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Gehaltshöhe Techniker
@ Thomas W. Wenn ein Jahr Gesellenerfahrung Vorrausetzung ist, ist das auch kein Problem. Momentan habe ich 6 Monate Gesellenerfahrung. Und da ich erst in einem Jahr zur Schule gehe werde ich so 1,5 Jahre Gesellenerfahrung
Bruttoverdienst liegt jetzt bei 72k chf (etwa 50k €) + Firmenwagen und eine Menge Späsen.Das sind vertraglich 5500 chf (13x) und ich bin 23 Jahre alt, und hier geht´s streng nach dem Alter... Technikerausbildung starte ich im Moment auch (zahlt 100% die Firma). Also als Techniker in Deutschland sollten 3000 Brutto
Ausbildung, Studium & Beruf ·Robert · ·368 Antworten
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PDF
avr443.pdf
phase BLDC motor has three coils (see Figure 1-1). Usually the three coils are referred to as U, V and W. In many motors the fundamental number of coils are replicated to have smaller rotation steps and smaller torque ripple. The rotor in a BLDC motor consists of an even number of permanent magnets. The
in „Verstädnisfrage zu einer MOSFET Schaltung“ · Mikrocontroller und Digitale Elektronik ·
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U2100B_Data_sheet.pdf
temperature range Tamb 0 to 100 °C 5. Thermal Resistance Parameters Symbol Value Unit DIP8 RthJA 110 K/W Junction ambient SO8 on PC board RthJA 220 K/W SO8 on ceramic R 140 K/W thJA 9 4769C–INDCO–07/05 6. Electrical Characteristics VS= –18V, T amb = 25°C, reference point pin 1, unless otherwise specified
in „Fehlersuche Steinel Bewegungsmelder“ · Analoge Elektronik und Schaltungstechnik ·
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PL560-XX.pdf
400 LVDS 311.04 -60 -85 -112 -135 -142 -150 -151 Phase Noise numbers were obtained using Agilent 5500. FREQUENCY VERSUS JITTER, AND SUB-HARMONIC PERFORMANCE RMS Period Peak to Peak Phase Jitter Jitter Jitter Period Jitter RMS Accumulated (12 KHz-20MHz) Spectral Specifications / Sub-harmonic Content
in „Suche Analog Frequency Multiplier IC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
dimplex_la17-26ps_fd9202_de-gb-fr.pdf
2.2 / 3100 3.8 / 8900 with an internal pressure differential of m³/h / Pa 3.7 Air flow rate m³/h 5500 8000 8000 3.8 Refrigerant; total filling weight type / kg R290 / 1.8 R290 / 2.2 R290 / 2.5 4 Dimensions, connections and weight 4.1 Device dimensions H x W x L cm 157 x 155 x 85 171 x 168 x 100 171
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RotaryEncoder_Optisch_Bourns_EM14.pdf
n Standard or high force push switch option n Optional detent EM14 - 14 mm Rotary Optical Encoder w/Switch Electrical Characteristics Electrical Output....................................................................................................................................................
in „Was für Anschlußkabel für Bourns EM14 (optischer Encoder)?“ · Mikrocontroller und Digitale Elektronik ·
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Thread
IIR Filter 2. Ordnung in FPGA implementieren
nOUT= 3000 help 1..4 /65536= -1000 0 2000 0 at time 500 ns # nValue= 0 nOUT= 5500 help 1..4 /65536= -1000 500 2000 3000 at time 600 ns # nValue= 0 nOUT= 4000 help 1..4 /65536= -500 500 1000 3000 at time 700 ns [/c]
vorgegebene Spec. im wesentlichen sein eigenes technisches Unverständnis dokumentiert. Schönes W'ende. Cheers Detlef
Digitale Signalverarbeitung / DSP / Machine Learning ·Marcel D. · ·100 Antworten
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lcd.pdf
register for read and write RS=0 Instruction register for write Busy flag/Address count for read 5 R/W I Read/Write select R/W= 1 Read mode R/W= 0 Write mode 6 E I Enable signal initiate read or write of data 7 DBO I/O 8 DB1 I/O Four low order bidirectional three-state data bus lines. Used to transfer
in „LCD Zeichen kippen“ · Mikrocontroller und Digitale Elektronik ·
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IF_13.pdf
5th Road 76185 Karlsruhe 22175 XiZhi District New Taipei City 22175 T +49 721 56910 T +886 2 2697 5500 F +49 721 569110 F +886 2 2697 5533 germanysales@schaffner.com taiwansales@schaffner.com www.schaffner.com.tw India Schaffner India Pvt. Ltd Thailand REGUS WORLD TRADE CENTRE Schaffner EMC Co. Ltd.
