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2Gb_1_35V_DDR3L.pdf
Input high DC voltage: Logic 1 VIH(DC90)min 90 90 90 mV Input low DC voltage: Logic 0 V –90 –90 –90 mV IL(DC90)min Input low AC voltage: Logic 0 V IL(AC125)min – – –125 mV Input low AC voltage: Logic 0 V IL(AC135)min –135 –135 –135 mV 1 Input low AC voltage: Logic 0 V IL(AC160)min –160 –160 – mV Note: 1.
in „DDR3 Datenblatt richtig lesen“ · Mikrocontroller und Digitale Elektronik ·
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CD4514BC.PDF
Package Diagram e CD4514BCWM M24B 24-Lead Small Outline Integrated Circuit (SOIC), JEDEC MS-013, 0.300 Wide CD4514BCN N24A 24-Lead Plastic Dual-In-Line Package (PDIP), JEDEC MS-011, 0.600 Wide d e CD4515BCWM M24B 24-Lead Small Outline Integrated Circuit (SOIC), JEDEC MS-013, 0.300 Wids CD4515BCN N24A
in „Adressierung Porterweiterung mit IC 4514“ · Mikrocontroller und Digitale Elektronik ·
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74HCT14.PDF
SYMBOL PARAMETER MIN. TYP.(1) MAX. UNIT OTHER VCC (V) Tamb= 25 °C VOH HIGH-level output VI= VIHor IL voltage O = −20 A 2.0 1.9 2.0 − V I = −20 A 4.5 4.4 4.5 − V O O = −20 A 6.0 5.9 6.0 − V O = −4.0 mA 4.5 3.98 4.32 − V I = −5.2 mA 6.0 5.48 5.81 − V O VOL LOW-level output VI= VIHor IL voltage O = 20
in „Clamp Dioden in jedem CMOS Baustein? (74HC14)“ · Mikrocontroller und Digitale Elektronik ·
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LM317LZ_Motorola_vorh.pdf
stability from lot to lot. 2 MOTOROLA ANALOG IC DEVICE DATA LM317L Representative Schematic Diagram Vin 300 300 300 3.0k 30 70 6.8V 0 6.8V 350 18k 8.67k 500 130 40 5.1k 0 200 k 180 180 2.0k 6.0k 10 60 2.5 6.3V pF 10 pF Vout 2.4k 12.8k 5 0 Adjust Figure 1. Line Regulation and I /Line Test Circuit Adj V CC
in „Wird durch einen Vorwiderstand an einer LED aus einer Steuerung eine Regelung?“ · Analoge Elektronik und Schaltungstechnik ·
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MC1489.pdf
MC1489 V T Vth V th T S 1.2 IH U 2.0 5.0 V −5.0 V E 1.0 T Vth H O T 0.8 , 1.0 P 0.6 VO I 0.4 MC1489 V IL 0 VILH V IHL , MC1489A V IL VI0.2 0 −3.0 −2.0 −1.0 0 1.0 2.0 3.0 4.0 −60 0 +60 +120 V,IINPUT VOLTAGE (V) T, TEMPERATURE (°C) Figure 7. MC1489A Input Threshold Figure 8. Input Threshold Voltage Voltage
in „USB/RS232 Konverter, einige Fragen“ · Mikrocontroller und Digitale Elektronik ·
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W24257AK_32kx8_SRam.pdf
ACCESS OPERATING STANDBY PACKAGE TIME CURRENT CURRENT (nS) MAX. (mA) MAX. (mA) W24257AK-10 10 170 10 300 mil skinny DIP W24257AK-12 12 160 10 300 mil skinny DIP W24257AK-15 15 150 10 300 mil skinny DIP W24257AK-20 20 140 10 300 mil skinny DIP W24257AJ-10 10 170 10 300 mil SOJ W24257AJ-12 12 160 10 300 mil SOJ W24257AJ-15 15 150 10 300 mil SOJ W24257AJ-20 20 140 10 300 mil SOJ W24257AS-10 10 170 10 330 mil SOP W24257AS-12 12 160 10 330 mil SOP W24257AS-15 15 150 10 330 mil SOP W24257AS-20 20 140 10 330 mil SOP W24257AQ-10 10 170 10
