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Datei
TFT_starfield.ino
to be called again //tft.fastSetup(); // Prepare plot window range for fast pixel plotting } uint16_t color565(uint8_t r, uint8_t g, uint8_t b) { return ((r & 0xF8) << 8) | ((g & 0xFC) << 3) | (b >> 3); } void loop() { unsigned long t0 = micros(); uint8_t spawnDepthVariation = 255; for(int i = 0; i <
in „2.2'TFT ILI9340 und Arduino“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Weihnachtsledas.ino
\n\t" // 0 "loop%=:out %2, %3 \n\t" // 1 "lsl %1 \n\t" // 2 "dec %0 \n\t" // 3 " rjmp .+0 \n\t" // 5 " brcs .+2 \n\t" // 6l / 7h " out %2,%4 \n\t" // 7l / - " rjmp .+0 \n\t" // 9 " nop \n\t" // 10 " out %2,%4 \n\t" // 11 " breq end%= \n\t" // 12 nt. 13 taken " rjmp .+0 \n\t" // 14 " rjmp .+0 \n\t" // 16 " rjmp .+0 \n\t" // 18 " rjmp loop%= \n\t" // 20 "end%=: \n\t" : "=&d" (ctr) : "r" (curbyte), "I" (_SFR_IO_ADDR
in „Auswahl zweier Arduino Sketches“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ReicheltLM_2678.pdf
Package Top View Top View 10088601 10088602 Order Number Order Number LM2678S-3.3, LM2678S-5.0, LM2678T-3.3, LM2678T-5.0, LM2678S-12 or LM2678S-ADJ LM2678T-12 or LM2678T-ADJ See NSC Package Number TS7B See NSC Package Number TA07B Top View 10088641 LLP-14 See NS package Number SRC14A Ordering Information
in „Fragen dem Schaltregler LM2678-ADJ“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
Schaltplan eines Triacs mit Optokoppler
MOC3062M Zero-Crossing max. 600 V dV/dt: min. 600 V/us LED trigger: max. 10 mA T1620T-8I Snubberless 16 A, 800 V (125°C) Nonrepetitive surge peak: 120 A (50 Hz, 20 ms) Gate threshold: max. 20 mA dV/dt: min. 1000 V/us (125°C) IN+ R4 220 U1 MOC3062M R2 330 R1 47 A 230V AC 10mA nom. 25mA max. D2 1N4148 Q1 BC547 B R5 56 IN- C1 22n WIMA MKP-X2 305V AC D1 T1620T-8I R3 330 2A flink resistiv Lastfall 1: 300 Watt, resistiv Lastfall 2: 20 Watt, induktiv RV1 S14K250 B
in „Sicherungswiderstände Triac-Modul“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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PDF
Current_Ref._100uA.pdf
Tucson,AZ 85706 • Tel:(520)746-1111 • Twx:910-952-1111 Internet:http://www.burr-brown.com/ • FAXLine:(800)548-6133(US/CanadaOnly) • Cable:BBRCORP • Telex:066-6491 • FAX:(520)889-1510 • ImmediateProductInfo:(800)548-6132 © 1988 Burr-Brown Corporation PDS-851D Printed in U.S.A. October, 1993 SBVS020 SPECIFICATIONS
in „Stromreferenz Beschaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
an9768_surge_protect.pdf
transients away from sensitive loads and so limit the residual V 100 N E Z = 10Ω DA voltages. G MPE T RI Attenuating a transient, that is, keeping it from propagating O NEA away from its source or keeping it from impinging on a V 10 LI =1Ω sensitive load is accomplished with filters inserted in series
in „Fachliteratur Entwurf Blitzductor“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TPS3824-33DBVR.pdf
– APRIL 1998 – REVISED JULY 2022 www.ti.com 10 8 µ WDI = Open − MR = Open 7 D VD 8 a 6 n i r 5 u 6 t D n l o 4 u C P 4 u 3 i i M 2 − 2 tw 1 0 0 200 400 600 800 1000 0 120 150 180 210 240 270 300 VDD − Threshold Overdrive − mV Reset Delay t [ds] Rese Figure 7-8. Minimum Pulse Duration at V DD vs V DD
in „Watchdog Timer der beim Ansprechen Ausgangssignal nicht toggelt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lt32a1.pdf
071G 59C600 M CHIP BEAD 60 OHM 0603 600MA ▯ FB786 071G 59C601 TA CHIP BEAD 600R/200MA FCM1608K-601T02 ▯ L110 071G 59C800 1HIP BEAD ▯ L109 071G 59C800 1HIP BEAD ▯ L108 071G 59C800 1HIP BEAD ▯ L107 071G 59C800 1HIP BEAD ▯ L106 071G 59C800 1HIP BEAD ▯ L105 071G 59C800 1HIP BEAD ▯ L104 071G 59C800 1HIP
