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PDF
CAT4104.pdf
770 W 6 IQSHDN Shutdown Current VEN = 0 V 1 mA EN/PWM Pin REN/PWM − Internal pull−down resistance 200 kW VHI − Logic High Level 1.3 V VLO − Logic Low Level 0.4 V TSD Thermal Shutdown 150 °C THYS Thermal Hysteresis 20 °C ILED RSET RSET to LED Current gain ratio 25 mA LED current 100 VUVLO Undervoltage
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PDF
cassegrain01.pdf
Fc (mm) 180,0000 34,6314 83,0702 -100,0000 19,5658 429,6068 131,3 -475 967,0202 58,33 -475 Ds Sub ref dia (mm) 200,0000 34,6314 83,0702 -92,0000 17,0443 429,6068 117,84 -450 967,0202 52,35 -450 Dm Dia main Dish (mm) 1210,0000 34,6314 83,0702 -84,0000 14,6197 429,6068 105,11 -425 967,0202 46,7 -425 Fm
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st7036.pdf
/24 ST7036 ¾ IS[2:1]: instruction table select When IS[2:1]=(0,0): normal instruction be selected(refer instruction table 0) When IS[2:1]=(0,1):extension instruction be selected(refer instruction table 1 ) When IS[2:1]=(1,0):extension instruction be selected(refer instruction table 2 ) When IS[2:1]=(
in „DOG-M-Display/ST7036 Initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LCD-Controller_ST7036.pdf
/24 ST7036 ¾ IS[2:1]: instruction table select When IS[2:1]=(0,0): normal instruction be selected(refer instruction table 0) When IS[2:1]=(0,1):extension instruction be selected(refer instruction table 1 ) When IS[2:1]=(1,0):extension instruction be selected(refer instruction table 2 ) When IS[2:1]=(
in „DOG-M mit ATmega8 in Assembler ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
/24 ST7036 ¾ IS[2:1]: instruction table select When IS[2:1]=(0,0): normal instruction be selected(refer instruction table 0) When IS[2:1]=(0,1):extension instruction be selected(refer instruction table 1 ) When IS[2:1]=(1,0):extension instruction be selected(refer instruction table 2 ) When IS[2:1]=(
in „Initialisierungsfolge fuer EA DOGM 163 SPI 3.3V“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
/24 ST7036 ¾ IS[2:1]: instruction table select When IS[2:1]=(0,0): normal instruction be selected(refer instruction table 0) When IS[2:1]=(0,1):extension instruction be selected(refer instruction table 1 ) When IS[2:1]=(1,0):extension instruction be selected(refer instruction table 2 ) When IS[2:1]=(
in „DOG-M Display über SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
st7036.pdf
/24 ST7036 ¾ IS[2:1]: instruction table select When IS[2:1]=(0,0): normal instruction be selected(refer instruction table 0) When IS[2:1]=(0,1):extension instruction be selected(refer instruction table 1 ) When IS[2:1]=(1,0):extension instruction be selected(refer instruction table 2 ) When IS[2:1]=(
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PDF
st7036.pdf
/24 ST7036 ¾ IS[2:1]: instruction table select When IS[2:1]=(0,0): normal instruction be selected(refer instruction table 0) When IS[2:1]=(0,1):extension instruction be selected(refer instruction table 1 ) When IS[2:1]=(1,0):extension instruction be selected(refer instruction table 2 ) When IS[2:1]=(
