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TLC59116.pdf
0.5 s HIGH High period of SCL clock 4 0.6 0.26 s Fall time of both SDA and SCL (6) f signals(4)(5) 300 20+0.1C b 300 120 ns Rise time of both SDA and SCL (6) r signals 1000 20+0.1C b 300 120 ns Pulse width of spikes that must be SP suppressed by the input filter7) 50 50 50 ns Reset W Reset pulse width
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PDF
A501_LCW_E6SG.pdf
=25°C) Wärmewiderstand Thermal resistance Sperrschicht/Umgebung 4Seite 22 R 300 K/W 4) page 22 th JA Junction/ambient Sperrschicht/Lötpad Rth JS 180 K/W Junction/solder point 2008-10-10 3 LCW E6SG Kennwerte Characteristics (TA = 25 °C) Bezeichnung Symbol Wert Einheit Parameter
in „LED ganz einfach dimmen“ · Mikrocontroller und Digitale Elektronik ·
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MC_product_selection_AN.pdf
Ites Chyc Diat( Opep Iii R C R T This application note shows characteristics of some Alkaline 0.3 100-300 1 0.25C -20-+55ery popular battery chemistries for portable applications Low SLA 2-8 2.5-25 50-500 <15C -20-+50 Low and fully integrated low cost single-cell Lithium-Ion/ Lithium Polymer battery charge
in „Hackbarer(?) 21 EUR Quadcopter“ · Mikrocontroller und Digitale Elektronik ·
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datasheet.pdf
3.6 V 300 250 ) A 200 ( o t 3.3 V m 150 u 3.6 V n C 100 50 0 -40 0 25 70 85 105 Temperature (°C) 38/83 STM32F103x6, STM32F103x8, STM32F103xB Electrical characteristics Figure 17. Current consumption in Standby
in „ARM Audio Spektrum Analyser“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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8XCE558.pdf
PLL operation V = 5.5 V 100 A DD Inputs V Input LOW voltage, except EA, SCL, SDA –0.5 0.2V –0.1 V IL DD V Input LOW voltage to EA –0.5 0.2V –0.3 V IL1 DD V Input LOW voltage to SCL, SDA –0.5 0.3V V IL2 DD V Input HIGH voltage, except XTAL1, RSTIN, SCL, SDA, ADEXS 0.2V +0.9 V +0.5 V IH DD DD V Input
in „Gesucht: schnelles 8051-Derivat mit Bootloader“ · Mikrocontroller und Digitale Elektronik ·
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MAX7393-MAX7394.pdf
Continuous Power DissipationA(T +70°C) Lead Temperature (soldering, 10s).................................+300°C 6-Pin µDFN (derate 4.5mW/°C over +70°C) ................358mW X 6-Pin TDFN (derate 18.2mW/°C over +70°C) ............1455mW A M Stresses beyond those listed under “Absolute Maximum Ratings” may cause
in „Suche Halbleiter-Oszillator 13,56 MHz“ · HF, Funk und Felder ·
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340461.pdf
VCC Note 3 14.25 15 15.75 V High Level Input V 0.8xV - V V IH DD DD Low Level Input V 0 - 0.2 x V IL IOUT=0.1mA, VDD High Level Output VOH 3.3MHz 0.9VxDD - VDD V 0 0.1 x Low Level Output VOL - V DD V Note 4 - 250 400 Operating current for DD IDD µA Note 5 - 250 400 Note 4 - 31 39 Operating current for
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PDF
340461.pdf
VCC Note 3 14.25 15 15.75 V High Level Input V 0.8xV - V V IH DD DD Low Level Input V 0 - 0.2 x V IL IOUT=0.1mA, VDD High Level Output VOH 3.3MHz 0.9VxDD - VDD V 0 0.1 x Low Level Output VOL - V DD V Note 4 - 250 400 Operating current for DD IDD µA Note 5 - 250 400 Note 4 - 31 39 Operating current for