in „Philips LCD TV kein Bild aber Ton [46PFL7655K/02]“ · Haus & Smart Home ·
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PDF
NASA_Technical_Note_D-822.pdf
as follows : Value shown Correct value I,i00 1,010 1,200 1,020 1,300 1,030 1,200 1,020 I,DO0 1,050 t 1,600 1,060 1,700 1,070 1,800 1,080 1,900 1,090 NASA-LanglI_I Issued 10-30-61 J+ P G NATIONAL AERONAUTICS AND SPACE ADMINISTRATION TECHNICAL NOTE D-822 TABLES OF AIRSPEED, ALTITUDE, AND MACE BASED ON
in „Komplexe Berechnung auf µC - geschickte Annäherung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Verstaerkerschaltung.pdf
2 1 20 0 + - V3 B R2 R7 B 2.2k 10k T4 Q2N2222 D2 D1N4148 R8 0.3 Q2N2907A T2 Q2N2907A V R6 R10 C2 R5 15k 50 4.7n R1 2k D1 R9 15k D1N4148 +V36 0.3 0 0 0 C1 - T5 0 22pF T3 Q2N2907A R3 Q2N2222 2k - 20 + 0 V4 A A OrCAD, Inc. Page Size: A 13221 S.W. 68th Parkway, Suite 200 Beaverton, OR 97223 (503) 671-9500 (800) 671-9505 Revision: - January 1, 2000 Page 1 of 1 2 1
in „Verstaerkerschaltung erklären“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RFM22B.pdf
Figure 3. SPI Timing Table 10. Serial Interface Timing Parameters Symbol Parameter Min (nsec) Diagram tCH Clock high time 40 CL Clock low time 40 SCLK DS Data setup time 20 SS tCL CH DS tDH tDD tSH tDE tDH Data hold time 20 SDI tDD Output data delay time 20 SDO EN Output enable time 20 tEN SW DE Output
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RFM22B.pdf
Figure 3. SPI Timing Table 10. Serial Interface Timing Parameters Symbol Parameter Min (nsec) Diagram tCH Clock high time 40 CL Clock low time 40 SCLK DS Data setup time 20 SS tCL CH DS tDH tDD tSH tDE tDH Data hold time 20 SDI tDD Output data delay time 20 SDO EN Output enable time 20 tEN SW DE Output
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ds1990a.pdf
(Note 1) 480 640 µs Reset High Time tRSTH (Notes 1 and 10) 480 µs Presence-Detect High Time t 15 60 µs PDH Presence-Detect Low Time tPDL (Note 11) 60 240 µs Presence-Detect Sample Time t (Note 1) 60 75 µs MSP IO PIN: 1-Wire WRITE Write-Zero
in „V 30 iButton DS1990A“ · Markt ·
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PDF
SR0604100MSB.PDF
0.34 SR0805561KS ¡… 560.0 10% 30 1K 0.796M 3.7 2.500 0.30 SR0805681KS ¡… 680.0 10% 29 1K 0.796M 3.5 2.800 0.28 SR0805821KS ¡… 820.0 10% 28 1K 0.796M 3.2 4.000 0.23 SR0805102KS ¡… 1000.0 10% 27 1K 0.252M 3.0 4.500 0.21 SR0805122KS ¡… 1200.0 10% 28 1K 0.252M 2.6 6.800 0.17 SR0805152KS ¡… 1500.0 10% 27 1K
in „Pollin SMD-Induktivitäten identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
M-Series_Details_1_.pdf
15.000 Push Button 060 0.060 265 0.650 450 5.000 616 16.000 065 0.065 270 0.700 455 5.500 617 17.000 T Push-Pull U Push To Reset 070 0.070 275 0.750 460 6.000 618 18.000 075 0.075 280 0.800 465 6.500 620 20.000 Push Button w/ Snap-In Mounting 080 0.080 285 0.850 470 7.000 622 22.000 V Push-Pull W Push
in „Schiffelektrik“ · Offtopic ·
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Datei
main.c
#include "global.h" #include "dma.h" #include "spi.h" spi_peripheral_t spi_peripheral; spi_slave_t spi_slave; spi_transaction_t trans1; /*spi_transaction_t trans2; spi_transaction_t trans3;*/ uint8_t buffer1[3] = {0x81, 0x42, 0x24}; uint8_t buffer2[2] = {0x00, 0x00}; //
in „STM32L1xx DMA+SPI: 2 Bugs“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