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PDF
st7036.pdf
/24 ST7036 ¾ IS[2:1]: instruction table select When IS[2:1]=(0,0): normal instruction be selected(refer instruction table 0) When IS[2:1]=(0,1):extension instruction be selected(refer instruction table 1 ) When IS[2:1]=(1,0):extension instruction be selected(refer instruction table 2 ) When IS[2:1]=(
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PDF
st7036.pdf
/24 ST7036 ¾ IS[2:1]: instruction table select When IS[2:1]=(0,0): normal instruction be selected(refer instruction table 0) When IS[2:1]=(0,1):extension instruction be selected(refer instruction table 1 ) When IS[2:1]=(1,0):extension instruction be selected(refer instruction table 2 ) When IS[2:1]=(
in „STK500 und LCD (ST7036) Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST7036.pdf
/24 ST7036 ¾ IS[2:1]: instruction table select When IS[2:1]=(0,0): normal instruction be selected(refer instruction table 0) When IS[2:1]=(0,1):extension instruction be selected(refer instruction table 1 ) When IS[2:1]=(1,0):extension instruction be selected(refer instruction table 2 ) When IS[2:1]=(
in „i2C TWI Modus - ST7036 - DOGM DOGM162 DOGM081 EA DOGM163, ist das Möglich ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
VisiLogic_-_Communications.pdf
UniCAN network. Each networked controller receives the values into system operands: the MB into SB 200, the MI into SI 200, and ID # of the source controller into SI 201. Note SB 200, SI 200 and SI 201 must be initialized by the user. A new Broadcast overwrites any previous values. The values remain
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PDF
DA_Mean-Well-GSM90B24-P1M-Tischnetzteil-Festspannung-24-V-DC-3.75A-90W.pdf
RATED POWER (max.) 80W 90W 90W 90W 90W OUTPUT RIPPLE & NOISE(max.)Note.3120mVp-p 150mVp-p 180mVp-p 200mVp-p 240mVp-p VOLTAGE TOLERANCE Note.4±5.0% ±5.0% ±4.0% ±3.0% ±2.5% LINE REGULATION Note.5±1.0% ±1.0% ±1.0% ±1.0% ±1.0% LOAD REGULATION ±5.0% ±5.0% ±4.0% ±3.0% ±2.5% SETUP,RISE TIME Note.61000ms, 50ms
in „Welcher IC ist das? SOT23-6 Marking: 368L 4? 945“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RPI-PICO-R3-PUBLIC-SCHEMATIC.pdf
M1005 LED ADC_AVDD external 3.0V shunt ref 63mW (e.g. LM4040) TP-1221U-K9K5325 C10 C11 X X C12 C14 C13 R11 R4 100n 100n P M 2u2 2u2 2u2 1K NO-FIT M0603 M0603 1 2 0 L 3 _ _ M1005 M1005 M1005 For lower offset (at expense Disable Flash boot 63mW
in „PiPico externe Spannungsversorgung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XCL213-XCL214.pdf
249 3.00 2.940 3.000 3.060 5.00 140 200 260 1.60 1.568 1.600 1.632 2.70 138 198 257 3.05 2.989 3.050 3.111 5.08 140 200 260 1.65 1.617 1.650 1.683 2.75 140 200 260 3.10 3.038 3.100 3.162 5.17 140 200 260 1.70 1.666 1.700 1.734 2.83 140 200 260 3.15 3.087 3.150 3.213 5.25 140 200 260 1.75 1.715 1.750 1.785 2.92 140 200 260 3.20 3.136 3.200 3.264 5.33 140 200 260 1.80 1.764 1.800 1.836 3.00 140 200 260 3.25 3.185 3.250 3.315 5.42 140 200 260 1.85 1.813 1.850 1.887 3.08 140 200
in „1.5A regulator Built-in Step-Down micro DC/DC Converters“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F070CBT6.pdf
