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PDF
LCD.pdf
cycle time C 500 --- --- ns E E rise time r --- --- 25 ns E E fall time t --- --- 25 ns E f E pulse width tW 220 --- --- ns E R/W and RS set-up time tSU 40 --- --- ns R/W, RS R/W and RS hold time t 10 --- --- ns R/W, RS h Data output delay time tD --- --- 120 ns DB 0 DB 7 Data hold time tDH 20 --- --- ns DB 0 DB 7 l Interface mode with ,KS0063B Characteristic Symbol Min. Typ. Max. Unit Test pin Clock pulse width High tCWH 800 --- --- ns CLK Clock pulse width Low t 800 --- --- ns CLK CWL
in „lcd string "ü" darstellen.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spezifikation.pdf
73/8.27 x 8.27 x 2.87 560 x 120 x 145/22.04 x 4.72 x 5.71 (WxDxH)(mm/in.) Weight (g/lb.) 130/0.29 800/1.76 800/1.76 • Mounting kit • Mounting kit • Mounting kit Accessory kit • Quick installation guide • Quick installation guide • Quick installation guide 5 Antennas and Cables Model ANT3315 ANT3316
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PDF
npd4_series.pdf
Troubleshooting — GPS Troubleshooting - Global Positioning System (GPS) Engine The NPD-4 handset supports 800 Amps and 800 CDMA / 1900 CDMA + GPS with IS 2000 capability. The NPD-4 engine supports CDMA and GPS functionality for Enhanced 911 (E911) services. GPS circuitry utilizes RF signals from satellites
in „Fehlersuche GPS-Modul von KFZ-Navigationssystem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tps2552.pdf
Limit Response – µs Figure 16. MOSFET r DS(on) Vs. Junction Temperature 1400 150 1300 140 1200 130 A T = -40°C m120 -1100 A - n n110 TA= -40°C TA= 25°C e1000 T = 25°C e T A 125°C u 900 A u100 C C r 800 TA= 125°C c 90 u u 80 S 700 S i n 70 r 600 a D D 60 t 500 i t 400 a 50 - S 40 S 300 - I D 30 200 VIN
in „Problem mit FSUSB30 als USB-Schalter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Disassembler8048_mc1981.pdf
",55,STRT T,57,DA A,58 295 DATA "ANL A,RO" 300 DATA 59,"ANL A,R1",5A,"ANL A,R2",5B,"ANL A,R3",5C,"ANL A,R4",5D 310 DATA "ANL A,R5",5E,"ANL A,R6",5F,"ANL A,R7",60,"ADD A,&RO",61 320 DATA "ADD A,&Rf",62,"MOV T,A",
in „80C48 MCS48 Assembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KWH080KQ03-F01.pdf
Characteristics Values Item Symiol Unit Remark Min. Typ. Max. HS setup time Thst 8 - - Ns HS hold time T hhd 8 - - Ns VS setup time Tvst 8 - - Ns VS hold time T vhd 8 - - Ns Data setup time T dsu 8 - - Ns Data hole time T dhd 8 - - Ns DE setup time T esu 8 - - Ns DE hole time T ehd 8 - - Ns VDD Power On
in „NXP verschenkt ARM-Chips“ · Mikrocontroller und Digitale Elektronik ·
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PDF
24C16.pdf
KHz t Clock Pulse Width Low 4.7 1.2 s LOW t Clock Pulse Width High 4.0 0.6 s HIGH tI Noise Suppression Time (1) 100 50 ns tAA Clock Low to Data Out Valid 0.1 4.5 0.1 0.9 s tBUF Time the bus must be free before a new 4.7 1.2 s transmission can start1) tHD.STA Start Hold Time 4.0 0.6 s tSU.STA Start Set-up Time 4.7 0.6 s tHD.DAT Data In Hold Time 0 0 s tSU.DAT Data In Set-up Time 200 100 ns (1) tR Inputs Rise Time 1.0 0.3 s (1) tF Inputs Fall Time 300
