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SRR5028-101Y_Bourns_unpw.pdf
0.72 SRR5028-470Y 47 ±30 7 2.52 13 250 0.82 0.65 Product Dimensions SRR5028-560Y 56 ±30 9 2.52 12 300 0.72 0.60 SRR5028-680Y 68 ±30 8 2.52 11 350 0.62 0.56 5.80 ± 0.30 (.228 ± .012) SRR5028-820Y 82 ±30 8 2.52 9 430 0.52 0.50 SRR5028-101Y 100 ±30 8 0.796 8 480 0.45 0.45 SRR5028-151Y 150 ±30 7 0.796 7.5
in „Pollin SMD-Induktivitäten identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AQV112KL.pdf
temperature: 25°C 77°F) Item Symbol AQV112KL(A) Condition Typical 0.8 mA LED operate current IFon IL= 100mA Maximum 10 mA Minimum 0.3 mA Input LED turn off current IFoff IL= 100mA Typical 0.7 mA Typical 1.35 V (1.17 V at I F = 10 mA) LED dropout voltage Maximum V F 1.5 V IF= 50 mA Typical 0.55 Ω IF= 10 mA On resistance R on Maximum 2.0 Ω IL= Max. Typical 5 V Output Load short circuit detection voltage VLSHT IF= 10 mA Maximum 7 V IF= 0 mA Off state leakage current Maximum Leak 1µA V L= Max. Typical 2.0 ms IF= 10 mA Turn on time* Ton IL=
in „Analog Switch“ · Mikrocontroller und Digitale Elektronik ·
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FUTABA_LCD_Emulators.pdf
the CEV 07/06/99 controller/driver is 0.CCV .” from Note in Sec. 3.6 A1.5 12 VIH1and VIH2were V IHV IL1and V IL2were VIL CEV 09/24/99 VIH2was 0.7*V CCV IL2was 0.2*V CC in Sec. 3.6 5 Connector centerline was 32.17 +/- 0.13 in Sec. 3.2.2 8 14.02 was 14.52; 5.35 was 5.85; 6.35 was 5.85 in Sec. 3.2.5 12 R
in „AVR Futaba Parallel "I80-Type" adaptieren auf "M68-Type"“ · Mikrocontroller und Digitale Elektronik ·
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Futaba_LCD_Emulators.pdf
the CEV 07/06/99 controller/driver is 0.CCV .” from Note in Sec. 3.6 A1.5 12 VIH1and VIH2were V IHV IL1and V IL2were VIL CEV 09/24/99 VIH2was 0.7*V CCV IL2was 0.2*V CC in Sec. 3.6 5 Connector centerline was 32.17 +/- 0.13 in Sec. 3.2.2 8 14.02 was 14.52; 5.35 was 5.85; 6.35 was 5.85 in Sec. 3.2.5 12 R
in „Hat schon jemand was mit dem FUJITSU VF60 Display gemacht?“ · Mikrocontroller und Digitale Elektronik ·
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slyt309.pdf
VL1a L1a C P V + – V IN OUT I + L1a + C IN L1b L1b VL1b COUT – – + V – L1a L1a C P D1 V + – V IN OUT IL1a + + C IN L1b L1b VL1b COUT – – 18 High-Performance Analog Products www.ti.com/aaj 4Q 2008 Analog Applications Journal Texas Instruments Incorporated Power Management capacitor C is charged to the input
in „Gleichspannungswandler in Reihe schalten“ · Analoge Elektronik und Schaltungstechnik ·
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M27C1001.PDF
Program Inhibit VIH X X X VPP Hi-Z Standby VIH X X X VCC or VSS Hi-Z V V V V V Electronic Signature IL IL IH ID CC Codes Note: X =IHor IL,ID= 12V ² 0.5V. Table 4. Electronic Signature Identifier A0 Q7 Q6 Q5 Q4 Q3 Q2 Q1 Q0 Hex Data Manufacturer’s Code V IL 0 0 1 0 0 0 0 0 20h Device Code V 0 0 0 0 0 1
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BT-145-800R_800V_16A_300A_Pk_Thyristor___PHI.pdf
on-state current 25 25 25 A include motor control, industrial and TSM Non-repetitive peak on-state 300 300 300 A domestic lighting, heating and static current switching. PINNING - SOT404 PIN CONFIGURATION SYMBOL PIN DESCRIPTION mb 1 cathode a k 2 anode 3 gate 2 mb anode 1 3 g LIMITING VALUES Limiting