in „8 Kanal 50Ms/s AVR Logic-Analyzer“ · Mikrocontroller und Digitale Elektronik ·
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W24257.pdf
ACCESS OPERATING STANDBY PACKAGE TIME CURRENT CURRENT (nS) MAX. (mA) MAX. (mA) W24257AK-10 10 170 10 300 mil skinny DIP W24257AK-12 12 160 10 300 mil skinny DIP W24257AK-15 15 150 10 300 mil skinny DIP W24257AK-20 20 140 10 300 mil skinny DIP W24257AJ-10 10 170 10 300 mil SOJ W24257AJ-12 12 160 10 300 mil SOJ W24257AJ-15 15 150 10 300 mil SOJ W24257AJ-20 20 140 10 300 mil SOJ W24257AS-10 10 170 10 330 mil SOP W24257AS-12 12 160 10 330 mil SOP W24257AS-15 15 150 10 330 mil SOP W24257AS-20 20 140 10 330 mil SOP W24257AQ-10 10 170 10
in „Frage zu SRAM Timing“ · Mikrocontroller und Digitale Elektronik ·
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SPLC780D001BC.pdf
. Write mode timing diagram (Writing Data from MPU to SPLC780D) RS V IL1 V IL1 SP1 tHD1 R / W V IL1 VIL1 PW E VIH1 VIH1 tFtHD1 VIL1 tSP2IL1 V Il1 DB7 - 0 R V IH1 tHD2 VIH1 a l y V IL1 ValidCData VIL1 t i n n 7.5.7. Read mode timing diagram (Reading Data from SPLC780D to MPU) e O f id e VIH1 n V IH1 s RS VSP1 o V IL1 U V IH1 C tHD1VRIH1 R / W s E l u VIH1 tPW VIH1 tFtHD1 E p VIL1 I VIL1 V IL1 n tR VDIH1M tHD2 V IH1 DB0 - DB7 u VTIL1 Valid Data V IL1 S R tC A 7.5.8. Interface mode with SPLP100A1 timing diagram CL1
in „LCD Display initialisieren oder geht das automatisch?“ · Mikrocontroller und Digitale Elektronik ·
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splc780D.pdf
. Write mode timing diagram (Writing Data from MPU to SPLC780D) RS V IL1 V IL1 SP1 tHD1 R / W V IL1 VIL1 PW E VIH1 VIH1 tFtHD1 VIL1 tSP2IL1 V Il1 DB7 - 0 R V IH1 tHD2 VIH1 a l y V IL1 ValidCData VIL1 t i n n 7.5.7. Read mode timing diagram (Reading Data from SPLC780D to MPU) e O f id e VIH1 n V IH1 s RS VSP1 o V IL1 U V IH1 C tHD1VRIH1 R / W s E l u VIH1 tPW VIH1 tFtHD1 E p VIL1 I VIL1 V IL1 n tR VDIH1M tHD2 V IH1 DB0 - DB7 u VTIL1 Valid Data V IL1 S R tC A 7.5.8. Interface mode with SPLP100A1 timing diagram CL1
in „2x16 LCD Batron Tabelle?“ · Mikrocontroller und Digitale Elektronik ·
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SPLC780D.pdf
. Write mode timing diagram (Writing Data from MPU to SPLC780D) RS V IL1 V IL1 SP1 tHD1 R / W V IL1 VIL1 PW E VIH1 VIH1 tFtHD1 VIL1 tSP2IL1 V Il1 DB7 - 0 R V IH1 tHD2 VIH1 a l y V IL1 ValidCData VIL1 t i n n 7.5.7. Read mode timing diagram (Reading Data from SPLC780D to MPU) e O f id e VIH1 n V IH1 s RS VSP1 o V IL1 U V IH1 C tHD1VRIH1 R / W s E l u VIH1 tPW VIH1 tFtHD1 E p VIL1 I VIL1 V IL1 n tR VDIH1M tHD2 V IH1 DB0 - DB7 u VTIL1 Valid Data V IL1 S R tC A 7.5.8. Interface mode with SPLP100A1 timing diagram CL1
in „LCD (HD44780) timing extrem träge“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SPLC780D001BC.pdf