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2003092109_PTC-Princeton-Tech-PT4308_C481966.pdf
Garage door and gate openers Suitable for applications that must adhere to either the European ETSI-300-220 or the North American FCC (Part 15)regulatory standards BLOCK DIAGRAM XIN 8 1 PLL Reference VSS Oscillator I Q CSF (BPF) Limiter 7 CTH ANT 2 Data Filter LNA Buffer (LPF) Amplifier 6 DO IRM RSSI
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GPM1421C0.pdf
V IDD --- --- 20 mA Input High level voltage V IH 0.7*IOVCC --- IOVCC V Input Low level voltage V IL VSS --- 0.3*IOVCC V Output High level voltage VOH 0.8*IOVCC --- IOVCC V Output Low level voltage VOL VSS --- 0.2*IOVCC V Operating Temperature TOP -20 --- 70 ℃ Storage Temperature TSTG -30 --- 80 ℃ Power
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abb_sanftanlasser_handbuch_2CDC132002M0101.pdf
) T = 46-40 C = 6 C Ieabgesenkt = Ie- ( T x Iex Neuer Strom = e - ( T xeI x 0,008) = 0,008) 300 - (6 x 300 x 0,008) = 285,6 A I abgesenkt = maximaler 4 1 Betriebsstrom nach Absenkung Ie = Nennstrom des Sanftanlassers T = Temperaturdifferenz 0,008 = Absenkungsfaktor Absenkung beim Einsatz in
in „Santanlauf 400V für zwei Motoren?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STM103.pdf
3.3 V and 3.6 V 300 250 ) A 200 ( o t 3.3 V m 150 u 3.6 V n C 100 50 0 -40 0 25 70 85 105 Temperature (°C) Doc ID 13587 Rev 11 43/92 Electrical characteristics STM32F103x8, STM32F103xB Figure 19. Typical current consumption
in „STM32 2 Versorgungsspannungen?“ · Mikrocontroller und Digitale Elektronik ·
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ADS8364.pdf
Rejection Ratio (CMRR) At DC 84 dB VIN = ±1.25Vp-p at 50kHz 80 dB Bandwith (BW) FS Sinewave, –3dB 300 MHz DC ACCURACY Relsolution 16 Bits No Missing Codes (NMC) 14 Bits Integral Linearity Error (INL) ±3 ±8 LSB Integral Linearity Match Only Pair Wise Matching 1.5 LSB Differential Nonlinearity (DNL) Specified
in „ADC ADS8364 ansprechen“ · Mikrocontroller und Digitale Elektronik ·
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ADNS-2700.pdf
Input V SEI 0.8 V Input High (Driven) V 2.0 V IH Input High (Floating) V IHZ 2.7 3.6 V Input Low V IL 0.8 V 7.5 k toVDDA5 Differential Input Sensitivity V 0.2 V |(D+)-(D-)| See Figure 12 DI Differential Input Common V CM 0.8 2.5 V IncludesV DISee Figure 12 Mode Range Single Ended ReceiverThreshold V
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PDF
ab-EVAL6229PD.pdf
GND logic input voltage -10 A IL I High level logic input current 7 V logic input voltage 10 A IH V Turn-ON input threshold 1.8 2.0 V th(ON) V Turn-OFF input threshold 0.8 1.3 V th(OFF) V thHYS Input thresholds hysteresis 0.25 0.5
in „BLDC Motor rotiert nicht trotz Spannung“ · Analoge Elektronik und Schaltungstechnik ·
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technical.pdf
·L 2 L 1 k · L1·L 2 VL1,n+1 = + R1 ·IL1,n+1+ ·IL2,n+1− + R 1 ·IL1,n− ·IL2,n hn h n h n hn req11 req12 V eq1 (6.78) The voltage across the secondary coL2,n+1 goes likewise by just changing the indices. For every inductance this approach creates
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ddr-buch-simson-s51-s70-1-sr50-sr80.pdf