in „Erstellen eines 24C16 Eeproms in Multisim“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ultra_Excellent_ab_11-2007.pdf
excellent 125 J Notentriegelung intern 126 Ultra excellent K L Ultra excellent 127 128 Ultra excellent 1 T14500 1.1 T14482 1.2 T14559 1.3 T90005 1.4 T14558 1.5 T14743 1.6 T14742 1.7 400954000 1.8 * 400954110 1.9 * T14118 1.10 * T14551 1.11 * Euro T14507 GB T14706 1.12 * Euro T14597 GB T14888 2 Hand-held transmitter 4-command NS N000880-01-00 CR N000880-02-00 HS N000880-04-00 Intra N000880-05-00 3 T14530 4.1 T14509 4.2 T14600 4.3 N000877-00-00 5 6144 mm T14459 8322 mm T14499 10500 mm T14489 14856 mm T14486 6 N000818-00-00 8 T14579 9 T14529 10 T14572 A T14139 B T14526 Die mit * markierten Ersatze
in „Belegung Garagentorantrieb Normstahl“ · Haus & Smart Home ·
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PDF
GPG320X240-NFNDSCW3_B_.pdf
VLCD- VSS -0.3 +30.0 V VEE,VADJ Input Voltage VIN -0.3 VDD+0.3 V D0~D3,DISPOFF, FLM,XCK,LP - 590 Vrms T=0°C CCFL B/L Starting Voltage Vs - 480 Vrms T=25°C CCFL B/L Operating Frequency Fop 30 50 KHz Operating temperature Top 0 50 °C Storage temperature Tst -20 70 °C 5. Electrical Characteristics 5.1 DC
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PDF
TransceiverIC.pdf
23.03.00 15:48 Seite 11 von17 AC Characteristics Supply voltage: VDD = 3.0 V; Ambient temperature:T = A7°C Symbol Parameter Conditions Min Typ Max Unit fXTAL Oscillator Frequency 8 12.8 14 MHz Osc. Temperature Stability -5 - 5 ppm tON PLL PLL Settling Time 4 ms IPD Phase Detector Output Current 38/
in „Transceiver IC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MOC3061M.pdf
Figure 5.DRM2 , Leakage in Inhibit State vs. Temperature Figure 6. On-State Characteristics X M 2.4 800 M 2.2 NORMALIZED TO T = 25°C 600 2.0 A T = 25°C O A A C 1.8 ( 400 3 N 6 E 1.6 E 200 X L R M A 1.4 C 0 R E — N 1.2 A ,2 S -200 - R 1.0 N P ID , -400 n 0.8 I D 0.6 -600 P 0.4 Z -40 -20 0 20 40 60 80 100
in „Mehrere Lasten an Wechselspannung schalten (Mosfet)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datasheet.pdf
50 Types Types SKD 50 V 200 SKB 50/02 A3 0,1 SKD 50/02 A3 0,1 400 SKB 50/04 A3 0,3 SKD 50/04 A3 0,2 800 SKB 50/08 A3 0,4 SKD 50/08 A3 0,4 1200 SKB 50/12 A3 0,6 SKD 50/12 A3 0,6 1400 SKB 50/14 A3 0,7 SKD 50/14 A3 0,7 1600 SKB 50/16 A3 0,8 SKD 50/16 A3 0,8 Symbol Conditions SKB 50 SKD 50 Units 1) D T amb
in „[V oder T] TDS420“ · Markt ·
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PDF
SKD50-08_A3_Gleichrichtermodul_Datasheet.pdf
50 Types Types SKD 50 V 200 SKB 50/02 A3 0,1 SKD 50/02 A3 0,1 400 SKB 50/04 A3 0,3 SKD 50/04 A3 0,2 800 SKB 50/08 A3 0,4 SKD 50/08 A3 0,4 1200 SKB 50/12 A3 0,6 SKD 50/12 A3 0,6 1400 SKB 50/14 A3 0,7 SKD 50/14 A3 0,7 1600 SKB 50/16 A3 0,8 SKD 50/16 A3 0,8 Symbol Conditions SKB 50 SKD 50 Units 1) D T amb
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PDF
SCM1.pdf
1900 40-400 7.44 .36 — 9.0 25 (typ.) 17 (min.) 23 (typ.) 15 (min.) 1-212 QQQ130 w 16.95 u LRMS-860 800-1050 DC-250 5.5 .23 7.5 7.5 36 (typ.) 25 (min.) 24 (typ.) 18 (min.) 1-171 QQQ130 w 11.45 LRMS-30J 200-3000 DC-1000 6.8 .30 9.0 9.8 30 (typ.) 17 (min.) 27 (typ.) 7 (min.) –– QQQ569 w 7.95*** RMS-1 0.5