in „Kühlschrank-Kompressormotor stört“ · Haus & Smart Home ·
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PDF
infineon-bsb056n10nn3-g-datasheet-en.pdf
- 2.8 - T A25 °C, R thJA5 K/W 1) Operating and storage temperature T,jT stg -40 - 150 °C - 2 Thermal characteristics Table 3 Thermal characteristics Values Parameter Symbol Unit Note / Test Condition Min. Typ. Max. Thermal resistance, junction - case, top R thJC - - 1.6 K/W - Thermal resistance, junction - case, bottom R thJC - 1 - K/W - Device on PCB, 6 cm cooling area 1) R thJA - - 45 K/W - 1) Device on 40 mm x 40 mm x 1.5 mm epoxy PCB FR4 with 6 cm2 (one layer, 70 µm
in „Bauteilsuche Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
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Phoenix_ELR.pdf
Betriebsart 100 % ED Schutzart IP20 Prüfspannung Eingang/Ausgang 4 kVeff Verlustleistung min./max. 0,88 W / 2,5 W ; 0,88 W / 4,1 W ; 0,88 W / 7 W Abmessungen B / H / T 22,5 mm / 99 mm / 114,5 mm Anschlussdaten Anschlussart Push-in-Anschluss Leiterquerschnitt starr 0,14 mm² ... 2,5 mm² Leiterquerschnitt flexibel
in „Günstiges Wendeschütz gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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AVR300.PDF
a 7-bit address and a read/write bit. Figure 3. Byte Transfer Formats Master Write S Slave Address/W A DATA A DATA A/AP "0" n BYTES Master Read S Slave Address/W A DATA A DATA A P "1" n BYTES Combined Format S Slave Address/W A DATA A/ASr Slave AddressR/WA DATA A/A P n BYTES n BYTES FROM MASTER TO SLAVE
in „Externes I2C EEPROM am AT90S1200“ · Mikrocontroller und Digitale Elektronik ·
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U2008b.pdf
applications. Figure 1-1. Block Diagram with Typical Circuit: Load Current Sensing 230 V ~ 22 kΩ/2 W BYT51K R D R 2 1 1 R 8 330 kΩ αmax 1 MΩ Load 7 6 Limiting Voltage Mains voltage detector detector compensation Automatic retriggering U2008B Phase control unit 5 -VS TIC Current 226 detector ϕ = f(3)
in „Phase Control IC u2008b“ · Mikrocontroller und Digitale Elektronik ·
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Mech_Elekt_Daten.pdf
für Qualität M 530-50 A / Electrical data for grade M 530-50 A Typ P N BN SN Pb PFe PCuw ∆ i ∆u η w ηs cos ϕ RthCu RthFe W T A/mm2 V A W W - - - - - K/W K/W 3 UI 30 a 3,81 1,41 8,50 5,4 0,79 6,0 1,418 2,21 0,358 0,319 0,89 15,10 4,27 b 6,5 1,37 8,10 7,5 1,19 6,7 1,382 1,80 0,453 0,402 0,89 13,30 4,15
in „ltspice kopelfaktoranweisung für Drehstromtrafo“ · Analoge Elektronik und Schaltungstechnik ·
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AVR311_Using_the_TWI_module_as_I2C_slave_doc2565.pdf
condition or a repeated start condition. Figure 2. TWI Address and Data Packet Format Addr MSB Addr LSB R/W ACK Data MSB Data LSB ACK SDA SCL 1 2 7 8 9 1 2 7 8 9 START SLA+R/W Data Byte STOP 2 AVR311 2565D-AVR-10/04 AVR311 A START condition is always followed by the (unique) 7-bit slave address and then by
in „TWI Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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panasonic_ncr18650b-2.pdf