- keilverrastung aus ihren Führungen fallen und eine völlige Demontage des Motors nötig wird. ,. B il« 6.2.6. Auswecltseln der Wellendichtringe und Rundringe Es werden nachstehende Wellendichtringe und Gummirundringe verwendet: Wellendichtringe D 20X 35X 7 S1 TGL 16454 Ws 1.018(öl- und benzinfest) für
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PDF
UC1701.pdf
Mode Human Body Mode Pins V V V V DD SS DD SS LCD Driver 150V 150V 2000V 1500V LCM Digital Interface 300V 250V 3000V 3000V TST1/2/4 300V 300V 3000V 3000V LCM HV CBpins 300V 300V 3000V 3000V Interface VLCDIN 250V 300V 3000V 3000V V LCDOUT 300V 300V 3000V 3000V PWR/GND -- 300V -- 3000V According to UltraChip's
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PDF
Ferroxcube_Data_Handbook.pdf
(kHz)1000 Fig.1 Initial permeability as a function of frequency. MFP202 MFP203 4 800 ∆µi MPP B (%) 300µ (mT) MPP 700 3 125µ 200µ 600 300µ 60µ 2 160µ 500 147µ 125µ 400 160µ 1 26µ 60µ 300 173µ 200µ 14µ 26µ 0 14µ 200 14µ 100 300µ −1 −40 0 40 80 120 160 200 0 T ( C) 0.1 1 10 H (A/m) 100 Fig.2 Initial permeability
in „Maximale Magnetflussdichte im Ferritkern Temperaturangabe“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AT89S8252_Datasheet_doc0401.pdf
VCC V VOH1 Output High-voltage OH = -800 µA, VCC= 5V ±10% 2.4 V (Port 0 in External Bus Mode) OH = -300 µA 0.75 VCC V OH = -80 µA 0.9 VCC V IL Logical 0 Input Current (Ports 1,2,3) VIN 0.45V -50 µA I Logical 1 to 0 Transition Current (Ports 1,2,3) V = 2V, V = 5V ±10% -650 µA TL IN CC I Input Leakage Current 0.45 < V < V ±10 µA LI IN CC (Port 0, EA) RRST Reset Pull-down Resistor 50 300 KΩ CIO Pin Capacitance Test Freq. = 1 MHz, A = 25°C 10 pF CC Power Supply Current Active Mode, 12 MHz 25 mA Idle Mode, 12 MHz 6.5 mA Power-down Mode (2) VCC = 6V 100 µA V = 3V 40 µA CC Notes: 1. Under
in „lichtschranke mit zählfunktion einer umdrehung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT89S8252.pdf
VCC V VOH1 Output High-voltage OH = -800 µA, VCC= 5V ±10% 2.4 V (Port 0 in External Bus Mode) OH = -300 µA 0.75 VCC V OH = -80 µA 0.9 VCC V IL Logical 0 Input Current (Ports 1,2,3) VIN 0.45V -50 µA I Logical 1 to 0 Transition Current (Ports 1,2,3) V = 2V, V = 5V ±10% -650 µA TL IN CC I Input Leakage Current 0.45 < V < V ±10 µA LI IN CC (Port 0, EA) RRST Reset Pull-down Resistor 50 300 KΩ CIO Pin Capacitance Test Freq. = 1 MHz, A = 25°C 10 pF CC Power Supply Current Active Mode, 12 MHz 25 mA Idle Mode, 12 MHz 6.5 mA Power-down Mode (2) VCC = 6V 100 µA V = 3V 40 µA CC Notes: 1. Under
in „UART_ Werte empfangen???“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT89S8252.pdf
VCC V VOH1 Output High-voltage OH = -800 µA, VCC= 5V ±10% 2.4 V (Port 0 in External Bus Mode) OH = -300 µA 0.75 VCC V OH = -80 µA 0.9 VCC V IL Logical 0 Input Current (Ports 1,2,3) VIN 0.45V -50 µA I Logical 1 to 0 Transition Current (Ports 1,2,3) V = 2V, V = 5V ±10% -650 µA TL IN CC I Input Leakage Current 0.45 < V < V ±10 µA LI IN CC (Port 0, EA) RRST Reset Pull-down Resistor 50 300 KΩ CIO Pin Capacitance Test Freq. = 1 MHz, A = 25°C 10 pF CC Power Supply Current Active Mode, 12 MHz 25 mA Idle Mode, 12 MHz 6.5 mA Power-down Mode (2) VCC = 6V 100 µA V = 3V 40 µA CC Notes: 1. Under
in „I2C Anschluß AT89S8252“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc0401.pdf
