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208_945-15.pdf
.-Nr. 207479-01 zum Anbau der Messtaster MT 101M Id.-Nr. 206260-01 31 Messwertanzeigen Baureihe ND 200B Die Baureihe ND 200B bietet Messwertan- 239 zeigen für den Anschluss von Messtastern 1° mit sinusförmigen Ausgangssignalen mit Messgeräte- 11-µA SSegel. An die Messwertanzeige Eingänge ND 281B ist
in „Wie entsteht das Sinusförmige Signal eines Drehgebers/ Vermutung“ · Offtopic ·
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PDF
208_945-15.pdf
.-Nr. 207479-01 zum Anbau der Messtaster MT 101M Id.-Nr. 206260-01 31 Messwertanzeigen Baureihe ND 200B Die Baureihe ND 200B bietet Messwertan- 239 zeigen für den Anschluss von Messtastern 1° mit sinusförmigen Ausgangssignalen mit Messgeräte- 11-µA SSegel. An die Messwertanzeige Eingänge ND 281B ist
in „SIN/COS Encoder“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STK200.PDF
programming oper- ations at 5V. To carry out other operations, some jumpers may have to be removed—refer to the relevant section for details. A full list of the jumpers and links are given in “Jumpers and Links and their Functions” on page 4-2. STK200 Starter Kit 4-1 Hardware Description 4.1 Jumpers and
in „Absolute Verzweiflung. STK200 und PonyProg“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STK200_doc.pdf
programming oper- ations at 5V. To carry out other operations, some jumpers may have to be removed—refer to the relevant section for details. A full list of the jumpers and links are given in “Jumpers and Links and their Functions” on page 4-2. STK200 Starter Kit User Guide 4-1 Hardware Description 4.1
in „Kanda AVR Starterboard und noch keine Ahnung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP2021.pdf
serial bus baud rates up to 20 Kbaud. This device For an overview of all operational modes, please refer will translate the CMOS/TTL logic levels to LIN logic to Table 1-1. For the operational mode transition, levels, and vice versa. The device offers optimum EMI please refer to Figure 1-1. and ESD performance
in „MCP2021 -> Welcher ESD Level wird erreicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CD00277537.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 15.800 16.000 16.200 0.6220 0.6299 0.6378 D1 13.800 14.000 14.200 0.5433 0.5512 0.5591 D3 - 12.000 - - 0.4724 - E 15.800 16.000 16.200 0.6220 0.6299 0.6378 E1 13.800 14.000 14.200
in „SPI-Schnittstelle Befehl: SPI_I2S_SendData(spi2, data)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CD00161566.pdf
1 µF // 10 nF VDDA 1 µF // 10 nF VSSA /REF– (see note 1) ai14388b 1. V REF+and V REF–inputs are available only on 100-pin packages. DocID13587 Rev 16 79/105 104 Electrical characteristics STM32F103x8, STM32F103xB Figure 40. Power supply and
in „[F] STM32F103: Lastkondensatoren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Bazooka_W2DU__1.pdf
waspopularizedforamateur provided by the stubs. use by Charles Whysall, W8TV, with an article in July 1968 QST (Ref 29). It ap- Sec 18.2 Reactance pears in several editions of The ARRL Cancellation Handbook, although it has never ap- Although you’ll see later why it can’t peared in The ARRL Antenna Book. The be,
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PDF
MCP2551.pdf
Shutdown TXD Driver Control R S Slope PoResetn CANH Control 0.5 VD RXD GND CANL Reference Receiver V REF Voltage VSS © 2007 Microchip Technology Inc. DS21667E-page 1 MCP2551 NOTES: DS21667E-page 2 © 2007 Microchip Technology Inc. MCP2551 1.0 DEVICE OVERVIEW 1.4 Operating Modes The MCP2551 is a high-speed