. Write mode timing diagram (Writing Data from MPU to SPLC780D) RS V IL1 V IL1 SP1 tHD1 R / W V IL1 VIL1 PW E VIH1 VIH1 tFtHD1 VIL1 tSP2IL1 V Il1 DB7 - 0 R V IH1 tHD2 VIH1 a l y V IL1 ValidCData VIL1 t i n n 7.5.7. Read mode timing diagram (Reading Data from SPLC780D to MPU) e O f id e VIH1 n V IH1 s RS VSP1 o V IL1 U V IH1 C tHD1VRIH1 R / W s E l u VIH1 tPW VIH1 tFtHD1 E p VIL1 I VIL1 V IL1 n tR VDIH1M tHD2 V IH1 DB0 - DB7 u VTIL1 Valid Data V IL1 S R tC A 7.5.8. Interface mode with SPLP100A1 timing diagram CL1
in „Bibliothek fuer SPLC780D“ · Mikrocontroller und Digitale Elektronik ·
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SPLC780D.pdf
. Write mode timing diagram (Writing Data from MPU to SPLC780D) RS V IL1 V IL1 SP1 tHD1 R / W V IL1 VIL1 PW E VIH1 VIH1 tFtHD1 VIL1 tSP2IL1 V Il1 DB7 - 0 R V IH1 tHD2 VIH1 a l y V IL1 ValidCData VIL1 t i n n 7.5.7. Read mode timing diagram (Reading Data from SPLC780D to MPU) e O f id e VIH1 n V IH1 s RS VSP1 o V IL1 U V IH1 C tHD1VRIH1 R / W s E l u VIH1 tPW VIH1 tFtHD1 E p VIL1 I VIL1 V IL1 n tR VDIH1M tHD2 V IH1 DB0 - DB7 u VTIL1 Valid Data V IL1 S R tC A 7.5.8. Interface mode with SPLP100A1 timing diagram CL1
in „Datenblatt zu HD44780 1602 LCD Modul Display Anzeigen 2X16 Zeichen“ · Mikrocontroller und Digitale Elektronik ·
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sab6456.pdf
0.8 V Supply current CC − 21 28 mA Mode-control (MC) Input voltage LOW (divide-by-256) V 0 − 0,2 V IL Input current LOW −IL − 25 60 A Input voltage HIGH (divide-by-64) pin 5 open-circuit VIH 1,4 − 3,0 V June 1986 4 Philips Semiconductors Product specification Sensitive 1 GHz divide-by-64/divide-by-256
in „FM-Tuner mit AVR ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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NMC27C32B.PDF
e VIL 150 200 250 ns tCE CE to Output Delay OE e VIL 150 200 250 ns e tOE OE to Output Delay CE V IL 60 60 70 ns tDF OE High to Output Float CE e V IL 0 50 0 60 0 70 ns tCF CE High to Output Float OE e VIL 0 50 0 60 0 60 ns tOH Output Hold from Addresses,CE e OE e VIL CE or OE, Whichever 0 0 0 ns Occurred
in „EPROMs löschen mit UV LEDs“ · Mikrocontroller und Digitale Elektronik ·
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HCF4511B.pdf
-40 to 85°C -55 to 125°C Unit VI VO |O | V DD (V) (V) ( A) (V) Min. Typ. Max. Min. Max. Min. Max. IL Quiescent Current 0/5 5 0.04 5 150 150 0/10 10 0.04 10 300 300 A 0/15 15 0.04 20 600 600 0/20 20 0.08 100 3000 3000 VOH High Level Output 0/5 5 4.95 4.95 4.95 Voltage 0/10 10 9.95 9.95 9.95 V 0/15 15
in „BCD-7Segment Treiber für VFD Röhren“ · Analoge Elektronik und Schaltungstechnik ·
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AN920-D_MC34063_Theory_and_Applications_.pdf
to 30 V, I = 5.0 A, I = 300 mA = 72 mV or 〉 0.3% out2 in out1 out2 Load Regulation V V = 20 V, I = 100 to 300 mA, I = 5.0 A = 12 mV or 〉 0.05% out2 in out2 out1 Output Ripple V V = 28 V, I = 5.0 A, I = 300 mA 25 mV out2 in out1
