-
Datei
PC_DIMMER_AT90S2313.asm
,TEMP brne PHME ldi Z_L,loc_phm add Z_L,CHANNEL st z,END ;IF FADE[CHANNEL]=0 THEN PHM[channel]:=END rjmp UPDR PHME: ldi Z_L,loc_phm add Z_L,CHANNEL ld PHM,z ;PHM:=PHM[channel] cp END,PHM ;if PHM[channel]==END[channel] UPDR
in „PWM-Signal durch 3-Phasen-AC gestört?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
008-0256-0.pdf
=15pF - 40 80 CB3LV 1.5MHz to 20MHz CL=15pF - 7 12 20.001MHz to 80MHz CL=15pF - 20 40 80.001MHz to 200MHz CL=15pF - 30 60 S E 1.5MHz to 50MHz - - 50 E Output Load CL 50.001MHz to 80MHz - - 30 pF M 80.001MHz to 200MHz - - 15 A R Output Voltage Levels P Logic '1' Level CMOS Load 90%V CC L VOH - - V A 10
in „Schaltung um/vor Oscillator“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
esp8266_hardware_design_guidelines_en.pdf
to SD_CLK (Series R: 200Ω); SPI_CLK; GPIO 6 22 SDIO_DATA_0 I/O Connects to SD_D0 (Series R: 200Ω); SPI_MSIO; GPIO 7 23 SDIO_DATA_1 I/O Connects to SD_D1 (Series R: 200Ω); SPI_MOSI; GPIO 8 Espressif 4/30 2018.12 1. ESP8266EX
in „MCP1700-3302 mit ESP8266“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
179191-da-01-en-7809_1A.pdf
G 5.08 0.200 43/47 Package mechanical data L7800 series 2 2 2 2 Ta pe & Reel D PAK-P PAK-D PAK/A-P PAK/A MECHANICAL DATA mm. inch DIM. MIN. TYP MAX. MIN. TYP. MAX. A 180 7.086 C 12.8 13.0 13.2 0.504 0.512 0.519
in „Anfängerfragen zum 7809“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
ina125.pdf
TURN-ON TIME vs TEMPERATURE 100 550 80 A500 ) ( 450 µ 60 G = 100 n ( e400 +Q g 40 u350 a C C 20 e300 e 0 l250 a S –I ±SLEEP o –20 n200 Q V t150 e –40 e V SLEEP 100mV +ISLEEP f s 100 O –60 i 50 V SLEEP 0V u –80 Q 0 –I –100 –50 SLEEP 0 50 100 150 200 250 –75 –50 –25 0 25 50 75 100 125 Time From Turn-On (µs)
in „Kraftsensor PSD-S1 in Verbindung mit INA125“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
ina125.pdf
TURN-ON TIME vs TEMPERATURE 100 550 80 A500 ) ( 450 µ 60 G = 100 n ( e400 +Q g 40 u350 a C C 20 e300 e 0 l250 a S –I ±SLEEP o –20 n200 Q V t150 e –40 e V SLEEP 100mV +ISLEEP f s 100 O –60 i 50 V SLEEP 0V u –80 Q 0 –I –100 –50 SLEEP 0 50 100 150 200 250 –75 –50 –25 0 25 50 75 100 125 Time From Turn-On (µs)
-
PDF
BAT54.pdf
Classification 94V-0 G 1.78 2.05 K · Moisture sensitivity: Level 1 per J-STD-020A M H 2.80 3.00 J L · Terminals: Solderable per MIL-STD-202, D J 0.013 0.10 Method 208 K 0.903 1.10 · Polarity: See Diagrams Below L 0.45 0.61 · Weight: 0.008 grams (approx.) · Marking Code: See Diagrams Below M 0.85 0.80
in „SMD Bauteil identifizieren“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Bourns.pdf
°C to +55 °C 2.5 ± 0.1 (1.181 ± .004) Resistance to Solder Heat .............±5 % (.098 ± .004) 2 L 3 E B HOLES Mechanical Characteristics 1.1 +0.2/-0 Mechanical Travel.........Length ±0.5 mm (DIA. 6 PLCS.0) Operating Force...............30 gf to 250 gf Center Detent Force .......20 gf to 200 gf Stop
in „Potentiometer Symbol mit 4 Anschlüssen (Kenwood GE-1100)“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
