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PDF
VMO1200-01F.pdf
otherwise specified) - Kelvin source terminals for easy drive min. typ. max. - isolated DCB ceramic base plate R DSon VGS= 10 V; D = D80 TVJ 25°C 1.00 1.25 mW T = 125°C 1.62 2.00 mW Applications VJ VGS(th) VDS= 20 V; D = 3 mA 3 5 V • converters with high power density for IDSS VDS 0.8 • VDSS; GS = 0 V;
in „Wie wähle ich Treiber für VMO1200-01F?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ZDS1009TA-datasheet.pdf
applications and as such will find a broad sense resistor, and by an arrangement of current applications base including battery charge mirrors refer this sensed voltage, with or without management, DC motor control and over current multiplication, to a low side referenced signal. This monitoring functions.
in „High-Side-Strom auf Low-Side spiegeln (Stromspiegel?!)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT3800.pdf
24V VIN BOOST 1μF 95 VIN= 36V IN 5 1M TG Si7850DP 82.5k LT3800 VIN= 60V P SHDN SW % 90 4 W 1.5n200k BAS19 C VIN= 48V R CSS I 85 3 S 1N4148 15μH I W 20k 1%4k BURST_EN VCC E 80 2 ) 1% 1μF LOSS (48V) VFB BG Si7370DP B160 75 1 VC PGND 100pF 82.5k SENSE– SENSE + 700.1 1 100 SGND ILOAD(A) 680pF 0.015Ω 3800
in „LT3800 Frage“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
C55_C55i_hardware_description.pdf
Ambient temperature (according to -20 25 50 °C GSM 11.10) Restricted operation *) -25 to -20 55 to 70 °C Automatic shutdown °C C55/C55i board temperature -29 °C >70 °C Table 4: Operating temperature *) C55/C55i works, but deviations from the GSM specification may occur. This confidential document is
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PDF
AO4459.pdf
Drain-Source Voltage VDS -30 V Gate-Source Voltage VGS ±20 V Continuous Drain TA=25°C -6.5 Current T =70°C D -5.3 A A Pulsed Drain CurrentC DM -30 Avalanche Current C I , I 17 A C AS AR Avalanche energy L=0.1mH EAS E AR 14 mJ T =25°C 3.1 B A PD W Power Dissipation TA=70°C 2 Junction and Storage Temperature
in „P-Mosfet sperrt nicht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STD60N55F3.pdf
data mm inch Dim Min Typ Max Min Typ Max A 4.40 4.60 0.173 0.181 b 0.61 0.88 0.024 0.034 b1 1.14 1.70 0.044 0.066 c 0.49 0.70 0.019 0.027 D 15.25 15.75 0.6 0.62 D1 1.27 0.050 E 10 10.40 0.393 0.409 e 2.40 2.70 0.094 0.106 e1 4.95 5.15 0.194 0.202 F 1.23 1.32 0.048 0.051 H1 6.20 6.60 0.244 0.256 J1 2.40
in „Frage zu MOSFET STF60N55F3“ · Mikrocontroller und Digitale Elektronik ·
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PDF
WBDesign5.pdf
GMT-07:00 WEBENCH ® Design IC Tj Duty Cycle 57.0 82.5 56.5 80.0 56.0 77.5 55.5 55.0 75.0 54.5 72.5 )70.0 )54.0 % C53.5 e67.5 e53.0 c65.0 d52.5 y62.5 j C T52.0 y60.0 C51.5 u57.5 I51.0 D55.0 50.5 52.5 50.0 50.0 49.5 49.0 47.5 48.5 45.0 42.5 48.0 0.25 0.50 0.75 1.00 1.25 1.50 1.75 2.00 0.25 0.50 0.75 1.00
in „Drehstrom Motor anfangstrom berechnen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
UHF_Remote_Control_System_TEMIC_9606.pdf