in „Schaltregler MC34063 - Wie berechnet man CT?!“ · Analoge Elektronik und Schaltungstechnik ·
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AN920-D.PDF
to 30 V, I = 5.0 A, I = 300 mA = 72 mV or 〉 0.3% out2 in out1 out2 Load Regulation V V = 20 V, I = 100 to 300 mA, I = 5.0 A = 12 mV or 〉 0.05% out2 in out2 out1 Output Ripple V V = 28 V, I = 5.0 A, I = 300 mA 25 mV out2 in out1
in „Frage zu Schaltregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MC34063_AN920-D.PDF
to 30 V, I = 5.0 A, I = 300 mA = 72 mV or 〉 0.3% out2 in out1 out2 Load Regulation V V = 20 V, I = 100 to 300 mA, I = 5.0 A = 12 mV or 〉 0.05% out2 in out2 out1 Output Ripple V V = 28 V, I = 5.0 A, I = 300 mA 25 mV out2 in out1
in „Spule für Schaltnetzteil“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN920-D_MC34063_Theory_and_Applications_.pdf
to 30 V, I = 5.0 A, I = 300 mA = 72 mV or 〉 0.3% out2 in out1 out2 Load Regulation V V = 20 V, I = 100 to 300 mA, I = 5.0 A = 12 mV or 〉 0.05% out2 in out2 out1 Output Ripple V V = 28 V, I = 5.0 A, I = 300 mA 25 mV out2 in out1
in „MC34063 Strombegrenzung“ · Mikrocontroller und Digitale Elektronik ·
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TSL2014-E25.pdf
signal remaining after a pixel is exposed to a white condition followed by a dark condition: V * V IL + out (IL) drk 100 V * V out (white) drk Timing Requirements (see Figure 1 and Figure 2) MIN NOM MAX UNIT tsu(SI) Setup time, serial input (see Note 8) 20 ns th(SI) Hold time, serial input (see Note
in „CCD linear Sensor Zeile“ · Analoge Elektronik und Schaltungstechnik ·
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tlc549.pdf
ThisisthetimerequiredfortheI/OCLOCKinputsignaltofallfromV mintoV maxortorisefromV maxtoV min.Inthevicinity IH IL IL IH of normal room temperature, the devices function with input clock transition time as slow as 2 s for remote data acquisition applications in which the sensor and the ADC are placed several feet
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UB084S01-2.pdf
Input voltage VCC 3.0 3.3 3.6 V Power supply Current A - 220 - mArms Note 1 voltage consumption B - - 300 mArms Inrush current IRUSH - - 1500 mApeak Note 2 Internal Low voltage V IL 0 - 0.3 VCC logic High voltage V IH 0.7V CC - VCC Power ripple voltage VRP - - 100 mVp-p Note 1:Effective value (mArms) at
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LTC660.pdf
1.0 –5.0 100 TA= 25°C I = 1mA 0.9 BOOST = V + L 95 M R 0.8 –4.5 90 F V0.7 V L = 10mA 85 O E + E ) IL= 10mA IL= 80mA D A0.6 V = 2.5V A–4.0 ( 80 E L L C L = 1mA A V0.5 V L = 80mA E 75 L Y V = 1.5V T I V P0.4 P–3.5 F 70 T U V = 3.5V U E P S0.3 V+= 4.5V O 65 U 0.2 + 60 O V = 5.5V –3.0 TA=+5°C T+= 25°C 0.1
in „Schaltplankontrolle EVG-Dimmer -PWM, OpAmp und Ladungspumpe“ · Analoge Elektronik und Schaltungstechnik ·