VCC V VOH1 Output High-voltage OH = -800 µA, VCC= 5V ±10% 2.4 V (Port 0 in External Bus Mode) OH = -300 µA 0.75 VCC V OH = -80 µA 0.9 VCC V IL Logical 0 Input Current (Ports 1,2,3) VIN 0.45V -50 µA I Logical 1 to 0 Transition Current (Ports 1,2,3) V = 2V, V = 5V ±10% -650 µA TL IN CC I Input Leakage Current 0.45 < V < V ±10 µA LI IN CC (Port 0, EA) RRST Reset Pull-down Resistor 50 300 KΩ CIO Pin Capacitance Test Freq. = 1 MHz, A = 25°C 10 pF CC Power Supply Current Active Mode, 12 MHz 25 mA Idle Mode, 12 MHz 6.5 mA Power-down Mode (2) VCC = 6V 100 µA V = 3V 40 µA CC Notes: 1. Under
in „IDE für 8051“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS1775R.pdf
UNITS NOTES Supply Voltage V 2.7 5.5 V 1 DD Input Logic High V IH 0.7 DD V DD.5 V 1 Input Logic Low V IL -0.5 0.3VDD V 1 SDA Output Logic Low VOL1 3 mA sink 0 0.4 V 1 Voltage current VOL2 6 mA sink 0 0.6 current O.S. Saturation Voltage V OL 4 mA sink 0.8 V 1,9 current Input current each I/O pin 0.4 < V
in „AkkuPack mit 12 Volt 2100mAh wie laden ?“ · Mikrocontroller und Digitale Elektronik ·
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HSDL-3612.pdf
120 D ( 100 L 0.3 P I L 80 0.2 60 40 0.1 20 1.3 1.5 1.7 1.9 2.1 2.3 00 30 60 90120 150 180210240 270 300 LEDA VOLTAGE (V) ILED (mA) ILED vs. LEDA. Light Output Power (LOP) vs. ILED. Marking Information The HSDL-3612-007/-037 is marked “3612YYWW” on the shield where “YY” indicates the unit’s manufacturing
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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Peavey_Semiconductors_Cross_Ref_2009.pdf
70400160 HALF BRIDGE FEP16GT 70400161 HALF BRIDGE B-400* IR20F-20 GEA-327B 70400400 10A, 200V STUD P-300D 1N5402, 1N5403 70400502 200V, 3 AMP MR-502 1N5403, 1N5402 70400502 200V, 3 AMP BB-619A SURFACE MOUNT 70400619 TUNING DIODE BAR -74S SURFACE MOUNT 70400740 G.P. 1N747A 70400747 3.6V, 5% ZENER 1N 751A
in „Transistor Ersatztypen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Peavey_Semiconductors_CrossRef_2010.pdf
70400160 HALF BRIDGE FEP16GT 70400161 HALF BRIDGE B-400* IR20F-20 GEA-327B 70400400 10A, 200V STUD P-300D 1N5402, 1N5403 70400502 200V, 3 AMP MR-502 1N5403, 1N5402 70400502 200V, 3 AMP BB-619A SURFACE MOUNT 70400619 TUNING DIODE BAR -74S SURFACE MOUNT 70400740 G.P. 1N747A 70400747 3.6V, 5% ZENER 1N 751A
in „Transistor Ersatztypen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HEF40174B.pdf
Type number Package Name Description Version HEF40174BP DIP16 plastic dual in-line package; 16 leads (300 mil) SOT38-4 HEF40174BT SO16 plastic small outline package; 16 leads; body width 3.9 mm SOT109-1 NXP Semiconductors HEF40174B Hex D-type flip-flop 5. Functional diagram 3 4 6 11 13 14 D0 D1 D2 D3 D4
in „[V] 96St. Hex D-type flip-flop HEF40174D SO16 (7€)“ · Markt ·
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PDF
Schieberegister_TPIC_6B595_DB_Datenblatt.pdf
0.1 VOL OUT V OL = 4 mA, VCC = 4.5 V 0.3 0.5 IH High-level input current VCC = 5.5 V, VI= VCC 1 µA IL Low-level input current VCC = 5.5 V, VI= 0 –1 µA All outputs OFF 20 100 CC Logic supply current VCC = 5.5 V All outputs ON 150 300 µA Logic supply current at SRCK = 5 MHz, CL= 30 pF, CC(FRQ) frequency
in „Auswahl Schalterarray“ · Mikrocontroller und Digitale Elektronik ·
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Datasheet_TPIC6B595.pdf