all modifications. modules - based on a 50- system - showed The amplified RF signal is fed to the base of that the level of the local oscillator at the the mixer transistor, T 104. If no wide trans- antenna input is approximately -65 to mission range is required, the value of C 107 -70 dBm. may be increased
in „ISM Empfänger mit kleinstem Standby“ · HF, Funk und Felder ·
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PDF
Fundamentals-of-PCB-Technologies.pdf
pattern may be formed. The base material may be rigid or flexible. Base Material: See Base Laminate. Bed-of-Nails:Amethodoftestingprintedcircuitboardsthatemploysatestfigure mounting an array of contact pins confi gured to engage plated
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PDF
sharp_r733.pdf
’onde 36 sec. ON 112 sec. O F (chemin de transport) dans la cavité du four, où est HHIGHUM Approx. 70% = 630Watts placé l’aliment à cuire. 226 sec.ON 22 sec. OFF 4. Lorsque la durée de cuisson est atteinte, un signal MEDIUMUM Approx. 50% = 450Watts sonore est entendu et les relais RY1 + RY3 retournent
in „Fragen zu einem Trafo einer Sharp R733(W) Mikrowelle“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
sharp_r733.pdf
’onde 36 sec. ON 112 sec. O F (chemin de transport) dans la cavité du four, où est HHIGHUM Approx. 70% = 630Watts placé l’aliment à cuire. 226 sec.ON 22 sec. OFF 4. Lorsque la durée de cuisson est atteinte, un signal MEDIUMUM Approx. 50% = 450Watts sonore est entendu et les relais RY1 + RY3 retournent
in „Fragen zu einem Trafo einer Sharp R733(W) Mikrowelle“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
irlml6402pbf.pdf
-20 V D @ TA= 25°C Continuous Drain CurrentGS@ -4.5V -3.7 I @ T = 70°C Continuous Drain Current, @ -4.5V -2.2 A D A GS DM Pulsed Drain Current -22 PD@T =A25°C Power Dissipation 1.3 P @T = 70°C Power Dissipation 0.8 W D A Linear Derating Factor 0.01 W/°C EAS Single Pulse
in „TP4056 Polarity protection“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
UA741CP_datasheet.pdf
offset voltage as shown in Figure 2. The A741C is characterized for operation from NC 1 10 NC 0⋅C to 70⋅C. The A741I is characterized for OFFSET N1 2 9 NC operation from –40⋅C to 85⋅C.The A741M is IN– 3 8 VCC+ characterized for operation over the full military IN+ 4 7 OUT temperature range of –55⋅C to
in „OP Spannung 1,82V bei Min.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
version_1p3_assembler.asm
entry points and jump table ; ;************************************************************** ; FP_BASE: AJMP FLOATING_ADD FP_BASE1: AJMP FLOATING_SUB FP_BASE2: AJMP FLOATING_COMP FP_BASE3: AJMP FLOATING_MUL FP_BASE4: AJMP FLOATING_DIV FP_BASE5: AJMP HEXSCAN FP_BASE6: AJMP FLOATING_POINT_INPUT FP_BASE7: AJMP FLOATING_POINT_OUTPUT FP_BASE8: AJMP CONVERT_BINARY_TO_ASCII_STRING FP_BASE9: AJMP CONVERT_ASCII_STRING_TO_BINARY FP_BASE10: AJMP MULNUM10 FP_BASE11: AJMP HEXOUT FP_BASE12: AJMP PUSHR2R0 ; ; FLOATING_SUB: ; MOV P2,#ARG_STACK_PAGE
in „Spaß mit Kloeckner-Moeller PS3 in BASIC(?)“ · Projekte & Code ·
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Datei
version_1p3_assembler.asm