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Handgezeichneter Schaltplan mit Berechnungen
GPIO (3,3V) VCC 12V RI 817 IR1 RL VL IL IR2 R2 IR3 GND GND VL = 3,3V VR = 12V VLA = 1,5V IL = 0,05A RI = 1,8V / 0,05A = 36 Ohm VL = 10,4V, IR2 = 0,02A, RL = 520 Ohm IRA = 0,04A, RL = 300 Ohm, IR3 = 0,06A
in „Schaltung für S0 Eingang Daikin Altherma Wärmepumpe“ · Haus & Smart Home · · Fotos
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Optrex_LCD_C-51847.pdf
Parameter Symbol Min. Max. Units Enable Cycle Time tCYCE 500 - ns Enable “H” Level Pulse Width tw HE 300 - ns Enable Rise/Fall Time tRE,tFE - 25 ns RS,R/W Setup Time tAS 60 - ns RS,R/W Address Hold Time tAH 10 - ns Data Output Delay tDS 100 - ns Data Hold Time tDHR 10 - ns VIH VIH RS IL IL V V AS tAH R/W VIL VIL WHE RE FE V IH VIH E VIL VIL V IL tDS DHW VIH VIH DB0~DB7 Valid Data VIL V IL tCYCE Write Operation Timing C-51847NFQJ-LG-ACN (AC) No. 2005-0232 OPTREX CORPORATION Page 5/17 2.4.Lighting Specifications 2.4.1.Absolute Maximum Ratings
in „Frage zu GCC Tutorial LCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BRZEZINSKI.pdf
ciśnień Ryc. 5. Gzyms trzonu głowicy kolejowej wieży ciśnień przy dworcu kolejowym w Żninie. Źródło: il. autora na stacji Kowalewo Pomorskie.Źródło: il. autora Fig. 4. Crowning cornice of the water tower head at Fig. 5. Crowning cornice of the water tower head at the train station in Żnin. Source: Photo
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MOS4051_MOS4052_MOS4053_SMD4051_SMD4052_SMD4053_STM.pdf
Parameter V IS VEE V SS VDD TLow 25 ⋅ C THigh Unit (V) (V) (V) (V) Min. Max. Min. Typ. Max. Min. Max. IL Quiescent 5 5 0.04 5 150 Device HCC 10 10 0.04 10 300 Current Types 15 20 0.04 20 600 20 100 0.08 100 3000 5 20 0.04 20 150 A HCF 10 40 0.04 40 300 Types 15 80 0.04 80 600 SWITCH ON Resistance HCC 0
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LM350-D.PDF
LM350 IL Adjust 240 VI R1 1% Vref RL Adj + C 0.1mF C 1.0mF in O VO I SET R 2 1% To Calculate R : Pulse Testing Required: 2 1% Duty Cycle is suggested. Vout= SET R2+ 1.250 V Assume ISET = 5.25 mA Figure 5. Standard
in „Einstellbare Last erzeugen für Netzteil-Test“ · PC Hard- und Software ·
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PDF
74HC4049_74HC4050_SMDHC4049_SMDHC4050.pdf
Power Dissipation 500 (*) mW o T stg Storage Temperature -65 to +150 C TL Lead Temperature (10 sec) 300 oC AbsoluteMaximumRatingsarethose values beyond whichdamage tothedevicemayoccur. Functional operationunder theseconditionisnotimplied. o o o o (*)500 mW: ≅ 65 C derate to300 mWby 10mW/ C: 65 C to85
in „Ausgänge über Widerstände zusammenschalten (Statischer Fa“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datenblatt_74hc4050.pdf
Power Dissipation 500 (*) mW o T stg Storage Temperature -65 to +150 C TL Lead Temperature (10 sec) 300 oC AbsoluteMaximumRatingsarethose values beyond whichdamage tothedevicemayoccur. Functional operationunder theseconditionisnotimplied. o o o o (*)500 mW: ≅ 65 C derate to300 mWby 10mW/ C: 65 C to85