0.2It (650mA) V V3.5 L V3.5 3.0 3.0 3.0 2.5 2.5 0 500 1,000 1,500 2,000 2,500 3,000 3,500 . 2.50 5500 11,000 11,5 0 22, 0 22,500 33,000 3,3,500 5 DISCHARGE CAPACITY (mAh) . 0 500 1,000SCHAR1,500PACIT2,000h) 2,500 3,000 3,500 x a DISCHARGE CAPACITY (mAh) M 5.0 5.0 2 5.0 CHARGE CONDITION: CVCC* , 4.2V
in „Welche Zellchemie hat die Panasonic NCR18650B?“ · Analoge Elektronik und Schaltungstechnik ·
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KiCAD_file_formats_08May2012.pdf
EndComp 1.4 - Description of a NoConnect symbol Format: NoConn ~ posx posy Example: NoConn ~ 13400 5500 1.5 - Description of a hierarchical sheet symbol Format: $Sheet S posx posy dimx dimy List of Sheet Labels $EndSheet Format of Sheet Labels Fn “text” forms side posx posy dimension With: n = sequence
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AVR310_Using_the_USI_module_as_a_I2C_master.pdf
condition (or a repeated start condition). Figure 2. TWI Address and Data Packet Format Addr MSB Addr LSR/W ACK Data MSB Data LSACK SDA SCL 1 2 7 8 9 1 2 7 8 9 START SLA+R/W Data Byte STOP A START condition is always followed by the (unique) 7-bit slave address and then by a Data Direction bit. The Slave device
in „ATTiny2313 I2C - Master (Peter Fleury) / Slave (jtronics)“ · Mikrocontroller und Digitale Elektronik ·
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Bours_0603.pdf
asiacus@bourns.com EMEA: Tel: +36 88 885 877 • Email: eurocus@bourns.com The Americas: Tel: +1-951 781-5500 • Email: americus@bourns.com www.bourns.com WARNING Cancer and Reproductive Harm www.P65Warnings.ca.gov *RoHS Directive 2015/863, Mar 31, 2015 and Annex. **Bourns considers a product to be “halogen
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FSP_SHB_D.pdf
BR6 0080.3660.00 1 S 312 HF-Kabel W1 13 GHz 1093.5010.00 1 S W1 x 315 KABEL W1 30GHZ 1093.5027.00 1 S W1 x 316 TESTPORT GEH.ADAPTER 1021.0493.00 1 S 322 KABEL W1 40 GHz 1093.5162.00 1 S W1 324 TESTPORT GEH.ADAPTER 1036.4702.00 1 S 330
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Nichicon.pdf
25 × 30 0750 0.67 LGUW6121MELA 20 × 50 0750 0.69 LGU2W121MELY 20 × 50 0880 0.75 LGUW6151MELY 120 22 × 40 0800 0.69 LGU2W121MELZ 22 × 40 0880 0.75 LGUW6151MELZ 25 × 30 0800 0.69 LGU2W121MELA 150 25 × 35 0880 0.75 LGUW6151MELA 30 × 25 0800 0.69 LGU2W121MELB 30 × 25 0880 0.75 LGUW6151MELB 22 × 45 0880 0.77 LGU2W151MELZ 22 × 45 0950 0.82 LGUW6181MELZ 150 25 × 35 0880 0.77 LGU2W151MELA 180 25 × 35 0950 0.82 LGUW6181MELA 30 × 30 0880 0.77 LGU2W151MELB 30 × 30 0950 0.82 LGUW6181MELB 22 × 50 1000 0.85 LGU2W181MELZ
in „Welche Elkos taugen was?“ · Analoge Elektronik und Schaltungstechnik ·
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Mega8-88_ADR_doc2553.pdf
U N 0 0 0 t B E T F 0 E Y S E M 2 M V V V I I I B R I I N S S R D I G – S G O O O O O O C I I S A W C W T T T T T T T P B Y 1 1 A A A 1 A E 1 F 0 0 A S E 1 2 2 0 1 2 0 1 2 i R S N T C S R D S G – S G C C C I I I B C I I I I P A I W C W O O O O O O T B 2 B 1 1 S 2 0 1 2 0 1 2 i 2 – – – C M – T – – –
in „Einstellbarer Frequenzgenerator für 0.12 Hz - 8 MHz mit Atmega 8 und Bascom“ · Projekte & Code ·
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Atmega8_nach_Atmega88_doc2553.pdf