Peak Repetitive Reverse Voltage VRRM Working Peak Reverse Voltage V RWM 50 100 200 400 600 800 1000 V DC Blocking Voltage VR RM S Reverse Voltage VR(MS) 35 70 140 280 420 560 700 V Average Rectified Output Current (Note 1)40°C 05 A I A Average Rectified Output Current (NoteA2) @T°C 0.8 Non-Repetitive
in „Bauteile Platine (LED Lampe)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
clt3.pdf
V ION OUT On state output current V IN= 5V 1.5 2 - mA Supply & biasing circuit V V Supply voltage T = - 25 to 85°C 10 V C C AMB C V C Supply current V INV =C30V 550 800 µA Note 5: According to application diagram on pIge 2 with use of a R = 1LED(0V) = 15kF, V = 1.2V) and a re- verse diode from COM
in „Vergleichbarer Baustein zu CLT3-4B“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AND9674-D.PDF
and duty cycle of switching device calculated in following VDD VB O T B DZ equation: P HIN HO C Q1 I R GATE L t + R BOOT C BOOT[s] (eq. 9) COM V D S T where R is the bootstrap resistor; C is the D U U BOOT BOOT C V bootstrap capacitor; and D is the duty cycle. R C t +
in „Bootstrap Kondensator richtig wählen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX7219-MAX7221_LED_Display_Treiber.pdf
__________________________________Typical Operating Characteristics 1 2 (V+ = +5V, T = +A5°C, unless otherwise noted.) 2 7 X SCAN FREQUENCY vs. SEGMENT DRIVER OUTPUT CURRENT A POSITIVE SUPPLY VOLTAGE vs. OUTPUT VOLTAGE M 830 1 70 1 / 820 1 1 A 60 A 9 810 M R = 10kΩ M z A SET 1 ( 800
in „23 7-Segment LEDs mit AVR ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX7219-MAX7221.pdf
__________________________________Typical Operating Characteristics 1 2 (V+ = +5V, T = +A5°C, unless otherwise noted.) 2 7 X SCAN FREQUENCY vs. SEGMENT DRIVER OUTPUT CURRENT A POSITIVE SUPPLY VOLTAGE vs. OUTPUT VOLTAGE M 830 1 70 1 / 820 1 1 A 60 A 9 810 M R = 10kΩ M z A SET 1 ( 800
in „BCD-Decoder als SMD gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX7219-MAX7221.pdf
__________________________________Typical Operating Characteristics 1 2 (V+ = +5V, T = +A5°C, unless otherwise noted.) 2 7 X SCAN FREQUENCY vs. SEGMENT DRIVER OUTPUT CURRENT A POSITIVE SUPPLY VOLTAGE vs. OUTPUT VOLTAGE M 830 1 70 1 / 820 1 1 A 60 A 9 810 M R = 10kΩ M z A SET 1 ( 800
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PDF
_DS1990R-DS1990R-F5.pdf
t REC before it is ready crossed, the DS1990R waits for t PDH and then transmits for the next time slot. a presence pulse by pulling the line low for t PDL . To MASTER Tx "RESET PULSE" MASTER Rx "PRESENCE
in „1-Wire: iButton: sendet keine Daten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KEM_C1003_C0G_SMD.pdf
Dielectric, 10VDC-200VDC (Commercial Grade) Figure 1 – Embossed (Plastic) Carrier Tape Dimensions T P 2 T2 [10 pitches cumulative E 1 ØDo Po tolerance on tape ±0.2 mm] Ao F Ko E 2 W B1 Bo S1 P 1 T1 Center Lines of Cavity ØD 1 Embossment Cover Tape see Note 1 Table 5 B1is for tape feeder reference only
in „Quarz Dimensionierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XLampXML2.pdf
Cree, Inc. 4 xlamp ® xm-l2 leds Electrical Characteristics (Tj = 85°C) Electrical Characteristics (T = 85 °C) J 3000 2800 2600 2400 A 2200 ( 2000 t 1800 e r 1600 u 1400 C d 1200 a 1000 w 800 r F 600 400 200 0 2.60 2.80 3.00 3.20 3.40 Forward Voltage (V) Relative Intensity vs. Cur ent (Tj = 85°C) Relative Flux vs. Current (T = 85 °C) J 350 ) 300 % ( x l 250 F s o 200 n i m 150 L v 100 t l e 50 R 0 0 200 400 600 800 1000 1200 1400 1600 1800 2000 2200 2400 2600 2800 3000 Forward Current (mA) ® ® trademarks of Cree, Inc.nc.