in „Bustreiber-Ersatz zum 74LS244/245 - brauche Tipp“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet_3_.pdf
5V TOLERANT INPUTS POWER-DOWN PROTECTION ON INPUTS INPUT VOLTAGE LEVEL: V = 0.8V, V = 2V at V =3V IL IH CC LOW POWER DISSIPATION: SOP TSSOP CC = 2 A (MAX.) at A =25⋅C LOW NOISE: VOLP = 0.3V (TYP.) atCC=3.3V ORDER CODES SYMMETRICAL OUTPUT IMPEDANCE: PACKAGE TUBE T & R |I | = I = 4 mA (MIN) at V =3V OH
in „Pollin MOTOROLA VIP1710“ · Mikrocontroller und Digitale Elektronik ·
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PDF
243_Moderne_integrierte_Schaltkreise_fuer_Rundfunkempfaenger.pdf
c3' 24]) ISBN 3-327-(XJ784-5 2.• bc:rKhuJk Aufl,,!>l'. 11l1l9 Cl M,lllli",.,de,l\ (kulKllcn Ocmok'''Il.d..-n Republ'k (VEBI_Ik,hn. l'lllll Ü lc .-N,.5 PrinlNln thc Gerll'lilntxfIlUC'RcpublK" ü d ll) aDrude,c, PIIon,~ Df'llC:k ubu..:hbinlknKM We'le",.,rArlxuunl! D"",ltc,d d uM,n'.t"num, fijr N"I,ufIllle
in „UKW-Empfänger/Selbstbauanleitung gesucht“ · HF, Funk und Felder ·
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PDF
AM-480272MTMQW-00H-_HSD043I9W1_.pdf
: Ta=25±3℃, typical IL value indicated in the above table until the brightness becomes less than 50%. Note (2) The “LED life time” is defined as the module brightness decrease to 50% original brightness at Ta=25℃ and IL=40mA. The LED lifetime could be decreased if operating IL is larger than 40mA. The constant current driving method is suggested. Date : 2010/6/7 AMPIRE CO., LTD. 7 The constant current source is needed for white LED back-light driving. When LCM is operated
in „TFT-LCD HSD043I9W1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM.pdf
Dissipation 500 (*) mW D o T stg Storage Temperature -65 to +150 C o TL Lead Temperature (10 sec) 300 C AbsoluteMaximumRatingsarethose values beyond whichdamage tothedevicemayoccur. Functional operationunder theseconditionisnotimplied. (*)500 mW: ≅ 65 C derate to300 mWby 10mW/ C: 65 C to85 C RECOMMENDED
in „74HC299 8-bit PIPO Shift Register“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CUPP_RELAYS.pdf
Voltage Max DC/PeakAC Resistive VL - - 200 - - 500 Volts Switching Current Max DC/PeakAC Resistive IL - - 0.75 - - 2 Amps Carry Current Max DC/PeakAC Resistive I - - 2 - - 3 Amps Contact Rating Max DC/PeakAC Resistive - - - 10 - - 50 Watts Life Expectancy Signal Level 1.0 V 10mA - 300 500 - 200 300 -
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ST24C32_ST24C64_STM.pdf
is internally read as SIGNAL DESCRIPTION V , and write operations are allowed. Serial Clock (SCL) IL When WC =1, Device Select and Address bytes The SCL input pin is used to strobe all data in and are acknowledged, Data bytes are not acknowl- out of the memory. In applications where this line edged.