in „CAN-BUS - Nur empfangen - Was mache ich mit dem TXD Pin am Tranceiver??“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Mega32.pdf
= 50 - 200 kHz Gain = 200x V REF= 4V, VCC= 5V 2 LSB ADC clock = 50 - 200 kHz Gain = 1x 1.6 % Gain Error Gain = 10x 1.5 % Gain = 200x 0.2 % Gain = 1x V REF= 4V, VCC= 5V 1 LSB ADC clock = 50 - 200 kHz Gain = 10x Offset Error V REF= 4V, VCC= 5V 1.5 LSB ADC clock = 50 - 200 kHz Gain = 200x V REF= 4V, VCC= 5V 4.5 LSB ADC clock = 50 - 200 kHz Clock Frequency 50 200 kHz Conversion Time 65 260 µs AVCC Analog Supply Voltage V - 0.3(
in „AVR Timer/Counter Zeit berechnen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
mitsubishi_igbt_note_e.pdf
of type CM**RL, LOSS refer for inverter part only Table2. Internal gate resistance Int. R Int. R Int. R Int. R Part number G Part number G Part number G Part number G (ȍ) (ȍ) (ȍ) (ȍ) CM400DY-12NF 0.8 CM200DY-24NF 3 CM900DU-24NF
in „E-Mobilitaet - wie sieht der Antrieb eigentlich technisch aus?“ · Fahrzeugelektronik ·
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PDF
MC14538B.PDF
Symbol Vdc Min Typ Max Unit (Note 7) Output Rise Time tTLH ns t = (1.35 ns/pF) C + 33 ns 5.0 − 100 200 TLH L TLH = (0.60 ns/pF)LC + 20 ns 10 − 50 100 TLH = (0.40 ns/pF)LC + 20 ns 15 − 40 80 Output Fall Time tTHL ns THL = (1.35 ns/pF)LC + 33 ns 5.0 − 100 200 t = (0.60 ns/pF) C + 20 ns 10 − 50 100 THL
in „Platine Bedieneinheit mit Oszi durchmessen“ · Platinen ·
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PDF
tds220-specs.pdf
increase efficiency tronix now brings the digital The Personal Oscilloscope performance of the TDS 200 to customers that need four The TDS 200 Series oscillo- full-featured channels. scopes are designed for peo- Affordable Digital Performance ple who demand the ultimate in oscilloscope value. If an No
in „[V] Tektronix TDS220 Digital Oszilloskop 100 Mhz; 1 GS/s“ · Markt ·
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PDF
LTC4054-4.2.pdf
C 4.210 RPROG = 10k 4.210 RPROG = 10k RPROG = 1.25k 4.22 4.205 4.205 )4.20 ) ) ( ( ( 4.18 A A L L4.200 L4.200 VF V V 4.16 4.195 4.195 4.14 4.12 4.190 4.190 4.10 4.185 4.185 0 100 200 300 400 500 600 700 –50 –25 0 25 50 75 100 4.0 4.5 5.0 5.5 6.0 6.5 7.0 BAT (mA) TEMPERATURE (°C) VCC (V) 4054 G07 4054
in „akku mit solar aufladen, kommt das IC: LT1734L dafür in Frage?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ADJ11005_to_ADJ24048.pdf
Reset condition) 2. 1 Form A, with test button PC board pattern (Bottom view) 5.08 5.08 1.50 dia. .200 .200 .059 dia. 15.24 1 coil latching type 2 coil latching type .600 5.08 6.3 9.0 9.0 .200 .248 .354 .354 .200 18.2 2 coil latching type only .630 .717 3.50 3.50 .138 .138 Tolerance: 0.1 .004 1.80 15.24
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PDF
Stollmann_Blue_RS_I_en.pdf
is Supply voltage U5 recommended Vcc at 4.5 5.0 5.5 Vdc variant. voltage pin Ripple frequency tbd ≥200kHz Ripple on Vcc Ripple frequency mVpp tbd <200kHz Author: jwDate of Saving: Ref: BlueRS+I-G2_HWreference_V1_1Revision: 1Page 13 of 26 Stollmann BlueRS+I/G2 E + V GmbH Hardware reference 5.3 Enviromental
in „Bluetooth RSSI auslesen > (grobe) Entfernungsmessung per B“ · Mikrocontroller und Digitale Elektronik ·
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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 ·
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PDF
Transistortester093k.pdf