in „Li Akku effizient in WLED endladen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MT6252_Design_Notice.pdf
1.1A LOUD SPEAKER C61 100p LS2 2 SPKP0 B B L8 BLM18PG221SH1 2 SPKN0 A A L10 BLM18PG221SH1 C54 C55 T T 33p 33p 8 8 REC C C 0 V 0 V 1 1 M M T4 T5 7FOEPS 1▯/ 3ED PIN 3BUF▯DVSSFOU N" #-.▯▯1(▯▯▯4)▯ ▯▯▯ ▯▯▯▯ #-.▯▯1%▯▯▯4/▯ ▯▯▯▯ ▯▯▯▯ #-.▯▯,(▯▯▯4/▯ ▯▯▯▯ ▯▯▯▯ .VSBUB #-.▯▯,(▯▯▯4/▯ ▯▯▯▯ ▯▯▯▯ #-.▯▯4(▯▯▯5/▯ ▯▯▯▯
in „Amparos GPS Tacker - Pollin Schnäppchen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
h5062_1_.pdf
0.4 V S IN Sense Input Vp Peak Threshold VCC e 4.75V 350 386 415 mV VH Hold Reference 88 94 102 mV t Time-out, t tdR T T 90 100 110 % NOTE 1: For operation in ambient temperatures above 25 C, the device must be derated based on a 150 C maximum junction temperature and a thermal resistance of 100unction
in „Einspritzventil mit MOSFET schalten“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
tp-18a.asm
rjmp reset .if RC_PULS == 1 rjmp ext_int0 .else nop ; int0 .endif ; RC_PULS == 1 nop ; ext_int1 nop ; t2oc_int nop ; t2ovfl_int nop ; icp1 rjmp t1oca_int nop ; t1ocb_int rjmp t1ovfl_int rjmp t0ovfl_int nop ; spi_int nop ; urxc nop ; udre .if UART_CONTROL == 1 rjmp utxc .else nop ; utxc .endif ; UART_CONTROL
in „Verständnisfrage Assembler Code“ · Mikrocontroller und Digitale Elektronik ·
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PDF
230V-messen.pdf
I USB PC, USB I RS-422 RMS- T Linux, T STM32, Multimeter F C F C D1 STM32L412 +5V N14 MAX6071AAUT33 L6 4 6 VREF VREF 5 IN OUT VDDA F.B.,0.2A 3 5 C5 EN OUTS C45 +3.3V C44 L12 100n 1 2 2u2 10n F.B.,0.2A 7 C67 C68 2 7 5 10n 2u2 E 2
in „Netzspannung messen für arme Leute“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Cell_balancing_TI_Application_Note.pdf
Phone International +91-80-41381665 Mexico Phone 0800-670-7544 Domestic Toll-Free Number Australia 1-800-999-084 Fax +1(972) 927-6377 Internet/Email support.ti.com/sc/pic/americas.htm China 800-820-8682 Hong Kong 800-96-5941 India 1-800-425-7888 Europe, Middle East, and Africa Phone Indonesia 001-803-8861
in „LiFePo4 Balancer/Überwachungsschaltung im Auto“ · Mikrocontroller und Digitale Elektronik ·
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PDF
slvs451f.pdf
vs INPUT VOLTAGE OUTPUT CURRENT 1400 100 V = 1.8 V 90 VBAT = 0.9 V O 1200 A VO= 3.3 V VO= 5 V 80 - t 1000 70 e VBAT = 1.8 V u % 60 C 800 - u c t e 50 u 600 i O f 40 u E m VO= 1.8 V x 400 30 M 20 200 10 0 0.9 1.7 2.5 3.3 4.1 4.9 5.7 6.5 0 1 10 100 1000 V I Input Voltage - V IO- Output Current - mA Figure
in „Hochohmige digitale Widerstände für Boostconverter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
t4227.pdf
V) Block Diagram Figure 1. Block diagram Ordering Information Extended Type Number Package Remarks T4227-DDT No Die in trace T4227-FB SSO16 T4227-FBG3 SSO16 Taped and reeled T4227-DBQ No CSP Chip Scale Package Rev. A3, 20-Mar-01 1 (14) Preliminary Information T4227 Absolute Maximum Ratings Parameter
in „DCF77 Emfangs-IC gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTC_2400_24Bit-ADC.pdf
Oscillator (Notes 10, 11) 256/fEOSC (in kHz) ms tDOUT_ESCK External SCK 32-Bit Data Output Time (Note 9) 32/ESCK (in kHz) ms t1 CS to SDO Low Z 0 150 ns t2 CS to SDO High Z 0 150 ns t3 CS to SCK (Note 10) 0 150 ns t4 CS to SCK (Note 9) 50 ns t SCK to
in „ADC, Auslösung erhöhen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2400fa.pdf