in „Thyristor DC On Off Steuerung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datenblatt-505399-panasonic-aqz204d-photomos-relais-1-st-1-schliesser-400-vdc-400-vac-450-ma-polzahl-4.pdf
AQZ204D Remarks Input voltage V IN 30 V Input Input reverse voltage VRIN 5 V Power dissipation P in 300 mW Load voltage (Peak AC) VL 60 V 100 V 200 V 400 V Output Continuous load current (Peak AC) IL 2.7 A 1.8 A 0.9 A 0.45 A Peak load current Ipeak 9.0 A 6.0 A 3.0 A 1.5 A 100 ms (1 shot), VL= DC Power
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505399-panasonic-aqz204d-photomos-relais-1-st-1-schliesser-400-vdc-400-vac-450-ma-polzahl-4.pdf
AQZ204D Remarks Input voltage V IN 30 V Input Input reverse voltage VRIN 5 V Power dissipation P in 300 mW Load voltage (Peak AC) VL 60 V 100 V 200 V 400 V Output Continuous load current (Peak AC) IL 2.7 A 1.8 A 0.9 A 0.45 A Peak load current Ipeak 9.0 A 6.0 A 3.0 A 1.5 A 100 ms (1 shot), VL= DC Power
in „Relais ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
505399_panasonic_aqz204d_photomos_relais_1_st_1_schliesser_400_vdc.pdf
AQZ204D Remarks Input voltage V IN 30 V Input Input reverse voltage VRIN 5 V Power dissipation P in 300 mW Load voltage (Peak AC) VL 60 V 100 V 200 V 400 V Output Continuous load current (Peak AC) IL 2.7 A 1.8 A 0.9 A 0.45 A Peak load current Ipeak 9.0 A 6.0 A 3.0 A 1.5 A 100 ms (1 shot), VL= DC Power
in „230VAC Max 200mA mit ESP32 3,3VDC schalten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
505399-panasonic-aqz204d-photomos-relais-1-st-1-schliesser-400-vdc-400-vac-450-ma-polzahl-4.pdf
AQZ204D Remarks Input voltage V IN 30 V Input Input reverse voltage VRIN 5 V Power dissipation P in 300 mW Load voltage (Peak AC) VL 60 V 100 V 200 V 400 V Output Continuous load current (Peak AC) IL 2.7 A 1.8 A 0.9 A 0.45 A Peak load current Ipeak 9.0 A 6.0 A 3.0 A 1.5 A 100 ms (1 shot), VL= DC Power
in „MOSFET 230V AC / 3V3 Arduino“ · Mikrocontroller und Digitale Elektronik ·
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CP-Clare-PRME-15002.pdf
Switching Voltage Max DC/PeakAC Resistive VL - 100 - - 200 Volts Switching Current Max DC/PeakAC Resistive IL - 0.25 - - 0.5 Amps Carry Current Max DC/PeakAC Resistive IC - 0.4 - - 2 Amps Contact Rating Max DC/PeakAC Resistive - 3 - - 10 Watts Life Expectancy Signal Level 1.0V 10mA - 20 - 300 500 - x10 Ops Related
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CP-Clare-PRME-15002.pdf
Switching Voltage Max DC/PeakAC Resistive VL - 100 - - 200 Volts Switching Current Max DC/PeakAC Resistive IL - 0.25 - - 0.5 Amps Carry Current Max DC/PeakAC Resistive IC - 0.4 - - 2 Amps Contact Rating Max DC/PeakAC Resistive - 3 - - 10 Watts Life Expectancy Signal Level 1.0V 10mA - 20 - 300 500 - x10 Ops Related
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Chess-Schematic.PDF
SIPO1 SIPO_IN PISIPO1SERIN DRAIN0 PISIPO103INK1 Cable2 PISIPO1016 PISIPO104 IL2 IL1 PILED200 PILED200 PICable201 PICable202 GND PISIPO101D DRAIN1 PISIPO5L02 PL01 PILED300 PILED300 1K GND 5V PICable2032 PICable204 SIPLO_SRCK 5V PISIPO1015 DRAIN2 PISIPO106 1K GND IL2 IL1 PILED400
in „Projekt: Schachcomputer mit OLED-Display, Gehäuse aus Holz (open source)“ · Mikrocontroller und Digitale Elektronik ·