U N 0 0 0 t B E T F 0 E Y S E M 2 M V V V I I I B R I I N S S R D I G – S G O O O O O O C I I S A W C W T T T T T T T P B Y 1 1 A A A 1 A E 1 F 0 0 A S E 1 2 2 0 1 2 0 1 2 i R S N T C S R D S G – S G C C C I I I B C I I I I P A I W C W O O O O O O T B 2 B 1 1 S 2 0 1 2 0 1 2 i 2 – – – C M – T – – –
in „I2C master libraryVON pfleury [Fehlersuche]“ · Mikrocontroller und Digitale Elektronik ·
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Replacing_ATmega8_by_ATmega88.pdf
U N 0 0 0 t B E T F 0 E Y S E M 2 M V V V I I I B R I I N S S R D I G – S G O O O O O O C I I S A W C W T T T T T T T P B Y 1 1 A A A 1 A E 1 F 0 0 A S E 1 2 2 0 1 2 0 1 2 i R S N T C S R D S G – S G C C C I I I B C I I I I P A I W C W O O O O O O T B 2 B 1 1 S 2 0 1 2 0 1 2 i 2 – – – C M – T – – –
in „AVR-Board Schaltplan“ · Mikrocontroller und Digitale Elektronik ·
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I_C-Slave_1200_AN_302.pdf
Interrupt Handling Flow Chart EXT_INT0 Receive TWI Address Check Address HIT Send Acknowledge Check NO R/W bit WRITE READ MISS Prepare Output Sample SDA & SCL NO Transmitt 8 databits NO SDA or SCL YES Changed YES Read acknowledge SCL Low NO SDA Low Master acknowledges data ? YES YES NO Return from Store MSB
in „2 AVRs über I2C verbinden?“ · Mikrocontroller und Digitale Elektronik ·
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I_C-Slave_1200_AN_302.pdf
Interrupt Handling Flow Chart EXT_INT0 Receive TWI Address Check Address HIT Send Acknowledge Check NO R/W bit WRITE READ MISS Prepare Output Sample SDA & SCL NO Transmitt 8 databits NO SDA or SCL YES Changed YES Read acknowledge SCL Low NO SDA Low Master acknowledges data ? YES YES NO Return from Store MSB
in „I2C Slave für AT90S2313“ · Mikrocontroller und Digitale Elektronik ·
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Interfacing_3V_Dataflash_Ap_Note.pdf
Figure 1. TTL-compatible Device Interface Diagram 5.0V SUPPLY 5.0V DEVICE TTL-COMPATIBLE E K S P S C R W SI VOLTAGE REGULATION V DATAFLASH CCDF SO 2 Interfacing the 3-volt DataFlash 3297A–DFLSH–08/02 Interfacing the 3-volt DataFlash Driving a A problem arises when considering the output drive levels provided
in „chip fehlt :(“ · Mikrocontroller und Digitale Elektronik ·
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Artikel
Pegelwandler
was nicht explizit dafür freigegeben wurde Beispiele für 5V-Tolerante Bauteile. manche STM32 WizNet W5500 Kompatibilität von Logikpegeln. Verschiedene Logikfamilien haben unterschiedliche Anforderungen an ihre Eingangssignale, bei einer Wandlung von kleinerer zu größerer Spannung kann es daher Vorkommen
Beispiel: Netzwerkkarten) Lit.: Galvanische Trennung: Optokoppler, GMR-Koppler oder iCoupler?, Siegfried W. Best, Redaktion elektronik industrie, elektronik industrie 11-2003, S. 22ff. Praktische Beispiele. Einfaches RS232-Interface. Erfolgreicher Einsatz bis 19200 Baud und bis zu 10 m Leitungslänge Beschränkungen
Artikel ·
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Datei
PLC-LOX-300-13-12-2019Multibus-2.ino
/* UDP syntax: signals: DS18B20 1wire sensor packet: rail1 1w2 2864fc3008082 temp 25.44 DS2438 1wire sensor packet: rail1 1w2 2612c3102004f 25.44 1.23 0.12 Sensor detected (after start): rail1 1w2 2864fc3008082 detected Sensor error: rail1 1w2 2864fc3008082 error
in „1 Wire auf 2 GPIO pins“ · Mikrocontroller und Digitale Elektronik ·