entry points and jump table ; ;************************************************************** ; FP_BASE: AJMP FLOATING_ADD FP_BASE1: AJMP FLOATING_SUB FP_BASE2: AJMP FLOATING_COMP FP_BASE3: AJMP FLOATING_MUL FP_BASE4: AJMP FLOATING_DIV FP_BASE5: AJMP HEXSCAN FP_BASE6: AJMP FLOATING_POINT_INPUT FP_BASE7: AJMP FLOATING_POINT_OUTPUT FP_BASE8: AJMP CONVERT_BINARY_TO_ASCII_STRING FP_BASE9: AJMP CONVERT_ASCII_STRING_TO_BINARY FP_BASE10: AJMP MULNUM10 FP_BASE11: AJMP HEXOUT FP_BASE12: AJMP PUSHR2R0 ; ; FLOATING_SUB: ; MOV P2,#ARG_STACK_PAGE
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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Datei
IS52Basic.a51
entry points and jump table ; ;************************************************************** ; FP_BASE: AJMP FLOATING_ADD FP_BASE1: AJMP FLOATING_SUB FP_BASE2: AJMP FLOATING_COMP FP_BASE3: AJMP FLOATING_MUL FP_BASE4: AJMP FLOATING_DIV FP_BASE5: AJMP HEXSCAN FP_BASE6: AJMP FLOATING_POINT_INPUT FP_BASE7: AJMP FLOATING_POINT_OUTPUT FP_BASE8: AJMP CONVERT_BINARY_TO_ASCII_STRING FP_BASE9: AJMP CONVERT_ASCII_STRING_TO_BINARY FP_BASE10: AJMP MULNUM10 FP_BASE11: AJMP HEXOUT FP_BASE12: AJMP PUSHR2R0 ; ; FLOATING_SUB: ; MOV P2,#ARG_STACK_PAGE
in „Layout für MCS51 Experimentierboard“ · Projekte & Code ·
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Datei
IS52Basic.a51
entry points and jump table ; ;************************************************************** ; FP_BASE: AJMP FLOATING_ADD FP_BASE1: AJMP FLOATING_SUB FP_BASE2: AJMP FLOATING_COMP FP_BASE3: AJMP FLOATING_MUL FP_BASE4: AJMP FLOATING_DIV FP_BASE5: AJMP HEXSCAN FP_BASE6: AJMP FLOATING_POINT_INPUT FP_BASE7: AJMP FLOATING_POINT_OUTPUT FP_BASE8: AJMP CONVERT_BINARY_TO_ASCII_STRING FP_BASE9: AJMP CONVERT_ASCII_STRING_TO_BINARY FP_BASE10: AJMP MULNUM10 FP_BASE11: AJMP HEXOUT FP_BASE12: AJMP PUSHR2R0 ; ; FLOATING_SUB: ; MOV P2,#ARG_STACK_PAGE
in „Layout für MCS51 Experimentierboard“ · Projekte & Code ·
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Datei
IS52Basic.a51
entry points and jump table ; ;************************************************************** ; FP_BASE: AJMP FLOATING_ADD FP_BASE1: AJMP FLOATING_SUB FP_BASE2: AJMP FLOATING_COMP FP_BASE3: AJMP FLOATING_MUL FP_BASE4: AJMP FLOATING_DIV FP_BASE5: AJMP HEXSCAN FP_BASE6: AJMP FLOATING_POINT_INPUT FP_BASE7: AJMP FLOATING_POINT_OUTPUT FP_BASE8: AJMP CONVERT_BINARY_TO_ASCII_STRING FP_BASE9: AJMP CONVERT_ASCII_STRING_TO_BINARY FP_BASE10: AJMP MULNUM10 FP_BASE11: AJMP HEXOUT FP_BASE12: AJMP PUSHR2R0 ; ; FLOATING_SUB: ; MOV P2,#ARG_STACK_PAGE
in „Basic für 80C31“ · Mikrocontroller und Digitale Elektronik ·
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Datei
BASIC131-PS3.a51
entry points and jump table ; ;************************************************************** ; FP_BASE: AJMP FLOATING_ADD FP_BASE1: AJMP FLOATING_SUB FP_BASE2: AJMP FLOATING_COMP FP_BASE3: AJMP FLOATING_MUL FP_BASE4: AJMP FLOATING_DIV FP_BASE5: AJMP HEXSCAN FP_BASE6: AJMP FLOATING_POINT_INPUT FP_BASE7: AJMP FLOATING_POINT_OUTPUT FP_BASE8: AJMP CONVERT_BINARY_TO_ASCII_STRING FP_BASE9: AJMP CONVERT_ASCII_STRING_TO_BINARY FP_BASE10: AJMP MULNUM10 FP_BASE11: AJMP HEXOUT FP_BASE12: AJMP PUSHR2R0 ; ; FLOATING_SUB: ; MOV P2,#ARG_STACK_PAGE