in „[V] SL11H, USS720E ua.“ · Markt ·
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Datei
LedVuMeter.ino
_t n, uint8_t state) { if(n==4)digitalWrite(Led[n], !state); else digitalWrite(Led[n], state); } #define SAMPLEBUFFERLENGTH 400 int16_t sampleBuffer[SAMPLEBUFFERLENGTH]; int32_t OldValue = 0; void sampleMicrophon() { int32_t n, k; int32_t sample = 0; for (n = 0; n < SAMPLEBUFFERLENGTH; n++) { int32_t value = 0; for (k = 0; k < 500; k++) { digitalWrite(MICROPHON_CLK_INPUT, HIGH); if (digitalRead(MICROPHON_PDMDATA_OUTPUT)
in „STM32F4 Discovery Arduino“ · Mikrocontroller und Digitale Elektronik ·
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Datei
App_Gauges.c
); break; case 80: App_WrCoCmd_Buffer(phost,COLOR_RGB(255,0,0)); break; } } void Gauges() { uint16_t w,h,n,a,size_d,temp[1024]; float_t th; int32_t rval,tgt; uint16_t dloffset; uint8_t i,bi,z; int32_t x,y,tx,ty,o,dt; int16_t xvalue,yvalue; #ifdef FT801_ENABLE int32_t val=0; #else int16_t val=0; #endif
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PDF
BSS89.pdf
(DC) − 300 mA DM peak drain current − 1.2 A Ptot total power dissipation Tamb≤ 25 °C; note 1 − 1 W T storage temperature −55 +150 °C stg Tj junction temperature − 150 °C THERMAL CHARACTERISTICS SYMBOL PARAMETER CONDITIONS VALUE UNIT Rth j-a thermal resistance from junction to ambnote 1 125 K/W Note
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PDF
k2series_ds_10153704.pdf
Capacitance, initial1 650 F 1,200 F 1,500 F 2,000 F 3,000 F 1 Maximum Capacitance, initial 780 F 1,440 F 1,800 F 2,400 F 3,600 F Maximum ESR , initial 1 0.8 mΩ 0.58 mΩ 0.47 mΩ 0.35 mΩ 0.29 mΩ DC 1 Test Current for Capacitance and ESDC 65 A 75 A 100 A 100 A 100 A RatedVoltage 2.70V 2.70V 2.70V 2.70V 2.70V Absolute
in „(L(C(R) Messgerät für 2 Farad gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
el4581.pdf
equipment, specifically the LTX77 Series system. Unless otherwise noted, all tests are pulsed tests, tTereT .e T J C A Test Level Test Procedure I 100% production tested and QA sample tested per QA test plan QCX0002. II 100%productiontestedatA e 25§CandQAsampletestedatTA e 2§ C, TMAX andTMIN perQAtestplanQCX0002
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PDF
XCL213-XCL214.pdf
TYP. MAX. V MIN. TYP. MAX. V MIN. TYP. MAX. V MIN. TYP. MAX. OUT(T) IN OUT(T) IN 0.80 0.784 0.800 0.816 2.70 71 119 166 2.25 2.205 2.250 2.295 3.75 140 200 260 0.85 0.833 0.850 0.867 2.70 72 121 169 2.30 2.254 2.300 2.346 3.83 140 200 260 0.90 0.882 0.900 0.918 2.70
in „1.5A regulator Built-in Step-Down micro DC/DC Converters“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM135.pdf
°C Uncalibrated Temperature Error 2 5 4 9 °C TMIN≤ TC ≤ TMAX,RI = 1 mA Temperature Error with 25°C T ≤ T ≤ T , I = 1 mA 0.5 1 1 2 °C MIN C MAX R Calibration Calibrated Error at Extended T = T (Intermittent) 2 2 °C C MAX Temperatures Non-Linearity I = 1 mA 0.3 1.5 0.3 1.5 °C R Electrical Characteristics
in „ADC Vergleichen und Variable ändern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
messung.c