XTR105U-4-20mA-current-transmitter.pdf
. ADJUST. INPUT Input Offset Voltage V OS/(VIN MAX • 10 100µV/(800µA • 0.38Ω/°C • 200°C) • 10 6 1645 0 vs Common-Mode CMRR • ∆CM/(V ) • 10 50µV/V • 0.1V/(800µA • 0.38Ω/°C • 200°C) • 106 82 82 IN MAX Input Bias Current B REF • 106 0.025µA/800µA • 10 6 31 0 Input Offset Current OS • RRTD
in „[V] Verschiedene SMD-IC's“ · Markt ·
-
Datei
lsg10tx_v2.asm
Sendeflag outpin Equ 1 ; Ausgabepin Time_H2 Equ 0xFD ; Timer1 Wert: 65536-625 = 64911 (0xFD8F) Time_L2 Equ 0x8F ; ((1MHZ : 8 ) : 625 = 200 Hz (=5ms) ;************************************************************** ; los gehts mit dem Programm org 0 goto Init ;******************************************
in „Leitungssuchgeräte - Funktionsweise / Selbstbau“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LMH6518.pdf
nominal 0.7V PP output, the LMH6518’s minimum combined effect of these factors is summarized in Figure 2 L FS input swing is limited by the maximum signal path gain where SNR is plotted as a function of the LMH6518 FS input voltage (assuming scope bandwidth of 200 MHz) and not in- possible and vice versa:
in „Wittig(welec) DSO W20xxA Hardware“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
2N3819.pdf
Current Circuit Voltage Gain vs. Drain Current 100 300 ) Ω TA= –55_C gfsRL e AV + 1 ) R g os c 240 80 L t Assume VDD = 15 V, DS= 5 V i e V GS(off)2 V n 10 V - a R L + D n 180 G 60 e g r l o –3 V o VGS(off)–2 V - 120 – 40 i V r A D ) ( 60 20 S r –3 V 0 0 0.1 1 10 0.1 1 10 ID– Drain Current (mA) ID– Drain
in „2N3819 Rdson Frage DB“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
lt1153.pdf
Short-Circuit Protection packages. DC Motor Stall Protection Sensitive SystemPower Interrupt O U TY IP CA L PP IC I L AT 5V/1A Electronic Circuit Breaker with 1ms Trip Delay, 200ms Auto-Reset Period and 70°C Thermal Shutdown Trip Delay Time 10 ON/OFF IN VS C *R RS= 100k1 0.22 F 0.01 F 100k 0.1N CD= 0.01 F
in „TPS61175 Overccurent Protection Mode“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
smm0204.pdf
Metal Film Cylindrical Resistors Vishay Draloric DIMENSIONS DIMENSIONS [in millimeters] MODEL Dmax d* L A max A min L SMM0204 1.4 D -0.15 3.6 - 0.150.85 0.5 * d measured in the middle of the resistor D max SOLDERPADDIMENSIONS[inmillimeters] A MODEL REFLOW SOLDERING WAVE SOLDERING I b a b l a b l a SMM0204
-
PDF
LM741_LM1458.pdf
Short Circuit Current 25 mA Transient Response Unity Gain, I = 20mV, RL= 2kΩ, C ≤ 100pF Rise Time r L 0.3 µs Overshoot O.S. 5.0 % Slew Rate (Closed Loop) SR R L 2kΩ 0.5 V/µs Gain Bandwidth Product GBWP R L 12kΩ 0.9 MHz Electrical Specifications For Equipment Design, VSUPPLY = ±15V (NOTE 4) (NOTE 4) CA741C
in „OPV Versorgungsspannung sinkt“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
LoopController.pdf
1 n IC3 2 1 0 9 R5 1 p p p p p p E DRV8876R 1 1 1 C28 JP2 2 470k EN/UVLO 2 1 1 0 9 8 7 6 5 4 3 2 1 L Custom C 3 RFB GND=DGND only 4 4 3 3 3 3 3 3 3 3 3 o P P C V 1 3 V D C18 n 13 C C V VDC < 8 V + G R7 1µ 100V A L N D L H L H L H L o GNDD GND H21 +VDC P G G V I I I I I I B C CLK 14 PMODE OUT2 8 2 LT8300MPS