8MHz Mega88 @8MHz Mega168 @8MHz PeakTech 3315 Kenn. 1E 93 07 Kenn. 1E 93 0A Kenn. 1E 94 06 WITH_AUTO_REF WITH_AUTO_REF WITH_AUTO_REF AUTOSCALE_ADC AUTOSCALE_ADC REF_KORR=17 56pF 58pF 58pF 0% 59pF 2% 57pF 2% 110pF 114pF 114pF 0% 119pF 4% 118pF 4% 220pF 225pF 225pF 0% 232pF 3% 231pF 3% 1000pF 1034pF 990pF
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PDF
cr2450.pdf
Content: < 0.3g Operating Temp: -30C to 60C Self Discharge: ~1% / year 24.50 (0.965) 3.45 (0.136) Ref. 24.30 (0.957) 3.15 (0.124) Ref. Safety: R1.25 (0.049) Ref. 22.0 (.866) 1.00 (0.039) Ref. Max Minimum (1) KEEP OUT OF REACH OF CHILDREN. Swallowing may lead to R0.75 (0.030) Ref. serious injury or death
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PDF
cr2450.pdf
Content: < 0.3g Operating Temp: -30C to 60C Self Discharge: ~1% / year 24.50 (0.965) 3.45 (0.136) Ref. 24.30 (0.957) 3.15 (0.124) Ref. Safety: R1.25 (0.049) Ref. 22.0 (.866) 1.00 (0.039) Ref. Max Minimum (1) KEEP OUT OF REACH OF CHILDREN. Swallowing may lead to R0.75 (0.030) Ref. serious injury or death
in „CR2032 in Funkschlüssel bei 3V bereits leer?“ · Fahrzeugelektronik ·
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PDF
WK_In.pdf
Fischer THT 2,54mm 2-reihig, gedrehte Kontakte 2 DIL-Schalter 10-polig Grayhill THT 10 Bananenstecker SLS200, rot Hirschmann 10 Widerstand 0R24 1% 2W ?? THT 0617 1 µC MSM85C154 Oki DIP40 piggy-back mit 27C128, gebraucht 2 µC PIC18F458 Microchip DIP40 3 µC dsPIC30F4013 Microchip DIP40 6 Zahlenschalter 137 AK2
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PDF
DSA00206265.pdf
SST55D3C041) 1.8 24 0.3 80 99 6.2 160 6 (0.61) 55.5 (SST55D4C010) (SST55D4C011) 1.8 5.1 1.4 3.6 5.4 7.3 200 6 (0.77) 66.5 (SST55D5C010) (SST55D5C011) 1.8 4 2 2 3.5 9.6 220 6 (0.94) 76.5 (SST55D5C020) (SST55D5C021) 1.8 5 1.5 3.3 5.9 9.4 220 6 (0.94) 76.5 PULL OUT TYPICAL PERFORMANCE REFER TO PAGE 30 FOR DRIVER
in „Daten zu einem Schrittmotor herausfinden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AMN1_MP_Motion_Sensor.pdf
for the slight motion detection Detectionzone* 64 zones 104 zones 24 zones 80 zones type the size is 200mm × 200mm 7.874inch × 7.874inch) 2. *Remarks1. Depending on the difference in temperature between the Vertical Vertical background and detection target and the speed at which the target moves, these
in „AMN1 Motion Sensor, woher kriegt man ihn?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AMN1_MP_Motion_Sensor.pdf
for the slight motion detection Detectionzone* 64 zones 104 zones 24 zones 80 zones type the size is 200mm × 200mm 7.874inch × 7.874inch) 2. *Remarks1. Depending on the difference in temperature between the Vertical Vertical background and detection target and the speed at which the target moves, these
in „Motion Sensor Analog oder Digital“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IR_Sensor.pdf
for the slight motion detection Detectionzone* 64 zones 104 zones 24 zones 80 zones type the size is 200mm × 200mm 7.874inch × 7.874inch) 2. *Remarks1. Depending on the difference in temperature between the Vertical Vertical background and detection target and the speed at which the target moves, these
in „Bewegungsmelder Plastikkappe direkt auf dem PIR-Sensor“ · Haus & Smart Home ·
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PDF
TSC2003.pdf
+2.7V, V = External +2.5V, I C bus frequency = 3.4MHz, PD1 = PD0 =0, unless otherwise noted. A DD REF SUPPLY CURRENT vs TEMPERATURE SUPPLY CURRENT vs V DD 300 1200 High-Speed Mode = 3.4MHz 1100 250 1000 High-Speed Mode = 3.4MHz A A 900 ( 200 ( 800 n n e e 700 u 150 u 600 C Fast Mode = 400kHz C Fast
in „Hilfe mit Touchscreen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