0.0059 A2 1.350 1.400 1.450 0.0531 0.0551 0.0571 b 0.170 0.220 0.270 0.0067 0.0087 0.0106 c 0.090 0.200 0.0035 - 0.0079 D 11.800 12.000 12.200 0.4646 0.4724 0.4803 D1 9.800 10.000 10.200 0.3858 0.3937 0.4016 D3 - 7.500 - - 0.2953 - E 11.800 12.000 12.200 0.4646 0.4724 0.4803 E1 9.800 10.000 10.200 0.3858
in „Poti / Buffer / ADC / STM32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Gardasoft-Manual-PP16xx-v017.pdf
indicate amps or milliamps. The default is amps. For example: Parameter Meaning 0.1ms 0.1milliseconds 200 200 microseconds 0.1s 0.1 seconds 100ma 100 milliamps 2.45A 2.45 amps 2.3 2300 milliamps or 2.3 amps Note: The parameters used are in 'USA/UK' format so that a half is written '0.5' and not '0,5'. 11.3
in „Konstantstromquelle, LEDs“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PMT_handbook_v4E.pdf
Photocathodes 35 Transmission mode photocathodes ) 1800 / 600 ANTUM 50% A 400 QFFIIENCY ( 441K 440K E 25% T 200 V 100 444K % T 80 400S 10 S 60 5% N 40 500U S 500S 500K 2.% T 20 A 10 400U 502K 1% D 8 A 6 400K 0.% Typical spectral re200Mse characteristics of semiconductor crystal photocathodes D 2 200S 0.5% O H
in „Suche nach geeignetem OpAmp als Impedanzwandler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TS80C51U2_ATMELCorporation.pdf
interrupt Priority bit 3 PT1 Refer to PT1H for priority level. External interrupt 1 Priority bit 2 PX1 Refer to PX1H for priority level. 1 PT0 TimRefer to PT0H for priority level.it 0 PX0 External interrupt 0 Priority bit Refer to PX0H
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PDF
lt3502.pdf
5V) Continuous Mode Waveform Discontinuous Mode Waveform OUT 8 7 V V SW SW 5V/DIV 6 5V/DIV 5 ) IL ( 200mA/DIV I 4 L V 200mA/DIV 3 VOUT V 20mV/DIV 20mV/DIV 2 3502 G23 3502 G24 1 VIN= 12V 200ns/DIV VIN= 12V 200ns/DIV VOUT = 3.3V VOUT = 3.3V L = 6.8μH L = 6.8μH 0 COUT = 10μF COUT = 10μF 0.001 0.01 0.1 1
in „Bitte um Kontrolle des Layout - LT3502A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_Pegelwandler_TXS0108E.pdf
driving 186 745 147 603 118 519 84 407 (low-to-high output) t Enable time OE-to-A or B Push-pull driving 200 200 200 200 ns en tdis Disable time OE-to-A or B Push-pull driving 28.1 22 20.1 19.6 ns Push-pull driving 3.5 13.1 3 9.8 3.1 9 3.2 8.3 trA Input rise time A-port rise time ns Open-drain driving 147
in „Wozu Pull-Down Widerstand?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Handbuch.pdf
RTS_N signals, see chapter 4.3 for details. Default protocol for host communication is NMEA 4800 baud, ref (2). Protocol is switchable to SiRF binary OSP (One Socket Protocol, ref (3) by NMEA protocol command $PSRF100. Default NMEA message configuration: $GPGGA, $GPGSA and $GPRMC rate every second (in this
in „Schlampiges GPS-Receiver Datenblatt (Maestro 2035-H)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irl1404.pdf
Leakage Current µA ––– ––– 250 VDS = 32V, GS = 0V, J = 150°C Gate-to-Source Forward Leakage ––– ––– 200 VGS = 20V GSS nA Gate-to-Source Reverse Leakage ––– ––– -200 VGS = -20V Q g Total Gate Charge ––– ––– 140 D = 95A Q gs Gate-to-Source Charge ––– ––– 48 nC VDS = 32V Q gd Gate-to-Drain ("Miller") Charge