in „Reglermodul für mechatronische Systeme“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
ER12DX-ER12-200_110-UC-22100002-1_dt_internet.pdf
Die Anschlussklemmenbelegung ist iden- ER12DX 15x7W,10x20W 2) tisch mit dem elektromechanischen ER12-200/110 Iein _ 70A/10ms 3) Lagertemperatur: -25°C bis +70°C. Relative Luftfeuchte: Schaltrelais R12-200-. Stand-by-Verlust kein Jahresmittelwert <75%. ER12-110-: 1)Bei Lampen mit max.150W. 1Schließer +1Öffner
in „Suche Schaltrelais für Feuchträume 230V, Trigger 12V“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
AD9857.pdf
BIT IOUT DATA IN M14 INV M (4 ) (2 - 63 ) M M DAC (14-BIT) D CIC X INVERSE IOUT M SINC Q S FILTER 8 L S O K O K L C K O T C O K C C L O L T C C OUTPUT O L C C C N L DDS SO SCALE C C C I D C C CORE EC VALUE C T E C A P R K VC A A S E - R E C II D D E R L T I TUNING L S N V A I WORD 32 C I I H TIMING AND
in „Updatepin zur Aktivierung beschriebener Kontrollregister“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AD9857.pdf
BIT IOUT DATA IN M14 INV M (4 ) (2 - 63 ) M M DAC (14-BIT) D CIC X INVERSE IOUT M SINC Q S FILTER 8 L S O K O K L C K O T C O K C C L O L T C C OUTPUT O L C C C N L DDS SO SCALE C C C I D C C CORE EC VALUE C T E C A P R K VC A A S E - R E C II D D E R L T I TUNING L S N V A I WORD 32 C I I H TIMING AND
in „Mit MSP430F2013 parallele Datenübertragung programmieren“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
vish_ILQ2.pdf
tf 1.4 μs ILQ1 tf 1.4 μs Fall time V = 5 V, R = 75 , 50 % of V ILD2 tf 2.2 μs CE L PP ILQ2 tf 2.2 μs ILD5 tf 2.2 μs ILQ5 tf 2.2 μs ILD1 tPHL 0.7 μs ILQ1 tPHL 0.7 μs ILD2 t 1.2 μs Propagation H to L VCE = 5 V, L = 75 , 50 % of VPP PHL ILQ2 tPHL 1.2 μs ILD5 tPHL 1.1 μs ILQ5 t 1.1 μs
in „Optokoppler SPS 24V zu 5V“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MAX7705.pdf
RISING CURRENT IS INDEPENDENT 5 s250 CC OF RESET OUTPUT STATUS 4.660 ( A 80 V A ( NO LOAD D 4.655 E 200 N VCC= +5V O T R 60 S 4.650 S150 U R R C VCC= +4V T 4.645 U L 40 T R100 P E W S VCC= +3V R 4.640 P 20 50 VCC= +2V 4.635 0 0 VCC= +1V 4.630 -60 -20 20 60 100 -60 -20 20 60 100 -60 -20 20 60 100 TEMPERATURE
in „^Brownout-Detektor“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
hcf4093.pdf
Symbol Name and function 1, 2, 5, 6, 8, 9, 12, 13 A, B, C, D, E, F, G, H Data Inputs 3, 4, 10, 11 J, K, L, M Data Outputs 7 VSS Negative Supply Voltage 14 VDD Positive Supply Voltage 2/13 HCF4093 Pin settings Table 3. Truth table Inputs Outputs A, C, E, G B, D, F, H J, K, L, M L L H L H H H L H H H L 3/13
in „verschiedene 4093 Typen - Hysterese (NAND Gatter)“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
17PM-K.pdf
DetentTorque Mass (deg) (A) (Ohms) (mNm) (mH) (g・cm )2 (mNm) (g) 17PM-K044U 1.8 UNI-POLAR 1.2 2.3 200 2.2 37 11.0 200 17PM-K049U 1.8 UNI-POLAR 1.0 3.2 200 3.2 37 11.0 200 17PM-K064U 1.8 UNI-POLAR 0.6 8.3 200 8.1 37 11.0 200 17PM-K142U 1.8 UNI-POLAR 1.4 2.3 280 3.2 62 11.8 300 17PM-K149U 1.8 UNI-POLAR