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doc8012.pdf
8012A-AVR-10/05 AVR444 Figure 1. Waveforms P1 P2 P3 P4 P5 P6 ZC ZC U V [ F ZC ZC M E V - c a B ZC ZC W ] U V [ e g t l v V n i a v t W c A The floating phase, where the zero crossing must be detected, changes for every commutation step. One ADC channel for each phase winding is needed to detect zero crossings
in „BLDC Regler nach AVR444 - brauche Hilfe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Bildschirmfoto_2026-02-01_um_16.11.33.pdf
I 6 10 mA Active current on V pin, C = 0 pF ICC IV 5 6 mA CC load Power dissipation on V I 20 36 mW CC PCC C load= 0 IV 17 22 mW Current on VCC in NAP mode ICCNAP I 10 µA Analog Output Voltage range V AVx IV 0 2.9 V Digital Inputs Logic compatibility CMOS Logic “0” voltage VIL I 0 0.8 V Logic “1” voltage
in „Atmel Fingerchip —> welches Flexkabel?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Juki_-_Nozzle_Catalogue-Rev-C3.pdf
PWB-FPC Type 14 W = 7.25 32 mm 730 L = 17.65 Emboss 750 T = 3.45 P = 1.25 Japan Aviation Electronics Type 5 30 W = 4.3 16 mm 740 L = 7.0 Emboss 760 T = 4.25 P = 0.8 AMP PWB-IPC Type 34 W = 4.3 16 mm 760 L = 7.8 Emboss
in „Juki Nozzle Anschluss aber wie?“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
doc8005.pdf
shown in Figure 2-7. Figure 2-7. Thermistor response Thermistor + 10K Volt divider 5 4,5 0 4 5 t ) 3,5 w i 3 t p 2,5 Volts u a 2 s 1,5 l 1 V 0,5 0 -90 -40 10 60 110 Temperature Deg C http://www.murata.com/catalog/r44/el0780_1.pdf 3 Implementation Described here are the minimum features recommended to implement
in „BLCD Motor via PWM steuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR442_PC_Fan_Control_using_ATtiny13.pdf
shown in Figure 2-7. Figure 2-7. Thermistor response Thermistor + 10K Volt divider 5 4,5 0 4 5 t ) 3,5 w i 3 t p 2,5 Volts u a 2 s 1,5 l 1 V 0,5 0 -90 -40 10 60 110 Temperature Deg C http://www.murata.com/catalog/r44/el0780_1.pdf 3 Implementation Described here are the minimum features recommended to implement
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avr446.pdf
of the most relevant topics will be given. Further details about stepper motors can be found in D. W. Jones, Control of Stepper Motors. 2.1.1 Bipolar vs. Unipolar stepper motors The two common types of stepper motors are the bipolar motor and the unipolar motor. The bipolar and unipolar motors are similar
in „Schrittmotor Softstart“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR446_Linear_speed_control_of_stepper_motor.pdf
of the most relevant topics will be given. Further details about stepper motors can be found in D. W. Jones, Control of Stepper Motors. 2.1.1 Bipolar vs. Unipolar stepper motors The two common types of stepper motors are the bipolar motor and the unipolar motor. The bipolar and unipolar motors are similar
in „rampenbrechnung für schrittmotor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc8017.pdf
of the most relevant topics will be given. Further details about stepper motors can be found in D. W. Jones, Control of Stepper Motors. 2.1.1 Bipolar vs. Unipolar stepper motors The two common types of stepper motors are the bipolar motor and the unipolar motor. The bipolar and unipolar motors are similar