in „Geiger Counter Sparkfun“ · Mikrocontroller und Digitale Elektronik ·
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Datei
MasterRollladen_V2.c
Sekunde TIMSK |= (1<<TOIE0); // Aktiviere Timer Overflow Interrupt. //Konfiguriere ADC0 ADMUX |= (1<<REFS0); // REFS0 = Vcc am AREF Pin, MUX0-3 = 0 ADC0 aktiv ADCSRA |= (1<<ADEN) |(1<<ADSC) |(1<<ADFR) |(1<<ADPS0) |(1<<ADPS1) |(1<<ADPS2); // ADEN = Enable ADC, ADSC = Starte Wandler, ADFR = ADC Free Running
in „Hilfe bei Programm-Bug mit AtMega8 benötigt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Panasonic_S_series.pdf
Endurance Capacitancechange D8( φ.3 ҂.7) 2000 hours ±25 % <D( φ.3) Miniature 1000 hours ±30 % tan δ <200 % of initial specified value DCleakegecurrent < initial specified value Shelf Life After storage for 1000 hours at +85 °C±2 °C with no voltage applied and then being stabilized at +20 °C, capacitors shall
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PDF
XC6206.pdf
460 760 700 960 1.3 40 400 650 180 60 1.4 350 590 580 860 1.5 300 510 1.6 250 450 450 810 155 1.7 45 200 410 1.8 150 390 80 1.9 780 2.0 130 2.1 2.2 50 120 2.3 350 2.4 100 370 2.5 710 2.6 2.7 55 150 2.8 2.9 3.0 3.1 3.2 60 3.3 3.4 75 350 250 680 200 3.5 3.6 100 3.7 65 3.8 3.9 4.0 4.1 4.2 70 4.3 4.4 4.5 60 320 200 630 250 4.6 4.7 75 4.8 4.9 5.0 80 50 290 175 600 5/15 XC6206 Series ■TEST CIRCUITS Circuit ① VIN V OUT OPEN A V SS Circuit ② V IN V OUT A V 1μF 1μF V (ceramic) V SS (ceramic) ■NOTES ON USE 1. For temporary
in „Welches IC ist das ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
JP7-T-family.pdf
without permission. Page 16 GPS-RECEIVER JP7-T VERSION 1.02 Example: $PSRF107,0,200,200*3D The receiver will be set in Trickle Power mode where 20% of time it will spend for tracking and the tracking period will takes 200 msec. Table 1: Example of Trickle Power Mode Control. Note:
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PDF
P6021_Stromwandler.pdf
, f=120 Hz % Droop = 200 (p) T f = 200 (p) (100*10 ) (120) = 0.075% 6 P6021 Instruction Manual Service Information Warranted Characteristics This section lists the various warranted characteristics that describe the P6021 Current
in „Stromzange abgleichen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PCA8574-rev03.pdf
SO16 package SOT162-1 Hx Gx P2 (0.125) (0.125) Hy Gy By Ay C D2 (4x) P1 D1 Generic footprint pattern Refer to the package outline drawing for actual layout solder land occupied area DIMENSIONS in mm P1 P2 Ay By C D1 D2 Gx Gy Hx Hy 1.270 1.320 11.200 6.400 2.400 0.700 0.800 10.040 8.600 11.900 11.450 sot162
in „NXP PCA8574 hat Phänomen mit 2 Adressen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
schematics.pdf
CT4 10BQ040 2 D1 DC 6 220UF SMB 2 20PFO DRVH5 37 MMBD4148W D2E 1 1A EI Voltage Selection Jumper C123 200MA DD 5 21PWRGD BST5 38 0.1UF SOT323 603 4G SW5 36 SA 1 6SS5 2 7 35 SB CLSET5 DRVL5 3 31 R111 SC INTVCC1 10 SI4820DY 22 11 0603 D2 SOIC8 C126 CPOR INTVCC2 C122 MMBD4148W 33000PF R114 8 4.7UF 200MA 0603 200K REF 0805 SOT323 U18 0603 12 18 8 C131 C132 SYNC CS3 DA 68000PF 22000PF 9 27 7 0603 0603 AGND DRVH3 DB C138 C115 32 26 6 10UF 10UF PGND2 BST3 DC 1210 1210 28 5 SW3 C124 DD LABEL "3.3V" 10 0.1UF 4 C129