in „Pollin NEMA17 Stepper 34Ncm für 3€ : Kann das sein?“ · Mechanik, Gehäuse, Werkzeug ·
-
PDF
LCD.pdf
I VSS— 0.3 V DD 0.3 10.0 RELIABILITY ITEM CONDITIONS CRITERIA High temperature operation 50 °C for 200 hours Low temperature operation 0 C for 200 hours High humidity storage 40 °C, 90 % RH for 240 hours High temperature storage 70 °C for 200 hours Low temperature storage -20 C for 200 hours ♦ No defect
in „Anfänger braucht Ideen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AD9834.pdf
5 D S T T N D V F C C I N D D K T N E L L K S G 4 6 P V L A Y S E E C D 7 K A . S S F R P F M CµF L C 2 . 4 3 5 1 0 9 8 0 1 1 1 1 1 3 F 4 µ 1 µ C . C 1 0 D V 8 6 4 2 D 1 1 1 1 4 D A 0 1 2 3 2 V 2 Y Y Y Y C D C µ U O A A A A3 H . 7 1 1 1 1 1 1 1 9 0 1 2 4 6 8 T 3 1 P L 8 7 W _ 1 / D S W A O N S T D G 1 2 3 4 5 6 7 8 X V 4 1 D D D C µ . 0 - - - 4 B 1 B 2 1 1 1 - K L J J J J A L A Ω Ω 10 20 31 R 1 R 1 R 5 9 0 1 2 3 4 5 6 7 8 9 0 1 1 1 - 2-2-2 - - 2-2-2 - - 3- - - E E
in „AD8934 - DDS SPI Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
DSASL0027101.pdf
Terminations – AC 4 Input Terminations – DC 2 Each connector powers 2 modules Output Total Output Power 10kW L4, L6, shelves are limited to 8kW. Output Voltage Range 12Vdc 60Vdc Output Current (A and B feeds) 200A Each feed limited to 100A Output Terminations 2 pairs Double-hole lug landings for 2 ga wires. M6
in „Problem mit 1800W Gleichrichter“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
Schrittmotor.asm
;R19(H)...R16(L) / R23(H)...R20(L) Rest in R23..R20 ;Soll - Winkel mit einer Kommastelle in R20,R21 mov R4, R20 mov R5, R21 rcall Winkeld ;Nur Berechnung nach - R6,R7 mov R20, R6 mov R21, R7 sub R20, R4 sbc R21, R5
in „Spielerei mit einem 2- und 5-Phasen-Schrittmotor“ · Projekte & Code ·
-
Bild
LCR-Meter mit Messwert 9.90
9.90 R 200Ω 2K 20K 200K 2M 20M L 20H 2H 200mH 20mH C 2nF 20nF 200nF 2uF 20uF 200uF 2mH L/C Lutron LCR-900
in „[V] Kondensatorbox mit 1% MKP Cs“ · Markt · · Fotos
-
PDF
QM30HA-H_Transistormodul_Datasheet.pdf
T=25°C I s 7 ts T=125°C T 50 B2=–1A t N 5 R –3A E 4 R 40 –5A T 3 U C 30 N 2 R H tf T C 10 0 C 20 I L W 7 L S 5 C 10 4 T=125°C 3 0 10–1 2 3 4 5 7 100 2 3 4 5 7 10 1 0 100 200 300 400 500 600 700 BASE REVERSE CURRENT –I B2(A) COLLECTOR-EMITTER VOLTAGE V CE(V) FORWARD BIAS SAFE OPERATING AREA DERATING
-
PDF
15C02CH-_CD_-.pdf
800 IC C t 600 2 .m A t e A e u 500 1.5m u 600 C 400 C C t 1.0m A o 5 °C C e 300 e 400 = 2 5 o 0.6mA l T -2 C 200 C 0.3mA 200 100 I =0 0 B 0 0 100 200 300 400 500 600 700 800 900 1000 0 0.2 0.4 0.6 0.8 1.0 1.2 Collector-to-Emitter VoltagCE -- mV IT05037 Base-to-Emitter VoltageBEV -- V IT05038 No.7353-
in „SMD-Bauteil cd 2 D4“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
FQPF9N25C-1120274.pdf
D 2.D =4.4A - C 0-100 -50 0 50 100 150 200 0-100 -50 0 50 100 150 200 h T,JunctionTemperature[ C] T, JunctionTemperature[ C] a J J n n e Figure 7. Breakdown Voltage Variation Figure 8. On-Resistance Variation l Q vs Temperature vs Temperature