in „Atmel Appnote AVR446 Hilfe lineare Geschwindigkeit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AVR446.pdf
of the most relevant topics will be given. Further details about stepper motors can be found in D. W. Jones, Control of Stepper Motors. 2.1.1 Bipolar vs. Unipolar stepper motors The two common types of stepper motors are the bipolar motor and the unipolar motor. The bipolar and unipolar motors are similar
in „Atxmega Timer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc7627.pdf
MTA 2 cts right angle 15 1 M1 FDV304P/FAI SOT23 16 1 Q1 BC847B IC peak=200mA SOT23 17 2 R2,R3 22 1/16W-5% SMD CASE 0603 18 1 R5 68k 1/16W-5% SMD CASE 0603 19 2 R6,R7 47k 1/16W-5% SMD CASE 0603 20 7 R1,R4,R5,R8,R16,R20, R26 0 CASE 0603 21 0 R21 0 (Not Mounted) CASE 0603 22 1 R28 220k 1/16W-5% SMD CASE 0603 23 7 R9,R10,R11,R12,R25,R27,R3 100k 1/16W-5% SMD CASE 0603 0 24 5 R13,R14,R17,R22,R23 1k 1/16W-5% SMD CASE 0603 25 2 R24,R28 10k 1/16W-5% SMD CASE 0603 26 1 R29 NCP18WF104J03RB 100K - ß=4250 CASE 0603 27 2 R15,R18 100k 1% 1/16W-1% SMD CASE 0603
in „Problem mit dem TC4469“ · Mikrocontroller und Digitale Elektronik ·
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PDF
IDF_V30_Spec.pdf
2550.0 -180.0 0 5187.5 2550.0 0.0 0 5187.5 4935.0 0.0 0 4945.0 5145.0 0.0 0 4945.0 5420.0 0.0 0 4865.0 5500.0 0.0 0 210.0 5500.0 0.0 0 130.0 5420.0 0.0 0 130.0 5145.0 0.0 0 - 112.5 4935.0 0.0 0 - 112.5 2550.0 0.0 0 - 80.0 2550.0 0.0 0 - 80.0 2130.0 -180.0 0 - 112.5 2130.0 0.0 0 -112.5 - 140.0 0.0 0 45.5 -
in „Eagle 3D Darstellung“ · Platinen ·
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PDF
AT77C101B.pdf
C I 6 10 mA CC ICC Active current on CC pin, load 0 pF IV 5 6 mA Power dissipation on VCC I 20 36 mW C = 0 PCC IV 17 22 mW load Current on V in NAP mode I I 10 µA CC CCNAP Analog Output Voltage range VAVx IV 0 2.9 V Digital Inputs Logic compatibility CMOS Logic “0” voltage V IL I 0 0.8 V Logic “1” voltage
in „Atmel Fingerchip —> welches Flexkabel?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
u2010b.pdf
temperature range Tamb -10 to +100 °C 5. Thermal Resistance Parameters Symbol Value Unit DIP16 RthJA 120 K/W Junction ambient SO16 on p.c. RthJA 180 K/W SO16 on ceramic R 100 K/W thJA 7 4766B–INDCO–10/05 6. Electrical Characteristics Parameters Test Conditions Pin Symbol Min. Typ. Max. Unit Supply 11 -I = 3.5
in „U2010B Softstart Funktion“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMEL-Motor_Entwicklungsboard.pdf
Description Package Q1,Q2,Q3,Q4,Q5,Q6 SUD35N05-26L Power MOSFET CMS TO-252 (D-pak) R1,R25, R48 10 1/16W-5% Resistor SMD CASE 0805 R2,R6,R7,R8,R17,R26 4.7K 1/16W-5% Resistor SMD CASE 0805 R3,R28,R34,R38,R43 100K 1/16W-5% Resistor SMD CASE 0805 R4,R9,R14,R16,R21,R22, 10K 1/16W-5% Resistor SMD CASE 0805 R29 R5,R10,R15,R19,R23,R2 4 22 1/16W-5% Resistor SMD CASE 0805 R11,R12,R13 100 1/16W-5% Resistor SMD CASE 0805 R18 R_Shunt CMS POWER resistor 0,1ohm 3W CASE 2512 R20,R27,R33,R37,R42 15K 1/16W-5% Resistor SMD CASE 0805 R30 33 1/16W-5% Resistor
in „Stromregeler Testboard ATAVRMC100“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SPI.c