//****************************************************************************************** uint8_t therm_reset(void){ uint8_t i; //Pull line low and wait for 480uS THERM_LOW(); THERM_OUTPUT_MODE(); //THERM_INPUT_MODE(); _delay_us(480); //Release line and wait for 60uS THERM_INPUT_MODE(); _delay_us
in „DS1820 Probleme mit dem Ansprechen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
fehler1001.xml
>0</Task><Opcode>0</Opcode><Keywords>0x80000000000000</Keywords><TimeCreated SystemTime='2012-11-12T22:15:12.000000000Z'/><EventRecordID>510631</EventRecordID><Correlation/><Execution ProcessID='0' ThreadID='0'/><Channel>System</Channel><Computer>STEFAN-W500</Computer><Security/></System><EventData><Data Name='param1'>0x00000044 (0xfffffa800a745780, 0x0000000000000eae, 0x0000000000000000, 0x0000000000000000)</Data><Data Name='param2'>C:\Windows\MEMORY.DMP</Data><Data Name='param3'>111212-62337-01</Data></EventData><RenderingInfo Culture
in „[Windows 7] Fehler: MULTIPLE_IRP_COMPLETE_REQUESTS“ · PC Hard- und Software ·
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PDF
HSMP3864_datasheet.pdf
Series Attenuator B 115 Series Attenuator in a E ( in a 50 Ohm Microstrip ( 50 Ohm Microstrip and I T 100 andTested at 123 MHz T Tested at 123 MHz T V = 2V I I 110 R R P 90 P E T T 105 O VR= 5V P 80 HSMP-3830 P HSMP-3880 C C C E 10 R HSMP-3810 R 100 E VR= 10V T 70 T HSMP-3820 S I I 95 R T 60 T HSMP-3830
in „Diskretes Bauteil für HSMP3864 PIN Diode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ina114.pdf
TIME vs GAIN OFFSET VOLTAGE WARM-UP vs TIME 1200 6 1000 ) 4 µ ) ( G ≥ 100 µ 800 g 2 ( a m C T 600 e 0 g 0.01% a l o e 400 V –2 S 0.1% e f 200 O –4 0 –6 1 10 100 1000 0 15 30 45 60 75 90 105 120 Gain (V/V) Time from Power Supply Turn-on (s) INPUT BIAS AND INPUT OFFSET CURRENT INPUT BIAS CURRENT vs TEMPERATURE vs DIFFERENTIAL INPUT VOLTAGE ) 2 3 n t e 2 u 1 A C m e t 1 f ±I e O B u u 0 C 0 n I a d OS B a u –1 G = 1 s –1 n i I G = 10 t –2 p G = 100 I G = 1000 –2 –3 –40 –15 10 35 60 85 –45 –30 –15 0 15 30 45 Temperature (°C) Differential Overload
in „OP INA114 Regelt nur bis 2,25V am Ausgang“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
164a_series-v10.PDF
1000 AC Characteristics l Write mode Characteristic Symbol Min. Typ. Max. Unit Test pin E cycle time tC 500 --- --- ns E E rise time t --- --- 25 ns E r E fall time tf --- --- 25 ns E E pulse width (High, Low) W 220 --- --- ns E R/W and RS set-up time tSU1 40 --- --- ns R/W, RS R/W and RS hold time t
in „LCD Aufloesung“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Display eines Spektrumanalysators mit Frequenzspektrum
Marker 1 [T1] RBW 5 Hz RF Att 10 dB Ref Lvl -20 dBm SWT 800 ms Unit dB -20 99.99994289 MHz -30 1 [T1] -20.59 dB -40 2 [T1] -58.24 dB -50 3 [T1] -61.71 dB -60 4 [T1] -53.82 dB -70 25.00000000 Hz -80 50.00000000 Hz
in „[V] Marconi 2018A Signalgenerator, 80 kHz bis 520 MHz“ · Markt · · Fotos
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PDF
0900766b81417515.pdf