in „Mosfet defekt“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
UPC1676G.pdf
FREQUENCY RETURN LOSS vs. FREQUENCY |S1|2 20 8 0 ) ) ( ) d B F d , Output ( 15 6 N , s -10 S e s o G NF u L n i i n u a 10 4 F u et -20 G i e R Input o R u 5 2 N u t n u -30 I O 0 0 -40 50 100 200 500 1000 2000 50 100 200 500 1000 2000 Frequency, f (MHz) Frequency, f (MHz) UPC1676G UPC1676G INPUT AND OUTPUT
in „ATmega8. Umbau als 2GHz Frequenz-Logger“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Frequenznormal_SCH.pdf
9 2 1 2 3 4 RESET! SDI 7 K8 3 8 1 R 72 4 LDAC! SYNC! 7 C GND SCLK 5 6 16LED- 4 15LED+ 2 D2 D 14D7 L 1 13D6 K 12D5 Y 11D4 A D3 L D4 10 P 1 9D2 I k k D1 - 21 1 5 3 S1a 1 K7 IC4 32 31 30 29 28 27 26 25 8 D µ2 2 1 0 6 5 4 3 2 7D0 C 2 PD3/OC2B P P P P P P P P PC1 E L 1 Encoder 1 T D D e L A/ 24 6 02 2 C
in „Ein minimalistisches GPS-Frquenznormal“ · Projekte & Code ·
-
PDF
Amp-30W-25-110MHz-BLF244-1.pdf
The reactance of this shunting inductance is allowed to be at least 4 times the load resistance or 200 at 25 MHz. So, LAC amounts to 1.27 H and L AB to 0.318 H. To obtain the inductance L AB a ferrite rod grade 4B1 has been used with a length of 30 mm and a diameter of 5 mm. According to ref.(3) its
in „20MHz - 200MHz Isolator bzw. Zirkulator“ · HF, Funk und Felder ·
-
PDF
PMT_handbook_v4E.pdf
settling time. Figure 8-8 shows a change in the high voltage supplied to the cathode. 0 0 ) V +0.2 -200 ( ( E G A T +0.4 -400 L L O V +0.6 -600 Y L P R +0.8 -800 P T S O T C +1.0 -1000 M P 50 (ms/div) THBV4_0808EA Figure 8-8: Settling time of a PMT module containing a power supply using a Cockcroft-Walton
in „Suche nach geeignetem OpAmp als Impedanzwandler“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
CM108_DataSheet_v1.6.pdf
46 DALRCK 11 GPIO2 23 TEST 35 DVDD 47 DASCLS 12 LEDO 24 AO 36 DVSS2 48 VOLDN 3.2 PIN-OUT DIAGRAM N L K L T 1 M P P L L C R C O I B B S L E G O A A A D G S S P O M R V D D D S U U V 37 SPDIFO 1 DVSS2 DW DVDD DR AVDD2 SK AVSS2 CS LOR MUTER LOBS CM108 PWRSEL LOL XI AVDD1 XO VSEL MODE MICIN GPIO2 CM108 VREF LEDO 25 VBIAS 13 3 1 4 L P C L R L T 1 I S I ID C T R C D S S S G D G S D M D D L A T A A A A Pin Assignments (Top View) Date: Feb/13/2007 Version: 1.6 - 6 - CM108 Integration Dual DAC, Earphone Driver, ADC, Microphone Booster
in „Beschleunigungsaufnehmer + USB Soundkarte“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Display.pdf
3 VEE +26V Power supply pin for LCD driver voltage 4 VDD +5V Logic system power supply pin 5 FLM H/L Frame signal pin 6 VSS 0V Ground 7 CL1 H/L Latch pulse input pin for display data 8 VSS 0V Ground 9 M H/L AC signal input for LCD driving waveform 10 /D.OFF L Control input pin for output deselect level
in „Grafik LCD mit AVR“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
tbf5030_c3a_3.c
////////////////// //-->> led_tick++; t3overflag = inp(ETIFR); //int. flag reg. kicksam = inp(TCNT3L); kicksam1 = inp(TCNT3H); kicksam = kicksam1 * 256 + kicksam; if(t3overflag & 0x04) //check overflow in T2 { if(kicksam < 60000) { m_speed = kicksam + 65536; motor_speed = m_speed * 200; } outp(0xc0,