in „I²c mit Bascom und ATmega“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Regelventil_RME_005_A.pdf
08) Bestimmungsgemässer Gebrauch Das Regelventil RME 005 A dient zusammen mit dem Regelge- rät RVC 300 oder einem kundeneigenen Regelgerät dem Regeln von Gasströmen und somit zur Aufrechterhaltung des ge- wünschten Druckes in einem Vakuumsystem. Es dürfen keine Flüssiggase geregelt werden. Funktion Das
in „Regelventilsteuerung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheet.pdf
Hz) Current (A) 4.7 K 11.8 M 1.5 mA 10.0 K 5.9 M 835 μA 3P 47.0 K 1.3 M 280 μA 100.0 K 685 K 190 μA 300.0 K 225 K 140 μA 470.0 K 140 K 132 μA 865 μA 4.7 K 6.1 M 10.0 K 3.1 M 513 μA 20P 47.0 K 760 K 195 μA 100.0 K 355 K 155 μA 125 μA 300.0 K 120 K 470.0 K 75 K 120 μA 4.7 K 1.9 M 355 μA 10.0 K 1.0 k 225 μA 100P 47.0 K 220 K 130 μ A 100.0 K 100 K 116 μA 300.0 K 35 K 110 μA 470.0 K 22 K 108 μA 4.7 K 950 K 210 μA 10.0 K 520 K 155 μA 300P 47.0 K 95 K 115 μA 100.0 K 45 K 106 μA 300.0 K 15.0 K 102 μA 470.0 K 9.6 K 100 μA This specification are subject to be
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P6201_x10_900MHz_FET_Probe.pdf
SMT1105 Q130 151-5055-00 B082466 TRANSISTOR,SIG:BIPOLAR,PNP;10V,30MA,5.5GHZ, 04713 MMBR536LT1 AMPLIFIER Q300 151-0416-00 B010100 B029999 TRANSISTOR:NPN,SI 80009 151041600 Q300 151-0475-00 B030000 B059999 TRANSISTOR:NPN,SI,MACRO-T 25403 BFR91/02 Q300 151-0475-01 B060000 8513 TRANSISTOR:SCREENED 80009 151-0475
in „Eigenbautastköpfe“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
isl5585-1529099.pdf
DISSIPATION (Note 7) Forward or Reverse V =-24V - 305 - mW B POWER SUPPLY REJECTION RATIO V to 2-Wire f=300Hz - 40 - dB CC f=1kHz - 35 - dB f=3.4kHz - 28 - dB V to 4-Wire f=300Hz - 45 - dB CC f=1kHz - 43 - dB f=3.4kHz - 33 - dB V to 2-Wire 300Hz f 3.4kHz - 30 - dB BL V to 4-Wire 300Hz f 3.4kHz - 35
in „Anschluss eines alten Analigtelefons an einen RasPi für Audio in/out“ · Analoge Elektronik und Schaltungstechnik ·
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Metex_M3610D-3650D_text.pdf
ELECTRONICS 126 iSILICON RUBBER M36D 21.5 X 13.3 X 1.7 ea 1 YU IL 1 ea 4 SUNG GA IND.CO. KOREA 127 SCREW M36CR (M3.0 x 21.0) — — ' '' 1 - M36CR (M2. 6 x 10.5) ea 1 12sl1 129 yy M3 X 4.0 (MACHINE) ea SUNG 3A IND.CO. KOREA yy il30 M2 X 5.0 (TAPPING) ea SITAG3A IND.CO
in „Voltcraft M-3610D (Metex) reparieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
l293d.pdf
high-to-low-level output from A input 400 ns t Transition time, low-to-high-level output CL= 30 pF, See Figure 1 300 ns TLH THL Transition time, high-to-low-level output 300 ns switching characteristics, V = 5 V, V = 24 V, T = 25°C CC1 CC2 A L293DWP, L293N PARAMETER TEST CONDITIONS L293DN UNIT MIN TYP MAX PLH Propagation
in „Motorentreiber L293D“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
smi2c_10.pdf
our bus fall times to be within the 300ns specification if three criteria are matched: 2 • All agents that are capable of driving the bus are I C compliant to guarantee fall times of 250ns maximum. • Our bus has a total capacitance of between
in „Mehrfache Pullup's am I2C Bus ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
l293d.pdf