#include "SPI.h" #include "LPC21xx.h" #include "at45db.h" void SPI_Init() { PINSEL0 |= 0x5500; //Umschaltung von GPIO auf SPI ->SCK0, MISO0, MOSI0 for SSEL0 IODIR0 |= SPI_SCK0 | SPI_MISO0 | SPI_MOSI0 | SPI_SSEL0 ; //P0.4 bis P0.7 = Ausgänge PINSEL1 |= 0x0000; //auf GPIO lassen IODIR1 |= SPI_CS_FLASH
in „Fehlermeldungen beim compilieren von SPI Code“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Kupferlackdraehte-Allgemeine-Anforderungen-nach-DIN-EN-IEC-60317-0-1.pdf
0,0016 67,2 0,005 0,009 0,013 0,055 0,061 0,066 0,003 0,062 0,068 275 550 710 9,781 10,750 11,715 12 20 w Ø 0,048 d o 0,0018 59,2 0,005 0,010 0,014 0,059 0,064 0,069 0,003 0,067 0,073 290 580 780 8,596 9,447 10,297 14 22 0,050 r g 0,0020 54,3 0,005 0,010 0,014 0,060 0,066 0,072 0,003 0,068 0,074 300 600
in „Lackdicke der Isolierung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
mega128-can128.pdf
High Byte T/C1 Output Compare C Register (0x78) OCR1CL (0x8C) Idem Idem Low Byte T A A O C I E S S W E I (0x74) TWCR W W W W W W - W (0xBC) Idem Idem T T T T T T T (0x73) TWDR TWI I/O Data Register (0xBB) Idem Idem E C (0x72) TWAR TWA[6..0] G (0xBA) Idem Idem T (0x71) TWSR TWS[7..3] - TWPS (0xB9) Idem
in „AtMega128 - At90Can128“ · Mikrocontroller und Digitale Elektronik ·
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AT89C5131A_Starter_Kit_Hardware_Guide.pdf
A D 1 : 1 . 22 e e e t C 0F p i i A a 7 µ I 2 u T T S : 1 . _ R p U l e A t C 0 G E o _ i i a I I W a G T S D _ R O r O NG G P g _ e _R E W a G p G R O u E r E P g R J R R e 2 4 6 r u h e t 2 4 6 r 6 w T 2 e W c 4 s 6 P 3 3 S S i 2 T P T T 3 P r 6 w 1 4 T 6 D 3 J e W o V P 1 s P 1 N 3 3 1 3 5 w S e
in „Programmierung über USB“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LEDOverCurrentDriving.pdf
performed significant over-driv-sign practices to avoid EOS damage. E ing tests on the XLamp XM-L LED. R C W Copyright © 2010 Cree, Inc. All rights reserved. Th information in this document is subject to change without notice.ce. Cree, the Cree W Cree, the Cree logo and XLamp are registered trademarks of Cree, Inc.is provided for informational purposes only and is not a warranty or W a specification. For product specifications, please see the data sheets available at www.cree.com. USA Tel: +1.919.313.5300, please contact Cree Sales at sales@cree.com. PULSED OVER-CURRENT DRIVING SINGLE-PULSE
in „Stroboskope mit LED“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ferroxcube_Data_Handbook.pdf
,s' SYMBOL CONDITIONS VALUE UNIT µs µ i 25 °C; ≤10 kHz; 2700 ±20% 103 0.25 mT µ a 100 °C; 25 kHz; 5500 ±20% µs' 200 mT B 25 °C; 10 kHz; ≈ 450 mT 102 1200 A/m 100 °C; 10 kHz; ≈ 360 1200 A/m 3 P V 100 °C; 25 kHz; ≤ 185 kW/m 200 mT 10 2 10 1 1 10 f (MHz) 10 ρ DC; 25 °C ≈ 1 Ωm T C ≥ 210 °C density ≈ 4800
in „Maximale Magnetflussdichte im Ferritkern Temperaturangabe“ · Analoge Elektronik und Schaltungstechnik ·
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24C32.pdf
Package Operation Range AT24C32-10PI-2.7 8P3 Industrial AT24C32N-10SI-2.7 8S1 (-40°C to 85°C) AT24C32W-10SI-2.7 8S2 AT24C32-10PI-1.8 8P3 Industrial AT24C32N-10SI-1.8 8S1 (-40°C to 85°C) AT24C32W-10SI-1.8 8S2 Note: For 2.7V devices used in the 4.5V to 5.5V range, please refer to performance values in the
in „EEproms 24C32 zu verschenken“ · Mikrocontroller und Digitale Elektronik ·