in „Fehler beim Compilieren“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Cinni-Regler_V1-1-Partlist.pdf
Keramikkond. X7R SMD 100n C1206 2 Reichelt X7R-G1206 100N 0,050 € 0,050 € IC1 1 Low-Drop Sp.-Regler 5V L4941 TO220 1 Reichelt L 4941 0,960 € 0,960 € IC11 1 AVR-MicroController ATmega8L-28P DIL28-3 2 Reichelt ATMEGA 8L8 DIP 2,350 € 2,350 € IC12 1 RS232 Interface MAX232ECSE SO16 2 Reichelt MAX 232 ECSE 1,200 € 1,200 € K1 1 Solid-State-Relais S202S11 S2XXEX 1 Reichelt S202 S11 7,150 € 7,150 € 1) L1 1 Funk-Entstördrossel 45µ SFT830D 1 Reichelt FED 45µ 1,050 € 1,050 € L2 1 Funk-Entstördrossel 45µ SFT830D 1 Reichelt
in „Vorstellung Drehzahlregler mit Triac in Steckergehäuse“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
irl630.pdf
dt = 100A/µs on Forward Turn-On Time Intrinsic turn-on time is negligible (turn-on isS+LD)nated by L Notes: Repetitive rating; pulse width limited by ISD≤ 9.0A, di/dt ≤ 120A/µsDD≤ V(BR)DSS max. junction temperature. ( See fig. 11 ) T J 150°C V = 25V, starting T = 25°C, L = 4.6mH Pulse width ≤ 300µs;
in „Kontrolle der Kühlkörperberechnung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AD8418WBRMZ.pdf
Figure6.TypicalSmallSignalBandwidth(V OUT=200mVp-p) 110 20 18 100 16 ) ( 14 90 R R 12 ) R d E 10 ( T R 80 P M T 8 C O L 6 70 A O 4 T 2 60 0 50 0 –2 0 10 100 1k 10k 100k 1M 6 0 5 10 15 20 25 30 35 40 6 5 5 FREQUENC Y(Hz) 1 DIFFERENTIAL INPUT VOLTAGE
in „Spice Model AD8418“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
EM4005_DS.pdf
code CRC Extension 11 bits 64 bits + 8 trail bits 16 bits + 2 trail bits 24 bits + 3 trail bits c l National code Country l Reserved code a B m 38 bits + 4 trail bits 10 bits + 1 trail bit a 14 bits + 3 trail bits n a A D 64 bit pattern identification ISO 11’784 LSBs of each registers are sent first
in „Verzweiflung am U2270B“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
T2117_zero_switch.pdf
4768B–INDCO–10/05 T2117 Figure 5-1. Output Pulse Width 10.00 V = 230 V ~ Mains ) s 1.00 ( p t 0.10 I (mA) L 200 100 50 0.01 10 100 1000 10000 P (W) Figure 5-2. Synchronization Resistance 2000 VMains 230 V ~ 1600 Ω k 1200 (c y s R 800 400 0 0 200 400 600 800 1000 1200 1400 t (µs) p 5 4768B–INDCO–10/05 6. Supply
in „Suche Steuerung für 2kW Heizwendel (230V)“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
T2117_Atmel.pdf
4768B–INDCO–10/05 Figure 10-5. Two-point Temperature Control for a Temperature Range of 15°C to 30°C L Load/1000 W 220 kΩ VM= 230 V ~ 18 kΩ/ 1.5 W VDR 56 Ω N 8 7 6 5 220 kΩ (680 kΩ) T2117 500 kΩ 1 2 3 4 (2 MΩ) 10 nF 50 kΩ 68 µF/ (200 kΩ) 10 V NTC 12 T2117 4768B–INDCO–10/05 T2117 Figure 10-6. Two-point Temperature Control for a Temperature of 18°C to 32°C and a Hysteresis of ±0.5°C at 25°C L D1 Rsync Load/400 Ω 430 kΩ VM= 230 V~ 18 kΩ/ R 1 1.5 W 92 Ω N R 3 8 7 6 5 NTC 200 kΩ T2117 D 2 1 2 3 4 R 6 R 50 kΩ 27 kΩ 330 kΩ R 4 39 kΩ R5 R 7 C 2 8.2 kΩ 150 nF C 3 C1 33 µF/ ≥ 68 µF/ 10 V 10 V 11.