in „Spaß mit Kloeckner-Moeller PS3 in BASIC(?)“ · Projekte & Code ·
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Datei
IS51Basic133.a51
entry points and jump table ; ;************************************************************** ; FP_BASE: AJMP FLOATING_ADD FP_BASE1: AJMP FLOATING_SUB FP_BASE2: AJMP FLOATING_COMP FP_BASE3: AJMP FLOATING_MUL FP_BASE4: AJMP FLOATING_DIV FP_BASE5: AJMP HEXSCAN FP_BASE6: AJMP FLOATING_POINT_INPUT FP_BASE7: AJMP FLOATING_POINT_OUTPUT FP_BASE8: AJMP CONVERT_BINARY_TO_ASCII_STRING FP_BASE9: AJMP CONVERT_ASCII_STRING_TO_BINARY FP_BASE10: AJMP MULNUM10 FP_BASE11: AJMP HEXOUT FP_BASE12: AJMP PUSHR2R0 ; ; FLOATING_SUB: ; MOV P2,#ARG_STACK_PAGE
in „Layout für MCS51 Experimentierboard“ · Projekte & Code ·
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PDF
R44-2006.pdf
Indicates the computer of Y cable or terminal side. Keyboard input Short branch PC OR of the Y cable Base Cables: TERMINAL VS/HS: 8-0203-01 DUET: 8-0455-01 To Scanner Keyboard Note: Your cable may differ from illustration based on your Host Terminal. Figure 1. Keyboard-Wedge Cable Connections. 3 Plug the
in „Ansteuerung POS HS1250“ · Mikrocontroller und Digitale Elektronik ·
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PDF
msp430fr2532.pdf
r2.0 u 6 u C y l 5 p1.5 p 4 u S S1.0 3 3 3 M M L 2 L0.5 1 0 0.0 -40 -30 -20 -10 0 10 20 30 40 50 60 70 80 -40 -30 -20 -10 0 10 20 30 40 50 60 70 80 Temperature (°C) Temperature (°C) LPM3 LPM3.5 V CC = 3 V RTC SVS Disabled VCC = 3 V XT1 SVS Enabled Figure 5-1. LPM3 Supply Current vs Temperature Figure
in „MSP430 Output nur auf zwei von vier Pinnen möglich?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Manual_netX_Program_Reference_Guide_Rev02_GB.pdf
negotiation) R/W 0x00 17 PHY1_AUTOMDIX PHY1 Enables AutoMDIX state machine R/W 0 16 PHY1_FIXMODE PHY1 100BASE-FX mode (phy_mode must be 01x) R/W 0 PHY1 Mode 000: 10BASE-T Half Duplex, Auto Negotiation disabled. 001: 10BASE-T Full Duplex. Auto-Negotiation disabled. 010: 100BASE-TX/FX Half Duplex. Auto-Negotiation
in „netX500 mit ARM-Kern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Wie_archiviert_ihr_Websites__-_Mikrocontroller.net.html
resourceMimeType.length;i++){if(typeof resourceMimeType[i]!="undefined"){binaryString=atob(resourceBase64Data[i]);resourceBase64Data[i]="";a.length=0;for(j=0;j<binaryString.length;j++){a[j]=binaryString.charCodeAt(j)}blobData=new Blob([new Uint8Array(a)],{type:resourceMimeType[i]});resourceMimeType[i]
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Datei
main.cpp
; int i=0; int anzahl=0; char filename[20]="dateien.txt"; // Datei öffnen file.open(filename, ios_base::in); if (file.good()) { // Wenn die Datei geoeffnet werden konnte... // An den Anfang der Datei springen file.seekg(0L, ios::beg); while (! file.eof()) { i++; // Die Datei zeilenweise auslesen file.getline
in „C+ neuling mit Dateien und Daten umstrukturierungs PROBLEM“ · Softwareentwicklung ·
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PDF
DAC80.pdf