in „Versorgung“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
c.txt
main(void) { DDRB=0xFF; // PORTB als Ausgabeport DDRD=0xFF; // PORDD als Ausgabeport ADMUX |= (1<<REFS0) | (1<<REFS1); // interne Referenz: 2.56 Volt ADCSRA = (1<<ADPS1) | (1<<ADPS2); // Frequenzvorteiler 64 ADCSRA = (1<<ADIE); ADCSRA = (1<<ADEN); // ADEN = ADC aktivieren ADCSRA |= (1<<ADSC); // eine
in „AD-Wandler Umrechnung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
pt1000_rp2040.ino
define UEBERLAUF 9999 // Fehler bei offenem Eingang #define R_PT0 1000.0 // bei 0 Grad C #define R_REF 1000.0 // ext. Widerstand mit 0,1% #define R_ZULEITUNG 0 // bei laengeren Leitungen unbedingt anpassen #define PT_FAKTOR 3.85 // schon mit 1000.0 skaliert int lese_PT1000(int ad_eingang) // liest den
in „Problem bei Temp-Messung Rasp. Pi Pico & Pt1000“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
adwandler.pdf
) durch den angegebenen Teilungsfaktor geteilt. Die Wandler-Taktfrequenz sollte zwischen 50kHz und 200kHz liegen. Bei einer Controller-Taktfrequenz von 8 MHz wählt man einen Teilungsfaktor von 64. Die resultierende Wandler-Taktfrequenz ist dann f=8MHz/64 = 125kHz. Das ADC Multiplexer Selection Register
in „ADC initialisieren, Grundlagen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS100728A_IXTN660N04T4_-1022876.pdf
40ºC 700 700 600 600 25ºC s e500 n500 e e p e 150ºC m400 S400 - - D f I300 g300 TJ= 150ºC 25ºC - 40ºC 200 200 100 100 0 0 3.0 3.5 4.0 4.5 5.0 5.5 6.0 6.5 7.0 7.5 8.0 0 100 200 300 400 500 600 700 800 VGS - Volts ID- Amperes Fig. 9. Forward Voltage Drop of Intrinsic Diode Fig. 10. Gate Charge 1000 10 9 VDS
in „Suche Power-MosFet für etwa 600A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ina139.pdf
recommends using the current source method shown on the right hand side of Figure 14 . With this method, a REF200 constant current source is used to generate a constant output offset. Using this method. the gain is determined by R and the offset is L determined by the product of the value of the current source and R . L 3 4 V 3 4 V+ R INA139 R INA139 REF200 1 100 µA VO VO 1 1 R R 2 L Copyright © 2017, Texas Instruments Incorporated (1) Gain set by R || R . Output offset = (V ) R / (R + R ) using resistor divider. 1 2 R 2 1 2 (2) Gain set by RL. Output
in „DC-Strom messen 0-1A Ausgang 0-10V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MP6528.pdf
IOH V O 3.3V 1 µA Protection Circuit UVLO rising threshold VIN_RISE 3.3 3.9 4.5 V UVLO hysteresis V 200 mV IN_HYS VREG rising threshold V REG_RISE 6.8 7.6 8.4 V VREG hysteresis V 0.54 1 V REG_HYS VREG start-up delay REG 700 µs Short-Circuit Threshold V OC= 1V, TJ=25°C 0.8 1 1.2 V VSC Accuracy (MOSFET
in „H-Brücke 48V, PWM 50kHz, Möglichkeit 100% Duty Cycle on“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TOP222Y.pdf
