ≤ 150 mA −2.5 2.5 −3.0 3.0 L −3.5 3.5 −4.0 4.0 Output Voltage V ONOM)+1V ≤ V IN≤ 16V 0.007 0.014 0.014 %/V Line Regulation 0.032 0.032 (1) Exposing
in „Wo ist der Pin1 ?“ · Mikrocontroller und Digitale Elektronik ·
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CD4538.pdf
DDe 15V, O e 1.5V or 13.5V 11.0 11.0 8.25 11.0 V IOL Low Level V DDe 5V, O e 0.4V e 0.64 0.51 0.88 0.36 mA Output Current VDDe 10V, O e 0.5V VIH V DD 1.6 1.3 2.25 0.9 mA e e VILe VSS (Note 3) V D 15V, O 1.5V ( 4.2 3.4 8.8 2.4 mA I High Level V e 5V, V e 4.6V b0.64 b0.51 b 0.88 b0.36 mA OH DD O VIHe V DD Output Current VDDe 10V, O e 9.5V e b 1.6 b 1.3 b 2.25 b 0.9 mA (Note 3) V De 15V, O e 13.5V( VIL VSS b 4.2 b 3.4 b8.8 b 2.4 mA IIN Input Current,V DDe 15V, INe 0V or 15V b Pin 2 or
in „LED soll leuchten, wenn ein pc lüfter nicht dreht. Kein Einbau im PC“ · Analoge Elektronik und Schaltungstechnik ·
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D1FP_DE.pdf
Nullschnitt 3 E50B 3 7 6 + PE + Freigabe E50C 6 E50F 12 E50G 16 E50H 25 Code Signal Öffnungsrichtung E50M 40 B +/- 10V 0...+10V -> P-A B60C 6 / 3 E +/- 20 mA 0...+20 mA -> P-A B60F QB= QA/2 12 / 6 S 4...20 mA 12...20 mA -> P-A B60G 16 / 8 B60H 25 / 12,5 B60M 40 / 20 Unterdeckung Code Dichtung E55B 3 N NBR E55C
in „Ansteuerung direktgesteuertes Proportionalventil“ · Analoge Elektronik und Schaltungstechnik ·
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top200yai.pdf
2.63 di/dt = 420 mA/ s,jT = 25˚C TOP204 2.25 3.15 di/dt = 500 mA/ s, T = 25˚C j Leading Edge tLEB IC= 4 mA 150 ns Blanking Time Current Limit Delay ILD IC= 4 mA 100 ns Thermal Shutdown I = 4 mA 125 145 °C Temperature C Latched Shutdown Trigger Current SD See Figure 13 25 45 75 mA Power-up Reset V S2 open 2.0 3.3 4.2 V Threshold Voltage C(RESET) 7/9611 TOP200-4/14 Conditions (Unless Otherwise Specified) Parameter Symbol See Figure 14 Min Typ Max Units SOURCE = 0 V T = -40 to 125
in „Reparatur Ladegerät DBL430-14 Überspannung“ · Analoge Elektronik und Schaltungstechnik ·