0.1 VOL OUT V OL = 4 mA, VCC = 4.5 V 0.3 0.5 IH High-level input current VCC = 5.5 V, VI= VCC 1 µA IL Low-level input current VCC = 5.5 V, VI= 0 –1 µA All outputs OFF 20 100 CC Logic supply current VCC = 5.5 V All outputs ON 150 300 µA Logic supply current at SRCK = 5 MHz, CL= 30 pF, CC(FRQ) frequency
in „Interne Schaltung: TPIC6B595“ · Mikrocontroller und Digitale Elektronik ·
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TCS34725.pdf
) t SCL clock low period 1.3 μs (LOW) t(HIGH) SCL clock high period 0.6 μs tF Clock/data fall time 300 ns tR Clock/data rise time 300 ns C i Input pin capacitance 10 pF † Specified by design and characterization; not production tested. PARAMETER MEASUREMENT INFORMATION t(LOW) t(R) t(F) VIH SCL V IL t
in „Frage zu TCS 34725 - RGBC Sensor“ · Mikrocontroller und Digitale Elektronik ·
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S29GL512N.pdf
Current VOUT= V SS CC ±1.0 µA CC CC max I VIOActive Read Current VIO= 1.8 V, CE# = VIL OE# = VIL WE# = V IL 5 10 µA IO1 (Switching Current) f =5 MHz I V Non-Active Output CE# = V OE# = V 0.2 10 mA IO2 IO IL, IH CE# = V IL,OE# = V IHV CC = VCCmax , 25 30 f = 5 MHz, Byte Mode ICC1 VCCActive Read Current (1) mA CE# = V OE# = V , V = V , IL, IH CC CCmax 25 30 f = 5 MHz, Word Mode ICC2 VCCInitial Page Read Current (1) CE# = V IL,OE# = V IH,VCC = VCCmax 50 60 mA I V Intra-Page Read Current (1) CE# = V OE# = V V = V 10 20 mA CC3 CC IL, IH,
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tsc2003.pdf
100pF max 10 80 ns High-Speed Mode, C = 400pF max 20 160 ns b Fall Time of SCL Signal t Standard Mode 300 ns fCL Fast Mode 20 + 0.1Cb 300 ns High-Speed Mode, C b 100pF max 10 40 ns High-Speed Mode, C = 400pF max 20 80 ns b Rise Time of SDA Signal trDA Standard Mode 1000 ns Fast Mode 20 + 0.1Cb 300 ns High-Speed
in „Touchscreen Controller“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
14_pdfsam_TEA5767HN.pdf
output VRF = 1 mV; L = R; 60 75 90 mV voltage f = 22.5 kHz; f = 1 kHz; mod de-emphasis = 75 s; BAF = 300 Hz to 15 kHz (S+N)/N maximum signal plus VRF = 1 mV; L = R; 54 60 - dB noise-to-noise ratio f = 22.5 kHz;mod = 1 kHz; de-emphasis = 75 s; B = 300 Hz to 15 kHz AF THD total harmonic distortion VRF = 1 mV; L = R; - 0.5 1.5 % f = 75 kHz; f = 1 kHz; mod de-emphasis = 75 s α AM suppression V = 300 V; L = R; 40 - - dB AM RF f = 22.5 kHz;mod = 1 kHz; m = 0.3; de-emphasis = 75 s; BAF = 300 Hz to 15 kHz R o demodulator output - - 500 resistance Isink demodulator output sink - - 30 A current Soft
in „TEA5767 Scannt nicht korrekt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
High_Performance_Flash_and_Arc_Lamps_-_PerkinElmer.pdf
Power Current (volts) (watts) Power (ohms) Power (ohms) (hours) 4 50 154 4.75/13 23 87 2000 3.8 1.4 300 4 75 179 4.75/13 23 130 3000 5.7 2.0 300 4 100 204 4.75/13 23 174 4000 7.6 2.7 300 5 50 154 4.75/13 32 81 2600 2.5 0.9 300 5 75 179 4.75/13 32 122 3900 3.8 1.4 300 To assist in the selection of alternative
in „Projekt: Leistungsstarkes Blitzgerät aus 12 Volt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Perkin_Elmer_Flash___Arc_Tubes.pdf
Power Current (volts) (watts) Power (ohms) Power (ohms) (hours) 4 50 154 4.75/13 23 87 2000 3.8 1.4 300 4 75 179 4.75/13 23 130 3000 5.7 2.0 300 4 100 204 4.75/13 23 174 4000 7.6 2.7 300 5 50 154 4.75/13 32 81 2600 2.5 0.9 300 5 75 179 4.75/13 32 122 3900 3.8 1.4 300 To assist in the selection of alternative