Error(2) ±0.1 ±0.3 % Offset Error2) ±0.05 ±0.15 % of FSR(3) DRIFT (0°C to +70°C)(4) Total Bipolar Drift (includes gain, offset, and linearity drifts) ±10 ±25 ppm of FSR/°C (5) Total Error Over 0°C to +70°C Unipolar ±0.06 ±0.15 % of FSR Bipolar ±0.06 ±0.12 % of FSR Gain: Including
in „Ersatz für DAC80 (12-Bit DIGITAL-TO-ANALOG CONVERTERS)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
l293d.pdf
Samples Drawing (1) (2) (3) (4) L293DNE ACTIVE PDIP NE 16 25 Pb-Free CU NIPDAU N / A for Pkg Type 0 to 70 L293DNE (RoHS) L293DNEE4 ACTIVE PDIP NE 16 25 Pb-Free CU NIPDAU N / A for Pkg Type 0 to 70 L293DNE (RoHS) L293DWP OBSOLETE SOIC DW 28 TBD Call TI Call TI 0 to 70 L293DWP L293DWPG4 OBSOLETE SOIC DW 28 TBD Call TI Call TI 0 to 70 L293DWPTR OBSOLETESO PowerPAD DWP 28 TBD Call TI Call TI 0 to 70 L293N OBSOLETE PDIP N 16 TBD Call TI Call TI 0 to 70 L293N L293NE ACTIVE PDIP NE 16 25 Pb-Free CU NIPDAU N / A for Pkg Type 0 to 70 L293NE
in „Motor ansteuern mit RPi & L293D“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
913LB7C.pdf
i 2.0 t 80 n n t r 60 I 1.5 C n d d 1.0 a 40 a r R F 20 0.5 0 0 0 20 40 60 80 100 -30 -10 10 30 50 70 90 Ambient Temperature (℃) Ambient Temperature (℃) t 100 s e n 75 s u n m 50 u L i 25 a e R 0 400 450 500 550 600 650 700 Wavelength λ (nm) Page: 4 LED LAMP APPLICATION ySOLDERING METHOD SOLDERING CONDITIONS REMARK y Solder no closer than 3mm from the DIP Bath temperature: 260±5℃ base of the package SOLDERING Immersion time: with 5 sec y Using soldering flux,” RESIN FLUX” is recommended. y During soldering, take care not to press the tip of iron against the Soldering iron: 30W or
in „LEDS hinter Konstantstromquelle dimmen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ob2354ap.pdf
Mode PWM Power Sw itch Freq Sffling △f_VDD Stability Voltage 5 % D_max cycleum duty FB=3.3V, CS =0V 70 80 90 % Ñ Mosfet Section Frequencye Base 22 KHZy BVdss VoltageBreakown 650 PV RDS(on) Source Onain to 7 9 11[ Ώ ∆f_OSCncy ShuffliFrequencye -4 5 4 % /Base frequencye u ^ t 0 u ¨ v ▯ ^ 3 W æ ©On-Bright
in „Klackerndes Relais im CD-Player - obwohl vom Netz getrennt.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LeCroy-TS-8500-Datasheet.pdf
electronics engineering. TS-8500 DC – 500 MHz, 4 CH m Ultra-high speed storage capability m Time base dual delay function Newly-developed scan converter tube allows capture of single sTwo independent delay time settings are provided for B sweeps, For instance, it can display the leading edge of a 6.25
in „Hat jedes Oszilloskop einen Anschluss für einen Computermonitor?“ · Offtopic ·
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PDF
008-0256-0.pdf
storage area networks, fiber channel, computers and peripherals, test and measurement, SONET/SDH/DWDM, base stations and Pico cells. ORDERING INFORMATION CB3 - - M SUPPLY VOLTAGE FREQUENCY IN MHz LV = +3.3Vdc 3 Blank = +5.0Vdc M - indicates MHz and decimal point. FREQUENCY STABILITY OPERATING TEMPERATURE RANGE 1 6 = ± 20 ppm 7 = ± 32 ppm2 C = -20°C to +70°1 [standard] 5 = ± 25 ppm 2 I = -40°C to +85°C 3 = ± 50 ppm [std] 2 = ± 100 ppm 1] 6I Stability/Temperature combination is not available. 2] These stabilities are not recommended for new designs. 3]