Oscillator (Notes 10, 11) 256/fEOSC (in kHz) ms tDOUT_ESCK External SCK 32-Bit Data Output Time (Note 9) 32/ESCK (in kHz) ms t1 CS to SDO Low Z 0 150 ns t2 CS to SDO High Z 0 150 ns t3 CS to SCK (Note 10) 0 150 ns t4 CS to SCK (Note 9) 50 ns t SCK to
in „hochauflösende Temperaturmessung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ds18x20lib.c
-------------------------------- // Reset DS18S20 //---------------------------------------- uint8_t ds1820_reset(uint8_t used_pin) { uint8_t err=100; DS1820_PORT &= ~(1<<used_pin); //Pull low DS1820_DDR |= 1<<used_pin; // define as ouput _delay_us(480); ; // 480 us DS1820_DDR &= ~(1<<used_pin); //
in „DS18B20 probleme mit Pull-Up“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ds18x20lib.c
-------------------------------- // Reset DS18S20 //---------------------------------------- uint8_t ds1820_reset(uint8_t used_pin) { uint8_t err=100; DS1820_PORT &= ~(1<<used_pin); //Pull low DS1820_DDR |= 1<<used_pin; // define as ouput _delay_us(480); ; // 480 us DS1820_DDR &= ~(1<<used_pin); //
in „DS18B20 Temperaturauswertung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
qt300_102.pdf
% Error waiting for a new request the part stays in a low power mode. 300 3% 250 2% n 3 - SPI Port t 2l0 g 3.1 SPI Specifications e 2% t 1a0 S The QT300 can operate in master or slave mode, and thus is i r compatible with virtually all SPI-capable microcontrollers. The S 1% o 100 E SPI interface has
in „Techniker-Projekt: Füllstandsanzeige für Modellfahrzeug“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD815_SOP.pdf
vs. Supply Figure 7. Total Supply Current vs. Temperature Voltage 40 80 33 - - p p T = +25ⴗC V V A A E E m 30 G30 60 G – A T N L NO LOAD L E V V R 27 T T U U 40 U C T20 RL= 50⍀ T L U (DIFFERENTIAL) U P D RL= 25⍀ O U 24 E I S D (SINGLE-ENDED) T A -10 20 E T E R T 21 G F I I S D 0 0 18
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PDF
RTC72423APP.pdf
the fixed-period operation is performed at the incrementation of the time (period) specified by the t0 and t1 bits. i. Setting t0 and t1 Setting these bits specifies the generation timing for fixed-period pulse output or fixed-period interrupts. t1 t0 Period(frequency) Remarks 0 0 1/64 seconds (64 Hz
in „Kleine DCF Antenne für Propeller Clock“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RTC-72421_3_AM_Application.pdf
the fixed-period operation is performed at the incrementation of the time (period) specified by the t0 and t1 bits. i. Setting t0 and t1 Setting these bits specifies the generation timing for fixed-period pulse output or fixed-period interrupts. t1 t0 Period(frequency) Remarks 0 0 1/64 seconds (64 Hz
in „Uhrenbaustein RTC 72421“ · Mikrocontroller und Digitale Elektronik ·
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PDF
100_inch_DIP_Sockets.pdf
Handling and Protection Division 6801 River Place Blvd. For technical, sales or ordering information call 800-328-0411 Austin, TX 78726-9000 or visit our website: http://www.3M.com/ehpd .100"(2.54 mm) DIP Sockets ZIP DIP A F .09 ▯▯1 [ 2.3 ] D .325 [ 8.26 ]▯▯2 T X 2XX-XXXX-00 O C B O 3 M ▯ 3 .100 Typ. [ 2.54
in „Suche Textool-Sockel 28pol. Klemmbreite 7.62mm“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Big_Motor1.pdf
Current Torque Moment Sound Full 3/4 1/2 Power of inertia pressure Output Speed load load load factor I T J = 1/4 Weight level L N N 2 2 PA kW Motor type Product code r/min 100% 75% 50% Cos A S /N Nm TITN Tb/TN GD kgm kg dB 3000 r/min = 2 poles 400 V 50 Hz CENELEC-design 0.37 M3BP 71 MA 2 2768 74.8 74.7