in „Reparatur (UW) Blitzgerät möglich?“ · Mikrocontroller und Digitale Elektronik ·
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mc39i_hd_v0102.pdf
of mobile phones with the basic restrictions related to human exposure to electromagnetic fields (300 MHz - 3 GHz) MC39i_HD_V01.02 Page 12 of 76 12.11.2003 MC39i Hardware Interface Description s Confidential / Released m obile 1.4 Safety precautions The following safety precautions must be observed
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AD22057.pdf
Rejection Ratio f = 1 kHz 80 90 dB RINCM Common-Mode Input Resistance Pin 1 or Pin 8 to Pin 2 180 240 300 k RMATCH Matching of Resistances 0.5 % R Differential Input Resistance Pin 1 to Pin 8 280 400 k INDIFF PREAMPLIFIER G Closed-Loop Gain1 9.7 10.0 10.3 V/V CL VO Output Voltage Range (Pin 3) +0.01 +4.8
in „Grundsätzliches zur Spannungs,Srommessung“ · Analoge Elektronik und Schaltungstechnik ·
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ina121.pdf
PARAMETER CONDITIONS MIN TYP MAX MIN TYP MAX UNITS INPUT Offset Voltage, RTI ±200±200/G ±500±500/G ±300±200/G ±1000±1000/G V vs Temperature ±2±2/G ±5±20/G ±15±20/G V/°C vs Power Supply VS= ±2.25V to ±18V ±5±20/G ±50±150/G V/V Long-Term Stability ±0.5 V/mo 12 Impedance, Differential 10 || 1 || pF Common-Mode
in „Pulsmessung über Kontaktflächen“ · Mikrocontroller und Digitale Elektronik ·
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BMP085_DataSheet_Rev.1.0_01July2008.pdf
BMP085 Data sheet Bosch Sensortec Digital pressure sensor Data sheet BMP085 Data sheet Order code 0 273 300 144 Package type LCC8 Data sheet revision 1.0 Release date 01 July 2008 Document number BST-BMP085-DS000-03 Rev. 1.0 Page 1 01 July 2008 Notes The BMP085 digital pressure sensor is functionally compatible
in „TWI i2c adresse“ · Mikrocontroller und Digitale Elektronik ·
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14223_ADI_ADP2108.pdf
= 0V,TA=TJ= −40°C to +85°C 0.2 1.0 μA SW CHARACTERISTICS SW On Resistance (WLCSP) PFET 320 mΩ NFET 300 mΩ SW On Resistance (TSOT) PFET 380 mΩ NFET 260 mΩ Current Limit PFET switch peak current limit 1100 1300 1500 mA ENABLE CHARACTERISTICS EN Input HighThreshold 1.2 V EN Input LowThreshold 0.4 V EN Input
in „Reflowlöten - Bastlermethode mit Cerankochfeld und Infrarot-Thermometer (bestes Vorgehen gesucht)“ · Platinen ·
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PDF
14223_ADI_ADP2108.pdf
= 0V,TA=TJ= −40°C to +85°C 0.2 1.0 μA SW CHARACTERISTICS SW On Resistance (WLCSP) PFET 320 mΩ NFET 300 mΩ SW On Resistance (TSOT) PFET 380 mΩ NFET 260 mΩ Current Limit PFET switch peak current limit 1100 1300 1500 mA ENABLE CHARACTERISTICS EN Input HighThreshold 1.2 V EN Input LowThreshold 0.4 V EN Input
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PDF
14223_ADI_ADP2108.pdf
= 0V,TA=TJ= −40°C to +85°C 0.2 1.0 μA SW CHARACTERISTICS SW On Resistance (WLCSP) PFET 320 mΩ NFET 300 mΩ SW On Resistance (TSOT) PFET 380 mΩ NFET 260 mΩ Current Limit PFET switch peak current limit 1100 1300 1500 mA ENABLE CHARACTERISTICS EN Input HighThreshold 1.2 V EN Input LowThreshold 0.4 V EN Input