-
Datei
decodeMeterDIN.h
uint32_t MeterKWH[4]; //[_FROMGRID_0][_FROMGRID_1][_FROMGRID_2][_FEEDIN] int Electric_data[11]; //[_U_L1][_U_L2][_U_L3][_I_L1][_I_L2][_I_L3][_P_L1][_P_L2][_P_L3][_CONSUMPTION][_FREQ] String getMeterID(); String getMeter_ID(); private: }; String meterData::getMeterID(){ String ret; char dummy[8]; sprintf
in „Digitale Stromzähler auslesen und in DB speichern“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MOSFET_oder_bipolarer_Transistor__Zetex.pdf
450 FMMT617 NPN SOT23 15 3.0 12 450 FMMT717 PNP SOT23 -12 -2.5 -10 450 FMMT491 NPN SOT23 60 1.0 2 200 FMMT591 PNP SOT23 -60 -1.0 -2 200 ZXT1M322 NPN 2x2mm MLP 3-L 15 4.5 15 450 ZXTAM322 PNP 2x2mm MLP 3-L -12 -4.0 -12 450 ZXT3M322 NPN 2x2mm MLP 3-L 50 4.0 6 450 ZXTCM322 PNP 2x2mm MLP 3-L -40 -3.0 -4.0
in „mit 2,7V schalten“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
P6021_Stromwandler.pdf
cable 3.60 oz ⌠103 gm Probe and 9-foot cable 4.4 oz ⌠125 gm Termination 1.7 oz ⌠48 gm Termination L 3.47 in 88 mm W 1.10 in 28 mm H 0.86 in 22 mm Probe Body L 7.9 in 200 mm W 0.63 in 16 mm H 1.25 in 32 mm Maximum Conductor Diameter 0.141 in 3.58 mm Frequency 100 Hz 1 kHz 10 kHz 100 kHz 1 MHz 10 MHz
in „Stromzange abgleichen“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
A200_MCP1407-EP_MIC.pdf
150 °C J Storage Temperature Range TA –65 — +150 °C Package Thermal Resistances Thermal Resistance, 8L-6x5 DFN θJA — 33.2 — °C/W Typical four-layer board with vias to ground plane Thermal Resistance, 8L-PDIP θJA — 125 — °C/W Thermal Resistance, 8L-SOIC θ JA — 155 — °C/W Thermal Resistance, 5L-TO-220 θJA
in „Treiber für IRF1404 ?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
DSEI60-06A_IXY.pdf
cooling r T = T 4.7 mW T VJ VJM R thJC 0.75 K/W R (version A) 0.25 K/W thCH trr IF= 1 A; -di/dt = 200 A/µs;R = 30 V;T VJ25°C 35 50 ns IRM VR= 350 V; IF= 60 A; -diF/dt = 480 A/µs 19.0 A L < 0.05 µH;T VJ= 100°C IFAVMrating includes reverse blocking lossVJM.VR= 0.8·VRRM,duty cycle d = 0.5 Data according
in „Motor PWM Steuerung, Mosfet Problem“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
0201_xc62fp.pdf
▯ ▯ T ) ▯ ▯ T N O N O V ▯ *OQVU▯7PMUBHF ▯ : V ▯ *OQVU▯7PMUBHF ▯ : E E E E G ▯ ▯ G G ▯ ▯ G A T A T L ▯ ▯ L L ▯ ▯ L O ▯▯ 0VUQVU▯7PMUBHF ▯ V O ▯▯ 0VUQVU▯7PMUBHF ▯ V V T V T T ▯▯ ▯ U U ▯▯ ▯ U P P P P I ▯▯ ▯ U I ▯▯ ▯ U O O ▯▯ ▯ ▯▯ ▯ TIME (0.4msec/div) TIME (0.4msec/div) ̛̭̘̥̒̎̏̌̌̎▯ʢ̫̏ʣ▯ ̛̭̘̥̒̎̏̌̌̎▯ʢ̫̏ʣ▯
in „Verk. 3,3V LDO's im TO89“ · Markt ·