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AQV21xS.pdf
- AQV212S AQV215S AQV217S AQV210S AQV214S AQV216S Condition tion LED operate Typical IFon — 0.7 mA IL= Max. current Maximum 3 mA LED turn off Minimum 0.4 mA Input current Typical IFoff — 0.65 mA IL= Max. LED dropout Typical 1.25 V (1.14 V atF= 5 mA) voltage Maximum VF — 1.5 V IF= 50 mA Typical 0.83 Ω 2.3 Ω 11 Ω 23 Ω 30 Ω 70 Ω IF= 5 mA R on A IL= Max. Maximum 2.5 Ω 4.0 Ω 15 Ω 35 Ω 50 Ω 120 Ω Within 1 s Typical 0.44 Ω 1.15 Ω 5.5 Ω 11.5 Ω 22.5 Ω 55 Ω IF= 5 mA On resistance R on B IL= Max. Maximum 1.25 Ω 2.0 Ω 7.5 Ω 17.5 Ω 25 Ω 100 Ω Within 1 s
in „Dualer Optokoppler als Schalter (Auslöser für Kamera) HCPL 0531“ · Mikrocontroller und Digitale Elektronik ·
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MPQ4210_r1.1_MPS.pdf
/div. 5V/div. CH4: IL CH4: IL 2A/div. 5A/div. 10ms/div. 200μs/div. MPQ4210 Rev. 1.1 www.MonolithicPower.com 15 7/12/2019 MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited. ©
in „Controlling DC DC converter with STM32“ · Analoge Elektronik und Schaltungstechnik ·
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DT-Tensio.pdf
used, the Verwendung des DT Tensio 2 muss das dafür vorgesehene Hand- d‘utilisation du DT Tensio 2, il faut utiliser le manuel prévu. appropriate manual must be consulted. buch verwendet werden. ➞ Stellen Sie sicher, dass dieses Handbuch ausschliesslich in Ver- ➞ Assurez-vous que ce manuel soit exclusivement
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Datei
ASLGZ_Logger_OPEN.ino
+= "&ul1="; Data += U_L1; Data += "&ul2="; Data += U_L2; Data += "&ul3="; Data += U_L3; Data += "&il1="; Data += I_L1; Data += "&il2="; Data += I_L2; Data += "&il3="; Data += I_L3; Data += "&frq="; Data += Frequency; // Data += "&frq="; Data += SecAdjust; Data += "&ip="; Data += WiFi.localIP().toString
in „Digitale Stromzähler auslesen und in DB speichern“ · Mikrocontroller und Digitale Elektronik ·
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test.pdf
2 3 4 R204 R205 R206 28 C C 1 /RES R207 R208 10k 10k 10k VCC 27 PC5/SCL C C PC6/RES 2 RXD GND VCC 300R 300R 26 PC4/SDA V VPD0/RXD 3 TXD 25 PC3/ADC3 A PD1/TXD 4 IL-300mA /MODE0 PC2/ADC2 PD2/INT0 R209 V201 /MODE1 24 PC1/ADC1 PD3/INT1 5 IL-25mA 23 PC0/ADC0 PD4/T0 6 470R BC817-40 SCK 19 PB5/SCK PB6/X1 9
in „Temperatur-Sensor für Funkübertragung, Schaltplanidee“ · Mikrocontroller und Digitale Elektronik ·
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5110X.PDF
Cycle (Early Write) Semiconductor Group 52 HYB 511000BJ/BJL-50/-60/-70 1 M 1-DRAM tRAS tRP VIH RAS V IL t CHR CPT tRSH CSR CAS V IH CAS V IL tRAL CAH tASC ASR V IH Column Row A0-A9 V Address Address IL t Read Cycle tWRP RCS AACAC tRRH tWRH RCH V IH WE V IL tOFF tCLZ DO V OH Valid DataOut (Output) VOL tWCS
in „Datenblatt TC55100BPL-70L“ · Mikrocontroller und Digitale Elektronik ·
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DS_K4B4G1646D-BC_I_P_Rev102.pdf
anIH.CAAC125) value is used when VREF + 125mV is referenced. 8. VILac) is used as a simplified symbolIL.CAAC175) and V IL.CAAC150), IL.CAAC135) and V IL.CAAC125); IL.CAAC175) value is used when REF - 175mV is refer- enced, V (AC150) value is used when V - 150mV is referenced, V (AC135) value is used when