many possible TOPSwitch vary from 100 V to 380 V DC which corresponds to the full implementations. Refer to the Data Book and Design Guide universal AC input range. The TOP221 is packaged in an 8 pin for additional examples. power DIP package. 4 W Standby Supply using 8 Lead PDIP The output voltage (5
in „Voltcraft SPS-1540 PFC defekt - Reparaturhilfe benötigt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
F10392.pdf
x,y coordinates rank code) - X 13Forward Voltage For more information about binning and labeling, refer to the Application Note -1 SEOUL SEMICONDUCTOR CO., LTD. 148-29, Kasan-Dong, Keumchun-Gu, Seoul, Korea TEL : 82-2-3281-6269 FAX : 82-2-857-5430 Rev07 – 2006/05 3 1. Outline Dimensions Slug (+) R G
in „LED dynamic resistance“ · Mikrocontroller und Digitale Elektronik ·
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PDF
F10392.pdf
x,y coordinates rank code) - X 13Forward Voltage For more information about binning and labeling, refer to the Application Note -1 SEOUL SEMICONDUCTOR CO., LTD. 148-29, Kasan-Dong, Keumchun-Gu, Seoul, Korea TEL : 82-2-3281-6269 FAX : 82-2-857-5430 Rev07 – 2006/05 3 1. Outline Dimensions Slug (+) R G
in „[V] 6 X Power RGB LED 3W Seoul Semiconductor F10392 Star“ · Markt ·
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PDF
tcmt1100.pdf
AGENCY CTR (%) CERTIFIED/ PACKAGE 5 mA 10 mA 5 mA UL, cUL, FIMKO, 50 to 600 40 to 80 63 to 125 100 to 200 160 to 320 50 to 150 100 to 3080 to 160 130 to 260 200 to 400 BSI, VDE TCMT1107, SSOP-4 TCMT1100 TCMT1101 TCMT1102 TCMT1103 TCMT1104 TCMT1105 TCMT1106 TCMT1107T3 (1)CMT1108 TCMT1109 Notes • Available
in „ULN2803 mit 24V ansteuern“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
139cll.pdf
Designs 139 CLL www.vishay.com Vishay BCcomponents 280 280 TPad TPad (°C)60 (°C) 260 240 240 220 220 200 200 180 180 160 160 140 140 120 120 100 100 80 80 0 50 100 150 200 t (s)50 0 50 100 150 200 t (s)250 Fig. 4 - Maximum temperature load during infrared Fig. 5 - Maximum temperature load during vapor reflow soldering phase reflow soldering 280 TPad (°C)260 240 220 200 180 160 140 120 100 80 0 50 100 150 200 250 t (s) Fig. 6 - Maximum temperature load during (double-) wave soldering ORDERING EXAMPLE ELECTRICAL DATA Electrolytic capacitor 139 series SYMBOL DESCRIPTION
in „Tantal vs Kerko“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
S216S02.pdf
AC50Hz S116S02 − − 10 TransferTurn-on time ton T (rms)=2A, Resistance loadF I =20mA ms charac- VD(rms)=200V, AC50Hz teristics S216S02 − − 10 T (rms)=2A, Resistance loadF I =20mA VD(rms)=100V, AC50Hz S116S02 − − 10 Turn-off time t T (rms)=2A, Resistance loadF I =20mA ms off VD(rms)=200V, AC50Hz S216S02 −
in „Spülmaschine einschalten - womit?!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TargetBoardSchematic.pdf
HEADER 7 2 PE1 PE0 2 1 PMOD1 2 27 28 K K 2 PD7 29 30 PD6 2 GROUND-E2OB 12 6 2 PD5 31 32 PD4 2 R34 200R 11 5 R36 200R 2 PD3 33 34 PD2 2 2 PMOD1-IO1 R37 200R 10 4 R38 200R PMOD1-SCK 2 2 PD1 35 36 PD0 2 2 PMOD1-IO0 R39 200R 9 3 R40 200R PMOD1-MISO 2 2 P47 37 38 P46 2 2 PMOD1-RST 8 2 PMOD1-MOSI 2 2 P45 39 40 P44 2 2 PMOD1-IRQ R41 200R 7 1 R42 200R PMOD1-CS 2 2 P43 41 42 P42 2 2 P41 43 44 PJ7 2 PMOD_PTH_A(DNF) 2 P40 45 46 PJ6 2 2 AVCC0 47 48 P07 2 2 AVSS0 P05 2 49 50 HEADER 25X2(DNF) GROUND 5V 3V3 VCC GROUND JP1 3PIN_PTH(DNF) 3 1