in „WLCSP von Analog Devices, Wie erkennt man die PIN-Markierung?“ · Platinen ·
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PDF
ad420_datasheet.pdf
. . –65°C to +150°C DATA I/P 17VOUT Lead Temperature (Soldering, 10 sec) . . . . . . . . . . . . +300°C LATCH 7 REGISTER 16-BIT SWITCHED CLOCK 8 DAC CURRENT 1.25kV Thermal Impedance: DATA IN 9 SOURCES SOIC (R) Package . . . . . . . . . . . . . . . . . . . . . . AND 3 FAULT JA RANGE 5 FILTERING DETECT
in „Suche AD420 in SMD Format“ · Mikrocontroller und Digitale Elektronik ·
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BST-BMP180-DS000-09-2.pdf
2 BMP180 BMP180 D IGITAL PRESSURE SENSOR Key features Pressure range: 300 ... 1100hPa (+9000m ... -500m relating to sea level) Supply voltage: 1.8 ... 3.6V (DD) 1.62V ... 3.6V (V ) DDIO Package: LGA package with metal lid Small footprint: 3.6mm x 3.8mm Super-flat: 0.93mm
in „BMP180 Luftdruck Sensor“ · Mikrocontroller und Digitale Elektronik ·
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LRTB_GVTG_15_.pdf
temperature Durchlassstrom (min.) I - 5 5 mA F Forward current (max.) 40 50 50 (TA=25°C) Stoßstrom IFM 100 300 300 mA Surge current tp= 10 s,D = 0.005, TA=25°C Sperrspannung 2)Seite 27 V 12 5 V 2) page 27 R Reverse voltage (TA=25°C) 2018-03-29 3 LRTB GVTG Kennwerte Characteristics (TA = 25 °C) Bezeichnung Symbol
in „LRTBGVT erstellen(LTspice)“ · Analoge Elektronik und Schaltungstechnik ·
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LTC2418.pdf
10µF Even for the most stringent applications, a one-time A calibration operation may be sufficient. –300 0 100 200 300 400 500 600 700 800 9001000 RSOURCE (Ω) In addition to the input sampling charge, the input ESD 2414/18 F16 protectiondiodeshaveatemperaturedependent leakage Figure 16. –FS Error vs R
in „4-kanal PT100 Multiplexer 24bit Schaltung, Messbrücke, ratiometrisch, c't lab“ · Analoge Elektronik und Schaltungstechnik ·
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X1226.pdf
Address Byte. (4) For reference only and not tested. (5) V = V x 0.1, V= V x 0.9, f = 400kHz, SDA = Open IL CC IH CC SCL (6) IL= VCC x 0.1,IH= VCC x 0.9SCL = 400kHz,SDA = 400kHz, CC = 1.22 xCC Min (7) CC = 0V. (8) BACK = 0V. (9) V =V = V , Others = GND or V SDA SCL CC CC (10)SDA =VSCL = VBACK, Others = GND
in „kann RTC X1226 nicht beschreiben“ · Mikrocontroller und Digitale Elektronik ·
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PCA9531_5-181573.pdf
VI= VDD or VSS [3]- 1.7 2.2 V Input SCL; input/output SDA V LOW-level input voltage −0.5 - +0.3V V IL DD VIH HIGH-level input voltage 0.7V DD - 5.5 V OL LOW-level output current VOL = 0.4 V 3 6.5 - mA L leakage current VI= V DD = VSS −1 - +1 A Ci input capacitance VI= V SS - 3.7 5 pF I/Os VIL LOW-level
in „[V] 3St. SMD 8-bit I2C LED Treiber NXP PCA9531D (SO16)“ · Markt ·
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ADG3308.pdf
Units LOGIC INPUTS/OUTPUTS Input High Voltage VIH V CCY -0.4 V V CCA -0.4 V Input Low Voltage V 0.4 V IL 0.4 V Output High Voltage VOH IOH = 20 µA, V CCY -0.4 V I = 20 µA, V -0.4 V OH CCA Output Low Voltage VOL IOL= 20 µA, 0.4 V IOL= 20 µA, 0.4 V Input Leakage Current I 0 ⱕ V ⱕ 3.6 V ±1 µA I IN Output Leakage
in „3,3v/5v bidirektionale Pegelanpassung“ · Mikrocontroller und Digitale Elektronik ·