Ambient Temperature Fig. 8 Diode Forward Voltage vs. Current 1,400 10,000 1,200 f = 1MHz A (1,000 T = 150°C ) T A F1,000 N ( R E Ciss R N 800 U TA= 125°C A C I G 100 A 600 A T = 85°C P K A A E , , C 400 S I 10 A = 25°C 200 Coss 0 Crss 1 0 5 10 15 20 25 30 35 5 10 15 20 25 30 35 V , DRAIN-SOURCE VOLTAGE
in „Datenblatt DMG4511SK4 COMPLEMENTARY PAIR MOSEFT“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LP2950-D.PDF
5.0 V S 5.50 100 200 300 400 500 600 700 800 6.0 -1-100 0 100 200 300 400 t, TIME (ms) t, TIME (ms) Figure 10. Line Transient Response Figure 11. LP2951 Enable Transient www.onsemi.com 7 LP2950, LP2951, NCV2951 200 80 CL= 1.0 mF 400 V Vout= 5.0
in „Wie lange hält ein LM1117-5.0 ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LP2950_LP2951.pdf
5.0 V S 5.50 100 200 300 400 500 600 700 800 6.0 -1-100 0 100 200 300 400 t, TIME (ms) t, TIME (ms) Figure 10. Line Transient Response Figure 11. LP2951 Enable Transient www.onsemi.com 7 LP2950, LP2951, NCV2951 200 80 CL= 1.0 mF 400 V Vout= 5.0
in „Warum funktioniert mein Brückengleichrichter nicht?“ · Fahrzeugelektronik ·
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Datei
tools.c
_t ch,i; uint8_t k = 0; uint8_t cnt = 0; uint8_t cnt2 = 0; do { // warte auf Startzeichen do ch = getchar(); while (ch != ':'); csum = 0; len = gethex(); // Hole Anzahl Zeichen des Satzes adress = (gethex
in „Retro Fieber: Z80 oder 68000 ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
E_Grad_kpl.pdf
70 SW 0,95-0,97 9 dene Muster Granit rau, 4 verschie- 70 LW 0,77-0,87 9 dene Muster Gummi hart 20 T 0,95 1 Gummi weich, grau, rau 20 T 0,95 1 Gusseisen bearbeitet 800-1000 T 0,60-0,70 1 Gusseisen flüssig 1300 T 0,28 1 Gusseisen Guss 50 T 0,81 1 Gusseisen Gusseisenblöcke 1000 T 0,95 1 Gusseisen oxidiert
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PDF
SOLARWATT_M230-96_GET_AK_ital.pdf
L = Laminato K = Cavo classe di potenza sono K = Plastica (senza telaio) specificate nella scheda T = Pellicola Tedlar tecnica accoppiata MODULO-VETRO-LAMINA | SOLARWATT AG | CONCESSIONARIO SOLARWATT: SOLARWATT M230-96 GET AK t m b DATI TECNICI c e r n C DIMENSIONI DATI GENERALI 1610 ± 2 mm Tecnoligia
in „Solarladeregler für LiFePo4“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Temperatur-Sensor_TO92__AD22100_KT.pdf
Typ Max Min Typ Max Min Typ Max Units TRANSFER FUNCTION VOUT = (V+/5V) × [1.375V + (22.5 mV/°C) A T ] V TEMPERATURE COEFFICIENT (V+/5V) × 22.5 mV/°C TOTAL ERROR Initial Error TA = +25°C ±0.5 ±2.0 ±1.0 ±2.0 ±1.0 ±2.0 °C Error over Temperature TA =T MIN ±0.75 ±2.0 ±2.0 ±3.7 ±3.0 ±4.0 °C TA =T MAX ±0.75
in „Temperatursensor gibt unrealistische Spannung zurück“ · Mikrocontroller und Digitale Elektronik ·
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Datei
messung.c
//****************************************************************************************** uint8_t therm_reset(void){ uint8_t i; //Pull line low and wait for 480uS THERM_LOW(); THERM_OUTPUT_MODE(); _delay_us(480); //Release line and wait for 60uS THERM_INPUT_MODE(); _delay_us(60); //Store line value
in „DS1820 Probleme mit dem Ansprechen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bts611L1.pdf