normal. 13 www.powerint.com Rev. F 01/09 TOP252-262 Y, E/L and M Package CONTROL (C) TOPSwitch-HX 200 MA (Negative Current Sense - ON/OFF, Current Limit Adjustment) VBG + VT EXTERNAL CURRENT LIMIT (X) VOLTAGE MONITOR (V) (Voltage Sense) 1 V V REF (Positive Current Sense - Undervoltage, Overvoltage,
in „Verzweifelt: Wie Widerstände und Kapazitäten eines Sperrwandler IC´s auslegen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
DatenblattDisplay.pdf
missing width≤0.2mm height,a≤1/4h,width≤1/2w Accept √ Font thickness different and color nonuniform Refer to limited sample, if it’s out of spec Reject √ Irregular hole ,offside,refer to drawing Accept √ IR/video/ Receive hole /Button hole Foreign material/scratch exist in hole,refer to 6.2Reject √ LENS
in „Display zeigt Fehler in Spalten auf halben Bildschirm“ · Mikrocontroller und Digitale Elektronik ·
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PDF
sim300_HD_V3.07.pdf
this board-to-board connector are described in detail in following chapters: z Power supply (please refer to Chapter 3.3) z Serial interfaces (please refer to Chapter 3.8) z Two analog audio interfaces (please refer to Chapter 3.9) z SIM interface (please refer to Chapter 3.11) Electrical and mechanical
in „GSM sim300 mit SAM7-EX256 kommunizieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
rc4558.pdf
signal is equal to the reference voltage and the maximum output of each amplifier is equal to the V REF. The differential output range is 2×V REF . Furthermore, the common mode voltage will be one half of V REF (see Equation 7). V = V - V = V ´ æ1 + R 2ö - V ´ æ R 4 öæ1 + R 2 ö DIFF OUT + OUT - IN è R 1ø REF èR 3 + R 4 øè R1 ø (3) VOUT+ = VIN (4) VOUT– = VREF – VIN (5) VDIFF= 2×V INV REF (6) V = æV OUT ++ V OUT -ö = 1 V cm ç 2 ÷ 2 REF è ø (7) 8.1.2.1 Amplifier Selection Linearity over the input range is
in „Unerwünschtes Rauschen bei Allpassfiltern“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ads8684.pdf
2015 Typical Characteristics (continued) At T A 25°C, AVDD = 5 V, DVDD = 3 V, internal reference V REF = 4.096 V, and f SAMPLE = 500 kSPS, unless otherwise noted. 0 0 ±40 ±40 B B ( ±80 ( ±80 e e t t p p m±120 m±120 A A ±160 ±160 ±200 ±200 0 50000 100000 150000 200000 250000 0 50000 100000 150000 200000
in „Problem mit der SPI Datenübertragung zwischen einem Arduino Portenta H7 und einem ADS8684 (ADC)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Read_adc.c
the input clock to the ADC. //Activate ADC with Prescaler 64 --> 8Mhz/64 = 125khz -optimum range 50-200 khz ADMUX = Mux_channel; //Select pin ADC0 using MUX _delay_us(40); //wait for 40 ms; ADMUX |= (1<<REFS0) | (1<<REFS1); //Int. REF Voltage Reference Selection, for extern ARef use ADMUX |= (0<<REFS0) | (0<<REFS1); ADMUX |= (0<<ADLAR); //The result is right adjusted } uint16_t ADC_Read(uint8_t Mux_channel) { uint8_t i; uint16_t result = 0; ADC_Init (Mux_channel); ADCSRA |= (1<<ADSC); //Start conversion while
in „2 Kanal-ADC mit uart am ATmega8“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irfh4210pbf.pdf
Details For more information on board mounting, including footprint and stencil recommendation, please refer to application note AN-1136: http://www.irf.com/technical-info/appnotes/an-1136.pdf For more information on package inspection techniques, please refer to application note AN-1154: http://www.irf.com
in „Akkubohrschrauber 10,8V von Makita und Metabo“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
2n3906.pdf