in „Schaltung um/vor Oscillator“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LED_Power_Supply_Cheng_Liang_P360W24V.pdf
45-17 SH 1 C? 3 1 R? P13009 (1) 9 1 1nF, 1kV +24V B C? 0.47R, 1/2W 3 T2 2 D11 B þÿ4.7µF, 50V 11 W Base6Driving Transformer ADL MBR20200PT 1 3 C 5 L1 R_Shunt C? R , 10 6 þÿ3 x 1000µF, 35V, 105°C . 7 þÿ44µH (3) 18-25mOhm 5 9 4 þÿ3.3µF, 335J, 400V, CBB22 +24V 1 4 12 7 2 3 8 C1 8 5 2 GND R? 10 4.7n, 2kV
in „Halbbrücken-Gegentaktwandler Ansteuerung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
a8988671.pdf
temperature, lamp aging and etc. ▯ - 4 - ▯ 2.2 Environmental Characteristic: ▯ Storage Temperature : -3Ċ ~+70 Ċ Operating Temperature: -Ċ0~+85 Ċ Storage Humidity : 90% Max Operating Humidity : 90% Max (RH Non-condensation) 2.3 Protection Mechanism: Condition Test Method Protection NOTE Over Voltage Open Lamp
in „[V] Piezo-Transformer Inverter für 2 CCFL Zippy FC02-12-03“ · Markt ·
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PDF
TIR1000.pdf
Level-1-260C-UNLIM -40 to 85 R1000I & no Sb/Br) TIR1000PSLE OBSOLETE SO PS 8 TBD Call TI Call TI 0 to 70 TIR1000PSR ACTIVE SO PS 8 2000 Green (RoHS CU NIPDAU Level-1-260C-UNLIM 0 to 70 IR1000 & no Sb/Br) TIR1000PSRG4 ACTIVE SO PS 8 2000 Green (RoHS CU NIPDAU Level-1-260C-UNLIM 0 to 70 IR1000 & no Sb/Br) TIR1000PWLE OBSOLETE TSSOP PW 8 TBD Call TI Call TI 0 to 70 TIR1000PWR ACTIVE TSSOP PW 8 2000 Green (RoHS CU NIPDAU Level-1-260C-UNLIM 0 to 70 IR1000 & no Sb/Br) TIR1000PWRG4 ACTIVE TSSOP PW 8 2000 Green (RoHS CU NIPDAU Level-1-260C-UNLIM 0 to 70 IR1000 & no
in „RS232 (Bus) Pegel Probleme“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt.pdf
Operating Temperature Range: C Device ......................................................0°C to +70°C E Device....................................................-40°C to +85°C Package Dissipation (A≤ 70°C): 8-Pin CerDIP........................................................800 mW 8-Pin Plastic DIP
in „Frequenz-Spannungswandler OP-Verstärkung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AM27C010.pdf
GUIDE Family Part Number Am27C010 VCC = 5.0 V ± 5% -45 -255 Speed Options VCC = 5.0 V ± 10% -45 -55 -70 -90 -120 -150 -200 Max Access Time (ns) 45 55 70 90 120 150 200 250 CE# (E#) Access (ns) 45 55 70 90 120 150 200 250 OE# (G#) Access (ns) 25 35 35 40 50 65 75 75 CONNECTION DIAGRAMS Top View DIP PLCC
in „OTP "E"EPROM programmieren amd 27c010“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STP15N80K5.pdf
STW15N80K5 Table 9. D²PAK (TO-263) mechanical data mm Dim. Min. Typ. Max. A 4.40 4.60 A1 0.03 0.23 b 0.70 0.93 b2 1.14 1.70 c 0.45 0.60 c2 1.23 1.36 D 8.95 9.35 D1 7.50 7.75 8.00 D2 1.10 1.30 1.50 E 10 10.40 E1 8.50 8.70 8.90 E2 6.85 7.05 7.25 e 2.54 e1 4.88 5.28 H 15 15.85 J1 2.49 2.69 L 2.29 2.79 L1 1.27
in „1500V 8A mit MOSFET schalten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
0900766b80e31c6b.pdf
PACKAGE/ORDERING INFORMATION (1) PACKAGE PACKAGE PRODUCT GAIN PACKAGE DESIGNATOR MARKING INA210 200V/V SC70-6 DCK CET INA210 200V/V Thin QFN-10 RSW KNJ INA211 500V/V SC70-6 DCK CEU INA212 1000V/V SC70-6 DCK CEV INA213 50V/V SC70-6 DCK CFT INA213 50V/V Thin QFN-10 RSW KPJ INA214 100V/V SC70-6 DCK CFV INA214