in „DDR3 RAM Datenleitung beliebig anschliessen“ · Mikrocontroller und Digitale Elektronik ·
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M27C256B_10f1.pdf
Program Inhibit VIH V IH X V PP Hi-Z Standby V X X V Hi-Z IH CC Electronic Signature V V V V Codes IL IL ID CC Note: X =IHorIL IDV = 1〉0.5V Table4. ElectronicSignature Identifier A0 Q7 Q6 Q5 Q4 Q3 Q2 Q1 Q0 Hex Data Manufacturer’s Code VIL 0 0 1 0 0 0 0 0 20h Device Code VIH 1 0 0 0 1 1 0 1 8Dh Two Line
in „M27C256B zu verkaufen“ · Markt ·
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PDF
Playtronic_NTL05-_Netzgeraet.pdf
6oO--' O-F+ -N )J)JUL! ,H ==E ;,! 6l 'rr o: oo,=+frIfEio:6-556qCiii66;,i-Viin<r66\o 5 el ,, I [ [ [ il [ I [ il I tr IIII ,,,, 3{.: bg,!9r=H5,g3hH-EEEEEI{!E.€Eb,FFfff fitE E;a*-"'"'*s 6 ! cl qln96\On\O O\OFN 66Nr :: = = = ol ss$s<t FN s=lsfls5ls#EIl;*S;fssfHjHie=l*= f= l ll d, EEEEELO. CJ(JCJ(J oooo U
in „Playtronic ptm elektronik - NTL05 - Handbuch- o. Serviceunterlagen gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Hameg_Encoder_ALPS-EC11J.pdf
?D . ¿&.'%# ) + * #- .! +'* " 4 .# &. .$ $.# Encoders .% -4 .& # -+ J # 2+ >o=H@ 'oKnJE6OpA onlO ) Il=nJ $.#A p=HJ DoMI JDA Iol@AH l=n@ >l=?F p=HJ: Power 2+ >o=H@ moKnJEnC @AJ=ElC ) Il=nJ lEnA p=HJ DoMIJ JDA Iol@AH l=n@ >l=?F p=HJ: Dual-in-line ,o noJ Iol@AH =n@ MEHEnC PackageType BoH AlA?JHE?=l ?onJ
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Unknown.pdf
. typ. max. min. typ. max. *3 *2 *3 *2 *3 *2 Input Voltage V IN 15 6 30 10 30 V SI-3000C*1 3.168 3.300 3.432 4.80 5.00 5.20 8.64 9.00 9.36 VO Output Voltage SI-3000CA 3.234 3.300 3.366 4.90 5.00 5.10 8.82 9.00 9.18 V Conditions VIN=5V, O=1.0A V I=8V, IO=1.0A VI=12V, IO=1.0A VDIF 0.5 0.5 0.5 Dropout Voltage
in „Totalausfall Panasonic AG-7350 (nur noch Hintergrundbeleuchtung der Zeigerinstrumente)“ · Analoge Elektronik und Schaltungstechnik ·
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CD4538.pdf
IDD Quiescent VDD e 5V V IHe VDD 20 0.005 20 150 mA Device Current DD e 10V V ILe VSS 40 0.010 40 300 mA V e 15V( All Outputs Open 80 0.015 80 600 mA DD V Low Level V e 5V 0.05 0 0.05 0.05 V OL DD O lk 1 mA Output Voltage DD e 10V V e V , V e V 0.05 0 0.05 0.05 V VDD e 15V( IH DD IL SS 0.05 0 0.05 0.05
in „LED soll leuchten, wenn ein pc lüfter nicht dreht. Kein Einbau im PC“ · Analoge Elektronik und Schaltungstechnik ·
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XL4005.pdf
Datasheet 5A300KHz 32VBuck DC to DC Converter XL4005 Features General Description Wide 5V to 32V Input Voltage Range The XL4005 is a 300KHz fixed frequency Output Adjustable from 0.8V to 30V PWM buck (step-down
in „Spannungsversorgung Stepdown 12v 3A+“ · Analoge Elektronik und Schaltungstechnik ·
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00311151.pdf
n determines the learning wJ,, pairs of v and iL are sampled from one cycle of voltage rate of the neural network. The larger the constant q is, P C C and current variation. A-sampling frequency of 5000 Hz is the faster the change in the weights is
in „blindleistungs berechnung“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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tca8418.pdf