2N3906 2N3906 IC = -200 mA VCEO = -40 V h ~ 200 P = 625 mW General Purpose PNP Transistors FE1 tot Universal-PNP-Transistoren T jmax 150°C Version 2017-12-08 Typical Applications Typische Anwendungen Signal processing, Signalverarbeitung
in „LED Ansteuerung für Lazertag Projekt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD7709__3_.pdf
XTAL1 BUF 200 A AIN1 AND EMF2 AIN2 PGA REFIN(+) XTAL2 MUX1 6.25k AIN3 AIN4 REFIN(–) A A P1 RL1 AIN1 REFIN(+) DRDY P2 AD7709 RTD AIN2 R REF REFIN(–) RL2 IOUT2 SCLK DIN CONTROLLER RL3 200 A DOUT CS RCM Figure 21. Low
in „AD7709, digitaler ground fürs Quarz?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
Zahl in einen String lcd_write_s(lcd_txt); ADMUX = 0; // Eingang des ADC ist PortC0 ADMUX |= (1<<REFS1) | (1<<REFS0); // interne Referenzspannung nutzen ADCSRA = (1<<ADEN) | (1<<ADPS2) | (1<<ADPS1); // Frequenzvorteiler setzen auf 64 und ADC aktivieren (1) Displaywechsel = 0; while (1) { //Endlosschleife
in „Seltsamer Effekt bei dtostrf() und strcat()“ · Mikrocontroller und Digitale Elektronik ·
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PDF
X25_xxx_01_SP_E-1.pdf
Units Operating temperature Ta 40 105 °C Coil resistance Rb 260 290 320 Operating current m @ fz = 200 Hz 15 20 mA Magnetic saturation voltage Ubs 9 V Start Stop Frequency fss @ J L 0,2x10 kgm 2 200 Hz Maximum driving frequency fm @ J L 0,2x10 kgm 2 600 Hz Dynamic torque M 200 @ fz= 200 Hz 1.0 1.3 mNm
in „Ein Füllstandmesser auf Einperlungsbasis“ · Haus & Smart Home ·
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Datei
KTY_Temperatur.ino
Referenzspannung und geht zum einen an den Anschluss AREF und zum anderen ueber einen Widerstand KTY_REF 1000 Ohm 0,1% an den Eingang A0. Der KTY_1000 und der 1000 Ohm Widerstand bilden somit einen Spannungsteiler, der bei 25 Grad C die Spannung an AREF genau 1:2 teilt. Zum Programm: Das Programm macht
in „Temperatursensor KTY81 am ATmega328 (Arduino UNO), 1-6 Kanäle“ · Projekte & Code ·
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PDF
NT2GC64B8HC0NS.pdf
) Cumulative error accross 5cycles -188 188 -168 168 tERR(6per) Cumulative error accross 6 cycles -200 200 -177 177 ps tERR(7per) Cumulative error accross 7 cycles -209 209 -186 186 ps tERR(8per) Cumulative error accross 8 cycles -217 217 -193 193 ps tERR(9per) Cumulative error accross 9 cycles -224 224 -200 200 ps tERR(10per) Cumulative error accross 10 cycles -231 231 -205 205 ps tERR(11per) Cumulative error accross 11 cycles -237 237 -210 210 ps tERR(12per) Cumulative error accross 12 cycles -242 242
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MSO5062D_3.2.35_Bugs_140121.0.pdf
select. Change time scale to 80µsec/div, select 1M MSO5062D Page 4/8 3.2.35(140121.0) Come back to 200µs/div: 1M remains selected but should not. 5 – Sequence of pages in Utility Menu When pushing F6 in utility Menu, the sequence of pages is 1-2-3-2-1-2-3-2-1-2……is this deliberately so? 1-2-3-1-2-3 seems
in „Tekway/Hantek/Voltcraft MSO“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MOSFET.pdf
Safe Operating Area Forward Voltage e 300 a 120 LIMITED BY PACKAGE l I = 5mA V D 250 n o ) k t a n 200 r 110 r e u r n 150 o r - D t , 100 i ID r 100 D 50 , S ) R 0 ( 90 25 50 75 100 125 150 175 V -60 -40 -200 20 40 60 80 100 120 140 160 180 TC , Case Temperature (°C) T J Junction Temperature (°C) Fig
in „LeistungsMosfet Kühlfläche als Drain-Anschluss nutzen“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Konv2.c