in „RX65N BootMode funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S216S02F_-_SSR.pdf
AC50Hz S116S02 − − 10 TransferTurn-on time ton T (rms)=2A, Resistance loadF I =20mA ms charac- VD(rms)=200V, AC50Hz teristics S216S02 − − 10 T (rms)=2A, Resistance loadF I =20mA VD(rms)=100V, AC50Hz S116S02 − − 10 Turn-off time t T (rms)=2A, Resistance loadF I =20mA ms off VD(rms)=200V, AC50Hz S216S02 −
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PDF
LT1170.pdf
at Feedback Pin 1.224 1.244 1.264 V V = 0.8V 1.214 1.244 1.274 V C IB Feedback Input Current VFB V REF 350 750 nA 1100 nA gm Error Amplifier C = ±25 A 3000 4400 6000 mho Transconductance 2400 7000 mho Error Amplifier Source or VC= 1.5V 150 200 350 A Sink Current 120 400 A Error Amplifier Clamp Hi Clamp
in „Bei Schaltregler nur Minimum- und Maximum-PowerSwitchStrom angegeben“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
TDA1543.htm
darkgreen"><b>Pro:</b></font> </li><li>reichlich: <b>16 bit</b> Auflösung </li><li>mittelschnell: <b>200 kHz</b> maximale Abtastrate </li><li>klein: <b>8poliges DIL-Gehäuse</b> </li><li>bequem: <b>Betriebsspannung 5 V</b> (3..8 V) </li><li>seriell: Drei-Draht-Schnittstelle (für synchron-serielle Schnittstellen
in „PLL per Software“ · Mikrocontroller und Digitale Elektronik ·
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PDF
200A.pdf
1 MD 200A High voltage differential probe User Manua l 601-265B MD 200A High voltage differential probe User Manua l MD 200A high voltage differential probe contentS 1 Safety terms and symbols 5 2 Safety 6 3
in „hochspannugnstastkopf welcher eingangswiderstand am oszi“ · HF, Funk und Felder ·
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PDF
MAX100.pdf
C 4 T 4 E E E 3 F 3 E 2 2 CLK = 250MHz, AIN= 10.4MHz, 1 VIN 95% FS VIN= 95% FS 1 0 0 0 50 100 150 200 250 300 0 50 100 150 200 250 300 AIN (MHz) fCLK(MHz) EFFECTIVE BITS EFFECTIVE BITS vs. ANALOG INPUT FREQUENCY vs. ANALOG INPUT FREQUENCY 8 1 3 1 8 1 M M 7 7 6 6 T T B 5 B 5 V E T 4 T 4 E E F 3 F 3 E
in „Oszilloskop mit AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DM00109015.pdf
operation, rail-to-rail input and output, DFN8 2x2 MiniSO-8 and excellent precision (V lower than 200 µV at io 25 °C). These low power op amps benefit from Features STMicroelectronics 5 V CMOS technology and Low offset voltage: 200 µV max. offer an excellent speed/power consumption ratio (150 kHz
in „Frage zu OpAmp dual supply“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HAL300_Differential_Hall-Effect_Sensor_IC_2ds-1109203.pdf
Time 3 – 45 400 ns VDD = 12 V, RL = 820 Ω, CL = 20 pF RthJSB Thermal Resistance Junction to – 150 200 K/W Fiberglass Substrate case Substrate Backside 30 mm x 10 mm x 1.5 mm, SOT89B-2 pad size see Fig. 3–6 RthJS Thermal Resistance – 150 200 K/W case Junction to Soldering Point TO92UA-3, TO92UA-4 1.80
in „Hall-Effekt Sensor Aufschrift decodieren“ · Mikrocontroller und Digitale Elektronik ·