in „bidirektionale Strommessung Frage“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Bestückte Leiterplatte eines Netzteils auf Schneidematte
WOG 2206 BAS 1 C19 C18 C20 R25 CP10 IC91 R24 P9 IC92 P6 P7 P8 P13 P16 P17 T3 C14 T2 C15 C16 C17 C18 C19 C20 C21 C22 C23 C24 C25 C26 C27 C28 C29 C30 C31 C32 C33 C34 C35 C36 C37 C38 C39 C40 C41 C42 C43 C44 C45 C46 C47 C48 C49 C50 C51 C52 C53 C54 C55 C56 C57 C58 C59 C60 C61 C62 C63 C64 C65 C66 C67 C68 C69 C70 C71 C72 C73 C74 C75 C76 C77 C78 C79 C80 C81 C82 C83 C84 C85 C86 C87 C88 C89 C90 C91 C92 C93 C94 C95 C96 C97 C98 C99 C100 C101 C102 C103 C104 C105 C106 C107 C108 C109 C110 C111 C112 C113 C114 C115 C116
in „Tantalkondensatoren am Spannungsregler ersetzen“ · Analoge Elektronik und Schaltungstechnik · · Platinenfotos
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Datei
2x1024x8_10.txt
repeat ; clear accumulator clr r27 ; zero < 150 kHz , 1 max clr r28 clr r29 clr r30 ldi r31 ,8 ; base of sine table (400 *2) add r28,r24 LOOP1: adc r29,r25 ; 1 adc r30,r26 ; 1 adc r31,r27 ; 1 cbr r31,4 ; 1 limit banks to 0..3 lpm r0,z ; 3 out PORTD,r0 ; 1 add r28,r24 ; 1 adc r29,r25 ; 1 adc r30,r26
in „DDS normal ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
empf.pdf
12V Output voltage for L-level Tension d’alimentation B 10 à 15V,nom.12V Tension de sortie niveau bas Brummspannung, Spitze-Spitze (IOH=+0,5mA;U B12V) ≤1V Hum voltage peak-to-peak Ausgangsspannung DC für H-Pegel 11,0V Bruit, crête à crête Output voltage for H-level Welligkeit im Übertragungsbereich
in „Siemens IR-64K > IR - Empfänger“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bat54.pdf
A1 0 0.10 0 0.004 A2 0.85 1.35 0.033 0.053 b 0.55 0.022 c 0.15 0.039 D 2.55 2.85 0.1 0.112 E 1.4 1.70 0.055 0.067 G 0.25 0.01 H 3.55 3.75 0.14 0.148 Figure 12. SOD123 footprint dimensions in mm (inches) ▯▯▯▯ ▯▯▯▯▯▯▯ ▯▯▯▯ ▯▯▯▯▯▯▯ ▯▯▯▯ ▯▯▯▯ ▯▯▯▯ ▯▯▯▯▯▯▯ ▯▯▯▯▯▯▯ ▯▯▯▯▯▯▯ 6/15 DocID5505 Rev 12 BAT54 Package
in „AEG Lavatherm IH67680IH schaltet sporadisch ab“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SDS1000X-E_UserManual_UM0101E-E03B.pdf
knob to quickly reset the trigger delay to Zero. Horizontal Scale Knob : adjust the horizontal time base. Turn clockwise to reduce the time base and turn counterclockwise to increase the time base. During the modification, waveforms of all the channels will be displayed in expanded or compressed mode and
in „Lieber SIGLENT SDS1104X-E als RIGOL DS1054Z“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SDS1000X-E_UserManual_UM0101E-E03B.pdf
knob to quickly reset the trigger delay to Zero. Horizontal Scale Knob : adjust the horizontal time base. Turn clockwise to reduce the time base and turn counterclockwise to increase the time base. During the modification, waveforms of all the channels will be displayed in expanded or compressed mode and
in „*DSO* : Bedienung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
an-937_gateDrive.pdf