REGISTER NAME DESCRIPTION 7 6 5 4 3 2 1 0 GPIO edge/level detect 0x26 GPIO_INT_LVL1 0: falling/low R7IL R6IL R5IL R4IL R3IL R2IL R1IL R0IL 0 0 0 0 0 0 0 0 1: rising/high GPIO edge/level detect 0x27 GPIO_INT_LVL2 0: falling/low C7IL C6IL C5IL C4IL C3IL C2IL C1IL C0IL 0 0 0 0 0 0 0 0 1: rising/high GPIO
in „Keypad 3x4 (am Tasmota o.ä.)“ · Mikrocontroller und Digitale Elektronik ·
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AN_EVAL_SEPIC_V10.pdf
in a drive converter with brake to the input voltage V inpears across C . s chopper. Vin C2 Vin L1 IL1 R2 TR 80...264VAC R1 D3 R1 D2 D1 80...264VAC D2 Vcc Vo s D1 Iout C1 TM C1 Vcc A CoolSET D CoolSET D FB PWM C5 D4 FB PWM C4 control C4 control L2 C5 D4 T1 T1 GND GND Vo R3 L2 R3 Figure 2: Circuits for
in „Feedback ohne Optokoppler möglich?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
74HCT00.pdf
Power Dissipation 500 (*) mW o Tstg Storage Temperature -65 to +150 C T Lead Temperature (10 sec) 300 oC L AbsoluteMaximumRatingsarethose values beyond whichdamage tothedevicemayoccur. Functional operationunder theseconditionisnotimplied. (*)500 mW: ≅ 65 C derate to300 mWby 10mW/ C: 65 C to85 C 2/9
in „Pegelwandler 3.3v -> 5v“ · Mikrocontroller und Digitale Elektronik ·
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G5177C.pdf
IL1A/div V OUT0mV /div VOUT50mV/div Time 10ms/div Time 1µs/div Ver: 0.1 TEL:0755-83983377 Mar 26, 2014 http://www.gofotech.com 4 G lo b a l M ix e d - m o d e T e c h n o lo g y G5177C Ty pical Performance
in „Boostconverter hat eine viel zu geringe Ausgangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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BTS4880R_20040127.pdf
i (t) dt, AS bb L R ON(CL) L IN1...8 PROFET OUT1...8 with an approximate solution forLR > 0Ω: GND IL* L IL* R L EAS = 2 * R L* (V b+ |V OUT(CL)|* ln(1 + |VOUT (L )) V VIN VST VGND bb V disconnect with charged inductive bb load LS Vbb DIAG high IN1...8 PROFET OUT1...8 GND Vbb Page 11 2004-01-27 BTS 4880
in „Suche SPI Interface IC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc_dpn233_dpn2333_0402_f12.pdf
). Le voyant rouge P indique que l'imprimante est sous tension. Le voyant vert SEL indique, lorsqu'il est allumé, que l'imprimante est SELECTIONNEE (prête à recevoir et imprimer des données); lorsqu'il est éteint, l'imprimante est en mode DESELECTIONNE (elle ne peut recevoir de données). Le poussoir
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L2418A_Ersatzteilliste.pdf
STUFENDREHSCHALTER Ampere RORARY WAFER SWITCH COMMUTATEUR ROT. GRADINS CONMUTAD. GIR. ESCANOLADO 21/3 8 787 200 300 < STUFENDREHSCHALTER Volt ORARY WAFER SWITCH COMMUTATEUR ROT. GRADINS CONMUTAD. GIR. ESCANOLADO 22 8 787 235 103 AMPEREMETER AMMETER AMPEREMETRE AMPERIMETRO 23 8 788 300 232 LEITERPLATTE, BESTUECKT
in „Ladegerät reparieren / Bosch L2418“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LCD-Controller_NT3881.pdf
Power Supply OFF Time 1 - - ms Figure 4 9 V2.5 NT3881D Timing Waveforms Read Operation VIH1 V IH1 RS V IL1 VIL1 tAS tAH VIH1 R/W tAH WEM FE VIH1 E V IL1 VIL1 V IL1 tRE tDHR tRD VIH1 V IH1 DB0~DB7 VALD DATA VIL1 V IL1 tCYCE Figure 1. Bus Read Operation Sequence (Reading out data from NT3881D to MPU) Write Operation V IH1 VIH1 RS V IL1 VIL1 tAS tAH R/W VIL1 VIL1 tAH WEM tFE VIH1 V IH1 E VIL1 V IL1 V IL1 tRE tDHW DS VIH1 V IH1 DB0 ~ DB7 VALD DATA VIL1 V IL1 tCYCE Figure 2. Bus Write Operation Sequence (Writing data from MPU to NT3881D