high-to-low-level output from A iC = 30 pF, See Figure 1 400 ns t Transition time, low-to-high-level output L 300 ns TLH THL Transition time, high-to-low-level output 300 ns switching characteristics, V = 5 V, V = 24 V, T = 25°C CC1 CC2 A L293DWP, L293N PARAMETER TEST CONDITIONS L293DN UNIT MIN TYP MAX PLH Propagation
in „Motor ansteuern mit RPi & L293D“ · Analoge Elektronik und Schaltungstechnik ·
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tps62933-1.pdf
) T I O N IL = 500mA/div IL = 500mA/div 4mS/div 4uS/div Figure 8-12. Steady State, I OUT = 0 A Figure 8-13. Steady State, I OUT = 0.1 A 32 Submit Document Feedback Copyright © 2021 Texas Instruments Incorporated
in „TI Buck TPS62933.“ · Analoge Elektronik und Schaltungstechnik ·
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Ausschnitt aus einem Datenblatt mit technischen Kennwerten
Einstellwerte U_IL (V) U_IM (V) -I_OH (mA) U_DD (V) max Ausgangsspannung H 0 5 10-3 5 4,2 V 10 25 2,9 V 0 10 10-3 10 9,2 V 10 25 9,0 V 0 15 10-3 25 8,0 V 10 14,2 V 10 14,0 V 25 13,2 V Eingangsstrom I_IH, -I_IL 25 85 0,1
in „[S] Suche IC V40511, 7-Segment-Decoder“ · Markt · · Screenshots
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eu-ks0066.pdf
TECHNOLOGIES CORPORATION E U - K S 0 0 6 6 6 5 3.3 TIMING CHARACTERISTICS 3.3.1 WRITE OPERATION VIH1 V IH1 RS IL1 V IL1 V tAH tAS R/W V IL1 tAH PW EH tEf E VIH1 VIH1 IL1 IL1 V IL1 V V tr tDSW t V IH1 IH1 DB0 〜 DB7 Valid data V V IL1 VIL1 tcycE FIGURE 1 WRITE OPERATION 3.3.2 READ OPERATION RS V IH1 VIH1 VIL1 VIL1 tAS tH R/W VIH1 VIH1 tH PW EH tEf E V IH1 VIH1 V IL1 V IL1 VIL1 tDDR tDHR tr VOH1* *VOH1 DB0 〜 DB7 Valid data VOL1 V OL1 tcycE FIGURE 2 READ OPERATION VERSION PAGE E M E R G I N G D I S P L A Y MODEL NO . TECHNOLOGIES CORPORATION E U - K S 0 0 6 6 6 6
in „Probleme bei 16x2 LCD mit KS0066 (EW162B0YLY)“ · Mikrocontroller und Digitale Elektronik ·
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K4B4G1646Q-Samsung.pdf
DD NOTE : 1. For CK,K use VIHVILAC) of ADD/CMD; for strobes (DQS, DQS, DQSL, DQSL, DQSU, DQSU) uIH IL/V (AC) of DQs. 2. IH(AC)/IL(AC) for DQs is based REFDQ; IH(AC)/IL(AC) for ADD/CMD is based REFCA; if a reduced ac-high or ac-low level is used for a signal group, then the reduced level applies also
in „Orange Pi - 15$ Quadcore SBC“ · Mikrocontroller und Digitale Elektronik ·
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M24CXX.pdf
or A Unit –40 to 85°C –40 to 85°C –40 to 85°C 4 Min Max Min Max Min Max CH1CH2 tR Clock Rise Time 300 300 300 ns tCL1CL2 tF Clock Fall Time 300 300 300 ns tDH1DH22 tR SDA Rise Time 20 300 20 300 20 300 ns tDL1DL22 tF SDA Fall Time 20 300 20 300 20 300 ns t 1 tSU:STA Clock High to Input Transition 600
in „serielles EEPROM“ · Mikrocontroller und Digitale Elektronik ·
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ST24C16.pdf
or A Unit –40 to 85°C –40 to 85°C –40 to 85°C 4 Min Max Min Max Min Max CH1CH2 tR Clock Rise Time 300 300 300 ns tCL1CL2 tF Clock Fall Time 300 300 300 ns tDH1DH22 tR SDA Rise Time 20 300 20 300 20 300 ns tDL1DL22 tF SDA Fall Time 20 300 20 300 20 300 ns t 1 tSU:STA Clock High to Input Transition 600
in „24C16WP - Wie an Mega 16 anschließen?“ · Mikrocontroller und Digitale Elektronik ·