in „Drehmoment beim Drehstrommotor im Anlauf berechnen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PT4515deutsch.pdf
PT4515HA_DS_Rev CH 1.0 Machine Translated by Google PT4515HA Einzelsegment-Linear-LED-Treiberchip Stift P T 5 1 H A Abbildung 2. Pin-Definitionsdiagramm des PT4515HA Pin-Beschreibung Pin-Nummer Pin-Nummer Beschreibung der Pin-Funktion (ESOP-8) (SOT89-3L) Pin-Name 1 NC NC 2 NC NC 3 1 OUT Konstantstrom-Ausgangsport
in „LED mit mehr als 16V“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
TFT_starfield.ino
Adafruit_ILI9340(_cs, _dc, _rst); // With 256 stars the update frame rate is about 45Hz #define NSTARS 256 uint8_t sx[NSTARS] = {}; uint8_t sy[NSTARS] = {}; uint8_t sz[NSTARS] = {}; uint8_t za, zb, zc, zx; // Fast 0-255 random number generator from http://eternityforest.com/Projects/rng.php: uint8_t __attribute__
in „2.2'TFT ILI9340 und Arduino“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ads1220.pdf
o r E E n 0 n 0 e m r r s s e e M -0.005 M -0.1 -0.01 -0.2 -10 0 10 20 30 40 50 -200 0 200 400 600 800 1000 1200 Thermocouple Voltage (mV) Temperature (°C) D002 D001 Figure 75. Voltage Measurement Error vs V (TC) Figure 76. Temperature Measurement Error vs T (TC) Copyright © 2013–2016, Texas Instruments
in „ADS1220 Temperatur SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN_Hybrid_Kit_for_HP2_module_V1.1.pdf
assignments and mechanical dimensions. 2.1 Main features Complete main inverter for (H)EV applications up tTM80KW. • Automotive qualified IGBT module HybridPACK2 (not included) o 650V/800A IGBT & Diode chipset • Automotive qualified Driver IC 1ED020I12-FA o Based on coreless transformer technology o Up to
in „Linksammlung für Leistungselektronik“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Quelltext.txt
// Werte für Startsequenz (Funk-Sendedaten) #define TIME_LOW_STARTSEQUENZ 60 // 470µs #define TIME_T_STARTSEQUENZ 91 // 800µs // Werte für Datenübertragung (Funk-Sendedaten) #define TIME_LOW_DATEN 48 // 470µs #define TIME_HIGH_DATEN 101 // 750µs #define TIME_T_DATEN 138 // 1200µs // Werte für Pause
in „ATMEGA128: Signalerzeugung mit Fast-PWM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ds1820.c
THERM_DQ)) bit=1; //Wait for 45uS to end and return read value fcpu_delay_us(53);//45 return bit; } uint8_t therm_read_byte(void) { uint8_t i=8, n=0; while(i--) { //Shift one position right and store read value n>>=1; n|=(therm_read_bit()<<7); } return n; } uint16_t therm_read_word(void) { uint16_t i=16, n
in „ATMega8 - LED-Thermometer (DS18S20)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SSD1963.h
Defines - SSD1963 //---------------------------------------------------------------- #define LCD_MAX_X 800 #define LCD_MAX_Y 480 #define LCD_PIXEL LCD_MAX_X * LCD_MAX_Y #define LCD_SSD1963_PAUSE 5000 #define LCD_SSD1963_FSMC_AST 15 //Address Set Up Time #define LCD_SSD1963_FSMC_DST 15 //Data Set Up Time
in „7 Zoll LCD Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
uPC254.pdf
potentiometer may be reduced by " > - - 0 OUT IN 0 - - - 1 using the circurt shown below. V+ NULL NU t:L pin 0j--RAAl'----'\RACIv----.JII'R""B.r---or pI' 1-.0- - - - - - - 2 0 kfl Fixed Resistor RA. RB 5.1 kn Potentiometer Rc. 10.0 kn Null Range ±1.2 mVTyp. OPEN LOOP FREQUENCY RESPONSE LARGE SIGNAL FREQUENCY
in „Was ist ein C254D?“ · Analoge Elektronik und Schaltungstechnik ·