in „Frage zu GCC Tutorial LCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
nt3881.pdf
Power Supply OFF Time 1 - - ms Figure 4 9 V2.5 NT3881D Timing Waveforms Read Operation VIH1 V IH1 RS V IL1 VIL1 tAS tAH VIH1 R/W tAH WEM FE VIH1 E V IL1 VIL1 V IL1 tRE tDHR tRD VIH1 V IH1 DB0~DB7 VALD DATA VIL1 V IL1 tCYCE Figure 1. Bus Read Operation Sequence (Reading out data from NT3881D to MPU) Write Operation V IH1 VIH1 RS V IL1 VIL1 tAS tAH R/W VIL1 VIL1 tAH WEM tFE VIH1 V IH1 E VIL1 V IL1 V IL1 tRE tDHW DS VIH1 V IH1 DB0 ~ DB7 VALD DATA VIL1 V IL1 tCYCE Figure 2. Bus Write Operation Sequence (Writing data from MPU to NT3881D
in „LCD mit NT3881D“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet-Novatec_display_controller.pdf
Power Supply OFF Time 1 - - ms Figure 4 9 V2.5 NT3881D Timing Waveforms Read Operation VIH1 V IH1 RS V IL1 VIL1 tAS tAH VIH1 R/W tAH WEM FE VIH1 E V IL1 VIL1 V IL1 tRE tDHR tRD VIH1 V IH1 DB0~DB7 VALD DATA VIL1 V IL1 tCYCE Figure 1. Bus Read Operation Sequence (Reading out data from NT3881D to MPU) Write Operation V IH1 VIH1 RS V IL1 VIL1 tAS tAH R/W VIL1 VIL1 tAH WEM tFE VIH1 V IH1 E VIL1 V IL1 V IL1 tRE tDHW DS VIH1 V IH1 DB0 ~ DB7 VALD DATA VIL1 V IL1 tCYCE Figure 2. Bus Write Operation Sequence (Writing data from MPU to NT3881D
in „mal wieder ein LCD am Atmega8“ · Mikrocontroller und Digitale Elektronik ·
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CLAA154WB05AN.pdf
ITEM SYMBOL MIN TYP MAX UNIT REMARK Lamp Voltage(IL=6.0mA) VL 657 700 803 Vrms IL=6.0mA Lamp Current IL 3 6.0 6.5 mArms *1) Inverter Frequency FI 50 -- 60 kHz *2) 1460 -- Vrms Ta=25℃ Lamp Initial Voltage VS 1730 -- Vrms Ta=0℃ (b) LAMP LIFE – TIME ITEM IL at 2.0 mA IL at 6.0 mA IL at 6.5 mA 單位 備註 LAMP LIFE-TIME (LT) Min. 15,000 Min. 15,000 Min.10,000 hr Continuous Operation*3) Turn-on and turn-off Operation -- Min.100,000 -- times Continuous Operation
in „Display CLAA154WB05AN an Pollinboard PI-MDV6822“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
Low Line and Further Reduction with Increasing Line Voltage. + For R = 12 k7 + I = 100% @ 100 VDC IL ILIMI= 53% @ 300 VDC ILIMIT 61% LIMIT R LS 2.5 M7 For R = 19 k7 TOP259-261YN would I IL= 37% use the G pin as the LIMIT return for R. IL DC See Figure 55b for other DC Input D resistor values IL ). Input
in „Verzweifelt: Wie Widerstände und Kapazitäten eines Sperrwandler IC´s auslegen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LTC490_LT.pdf
LTC490 Differential Driver and Receiver Pair U F EA UT RE S DESCRIPTIO Low Power: ICC = 300 A Typical TheLTC490isalowpowerdifferentialbus/linetransceiver Designed for RS485 or RS422 Applications designedformultipointdatatransmissionstandardRS485 Single 5V Supply applicationswithextendedcommon-moderange
in „µC -- RS485 Frage“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SPLC-780-A1.pdf
tPWL 800 - - ns Pins: CL1, CL2 Clock setup time tCSP 500 - - ns Pins: CL1, CL2 Data setup time tDSP 300 - - ns Pins: D Data hold time tHD 300 - - ns Pins: D M delay time tD -1000 - 1000 ns Pins: M WRITE MODE TIMING DIAGRAM (Writing Data from MPU to SPLC780A1) VIH1 VIH1 RS VIL1 VIL1 SP1 tHD1 R / W V IL1
in „Nur Hyroglphen auf dem LCD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