Figure 4a: Overtemperature: Reset if T <T j jt IN1 IN IN2 channel 2: normal operation V ST OUT1 VOUT IL1 channel 1: open load d(ST) t t t d(ST OL4) d(ST) d(ST OL5) J ST t t Figure 5c: Open load: detection in ON- and OFF-state (with R EXT
in „Solid State Relais“ · Mikrocontroller und Digitale Elektronik ·
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PDF
wg160128b_datasheet.pdf
Type/ A→ Reflective, N.T, 6:00 H→ Transflective, W.T,6:00 Temperature range/ View direction D→ Reflective, N.T, 12:00 K→ Transflective, W.T,12:00 G→ Reflective, W. T, 6:00 C→ Transmissive, N.T,6:00 J→ Reflective, W. T, 12:00 F→ Transmissive, N.T,12:00 B→ Transflective, N.T,6:00 I→ Transmissive, W. T, 6:00 E→ Transflective, N.T.12:00 L→ Transmissive, W.T,12:00 ˆ Special Code T: Build in Negative Voltage and temperature compensation Z: IC NT7086
in „GLCD Kontrast (WG160128B & T6963c)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MOC3041.pdf
Characteristics 0 1.6 800 1 F = 30mA M 600 TA= 25°C , 1.5 M ) O ( 1.4 m 400 C E T 0 A E 200 3 L 1.3 R M V U , D 1.2 A = -40°C E 0 M A A O W TA= 25°C S -200 C O 1.1 N 3 - T = 85°C , 3 VF 1.0 A I -400 M -600 M 0.9 C 0.8 -800 3
in „Triac am atmega anstelle MOC3041 und BTA08-400“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
94874_MOC3043_OptoTriac.pdf
Characteristics 0 1.6 800 1 F = 30mA M 600 TA= 25°C , 1.5 M ) O ( 1.4 m 400 C E T 0 A E 200 3 L 1.3 R M V U , D 1.2 A = -40°C E 0 M A A O W TA= 25°C S -200 C O 1.1 N 3 - T = 85°C , 3 VF 1.0 A I -400 M -600 M 0.9 C 0.8 -800 3
in „Triac Probleme mit MOC3043“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
tft.c
_t color555_to_565(uint16_t color) { return (color & 0xFFC0) | ((color & 0x0400) >> 5) | ((color & 0x3F) >> 1); //extend Green LSB } static uint8_t color565_to_r(uint16_t color) { return ((color & 0xF800
in „4DLCD-32QA mit STM32 initialisieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT-635_V6.pdf
survivability limits. 1 product(s) or information contained herein without notice. M/A-COM makesmerica Tel: 800.366.2266 / Fax: 978.366.2266 no warranty, representation or guarantee regarding the suitability of itsel: 44.1908.574.200 / Fax: 44.1908.574.300 products for any particular purpose, nor does M/A-COM
in „Suche digital einstellbare Dämpfung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
picolibc.ld
.text.unlikely .text.unlikely.*) *(.text.startup .text.startup.*) *(.text .text.*) *(.gnu.linkonce.t.*) KEEP (*(.fini)) __text_end = .; PROVIDE (__etext = __text_end); PROVIDE (_etext = __text_end); PROVIDE (etext = __text_end); /* read-only data */ *(.rdata) *(.rodata .rodata.*) *(.gnu.linkonce.r.*
in „Attribute used im gcc“ · Mikrocontroller und Digitale Elektronik ·
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Datei
picolibc.ld
.text.unlikely .text.unlikely.*) *(.text.startup .text.startup.*) *(.text .text.*) *(.gnu.linkonce.t.*) KEEP (*(.fini)) __text_end = .; PROVIDE (__etext = __text_end); PROVIDE (_etext = __text_end); PROVIDE (etext = __text_end); /* read-only data */ *(.rdata) *(.rodata .rodata.*) *(.gnu.linkonce.r.*
in „Attribute used im gcc“ · Mikrocontroller und Digitale Elektronik ·
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Datei