the sake of simplicity. Special considerations for IGBTs are contained in INT-990) 1. GATE DRIVE VS BASE DRIVE The conventional bipolar transistor is a current-driven CURRENT PRODUCES VOLTAGE PRODUCES device. As illustrated in IN BASE CURRENT AT GATE CURRENT IN COLLECTOR IN DRAIN Figure 1(a). a current must be applied between the base + and emitter terminals to pro- C + duce a flow of current in the I + D B collector. The amount of a drive required to produce a given output depends upon CURRENT VOLTAGE the gain, but invariably a
in „Gatekapazität (FET)“ · Analoge Elektronik und Schaltungstechnik ·
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SAA4700.pdf
DESCRIPTION (peak-to-peak value) 0.5 1 1.4 V The SAA4700 is a bipolar integrated Tamb operating ambient 0 − +70 °C temperature circuit designed for use in dataline receivers and incorporates a dataline sliceranddecoder.Theslicerextracts ORDERING AND PACKAGE INFORMATION the dataline signal from the video EXTENDED
in „Uhrzeit mit Hilfe eines VPS-Decoders anzeigen“ · Mikrocontroller und Digitale Elektronik ·
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IM0017972.pdf
the ER● ● ● EC with ER GH housing and ER-AK, ER-AH or ER-AB with the ER EC fan insert. Air volume – base load 30 m³/h for continuous ope●ation ● ● ● Air volume of the base load and full load levels can be s●t ● ● Additional air volumes that can be set ● ●*** ● in base load: 20 m³/h, 40 m³/h, 60 m³/h or
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HANDBOOK_Primary_Lithium_Cells_en.pdf
of 20°C, 40°C and 70°C. CR 1/2 AA, Temperature characteristics t e A A A Conditions: 20 h/20°C: 15 kΩ, i u A A A 4 h/at various temp.: 270 kΩ b r / / R A p 1 2 C m C C A = –30°C t B = 20°C 20°C 24°C 28°C 24°C C = 75°C 40°C 50°C 50°C 47°C 70°C 80°C 84°C 77°C TAB. 11 Vibration Test o s u a t e i R V Frequency range Without changing of 5 Hz ▯ 55 Hz ▯ 500 Hz ▯ 55 Hz ▯ 5 Hz the electrical values Amplitude at frequency range: the following Li-cell
in „Knopfbatterie - Maximaler Entladestrom“ · Analoge Elektronik und Schaltungstechnik ·
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Varta_HANDBOOK_Primary_Lithium_Cells_en.pdf
of 20°C, 40°C and 70°C. CR 1/2 AA, Temperature characteristics t e A A A Conditions: 20 h/20°C: 15 kΩ, i u A A A 4 h/at various temp.: 270 kΩ b r / / R A p 1 2 C m C C A = –30°C t B = 20°C 20°C 24°C 28°C 24°C C = 75°C 40°C 50°C 50°C 47°C 70°C 80°C 84°C 77°C TAB. 11 Vibration Test o s u a t e i R V Frequency range Without changing of 5 Hz ▯ 55 Hz ▯ 500 Hz ▯ 55 Hz ▯ 5 Hz the electrical values Amplitude at frequency range: the following Li-cell
in „Wie kann man zwischen Spannungsquellen wechseln?“ · Mikrocontroller und Digitale Elektronik ·
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mXyzrssr.pdf
W49F002U AC Characteristics, continued Read Cycle Timing Parameters (VCC= 5.0V 10 ,CC= 0V, A= 0 to 70 C) ± % ° PARAMETER SYM. W49F002U-70 W49F002U-90 W49F002U-120 UNIT MIN. MAX. MIN. MAX. MIN. MAX. Read Cycle Time T RC 70 - 90 - 120 - nS Chip Enable Access Time T CE - 70 - 90 - 120 nS Address Access
in „Eprom Auslesen mit AVR“ · Mikrocontroller und Digitale Elektronik ·