include <utime.h> #include <windows.h> #define MAXLINELENGTH 32768 typedef struct { int aktiv; char Name[200]; char Formel[200]; } satz; double X[1024],Y[1024],Z[1024]; double Ddummy[1024]; int Geduld=0; #include "parse.h" FILE *outfile; satz *feld; int Inspalten=8,spalten,Minzeit=0,Intervall=0,Startzeit=0
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Datei
Konv2.c
include <utime.h> #include <windows.h> #define MAXLINELENGTH 32768 typedef struct { int aktiv; char Name[200]; char Formel[200]; } satz; double X[1024],Y[1024],Z[1024]; double Ddummy[1024]; int Geduld=0; #include "parse.h" FILE *outfile; satz *feld; int Inspalten=8,spalten,Minzeit=0,Intervall=0,Startzeit=0
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PDF
Service_5962-8119.pdf
ref Q314 Heat Sink All 0340-0950 1 ref Q314 Insulator All 2200-0143 1 ref Q314 Mach Screw 4-40 All 1901-0987 1 ref Q314 Diode (D499) 62 Replaceable Parts - 5 Designator Model Part Number Qty Description
in „Wachsende Unterstützung der Selbstreparatur“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TC9400-TC9402.pdf
8,2k C1 A 15 V 2 MΩ 20 kΩ 10n 7 Skalierung 0,2 R1 VREF C2 1 10n fA= IE–––––––––– RIN R4 U REF· CREF 1M 2k 3 IIN U REF= U Pin2– UPin7 U E CREF 0…10V CINT 180p 5 820p VREFOUT UE– U Pin2 U B U Pin2 11 IE= ––––––––– + –––––––––––––– 12 THDET RIN 0,9·R 1 0,2·R 1 AMPOUT IC1 IBIAS VSS OUTCOM TC9400
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PDF
sensata_1nt_series_fixed_temperature_thermostats_d-1760342.pdf
. (.937) 23.8 (.937) (1.250) Ref. Ref. ø3.72 Ref. 3.72 43.28 (1.704) Max. 18.4 (.147) (.724) (.146) Ref. 15.90 (.724) Max. Ref. Max. 18.4 (.724) Max. 3.81(.150) (.626) Max. Max. 0.38 (.150) 0.38 0.38 3.51 (.015) Ref. Max. (.015) Ref
in „Thermoschalter Thermomix 3300 Temperatur?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LP2950.pdf
14 mA max Dropout V = (V NOM − 0.5)V 110 170 110 170 110 170 µA max in O Ground Current IL= 100µA 200 200 200 µA max Current Limit Vout= 0 160 200 160 200 160 200 mA max 220 220 220 mA max Thermal Regulation (Note 13) 0.05 0.2 0.05 0.2 0.05 0.2 %/W max Output Noise, CL= 1µF (5V Only) 430 430 430 µV rms 10 Hz to 100 kHz CL= 200µF 160 160 160 µV rms C = 3.3µF L (Bypass = 0.01µF 100 100 100 µV rms Pins 7 to 1 (LP2951) 8-pin Versions Only LP2951 LP2951AC-XX LP2951C-XX Reference 1.235 1.25 1.235 1.25 1.235 1.26 V max Voltage 1.26
in „Suche stromsparenden Spannungsregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ina105.pdf
systems. ® INA105 2 PIN CONFIGURATIONS Top View TO-99 Top View DIP/SOIC Tab No Internal Connection 8 Ref V+ 1 7 Ref 1 8 No Internal Connection (1) –In 2 7 V+ –In 2 6 Output 3 Output +In 6 V– 4 5 Sense 3 5 +In Sense 4 INA105AM INA105BM V– NOTE:(1)Performancegradeidentifierboxforsmalloutlinesurfacemount.
in „Spannungs / Strom Wandler mit Offset versehen“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
SPI_ADS.c
ADS_ADCON); // command write register data rate spi_1256 (0); // Anzahl Bytes -1 , also 0 if (((U_range==U_200V) || (U_range == U_200mV)) && Kanal==1) spi_1256 (0b00100100); // PGA=16 Daten zu schreiben else spi_1256 (0b00100001); // PGA=2 Daten zu schreiben Delay10us (1); spi_1256 (ADS_SYNC); // Datenblatt
in „Kommunikation mit AD-Wandler ADS1255“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SCH_ESP32-Ethernet-Kit_A_V1.2_20200528.pdf
) ) GND RXER/INTR_32 R22 25MHz Crystal(Y1) for RMII. VDD33_PHY REF_CLK_50M_180 to 50M_CLKI, X1 to ground. 10K(5%)(NC) SN74AUP1T14(NC) CRS/LEDMOD COL/RMII 0.1uF/16V(10%)(NC) TX_EN O I TXER/FXSD RESET_N GND C4 5 1 TXER/FXSD TXD[1] X X AVDD33 VCC NC 2 REF_CLK_50M TXD[
in „Arduino Library für Netzwerkchip W5500?“ · Mikrocontroller und Digitale Elektronik ·