setup.c
PB_EXTINT_BASE 25 #define TS_IRQ 0 #define PIN_TS_EXTINT GPIO_PIN_PB(PB_EXTINT_BASE+TS_IRQ) /* Sharp LQ043T3DX0x (or compatible) panel */ static struct fb_videomode __initdata lcd_fb_modes[] = { { .name = "480x272 @ 59.94Hz", .refresh = 59.94, .xres = 480, .yres = 272, .pixclock = KHZ2PICOS(9000), .left_margin
in „Probleme mit ADS7846 beim NGW100“ · Mikrocontroller und Digitale Elektronik ·
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Datei
setup.c
PB_EXTINT_BASE 25 #define TS_IRQ 0 #define PIN_TS_EXTINT GPIO_PIN_PB(PB_EXTINT_BASE+TS_IRQ) /* Sharp LQ043T3DX0x (or compatible) panel */ static struct fb_videomode __initdata lcd_fb_modes[] = { { .name = "480x272 @ 59.94Hz", .refresh = 59.94, .xres = 480, .yres = 272, .pixclock = KHZ2PICOS(9000), .left_margin
in „Probleme mit ADS7846 beim NGW100“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AF143086415692en-000101.pdf
- - yes yes yes yes yes - - yes yes yes yes yes yes yes yes yes yes yes M / - / - M / - / - M / - /T M / - /T M / - /T M / - /T M / - /T M / - /T M / R /T M / R /T M / R /T M / R /T M / R /T FRCC.PK.047.A2.02 - Manufactured by Secop for Danfoss 47 Hermetic Compressors for DC Voltage 3. Electronic units
in „Kompressor für Campingkühlschrank - elektrischer Anschluss?“ · Fahrzeugelektronik ·
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PDF
Danfoss_Katalog_BLDC_Compressors.pdf
- - yes yes yes yes yes - - yes yes yes yes yes yes yes yes yes yes yes M / - / - M / - / - M / - /T M / - /T M / - /T M / - /T M / - /T M / - /T M / R /T M / R /T M / R /T M / R /T M / R /T FRCC.PK.047.A2.02 - Manufactured by Secop for Danfoss 47 Hermetic Compressors for DC Voltage 3. Electronic units
in „12V Kompressor Kühlbox - Steuerung defekt - eigenes Thermostat verwenden“ · Haus & Smart Home ·
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PDF
JW5015B.pdf
5.1V TO 40V 5V/2A VIN=36V 100k 92 68.1k 90 EN JW5015B FB ( 22uF c88 13k 47µF E86 GND BIAS 2.2µF 84 82 800 0.5 1 1.5 2 I( ) JoulWatt Proprietary Information. Patent Protected. JW5015B Rev.0.83 Unauthorized Photocopy and Duplication Prohibited. 1 JW5015B 2A, 40V Synchronous Step-Down Converter ORDER INFORMATION
in „Bezugsquelle für JW5015B ?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
peinpaus.c
abwarten, wenn abgelaufen einschalten und Einschaltzeit_MS abwarten, Wartzeit_R1 abwarten ... uint16_t Einschaltzeit_MS = 3000; // Einschaltzeit - Wie lange der aktuelle Pin jeweils High ist uint16_t pausezeiten_MS_Register_1[8] = {1000,500,3000,500,7000,100,200,800}; // Ausschaltzeit - Wie lange der
in „Pins Schieberegister zeitlich schalten“ · Mikrocontroller und Digitale Elektronik ·
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Datei
graphik.h
PRES_YSIZE) // Rechte abs. Y Koordinate der Skala #define PRES_COLOR ILI9341_COLOR_MAGENTA #define MIN_PRES 800 // Absolute Grenzen im Flachland #define MAX_PRES 1100 // Arbeitswerte die im Batterie NV Ram liegen struct gfx_Work_t { int32_t initialized; // = 0x1234 nach Initialisierung double pixPermBar; // Pixel
in „Zeigt her eure Kunstwerke (2017-2019)“ · Projekte & Code ·