M74HC11.pdf
Power Dissipation 500 (*) mW o Tstg Storage Temperature -65 to +150 C T Lead Temperature (10 sec) 300 oC L AbsoluteMaximumRatingsarethose values beyond whichdamage tothedevicemayoccur. Functional operationunder theseconditionisnotimplied. (*)500 mW: ≅ 65 C derate to300 mWby 10mW/ C: 65 C to85 C 2/9
in „Ausgangsstrom M74HC11“ · Mikrocontroller und Digitale Elektronik ·
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PDF
philips_10000_uF_25V.pdf
610 430 059 32221 220 25 × 30 2530 0.87 268 92 610 430 059 52221 330 30 × 30 3030 1.12 400 136 435 300 059 52331 330 25 × 40 2540 1.12 400 136 435 300 059 42331 470 30 × 35 3035 1.46 568 192 335 225 059 32471 470 25 × 50 2550 1.25 568 192 335 225 059 42471 680 30 × 45 3045 1.87 820 276 235 155 059 32681
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PDF
bts432.pdf
42 V • Current limitation V bb (reverse) -32 V • Thermal shutdown • Diagnostic feedback R ON 38 mΩ IL(SCp) 44 A • Open load detection in ON-state • CMOS compatible input IL(SCr) 35 A • Electrostatic discharge (ESD) protection IL(ISO) 11 A • 2) Loss of ground and loss of Vbb protection • Overvoltage protection
in „High Side Switch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT3012.pdf
125°C ( 500 TJ= 125°C E500 500 L = 250mA V A V ( L ( L = 100mA E400 V400 E400 A T T J 25°C A L O L V300 TJ= 25°C O300 V300 I = 50mA T R T L O D O I = 10mA O200 D200 O200 L R T R D A D IL= 1mA 100 A100 100 U G 0 0 0 0 50 100 150 200 250 0 50 100 150 200 250 –50 –25 0 25 50 75 100 125 150 OUTPUT CURRENT
in „Linear Regler schwingt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
atmel-flash-speicher.pdf
V CC Power Supply 5V ± 10% 5V ± 10% 5V ± 10% Operating Modes Mode CE OE WE Ai I/O Read V V V Ai D IL IL IH OUT Program (2) V V V Ai D IL IH IL IN Standby/Write Inhibit V X (1) X X High Z IH Program Inhibit X X V IH Program Inhibit X V X IL Output Disable X V X High Z IH Product Identification (3) (4
in „Speicher für Messwerte“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OZ960_O2MICRO.pdf
20-pin plastic SSOP 150mil OZ960IS - 20-pin plastic SSOP 150mil DIAGRAM OZ960G - 20-pin plastic SOP 300mil OZ960IG - 20-pin plastic SOP 300mil Refer to the functional block diagram in Figure 2, OZ960D - 20-pin plastic DIP 300mil page 3, and the Pin Description Table on page 4. OZ960ID - 20-pin plastic
in „Ic´s (unbekannt) für den Tft monitor gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OZ960.pdf
20-pin plastic SSOP 150mil OZ960IS - 20-pin plastic SSOP 150mil DIAGRAM OZ960G - 20-pin plastic SOP 300mil OZ960IG - 20-pin plastic SOP 300mil Refer to the functional block diagram in Figure 2, OZ960D - 20-pin plastic DIP 300mil page 3, and the Pin Description Table on page 4. OZ960ID - 20-pin plastic
in „BenQ FP71Bildschirm fällt nach einiger Zeit aus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OZ960.pdf
20-pin plastic SSOP 150mil OZ960IS - 20-pin plastic SSOP 150mil DIAGRAM OZ960G - 20-pin plastic SOP 300mil OZ960IG - 20-pin plastic SOP 300mil Refer to the functional block diagram in Figure 2, OZ960D - 20-pin plastic DIP 300mil page 3, and the Pin Description Table on page 4. OZ960ID - 20-pin plastic
in „Monitor defekt!“ · Analoge Elektronik und Schaltungstechnik ·